ML19337A420

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Semiannual Operating Rept - Radioactive Effluents, for Jan-June 1980
ML19337A420
Person / Time
Site: Cooper Entergy icon.png
Issue date: 08/26/1980
From: Evans A, Keay N
HAZLETON LABORATORIES AMERICA, INC.
To:
Shared Package
ML19337A419 List:
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NUDOCS 8009260284
Download: ML19337A420 (95)


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THIS DOCUMENT CONTAINS HAZLETON @ ENVIRONMENTAL SCIENCES ecoa auAUTY PAGES CORPORAT

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moo a 5aCN f AGE MO AO. NUh t HHMOOV 4 L iNOC. 6006 ; ubA 4 l l 1 REPORT TO NEBRASKA PUBLIC POWER DISTRICT COLUMBUS, NEBRASKA METEOROLOGICAL PROGRAM FOR THE COOPER NUCLEAR STATION, BROWNSVILLE, NEBRASKA JANUARY THROUGH JUNE 1980 Prepared by M. St. Peter, L. Huebner Submitted by Hazleton Laboratories America Environmental Sciences Division (Project No. 9000) APPROVED BY: Nathaniel 5. Keay, B.S. Acting Director, Air Sciences //

                                  .                        d A. K(nt E Qns, Ph.D.

Dirdtor of Scientific Operations 26 August 1980

                                                                                                        .

PHONE (3'23 564-0 700 o TE E 20 9 2tG 'H A2L S NE3R* : 1too h4o 2.14

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LQA8000408 GENERAL OFFICE P. O. Box 499, COLUMBUS. NEBR ASKA 68601 Nebraska Pubh.c Power Distn.c t TELEe o~E i.o23 se ..s.1 _m __ --_ Szptenber 10, 1980 Mr. Karl V. Seyfrit, Director Office of Inspection & Enforcement Ragion IV U.S. Nuclear Regulatory Commission 611 Ryan Plaza Drive Suite 1000 Arlington, TX 76012 Subj ect: Semi-Annual Operating Report - Radioactive Effluents Cooper Nuclear Station  !

                                                                                                    !

January 1, 1980 through June 30, 1980 NRC Docket No. 50-298, DPR-46

Dear Mr. Seyfrit:

In accordance with Paragraph 5.4.1.b of the Cooper Nuclear Station Environ-mental Technical Specifications, the Nebraska Public Power District submits ] the Cooper Nuclear Station Semi-Annual Operating Report - Radioactise Effluents l

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for the period January 1, 1980 through June 30, 1980. We are enclosing one signed original and one copy of the report for your use and, additionally, are transmitting 20 copies to the Director, Office . of Inspection and Enforcement and two copies to the Director, Office of Management Information and Program Control. l l Should you have any questions or comments regarding this report, please l contact me. Sincerely yours, hN 4 \M1. Pilant Director of Licensing and Quality Assurance

/db Enclosures cc:   Mr. John G. Davis, Director.

Office of Inspection & Enforcement w/20 enc 1. Director Office of Management Information & Program Control w/2 enc 1.

Mr. Karl V. Seyfrit September 10, 1980 Page 2 STAT OF NEBRASKA )

                       ) ss PLATTE C0dNTY           )

Jay M. Pilaat, being first duly sworn, deposes and says that he is an authorized representative of the Nebraska Public Power District, a public corporation and political subdivision of the State of Nebraska; that he is duly authorized to submit this information on behalf of Nebraska Public Power District; and that the statements in said application are true to the best of his knowledge and belief. MA ty h. Pildnt Subscribed in my presence and sworn to before me this ua

                                                        /u      day of September, 1980.
 '

M [~ NOTARYPUBLIC/ My Commission expires [ [kO .

     .          _

8EEERAL 54TAAT State of genresne MARYN R. HOHNDOfF

   ,

W esu m a s ost.s4, sees

Nebraska Public Power District COOPER NUCLEAR STATION SEMI-ANNUAL OPERATING REPORT RADI0 ACTIVE EFFLUENTS January 1,1930 Through June 30, 1980 USNRC DOCKET 50-298

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HAZLETON CNVIRONMENTAL SCCNC'33 TABLE OF CONTEfiTS Section- Page List of Figures ............................................... iii L i s t o f Ta b l e s . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . v 1.0 Meteorological Data Summaries ................................. 1 1.1 First Quarter (Janua ry through March 1980) . . . . . . . . . . . . . . . 2 1.2 Second Quarter (April through June 1980) ................. 3 1.3 First Semi-Annual Period (January through June 1980) ..... 5 2.0 X/Q Isopleth Figures .......................................... 6 3.0 Radiological Dose Calculations from Waterborne Sources ........ 28 4.0 References .................................................... 33 5.0 Effluent and Waste Disposal .............................. .... 34 Appendices A. Mon thly Ta bl es of Hourly Da ta . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-1

8. Joint Frequency Tables ........................................ B-1 C. Diffusions and Doses .......................................... C-1 D. X/Q and Dose Calculation Models and Assumptions ............... D-1 ii

__ _ HA2LETON ENVIRONMENTAL SCIENCE 3 LIST OF FIGURES No. Caption Page 1 Cooper Nuclear Station and surrounding area in the ra ng e of 0-5 mi l e s . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8 2 Cooper Nuclear Station and surrounding area in the ra ng e of 0-50 mi l e s . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9 3 Predicted concentration to emission ratio (see m-3), vent stack release point. 0-5 miles, January-Ma rc h 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10 4 Predicted concentration to emission ratio (see m-3), vent stack release point, 0-50 miles, January-March 1980 ..................... ....................... . 11 5 Predicted concentration to emission ratio (sec m-3), elevated release point, 0-5 miles, January-March 1980 ............................................. 12 6 Predicted concentration to emission ratio ( see m-3), elevated release point, 0-50 miles, January-March 1980 ............................................. 13 7 Predicted concentration to emission ratio (see m-3), vent stack release point, 0-5 miles, April-June 1980 .............................................. 14 8 Predicted concentration to emission ratio (sec m-3), vent stack release point, 0-50 miles, April-June 1980 .............................................. 15 9 Predicted concentration to emission ratio ( see m-3), elevated release point, 0-5 miles, April-June 1980 .............................................. 16 10 Predicted concentration to emission ratio (see m-3), elevated release point, 0-50 miles, April-June 1980 ..e........................................... 17 11 Predicted concentration to emission ratio (sec m-3), vent stack release point 0-5 miles, January-June 1980 .............................................. 18 . 12 Predicted concentration to emission ratio (see m-3), vent stack release point, 0-50 miles, January-J u n e 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19 iii

HAELETON CNVMONMENTAL SCCNCE3 LIST OF FIGURES

g. Caption P_ age 13 Predicted concentration to emission ratio (sec m-3),

elevated release point, 0-5 miles, January-June 1980 .............................................. 20 14 Predicted concentration to emission ratio (sec m-3), elevated release point, 0-50 miles, January-June 1980 .............................................. 21 15 Predicted gamma dose values (millirad), combined release point , 0-5 mi l es , Janua ry-Ma rch 1980 . . . . . . . . . . . . . . . . . . . 22 16 Predicted gamma dose values (millirad) , combined release poi nt , 0-50 mi l es , Ja nua ry-Ma rch 1980 . . . . . . . . . . . . . . . . . . 23 17 Predicted gamma dose values (millirad), combined release point . 0-5 mil es , April-June 1980 . . . . . . . . . . . . . . 24 18 Predicted gamma dose values (millirad) , combined rel ease point , 0-50 mil es, April-June 1980 . . . . . . . . . . . . . 25 19 Predicted gamma dose values (millirad), combined release point , 0-5 mil es , Janua ry-June 1980 . . . . . . . . . . . . . . . . . . . . 26 20 Predicted gamma dose values (millirad), combined release point , 0-50 mil es , Janua ry-June 1980 . . . . . . . . . . . . . . . . . . . 27 iv l l l

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                             . _                        _

HA2LETON CNVIRONMENTAL. SCCNCEJ f LIST OF TABLES

g. Title h 1 Doses to individual at the site boundary resulting from exposure to radioactivity discharged in liquid effluents, Cooper fluclear Power Station, January-June 1980 ........................ ..................... 30 2 Doses to population within 50-mile adius resulting from exposure to radioactivity discharged in liquid effluents, Cooper Nuclear Power Station,
 ,

Ja n u a ry-J u n e 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 31 3 Values of parameters used to make dose estimates resulting from liquid discharge by Cooper Nuclear Powe r Stati on , Ja nua ry-June 1980 . . . . . . . . . . . . . . . . . . . . . . . 32

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V

HAZLETON ENVIRONMZNTAL CCl~NC'.33 Section 1.0 MEiEOR0 LOGICAL DATA SUMMARIES

l l 1

HAZl.ETON CNVIRONMENTA1. SCCNCED s . 1.0 KTEOR0 LOGICAL DATA

SUMMARY

1.1 First Quarter (January through March 1980) Data Recovery: The percentage of data recovered for each month was 96% or greater for each parameter. The percentage of data recovered for the quarter was 98% or greater for each parameter. The major causes of lost data were not changing charts on time, pens not inking on the 318-ft. wind re-corder, and improper adjustment of the 35-ft. wind recorder such that

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              .

the pen drifted below the zero line on the chart. Some differential temper-ature data and some precipitation data were lost due to the recorder pens sticking. Wind: At the 35-f t. level the wind direction was predominately I from the north-northwest (14.2% of the time) or north (13.6% of the time) . The quarterly average wind speed was 7.3 mph, and the wind speed was 8 mph or less 61.1% of the time. The maximum hourly average wind speed observed was 28 mph on March 18. At the 318-ft. level the wind direction was predominately from the north-northwest (14.2% of the time) or north (11.3% of .the time) . The quarterly average wind speed was 13.4 mph, and the wind speed was 13 mph or less 51.7% of the time. The maximum hourly average wind speed observed was 38 mph on January 6. l Temperature: The mean of the hourly average temperatures for the qua rter wa s -1.75'C. The maximum hourly average temperature was 19.0*C on March 19; the minimum hourly average temperature observed was -23.8'C on Janua ry 31. Compared to the normal mean monthly temperature at Auburn, Nebraska, January was 0.8'C above nonnal; February was 3.8'C below nonnal; and March was 2.1'C below nonnal. 2 l

I I HAZLETON ENVIRONMENTAL SCENCE3 1 l

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Precipitation: For the quarter, 2.75 in. of rain were accumulated over 16 rain days (a day in which 0.01 in. or more of rain or snow was reported) . The maximum rainfall in a single day was 0.54 in, on March 30; the maximum rainfall in a single hour was 0.14 in. on March 8. There were 5 rain days in January, 2 in February, and 9 in March. Compared to Auburn, Nebraska, January was 0.22 in below normal; February was 0.88 in. below nomal; and March was 0.32 in. below nomal. Atmospheric Stability: The measure of atmospheric stability was obtained from the differential temperature data between the 318 and 35-ft. levels. During the quarter, the atmosphere was unstably stratified 34.3% of the time (22.0% of the time extremely unstable), neutrally strati-fied 40.2% of the time, and stably statified 25.5% of the time (16.6% of the time slightly stable) . 1.2 Second Quarter ( April through June 1980) Data Recovery: In the second quarter, 85.9% of the possible para-meter-hours were recovered. The recovery of each parameter for the quarter was 95.5% or more of the possible hours, except for the 35-ft. level wind speed ( 60.8% recovered), the 35-ft. level wind direction ( 52.7% recovered) , and precipitation (87.2% recovered) . The loss of 35-ft. level wind data was due to a malfunction in the wind direction scale switching circuit occurring in May. The majority of the lost data occurred between May 20 and June 24 when the 35-f t. wind system was down for maintenance to correct the wind direction scale switching problem. The major loss of precipitation data occurred in June due to the data tape ripping on June 13 and not being i repaired till June 20. , 1 1 3

HATE NTON ENVIRONMENTAL SCENC]O Wind: The 35-ft. level wind direction for the quarter was from the I north (14.4% of the time) and from the south (8.4% of t..c time). The 35-ft. level wind speed was 8 mph or less 54.1% of the time with a mean hourly average of 6.7 mph. The maximum hourly average wind speed at the 35-ft. level was 23 mph occurring on April 8. At the 318-ft. level the wind direction was from the north or north-northwest (15.7% of the tirra) 'nd from the east-southeast or southeast (18.6% of the time). The mean hourly average wind speed at the 318-ft. level was 12.9 mph with a maximut hourly average of 34 mph occurring on April 8. The 318-ft. level wind speed was between 8 and 19 mph 62.6% of the time. femperature: The mean of the hourly average temperatures for the quarter was 1).4*C. The maximum hourly average temperature was 39.7'C on June 27; the minimum hourly average temperature was -1.6*C on April 13. Compared to the normal mea;i monthly temperature at Auburn, Nebraska, April was 0.7*C below normal; May was 0.4*C below normal; and June e is 0.9 C above normal.

          ?recipitation.:   Total precipitation for the quarter was 4.15 in.,

accumulated over 17 rain days. The maximum rainfall in a single day was 0.94 in. on May 16; the maxicum rainfall in a single hour was 0.43 in. on May 16. There were 7 rain days in April, and 5 each in May and June. Compared to Auburn, Nebraska, April was 1.21 in. be'aw normal; May was 3.18 in. below n:nnal, and June was 5.20 in. be*os normal.

         , Atmospheric Stability:    During the quarter, the atmosphere was classifed as unstable 26.0% of the time (14.3% of the time extremely un-stable), neutral 37.1% of the time, and stable 36.9% of the time (23.8% of the time only slightly stable).

4

l HA2LETON CNVIRONMENTAL SCENCEJ 1.3 First Semi-Annual Period (January Through June 1980) ! Data Recovery: The total percentage of data recovered for the first half of 1980 was 92.5%. With the exception of the 35-ft. level wind spred and direction parameters, data recovery for each parameter was 93.2% or greater. Only 79.2% and 75.8% of the 35-ft. level wind speed and direction data, respectively, were recovered during this period. The major cause for the loss of 35-ft. level wind data was the Mnd direction scale switching problem in May.  ; Wind: The 35-ft. level wind direction was from the north or

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north-northwest 26.15% of the time and from the south 9.0% of the time with a maan hourly average wind speed of 7.1 mph. The 35-ft. level wind speed was 8 mph or less 54.0% of the time, and the maximum hourly average wind spaed was 28 mph on March 18. At the 318-ft. level, the wind direction was from the north-northwest 11.5% of the time and from the south 8.7% of the time. The mean hourly average wind speed at the 318-ft. level was 13.2 mph and was between 8 and 19 mph 59.1% of the time. The maximum hourly average l wind speed at the 318-ft. level was 38 mph on January 6. l Temperatere: The mean of the hourly average temperatures during the first half of 1980 was 7.8'C. The values ranged from a maximum of 39.7*C on June 27th to a minimum of -23.8*C on January 31. Pracipitation: Total rainfall for the first half of 1980 amounted to 6.90 in, accumulated over 33 rain days. The maximum daily total rainfall cas 0.92 in. on May 16; the maximum hourly total was 0.43 in. on May 16. 1 Atmospheric Stability: The atmosphere was classified unstable i 1 30.2% of the time (18.7% of the time extremely unstable), neutral 25.7% of the time, and stable 44.1% of the time (27.7% of the time slightly stable). l 5

HAZLETON ENVIRONMZNTAL CCCNCJJ l 1 i

                              \

l Section 2.0 X/Q ISOPLETH FIGURES l I

6

___. HAM ETON ENVIRONMENTAL SCCNCEJ

2. 0 Introduction The concentration of emission ratio isopleths presented in this section were generated using the computer model X0QD0Q. Isopleth fields are presented for both a 0-5 mile' area and a 0-50 mile area centered on the Cooper Nuclear Power Plant. The periods covered by the isopleths are January-March, April-June, and January-June 1980. Separate figures are given for the vent stack and elevated release options. The isopleths of gamma radiatien dose were generated using the GASPAR computer model. The isopleths are for a combined vent stack and elevated release, and cover the same area and time periods given for the concentration to emission ratios.

Both models are discussed in Appendix D. l i 7

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_ _ _ _ _ ____ _ _ _ _ l HA2LETON CNVIRONMZNTAL CCCNCOD

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_ SCALE :1 KILOMETERS N-O I 2 3 4 5 6 7 8 SCALE IN MILES O I 2 3 4 5 Figure 1. Cooper Nuclear Station and surrounding area in the range of 0-5 mil es. 8

__ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ HAZLETCN ENVIRONMENTAL SCIENCES

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Figure 2. Cooper Nuclear Station and surrcunding area in the range of 0-50 miles. 9

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HA'ZLETON CNVIRONMINTAL SCIENCCO

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_ __ _ _ _ _ HAZL3 TON GNVIRONM2NTAL SCIENCES

                               '

o g $[ iowa NEBRA3KA -1 Omahoer Council Bluf fs i Bellevue 4 ' l b Plottsmou gnColn

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                                                                            %p Lecvenworth w                    f 1

Figure 4. Predicted concentration to emission ratio ( see m-3), vent release point, 0-50 miles, January-March 1980. 11 l

_ HAZLETON CNVIRONM3NTAL CCIGNC'23 ,

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LANGDON Nebroska x NEMAHA // 7 s ,,I ' N SCALE IN KILOMETERS O I 2 3 4 5 6 7 8 SCALE IN MILES

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O I 2 3 4 Figure 5. Predicted concentration to emission ratio ( sec ::r3), elevated release point 0-5 miles, January-March 1980. 12

HAZLCTON 3NVI ACNMENTAL SCIENCCS i 1 v. a ,

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HAZLETCN ENVIRONM2NTAL CCl"INC33 l

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                                                                    ,w'                   N SCALE IN KILOMETERS O     l      2       3    4      5       6     7   8 SCALE IN MILES O           I           2         3          4         5 Figure 7.                   Predicted concentration to emission ratio ( sec m-3), vent release point, 0-5 miles, April-June 1980.

14

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u Leavenworth e\ _ Figure 8. Predicted concentration to emission ratio ( see m-3), vent release point 0-50 miles, April-June 1980. 15

HA2LETON ENVIRONM2NTAL CCIZNCC'3

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N SCALE IN KILOMETERS O I 2 3 4 5 6 7 8 SCALE IN MILES O I 2 3 4 5 Figure 9. Predicted concentration to emission ratio ( sec m-3), elevated release point, 0-5 miles, April-June 1980. 16

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Figure 10. Predicted concentration to emission ratio ( sec m-3), elevated release point, 0-50 miles, April-June 1980. 17 l 1

HAZLETON CNVIRONM2NTAL CCl:NC3'3

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COOPER NUCLEAR S l'ON L NGDON Nebrask s f lxRT* \\ f MAHA / d' l N SCALE IN KILOMETERS O I 2 3 4 5 6 7 8 SCALE IN MILES O I 2 3 4 5 Figure 11. Predicted concentration to emission ratio (sec m-3), vent release point, 0-5 miles, January-June 1980. 18

_ _ _ __ . HAZLGTON ENVIACNMENTAL SCIENCES

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19

HA2LETON CNVIRONMZNTAL CCl!NCOO

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                                                                       .Ix10-8
                                    .05 xlO-8            f N   g)'                 x l

h N l SCALE IN KILOMETERS l l 0 1 2 3 4 5 6 7 8 SCALE IN MILES O l 2 3 4 5 ' Figure 13. Predicted concentration to emission ratio ( see m-3), elevated release point. 0-5 miles, January-June 1980. 20 _ _ _ _ _ _

HA2LETON ENVIACNP SEN?AL SCIENCES

                                   ,
                                  ,
                                        ~

IO W A

                             -

NEBRASKA Omonoe Council Bluf fs

                                      '                                                  N Bellevue G lottstrourn\   L                    2 x lO-8 10 incoln
          /

Clorindo 7 Shenondoah ebrasko ek N City y m IO x lO-8 f O eru Rokkport 40 yl, Sg MI. f / A h 2Out gix,g-9 e \ Auburn oryville

     }

O Beatrice ( / Falls Ci y 9 {

                                                                       ,

Arnozonia x ,10~8 \ Joseph

        <ANSAS Atchisone      WSSOURI Leovenwort x        ,

Predicted concentration to emission ratio (sec m-3), elevated j Figure 14. release point, 0-50 miles, January-June 1980. 21

HA2LETON CNVIRONMUNTAL CCICNCGO T2 x 10-'

                                  '
                                                           . I x 10~'
                                  *
                                   .
                                    \          N             O h                           HELPS r
  *                                '     '
  • Brow $viLLE '
                                                                  \

lxlO Missouri i , _ NUCLEAk /4 l

       ,

fSTATION LANGDON brosk NEMAHA /

                         \.2 x lO-'L l

xlO d

                                      '(       g  6

( l ,

                                                                                    !

N SCALE IN KILOMETERS O I 2 3 4 5 6 7 8 SCALE IN MILES O l 2 3 4 5 Figure 15. Predicted gamma dose values (millirads) , ccmbir.ed release, 0-5 miles, January-March 1980. 22

__ _-- _ _ _ _ - - _ _ _ _ HAZLETON GNVI AONMENTAL SCIENCES 1 g i

                             -
                                 ,

sowA i

                                                                                                                        !

NEBRASKA Omonoe Council Bluf fs i

                                      ;

N BulevueS

                                                .      O' lattsmoutn\b                           5xlO-3 Lir coln                                                               N e                                     !

Clar4ndo Shenandoah

                                                                                   '

Nebraskot l City

                       /                                gg;
                                                                           \

30ML 40 ML

                     /                                            g IO ML                          k l     Aubur n            A  ,      )                          \g y        L                            Maryville 90 eof ice                                                  s l x lO"              s Falls City 9
              -
  • N
         -
                                                       ' ~}
                                                                                        .
                                     .txlO o                                       C    Joseph KANSAS
                                                                                 .

Atchison$ MISSOURI S., \ 9 Leoenwort Figure 16. Predicted gamma dose values (millirads) , ccmbined release, 0-50 miles, January-March 1980. 23

HAZLETON CNVI ACNMENTAL SCIENCED l j

                                    '                            .05x 10"
                                  \                  .I x IO~I '
                                     \,

LJ PHELPS I

                                    ,

BROWNVILLE lx!O-l Missourl

                                              .

h ,

                                            '

f COOPER p ( NUCLEAR , , STATION LANGDON N raska

                                                        '

NEMAHA f

                                                                                     ,
                                                                       's
                                                  ,,s
                           .05 x lO-'
            .                                                                       N SCALE IN KILOMETERS O    I      2     3  4         5       6   7    8 SCALE IN MILES i + ,Wf 0         1          2          3          4         5

! Predicted gamma dose va.ues ( m111 t rads) , combined release, 0-5

                                          ~

Figure 17. miles, April-June 1980. 24 l , 1

- . _ _ _ _ - - - . _ _ _ . _ _ - --___ _-_-____________ - _ HAZLETON ENVIRCNMENTAL SOlENCES 1

                                                     +      ,

g iowa NEBRASKA ~I Omonce Councit Bluf fs

                                                                 '

Believue Yy

                                                               \

O lottsmoutnh

                                                                           -

Lincoln Clarindo Shenandochs Nebrasko t . City ,

                                                                                                      \
                                              '

( \ i x10-3 Rockport eru4( \ 20 Mi. 30 MI. 40 Mt. N Om

                                                                                                        ,
                                                                                                                      }
                                                            "                  '
                                                                   '

Maryvi e

                                                                                     /

G Beot . Falls City G

                                         '

Amazonio

                                                                                                                     G
                                                                                .Ix                          /
                                                                                   .05 x 10-3                            Jo eph r

( KANSAS Atchisone v1SSOURI l

                                                                                                            %5 Leevenwort Figure 18. Predicted gamma dose values (millirads), combined release 0-50 miles, April-June 1980.

25

HAZLOTON CNVI ACNM2NTAL CCIENC'30

                                      .3 x 10-'
                                *
                                 +
                                                                        .I IOd BROWNVILLE

[ x lO-' Missourl

                                           ,

I NUCLEAR ERP 8 I f STATION [ , s LANGDON Nebraska NEMAHA / I

                                                             .3 x O-'

cie-' (

                                             . .e
                                                                   \

N SCALE IN KILOMETERS O I 2 3 4 5 6 7 8 SCALE IN MILES , l O 1 2 3 4 5 l l Figure 19. Predicted gamma dose values (millirads) , ccmbined release, 0-5 miles, January-June 1980. 26

HAZLETON ENVI ACNMENTAL SCIENCES 1 l

                          -

g i

                               -
                                   ',

IOWA NEBRASKA Omahoe Council Bluf fs j

                                         ',

N Bellevue l GN Plattsmoutn\ neoin Clorinda Shenoncoch

           !*O'              NS                                                      05xiO
                       <          /                                                       ',

O Mt Peru b Rockpoit 40 gg, f { Auoe,n* * ' "'

                                                                        \
                                                                      .3x!O-3 veryviiie
                                                                                       .     \

l ' G Bear ice

                                                  -3 lxlO
                                                                ,

a ls City e

         '    '        '
                                                  \                                   Amazonio

__ e 05 xlO-3 st. Josepn KANSAS Atchison4 MISSOURI

                                                                                 -n Leovenworth 4

Figure 20. Predicted gamma dose values (millirads) , combined release, 0-50 miles, January-June 1980. 27

HAZLETON ENVIRONMZNTAL CCl3NCIS Section 3.0 RADIOLOGICAL DOSE CALCULATIONS FROM WATERBORNE SOURCES 28

1 HAZLETON ENVIRONM' INTAL CCl2NC30 , I

                                                                                  !

3.0 Introduction In calculating doses to an individual and population due to the release of radioactive material via liquid effluent from Cooper Nuclear Power station the LADTAP II computer program was used. LADTAP 11 program imple-ments the radiological impact models of Regulatory Guide 1.109 for determin-ing the radiation exposure to man from four principal exposure pathways in the aquatic environment - potable water, aquatic foods, shoreline deposits, and irrigated foods. Doses for both the maximum individual and the general population are calculated as a function of age group and pathway for appro-priate body organs. o i 29

c"# Table 1. Doses to individual at the site boundary, resulting from exposure to radioactivity discharged in liquid effluents, January-June 1980, Cooper Nuclear Power Station.

                                                                                                              -

Period and a Pathway Dose to individual, mrem Skin Bone Liver Total Body Thyroid _ Kidney Lung GI-LLi 1st Quarter Drinking Water 1.73E-04 2.95E-04 2.16E-04 1.75E-03 1.01E-04 3.48E-05 1.16E-04 Shoreline 2.03E-05 1.73E-05 1.73E-05 1.73E-05 1.73E-05 1.73E-05 1.73E-05 1.73E-05 I

                                                                                                                >

Totals 2.03E-05 1.90E-04 3.12E-04 2.33E-04 1.76E-03 1.19E-04 5.21E-05 1.33E-04 2nd Quarter O Eating fish 6.52E-01 1.11E+00 8.12E-01 3.60E-01 3.72E-01 1.20E-01 2.22E-01 Z Drinking Water 2.14E-02 2.33E-02 2.39E-02 8.38E-03 6.65E-03 2.15E-03 7.34E-02 m 1.62E-02 1.62E-02 1.62E-02 1.62E-02 1.62E-02 1,62E-02 2 Shoreline 1.90E-02 1.62E-02 5 Swi ming 0.00E+00 3.22E-05 3.22E-05 3.22E-05 3.22E-05 3.22E-05 3.22E-05 3.22E-05 Boating 0.00E+00 4.37E-04 4.37E-04 4.37E-04 4.37E-04 4.37E-04 4.37E-04 4.37E-04 $ Z Totals 1.90E-02 6.90E-01 1.15E+00 8.52E-01 2.86E-02 3.96E-01 1.38E-01 3.12E-01 I m Totals for 1st 3.12E-01 and 2nd Quarters 1.90E-02 6.90E-01 1.15E+00 8.52E-01 3.04E-02 3.96E-01 1.38E-01 p m a Calculated doses are based on the following periods of exposures: h Fishing and boating: from April through November Z Drinking water and shoreline: from January through December Q Swi ming: from June through September. m Other assumptions are listed in Table 3.

                                                                                                 -
                 .

Table 2. D3ses to population within 50 miles radius, resulting from exposure to radioactivity

discharged in liquid effluents, January-June 1980, Cooper Nuclear Power Station.

l l Period and l Pathway Dose to population, rema Skin Bone Liver Total Body Thyroid Kidney Lung GI-LLi ist Quarter Drinking Water b 1.84E-02 2.76E-02 1.91E-<05 1.91E-05 1.91E-05 1.91E-05 1.91E-05 Shoreline 2.24E-05 1.91E-05 1.91E-05 1.91E-05 1.91E-05 1.91E-05 1.91E-05 1.91E-05 I

                                                                                                               >

Totals 2.24E-05 1.84E-02 2.76E-02 1.53E-02 1.54E-01 7.48E-03 3.35E-03 8.23E-03 $ 5 2nd Quarter o Eating fish 2.15E-01 3.40E-01 2.07E-01 6.10E-04 9.91E-02 3.76E-02 5.51E-02 Z Drinking Water b 1.15E-02 1.13E-02 1.01E-02 3.81E-03 2.55E-03 1.07E-03 2.69E-02 m Shoreline 1.90E-02 9.26E-03 9.26E-03 9.26E-03 9.26E-03 9.26E-03 9.26E-03 9.26E-03 2 Swi ming 0.00E+00 1.90E-05 1.90E-05 1.90E-05 1.90E-05 1.90E-05 1.90E-05 1.90E-05 5 Boating 0.00E+00 2.09E-04 2.09E-04 2.09E-04 2.09E-04 2.09E-04 2.09E-04 2.09E-04 $

 $                                                                                                             Z Totals            1.90E-02    2.27E-01    3.52E-01    2.18E-01    1.39E-02  1.11E-01  4.82E-02  9.15E-02 I m

Totals for 1st and 2nd Quarters 1.90E-02 2.45E-01 3.80E-01 2.33E-01 1.68E-01 1.18E-01 5.16E-02 1.30E-01 r a n aCalculated doses are based on the following periods of exposures: E Fishing and boating: from April through November. Z Drinking water and shoreline: from January through December. Q Swinning: from June through September. m bExposure from drinking water is calculated for the city of St. Joseph, Missouri, nearest public water intake from the Missouri River, 84 river miles down the river, population 85,000. Other assumptions are listed in Table 3.

                                                                               .

_ _ _ . - Table 3. Values of parameters used to make dose estimates resulting from liquid discharges by Cooper Nuclear Power Station, January - June 1980. Value Assigned Parameter Individual Population Source or Reference Population at St. Joseph, Missouri 85,000a Cooling Flow Rate 588;469; ft/secb 588;469; ft/sec b Station data Dilution Factor 1 53.1;102.7 Station data I

                                                                                                                                                    >

Shoewidth Factor 0.2 0.2 Ref. 6, p. 15 Usage: - 0 (drinking water) 730 1/yr 370 1/yr/ person Ref. 6, p. 12,40,69 Z (fish) 21 Kg/yr 6.9 Kg/yr Ref. 6, p. 12,40,69 m 2 (shoreline exposure) (swimming) 12 hr/yr 8 hr/yr 8.3 hr/yr 6 hr/yr Ref. 6, p. 40 Ref. 2, p. 144 fo M (boating) 76 hr/yr 44 hr/yr Ref. 2, p. 144 Z I Holding time: m (drinking water) 12 hr 22.4 hrc Ref. 6, p. 40 (fish) 24 hr 168 hr Ref. 6, p. 40 (shoreline exposure) 0 hr 22.4chr Ref. 6, p. 12, 69 $ (swimming) 0 hr 22.4chr Ref. 6, p. 12, 69 iii (boating) 0 hr 22.4chr Ref. 6, p. 12, 69 Z n m m aAssumed populations for 1974. Last available population data is 69,673 persons for 1964. b First and second quarters for 1980, respectively. cBased on an average Missouri River water flow at 5.5 ft/sec. 84 river miles down the river. For definitions of parameters, refer to Ref. 2 and 6. _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ _ _ .

_ _ . HAZLETON CNVIRONM2NTAL CCCNC23 4.0 References

1. Brigg..'G. A. 1969. " Plume Rise". TID-25075, National Technical I.. formation Service, U.S. Department of Commerce.
2. Oak Rioge National Laboratory. 1980. " Users Manual for LADTAP II-A Computer Program for Calculating Radiation Exposure to Man from Routine Release of Nuclear Reactor Liquid Effluents." Prepared for the U.S. Nuclear Regulatory Commission, February 1980.
                     .
3. U.S. Nuclear Regulatory Commission. 1976. " Methods for Estimating Atmospheric Transport and Dispersion of Gaseous Effluents in Routine Releases from t.ight-Water-Cooled Reactor." USNRC Guide 1.111.
4. . 1975. "Information for Safety Analysis Reports Meteor-ology." USNRC Guide 1.70.29.
5. . 1972. "0nsite Meteorological Programs." USNRC Guide l 1.23.
6. . 1977. " Calculation of Annual Doses to Man from Routine Release of Reactor Effluents for the Purpose of Evaluating Compliance with 10 CFR 50, Appendix I,".USNRC Gu1Je 1.109.

33

                                                       .

I

                            !

I l 1 a EFFLUENT AND WASTE DISPOSAL ) i 1 l l 34

EFFLUENT AND WASTE DISPOSAL JANUARY-JUNE 1980 Facility Cooper Nuclear Station License DPR-46

1. Regulatory Limits
a. Fission and activation gases Restrictions on gaseous activity release:

Maximum' release rate of noble gaser. and tritium (except for halogens and particulates with half-lives >8 days): Qs(2.5Eys + 1.25E8s) + Qv (7.3Eyv + 77EBv) ;E 0.16 When averaged over a calendar quarter. ) y - gamma 8 - beta Where Qs and Qv are the quarterly release rates in curies /second of radioisotopes _from the stack, reactor building and turbine building vents; Eys and Eyv are the average gamma energies per disintegration of stack and vent effluents; ESs and ESv are the average beta energies from stack and vent effluents, b.6c. Iodines and Particulates with half-lives >8 days. The re-lease rates of I-131 and particulates with half-lives greater than eight days released to the environs as part of airborne effluents shall not exceed: Qs + Qv ;E 0.08

                       -6                -6 7.7 x 10         2.1 x 10 When averaged over a calendar quarter.

Where Qs and Qv are the quarterly release rates in curies per second of 1-131 and particulates with half-lives longer than eight days from the stack, reactor building and turbine building vents. 35 l l

                                                                  . _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ _ _ _ _ _
          .

F Effluent an'd Waste Disposal- (<.ontinued)

d. Liquid Effluents Maximum calender quarter release rate of radioactive liquid effluents (excluding tritium and noble gases): 23 curies.

Maximum activity of discharged liquid radwaste tant (sample tank only): 10 curies. Maximum radioactivity release concentration of discharge channel-liquid effluents shall not exceed the values speci- l fled in 10 CFR 20, Appendix B, Table II, Column 2. for un-restricted areas.

2. Maximum Permissible Concentrations
                                                                                                                           '

No MPC values are required specifically in Cooper Nuclear Station Environmental Technical Specifications for:

a. Fission and activiation gases, b. Iodines, or c. Particu-5
              .ates with half lives >8 days.

The equation in la. under Regulatory Limits provides a method to be used in summing the gaseous airborne ef fluents from the main stack and vents which will assure that the release rate does not exceed 10 CFR Part 20 for unrestricted 1 areas. {

                                                                                                                              !

The equation presented in lb. and Ic. under Regulatory Linits provides a r.ethod to be used in swnming airborne halogens and particulates with half-lives greater than eight days re-leased from the stack and vents to assure that the release rate does not exceed 10 CFR Part 20, Appendix B Table II,

      . Column 1, for unrestricted areas,
i. Liquid Effluents:

T*ac maximum permissible concentrations (MPC) used to calc-ulate permissible liquid release rates are from 10 CFR 20 Appendix B Table II, Column 2, and applicable notes to Appendix B.

3. Average Energy The average energy (E) of the radionuclide mixtures of fission and activation gases released is as follows:

36 ~

  -
                       - _ _ _ _ _ _ -__-_ _______

_ __ Effluent and Waste Disposal (continued) First Quarter: Second Quarter: E8s = 0.23 Mev/ disintegration E8s = 0.32 Mev/ disintegration Eys = 0.30 Mev/ disintegration Eys = 0.58 Mev/ disintegration EBv(Rx) = 0.33 Mev/ disintegration EBv(Rx) = 0 36 Mev/ disintegration Eyv(Rx) = 0.61 Mev/ disintegration Eyv(Rx) = 0.67 Mev/ disintegration " E8v(TG) = 0.32 Mev/ disintegration E8v(TG) = 0.34 Mev/ disintegration Eyv(TC) = 0.59 Mev/ disintegration Eyv(TG) = 0.64 Mev/ disintegration

4. Measurements and Approximations of Total Radioactivity The methods used to measure or approximate the total radio-activity in effluents and to determine radionuclide composition are as follows:
a. Fission and activation gases:

Radioactivity and radionuclide composition is determined by laboratory GeLi detector analysis in correlation with con-tinuous gross radioactivity monitoring by a gaseous channel detector in the release pathway.

b. Iodines:

Charcoal cartridges provide continuous sample collection. These cartridges are analyzed for radioactivity and radio-nuclide composition in the laboratory by a GeLi detector gamma spectrometer. Continuous radioactivity monitoring of the charcoal cartridge is also provided by a Na1 detector in-line with the release pathway.

c. Particulates:

Particulate filters provide continuous sample collection. These filtere are analyzed for radioactivity and radionuclide composition in the laboratory by a GeLi detector gamma spectrometer. Con-tinuous gross radioactivity .anitoring the particulate filter is provided by a Na1 detector in-line with the release pathway.  !

                                                                                         ,

37 i

_--_ _- O Effluent and Waste Disposal (continued) i

d. Liquid efflar ts:

Each batch of liquid effluent is analyzed for radioactivity and radionuclide composition in the laboratory by a GeLi detector gamma spectrometer. Each batch is also analyzed for gross radioactivity _by both gross beta and gamma. In addition each batch is monitored for gross radioactivity by an NaI detector in-line with the release pathway.

5. Batch Releases The following information relates to batch releases of radioactive materials-in liquid and gaseous effluents:
a. Liquid
1. Number of batch releases: 76 <
2. Total time period for batch releases: 2.37 E+04
3. Maximum time period for a batch release: 1. 74 E+ 03
4. Average time period for batch releases: 3.12 E+02
5. Minimum time period for a batch release: 1.46 E+02 t
6. Average stream flow during periods of release of effluent into a flowing stream: 5.84 E+07 liters / min.
                                                                                     )
b. Gaseous
1. Number of batch releases: None
2. Total time period for batch releases: N/A l
3. Maximum time period for a batch release: N/A
4. Averags time period for batch releases: N/A
5. Minimum time period for a batch release: N/A
6. Abnormal Release
a. Liquid
1. Number of releases: 0
2. Total activity released: None
b. Gaseous
1. Number of releases: 0 -
2. Total activity released: None 1

1 38 ) s

r__-

                                              ' TABLE lA EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT GASEOUS EFFLUENTS-SUMMATION OF ALL RELEASES lst          2nd    Est. Total Unit         Quarter     Quarter   Error, %
   -A... Fission & activation gases
1. Total release- Ci 1.65 E+03 8.34 E+02 2.0 E+01
2. Average release rate for period pCi/sec 2.10 E+02 1.06 E+02
3. Percent of Technical Specification limit  % *
  • B. Iodines
1. Total lodine -131 C1 <2.78 E-02 <9.11 E-04 3.0 E+01
2. Average release rate for period pCi/sec53.54E-03 5,1,16E-04
3. Percent of Technical Specification limit  % ** **

C. Particulates

1. Particulates with half-lives >8 days Ci <4.44 E-03
                                                                   ,
                                                                               <3.26 E-03    5.0 E+01 l        2. Average release rate for period              pCi/see <5.65 E-04
                                                                   ,
                                                                               <4.15 E-04
                                                                                ,
3. Percent of. Technical Specification limit  % ** **
4. _ Gross alpha radioactivity C1 4.27 E-05 2.96 E-06 D. Tritium
1. Total release ci 5.68 E-01 4.33 E-01 3.0 E+01
2. Average release rate for period pCi/sec 7.22 E-02 5.23 E-02
3. Percen: of Technical Specification limit  % * *

! 6 The noble gases and tritium are combined in the Technical Specification discharge limit. The first quarter releases were 2.21 E+00% of the allowable limit while the second quarter releases were 3.68 E-01% of tha allowable limit. l

   ~**  The iodine -131 and particulates with half-lives longer than 8 days are i

combined int: one Technical Specification. The first quarter releases l ware 1.73 E+00% of the allowable _ limit while the second quarter releases were'3.01 E-01% of the allowable limit. l

                                                                     '

39

TABLE IB EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT CASEOUS EFFLUENTS-ELEVATED RFLEASE CONTINUOUS MODE

  • BATCH MODE NUCLIDES RELEASED UNIT 1st QUARTER 2nd QUARTER 1.. Fission gases.

krypton-85. C1 2.19 E+01 1.52 E+00 krypton-85m Ci 6.90 E+01 5.38 E+01 trypton-87 Ci 6.14 E+01 8.23 E+01 krypton-88 C1 1.21 E+02 1.40 E+02 xenon-133 Ci 1.96 E+02 1.49 E+02 xenon-135 Ci 2.12 E+02 2.34 E+02 xenon-135m Ci 5.53 E+00 8.66 E+00 xenon-138 C1 2.63 E+01 4.17 E+01 krypton-89 Ci 4.82 E-03 8.88 E-03 kryp ton-83m Ci 1.56 E+01 1.99 E+01 xenon-137 Ci 3.76 E-02 6.81 E-02 xenon-133m Ci 5.26 E+00 ~4.86 E+00 xenon-131m .Ci 1.35 E+00 4.01 E-01 Total for period Ci 7.35 E+02 :7.36 E+02

2. Iodines.

iodine-131 Ci <1.29 E-02

                                                        ~
                                                                     <2.19 E-04 iodine-133                                 Ci 51.11E-02         52.32E-03
   . iodine-135                                 Ci <1.72 E-03
                                                    ,
                                                                     ;gt.43 E-03 Total for period                            Ci <2.57 E-02
                                                    ,
                                                                      <4.97 E-03
                                                                       ,

3.

                      '

Particulates. strontium-89 ' Ci 2.32 E-05 7.32 E-10 strontium-90 Ci 7.04 E-07 8.86 E-09 cesium-134 Ci <2.70 E-06 <9.59 E-07 cesium-137- Ci 73.01 E-06 75.04 E-06 barium-lanthanum-140 Ci 33.60E-05 34.95E-05 iodine-131 Ci <3.96 E-05 <6.27 E-07 cobalt-58 Ci 1.32 E-07 4.06 E-07 cobalt-60 Ci 2.52 E-07' 4.99 E-06 manganese Ci 3.78 E-07 2.42 E-08 chronium-51 Ci 1.30 E-06 Total-for period Ci <1,07 E-04

                                                     ,
                                                                      <6.16 E-05
                                                                       ,
  • No batch discharges were made.

40 _ _ _ _ _ - _

_ . _. . _ . _ _ ( TABLE 1C. EFFLUENT AND WASTE DLSPOSAL SEMIANNUAL REPORT CASEOUS EFFLUENTS-BUILDINC VENT RELEASES NUCLIDES RELEASED -UNIT lst QUARTER 2nd QUARTER

1. Fission gases, krypton-85 Ci 8.81 E-01 4.58 E-02 krypton-85m Ci 5.69 E+01 6.28 E+00 k ryp ton-87 Ci 8.94 0+01 1.13 E+01 krypton-88 Ci .l.53 E+02' 1.78 E+01 xenon-133 C1 2.25 E+02 1.79 E+01 xenon-135 C1 2.80 E+02 2.89 E+01 xenon '.35m Ci 1.27 E+01 2.05 E+00 xenon 138 Ci 6.43 E+01 1.07 E+01 krypton-89 C1 1.64 E-01 5.66 E-02 krypton-83m Ci 2.27 E+01 2.64 E+00 xenon-137 Ci 6.82 E-01 2.10 E-01 xenon-133m Ci 6.84 E+00 5.91 E-01 xenon 131m Ci 6.13 E-01 3.75 E-02 Total for period Ci 9.12 E+02 9.84 E+01
2. Iodines.

iodine-131 C1 <1.49 E-02

                                                     ,
                                                                      <6.92 E-04
                                                                          ,

lodine-133- Ci <3.44 E-03 <4.29 E-04 iodine-135 C1.  :][2.'71E-02 ][2.70E-02

     -Total for period                    Ci       <4.54 E-02
                                                     ,              ,<2.81 E-02 3.. Particulates.

strontium-89 ' Ci 2.99 E-05 1.58 E-07 l strontium Ci 2.45 E-06 9.12 E-07 cesium-134 Ci <3.34 E-04 <1.59 E-04

                                                                         ,

cesium-137 Ci- <5.22 E-04 <2.31 E-04

     . barium-lanthanum-140_
                                                                               ~

_ C1' 3[2.33E-04 .)[2.46E-04 ) iodine-131. C1 <4.36 E-04 <5.98 E-05 l cobalt C1 1.55 E-04 ,1.39 E-04 cobalt-60 Ci 1.79 E-03 1.89 E-03. manganese Ci '5.29 E-04 4.34 E-04 chromium-51 C1' 2.35 E-04 zine-65' Ci 6.61 F-05 4.32 E-05

                       ,

Total fot period _. Ci <4.33 E-03

                                                   ,                <3.20 1-03
                                                                       ,

41,

                                                             .              _.            . . _-
                                .

TABLE 2A EFFLUENT AND WASTE DISPOSAL, SEMIANNUAL REPORT LIQUID EFFLUENTS-SUMMATION OF ALL RELEASES EST. TOTAL UNIT 1st Qi"RTER 2nd QUARTER ERROR % A. Fission and activation products.

1. . Total release (not including tritium, gases, alpha) C1 12.62 E+00 14.66 E+00 2.0 E+01
2. Averare diluted concentration during period pCi/mi 3.2.43 E-07 3,9.14 E-07
3. Percent of applicable limit  % 1.05 E+01 1.94 E+01
  .B. Tritium.
1. Total release ci 14.86 E+00 19.31 E-01 2.0 E+01
2. Average diluted concentration during period pCi/ml 14.50 E-07 11.75 E-07
3. Percent of applicable limit  % 1.50 E-02 5.83 E-03
   'C . Dissolved and entrained gases.
1. Total release Ci 1871 E+00 11.87 E-03 5.0 E+01
2. Average diluted concentration during period pCi/ml 18.06 E-07 13.51 E-10
                                                  %              *            *
3. Percent of applicable limit D. Cross alpha radioactivity.
1. Total release- Ci 16.18 E-04 14.92 E-04 5.0 E+01 E. Volume of waste released (prior to dilution) . liters 3.05 E+06 2.00 E+06 1.0 E+01

, F. Volume of dilution water used ! during period. liters 1.08 E+10 5.32.E+09 1.0 E+01 l

  • None applicable.

l I-i , 42 (.

                                                       -_.                  .

TABLE 2B EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT LIQUID EFFLUENTS Continuous Mede* Batch Mode Nuclides Released Unit 1st Quarter 2nd Quarter

  • strontium-89 . Ci 6.01 E-03 2.92 E-02 strontium-90 C1 1.23 E-04 3.68 E-03 strontium-92 Ci 8.17 E-04 4.76 E-04 cesium-134 Ci 12.61 E-01 <1.34 E-01 cesium-136 Ci 1.00 E-02 cesium-137 18.52 E-05 C1. 13.57 E-01 2.15 E-01 iodine-131 Ci <2.81 E-01
                                                                  ,                                  11.07 E-02 cobalt-58                      C1                                                                6.22 E-02 13.30 E-01 cobalt-60                     Ci                                                                 3.93 E+00 i

12.72 E-01 iron-59 Ci 1.27 E-02 t 13.44 E-01 zine-65 Ci <7.58 E-03 manganese-54 14.24 E-02 Ci 51.65 E-01 1.92 E-01 chromium-51 Ci' 13.83 E-02 11.06 E-01 ant _ mony-124 Ci 9.99 E-05 1.08 E-02 r.rconium-95 Ci 57.38 E-03 12.01 E-02 lobium-95 Ci 12.68 E-03 19.99 E-03

     .nolybdenum-99                oCi                                                                 4.53 E-04 11.63 E-03 technetium-99m                 Ci                          <1.63 E-03                          <8.56 E-03 barium-lanthanum-140           Ci                           77.78 E-03                          <2.24 E-32 cerium-141                      Ci                          56.46E-03                           31.51E-02 silver-110m                   Ci                            3.33 E-03                            1.96 E-03 sodium-24                      Ci                           4.78 E-04                            1.06 E-03 unidentified                   C1                           15.15 E-01                          12.97 E-02 Total for Period Above         Ci                           12.62 E+00                          14.86 E+00 xenon-133                      C1                           1857 E+00                           11.28 E-03 xenon-135                      Ci                           $1.37 E-01                          15.87 E-04
  • No continuous. mode discharges made.

l 43

  -

$

                                                                             . - _ _ _ . _ _ _ - - _

_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

                                                                                                                     .. ..

TABLE 3 EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT SOLID WASTE AND IRRADIATED FUEL SHIPMENTS A. SOLID WASTE SHIPPED OFF3ITE FOR BURIAL OR DISPOSAL (not irradiated fuel) 6-MONTH EST. TOTAL

1. Type of waste UNIT PERIOD ERROR % {

a r, Spent resins, filter sludges, m3 6.70 E+01 evaporator bottoms, etc. Ci 9.73 E+01 15%

b. Dry compressible waste, con- m3 1.46 E+02 taminated equip, etc. ~

Ci 1.11 EM 0 25%  ! c, . Irradiated components, con . m3 trol rods, etc. Ci None  ;

d. Other. m3 i Ci None
2. Estimate of c.ajor nuclide composition (by type of waste), percent %
a. chromium-51 7.18 E+00 cobalt-60 2.66 E+01 cobalt-58 2.18 E+00 -

manganese-54 1.08 E+01 zirconium-niobium-95 1.84 E-01 ] i zine-65 1.53 E+00 i silver-110m 8.39 E-01 iodine-131 6.92 E+00 cesium-137 2.44 E+01 cesium-134. 1.91 E+01 cesium-136 1.07 E-01 antimony-124 1.02 E-01 barium-lanthanum-140 7.57 E-02

b. chromium-51 2.29 E+00 cobalt-60 3.17 E+01 cobalt-58 2.73 E+00 manganese-54 1.39 E+01 zinc-65 1.01 E+00 ailver-110m 6.29 E-01 iodine-131 2.27 E+00 cesium-137 2.48 E+01 cesium-134 2.05 E+01 fron-59 1.87 E-01 44

__- -_--._ _ _______-.

  .-           .-_   -                      - - - -       . . . ..             -.

TABLE 3 ?(continued)'

                                                    .
3. Solid Waste Disposition a

Number of Shipments Mode of Transportation Destination 30 Sole use vehicle Beatty, Nevada B. IRRADIATED FUEL SHIPMENTS-(Disposition) Number of Shipments Mode of Transportation Destination None N/A 14/A

it

                                                                                    .
                                                                                      )
                                                                                  'l l

l

.45
             .

l l HAZLETON ENVIRONMENTAL CCCNCS3 i 1 l l 1 APPENDIX A Monthly Tables of Hourly Data

A-1

_ _ _ _ _ _ _ _ _ _ _ _ HAZLETON ENVIRONMENTAL CCCNC'JO TABLE OF C0flTEf1TS Page Definitions ................................................. A-3 t r ra ngement of Hou rly Data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-4 I l

                                                                                                                 ,

A-2

                                     ,

-

 - -

_ _ _ _ . _ . _ _ _ _ _ _ _ _

                                                                     .   .--        ___
                                               ..             .

HA2LETON CNVIRONMZNTAL SCl!NCE Definitions The tables presented in this appendix contain hourly averages for all continuously monitored parameters. Each page contains one full month of data for one parameter at one site. Each table is captioned at the top to describe the parameter with units of measurements, the site name, month and ' year. Along the right hand side of each table are shown the mean values of the parameters for each day. Along the bottom of the table is shown the mean value for each hour of the day. Also presented near the bottom of the table are the absolute maximum and minimum value for the month and the monthly mean valce. The next line contains the number of valid observations for the month and the percentage of possible valid observations for the month. Next a l, listing of the maximum and minimum values for each day is shown and finally the mean of the daily maximum values and mean of the daily minimum are shown. For precipitation data, totals, rather than means, are given. Monthly Data Tables Symbols Code Meaning Blank Missing Data

                      -C-                         Instrument Calibration
                      -I-                         Wind Light and Variable
                      -d -                        Sensor Ici.ng s
                      -D-                         Power Failure                         j l

_ A-3

HAZLETON ENVIRONMENTAL CCENC23 LIST OF TABLES Title Page Wind speed measured at the 35-ft level at Cooper Nuclear Power St a t i o n , J a nu a ry 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-7 Wind speed measured at the 35-ft level at Cooper Nuclear Power St a t i o n , Fe b ru a ry 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-8 Wind speed measured at the 35-ft level at Cooper Nuclear Power St a t i o n , Ma rch 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-9 Wind speed measured at the 35-ft level at Cooper Nuclear Power St a t i o n , Ap ri l 19 80 . . . . . . . . . . . . . . . . . , , . . . . . . . . . . . . . . . . . . . . . . . A-10 Wind speed measured at the 35-ft levC z'. Cooper Nuclear Power Station, May 1980 .............,................................... A-11 ' Wind speed measured at the 35-ft level at Cooper Nuclear Power Station, June 1980 ............................................... A-12 Wind direction measured at the 35-ft level at Cooper Nuclear Powe r St a t i o n , Ja nua ry 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-13 Wind direction measured at the 35-ft level at Cooper Nuclear Powe r St at i o n , Feb rua ry 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-14 Wind direction measured at the 35-ft level at Cooper Nuclear Powe r St at i o n , Ma rch 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-15 Wind direction measured at the 35-ft level at Cooper Nuclear

Powe r S t a t i o n , Ap ri l 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-16 Wind direction measured at the 35-ft level at Cocoer Nuclear Powe r S t a t i o n , May 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-17 Wind direction measured at the 35-ft level at Cooper Nuclear Powe r St a t i o n , Ju n e 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-18 Wind speed measured at the 318-ft level at Cooper Nuclear Power St a t i o n , J a nu a ry 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-19 Wind speed measured at the 318-ft level at Cooper Nuclear Power St a t i o n , Feb rua ry 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-20 Wind speed measured at the 318-ft level at Cooper Nuclear Power St a t i o n , Ma rch 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-21 Wind speed measured at the 318-ft level at Cooper Nuclear Power St a t i o n , Ap r i l 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-22 A-4

__ __ . - _ - . _ _ . HAZLETON CNVIRONM2NTAL. CClZNC23 LIST OF TABLES (Continued) Title P_aSe Wind speed measured at the 318-ft level at Cooper Nuclear Power Station, May 1980 ................................................ A-23 Wind speed measured at the 318-ft level at Cooper Nuclear Power St a t i o n , J u n e 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-24 Wind direction measured at the 318-ft level at Cooper Nuclear Powe r St a t i o n , Ja nua ry 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-25 Wind direction measured at the'318-ft level at Cooper Nuclear Powe r St a t i o n , Feo rua ry 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-26 Wind direction measured at the 318-ft level at Cooper Nuclear Powe r S t a t i o n , Ma rch 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-27 Wind directica measured at the 318-ft level at Cooper Nuclear

 ,

Powe r S t a t i o n , Ap r i l 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-28 Wind direction measured at the 318-ft level at Cooper Nuclear Powe r St a t i o n , May 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-29 Wind direction measured at the 318-ft level at Cooper Nuclear Powe r St a t i on , Ju n e 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-30 Differential temperature calculated from the 318-ft to 35-ft levels at Cooper Nuclear Power Station, January 1980 ............. A-31 Differential temperature calculated from the 318-ft to 35-ft levels at Cooper Nuclear Power Station, February 1980 ............ A-32 Differential temperature calculated from the 318-ft to 35-ft level s at Cooper Nuclear Power Station, March 1980 . . . .. . . .. . .. . .. A-33 Differential temperature calculated from the 318-ft to 35-ft level s at Cooper Nuclear Power Station, April ~1980 . . . . . . . . . . . . . . . A-34 l l Differential temperature calculated from the 318-ft to 35-ft level s at Cooper Nuclear Power Station, May 1980 .. . . . .. .. . .. .. . . . A-35 Differential temperature calculated from the 318-ft to 35-ft level s at Cooper Nuclear Power Station, June 1980 . . . .. .. . .. . ... .. A-36 4 Differential temperature calculated from the 318-ft to 155-ft level s at Cooper Nuclea- Power Station, January 1980 . . .. . . .. .. . . . A-37 Differential temperature calculated fron' de 318-ft to 155-ft levels at Cooper Nuclear Power Station, February 1980 ............ A-38

                                    .

A-5 l l

HAZL.ETON CNVIRONMENTAL. CCCNC2]

                                                                                                                                        ;

LIST OF TABLES (Continued) Title Page Differential temperature calculated from the 318-ft to 155-ft level s at Cooper Nuclear Power Station, March 1980 . . . . . .. . . . . . ... A-39 Differential temperature calculated from the 318-ft to 155-ft level s at Cooper Nuclear Power Station, April 1980 . . . . . . . .. . . .. . . A-40 Differential temperature calculated from the 318-ft to 155-ft level s at Cooper Nuclear Power Station, May 1980 . . . . . . . .. . .. .. .. . A-41 Differential temperature calculated from the 318-ft to 155-ft level s at Cooper Nuclear Power Station, June 1980 . . . . . . .. . . . ... .. A-42 ' Ambient temperature measured at the 35-ft level at Cooper Nucl ea r Powe r Station , Ja nua ry 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-43 Ambient temperature measured at the 35-ft level at Cooper Nucl ea r Powe r Stati on , Feb rua ry 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-44 Ambient temperature measured at the 35-ft level at Cooper Nu c l e a r Powe r St at i o n , Ma rch 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-45 Ambient temperature measured at the 35-ft level at Cooper Nucl ea r Powe r Stati on , Ap ril 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-46 Ambient temperature measured at the 35-ft level at Cooper i Nu c l ea r P owe r St a ti o n , May 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-47 i I Ambient temperature measured at the 35-ft level at Cooper Nucl ea r Powe r Stati on , June 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-48

                                                                                                                                        ;

Amount of precipitation measured at Cooper Nuclear Power S t a t i o n , J a nu a ry 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-49 Amount of precipitation measured at Cooper Nuclear Power St a t i o n , Fe b rua ry 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-50 Amount of precipitation measured at Cooper Nuclear Power St a t i o n , Ma rc h 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . A-51 j Amount of precipitation measured at Cooper Nuclear Power Station, April 1980 .............................................. A-52 Amount of precipitation measured at Cooper Nuclear Power Station, May 1980 ................................................ A-53 Amount of precipitation measured at Cooper Nuclear Power Station, June 1980 ............................................... A-54 A-6

33 FT ut:D CFLED UPit) ,/, - COOPLp NUCLEAR STATION MEf t.OkOLOGIC AL DATA JahUAMI 1980 j 9"Ji jP T3*W\ k

    ..................................................................................................................................

MUUk

           ....................................................................................................................... DAIL7 DAT       0    1      2     3     4      5        6     7     8      9      10     11    12      13    14    15     16     17     18    29      20               21              22  23 mf&h
    ..................................................................................................................................

1 O t 0 t 1 1 0 3 2 2 4 2 3 2 2 0 2 1 1 1 2 0 2 3 1 2 4 4 4 4 5 7 8 5 4 5 5 6 6 7 8 9 9 9 9 9 9 9 6 6 7 3 7 5 6 5 5 6 7 1 7 7 7 7 4 3 3 2 3 0 3 3 3 2 5 I 4 2 2 8 2 0 0 3 3 3 9 8 9 12 13 11 11 8 8 10 11 9 9 10 9 7 ) 5 to 10 4 9 3 2 2 4 6 6 6 3 0 5 6 7 8 30 to 13 6 6 12 la 14 16 16 17 16 16 13 5 3 3 6 .J. -J. Il 7 14 16 13 16 14 14 12 12 to S to le 8 5 4 2 2 3 5 2 2 9 W # 3 3 2 0 0 1 2 2 2 2 5 5 7 8 8 8 6 6 6 7 7 4 S 9 6 5 6 6 8 9 5 6 7 6 4 6 5 5 7 9 e 10 0 0 9 to 10 , 7 0 10 e e O 9 to 10 il 13 9 15 le 20 20 21 20 19 21 15 35 57 17 17 22 18 15 2 11 19 19 24 2J 24 21 to 15 13 12 16 15 49 le 18 17 13 6 2 2 2 2 5 J 13 g 12 2 3 3 5 4 7 7 e 11 9 14 12 16 19 20 16 19 17 16 15 to 13 14 14 12 9 g 13 to 14 35 16 17 16 15 la 12 9 12 12 12 80 0 5 4 0 0 2 3 2 2 1 g 14 8 8 I I 0 1 1 2 2 6 g 9 9 to 10 11 52 to 9 0 9 10 8 6 6 - 15 5 7 8 5 7 5 5 6 6 5 4 4 2 2 2 0 2 3 3 2 3 4 5 0 4 3

 '

16 8 8 7 7 11 12 14 16 16 16 16 16 37 17 17 16 13 10 5 8 to 32 9 e 12 O p 37 7 6 4 6 6 5 .J. .J. .J. -J. 4 5 3 4 5 1 0 2 2 0 3 1 1 1 3 Z q t9 39

            .J. .J. .J.

2 2 7

                              -J. .J. -J. =J. .J. *J. .C. -C. .C. .C. .C. .C. .C.

10 to 10 9 9 5 13 3 to 4 e 5 9 4 e to 1 2 e 1 e 3 u g 20 6 4 5 5 6 7 5 6 5 4 2 3 3 3 4 2 0 0 2 3 3 2 1 1 3 E 21 1 1 4 6 6 5 5 e e e le 13 12 to 12 Il 12 18 8 8 11 12 12 12

  • 22 14 12 18 to 18 17 14 13 15 15 22 18 20 37 16 13 to 10 6 6 6 5 5 7 12 23 7 2 0 t 2 3 3 2 6 6 7 5 6 5 5 3 3 4 4 6 12 32 14 5 24 17 I4 12 12 i

to to 12 15 14 15 3 to il 7 '? 5 6 4 2 6 6 6 11 8 9 I ' 25 6 8 to to 8 6 l'O 9 8 82 11 13 16 12 8 8 82 15 to 13 13 14 13 11 11 5 26 e le to 12 16 12 12 12 14 12 17 13 14 9 9 to 4 9 5 7 7 7 7 to il 0 27 a 6 6 6 3 6 4 5 6 - 6 4 7 4 5 5 4 5 4 2 l 1 2 3 0 4 g 29 o 0 4 6 5 5 6 4 3 4 6 4 29 5 2 3 4 1 3 2 1 3 4 4 1 1 3 3 0 2 2 4 2 2 4 3 3 7 3 4 4 5 7 7 4 4 4 4 4 4 3 7 30 5 6 e 1 6 6 6 4 4 5 6 6 6 7 7 30 9 0 5 5 5 6 6 3 6 0 31 1 2 3 3 3 3 2 2 2 1 2 3 2 3 2 3 3 2 0 0 0 t 1 0 2 E Moup s.v # MLAN 6 6 7 7 7 7 7 W 7 $ $ $ 9 9 9 8 7 7 6 6 6 7 7 6

     ..................................................................................................................................

MAISMUMa 23 MIhtMUMm 0 MEAN e 7.24 694 WALID HB3ERWAf tfaMS l 96.8%) DAILV EXTREME S1ATISTICS

                      .....................................................................................................

DAT 1 2 3 4 4 6 7 8 9 10 11 12 13 14 15 MA1 4 9 7 13 13 Il 16 8 to 22 24 20 17 12 8 min 0 4 0 0 0 3- 2 0 4 8 2 2 0 0 0

                      .....................................................................................................

DAY 16 37 le 19 20 21 22 23 24 25 26 27 28 29 30 31 MAR 17 7 5 13 7 34 22 14 17 16 17 5 7 5 10 3 Mik 5 0 1 2 4 1 5 0 2 6 7 0 0 0 3 0

                      .....................................................................................................

MA31 mum MLANs 82.76 Mih1 MUM MEAha 2 _ _ _ _ _ _ - - _ _ _ _ _ __

m,. 35 ,7 .l.0 m e.

                                                              . m eA.      m ,,0.

FLbHUANY 1980 l....

                                                                                                 .m .mmA             0474                  . ,

o ggg

                                                                                                                                                            -_
  ...................................................................................................................................

HUOM

        .......................................................................................................................

6 7 8 9 to 11 12 13 14 15 16 11 18 19 20 28 22 OflL7 23 ptAn

  ..................................................................................................................................

DAT 0 1 2 3 0 4 0 5 0 0 0 0 0 0 2 5 7 9 9 9 10 3 7 7 6 8 8 4 t 0 0 1 3 3 2 2 3 3 3 2 4 6 5 7 8 7 6 6 6 4 4 4 4 4 4 3 1 2 5 3 2 3 2 4 4 J 2 2 2 2 2 1 3 3 3 3 3 4 4 5 4 4 4 5 3 7 I e 6 e e e e a e s 1 6 e 7 5 4 4 4 5 6 7 6 7 e 7 16 16 15 16 15 13 14 12 SC to 9 I- 6 11 5 6 5 5 7 7 4 6 11 14. 13 17 0 6 5 4 3 3 3 3 3 0 0 0 4 6 8 9 7 6 5 5 4 4 5 5 5 3 4 J 4 5 5 5 5 4 5 6 8 6 3 0 0 0 0 0 0 1 0 0 1 3 3 7 0 4 6 5 4 2 4 3 4 6 4 6 6 5 5 6 6 6 5 3 2 0 0 0 0 4 d 0 0 0 0 0 0 0 2 3 3 2 3 3 2 2 2 4 4 6 2 2 U 9 0 0 0 to 3 4 4 2 6 4 0 3 0 1 2 3 2 0 2 7 6 9 8 7 6 7 9 6 5 5 Z 9 12 11 9 8 7 5 3 5 2 2 7 ll to to 8 7 5 5 6 5 to e 9 to il 10 12 10 11 to 12 15 to 7 7 E 4 6 9 12 12 3 3 9 2 6 2 4 3 4 3 3 4 2 2 3 3 4 4 5 4 3 2 4 2 2 5

  • 3 4 2 3 2 3 4 4 2 13 7 3 6 7 7 6 5 6 6 5 6 6 3 7 7 7 8 8 7 8 6 4 5 4 2 4 4 14 9 0 6 =J. .J. .J. .J. .J. .J. .J. -J. .J. -J. .J. -J. .J. -J. -J. .J. .J. .J. -J. 15 9 j
 , Ib 9                  9                 9    10       9    9    9     11       6       3      2       9       8    7   5     8 0

16 12 12 6 9 8 9 9 7 7 > 17 5 1 1 0 2 1 2 4 4 5 3 3 5 9 9 9 9 10 8 6 4 5 7 6 6 9 5 13 g 20 19 21 17 18 21 13 12 7 h tu 19 7 9 6 10 9 9 0 8 8 8 9 5 14 5 11 8 12 5 11 6 22 9 21 6 4 19 5 6 5 3 4 6 4 5 5 4 5 6 6 6

                                                                                                                                                                                   $

E 4 7 5 5 7 9 e 0 0 8 6 7 7 6 6 0 6 20 5 2 3 2 6 1 8 9 9 8 9 9 8 6 5 5 4 5 8 8 8 8 8 7 3 28 7 9 8 7 8 7 9 g 3 7 4 6 7 5 6 5 3 4 5 5 5 4 7 22 10 9 10 10 10 5 2 10 9 9 0 10 to 10 8 8 5 3 2 4 4 7 7 5 6 8 8 9 9 9 7 to 23 4 2 2 1 3 4 3 7 5 2 6 8 8 6 5 4 4 9 16 16 6 f"

   ,24     5    4        2   2     3 2h    23   25     25    25    24     20    18   18   17     17      16          16          16    15    16    15     14     10        7      5       4       2     1   1   15  g 16         17          17    14     13     10        7       9    10         0   5    3   10  g 26     2    4        6   6     8      7     9   il   12     14      16                            le 5       4                        4     4       4    4    4      8       6       3       2      2        2    2  2     4  =

27 4 2 3 4 6 6 4 4 4 E to 9 9 5 8 1 6 7 7 7 7 7 5 s 4 12 10 e 2e 29 13 to 0 9 1 to 2 10 7 12 9 11 9 9 il 12. 10 11 12 11 11 18 10 9 10 9 10 10 to 10 2 7 7 O HOUHL7 6 6 6 6 5 6 6 6 6 e 7 7 e a e e 1 7 6 6 6 5 6 m

  ..................................................................................................................................

atAn 6 MAXIMUMS 2h MthlMuse O PLAM e 6.40 gg 675 W AI.tp UBSt.R V A780h5 ( 99,741 DAILY ERTNEME STAR!STICS

                   .....................................................................................................

2 3 4 5 6 7 8 9 10 11 12 13 14 15 DAY l 0 5 5 17 9 g 6 5 9 12 15 9 8 15 MAX 10 6 m l N, 0 1 1 4 4 0 0 0 0 0 2 2 2 2 e.................................................................................................... DAY 16 17 18 19 20 21 J2 23 24 25 26 27 20 29 22 le 9 9 10 to 16 25 15 e 13 12 etX 12 to 0 6 J t 4 2 2 1 1 2 2 0 7 MIN 2

                   .....................................................................................................

mAXinum MEAms it.34 MINIMUM MLANs 2,

                                                                               . _ _ _ _ -

__ _ __ m _ _ _ _ _ _ . . _ ._. __ _ _ _ . . 35 FT UIED 3 PLED (KPN) D P iM it+ COOPEh NUCLEAR STAT 80N mETEOROLnGICAL DATA MARCH 1900 JJp D-W !I u a aa! ,AA W'h.,,jiv, E 0

                             ..................................................................................................................................

HOUM

                                     ....................................................................................................................... DAILT te a f      0     8       2     3        4     5     6      7      8      9     10       !!     12     13   84       15      14      17    is  39   20      21      22          23 mEAN
                             ............................... ..................................................................................................

I le il il 11 II 80 9 9 to le 10 to to 9 8 7 8 7 4 4 4 4 3 0 e 2 2 2 2 2 2 6 4 5 6 11 15 10 16 17 17 14 13 82 8 8 9 6 8 to 9 3 7 to e 5 4 6 b 6 7 9 11 11 12 11 to 12 9 6 2 0 0 2 1 0 6 4 2 3 5 2 3 7 8 e 8 8 9 9 12 13 13 18 19 17 17 16 17 17 14 le It I

          ..                       5   19    20      13    13        9    10    13      7    12      12                      9       8    9          7    7       5     3    2   2       2       2           3     e         )

6 2 3 2 4 4 3 7 8 12 13 13 18 to 9 6 2 3 5 4 4 4 4 6 6 6 N 1 5 3 7 7 8 6 6 4 5 9 8 8 9 9 0 0 0 6 7 6 4 5 5 4 7 P e 2 2 2 2 2 2 0 0 0 0 0 0 1 5 6 5 4 3 3 3 3 4 3 2 2 5 9 8 2 1 2 1 2 5 9 9 10 0 7 e 1 8 9 8 8 6 7 7 2 I I 5 d to 3 6 9 6 2 3 2 'l 8 14 11 13 82 p2 9 8 8 6 5 4 3 0 4 3 6 0 il 4 2 1 2 0 1 4 6 to 9 0 0 8 7 7 7 9 0 9 1 8 5 5 6 2 12 6 7 9 Y 9 8 10 to 10 0 7 7 7 7 7 6 7 4 3 2 1 0 2 0 6

  • I3 0 0 0 0 0 8 8 15 le 16 87 13 12 13 12 11 tt 10 6 2 2 1 1 3 7  !
                                                                                                                                                                                                                             &

14 0 0 3 6 8 9 9 il 9 1 3 2 2 1 2 4 8 1 3  % 1 5 15 4 4 3 2 2 4 6 6 26 to 84 le 19 20 16 13 12 to 9 to it 11 to 10 10 $ 16 0 B 3 12 14 15 le 16 17 13 14 11 9 15 10 15 13 3 17 14 87 15 14 15 83 10 9 7 8  !! 10 80 12 12 12 to 6 0 2 1 0 0 0

  • O 33 16 0 2 6 10 tt 82 12 14 19 24 25 26 26 26 28 26 22 36 81 9 10 18 10 8 15 g h 19 JO 7

e 7 7 8 18 9 tu il 13 15 15 14 10 16 3 17 0 22 10 24 to 26 40 23 15 22 le 22 17 19 17 le 17 16 17 9 18 12 2 3 11 1 11 6 10 7 9 14 12 21 0 9 9 7 6 7 7 8 9 9 0 9 10 9 6 5 4 4 4 4 2 J 3 4 6 E 22 4 6 e 1 9 e to 9 13 18 17 19 19 17 16 14 18 9 6 5 7 5 6 7 10 23 9 it  !! 11 e 9 8 7 9 11 12 14 12 12 12 13 12 14 15 13 14 16 le 13 12 24 il 64 14 45 15 15 15 16 16 15 14 14 13 12 12 13 9 e 5 5 4 5 4 4 11 JS 2 2 3 2 2 2 2 1 2 2 3 4 4 4 5 5 6 6 5 5 5 4 4 5 4 I J6 6 4 2 2 4 5 5 7 9 0 83 12 to 10 10 10 9 8 5 6 5 2 3 4 7 g 27 2 3 4 6 3 3 5 5 5 3 5 6 6 e 7 6 6 5 4 6 4 5 6 7 5 g 2e 6 7 6 6 6 4 4 5 6 7 6 7 7 9 10 11 9 e 9 9 9 m to e  ? -- 29 10 9 10 10 10 8 8 8 8 7 6 7 9 9 18 18 to It 8 6 5 10 11 13 9 E 30 12 82 14 42 15 17 16 15 15 14 14 13 13 12 13 12 12 12 18 le 1 5 4 4 12 2 31 7 7 6 5 6 6 6 6 5 5 3 5 5 5 4 4 5 5 6 5 3 1 7 9 6 O wounov R acAn 6 7 s 7 7 7 e a 10 to 11 11 18 at 1 11 to 9 7 6 6 6 6 6 5 '

                               ..................................................................................................................................                                                                         t NAXimUns           27      mth! Mumm          O   MEAN s 8.86
                                                                                                  ?)0. VALID 083ERVAftDNS ( 98,1%)

DAILY EXTNEME STAftSfiC"

                                                 .....................................................................................................

DAT l 2 3 4 5 6 7 8 9 le 18 12 83 14 15 max 14 le 12 19 20 il 9 6 to 84 to 10 18 il 24 alu O 2 0 1 2 2 3 0 1 0 0 0 0 0 2

                                                 .....................................................................................................

DAY 16 17 IS 19 20 21 22 23 24 25 26 21 20 29 30 31 MAX 18 87 28 26 18 to 19 86 86 6 13 8 it 13 17 9 pim 3 0 v 1 3 1 4 7 4 1 2 2 4 6 4 3

                                                 ....................... .............................................................................

MAIlpuM MLANs 14.57 nlminum MEANs 2

 - ______       - _ _ _ _ - - _ .                                                                                                                                                                                    _ _      _ _ _ _ _ _
                                .

35 FT OIKD SPLLD tKFM) CooPEm mucLtan station METEOROLOGICAL DATA APRIL 1980

..................................................................................................................................

HOUR

      .............................................................................e.................                            ....................... DAILT 0 "1                      4      5      6      7    8      9      to     11     IJ   13     14   15    16     17    18   19   20   21   22   23 hEA4 2     3
..................................................................................................................................

Dat 17 18 18 14 11 30 33 9 9 a e e 6 7 to 7 11 I 1 6 7 9 13 13 14 th 0 0 0 8 9 6 6 7 Il 11 Il 16 15 8 2 6 6 7 4 5 6 6 6 3 4 0 13 36 17 20 20 20 20 20 20 te 19 14 to 9 9 14 3 14 to B 7 7 9 12 13 to 6 6 6 10 11 11 13 30 10 0 5 2 0 0 0 2 8 4 to il 18 11 to to 6 it O 4 4 4 7 to 18 14 14 14 16 12 12 12 to 10 12 a I 5 4 4 4 3 5 16 12 3 9 3 8 13 16 17 17 13 12 12 to 11 to 6 2 1 2 3 4 10 > 6 33 13 18 to 4 2 6 7 e e 1 4 9 a 8 .c. 9 9 6 3 4 4 5 5 4 2 7 to il 12 13 17 12 14 15 17 11 20 19 19 20 is 20 21 23 23 IS 22 20 15 15 12 8 6 la 5 4 16 19 20 10 19 20 22 20 17 19 17 17 17 15 13 7 5 9 16 19 18 to 16 15 4 4 3 3 3 4 4 4 6 7 3 to 3 3 2 3 3 0 1 2 3 3 2 3 3 9 9 4 9 6 4 3 0 0 0 0 0 6 0 10 18 to il 7 s 11 5 to 5 7 6 8 to 10 5 6 8 18 7 to to 10 12 32 12 to 13 12 13 13 13 31 5 2 0 9 2 12 0 5 14 6 g 4 5 2 4 0 3 2 5 3 5 7 8 9 13 13 15 15 13 2 2 3 3 3 14 12 9 9 to 9 6 4 5 6 5 4 8 12 11 11 18 31 15 13 14 16 12 12 13 9 to 4 7 35 to to 9 to 9 to 9 8 5 3 4 2 1 0 6 9 7 to 12 11 11 11 g 0 0 t 1 2 2 0 1 2 6 s 8 8 3 - 16 6 3 2 t t 3 3 6 3 17 9 6 6 6 7 9 e to 10 9 7 7 9 5 6 4 2 2 3 18 1 3 2 4 4 2 1 0 0 1 0 2 4 4 7 9 to e 8 4 1 O 1 2 4 O p19 3 3 4 4 3 3 3 4 11 34 15 16 15 13 13 12 13 9 5 2 2 3 3 2 7 2 y 0 0 4 4 6 6 5 4 4 4 1 0 0 0 0 3 ~ 20 4 7 9 6 3 2 3 5 e 2 8 13 3 19 17 16 15 16 15 Il e 5 5 6 4 7 A o 28 0 0 0 2 1 1 0 2 16 15 15 14 8 5 3 9 13 30 9 E 9 30 14 18 18 22 23 4 4 4 2 3 6 3 4 8 5 8 6 9 7 9 9 9 11 0 8 8 8 9 9 10 8 7 4 5 4 5 4 7 2 to 9 7 8 8 12 11 11 11 to 9 8 6 4 3 3 2 6 d 24 5 4 2 2 2 3 5 0 I 5 2 2 4 5 7 7 0 8 7 5 6 13 to 9 9 9 6 25 8 3 3 5 3 2 2 I 5 4 6 6 9 9 9 9 9 9 9 8 7 5 3 4 6 8 7 26 8 7 7 6 7 7 8 7 6 6 6 8 9 9 to 9 9 9 7 5 4 3 2 4 1 M 27 to 10 9 7 7 28 2 3 6 6 5 4 6 9 9 to 11 12 11 12 to 10 9 3 5 3 3 3 2 7 0 29 3 3 2 2 2 1 1 1 4 3 3 ( 5 7 7 7 1 5 6 6 5 3 2 2 2 4 g 6 a 6 5 5 6 2 4 30 2 3 2 1 1 1 3 2 2 3 5 7 7 3 1 3 3 Z OURLY ' 0 9 to 10 to 10 10 8 7 6 6 6 6 0 EAM 7 6 6 8 7 6 6 7 7 5 tt M

..................................................................................................................................                             N MARIMUMa          27     Minimums        O     MEAN e 7.59 106. VALID OMSERVAT10N5 t 98.2%)

DAILT FITREME S

                 .......................................................T..Aftstics 6       7       8
                                                                                             ............................................

9 to 12 13 14 IS DAY t 2 3 4 5 Il MAX 18 16 20 12 16 17 31 23 22 7 11 13 15 16 12 MIN 6 3 7 0 3 3 1 6 4 0 0 0 0 4 0

                 ............................. .......................................................................

DAV 16 17 18 19 20 28 22 23 24 25 26 27 20 29 30 MAX 9 to to 16 9 19 38 10 12 13 9 to 12 7 e MIM 0 2 0 2 0 0 3 2 2 1 3 2 2 3 3

                 .....................................................................................................

MARIMUM MFANs 13.32 MINIMUM Mr&he 2

                                                   -
                                                                         -                        -        _              _
                                                                                                                                      ._. _

35 FT CICD CPEE3 (CPO) COOPER CCCLt'AR STATIC 3 RETLOI0t.OGICAL DATA MAT 1990

  ..................................................................................................................................

HOUR

        .........................................e................................eto.................e........................                                                                                    DAILY DAf       0    1                   2                                 3     4      5     6    7     8                 9       to       31       12     13    14   15    16       17    le   19  20   21   22  23 MEAM
  ..................................................................................................................................

3 I 2 2 3 2 2 2 3 3 S S 7 1 7 8 9 8 7 5 3 0 a t t 4 2 1 0 0 0 0 0 0 1 2 4 5 5 4 4 5 4 4 3 2 3 2 0 2 2 2 3 3 2 3 1 1 0 1 1 1 4 5 6 7 7 7 6 9 8 5 2 0 1 0 3 3 4 0 0 1 0 0 0 1 0 2 2 3 3 4 5 5 5 S 10 S 3 to 9 2 1 3 5 2 7 3 1 2 2 2 1 7 8 7 1 1 6 1 5 5 4 3 6' 9 1 8 5 S I 6 6 4 3 2 1 1 2 1 5 e to it it  !? 12 12 14 14 6 6 7 1 6 4 7 )

      ?     S    4                    5                                4     3      7     0    1     9                   7      9       10       11     12    12   11    12       11    11   10    6   6    6   9     8  N 6    s                     5                               6     7      5     3    7     e                   9       e          7      e      1     1   6     6        6     5    2    1   1    0   t     s  F 9     2     3                    2                               2     3      2     2    4    Il             13          13       15       IS     1S    15   15    16       16    17   13    8  il   13  12    to  E to     31   12      11                                             9     9      9     s   36    to             16          15       13       11     13      9   e     e        e    10   12  13   12   18   1    11  d il      5    6                     6                               7     0      0     1    7     e                   s       7      to         a       9    9   0     8        7     7    5    4   4    4   3     1  0 12      S    S                      4                              3     4      4     5    3     1                   S       9      il         9       e  to    5     6        7     7    2    1   1    2   3     S  Z 13     11   13       13                                           13    11     12    13   13    11             12          13       18        to    to      9   1     1        1     4    2    0   0    0   0     e  g 0                           2                              2     3      2                4                   1       6          8      9    10    10   12    10        9     8    4    2   3    4   3     5 14 15      2 2

1 0 0 0 1 2 1 1 2 2 4 6 7 9 9 10 10 18 la 12 9 8 7 1 7 6 Z 16 7 1 7 7 7 to 9 5 9 e 8 8 10 11 12 10 9 9 9 to 9 9 6 9 9 $ 17 5 3 3 3 3 3 2 2 3 S 5 4 6 5 4 6 6 e e 9 8 6 9 s S E 18 6 6 6 5 5 1 5 4 6 6 4 6 5 5 5 4 5 5 5 3 S 4 3 3 5 O p 16 3 4 2 0 0 t t 3 3 2 1 2 4 I 2 2 2 3 4 2 Z g 20 3 0 0 0 t 0 0 0 0 t 3 4 4 1 7

                                                                                                                                                                                                                         -m 6 *21                                                                                                                                                                                                                   E 22 23                                                                                                                                                                                                                   Z 24                                                                                                                                                                                                                   d 25                                                                                                                                                                                                                   I 26 27                                                                                                                                                                                                                   5 28                                                                                                                                                                                                                   O 29                                                                                                                                                                                                                   g 30                                                                                                                                                                                                                  7 31                                                                                                                                                                                                                  O QUPLT                                                                                                                                                                                                                 E EAN       4     4                          4                         3     3      4     4    4     6                   1      7           0      t      8     9   0     8        9     7    6    5   5    8   4
   ..................................................................................................................................                                                                                    5 MAItMUMa                       10     MINIMUMS             O    MEAN e 5.74 464 VALID ORSFRfAft0MS ( 62.4%)

DAILY EXTREME STATISTICS

                     .....................................................................................................

DAT 1 2 3 4 5 6 7 8 9 to il 12 13 14 15

  • MAX 9 5 9 10 9 14 12 9 11 10 10 13 13 12 12 MIN 0 0 0 0 1 1 3 0 1 1 3 1 0 0 0
                     ....................................................................................................e DAT                                               16     17     le    19     20                    21       22          23      24      25    26      27       20    29    30    31 MAX                                               12      9      1     4       4 MIN                                                5      2      3     0       0
                     .....................................................................................................

MAIIMuu urAMs 10.22 MINiuUM WFANs 2 _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ __

_ _ _ _ _ - _ _ _ _ . _ 35 FT w!ND SPFED (NPNI D

                                                                                                                                                                                                                               ! I
                                                                                                                                                                                                                                    ^ im      .}

f, l l r ol. ifpj ,.<+<>s ntf 7L. q ni~j hn st .

                                                                                                                                                                                                                                                                                .
                                                                                                                                                                                                                                                                                  '

C00PEk NUCLFAR STAft0m METEOROLOGICAL DATA

                                                                                                                                                                                                                                '                            bj            h._,

JuhE 1980

           .......................................................................................................................... .......

H018 R Dat

                 ......................................................................................................................

0 1 2 3 4 5 6 7 8 9 to 11 12 13 16 SS 16 17 18 19 20 21 22 04tLT 23 *EAN

           ..................................................................................................................................

1 2 3 4 I 5 > I 6 g F 7 M a '4 9 0 to in Z 12 E E3 Z 14 l 15 5 16 E 17 o le Z D t9 $ , [ 20 E N 2t l I 22 2 4 23 b 24 7 to 10 10 to 12 10 10 9 10 7 3 4 a 6 s a , 25 3 3 3 4 3 2 2 S S 4 3 4 5 7 8 10 9 6 6 4 2 0 0 4 f* l l ' 26 3 S 5 4 4 3 4 7 0 4 3 5 6 6 6 6 9 to 0 6 5 S 3 5 S g 27 6 8 6 6 7 7 7 8 12 11 11 18 13 15 14 12 80 8 8 4 0 6 3 5 9 g 5 3 4 6 7 6 8 7 6 5 4 4 2 2 2 3 2 1 0 4 - 26 6 7 7 4 3 0 E 3 2 5 6 s A 5 4 5 4 4 4 4 1 0 0 0 0 3 29 1 1 2 6 Z 0 0 0 0 2 S 7 6 to 10 13 15 14 83 11 18 11 1 3 2 2 1 10 0 S O UUNLY E gah 4 4 3 3 3 4 6 7 7 7 8 8 9 9 9 8 7 6 4 4 4 2 3 3 gg

           ..................................................................................................................................

MAXtNuma le MINT 4Uma O p r. A N e 5.60 157. VALID OBSt:pVAft0NS ( 21.843 DAILY EXTNF4E STATIST:C8

                                         .....................................................................................................

DAY t 2 3 4 5 6 7 8 9 to il 12 13 14 15 4 NAK NIN

                                         .....................................................................................................                                                                          29         30 DAY    16      17    10   19    20                     28           22      23                 24        25        16            27    20 NAX                                                                                            12        10         10           15     0                                       8       15 3        0        3            3     0                                       0        0 MIM
                                         .....................................................................................................

MARAMuu MFANs 18.03 MtN! MUM MEANs S.

 . . _ .               ____ _ _ . . _                                                                                       . _ _ _ _ _ _ _ _                       . _ _            _ _ _ _ _ . . _ _ _ _ . _ _ _ _ _ . .

h\, n f ]f11 y' 4 n

                                                              'f dg' i

35 FT u!ND DIREC710N IDLG3 3 }lb[L U U U$ A k 6Uh Ja COOPLp huCLEAR STATION METEONOLOGICAL DATA JANUARY 1980

   ..................................................................................................................................

HOUM

        .......................................................................................................................

o D41LT DAT 1 2 3 4 5 6 7 8 9 30 11 12 13 14 15 16 17 16 19 20 28 22 23 MEA 4

   ..................................................................................................................................

0 2a2 0 .l. .l. Il2 0 169 219 191 166 183 20s 217 222 0 160 153 1 2 324 337 331 348 349 340 347 355 356 359 356 357 4 4 9 9 2 359

                                                                                                                                                                      -1   *I. .l.

7 360 0 28% 297 g 7 7 il 353 g 3 344 343 350 336 33s 340 349 340 347 353 359 358 9 13 342 359 340 344 44 0 56 91 160 S9e 4 20s 195 199 161 0 0 168 172 185 190 222 220 2u9 383 238 230 244 22p 235 238 242 242 248 237 N p-5 241 261 128 291 341 335 341 It) 144 342 349 350 -1 .l. .l. .l. 0 868 142 149 146 153 172 174 pg 6 175 178 184 879 172 182 184 186 192 222 217 194 237 326 128 7

                                                                                                                                                                                                           .(

293 305 2e9 284 350 305 2ss 209 302 304 323 307 316 314 387 329 346 342 355 380 254 0 0 0 -1 .45I 348 0 0 .I. .l. 6 20 76 78 62 75 63 9 23 19 13 2 359 154 350 352 353 6 77  ?? 59 51 Il 35 40 38 27 g 11 110 lie 119 119 130 139 140 137 128 126 126 130 133 to 11 139 324 120 lie 127 140 IBF 146 150 150 161 166 174 181 175 168 162 164 166 173 178 ISO 101 107 El 896 238 275 326 324 325 322 383 380 33 311 304 302 296 296 290 290 290 290 386 1 .l. .I. .l. Z 12 13 164 84 90 116 127 140 119 127 126 134 142 150 164 100 185 185 192 173 172 170 169 170 173 176 C 174 176 179 lie 179 194 194 192 193 192 205 215 285 229 251 253 272 0 0 .l. 1 .l. .l. .l. g 14 1 .l. .I. .l. 0 .I. .l. 126 155 145 542 126 136 131 830 138 130 137 li6 142 143 136 115 lie 3 15 lie 122 125 127 128 132 133 154 142 130 130 130 824 80 95 O 0 189 39 29 61 6 349 355 34. [." 16 154 354 356 356 356 359 358 344 340 34C 348 346 350 346 343 342 340 344 344 342 337 329 306 295 2 LJ 17 298 299 296 194 282 289 272 288 204 278 306 304 288 31) 204 241 0 42 72 0 143 Ill 152 62 { te 166 149 .l. 20 278 81 143 135 133 105 lis 138 125 125 13e 800 120 106 94 66 145 1 .l. pg 19 1 9 )Se 5 5 5 7 IO 5 9 10 8 6 6 5 4 9 7 13 5 9 6 to 7 20 9 359 354 350 348 357 5 12 345 4 360 30 61 360 334 310 0 0 .l. 207 230 2s4 347 94 Z 21 4 169 157 172 193 193 199 204 191 204 204 283 205 212 235 251 254 273 266 277 267 200 304 307 307 ) 22 23 303 383 297 2WI 203 326 269 289 329 330 340 331 332 330 332 J27 322 329 320 325 330 302 297 207 279 273 r* 0 ISI 150 .I. 360 383 2 339 340 5 354 309 3te 259 259 177 16e 383 190 204 220 242 24 259 267 273 200 202 275 259 255 254 256 267 250 270 271 282 2e3 200 325 348 124 308 335 140 389 0 25 290 294 347 382 387 308 307 308 324 322 32s 332 348 346 353 354 354 356 358 359 i Il 17 11 0 26 355 34C 1 354 359 1 7 350 360 343 358 2 356 342 358 355 342 354 337 342 346 352 348 342 El 27 348 343 331 335 332 336 336 334 335 336 350 142 340 335 334 342 343 342 300 .l. .l. .l. *l. 28 0 -1 0 .l. .J. 0 Z 1 342 306 343 334 323 322 323 326 138 331 336 334 329 325 302 305 300 329 0 29 326 334 353 5 352 353 354 352 0 5 30 le .l. 17 44 60 60 e4 40 73 14 78 13 18 pl 30 72 60 70 73 74 50 46 40 36 12 37 38 41 22 355 359 8 342 355 343 343 346 335 306 31 227 200 316 304 306 325 342 3 7 335 199 274 210 196 248 232 270 266 246 0 0 0 173 17e 0

   ..................................................................................................................................

689 VALID ORSERVATIONS ( 98.1%) 0m CALM _ _ _ _ _ _ - _ _ _ - _ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

35 FT wthD DINECTION IDFG3 C00PLR NUCLEAR STATION RETEUMOLUCICAL DATA FEBRUApf 1980

                      ..................................................................................................................................

HOUR oar

                           .......................................................................................................................

0 1 2 J 4 5 6 7 8 9 10 1 12 13 84 15 16 17 le 19 20 21 22 DAILY 23 mEAN

                      ............................................................... .................................................................                                                                                  1 t      0    0 157             0    0   0    C   0    0     0      0 126 134 139 152 152 154                                          42 14045 139         37 1389 1377 134            34 12710 131 350       )

99 97 31 2 134 134 133 132 130 128 126 127 118 lie 182 183 118 93 87 to 25 el 93 96 204 127 128 J 35l 2 355 350 347 346 346 343 349 20 49 45 104 leo 4 $30 139 138 127 136 137 137 135 138 335 12e 123 119 129 126 127 132 129 138 149 137 til 163 169 5 let 195 283 224 249 276 302 309 321 309 312 382 318 Jt7 328 320 331 10 32529 132 il 337 353 344 0 343 0 337 0 337 0 0 6 336 357 143 343 342 349 345 355 0 350 346 0 103 339 74 340 72 34770 35372 35065 35460 50 35 29 26 J5 42 44 46 (I 7 . 0 0 0 0 48 0 30 0 17 38 12 7 e 14 13 4 4 356 356 347 154 355 355 355 0 0 0 0 2-e .4u 4e 52 9 0 0 0 0 0 0 0 0 0 0 244 285 228 229 287 196 192 let 199 186 150 179 182 gg to

                            .I.

189 176 167 288 192 0 226 0 -1 243 225 239 0 263 248 247 255 268 263 216 199 287 2200 244 .I. y

                                                                                                                                                                                                                                         -

Il 263 289 314 711 292 299 209 293 299 302 305 306 Joe 300 313 316 339 314 311 314 292 289 b 12 .t. .l. 259 110 162 136 157 160 176 157 155 160 17e 194 204 173 172 2 162 6 163 13 16624 166 354 116 360 179 353 372 350 3 13 176 174 179 173 179 169 163 1693017232~194 178 202 236 250 269 301 32 14 14 6 42 32 () 19 42 48 53 46 41 43 29 16 35 32 14 342 349 353 354 20 il 17 6 7 2 357 357 356 32 4 2 349 352 352 349 344 331 334 330 g 8 15 to 16 14 7 to 3 y

                   $[  16   335 330 322 331 332 351 331 337 320 325 335 331 325 325 325 323 307 305 292 281 266 272 270 265                                                                                                              h 17   266 22e 154               0 32e 226 196 194 185 tel 230 220 212 222 212 203 196 194 198 is? 181 16s 16e 178                                                                                                  El  i 18   174 IIS 179 179 188 179 180 100 179 ist 185 197 198 191 193 199 204 200 197 19e 184 leo !?0 174                                                                                                              2 19   194 17u 873 160 154 151 138 151 149 162 ISt 179 179 176 216 219 266 250 215 226 235 235                                                                                                  83 28864 25554      -0  l 20   265 317 240 190 224 ISS 132 140            77 146 72 137 74 128 78 140 50 130 56   138 352    131 350    828 352               315    524          !!2 312       106    125     102 320           107 30s    320   322   292        >

l 21 51 55 37 Se 76 10 16 I 22 2s2 299 2e6 292 290 310 310 296 298 310 325 306 307 295 300 302 311 384 326 324 329 320 353 358 3 23 349 347 346 125 389 330 337 330 320 332 323 329 32s 34 318 67 319 260 324 265 317 252 317 240 317 215 212 295 237 233 230 223 269 218 323 205 0 24 244 204 176 le7 104 220 180 281 326 320 l 12

                                                                                                                                                                                                                          .I. 196
                                                                                                                                                                                                                                         -

25 324 320 348 340 335 328 330 336 343 344 332 336 343 337 32s 330 32e 331 334 334 334 335 EI 26 156 14e 356 ISO 146 163 170 172 100 Ret 6 404 26 192 55 203 125 220 134 223 125 230 136239 174238 168236 139239142247 162264 2701268 Ill 162 14 2 27 299 .I. .l. 294 304 305 324 332 356 4 5 4 8 17 16 19 26 38 0 28 250 217 0 .l. 335 337 354 360 4 l ISS 360 2 360 4 El 54 50 49 48 48 30 29 18 22 14 25 25 17 13 19 20 29 22 is 23 25 26 40 50 54 E

                      ..................................................................................................................................

687. VAI,ID ORSFHV4TIONS (100.0%) ea CALM

 . _ _ _ _ _ _ _ -                          _ _ _ -                                               _ _ _ -                         _ _ _ _ _ _ _ _ _ _ _ _ _ _           _ _ _ _ _ _ _          - _ _ _ _ _ -

15 lT wi4D D!kkCTION (0LG) CoorER muCLEAa STATION METEOROLUCICAL DATA MARCH 1980

 ..................................................................................................................................

HOUR

      ....................................................................................................................... DAILT DA!      0    1     2   3     4     5   6    7    8     9    10   11    12   13    14   15   16    17   18    19   20   21   22    23 alA4
 ..................................................................................................................................

I 2 354 360 358 395 350 353 149 150 147 347 343 344 316 320 292 295 322 Ils O 2n 7 2 35* 1 2 .t. 174 167 167 157 157 174 872 105 191 193 187 19? 391 tse 186 185 184 187 1s5 150 176 176 104 3 170 178 174 176 165 171 160 164 167 181 190 200 200 204 200 208 206 195 te0 0 0 .I. 1 0 ) 4 13e 21 13 23 21 34 30 26 28 28 22 9 355 1 156 350 343 344 342 344 346 346 343 33e N 329 307 385 300 286 276 258 .I. .l. .I. .l. !?8 I 5 33h 373 132 343 320 325 324 325 334 341 348 E 6 163 152 141 144 137 334 136 136 let 145 148 152 165 17123137 10528 .l. 26 10 25 16 28 360 35a 4 333 J26 337 347 7 d 23 4 359 5 359 359 12 20 22 28 0 7 13 360 359 38 354 325 327 339 333 332 13 0 0 0 0 0 0 .l. 261 263 265 253 250 287 172 17 186 185 168 0 0 9 552 luS 169 168 165 159 182 193 196 203 218 20e 2ta 234 234 246 247 2 37 244 240 241 .l. 156 144 2 to 159 195 236 267 .l. .l. 321 .!. 312 335 33e 34; 347 340 344 330 137 338 333 345 360 0 345 385 g 11 160 14 3 .l. 0 1 153 97 lis 125 121 119 115 189 119 118 104 800 106 107 lit 184 107 102 7 12 97 92 93 97 109 103 102 105 800 102 102 100 90 96 tot 102 103 82 360 29 13 0 381 0 g 13 0 0 0 0 0 297 311 187 315 306 30s 302 298 293 300 300 297 296 300 211 159 160 147 137 3 14 9 104 135 0 145 159 160 172 190 184 185 192 179 153 tel 300 238 196 109 257 256 138 144 103 y 15 led 146 152 146 130 141 145 157 157 165 177 177 379 179 162 153 146 144 139 139 152 160 154 153 0 e 16 143 154 145 70 .I. .I. .I. .l. 109 138 120 247 J31 334 333 345 139 131 332 348 336 332 334 336 Z 0 236 215 0 y $ 17 359 315 314 335 336 337 333 340 348 338 306 383 314 312 302 296 293 290 0 168 190 287 220 227 194 198 197 197 195 195 190 191 189 193 191 let 173 179 174 154 15e 870 a la E 19 173 373 168 168 177 182 183 154 187 187 192 201 206 212 215 212 286 282 196 170 150 193 327 353 2 20 .153 348 353 349 343 336 345 340 333 336 336 334 33m 345 344 342 J39 332 333 15 Ele 336 337 319 336 90 176 244 284 186 4 28 312 302 310 323 303 309 294 312 331 346 36l 356 354 358 2 13 .I. .I. 22 121 124 lie 114 109 127 820 120 128 134 137 155 174 173 let141841517321 248IS266202971533682 33433 3349 33912 I 23 142 339 340 339 343 344 346 347 349 351 353 360 9 8 I 24 6 3 357 354 355 353 352 353 354 350 345 344 348 355 359 359 13 22 33 43 44 33 36 58 W 25 4# 19 55 45 9 13 40 72 273 77 90 104 110 828 321 313 134 120 112 101 94 108 121 122 0 26 110 107 106 100 94 76 99 110 !!5 226 120 136 '130 12? 123 130 129 125 122 126 129 147 170 162 g

        .I. 208 253 276 33e 322 339 342 353 337 359                34    47  46    37    66   64    47   39    50   2e   22   20   43 27 2s     45   44   49   76   66    16 129 387     63    63    72   54    55   46   52    49   59    72   67    64   68   12   ??   01       2 29     85   89   94 101    89    72   75   69   75    74    64   50    44   39   35    29   35    34   34    29   35   15     4   17      0 9 350           6     6    5 356 350 361        12    0    12     2 357 35)      2 349 338         E 30     28   le   15   15   15    il              3 35  50 273 175 185 150          99 Sto 124 100 103 107             E 38    322 340 349 309 321 334 336 340 344 353 368                 3
 ..................................................................................................................................

788 VALID 065FRVAftphs ( 99.6%) 0m C Al.M _ -

m

                                                                                                                                                                                                      ,
                                                                                                                                                                                                 %

35 FT WIND DipECTION (DEG) COOPER NUCLEAR STATIUh METEONOLOGICAL DATA APRIL 1980

                      ..................................................................................................................................
  • H0tlR DAS
                           .......................................................................................................................

0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 le 19 20 21 22 DAILY 23 mr.AN

                      ..................................................................................................................................                                           g i   140 301 122 102 182 lie stb 117 12h 121 132 517                                                97   98 173 217 293 333 333 333 334 323 322 322                         g 16    28   57    4e                          60     73   64  05 104 147 120 306         67    62    10     84 341           N 2   325 299 304 331 348                    4                                        el 3   308 129 144 178 204 219 219 283 233 264 263 271 201 208 294 306 321 325 332 330 3240 3060 2840 295                                                                     r
                                                                                                                                                                                      .l.          pg 4   297 290 290 298 304 298 299 304 307 300 287 312 309 30s 3n6 296 310 293 263 242 5   175 !?) 175 164 176 194 145 349 177 206 192 194 286 209 206 201 184 197 174 361 160 573 374 the                                                                         4 6   175 164 164 169 182 150 142 158 159 16e 172 170                                             179 101 102 160 176 158 154 162 ISO 1408 165                 210 356 340 Cl g

7 150 264 270 262 246 212 304 216 244 234 243 .C. 25e 276 256 242 251 24n 249 250 280 8 315 327 322 315 306 310 300 309 305 302 307 300 302 303 304 380 306 302 300 334 315 321 320 384 El 9 312 312 309 388 313 350 333 316 311 383 316 382 311 305 295 293 292 290 297 99 306 186 86 303 14 305 72 380 70 303 158 29851 2 10 348 301 .l. 278 .I. 0 888 250 236 121 135 133 199 los ll) 0 0 C 350 831 24 40 54 22 23 24 10 357 352 347 349 368 350 350 356 332 273 0 0 0 il 12 0 284 320 340 331 32s 327 325 324 333 330 329 332 335 342 342 343 344 348 343 345 342 344 0 g 18 11 13 14 13 3n4 309 331 322 335 351 331 339 9 4 .l. 0 335 342 352 350 6 10 4 358 347 349 347 357 353 355 342 345 349 342 346 339 336 327 0 2, 14 6 13 2 2 350 358 7 2 359 3 2 5 I 15 327 325 325 314 319 314 319 324 319 389 293 345 173 0 135 195 292 205 320 345 357 0 1 e5 lit 128 141 141 153 265 7

                                                                                                                                                                                                   $

[[ 16 6 358 355 0 14 9 241 0 141 .l. .l. .l. 142 til 117 200 17 337 35 22 30 36 30 24 30 31 38 33 21 20 22 52 42 25 344 1 17 342 pl 18 130 1 .I. 351 3%6 .l. 3 0 0 til 0 .l. 1R8 192 ISO 196 189 185 185 171 17e 0 166 172 Z 19 188 183 186 191 186 let 162 104 209 207 287 215 214 228 234 215 216 220 234 204 1830 1920 1820 1700 .( 20 tel 228 244 216 35e 149 0 0 145 202 170 135 ISS 197 242 241 202 182 187 175 ) 21 0 0 0 155 176 164 0 141 184 208 206 207 200 197 192 187 195 186 185 173 185 187 189 182 r 22 171 164 172 174 163 183 205 205 280 228 219 221 35 226 42 229 34 226 32 221 41 223 38 22336 236 33 245 30 196 22 2295 2322 252 353 g 23 261 388 .l. 354 2 12 14 il 30 40 34 24 356 349 336 343 292 281 359 10 30 43 30 22 13 25 28 39 45 48 52 52 39 30 35 39 0 12 55 54 46 22 13 19 8 6 360 7 2 RI 25 8= 358 355 351 345 .I. .l. 353 301 238 41 11 26 4 12 21 19 13 to to 29 27 36 16 22 23 7 27 36 25 19 27 14 343 347 353 355 Z 27 358 2 2 351 353 351 ,350 349 356 344 351 335 lit 299 0 20 40 8 359 5 1 5 368 359 360 3 355 350 1 6 360 10 359 to RI 29 6 =I= 1 4 9 7 12 3 11 22 337 341 5 353 351 48 33 24 .I. 360 M 30 6 361 360 345 16 357 2 29 37 11 45 83 30 34 57 54 49 47 57 60 47 29 354 48

                      ..................................................................................................................................

677 VALID OBSERVATIONS ( 96.7%) Oe CALM 1 _ _ _ . - _ _ _ - - - _ _ _ _ _ _ - _ _ - _ _ - - - _

                                                                                                                                         ~
                                                                                                                                                                  .
                                                                                                                                                                                               ..    . . . .
                                                                                                                                             . .
                                                     -

Jf

                       'y    7    4 jo q. p Ilt'                                                             35 8PT btND DikECTION IDEG)
                        ;       >      U .f

([J){ li+>j. ui ui fddu d t O(; n; J,h {Q

    ,                   . ,

m'bj COOPER nurLt. AR STATIO4 MEfr0MOLOGICAL DATA MAT 1950

  ..................................................................................................................................

HOtlR

           ....................................................................................................................... DAILT DAT         0      1      2        3      4      5                                          6    7    8     9   to    it     12  13   14  15   16   17- 30     19   20    28    22   23 WEA4
  ..................................................................................................................................

1 Bla 106 60 set 2 33 29 55 63 73 57 135 119 167 378 369 173 a 237 179 I 2 .t. 0 0 0 0 0 0 229 334 250 76 170 62 109 0 ) J .I. 0 .t. 54 187 let 157 463 tel 164 169 869 170 146 146 4 0 225 .t. 76 =I. 27 41 =I. 1 5 .t. 330 .I. .t. 1 .I. .t. 261 270 321 310 340 353 359 157 351 E 6 152 353 351 347 .t. 1 259 =1 242 205 201 276 273 270 344 19 23 26 23 d 7 18. Il 23 41 35 8 il 11 4 4 3 351 345 337 343 335 335 340 342 33e 340 343 344 356 0 8 1 16 4 357 359 352 342 347 348 340 342 346 344 341 348 354 348 355 330 334 1 *t. 0 355 Z 9 449 851 161 ISI 160 160 156 168 196 191 197 191 180 180 184 179 179 179 ISI 167 157 150 163 160 g to 162 162 162 171 169 162 117 tel 183 too les 7 il 35 32 38 12 03 312 el .110 125 334 142 148 214 292 295 249 1 1 .I. .I. 4

                                                                                                                                                                                                  -

13 307 287 292 294 298 325 335 343 342 343 338 343 349 354 345 350 326 344 338 340 0 0 0 0 3 p 14 0 367 149 ISO 151 143- 134 150 232 245 205 203 217 198 190 205 215 220 207 182 211 259 346 33e 0 e 15 le 329 0 0 0 .t. .I. 8 57 12 344 43 78 311 296 879 112 180 114 122 115 800 177 96 Z "* ' In 46 213 297 62 55 49 66 65 65 76 70 56 34 216 109 109 109 106 109 112 110 107 102 to y 17 71 61 59 50 SS 41 233 20 352 353 354 347 347 338 324 29; 303 300 306 296 299 4 18 305 295 299 311 309 302 206 289 E 19 2 20 28 22 I 23 $ 24 Q

                                                                                                                                                                                                  -

25 26 27 Z 2s O 29 M 30 E 31

 ................................................................................................................r.................

297 VALID OBSERVATIONS ( 43,16) O e CALM

                 --                                    _ _ _ _ _ _ _ _ _ _ _ _ _ . _ _ _ _ _

35 FT WIND DIRECTION ( D t'G ) COOPER NUCLEAR STATION METFORDLOCtCAL DATA JUNE 1980 I

   ..................................................................................................................................

HOUR

         .......................................................................................................................

4 5 6 7 8 9 to 11 12 13 14 15 16 17 le 19 20 21 22 DAtLY 23 MEAh

   ..................................................................................................................................

DAT 0 1 2 3 I 1

                                                                                                -
                                                                                                                                                                       >

2 f S 4 l

      '                                                                                                                                                                O

Z l .

  • m 8'

Z 11 4

                                                                                                                                                                       -

12 3 13 0

 >t4                                                                                                                                                                   2
 ,L t 5                                                                                                                                                                g co t 6 17                                                                                                                                                                m te                                                                                                                                                                2 19 20 21                                                                                                                                                                I   )

22 9 ' 23 19 07 117 125 O i 112 113 109 107 120 109 113 24 2S 104 95 12C 10 70 66 64 96 55 102 203 70 67 95 S2 131 144 142 144 137 122 0 g l

                                                                                                                                                                           '

26 270 134 185 217 8 9 253 147 178 160 121 124 158 150 116 203 158 154 141 141 138 132 153 120 1 1 27 128 120 120 130 156 163 153 150 155 161 148 145 149 58 265 163 296 190 229 52 244 26 290 20 324 5 330 346 333 357 354 356 2 0 0 28 1 2 359 15 16 22 5 33 25 40 39 45 0 0 0 0 0 E 20  ?? 23 16 357 4 E 29 157 151 137 158 168 353 283 4 15 16 13 11 to 96 248 269 147 30 0 0 0 0 0 141 119 127 129 110 119 122 125 137 136 137 136 131 134 129

   ..................................................................................................................................

153, val.tD ORSFRVATIONS ( 21.3%) Oe CALM _ _ _ _ . _ - _ _ _ _ _ . _ _ _ _ _-

_

                                                                                                                                                                                                                  ,

318 FT ulED SPElu (EPH3 l p,

                               '                               COOPEk NUCLEAR STATION PETLOp0 LOGICAL DATA
                                    ;g' 'r bD                          ]           ,
                                                ;

j

2 JAhuARY 1980
    ..................................................................................................................................

HOUR

            ...........*........................................................................................................... DAIL7 Def        0    8     2     3      4             5      6    7    8     9                                                 10     1*    12    13   14   15    16    17      18  19  20  21    22 23 NEAN
    ..................................................................................................................................

I n 0 1 0 a 2 2 2 3 2 4 5 5 4 4 1 0 1 0 0 3 0 1 3 2 2 6 6 5 9 14 12 10 16 11 10 13 13 13 10 13 33 10 12 16 14 16 12 to 10 Il 3 Il 9 10 13 13 17 9 12 12 12 9 1 7 4 4 3 4 5 6 5 6 7 6 7 0 y 4 6 4 6 6 6 6 6 10 to 12 14 14 15 16 15 15 12 12 16 17 17 IS 17 19 12 g 16 17 13 9 14 14 16 16 12 12 5 0 2 5 8 8 14 14 16 19 23 25 12 I 5 le 4 32 3n 36 30 35 30 26 N 6 23 25 25 26 26 29 29 25 22 9 8 9 to 33 14 32 34 30 p { 7 J2 25 23 24 23 24 27 24 22 28 22 20 15 14 14 10 12 9 7 7 7 9 7 6 17 g 8 5 8 9 8 3 2 2 4 7 4 6 7 6 10 12 12 15 12 18 12 32 13 8 y 9 14 le 85 14 12 12  !! to S 5 5 5 O to il 12 10 12 14 17 20 17 17 15 12 0 29 20 30 30 33 30 26 80 15 le 17 19 36 19 20 29 21 25 23 24 23 87 28 15 29 19 31 2t 34 27 33 30 31 29 31 25 19 2 f-14 7 9 26: 4 5 to 5 20 7 li 26 32 33 33 12 5 9 9 10 14 le 17 22 23 19 28 22 28 34 38 il 35 33 26 27 26 26 29 29 22 N 13 32 29 2e 26 29 29 26 28 20 19 IS 15 14 9 7 4 2 6 7 5 1 2 2 15 2 to 2 2 4 5 7 12 Il 14 13 13 11  !! 15 17 14 17 le 20 23 19 23 23 34 9 33 C 15 15 21 21 28 29 le  !? 17 19 17 il 6 7 5 7 8 6 4 8 9 9 9 13 16 13 25 21 20 10 16 20 14 13 22 E"" 20 24 26 27 21 27 26 26 30 26 28 21 D f1647 16 14 17 15 15 12 37 12 12 10 11 12 14 10 5 3 5 5 2 2 0 0 4 5 to is to a . O 2

  '
. 18       to    9     4     5      8             8      8    9    9     7                                                  4      4     5      6   6    6     V      9     to  13  10   7     2  2     7

@ 19 3 2 9 10 18 le 18 le 20 19 16 16 16 15 14 19 20 19 18 16 15 13 13 le 15 { 20 12 12 13 10 13 14 14 Il 9 7 2 0 2 3 3 2 l 0 0 3 3 3 2 0 6 g 21 1 3 8 18 10 0 10 12 12 13 17 17 17 16 13 13 16 33 11 10 19 24 24 22 13 g 22 26 25 2e 21 20 26 29 21 24 22 26 29 26 24 22 22 22 17 14 17 18 15 15 14 28 4 23 15 8 6 8 1 10 10 9 12 to 9 9 6 6 6 4 5 0 9 13 16 28 19 19 to g 24 24 27 27 27 23 23 25 23 22 17 8 12 13 14 13 12  !! il 6 15 14 14 17 r 25 24 20 19 17 39 20 15 15 34 20 22 14 16 10 28 19 19 19 19 22 19 13 18 26 12 15 19 19 20 24 24 23 19 17 17 14 il 12 12 12 14 13 12 12 13 18 Is 11 15 0 27 12 0 7 8 10 10 12 10 7 6 9 to 0 7 5 3 3 4 3 3 0 6 2 5 7 0 29 5 3 8 3 3 6 6 7 8 7 7 0 10 12 9 10 to lo 10 0 7 0 to 9 7 m 29 9 5 6 to 10 to 7 4 3 4 2 1 1 2 4 4 7 9 to 0 6 4 8 12 6 Z 30 to 12 10 10 7 0 7 0 9 10 9 7 8 0 0 13 14 14 12 11 10 lt 10 7 10 (') 31 4 5 8 7 10 to 8 9 6 0 1 0 2 0 2 3 3 8 3 2 2 4 6 6 4 m H OU NI,Y g MFA4 13 13 13 le le 15 15 15 le 13 12 12 12 13 13 12 13 12 12 13 il 13 13 12

    ..................................................................................................................................

MAXIMUMa 35 MINIMUMS O MEAN = 13.07 737 VALID 083ERVAtl0NS ( 99.16) DAILY EXTnEmE STATISTICS

                      .....................................................................................................

DAV l 2 3 4 5 6 7 8 9 10 il 32 13 14 35 MAX 5 16 17 19 25 38 32 15 20 34 36 35 32 23 21 win 0 5 3 4 0 8 6 2 5 IS 4 5 1 2 4

                      .....................................................................................................

DAT 16 17 le 19 20 21 22 23 24 25 26 27 28 29 30 31 MAX 30 15 13 20 14 24 29 21 27 24 24 l? 12 32 14 to plu 13 0 2 2 0 2 14 0 6 Il il 0 t t 7 0

                      .....................................................................................................

maximum nrAme 24.54 MININGm MLANs 4 _-- _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

         --                                                             . _ .       _

3te FT WlED 6FIED (2FH) COOPER NUCLEAM STATION METE 0eOLOGICAL DATA FEBRUART 1980

   ...................................................................................................................................

HOUR DAt

         ....................................................................................................................... DAILY 0    1       2    3    4         5     6    7     8      9          to      18     52       13    14   15      16    17   le   19  20  21  22 23 MEAN
   ..................................................................................................................................

5 6 6 7 e e 9 a 10 13 11 12 12 13 13 13 13 15 13 9 I 6 7 1 5 4 9 9 7 6 4 2 4 5 5 6 7 9 7 6 5 9 2 le 14 14 14 12 12 13 13 11 0 0 2 4 5 6 9 12 11 10 18 to 6 3 7 e 5 e to e 5 4 6 2 3 3 e 9 10 12 32 13 15 14 14 13 14 12 9 9 O e 9 to 31 4 11 12 9 9 11 9 I 24 23 20 28 22 24 23 22 21 21 22 59 85 14 14 17 13 17 5 11 il to 15 13 il 17 12 IO 9 e 6 5 6 6 4 3 3 2 4 3 0 2 6 9 7 > 6 14 16 it 12 14 12 N 10 5 4 5 6 6 9 e 9 e 10 9 to il 10 7 7 6 4 3 5 6 8 6 6 3 e 9 to e 9 to 80 11 10 e 6 6 7 9 F e to e a 7 7 30 9 e to 10 e 9 6 e e 6 6 4 0 2 3 0 0 0 3 2 3 4 5 3 3 Il 15 13 13  : 5

                                                                                                                                                                    %

9 14 19 16 9 to 15 15 14 12 to 6 6 5 6 6 2 4 4 2 6 6 13 7 12 18 to 13 13 15 le 5 Il 45 0 il 20 22 15 12 17 le 20 le 22 17 13 12 le le 15 Il Z 0 7 5 9 12 12 9 12 13 14 17 17 17 23 21 25 22 19 la in 82 6 e 1 4 7 13 le 16 12 14 il 12 to 10 10 9 6 5 4 3 2 e 7 7 7 6 7 6 .6 9 9 m 9 10 13 il il 9 9 to 9 to to 9 13 14 36 13 11 9 to Z 14 10 7 7 8 to Il 17 16 17 19 20 le 19 19 20 23 21 17 le le 19 19 17 IS to 42 12 12 52 15 16 le (- 13 12 12 14 13 to 13 18 il il 9 7 8 13 13 14 14 13 86 16 16 13 15 15 17 15 3 4 6 6 7 4 4 3 e 8 7 11 11 12 16 to 15 16 15 9 3* 17 te 13 16 to 17 12 le le 16 4 17 3 19 20 20 19 39 24 24 24 24 26 25 23 23 27 19 le 15 16 13 20 0 19 le 84 11 14 12 11 15 14 il 12 to 6 6 7 5 2 2 5 6 6 6 5 5 9 Z $a le 10 11 to 13 12 13 13 13 13 16 14 e g CD 20 5 2 4 2 3 0 4 6 6 6 7 e to 17 17 17 16 14 10 11 e 14 15 16 to 14 14 14 le 12 14 l4 28 14 14 15 14 15 16 8 7 6 6 6 9 9 e e il Il 12 9 il 22 16 le 15 16 in it 12 13 17 15 to 1S 13 13 11 13 12 11 to il 12 11 9 5 5 5 6 7 to 11 2 23 to il 12 12 15 16 9 13 e e 8 10 6 5 5 4 1 3 6 9 9 12 14 13 12 23 27 to 24 9 e e 6 22 37 36 34 29 24 24 26 25 25 23 22 25 22 17 15 li e 6 4 2 I 25 37 35 3e 14 17 19 17 28 20 22 19 14 12 to 6 15 16 19 15 26 e 10 e 11 12 13 14 W 7 6 7 6 e 7 in to to 14 16 16 14 Il 27 14 15 0 14 16 15 15 15 15 14 34 14 14 15 15 16 16 15 2e 12 27 26 to il to le le 16 11 17 16 17 16 19 18 to 19 18 19 17 16 le le 17 le is % 29 16 20 19 le 19 to HOURLY g 12 12 12 11 18 18 to il 11 18 11 12 12 12 52 12 12 g MIAN 13 13 12 Il 12 11 Il

   ..................................................................................................................................

MAXIMUMS 31 MINtMuMa O MF.AN a 11.69

                                                                                                                          '

682. VALID OBSERVATIDNS ( 98.0%) DAILT EXTREME STATISTICS

                      .....................................................................................................

DAV 1 2 3 4 5 6 7 e 9 to it 12 13 14 15 MAX 15 14 12 15 24 16 il 18 IS 19 22 25 18 16 23 4 2 0 e 10 0 3 6 0 2 5 4 2 7 to MIN

                      .....................................................................................................                29 DAT     16     17       le    IV      20       21            22      23         24     25     26       27    2e MAR     87     16       27    le      16        17            le     16         27      38    22       le    27    20 MIN      7      3       lb      2       0             e        6      5           1       2     6       6    to    16
                      .....................................................................................................

MAXIMUM MEANs le.47 MINIMUM MEANs 5

                    -                     -_                                                       _. ._

s _ lie FT Wl:D SPEFD (EPHI COOPER NUCLEAk STATICM METEOROLOGICAL DATA MANCH 1900

                                                                ..................................................................................................................................

HOUR

                                                                       ....................................................................................................................... DAILY DAT        0     l     2      3    4      5      6     7    8     9     to     it      12    13   14    15   16     17     IS   19  20 21   22 23 atAN
                                                                ..................................................................................................................................

I 17 le 17 le 18 le le 20 19 16 16 9 il 11 11 12 12 to e 13 Il 14 9 11 14 2 e il 8 10 12 16 17 16 20 19 20 19 19 20 21 23 22 18 le 21 19 18 10 19 17 3 17 20 le le 16 17 16 16 16 16 15 16 15 15 14 17 te IP 7 7 6 3 2 5  !) I 4 e 8 9 to 11. Il 13 13 13 52 16 17 18 19 25 31 31 3t- 28 28 28 27 26 26 19 ) 5 26 25 22 19 le 19 19 14 16 16 le 82 9 9 9 9 9 6 2 3 5 6 10 13 13 6 15 19 18 13 12 8 2 5 8 11 10 13

                                                                                                                                                                                                                         '

9 9 0 10 18 12 12 14 3 to il Il 11 7 8 10 ti 12 14 Ii 12 16 14 14 12 12 14 15 13 12 12 14 12 14 12 11 7 18 13 e 20 16 9 12 it 12 12 9 9 5 5 4 5 6 0 4 3 4 0 9 12 6 e 9 9 7 s 12 13 Il 19 15 14 15 17 16 13 13 12 6 5 5 6 5 8 6 6 9 9 9 to 0 10 to 14 le IS 6 3 6 6 a e 23 23 20 le 17 s8 16 14 12 9 7 7 9 9 12 2 il 5 2 1 1 4 e 18 42 9 10 0 8 A 9 it il 10 15 16 16 14 16 17 18 to g 12 16 15 15 14 14 12 13 14 16 to 16 15 14 12 13 14 to 9 6 4 4 3 2 1 11 g As I 4 4 2 4 4 17 22 22 27 le 21 28 20 19 17 16 10 7 5 3 5 7 to 12 g 14 12 Il le 12 16 14 16 19 18 16 12 15 12 8 8 4 8 4 14 8 12 17 17 21 13 15 15 20 t# 14 15 15 19 21 22 20 25 25 28 30 31 31 26 24 24 23 24 21 20 20 22 E

                                                             >   .86     18    17     20    20    19     12     11     9    8    12     24      28     23    25   25    20   20     23     20   20  26 20   20 24   20 0 k      17     27     30    25    23    23     23     21   le    15    12     13      34     13    14   12    14   19     52     11 20 7  7 to    8  9   16 22 2

s la 19 23 9 to 19 il 19 19 22 21 25 28 26 19 29 10 20 16 30 22 30 24 30 29 30 31 27 30 24 29 26 31 21 38 19 31 21 24 15 13 le 15 23 13 22

                                                                                                                                                                                                            !?

21 le 22 g 20 15 le 22 28 24 26 le to le 20 le 19 23 24 22 22 23 25 25 19 18 19 18 19 20 E 28 17 17 17 16 13 15 15 15 15 14 11 13 17 12 6 4 3 3 7 7 9 13 16 15 32 Z 22 la 16 20 19 1e 19 21 le 22 26 24 26 26 24 25 17 17 13 13 12 15 12 17 17 19 23 19 22 17 18 16 15 14 15 15 16 16 17 17 le le 20 21 22 22 22 23 27 21 22 19 24 21 25 24 25 26 26 26 24 23 22 20 27 20 18 15 36 15 Il  ? 8 9 9 8 e le I 25 6 6 4 3 5 6 5 4 3 3 4 5 4 5 6 7 7 6 5 9 18 7 7 il 6 M 26 18 to Il to 9 54 16 14 15 14 17 14 16 16 16 15 16 to 16 16 16 12 12 to 14 0 27 1 13 12 12 13 12 12 il 9 4 to 9 il 12 13 14 13 12 14 15 15 19 17 le 12 g 28 19 le 16 37 16 14 14 15 15 18 17 17 .38 10 19 19 20 20 23 21 20 22 22 22 18 29 21 22 22 19 19 la le 17 19 17 15 14 18 to 20 19 20 20 16 18 is 24 22 26 19 Z 30 25 26 28 26 26 26 27 25 27 23 23 23 22 23 23 25 22 22 20 21 19 i4 13 23 0 38 33 17 16 16 in 17 18 14 11 to a 9 7 7 7 5 5 8 to ii 14 19 22 26 13 $

                                                                                                                                                                                                                       %

HOURL1 meAN 84 15 15 15 15 15 lb 16 16 16 in 16 16 16 16 16 35 14 14 13 14 14 14 15

                                                                 ............................... ..................................................................................................

MAximune 33 MINIMUMS O MEAN a 15.17 743. VALID OBSERVATIONS ( 99.9%) DAILY FITHtME STATISTICS

                                                                                   .....................................................................................................

DAT t 2 3 4 5 6 7 8 9 to It 12 13 14 15 MAX 20 2J 20 31 26 19 le 20 11 23 le 16 27 28 31 mjM g a 2 0 2 2 7 3 5 3 1 1 1 4 14

                                                                                   .....................................................................................................

nAY in 17 le 89 20 23 22 23 24 25 26 27 28 29 30 33 MAX 23 in 31 30 26 17 26 17 27 11 17 19 23 26 28 26 p!M e 7 9 la 10 3 12 14 7 3 9 4 14 .4 13 5

                                                                                   .....................................................................................................

MARIMUM MEANs 23,20 MIhimUM MEANs 7 _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ - _ _ _ _ _ _

                                                                               . _ , ._                                  _.           - _             . . _ _            _ _

l l 310 FT 0100 SPEED (CPD) COOPER NUCI. EAR STATION METEOROLOGICAL DATA APRIL 1900

  ..................................................................................................................................

Hotsp DAILI

           .'......................................................................................................................                                             21  22  23 mEAm DAT          C    1       2    3      4      5      6     7     8      9         10        tt     12               !)      14     15      16    17        IS    19   20

( .................................................................................................................................. l 20 32 32 30 23 28 37 16 13 12 16 13 13 15 to 14 20 I i 15 le 20 24 26 2a 30 la 16 2 13 12 14 14 13 Il 13 11 7 9 14 16 15 16 16 16 14 12 21 23 21 22 25 24 3 23 18 15 13 13 14 19 18 18 24 22 25 20 29 24 28 27 26 26 27 18 le 16  !? 21 12 10 12 12 14 14 11 13 12 6 6 5 5 7 11 13 4 17 19 20 20 20 28 le to to I 12 13 9 10 6 0 10 12 14 14 17 16 le le 19 19 20 21 24 14 5 14 14 12 to to

                                                                                                                                                                                                  )

26 26 27 25 26 23 25 19 17 17 17 18 20 19 10 15 16 16 12 21 6 26 24 25 20 30 N 14 9 9 7 6 6 to 10 e 8 8 to 15 15 15 16 14 14 la 7 14 23 23 14 15 0 27 I 27 24 24 27 24 26 27 28 29 30 13 34 34 33 26 24 23 24 2p 26 8 23 22 21 24 24 23 20 23 23 25 23  !? 16 16 15 15 16 23 E 9 25 26 27 27 28 25 .D* 28 24 26 26 d 2 4 5 8 e 9 15 16 15 16 16 9 to 13 II to 32 le 33 9 2 2 2 3 3 3 0 15 15 14 14 19 24 19 20 18 17 6 4 8 6 9 10 14 20 20 15 11 23 22 13 18 17 9 14 85 16 Z 20 14 18 20 21 20 16 le 17 20 20 17 16 15 Il 9 12 14 16 13 19 19 16 13 13 11 10 13 13 10 11 10 10 to 32 15 10 17 10 28 21 22 23 22 22 18 18 17 g 15 15 13 13 15 17 14 17 16 16 15 17 16 16 15 21 23 22 17 15 20 15 19 14 18 17 9 18 8 17 7 19 0 7 7 43 7 9 9 9 18 19 14 15 17 19 19 to 15 16 17 14 12 9 9 9 12 8 4 4 5 3 7 8 b 17 12 11 14 16 15 11 11 13 15 15 16 16 14 12 12 15 to 9 7 5 5 7 e to 12 3 18 16 6 2 4 7 3 2 4 0 t 0 0 3 5 9 9 12 12 to 9 8 9 9 12 6 0 y19 12 11 13 14 13 12 11 14 35 15 16 le 16 16 14 16 13 8 6 6 7 to 12 to 12 6 Z y 6 5 3 0 2 3 1 4 2 3 5 4 3 6 9 9 to g 20 11 11 il 9 7 S 3 3 9 12 12 12 13 12 18 20 20 19 19 18 20 16 14 18 17 17 17 14 PO 21 9 8 9 12  !! 37 16 16 36 16 9 9 9 14 22 15 14 E 22 13 15 13 11 12 14 le 23 14 14 13 9 13 12 13 12 17 17 17 15 A; to 12 il 11 9 6 8 10 11 12 9 18 11 14 14 15 14 12 2 7 14 13 13 18 12 12 13 14 14 13 13 12 14 12 18 13 13 12 12 d 24 12 10 7 5 7 D 2 3 6 9 10 12 11 10 12 21 19 17 17 16 9 25 9 9 5 7 5 3 3 0 3 3 I 26 to 12 13 13 13 12 10 8 7 10 12 13 12 12 12 12 11 11 12 to 10 12 14 15 12 27 16 16 16 14 14 12 11 12 9 8 9 11 13 12  !) 12 to 12 10 ' 11 13 12 13 12 3 28 14 12 12 15 15 13 12 13 11 12 13 15 15 15 16 14 15 13 11 13 to 9 to A 13 0

                                                                                                                                                                                                  -

6 5 6 6 8 7 7 7 6 7 9 7 9 8 7 6 29 7 5 4 3 2 3 6 1 1 9 9 8 5 0 to 10 to 7 6 10 9 11 7 30 7 0 5 8 7 6 6 2 1 2 O 2 ott k t,Y 0 15 14 13 13 12 13 14 14 14 14 14 14 14 14 13 13 12 13 14 14 EAh 15 14 14 14 m

  ..................................................................................................................................                                                              E MA11MUus           33            Mtulmuus                   O      M t. A N a 13.62 703. VALID OBSERVATIONS ( 97.8%)

DAILY EXTREME STATISTICS

                       .....................................................................................................

2 3 4 5 6 7 8 9 to 18 12 il 14 15 DAY l MAX 32 25 29 21 24 30 23 34 20 16 24 28 13 23 19 MIN 12 7 13 5 6 12 6 28 15 2 4 9 to 13 7

                       ......................................

DAT 16 17 19 19 20

                                                                     ..............................................................

21 22 23 24 25 26 27 20 29 30 NAX 14 16 16 10 il 20 22 37 to 21 15 16 16 9 il 5 0 6 0 8 8 6 7 2 7 R 8 1 1 MIN 3

                       .................................................................................... ................

MAXIMUM MEAha 20.26 MINIMUM MFANs 7 _ . _ _ _ _

                                     . ~ . .                    -    - - .. -                .          - .-. . _ -                 ,    ..          ._ ..         .-           .       . . . _ .

318 FT te!E3 SPEED (EPM) CO3PER EUCLEAR STAftCW KETE010 LOGICAL DATA M6T 1990

     ..................................................................................................................................

MOUR

            ....................................................................................................................... DAIL1 DAT        0     1      2    3            4      5        6       7        8      9     10      11             12    83    14    15      16    17       le   19   20   21    22   23 NEAN
     ..................................................................................................................................

I 11 8 8 9 6 5 7 6 4 7 7 7 e to il 12 12 II 8 7 6 5 6 5 0 2 7 4 5 5 8 7 5 7 4 6 7 2 1 1 2 1 3 3 2 7 9 5 3 4 1 3 4 5 5 7 2 6 7 7 8- 9 11 15 15 25 23 15 e 9 5 8' 14 to 9 11 7 8 9 12 15 14 7 7 7 7 7 7 7 6 14 22 19 18 16 It I 6 15 12 18 to 7 4 6 7 6 8 12 11 to 13 14 13 15 16 12 17 85 16 15 12 12 g 7 12 .10 14 12 12 17 11 15 10 17 15 13 17 'O 19 19 19 20 18 to 12 15 15 17 16 8 16 18 12 14 15 14 10 13 14 15 15 il 11 .0 9 8 7 to 10 6 5 4 6 e il 9 11 11 14 16 15 13 -14 15 16 19 19 22 20 22 25 24 26 28 30 24 10 23 25 23 20 to 22 22 20 21 21 19 IS 31 31 28 24 le 14 13 12 18 18 14 22 26 27 23 25 17 20 4 la 86 le 19 20 20 tv le le 20 22 19 16 SE 17 16 to to 14 84 13 12 13 16 16 17 0 12 16 15 13 It to 13 15 to 17 13 17 16 16 13 15 9 to 13 12 9 5 2 4 to 12 2 13 20 22 21 . 20 10 22 23 23 21 23 23 18 17 15 13 to 11 12 9 6 3 3 8 0 15 14 0 18 to 32 12 0 3 6 4 6 7 Y  !! 12 18 13 14 11 to 10 8 5 9 3 , M 15 1 6 1 0 0 3 3 3 3 3 4 to 12- 12 15 14 14 16 19 19 18 19 16 17 to Z 16 17 17 19 20 20 24 21 17 23 19 to 17 18 at le 17 16 16 17 18 16 15 12 16 18 < 17 to 11 to 9 8 9 a 6 6 8 e. e 4 0 7 8 9 13 13 13 14 13 14 12 to j 9 9 9 9 7 6 7 9 e 9 9 9 11 to 11 7 9 18

    > 19 il 7     8      9    6 11 5

11 4 11 5 5 11 6 11 5 e 4 1 4 2 4 5 2 2 to 4 6 to la 13 9 6 0 i k 20 8 9 5 4 6 9 to 11 6 7 7 3 2 5 6 6 4 2 0 0 1 8 6 2 u 21 to W 7 6 6 8 7 7 4 2 3 3 4 4 5 3 3 5 6 7 e e s 9 6 { 22 7 6 4 3 3 4 4 5 2 2 4 to 10 11 9 10 8 8 9 9 11 to 9 7 7 3 23 8 4 3 2 3 4 3 3 4 0 1 3 4 4 5 -4 5 9 9 12 14 12 11 12 6

24 to 18 11 11 to 9 12 il 9 9 9 9
  • 8 10 to 11 12 12 12 12 84 13 15 il 25 15 15 15 17 16 16 16 18 19 17 16 16 15 16 16 16 16 16 17 10 17 18 17 18 17 26 17 15 16 15 15 15 13 11 14 13 11 28 14 11 19 16 13 17 17 17 16 to 10 12 15 r" 27 9 7 9 6 3 5 7 9 5 s 8 14 14 14 16 14 14 15 12 10 9 7 8 9 9 g 2e 9 to 2 11 9 tt 9 7 1 6 to 15 14 19 22 25 23 22 20 19 15 14 16 17 14 g 29 le 16 13 14 13 13 15 12 to to 12  !! 14 18 22 22 24 25 30 27 29 24 24 22 18 -

30 24 30 23 18 18 13 22 27 20 22 22 20 18 17 19 16 19 17 17 34 14 12 e 12 19 E-31 14 12 ') 4 11 12 10 18 11 14 15 15 14- 15 19 22 26 24 24 24 24 26 29 17 87 Z l OUHL1 0 ' EAN 13 12 11 Il 11 18 11 11 11 11 12 11 il 12 13 12 12 13 13 13 14 13 13 13 Nl

      ..................................................................................................................................                                                                 . gg MAXIMUma              31      MINtmUma                O    MEAN e 12.02 719 VALID DMSERVA110NS ( 95.4%)

DAILY EXTREME STATISTICS

                        .....................................................................................................

n&Y 1 2 3 4 5 6 7 8 9 to it 12 13 14 15 ,

  -

MAX 12 9 25 22 17 20 16 30 31 22 17 23 14 19 MIN 4 1 8 6 4 10 4 Il 31 12 2 3 3 0

                        ...............................................................................................e.....

DAT 16 17 le 19 20 21 22 23 24 25 26 27 20 29 30 31 MAX 24 14 11 14 11 to il 14 15 19 28 16 25 30 30 29 ptu 12 6 6 1 0 2 2 0 8 14 to 3 6 to 9 8

                        .....................................................................................................

maximum mEAm. 38.95 ususmum >EAme 6

                                                                  .                                                                                                                  _               _._     .______I
 .         .                 . ..              ..       .. .. . . .. . .                              . .. .. .. .                   . .. ..

Ett FT ut%D SPEED (KPH) COOPER WUCLEAR STATION METEOROLOG10AL DATA JuME 1980

                ..................................................................................................................................

Haus DAIL7

                      .......................................e...............................................................................                                                        18  19   20   21  22 23 #EAN DAV      O         1         2      3                      4      5     6      7           8           9     to     11              12           13   14   15    16      17
                ..................................................................................... ............................................                                                                               9 6      6      a                  e          9  le    9       3      6          5    a    8   9  to Il I     a      10         at     is                     to     in     12   18       to 14                             12              16           13  19    22     19     16          13  10     9   7   9 to    13 2     t         S         9    15                     16       5    16   13                        12     13 e                        17              16           15  17    19    18      20         21   20   19   21  17 17    14 3    12      12         32       9                      8      8     9   to                        it     it 26            25               26     24     24             24            le  20    28    28      27          24  14   11   37  17 21    21 4    16      18         20     22                     15     21          25 5    17      20         19     18                     16     47     20   20       20               23     23     25             20            27  30    20   29       20          27  26   26                23  I 6                                                                                 13               12     12     to              14           87   39   18     87     il           9    9  13   17  17 16    14  )

8 9 5 17 20 21 22 27 29 20 28 28 28 24 22 22 22 20 13 16 19 l 7 17 le 12 4 14 9 e to to 10 11 9 8 8 9 m 9 11 9 0 12 12 l 6 15 19 20 21 19 16 11 9 E 7 10 6 5 6 6 e to it to 10 18 it 11 7 7 6 7 to 9 17 12 le to to 9 6 6 7 7 6 5 7 11 12 13 9 d 9 5 7 7 9 7 A l to 11 11 11 12 18 11 12 9 9 9 12 15 15 16 19 IS 17 16 le 19 19 17 19 14 0 13 12 l ' 11 12 12 19 ' 28 12 14 19 14 18 IS 16 15 to 17 23 29 29 29 31 29 30 30 33 28 22 20 17 20 17 21 23 2 20 14 17 13 14 17 24 21 20 23 24 25 24 27 26 20 25 22 19 37 19 23 21 g 13 20 22 54 12 15 13 14 20 22 15 17 19 to 11 9 12 0 5 0 12 20 to 17 23 16 20 17 17 16 17 13 17 13 19 to 16 to 14 14 11 7 15 9 16 23 25 22 17 19 13 & 13 20 23 21 16 13 83 13 18 11 12 10 9 13 12 to 11 13 13 to 12 13 11 11 to 9 e e al 11 $ 17 11 11 11 12 Il 14 10 6 7 7 6 2 3 4 6 4 6 6 8 8 9 9 13 12 8 3 18 12 9 14 13 14 15 10 7 9 12 11 11 11 12 13 13 11 22 28 17 14 le 14 14 33 0 6 10 18 22 23 20 16 15 12  !! 13 to 5 8 7 6 0 9 12 16 at 2

              > 19                 4         3      3                    il 9            12     12    to  y 12                     13     12      9        9          5           4     7     12                  9          8   8    7       9       8            10   11       12

{4 20 21 15 13 9 to 6 1 3 9 7 4 3 4 6 7 10 10 10 9 to 10 12 13 17 14 9 h 13 7 7 19 13 7 2 2 4 10 Il 6 4 4 9 E 22 12 9 9 14 11 15 1 23 9 to 1 7 6 3 3 2 1 3 4 6 7 6 11 12 12 13 6 2 18 16 16 17 16 16 16 14 13 8 13 17 13 13 15 -4 24 16 16 15 12 13 12 18 15 16 28 M 5 6 8 11 12 12 9 8 7 9 to 10 12 to 9 25 10 11 10 9 33 12 12 0 7 4 I 26 to 15 15 12 e 12 11 9 to 7 4 5 5 7 7 8 10 32 12 12 13 35 16 IS to 27 20 19 16 16 16 15 13 12 15 16 15 16 17 20 20 18 15 17 21 17 28 19 16 18 87 3 20 17 14 9 9 14 11 14 13 to 9 P S e 6 7 11 to it s 11 28 17 19 to il 9 0"" 6 8 16 13 14 12 9 6 7 7 8 9 9 5 4 6 e 11 12 29 3 3 to 1 it 30 10 8 to 12 13 13 14 il 11 11 15 15 le 19 19 19 16 16  !? 14 11 80 13 12 14 2 l i OUALY O l 13 13 13 12 13 12 11 12 12 13 14 14 15 15 14 14 Il 12 13 13 13 14 EAh 13 t)

                ..................................................................................................................................

m max 1 Mums 32 MIntMUps 1 Mrtu = 13.19 E 697. VALID OB3ERVATIONS ( 96.06)

  • DAIL7 FITREME STATISTICS
                                      .....................................................................................................
  • DAY t 2 3 4 5 6 1 8 9 to il 12 13 14 15 MAX 10 22 21 28 30 19 29 21 17 13 19 33 28 22 25 MIN 5 5 8 18 16 3 4 e 5 5 8 55 11 5 8 i
                                      .....................................................................................................                                                                    30 DAT          16                      17     10     19        20                 21      22             23               24    25     26       27          28    29 MAK          14                      14     22     23        35                 17      19             13               21    12     16       21          20    16     19 MIN           8                       2      7      3                   4         3       1             1                8      4     4       12           6      )      $
                                      .....................................................................................................

MAIRMUM MEAka 20.0n M1p1Muu MEANs 7

   .____ -                              --                                                    _.                                                - - _ _ _ _ - -                 -_        _ _ _ ~
                                                                                                                                                     ~

1

         .

338 FT W3hD DINECTION (DLC) COOPER NUCLEAR STATION METEue0LoctCAL DATA JANUApf 1980

   ..................................................................................................................................

HOUR DAT

         .......................................................................................................................

n CGILI 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 89 20 28 22 23 MFA4

   ..................................................................................................................................

t 0 0 .I. 0 0 .t. .l. 1 .I. .t. .I. .t. .!. .t. .I. .t. 0 .t. 0 0 .I. 0 .I. 295 2 328 353 347 357 353 353 357 7 14 6 4 2 9 12 6 9 6 12 18 19 15 11 4 355 3 149 350 357 344 347 343 355 357 3 4 7 11 12 .I. .I. 1 348 29 il 94 100 !!3 139 167 I 4 155 185 155 207 200 280 283 210 206' 209 132 226 219 219 226 226 245 258 251 252 258 256 258 262 ) 5 298 380 337 335 325 322 328 335 348 351 355 341 .I. 0 .t. .I. 182 168 158 149 346 159 177 184 N 4 182 192 188 ISS 577 175 185 891 202 236 242 231 263 332 316 322 319 385 312 307 307 307 294 294 f* 7 O 294 294 303 308 299 296 382 340 338 ' 348 .I. 297 309 308 294 304 305 299 298 295 296 303 309 333 342 337 334 385 322 RI 3 .I. 186 132 120 98 94 74 60 70 67 69 77 70 39 44 46 d 9 18 27 17 9 13 to 834 137 135 532 142 140 144 5 8 359 19 28 87 96 120 125 135 140 149 147 144 131 343 137 142 !)5 0 167 165 166 476 176 185 100 191. 171 182 184 193 198 191 210 204 Z 18 12 243 68 299 337 309 307 314 302 294 285 286 289 276 319 307 297 288 290 291 315 339 343 349 334 11 m 85 103 129 128 839 154 146 147 154 164 173 178 181 183 173 165 156 175 174 172 170 175 180 13 14 I69 187 190 189 194 192 199 189 199 213 321 216 227 256 259 268 274 322 5 26 .C. .C. .C. .C. Z 15

          .C. .C. .C.

107 108 117 145 136 845 144 150 let 14c 132 134 l '. ) 129 130 135 120 142 138 133 163 150 146 132 127 334 146 136 149 156 $ 127' 139 156 178 112 122 142 138 97 73 70 64 13 18 4 3 14 366 359 11 360 358 353 35F 352 343 334, 337 333 334 335 335 323 311 328 385 306 303 309 295 305 }* pa 37 0 131 342 322 303 305 290 2ra 304 385 298 297 301 303 300 279 .t. 0 0 102 139 137 140 138 343 Ln 18 183 .I.' 167 165 165 163 166 160 176 151801915419168!)153 162 149 ISS22lit 115 114 113 !!B lit 136 122 .t. 7 19 .t. 4 26 57 9 17 20 22 15 3 353 357 11 6 9 16 357 19 27 0 12 65 15

                                                                                                                         .I.

30 155 263 238 14 14 24 23 9 16 25 22 $ 0 0 241 263 279 293 0 RI 21 22 249 177 180 193 199 202 203 199 205 206 207 218 212 252 262 258 274 268 273 264 296 305 328 305 2 23 381 321 303 297 293 329 320 328 345 329 336 336 J38 334 326 320 335 310 305 306 307 284 293 206 278 277 277 287 299 307 321 306 306 3 3 J. 350 342 336 313 309 272 266 .4 24 0 196 283 214 215 226 250 > 25 283 279 274 284 290 286 267 258 263 257 268 267 26n 268 283 275 266 286 309 321 325 314 f" 332 323 321 328 386 323 338 333 330 350 348 353 345 339 339 344 356 344 352 356 1 359 g 26 2 ~ 350 356 150 358 361 356 359 355 348 345 343 3 4 18 1 359 354 349 346 349 352 347 345 n 27 28 2 346 343 346 348 345 344 340 349 356 353 351 346 343 340 345 354 3 3 38 .t. 0 298 300 324 - 333 342 349 352 345 342 343 340 346 339 324 339 345 340 337 345 342 340 340 327 322 326 336 346 EI' 29 343 352 15 6 357 358 358 5 15 36 35 49 230 32 88 10 80 78 87 98 92 70 96 102 foi lit 105 109 307 113 105 Z~ 48 40 36 36 45 39 39 12 358 3 5 15 4 357 355 J53 350 346 0 33 337 339 339 326 324 343 147 J53 348 0 328 0 229 0 286 286 266 252 246 207 174 203 227 238 El IA

  ...................................................... ...........................................................................

10n, VAI.lp OASEHVATIONS ( 99.0%) 0 = CALM ____ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

                                                                                                                                                                                                          .
                                                                   .
                                                                                       . . _ . . . . . _ . . _ _
 .
                        .
                            .

380 FT wind DISECTION (CFG) COOPLM WUCLEAR STAtlOn METE 000 LOGICAL DATA FEpRUARI 1900

          ..................................................................................................................................

MOUM

               ...................................................................................................................... 041L1 DAV         0          2   3   4   5   6     7   8     9    to              il                          12  13   14   15  16     17     10                   19    20    21    22   23 ntem 1
          ..................................................................................................................................                                                          I I   236 238 220 205 194 142 162 160 155 157 156 153 169 155                                                  160 140 146   136    129                   133   820   133   13532 8437      >

2 158 146 140 135 120 120 til lit sie 105 103 105 186 90 69 210 56 66 55 28 24 34 3 359 4 353 333 345 350 353 348 5 0 76 80 117 0 90 94 04 OS 94 182 180 120 125 114 4 132 130 144 136 133 134 134 139 135 138 125 138 131 130 131 133 136 143 147 150 154 17o 164 I1! q 5 $94 212 229 242 271 296 307 386 322 300 310 315 321 389 337 325 321 29 322 33269 33965 3480 342 14 13450 333 06 0 6 349 345 349 350 350 351 359 13 7 350 340 355 351 356 359 349 el Z 7 104 104 .95 180 185 184 104 110 99 115 92 08 94 02 79 75 57 45 46 40 56 62 60 62 0 67 65 62 55 41 32 20 28 0 18 0 16 10 7 359 355 359 9 7 9 359 347 348 346 , 3 9 340 330 352 353 342 39 0 348 337 0 0 0 216 225 237 284 206 192 192 195 201 200 192 205 Z 80 286 201 283 289 219 250 271 209 295 200 267 265 275 250 255 253 256 259 272 231 226 240 263 204 4.- il aus 348 337 330 320 307 313 315 386 321 317 382 300 300 317 322 3t6 300 326 321 325 309 302 300 E 12 298 276 265 203 268 246 220 217 205 105 102 169 190 105 105 176 173 366 160 365 1706 174 170 169 343 337 340 O D 13 179 100 105 tel let tel 103 105 ISO 195 194 205 237 233 256 322 347 359 IS 360 [3 14 154 360 20 19 10 43 47 55 55 49 60 55 56 55 41 37 30 39 43 33 37 33 32 33 Z cn 15 34 35 38 33 32 20 31 23 le 357 350 350 J56 352 353 353 349 344 347 349 330 333 322 327 g 16 333 320 327 340 343 340 347 346 348 332 336 337 320 387 316 350 306 307 296 207 273 269 200 202 E 17 280 270 206 206 385 .J- -J- -J. -J. -J. -J- -J. -J- -J- .J- -J- 200 190 tel 179 177 170 177 175 . IS 102 105 104 103 803 170 175 176 176 175 800 105 196 199 204 202 190 203 209 204 192 177 166 867 2 f 19 180 101 564 165 163 163 157 153 161 171 100 104 195 208 219 241 267 226 222 226 234 238 225 249 66 l 20 270 275 243 323 334 0 105 106 136 113 ill ll6 133 121 131 134 113 96 97 96 99 70 73 p 21 10 60 55 et 93 80 90 06 76 77 76 75 60 123 353 356 352 327 381 316 307 385 312 290 22 298 302 294 294 296 305 384 102 102 329 321 319 311 295 307 312 320 325 342 334 341 347 350 340 El 23 340 347 336 330 330 140 350 346 347 339 327 320 322 386 310 324 341 332 324 202 252 251 243 234 0 24 234 236 235 241 201 297 290 294 320 336 343 349 349 272 273 272 244 246 234 233 237 278 lit j 25 320 320 343 340 337 342 336 329 333 331 337 339 343 337 336 330 3M 353 let 334 348 356 64 123 Z 24 149 852 I5F 131 160 171 807 105 ISO 191 193 212 213 227 230 244 2 232 230 237 246 276 300 0 27 17 46 95 112 109 12s too 157 130 120 155 167 190 20 17 19 12 13 6 6 13 12 10 24 24 26 20 20 29 29 22 26 25 20 43 43 43 50 46 49 25 34 29 le 17 20 24 19 17

          ..................................................................................................................................

650 WALID USSERVATIONS ( 96.263 l ! 0 = CALM l

                                                                                                                             -           -

_-_ . - ___ _ _ _ _ _ _ - _ ___ - - _ _ _____

318 PT WIND DIMECTION (DEGI CouPER muCLEAR 3Y4f104 mETTOPOLOGICAL DATA I MAFCH 1980 '

    ..................................................................................................................................

HOUR

           ....................................................................................................................... DAILY DAY         0     1     2      3       4     5        6    7                                                              8                                9   to   il    12   13   14   15   86  17  le   39  20   28  22   23 NEAm
    ..................................................................................................................................

I le 83 11 12 5 4 6 4 363 350 349 354 354 344 349 346 337 336 326 317 304 302 304 302

      *2     300 274 24e 240 233 220 228 191 196 897 198 192 196 190 191 155 179 104 IO2 104 182 100 180 let                                                                                                                             I 3   142 leo 173 17s 174 176 176 175 174 179 193 200 200 206 206 206 206 288 206 250 211 281 221 lie                                                                                                                              g 4    189 los 103          .79      66   56     50      37                                             36                                               10   49   to    17    7    2    5 353 346 346 347 346 335 130 322          g 5    317 328 Ill 386 334 326 330 331 332 336 354 337 314 295 305 299 208 270 250 227 226 197 185 180                                                                                                                              f 6    146 148 150 142 352 143 144 144 149 145 158 154 174 185 204 J10                                                                                                                       29  13  19   38  23   20  20   le      R 7      34     13    12     25      29   24     22       8                                                             7                                 6   13   20    25   23   25  22    26  26  19   IS   7 340 322 329        =4 8     34s 353 125 123 332 340 348                    341 343 343 33e 322 259 262 268 266 256 248 226 235 229 229 230 234                                                                                                          0 9    255 227 J04 let 174 193 193                      196 198 210 230 248 246 257 251 233 239 244 234 240 242 235 228 228                                                                                                         Z 10    210 223 244 276 295 295 305                     284 305 325 325 335 336 344 146 342 334 343 342 348 352 347 353 359 18        % 348     .I. 70      68 107 103        107 114 115 189 115 116 112 tot 112 122 114 103 101 102 182 312 112                                                                                                          M 12    114      89    96     96 107 103          97      90 800 tot 806 100 183                                                                                               90 132   94    90  e4  74  72   59   41  42    4      2 13     IJA    324 330 282 2se 29s 306 306 300 313 311 381 303 307 302 302 300 301 306 272 236 191 169 170                                                                                                                          C 14    16n    169 161 slo 166 164 168 167 184 199 210 194 204 204 197 193 206 212 266 ISS 351 145 '151                                                                                                                     167      j y,   15    19n    les 185 lut 176 175 170 172 176 172 370 173 172 T10 176 176 170 170 166 163 163 162 162 164                                                                                                                           0 e   16    161    15e 162 160 158 163 162 162 179 206 320 324 328 334 344 348 359 358 355 347 340 348 347 346 h3
 'd 17    143     342 348 337 334 332 334 330 335 342 341 335 317 383 388 290 287 200 262 245 226 204 191 179 la    le2    200 214 2ta 222 222 211 205 2ne 206 199 198 196 ISS ta6 102 te6 ISD 185 184 les 106 182 ITA                                                                                                                           $

19 -176 ISO ISO leo 176 176 17e 17e let 170 199 206 288 222 224 223 223 217 210 203 205 204 329 7 M 20 159 359 354 349 340 346 350 5 346 340 343 344 334 336 340 330 336 336 326 334 331 326 324 323 Z

    ' 28    384    389 317 323 384 120 Sie 324 334 340 348 343 347 344 348 337                                                                                                                   -l-  94 102 116 180 ll2 128         4 22    124    119 120 125 lie 126 124 125 126 132 13e 150 166 162 186 182 174 256 260 335 348 341 348 342                                                                                                                           )

23 338 342 342 330 334 343 348 347 352 355 355 359 2 12 16 le 20 25 28 25 25 16 13 33 r 24 13 7 5 4 359 8 1 1 356 358 355 353 350 359 1 1 6 30 10 40 55 46 49 62 g 25 59 62 73 56 26 31 65 tot 186 300 108 120 115 120 122 124 132 130 122 112 sol 120 127 133 g 26 125 126 120 112 los Sc6 183 122 122 128 124 130 127 124 128 122 126 128 133 136 138 161 172 192 27 208 230 278 206 295 308 342 35e 8 2 23 43 64 65 59 64 49 53 60 59 53 54 56 62 M 28 64 68 83 90 92 OS 85 91 95 96 96 72 64 50 65 68 70 16 92 72 05 84 86 92 2 29 94 97 97 102 91 96 90 #5 SS 86 77 74 73 55 44 35 36 48 46 40 46 IS 24 23 0 30 31 35 30 25 26 20 12 6 5 5 19 le le 356 350 7 359 to 5 16 25 356 M 31 344 360 333 334 347 350 342 355 16 24 30 25 41 106 140 96 95 98 110 122 380 115 100 W

    ..................................................................................................................................

738 VALID 083ERWAfsDNS ( 99.6%) ea CALn _ __ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ . _ _ _ _ _ _ _ _ _ _ . _ _ _ _

_ _ _ - _ _ - _ _ _ _ _ - _ _ _ _ _ _ _ - _ _ _ _ _ _ _ _ _ _ . _ _ _ _ _ _ _ _ _ _ _ _ _ ___ _ _ _ -_ . _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ 318 FT WIND DIPLC710N (DEG) COUPER NUCLEAR STA7 TON 4ETEOROLoctCAL DATA APRIL 1980

        ..................................................................................................................................       NOUR DetLT
              .......................................................................................................................23 3     4   5    6    7    8       9                          10                              81                           12    13   to   SS    16    17     18      19            20           21              22                 NEAu
        ..................................................................................................................................

Cat 0 1 bl* 2 302 107 las tot too ll) 139 114 330 97 112 215 244 337 334 343 342 315 330 326 126 I I 157 128 68 80 104 316 138 64 62 67 74 91 98 107 ) 2 384 381 32% 349 354 14 30 42 77 73 76 77 3 128 345 19h 221 218 221 229 256 262 266 270 283 289 294 305 3C7 312 324 Jt7 305 293 294 298 299 4 300 300 305 301 300 301 302 307 299 296 295 305 300 302 299 294 286 270 244 232 214 230 281 215 5 212 36h 210 204 175 169 369 203 166 211 360 205 164 206 161 212164 209179203187 200187 208ten 211 see210169198 193 184

                                                                                                                                                                             ,170     170161170143 184 155 180 166            167235 set 194                     167244169                                       "I 6                                                                                                                                                                                                              17                      8   to              19                            0 7  259 276 274 258 270 246 244 246 245 236 240 262 270 271 259 271 274 287 290 349                                                                                                                                                                                                       2 8  340 332 313 384 317 306 301 299 311 330 312 300 311 310 307 308 313 313 316 322 324 384 304 305                                                                                                                                                                                       g 9  380 333 3n6 330 305 296 298 300 305 .t.               310 .I.                  307 .I.                         306 307                                 307 305 301 301 30s 304       83 los  54 331         72 317        59 333        Sb 333          70 to   312 314 299 287 278 202 294 300                296                                                                                             161 145 166 118 108 303                                                                                                                2 il     90   90      46       43   40   59   47   43   35         6                               2                           to              352          341   353  358   350   307   249      248       254       282                    336   348                                       I 12   331 325 374 324 323 330 337 326 132 336 137 337 337 338 335 335                                                                                                       328 13 3356 340 11 350  12 346         le 338          it 336      12 342          35                            E 13   342 343 344 346 346 344 330 337 341 355 349 348 343 347 353                                                                                                         7 0

p14 30 17 82 1 359 7 343 340 341 331 330 340 335 135 343 336 332 337 323 325 329 84 329 326 295 m 15 289 246 283 281 280 290 284 292 110 346 356 16 157 16 352 14 350 348 34 33 65 7 G3 t o 150 164 191 206 333 293 268 164 26 78 146 328 35 40 107 $ 24 36 31 30 22 17 0 14 35 42 33 20 33 58 53 56 11 e 345 355 7 El 42 95 103 0 0 0 o 175 198 180 167 173 179 tel see tel 184 188 200 18 126 104 308 43 24 217 216 209 210 213 2tp 282 210 210 207 210 206 219 223 222 219 219 232 241 229 198 197 201 209 2 19 =( 20 230 233 235 239 236 218 212 204 184 219 0 149 154 340 212 221 191 191 109 159 134 122 126 310 > 21 159 209 245 233 237 207 206 204 210 215 210 205 204 183 176 176 181 806 876 178 172 178 179 188 I 22 tas 196 tal 195 207 232 221 21930 21640 226 210 53 222 53 226 50 23536 224 27 213 32 21932 21149 231 2e 237 44 235 38 226 30 214 23 226 23 g 23 242 300 295 345 tt 19 24 53 24 19 22 IS 3 35s 338 1 27 50 4R 44 40 13 30 40 49 50 51 72 62 55 59 64 75 0

                                                                                                                                                                                                                                                                                                     -

34 43 28 39 .t. .t. 75 80 45 83 298 51 44 60 37 18 14 30 to to M 25 80 77 57 30 7 355 346 35, 25 24 52 50 44 42 40 25 26 28 34 45 45 39 43 43 49 43 39 32 30 2 27 349 350 352 346 348 349 350 353 356 344 352 340 331 332 330 335 328 3326 314 2 361 360 360 361 356 357 306 368 309 la 30737 321 41 0 Pu 387 312 320 330 333 336 331 342 352 356 350 360 5 350 343 3 4 348 55 67 61 82 9e E 29 la 70 87 69 71 34 354 11 357 347 348 358 7 98 E 49 72 99 73 70 67 90 95 Ito 91 70 to 46 66 69 54 56 65 62 90 800 106 30 91

        ..................................................................................................................................

699 VAbtD DBMERVAftONS ( 97.8%) oa cAI,n l l _ _-_ . - _ _ _ _ _ _ _ _ _ _ _ .

                                                                                                                                                                                  ~             ~            -_                _ _ - . _ _ _ _ _ .

318 FT uthD DIRECTION (DEG) COOPER hUC3.E4R ST A710'8 NE7EOROLOGICAL DATA MAT 1980

   ..................................................................................................................................

linup

        ...............~........................................................................................................ DAIL7 041     0    1    2    3    4     5    6    7     8     9     to  11     12 il   14   15   16   17   18  19  20   21    22   23 mEAN
   ..................................................................................................................................

I til til set s2 79 el 93 09 09 19 46 95 80 ES 90 91 104 114 320 126 149 155 66 243 I 2 270 300 30s 324 332 334 325 314 337 349 3 321 258 284 299 249 259 296 288 105 153 ) 3 4 215 155 260 270 275 243 .l. 237 310 114 203 298 302 332 297 5 266 246 280 261 291 285 200 283 287 296 245 241 262 263 J35 294 338 320 324 336 358 6 8 3 E "O 6 9 7 4 350 344 335 27e 258 250 258 275 271 279 281 277 206 273 266 265 1 30 65 67 9 1) 13 360 5 357 338 344 327 336 329 338 342 339 341 349 339 347 35 O 8 15 25 38 13 9 12 356 350 352 352 351 348 330 325 339 335 339 320 61 358 166 Z 9 174 51 189 198 207 213 209 197 192 108 191 187 183 let ISO 104 183 189 182 173 164 156 163 862 g to 160 172 174 179 182 175 102 184 195 190 190 200 207 213 209 230 246 203 314 337 343 50 350 76 35978 20 7 11 22 24 28 27 32 29 23 20 35 39 31 34 28 24 36 30 42 42 56 67 54 12 63 65 el 76 95  ?? 57 264 75 170 05 to) 12e 118 144 42 230 295 206 268 230 122 372 24e b 13 302 283 286 291 304 385 330 336 335 345 354 354 346 349 334 342 316 330 322 386 12 128 159 146 3 p 14 190 207 207 280 223 230 225 231 238 235 396 192 211 198 197 200 220 229 212 192 187 233 361 327 Q e 15 350 15 340 0 0 147 121 66 52 60 67 96 86 95 95 101 300 95 103 103 103 09 48 105 Z N 16 99 99 92 19 79 89 98 95 87 97 10' 90 48 90 104 106 109 102 104 109 106 105 107 105

  • 17 to 79 93 79 83 91 19 39 349 349 340 344 350 333 324 322 330 312 300 302 248 299 301 29s M

IS 304 293 287 330 114 302 286 293 298 298 293 206 274 292 292 313 300 305 298 290 302 209 311 301 19 284 287 381 295 314 305 291 298 J11 4 116 72 125 148 122 174 137 159 132 115 102 10e 125 135 2 20 133 953 129 102 116 126 130 145 363 178 220 157 150 119 125 112 122 129 0 0 339 343 "4 28 360 9 64 06 110 320 126 126 131 72 340 139 .I. 1 105 Ste 127 146 103 98 117 125 122 139 > 22 168 102 228 265 300 320 355 4 13 4 '68 102 tot 113 234 117 100 106 120 112 117 130 149 15l I 23 117 167 149 177 43 50 24 35 43 0 250 .l. .I. .I. 89 109 105 94 103 93 95 109 180 324 g 24 127 139 128 140 143 110 108 121 139 119 115 123 147 144 130 131 123 187 116 119 102 96 tot til O , 25 114 117 110 105 103 106 189 127 120 114 139 122 139 140 136 135 132 142 130 114 132 112 116 112 g 26 118 122 135 121 185 128 128 131 183 ist 95 95 121 180 129 128 137 142 143 138 132 139 138 121 27 149 103 168 145 .I. 3 1 .I. 1 157 150 155 178 195 201 196 114 300 147 te2 169 172 162 169 2 28 173 170 104 186 17e 177 369 171 164 158 165 187 187 174 172 173 185 179 175 175 167 159 163 173 0 29 182 178 167 159 159 167 167 172 170 195 106 177 173 163 169 182 188 tes 187 192 194 200 192 220 E 30 241 20A 203 229 241 250 237 239 242 250 273 264 271 267 260 256 269 285 295 315 324 336 330 356 E 31 22 37 SI 104 126 128 129 127 122 123 119 124 110 68 21 59 100 Its 118 115 124 126 273 145

   ..................................................................................................................................

685 VALID OMSFRVATIONS ( 93.5%) Oe CALM

                                                                                       .

_ _ _ - _ _ _ - _ - - - _ - _ . - _ _

                                                  .

1 310 rf WIND DISECTIDu (DEC) CouPEN NUCs. EAR 37ATIOc pr.7 ton 0 LOGIC AL DAT4 JUNE 1900

                                       ..................................................................................................................................

Moua 047

                                            .......................................................................................................................

0 1 2 3 4 5 6 7 8 9 to il 12 13 to 15 16 17 18 19 20 21 22 DAILY 23 mEAn

                                       ..................................................................................................................................

I 846 123 299 29 19 95 130 133 129 17e 340 343 341 334 337 343 340 to 17 43 47 67 95 114 I 2 OS 72 et tot .t. .t. 39 39 19 to 105 133 199 258 291 306 314 325 33e 343 342 353 to 107 > 3 124 132 127 138 145 ISt ~ 123 128 133 120 122 136 301 342 136 130 133 132 830 149 105 95. See 114 g 4 137 It? 304 45 94 116 134 124 its 131 136 137 142 82 161 173 170 166 170 154 135 123 119 119 E 5 118 122 132 142 145 157 159 167 176 176 105 104 193 200 206 280 209 212 230 202 197 "O 6 110 164 173 173 163 160 17e 107 105 369 151 135 154 163 165 193 0 7 195 195 let 159 141 164 196 337 350 337 324 334 333 324 334 339 350 343 330 340 339 342 337 343 321 339 333 333 33e 312 216 772 I e 356 13 12 to 359 353 356 353 360 13 3 20 350 348 325 9 207 204 316 300 289 307 337 312 303 299 304 299 298 312 313 315 307 303 292 292 290 250 292 272 g to 21e 298 306 302 300 305 385 319 330 329 335 335 323 306 299 311 343 341 349 357 et 386 128 -Z lt 326 123 133 116 139 137 137 134 133 202 144 153 150 153 348 154 154 347 139 132 126 115 117 tot g 12 159 144 143 147 153 155 152 159 170 160 172 374 194 170 168 174 177 170 165 165 162 Sto 16e 170 - 3 13 100 tel 103 183 184 192 192 191 109 105 See 190 170 175 174 178 178 169 167 162 159 160 165 tes O 32 14 207 223 22h 220 223 217 til 200 204 203 152 134 1464 1409 136 142 153 ist 14012146321303 12111 1260 13934 - 8 15 110 195 15 52 76 39 125 536 85 356 335 360 359 356 353 360 Z

                                 @j 16        43    46   36   55   49   45   56        19  90     e5    95      es    82   16    63   69   18   73    67   62    64      11   89 120                                y
                                                                                                                                                                                                                    &

17 127 133 134 let 147 135 -133 121 133 263 354 183 258 267 174 156 128 137 139 139 136 135 133 155 E 4 18 158 156 167 170 105 200 217 209 232 199 183 203 211 105 24 les 35 196 52 214 52 240 47 92 182 191 193 192 227 es 30 37 43 42 73 19 2 (- 0 236 200 292 352 20 356 359 6 I3 15 20 9 20 se 95 94 92 104 120 lie 110 106 97 104 332 127 140 153 149 137 836 144 159 159 155 160 800 28 la5 107 1e5 117 196 203 200 207 207 193 ISI 143 150 147 153 164 179 16% 154 20 153 163 160 102 178 I 22 163 172 173 154 160 109 104 156 194 232 247 272 196 97 133 18e 310 342

                                                                                                                                .t. 204    74 15 94 104 100 110 120 122 147                                          gl 23                                            330 334 345 335 324 338              1 24   353 143 133 342 154 131 127 125 131 146 347                      105  102   184  112     99 tot 106 125 112         to      66   9e 125                                f)
                                                                                                                                                                                                                    -

25 lie 110 120 120 105 100 9e to) ISO 133 78 80 70 99 109 set 156 166 150 140 133 119 123 123 E 26 125 125 154 22 140 106 169 131 130 156 15e it? 90 156 160 153 142 133 132 150 14e 2 27 129 130 137 142 153 165 160 158 151 149 152 163 54 162 50 170 60 194 55 238 58 250 40 303 35 315 324 334 12 359 2 3497 347 13 153 2 II i 2e 340 353 2 12 33 45 25 27 38 3l Il 6,3 M 29 45 104 150 20e 239 334 333 358 3 353 341 333 2 (5 19 90 UI 30 75 117 136 123 125 l2s 136 125 120 121 121 120 137 149 14e 14e 7 128 132 130 133 106 120 15e

                                       ..................................................................................................................................
                                                            .

602. VALID DBSEnVATIONS ( 95.3%) Os CALM ____- - - . _ -_ _ _ _ _ _ - _ _ _ _ - -

318 FT TO 35 FT DIFFEC6 TI AL f t Rf thaT35E (C/ISTO3 CDUPER NUCLEAR STAT 10N utTLokOLOGICAL DATA J Akt? ART 1980

                                                                                 -------------------------------------------.-----------------------.-----------------------------------------------..---.---------

HOUP

                                                                                         ....................................................................................................................... DAILY ls 4 Y      0     1      2    3      4       5     6      7      8     9    10     11     12    13   14   15     16    17     le    it    20  21    22  23 mFAm
                                                                                 -------------------.--------------------...-------------------.-------------------------------------------------------------------

1 -0.9 -0.6 -0.8 -0.7 -0.6 =0.5 =0.6 -0.7 =0.7 -0.4 -0.3 -0.2 -0.3 -0.3 -0.5 -0.3 -0.5 -0.5 -0.6 -0.6 -0.5 =0.5 -0.5 -0.5 =0.5 2 -0.0 -0.9 -0.8 -0.8 al.2 -3.0 -l.1 -1.0 -0.9 -1.0 -1.2 =1.6 -l.9 -2.1 -1.9 -l.7 -1.7 -3.5 =1.5 -1.5 al.5 -1.9 -2.0 -1.9 -l.4 3 -2.1 -2.1 -2.1 -2.0 -1.0 -1.0 -1.9 -1.9 -1.9 -1.0 =1.3 -1.2 -1.8 =0.8 =0.8 -0.0 -0.0 -l.2 =l.2 -1.2 -1.3 -3.3 -0.9 -0.9 -1.4 4 -3.0 -1.0 -1.0 =0.9 =0.9 -a e -0.0 -0.9 =0.8 -0.9 -1.1 -1.0 -1.1 el.4 -1.7 -1.7 al.4 -0.9 =0.3 0.1 *0.8 -0.1 0.1 0'.3 -0.8 5 -0.3 -0.1 0.5 0.9 -0.7 =0.' O,0 =0.1 -1.6 -2.6 -3.3 =3.9 -2.7 -2.5 -3.2 -2.4 -1.5 =0.9 -0.e -0.7 =0.5 -0.2 -0.6 -0.8 -3.2 I 6 =0.9 -1.0 .2 -l.1 -1.1 -1.0 . 0 -1.0 -1.0 -0.0 -0.3 -0.8 -1.u -l.3 -l.4 -1.5 -2.1 -l.5 -1.4 - 1. 4 -l . ) -1.3 -1.4 -l.) -l.2 >

                                                                                      ?  -3.3 -l.1 -1.4 -1.3 -l.4 - 3 . 4 -l . 4 - 1. 4 -l . 4 = 2.1 - 3.0 3. 2 - 3. 3 3. 6 - 3.1 -2. s - 2.6 -1.5 -1. 4 -1.2 -l . 0 -1.1 -0.1 0.8 -1.8 8  -0.5 -0.2 -0.4 0.5 2.1            8      1.8 1.1 -0.4 -1.0 -2.2 -2.8 -2.6 -2.4 -2,1 -2.3 -2.,3                      1.4 -1.4 -1.4 -1.4 -1.5 =1.4 -0.9 m

9 -i.. -0.6 -0.6 -i.6 -i.7 . 9 .. -i.7 -1.7 -i.5 -i.9 -2.6 -2.4 -2.5 -2.6 -2.6 -2.i . . -1.5. .. 0.6 -0.7 -0.. -0.. -0. 7 = 0. . . 5 to -l.0 -l.2 -l.1 -3.3 -1.2 -0.5 0.4 -0.3 0.0 +0.7 -1.0 -1.0 -3.0 -1.5 -1.1 -l.1 -1.0 -0.6 =0.6 -0.4 -0.2 0.0 -0.2 =0.t -0.7 21 -0.3 -0.8 -1.5 -1.6 -1.5 =1.4 -1.4 -1.5 -1.5 -2.4 -2.9 -3.2 -A.% -3.3 =2.9 -2.8 -2.2 -1.4 -0.5 -0.3 8.5 2.3 0.5 2.0 -1.2 32 2.5 -0.6 -1.4 -1.0 -0.9 =0.1 0.0 -1.1 =t.3 -0.5 +3.0 -1.7 -1.4 -1.5 =1.4 -1.2 -1.4 -0.6 -0.3 =0.5 -0.4 =0.4 -0.3 -0.4 -0.7 2 13 -0.6 -0.8 -0.8 -0.0 -0.9 -0.0 -0.0 -0.3 =0.1 -0.9 -1.5 -1.9 -1.9 -2.2 =2.0 -2.2 -1.s -0.3 1.2 5.3 6.6 6.s it.4 11.5 0.9 3 14 9.1 v.9 9.6 10.9 5.2 0.0 4.5 4.5 2.5 1.1 =1.6 -1.5 -1.5 -1.5 -l.9 -l.3 -0.9 0.6 0.5 =0.3 =0.3 0.5 0.5 1.2 2.4 2 15 1.s 3.2 1.0 2.4 4.1 3.8 2.0 2.8 3.1 2.0 -0.3 -0.3 -0.8 -1.4 -1.0 -0.5 -0.6 0.5 0.3 0.7 0.2 -0.5 -0.3 -0.5 0.9 4 36 -0.5 -0.6 -0.0 -l.0 -l.0 -1.0 -let -1.2 -1.4 =l.2 -1.3 -1,1 -1.1 =1.0 - 1. 0 - 1. 2 - 1. 0 - 1. 2 -l . 0 -0. 9 - 0. 7 - 1. 3 - 1. 2 - l . 3 = 1. 0 -- 17 -1.3 -I.1 -l.1 al.1 -0.0 -0.2 0.4 0.1 0.1 =1.5 -2.7 -2.8 =3.2 -2.0 -2.6 -2.7 -2.9 =l.9 =0.1 0.8 3.0 1.3 1.2 1.5 -0.9 3 33 18 1.5 2.4 2.2 1.5 1.6 8.4 1.3 0.9 1.2 -0.1 -1.9 -1.2 -2.5 =l.9 -2.5 -1.0 =1.4 -0.6 0.9 1.7 -0.5 -0.6 -0. 3 -0. 4 0.1 G [3 19 -0.6 -0.6 -0.6 -1.4 -l.6 -1.4 -l.4 -1.0 -1.0 -1.7 al.e -1.9 -2.1 -2.4 -2.3 -1.9 -l.7 =l.7 =1.8 al.3 -1.7 -l.7 -l.6 -1.4 -l.6 Z ra 20 -3.4 -l.4 -l.) -1.4 -l.4 -1.4 -1.4 -1.1 =0.9 -l.2 =I.9 -2.0 -2.A -2.0 -2.1 -2.1 -1.4 -1.4 -1.1 -1.0 -1.0 -3.0 -1.3 =0.9 =1.5 7

                                                                                                                                                                                                                                                 &

28 -3.0 -1.0 -l.0 -1.2 -1.2 -1.2 -1.2 -0.8 -1.1 -1.0 -1.2 =1.5 -1.6 -2.0 -1.9 -2.0 -2.5 -1.4 -0.e -0.0 -0.5 -o.1 -0.3 0.0 -l.1 E 22 -0.n -1.0 -0.9 -0.8 -l.1 -1.1 -1.4 -1.5 -1.4 -1.9 -2.6 -3.2 -?.4 -1.7 -3.6 -3.1 -2.2 -0.9 -0.5 0.3 1.6 1.1 1.2 -1.3 2 23 2.4 U.4 3.5 1.2 0.2 -0.6 -0.0 -0.7 =0.9 -1.9 -3.7 -3.3 -3.0 -3.3 -3.1 -3.0 -1.7 al.1 0.9 1.6 0.7 0.4 0.3 0.0 -0.7 24 -0.1 0.3 0.3 0.1 -0.3 0.3 0.7 0.9 0.3 -0.4 =0.0 3.2 =1.1 -1.3 -1.5 -1.3 -1.0 -0.0 0.3 0.1 -0.8 1.2 =0.3 0.2 -0.3 25 2.6 0.5 0. 2 -0. 3 -0. 3 -0. 3 -0. 5 -0. 3 -1. 5 -l .9 - 3. 0 - 3. 3

  • 2. 4 -2.5 -3.1 -2.2 -2.3 -2,1 -2.0 -2,8 -2.1 -2.1 -1.8 -1.8 -l.4 I 26 -l.9 -1.9 -2.3 -2.1 -2,2 -2.1 -2.0 -2.0 -2.1 -2.2 -2.6 -2.6 -3.3 -2.9 -2.0 -2.4 -2.4 -2.3 -2.2 -1.9 -1.9 -1.9 -1.9 -2.1 -2.3 27 -2.0 -1.9 -3.5 -l.4 -l.9 -1.7 -l.4 -I.5 -1.5 -2.0 -2.7 =3.2 -3.2 -3.7 ~3.3 -3.5 -3.3 =l.4 -0.5 -0.2 1.4 -0.1 0.8 3.8 -1.5 W 28 3.7 3.2 3.9 3.4 4.3 2.3 3.2 0.5 -1. 4 -1. 7 - 2. 0 -2. 0 - 3. 0 -3. 2 - 3. 3 - 3.0 -2. 4 -l .9 - 9 . 7 -l . 2 = l . 5 -l . 4 -l.5 -1.5 -0.4 0 29 -1.6 -1.4 -1.2 -0.9 al.0 -1.4 -1.5 -1.0 -0.5 -1.9 -3.0 -4.0 3.0 -3.7 -3.6 -3.2 -2.2 -1.9 -l.5 -1.5 -!.5 -1.5 -1.6 *l.6 -l.9 g 30 -l.5 -3.5 -3.5 -1.5 -1.7 -l.5 -1.4 -1.2 -4.4 -l.5 -l.6 -2.0 -2.2 =2.3 -2.3 -2.4 -2.4 -l.9 -1.2 -1.4 -1.3 -1.4 -1.3 2.2 -1.5 7

31 1.5 8.7 1.8 1.2 1.9 0.9 0.6 5.2 4.6 3.3 -0.6 -1.9 -1.7 3.1 ~3.2 -2.7 2.3 -l.5 0.4 1.4 1.0 3.0 4.0 5.3 0.9 g NHUWLY E mtAN 0.1 -0.1 -0.1 -0.8 -0.3 -0.2 -0.3 -0.3 -0.5 -1.0 -l.a -2.1 -2.1 -2.3 -2.3 -2.1 -1.8 -1.2 -0.7 -0.4 -0.3 -0.2 0.0 0.3 W

                                                                                  -.------------------.------.------------------------------------------------------------------- -------------------------------.--

MARIm0Ms it.5 MIN!pDMs =4.0 PEAN a -0.83 743. VALID 085LRVAflDm3 ( 99.963 DAILt EXTREMt. STAft& TICS

                                                                                                     ----------.--------------------.---------------------------------------------------------------------

le a f i 2 3 4 5 6 7 8 9 to il 12 13 14 15 Man =0.2 -0.8 -0.8 0.3 0.9 -0.0 0.1 2.1 -0.6 0.4 2.4 2.5 11.5 10.9 4.1 MIN =0.8 =2.3 -2.1 -1.7 -3.9 -2.3 -3.6 -2.6 =2.6 -l.3 -3.5 -1.5 -2.2 -1.9 al.4

                                                                                                     .....................................................................................................

DAT 16 17 18 19 20 23 22 23 24 25 26 27 28 29 30 31 NAI =0.5 1.5 2.4 -0.6 =0.0 0.0 1.7 2.8 1.2 2.6 -1.9 3.9 4.3 =0.5 2.2 5.3 alN -l.4 -3.7 -2.5 -2.4 -2.3 -2.1 -3.7 -3.7 ..? -3.3 -3.3 -3.7 -3.3 -4.0 -2.4 -3.2

                                                                                                     -.------------------------------------.------------------------------.------------------.------------

MARIMUM MFANs 1.81 MIMIMUM MFANs -3 _ _ - _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ - _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _

_ _ _ _ _ _ _ _ _ _ _ . _ _ . . _ _ _ _ _. _ . _ . _ _ _ . _ . 388 FT TO 35 FT DIFFEDraflAL TfmPEPATURE (C/100m) Coorte muCLEAR station mLTt080LOGtCAL DATA FEbRUAa7 1980

                                                                                   ..-............. ... ......................................................................................................-..-...

HOGA

                                                                                         ....................................................................................................................... DARL7 DAT        0       1         2                    3      4      5            6     7     8                   9     to    il     32      13        14        15        16        17        te        19        20                                    21     22  24 ptAn
                                                                                   .............................................................................................................-.............-......

I 9.5 9.3 7.7 5.8 7.9 6.4 7.4 6.0 6.2 0.0 -1,6 -2.2 *2.3 =1.5 -1.4 -3.6 1,4 -3.2 0.9 .t.1 -0.3 =l.0 -0.9 -0.3 2.5 I 2 -0.3 =0.4 -0.5 -0.4 -0.6 -1.3 -1.5 =1.5 -0.0 -l . 3 -l .9 -1. 9 -2.2 -1. 9 -2. 3 = 2. 4 -1.6 = 1.5 -1.5 -1. 3

  • t . 3 -1. 3 -l . ) *l.4 -1.1 3 -I.2 -l.4 -l.1 al.) -3.0 -0.3 0.5 =0.5 -0.9 =1.5 -3.2 =3.5 -3.0 *2.8 =3.7 -3.0 -2.2 =1.7 =0.9 -0.4 -0.8 -0.9 -l.2 =1.4 -1.6 >

4 -1.4 -3.5 -1.0 -1.3 -1.4 -1.4 -1.5 =1.4 -1.4 -1.7 -1.9 =2.1 -1.9 =1.9 -1.7 -1.5 -1.4 -1.1 -1.0 =1.1 -1.0 -0.6 *l.2 -1.0 -l.4 N 5 -0.7 -0.6 -0.4 =0.3 0.0 0.1 0.9 -1.3 -1.5 -1.6 -2.1 -2.1 -2 4 =3.0 -3.0 -2.3 -2 =1.7 -1.9 -1.7 -1.7 -1.7 -1.5 I 6 -1.7 -i.9 -i.9 -i.. mi.. -i.. -2.i -i.7 -i.. -2.4 -3.3 -3.0 .2 3.7 -3.7 -3.7 . 02 -1.9 -2.i -1.4.i.: -0.5 i.) i.2 3.. 5.7 -i.4 5 7 n.3 6.6 5.4 4.6 3.7 0.0 0.0 -0.3 -1.1 -1.7 =2.1 =2.3 =2.7 -2.3 -1.9 -1.9 -3.6 -3.4 .t.2 -1.1 *l.1 -1.2 -l.2 -1.1 0.0 0 -l.7 -1.2 -3.2 -l.2 =1.2 .l.2 -1.2 =1.5 =1.6 -1.9 -2,1 =2.8 -3.4 -4.2 -3.5 =3.7 -3.6 -2.3 -0.7 -0.6 =0.0 3.5 2.6 5.3 al.2 9 7.2 6.7 5.7 6.1 4.5 4.8 3.3 2.3 1.0 2.0 0. 3 - 1. 3 = 1. 8 -2.5 -3.4 =3.0 -2.2 =l.4 =0.6 1.5 2.0 3.3 3.1 2.1 1.7 2 to 3.3 2.7 1.1 -0.2 0.3 -0.4 0.3 0.0 0.5 -0.6 =l.1 -1.9 =2.8 =2.8 -2.4 =l.9 al.4 -1.1 -0.9 -0.5 0.0 0.6 0.1 +0.3 -0.5 g 11 0.7 0.5 -0.s -0.7 0.1 0.6 8.9 0.3 -0.5 -2.4 -3.9 -3.9 -4.5 -4.4 -4.4 =4.4 ~4.1 -2.4 -1.8 =0.5 0.2 1.2 =0.1 1.9 -1.3 g 12 3.9 5.0 2.8 1.5 6.) 7.5 2.5 3.0 J.2 0.3 =1.3 =2.3 =2.6 =2.4 -2.1 =1.0 -1.2 -1.0 -0.8 -0.5 =0.5 =0.5 0.5 0.1 0.9 g 13 -0.2 -0.2 0.1 0.5 -0.3 =0.5 -0.3 -0.3 -0.5 *1.0 -1.4 -l.5 =1.9 -1.9 -1.7 *l.5 -2.0 -1.4 -1.4 .t.2 =0.5 =l.4 =l.4 -1.4 -1.0 -- 14 -l.6 -l . 6 - 1.1 -1, 3 - 1. 3 - 1. 3 - 1. 3 = 1. 2 - 1. 0 - 1. 4 - 1. 2 - 1. 4 - 1.5 - 1. 7 - 1. 4 - 1. 3 - 1. 2 a l .2 = 1. 2 - 1. 4 - 1. 4 -1.1 -1.t =l.2 -1,3 3 3> 15 - l . 2 -l . 4 - 1. 3 - 1. 4 - l . 7 -l .5 - 1. 7 - 1. 6 = 1. 9 - 1. 7 - 2.1 = 2. 4 - 2. 6 - 2. 6 - 2.5 = 2. 4 -2. 2 -2.1 = 2. 0 - 1. 9 - 1. 5 - 1. 5 - 1. 4 - 1. 6 -1. s O [, in -l.3 -1.3 =0.6 -1.0 -1.4 =1.3 -1.5 -1.4 -2.0 -2.4 -3.0 -4.6 -3.7 -4.3 -4.6 -4.6 -3.9 -3.0 -1.0 0.1 0.7 0.0 1.0 1.9 -1.8 Z na 17 4.2 1.9 8.7 8.7 -0.1 3.I 5.0 3.1 1.4 0.6 -2.4 =2.4 =3.2 =2.5 -2.6 -2.6 -2.3 -1.4 -0.7 0.0 0.3 0.1 0.2 0.1 0.1 y A 19 n.0 0.1 0,3 0.0 0.9 0.2 -0.1 -0.2 -0.8 -1.0 -1.3 -1.5 =1.6.=1.2 -1.5 -1.4 =2.2 -1.0 -0.0 -0.5 =0.6 -0.4 *0.5 =0.6 -0.7 19 -0.6 -0.6 -0.3 =0.3 -0.9 0.3 1.0 0.8 0.8 -1.0 -1.2 -1.2 -1.5 -2.3 al.7 -1.5 ~t.4 -0.7 -1.0 -0.3 -0.5 -0.4 =0.6 -0.9 -0.6 E 20 -0.9 -0.9 -l.0 -0.8 -1.0 al.1 -1.3 =1.2 =1.0 al.0 -1.0 -0.9 -0.0 -0.4 -0.9 -0.e =1.0 =h.0 *t.0 -0.8 -0.5 -0.1 -0.4 -0.6 -0.9 2 21 -0.6 -0.6 -0.6 -0.6 *0.9 =0.6 -0.7 =0.6 -0.6 -0.7 =0.7 -0.6 =0.5 -0.6 =0.6 -1.1 -1.2 -1.5 - 1. 0 - 1.0 - 1. 2 = 1. 3 - 1. 2 = l . 2 -0. 0 22 -l.2 -1.2 -1.1 -1.4 -1.3 -3.4 -3.4 -1.4 -1.5 -1.9 -2.2 -2.4 -2.5 =2.2 =2.4 -2.3 -2.1 al.9 -1,3 -1.0 -0.9 -1.3 -1.5 -1.2 -3.6 23 -l.4 -l.7 -l." =1.6 -1.5 =1.7 -1.9 -l.1 -1.9 -2.1 -2.7 -2.5 -2.s -2.3 =2.2 -2.5 -2.6 =2.2 =1.7 -0.5 -1.0 -0.6 -0.3 0.6 -1.7 I 24 0.9 0.6 0.3 0.1 0.1 c.8 1.2 0.1 -0.3 -3.0 -2.9 -3.2 -3.0 4.3 -2.8 -2.7 -2.3 -1.0 -0.1 0.6 -0.8 -0.4 -0.6 -1.2 -0.9 DB 25 -l.2 -1.5 -l.9 -1.9 -1.7 -l.8 -1.8 -1.6 -2.5 -2.6 -3.4 =4.8 -3.7 -3.1 -3.9 -4.2 =3.5 -3.2 -2,2 .l.) -l.4 -1.0 =t.2 *t.0 =2.4 0 26 =0.9 -0.6 -0.9 -1.0 -0.9 -l.2 -1.2 -1.3 -1.3 -1.6 -1.7 -1.9 =2.1 =2.2 -2.3 =2.1 -2.2 al.6 0.6 1.0 0.7 1.0 1.7 8.8 -0.0 g 27 1.9 3.0 3.7 2.4 2. 3 -0. 6 -0. 6 -0. 9 -1. 7 -2. 4 - 2. 4 =2. 4 =2.0 =2.4 -3.0 -2.1 -2.1 -1.4 =0.1 1.4 2.0 2.5 3.2 3.5 0.1 Z 28 1.0 1.4 0.9 I.7 0.0 0.0 -l.7 -1.5 -2.3 -1.0 -4.7 -2.3 -2.3 -2.1 -I.9 -2.2 -2.4 -1.s -0.9 O 29 -1.4 ~1.5 =l.4 -1.5 -1.7 -1.6 -l.6 -1.7 -1.9 -l.6 -1.7 -1.9 -1.9 -1.5 =l.4 -1.5 -l.5 -l.6 -1.6 -1.5 =l.6 HOURLY nFAw n.1 0.7 0.4 0.2 0.2 0.1 -0.0 -0.3 -0.6 -1,3 -2.0 =2.3 -2.5 -2.5 =2.5 =2.4 -2.5 -1.6 -1.0 -0.6 -0.3 -0.2 -0.1 0.1 E

                                                                                   ........................................................-.......................---....--.........................................

MAXIMUMa 9.5 MINtpuMr =4.6 NEAN e =0.a4 696 VALID 08SERVAftums t 98.65) DAIL7 FXTR mL STAftSTICS

                                                                                                        .....................................................................................................

DAT 1 2 3 4 5 6 7 8 9 10 11 12 il 14 15 MAR 9.5 -0.3 0.5 =0.6 0.0 5.7 6.6 5.3 7.2 2.7 1.9 7.5 0.5 -1.0 -1.2 MIN =2.2 =2.4 =3.9 *2.1 -3.0 -3.2 -2.7 =4.2 -3.4 -2.5 -4.5 -2.6 -2.0 -1,1 -2.6

                                                                                                        .....................................................................................................

DAV 16 17 18 19 20 28 22 23 24 25 26 27 28 29 MAX 1.9 5.0 0.3 1.0 -0.1 =0.5 =0.9 0.6 1.2 -1.0 1.0 3.7 3.0 =1.4 utu -4.6 = l.2 -2.2 =2.3 al.) =1.3 -2.5 -2.8 -4.1 -4.2 -2.3 -3.0 -2.4 -1.9

                                                                                                        . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . - . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .

mAzimum MEANs 2.03 MIN 14UM MEANs -3. _ _ _ _ _ _ _ - _ _ _ - _ _ _ _ _ _ _ _ _ _ _ . _ _ _ - _ _ _ _ - - _ _ _ _ _ _ _ _ _ - - _ _ _ _ _ _ _ _ _

_ - _ _ - 310 FT TD 15 FT CIFFFRE5TIAL 7EEPERATURE (C/8000) COOPER N UCf.E A R 374T304 METEOROLOGICAL DATA MARCH 1980

   ..................-.........................-...............................................................................-.-...

MOUR DAT ...................................................................................................................... 0 t 2 3 4 5 6 7 e 9 04tLT 12

   .---.---.....-.----...---.............-.................................13 I -l.7 -1.1 -l.7 -I.9 -l,7 -3.s -1.8 =t.5 -2.7 -3.3 -3.7 -4.1 to        13                       to    15    16     17    le    39   20     28     22
                                                                                                                                                .........................................................

23 #EA4 4.5 -4.9 -5.3 -4.3 4.2 -3.3 -1.5 -0.8 0.2 3.0 -0.1 2.3 -2.2 2 5.2 7.s 9.5 7.9 5.6 5.7 7.5 3.9 1.2 -0.7 -2.2 -2,1 -2.2 -2.1 -2.3 -1.9 -1.6 -1.6 -1,6 -l.6 -l.6 -l.6 3 0.3 0.0 0.0 0.0 -0.3 0.4 -0.1 0.5 =0.5 -1.5 -2.0 -2.3 -2.3 -1.6 t.6 -1.4 -l.0 -1.0 0.0 1.1 0.3 =0.1 8.3 4 3.5 8.4 1.5 8.9 2.9 2.9 3.2 2.6 -0.3 I 5 0.7 -0.6 -0.0 -l.0 =1.4 -1.4 -1.4 -1.5 -1.6 -l . 5 - 3 . 4 - 1. 6

  • l . 9 - 1. 0 -I . 5 - 1. 5 - 1. 5 - 1. 5 - 1. 5 -l.8 =0.7 >

6 -l.1 0.3 -1.30.2 -1.5n.2 =l.40.2 -1.3 -I.2 -1.2 -1.4 -2.6 -2.0 -4.1 -4.5 -5.0 -4.1 -4.4 -3.6 -3.0 -2.3 +1.7 0.0 0.7 1.2 3.0 0.9 -1.0 7 -n.9 0.0 -0.7 -0.7 -1.0 -1.5 -1.6 -2.3 -2.4 -2.2 -2.9 -2.9 -3.3 2.0 -1.5 -0.9 -0.5 -0.5 -l.0 -l.1 -0.9 -1.2 8 -l.2 -l.2 -l.4 -1.1 -I.5 -1.4 -1.3

                              -l.3   -1.6    -3.3             -l.0  -1.2                 -l.4 -1.6 -1.6 -2.3 -2.3 -2.4 -2.1 -2.3 -2.0 -l.4 -l.3 -l.0 -1.5 -1.2 -4.3 -l.1 -1.2 -l.5 4.4 6.1 3.7 13.9 5.9 4.2 -0.0                                     -l.1 -1.1 -2.1 -2.3 =2.5 -3.3 ~3.9 -3.4 -3.3 -2.0 =2.4 -0.5 0.1 1.0 1.9 2.2                                                   "I 9                                                                               3.1 2.6 U.9 =0.4 -1.4 =1.5 -l.9 =2.7 -2.6 =1.7 -1.9 -l.7 1.0 1.2 1.2 5.3 4.3 2.6                                            -1.2 5.9 8.9     0 to                  3. 3    3.9    3.4     1.4 1.4 2.8 3.2 ll                -0.6 -0.6        l.8     1.6 0.7                 1.1 0. 5 - 0.       1.0 -1.7 -1.7 =2.3 -2.4 -3.5 -3.3 =3.5 -3.7 -3.2 -2.5 -l.9 -l.4 -0.9 =1.0 -l.0 -0.0 -0.7                                    Z 12                                                                                        2 - 2. 0 - 1. 0 - 3 . 0 - 1. 9 - 1. 7 - 1. 9 - 1. 9 - 1. 8 - 1. 6 - I . t .0. 6 -0. 5 -0. 9 = 0.9 -0. 8 a l .0 -0. 0     g
                                                                                               -1.5 1.7 -1.5 -2.0                    -1.s -1.6 .l.6 -1.6 -1.6 -1.3 -l. -l.3 -l.2 -1.2 -i.1 -1.2 -1.8
                      -i.e -i.3 -t.2 -:.s -i.2 -1.1 -1.0 -1.2 -i.i .

13 le

                      -l.2   -l.2  -1.4     -1.5           -1.l   -1.0 4.1 4.0 4.8 3.5 3.2 0.9 1.0 0.0 0.0 .t.2 2.7
                                                                          -1.2          -1.2                          -3.9 -4.0 -1.9 -3.9 -3.9 -3.5 -3.2 -l.6 2.1 1.5 4.1 5.2 4.6 -1.1                                 Z 15                  s.O t.1 3.0 2.4 1.9 1.9 1.s 0.8 0.0 =t 0 -1,?                                           . 5 -1.2 -1.7 -2.3 -2.1 -2.2 -1.9 =2.5 1.1 3.1 4.6 6.1 4.9 2.2 1.2                                     b
                                                                                                                      -1.5 -1.4 =l.6 -I.5 -1.2 -1.0 -0.9 -0.2 0.0 -0.1 -0.3 -0.8 =0.2 0.0                              3 16                -0.3 0.5 2.2 0.6 0.8                             1.7 2.4 8.9 8.8 1.4 -1.3 -2.1 -1.9 -2.0 -2.1 -1. 0 a l . 8 - 1. 5 =1. 5 - 1.                                  3                        7 -0. 5

}= 17 -1.5 -1.6 ~1.2 -l.4 -1.5 =1.4 -1.4 -1.3 -1.8 =1.0 -3.. ~3.7 -4.I -4.3 -4.5 -3.0 -1.0 -2.0 -1.0 3.6 -1.2.54 - 1.3.62 - 1.2.42 - 1.3.4 0 oa 18 t.7 2.s 2.4 1.4 1.6 8.7 2.5 0.6 =0.5 =t.2 -1.6 -1.9 -1.7 -l.7 -1.7 =l.7 -1.4 -1.0 -0.3 0.3 0.9 1.7 0.6 0.g *t.) 0.1 Z to 19 0.9 1.2 1.0 0.4 0.2 0.1 -0.6 -1.4 -1.7 -2.0 -2.1 -2.1 -2.2 -2.0 -1.9 -1.4 -0.1 7 20 0.9 2.0 3.0 1.5 -0.3 -1.1 =0.3 a

                      -0.0                                                                                                                                                                                             E 28                -0.2 -0.9
                              -0.4 -l.0
                                      -0.9-0.7
                                             -0.7-1.1         -0.5-1.2
                                                                     -0.6-0.7  -1.2-1.2  -2.9-1.7
                                                                                                -3.3=2.2
                                                                                                       -3.5-2.4-3.0-3.4
                                                                                                                     -3.9-3.6        -4.0~3.5
                                                                                                                                            -4.2-1.5
                                                                                                                                                  -4.0-3.3
                                                                                                                                                        -3.5-2.6
                                                                                                                                                               -3,0-1.9
                                                                                                                                                                     .t.9 =0.6 -0.6 =0.6 -0.6 -0.6 -0.5 -1.6 0.3   0.6  2.5    2.0    2.1   1.6 -1.4    Z 22                 1.5 1.2 0.6 -0.3 -0.8 -l.0 -l.2 -l.4 -2.1 -2.1 -2.1 -2.1 -2. 2' = 2.1 -1. 0 -l .5 =1.2 0. 3 =0. 2 -0.5 *0.6 -0.6
                      = t . 2 - 1. 2 - l . 2 -I . 3 - 1. 2 - I . 7 - 1. 9 -1. 9 - 2. 3 - 2. 2 - 2. 3 - 2. 4 -2.1 -l . 9 - 1. 9 - 1, 7 - 1. 6
  • t .2 = 1. 2 - l . 2 -I . 3 - 1. 2 - -1. 2 a l .2 -1.0 23 "4 24
1. 2 -1. 2 - 1.6 >

25 =l.2 -l.4 -l.2 -l.3 -1.2 -1.2 -1.4 -1.0 -1.2 -1.7 = 2. 3 - 2. 5 = 2.1 = 2. 3 - 2. 0 -2. 0 - 1. 9 - 1.5 - 1,2 - 1. 8 - 1.2 -1,2 = 1. 0 -l 1 -1.5 I 26

                      -1.0 -1.2 -1.2 -1.3 =1.4 -1.2 -1.2 -1.4 -1,6 -1.9 -1.7 -1.7 -1.7 -1.8 -1.7 -1.5 -1.5 =t.) - 1. 2 - 1.1 -l . 4 - 1. 4 - I .1 - 1.1 - 8 . 4                                                        US
                      -0.6 -0.6 -0.8 21                -0.2 -0.5 =0.e -l.2                   =1.0 -1.1 -1.0 -1.3 -1.0 -1.7 -1.5 =1.3 *t.2 *l.0 -l.1 -1.1 -1.0 -0.4 -1.0 -0.0 -0.6 =0.0 -0.5 =0.6 -1.0 0.0 -0.6 -0. 7 - 1. 2 = t . 5 -1. 5 -2.1 -2. 0 - 1. 9 -2. 2 -2. 3 - 1. 7 -1. 7 - 1. 3 = 0. 8 -0.6 -0.3 =0.3 =0.6 -0.6 -0.0 -l.1                                         0 24                -0.5 -n.7 -0.6 -0.3 -1.0 -0.3 0.9 -1.1 -1.2 -l.2 -1.4 1.3 -3.4 =1.2 -l.2 -1.2 -1.0 -0.9 -1.0 -0.9 -1.0 -1.0 al.0 -l.2 =1.0                                                                       g 29 30
                      -l.2 -1.2 -l.2 -l.2 -l.2 -1.2 -3.2 -1.2 =1.3 -1.4 al.4 al.3 -1,3 *t.) -1.2 -1.1 -1.2 -1.0 -1.0 -0.9 -1.0 -l.0 al.l =1.0 -1.2                                                                     Z
                      -I.1    -t.1 al.0 -0.9 -0.0 -0. 9 = 0. 8 -0. 0                            -1. 2 -l .1 -1. 0 - 1. 2 -l . 3 -l . 2 - 1. 2 =0. 9 - 1.1 = 1. 0 - 0. 9 = 0. 0 - 4 . 2 - 1. 0 - 1. 0 -0. 4
  • t . 0 0 31 -0.1 -o.) -1.1 -0.4 =0.3 0.1 -0.4 -0.8 -2.2 =2.4 -2.0 -3.0 -3.1 -3.0 =2.9 -2.6 -2.4 -2.3 -l.5 0.0 0.3 2.1 8.7 0.9 -1.8 E HOURL7 mEAN 0.3 0.3 0.3 0.5 0.0 -0.1 -0.0 -0.5 -l.2 -1.7 =2.2 -2.3 =2.4 2.5 -2.4 -2.2 -1.9 -1.5 -0.e =0.2 0 0.5 0.4 0.3
   ................................--.....----...-.--..............--.----.-- .....

MattnUMa

                                                                                                                                                         .-----==.----......---.....5     --..........-..+ -====

St.9 mRNimUma =5.3 NEAN e -0.08 743. VAbtD USSERWATIONS ( 99.9%) nAILY EtfaEME STATISTICS

                                    ....................-...........................,.........---.............-..........................

DAT 4 2 3 4 5 6 7 8 9 to 18 12 13 14 15 mAI 2.5 9.9 3.2 3.3 1. 8 , 0.3 -0.9 2.6 11.9 3.9 1.6 -1.0 S.2 6.1 3.0 pts -S.) -2.3 -2.3 =1.9 -S.0 -3.3 -2.4 -3.9 -2.7 -3.7 -2.0 -2.0 -4.0 -2.3 -1.7

                                    .....................................................................................................

DAY 16 17 18 89 20 21 22 23 24 25 26 27 28 29 30 38 mAI 2.4 3.6 2.5 3.0 -0.5 2.8 l.5 =l.2 -1.0 -1.0 -0.4 0.0 -0.5 -0.9 -0.0 2.1 min -2,1 -4.3 =l.9 ~2.2 -3.6 -4.2 -2.2 -2.4 =2.5 -1.9 -1.7 -2.3 -1.4 -l.4 -1,3 -3.1

                                   ................................-....................................................................

mAXIMHM mE44s 2.09 MINIMUM nFAme =3. _ _ _ _ _ _ _ _ _ _ _ _ _ __ - _ -

                                                    . _ _      __

_ _ _ _ _ _ - - - _ _ - _ - _ -

   .
 ,

SIS FT 73 35 FT DIFFE;C~TIAL TLEPE2ATURE (C/tt$2) COOPER wuCLEAR STATION MEftCaDLOGICAL DATA APRIL 1900

               .........................................=......................................................................................=.
  • NOUR
                     ....................................................................................................................... DAILY DAT       0      1       2              3     4      5          6                          7      8      9    10     11           12     13     14  15   to      17     10        19  20           21 22  23 NEA4
               .................................=................................................................................................

1 0.2 0.1 4.0 0.3 =0.9 0.0 =0.0 -0.9 =0.9 =1.2 .l.4 of.1 =t.0 .t.2 -I.5 =1.5 2.6 3.0 2.2 =t.4 =l.5 .t.5 =t.5 =t.1 -1.2 2 -3.5 -1.5 .t.5 +1.5 .l.4 .t.4 .t.2 =1.3 *l.4 =1.5 t.5 -1.6 1.5 =1.5 *t.) *I.4 1.2 =t.8 =0.5 =0.9 -0.9 =1.0 .t.0 -1.0 -1.3 3 .t.4 t.3 =0.0 0.9 0.8 .t.0 t.3 =1.3 at.3 .t.9 2.3 0.9 .t.2 =1.5 =1.6 =1.9 =1.5 .l.4 t.2 =1.2 al.2 =1.0 -1.2 =1.2 =t.3 4 =0.5 0.4 =0.5 =0.4 0.2 0.1 0.5 =1.4 -2.4 =2.0 =2.5 3.7 3.6 -3.4 3.1 =2.6 2.5 =2.4 -1.2 0.3 1.9 =1.5 g 5 4.3 3.7 4.4 1.6 2.7 2.0 1.4 0.6 =0.0 -1.0 -2.0 =2.2 2.2 -2.2 =2.1 al 9 .l.0 -1.5 =0.3 =0.9 0.2 0.1 0.0 0.0 0.2 g 6 *0.1 0.2 =0.1 0.7 =0.6 0.0 0.4 =0.3 .l.1 =1.5 -1.7 =1.8 =2.0 *2.0 -1.8 =1.5 =1.0 =1.2 =0.8 0.6 1.1 1.2 0.5 1.7 *0.5 N 7 1.9 0.9 0.8 1.2 0.9 0.1 0.3 .t.0 -2.1 =2.3 -2.1 =2.6 =C= *C= *1.3 =1.0 0.3 0.0 1.2 1.8 0.0 =0.5 0.2 r 4 =0.3 -0.4 =0.A 0.9 =1.0 =0.9 1.0 -1.3 t.2 =8.3 -3.3 =1.4 -1.6 *t.7 =1.7 =1.7 .t.7 =t 3 -1.2 .t.3 .t.0 .t.1 .t.3 -1.3 .t.2 g 9 1.0 -1.0 -1.0 =l.0 =1.0 =1.0 =D= =1.1 1.2 =1.5 -1.9 =2.0 2.5 -3.1 3.3 =2.0 *2.5 2.2 .t.7 =0.1 0.8 1.9 2.5 2.6 l.1 4 to 1.2 1.6 1.1 2.5 2.3 2.7 3.1 1.0 =1.0 ate? =2.5 3.2 =2.3 =2.3 =1.5 =l.4 -1.2 =0.9 =0.7 =0.4 0.2 -0.1 =0.5 -0.6 =0.2 O I 18 0. 7 0. 6 =0. 9 = 0. 8 = 1.0

  • I .1 .l .1 = 1.1 -1.1 -1. 3 0. 8 . t . 0 -0.9 = t . t =1.7 =1.7 =1.0 =1.2 -3.2 0.5 0.8 1.2 1.0 -0.3 =0.7 gp 12 0.6 0.5 0.1 0.2 0.0 -0.6 .O.4 .t.4 =1.7 =2.0 =2.1 =2.7 =2.6 =2.6 =2.6 =2.3 2.3 =1.8 =1.4 0.7 0.4 1.0 8.1 0.7 =0.9 13 0.3 1.0 4.2 4.6 1.5 3.7 3.2 0.2 -1.4 -1.9 =2.3 =2.4 2.1 = 2. 0 -1. s = 1. 0 = 2. 0 2.0 -1. 5 .t . 2 -1. 2 1. 3 -1. 3 = 1. 4 -0.5 E 14 =1.3 t.5 t.4 .t.5 =1.6 =l.7 t.4 =1.5 =1.7 =1.9 2.2 2.4 =2.6 =2.9 =2.6 2.5 2.3 2.0 .t.5 =0.8 0.6 1.2 1.9 2.0 -l.3 2[

15 2.0 0.7 3.9 2.7 1.5 2.2 1.4 =0.1 =1.6 =2.0 2.3 =2.4 =2.1 *2.1 =2.0 -1.1 =1.0 =1.4 t.) 0.4 8.9 3.4 5.3 6.0 0.4 C 16 2.9 3.6 3.6 2.0 2.6 1.3 2.0 0.0 -0.5 =1.7 =t.9 -1.6 =l.5 =8.3 al.2 -1.4 .t.4 t.2 0.5 0.1 0.6 0.5 =0.7 0.2 g 17 =0.3 =0.4 0.3 0.7 =0.5 =0.8 0.6 =0.5 =0.0 30.A 0.5 =0.6 =0.6 0.9 =1.1 =1.2 =1.0 =1.0 -1.0 .l.0 0.9 =0.5 =0.5 0.1 =0.7 22 18 0.8 =0.1 0.1 0.5 1.2 2.0 4.2 0.5 =1.2 =t.0 s.) =1.5 =l.4 .t.) -1.2 1.2 .t.t *0.8 0.6 1.5 2.6 3.5 5.4 0.4 0 8 19 3.5 3.2 4.1 5.0 J.5 2.9 1.9 1.4 0.9 =1.3 =I.4 -1.5 =1.5 =1.4 -1.2 =1.2 =1.2 -1.2 =0.0 1.2 2.7 5.0 5.2 3.6 1.2 2E jd 20 3.4 4.1 3.9 3.5 3.1 3.0 3.5 2.9 0.0 -1,3 =1.4 -1.0 -1.2 -1.5 -1.5 =1.4 *t.2 =1.2 0.9 0.5 2.5 4.0 6.2 6.9 1.5 { 28 5.2 6.2 9.3 0.5 0.1 6.0 5.4 3.9 0.3 =l.2 =1.1 =t.5 -1.6 =1.7 =1.5 *t.7 *t.4 =1.2 =0.5 1.0 2.9 2.3 t.6 1.4 2.0 m 22 1.9 1.6 2.5 2.1 2.1 1.9 1.7 0.1 .t.0 -1.4 =1.4 =1.7 =1.7 -1.6 .t.5 =1.4 =1.3 =t.1 =0.6 0.5 4.4 6.1 3.9 1.9 0.7 gr 21 2.0 1.1 4.6 1.3 =0.6 =0.6 0.7 =1.0 -1.4 =1.4 =l.4 -1.5 =1.7 =1.8 -1.9 =1.9 =1.7 =1.6 l.0 =0.4 0.0 0.4 0.2 =0.3 =0.5 4 24 =0.4 =0.1 0.1 0.0 2.0 3.9 1.1 .t.4 =1.4 =1.2 =1.4 =1.5 2.1 *2.1 =1.9 =1.9 =1.9 -1.7 =1.3 =0.4 =0.3 0.4 1.3 1.7 0.4 ) 25 1.2 1.0 3.0 3.0 0.0 8.5 1.0 0.6 =0.6 =1.0 1.2 .t.4 =1.6 =1.7 =1.5 =1.5 =1.4 1.2 t.8 .t.0 -1.0 .t.0 .t.3 .t.3 =0.5 r 26 *t.0 =1.0 0.3 =0.8 =1.1 =1.2 1.0 =1.0 -1.1 =t.) =1.5 .t.4 =1.4 *t.7 =1.6 =1.6 -1.6 =1.4 =1.1 =0.6 0.1 =0.1 =0,5 -1.t =1.1 27 =1.1 =1.0 -0.9 0.0 0.0 =0.9 =0.9 =1.2 el.4 =1.4 =1.7 2.1 =1.8 =2.4 =2.4 *2.4 =2.3 2.0 -1.4 +0.2 1.1 2.3 2.0 1.9 =0.9 E 28 0.6 0.5 0.6 0.4 0.7 =0.1 =t.2 =1.6 *t.7 =1.9 =2.0 =2.2 =2.1 =l.9 al.9 al.1 =1.5 *1.0 -0.3 0.6 0.6 2.4 4.0 6.2 =0.2 0 29 4.s 4.6 4.0 4.3 6.9 7.5 4.2 0.8 .l.0 =1.4 2.3 -2.2 =2.3 =2.6 =2.4 2.3 =1.9 al.5 .l.2 0.5 0.0 0.3 0.0 1.0 0.7 m 10 2.1 1.6 3.9 =0.3 -1.1 =1.5 -1.5 1.6 =1.8 -3.4 -1.4 -1.6 =1.4 al.4 =1.2 =0.7 0.3 8.9 2.4 1.4 =0.3 2P OupLY g tah 0.9 0.8 8.4 1.2 1.0 1.0 0.7 =0.1 =1.1 =1.4 .t.7 -1.8 .l.8 al.9 *t.8 =l.1 =1.6 =t.5 =l.0 0.1 0.5 1.8 3.2 1.1 m

               ...............=.................=................................................................................................                                                                                gg
                                                                                                #AIlpupe               9.3     utN3MUNm =3.7                MFAN s =0.29 706 VtLID Op5ERVA73Dm8 ( 90.59) l                                                                                                                         DAILY FITREME STAT 35 TICS
                                 .....................................................................................................

pay 1 2 3 4 5 6 7 8 9 to 11 12 21 94 15 l MAX 0.2 =0.8 =0.0 1.9 4.4 1.7 1.9 =0.3 2.6 3.7 1.2 1.1 4.6 2.0 6.0 Mtp -3.0 -l.6 =2.1 -3.7 -2.2 =2.0 2.6 1.7 -3.1 3.2 =1.7 =2.7 2.4 2.5 2.4

                                 .....................................................................................................

DAY 16 17 10 19 20 21 22 23 24 25 26 27 28 29 30 MAX 3.6 0.1 5.4 5.2 6.2 9.3 6.8 4.6 3.9 1.5 0.1 2.0 6.2 7.1 2.4 MIN =l.9 -1.2 =1.5 =t.5 -1.5 *t.7 =1.7 -1.9 =2.1 *t.7 .t.7 =2.4 -2.2 =2.6 .t.A

                                ............................................=........................................................

MAXIMUM NFANs 3.11 MINIMUM ar.Ame 2 _ _ _ _ - - . - _ _ - . _ _ . - -. ___- . _ _ _ _

                              . . . _

388 FT TO 35 FT DIFFEEE%TIAL TE;PrRATl:RE (C/1002) COOPER NUCLEAR STATION NETFOR DI.0GIC A L DATA FAY 1900

  .....................................=.......=.............................................-......................................

HOUR

        ............................................ .......................................................................... DAIL7 OAV       0     1     2     3         4      5      6       7     8     9     to     !!     12     13   14    15    16      17     le    19   20    21   22   23 MEAN
  ...........=.................................=........................................................................ ......=....

1 0.5 0.0 -0.t 0.0 -0.3 -0.4 0.1 0.9 =1.2 -1,3 =1.4 =l.5 =1.5 -l.5 =l.5 =l.4 .t.3 =1.0 =1.0 =0.5 0.5 2.1 5.5 4.7 =0.1 2 6.5 6.5 5.7 7.1 6.5 7.7 7.0 4.3 =0.6 *l.4 =1.9 =2.1 =1.5 =1.5 =1.7 al.8 =1.6 =1.5 =1.2 0.t 1.0 1.2 0.6 1.7 1.6 3 1.9 2.6 2.0 3.3 3.6 4.3 4.4 0.3 =0.8 -1.0 -1.4 =1.5 =1.7 =1.6 =1.6 =1.6 =1.3 =1.2 =0.9 =0.3 0.5 1.0 5.0 5.5 0.0 4 7.7 0.7 9,7 10.2 8.7 8.7 8.8 6.1 0.5 =1.1 =1.4 =1.7 =1.4 =1.6 =1.5 =1.5 =1.5 =1.7 =0.9 1.1 0.5 =0.2 0.9 3.0 2.9 I 5 3.4 2.8 1.2 1.9 4.6 5.8 3.4 1.1 =t.0 =1.4 -1.5 -1.5 -1.9 =2.0 =1.5 2.2 =2.2 al.7 =1.3 0.7 0.4 =0.7 =0.8 =0,5 0.2 6 =0.3 =0.3 =0.3 0.2 .3.4 4.8 4.6 1.9 =0.6 =1.2 =1.4 =2.3 -2.5 =0.0 =0.6 =0.6 =0.5 =0.1 0.2 > N 7 -0.3 -0.5 =0.0 =0.8 =0.0 -0.8 -1.0 =t.2 =2.0 =2.0 =2.1 =2.8 =3.0 -3.0 =2.9 -1.0 =2.6 =2.4 =1.7 =l.2 =0.8 =0.6 =0.5 =t.2 -1.6 0.9 0.9 3.4 4.1 5.8 =0.9 I 6 =0.9 =0.4 =l.0 -0.9 =t.2 =1.2 =1.8 =2.8 =2.4 =2.6 =2 =2.0 2.7 =2.6 =2.4 =2 =2 9 =l.2. 6 5.9 7.6 7., 5.4 3.. i.3 1.2 -i.4 =i.7 .i.5 . 69 -2.i . .. 1.6 .i.. . 45 . 3 =1.9 5 ai.0 -0.. -0.3 0.0 0.0 -0.2 0.9 g 10 -0.3 =0.3 =0.3 0.3 0.3 =0.3 =0.4 -0.6 .t.2 =1.8 t.7 -1.7 =1.4 =1.6 =1.6 =1.7 =1.0 0.3 0.5 =0.6 0.7 0.7 -l.0 -0.7 =0.9 0 11 =0.5 =0.1 0.0 =0.5 =0.8 -3.0 -1.1 =1.3 -1.4 -1.2 =1.4 =1.5 =1.5 =1.6 =1.5 =1.5 -1.3 =1.8 *1.0 -0.7 *0.4 0.0 0.0 0.0 *0.9 Z 12 =0.e 0.7 =0.8 =0.7 =0.0 -0.9 -1.0 -0.e .1.1 .t.2 1.5 =1.2 =1.4 =1.2 =1.1 =t.1 -1.2 =1.4 -1.5 0.7 2.0 2.3 3.7 2.9 =0.4 13 =0.4 =0,6 =1.0 =0.8 =0.0 -0.9 -1.1 =1.4 -1.7 -1.9 -2.2 =2.4 =2.6 =2.4 =2.6 =2.1 =2.0 ~2.0 =1.6 =0.5 1.9 4.1 5.5 5.5 =0.6 m 14 4.7 4.5 5.0 4.6 3.7 2.6 2.7 0.3 =0.9 =1.3 =1.4 =1.7 -1.6 =1.5 =l.4 =l.3 =1.4 =1.2 -1.0 -0.6 0.1 0.2 =0.3 1.0 0.6 7 15 0.9 1.5 2.5 2.5 3.9 6.8 5.3 2.3 =0.5 t.3 -1.3 =1.6 -1.5 al.4 =1.5 =1.2 =1.0 =1.7 *0.7 -0.5 =0.5 =0.2 =0.3 =0.5 0.5 g 16 =0.5 -0.6 =0,5 =0.6 -0.6 =1.0 -1.3 -1.8 =1.0 -1.0 =1.1 =1.1 =1.3 =1.1 '

                                                                                                                                  -1.0 =1.8    0.8 =0.9 =t 0 -0.7 =0.9  --

B 17 =0.5 =0.4 =0.3 =0.4 =0.5 =0.5 =0.8 =1.1 -1.2 =1.4 =2.7 =2.9 -3.5 -3.3 =4.4 =2.2 -1.2 ='.! =1.4 -l.4 =1.3 -3.2 =1.2 =1.1 -1.5

        -1.1 -l.2 =l.2 -l.1 =l.l =1.1 =t.0 =1.2 -1.3 -1.4 -l.4 =l.4 =1.4 -1.4 =t.3 =1.3 =1.3 =1.2 =1.2 =1.1 =1.0 -0.8 =0.8 =0.8 -1.2                                    O 19 =0.6 =0.7 -0.9 -1.0 =0.0 -0.5 -3.8 1.2 -1.5 -1.6 =1.4 =1.4 -1.4 =1.3 =1.2 =1.5 -1.3 =1.2 =0.9 =0.5 i" 18                                                                                                                                           0.2 0.5 0.7 1.a =0.8     Z ta 20     1.0   1.6    1.4  1.2        1.4    1.3   1.3    0.8 =0.6 .l.4 -1.4 -1.4 =1.6 -1.4              l.4 =1.0 -1.0 -0.6 =0.5 =0.5 0.3           3.0 2.5 2.7 0.1     7 2.6  3.8  1.1 A

'" 2 8 3.9 4.0 5.7 5.5 5.3 4.9 3.7 1.7 =1.0 -1,3-1.5 -1.5 =1.9 -1.7 al.5 =1.7 -1.7 -1.3 -1.1 =0.4 0.3 8.5 E 22 5.5 5.0 6.4 7.3 7.6 8.1 7.9 4.4 =0.3 -1.5 -1.5 =1.4 -1.2 =1.4 =1.4 -1.5 =1.5 -1.3 =0.9 0.5 0.5 1.4 3.1 5.1 2.0 2 23 6.4 6.1 7.2 6.9 6.2 1.1 6.0 3.2 =0.3 -1.5 -1.5 -1.7 -1.6 -1.2 -1.5 -1.5 =1.2 =0.7 =0.4 0.1 =0.1 =0.3 0.0 0.1 1.5 d 24 0.6 0.8 1.0 1.0 0.9 0.9 0.6 =0.1 =1.3 =1.2 =1.4 =1.5 -1.6 -1.7 =1.5 -1.5 =1.5 =1.0 -0.9 =0.6 =0.3 -0.2 =0.3 =0.1 -0.5 N 25 =0.1 =0.1 =0.3 =0.5 =0.5 -0.5 =0.6 =1.0 -1.4 -1.4 =1.4 =1.3 -1.5 =l.6 =1.7 =1.7 al.4 =1.2 -0.0 -0.5 =0.5 -0.5 =0.5 =0.2 =0.9 I 26 0.0 0.0 -0.8 0.0 0.4 =0.2 =0.6 =0.3 =0.5 =0.6 -0.8 0.3 =0.5 =1.1 -1.4 -1.5 =1.4 0.9 =0.6 =0.3 0.0 0.9 1.6 1.2 =0.3 27 1.5 1.1 8.2 1.4 1.0 1.4 1.1 0.8 -1.2 -l.3 -1.5 .l.4 -l.3 =1.4 -1.7 =1.5 =1.5 =1.5 =1.1 =0.6 0.6 0.4 l.2 1.4 =0.8 Ul 28 1.1 1.2 1.4 2.4 8.9 1.5 0.0 -l.1 -1.2 -1.0 -1.2 -1.5 =1.4 =1.7 =1.5 =1.8 =1.0 -1.5 =1.2 =0.9 =0.5 =0.3 -0.1 =0.1 =0.3 f) 29 =0.1 =0.3 =0.1 =0.1 0.3 0.2 =1.4 =1.4 =1.7 =1.9 =1.9 =2.0 =2.0 -1.9 -1.4 1.5 =0.8 =0.8 -0.9 =0.8 =0.6 =1.0 g 30 -0.6 0.3 =0.5 =0.8 =0.9 -0.6 -0.6 -1,1 =1.4 -1.5 -1.8 =2.0 =2.3 =2.) =2.1 =l.9 -1.0 -1.8 =1.1 -3.2 =0.8 =0.4 -0.4 0.0 -l.2 7 il 0.5 0.9 0.5 1.2 0.2 0.7 0.0 -1.2 =1.1 -1.3 -1.2 =0.8 0.6 =0.3 0.3 -0.6 -1.5 -1.1 -1.0 -0.8 -0.6 =0.6 -0.8 =0,5 =0.4 O OURLY E EAN 1.5 1.5 1.7 1.8 8.8 2.0 t.0 0.4 =1.0 al.4 -1.5 =1,6 =1.7 =1.7 .l.7 -1.6 =1.5 =l.3 =1.1 0.6 =0.0 0.4 0.9 t.) UI

  -.. .................................=..........==..........=..........=...........==.................=...........................

MAximnus 10.2 m!NIMUMa .4.4 prAN e =0.07 s 132 WALID CHSERVATIONS ( 98.4%) DAIL7 EXTRFME STATISTICS

                    ...............................=.....................................................................

DAV l 2 3 4 5 6 7 e 9 to il 12 13 14 IS NAX 5.5 7.7 5.5 10.2 5.1 4.s =0.3 5.0 7.6 0.3 0.0 3.1 5.5 5.0 6.8 MIN =1.5 =2.1 al.7 =1.7 =2.2 -2.5 =1.0 =2.8 -2.1 .l.0 -l.6 =1.5 -2.6 =1.7 =1.6

                    .....................................................................................................

DAT 16 17 18 19 20 21 22 23 24 25 26 27 24 29 30 31 MAX =0.5 -0.3 =0.8 1.6 3.0 5.7 8.1 7.2 1.0 -0.1 1.6 1.5 2.4 0.3 0.1 1.2 MIN al.3 =4.4 =1.4 *l.6 -1.6 =1.9 al.5 al.7 al.7 =1.7 -1.5 =1.7 =1.0 -2.0 =2.3 -1.5

                    ....................... .....=...=.......=....=......................................................

MAIlkHm MEApe 3.39 NINIMUM MEANs =2

                  . _ -         -            -         __.            ,-             . - -            -        - - ~. -               .     ..            .       -      -                 . _ .

I \ l I 31B FT TO 35 FT DIFFERENTIAL TEMPERATURE (C/100m) l COOPER NUCLEAR STATION METEOROLOGICAL DATA JUNE 1900

   ...........-==..-===.-=---===.-----..=,.=*========== ...==========.--==.....-=======.---==.........=========.======. ====..===..==

HOUR

         ..................................... ................................................................................. 0AILY t  041       0     1         2      3     4       5         6     7      8      9           10    11     12   13          14   16     16        17      to     19     20  28  22   23 MEAN l
  ......=..-..................=........=......=...=............===...............=====...-==.=.............==..=.............-=....

t 0.2 1.0 -0.1 -I.2 -0.7 0.3 =0.4 =0.9 -1.0 .l.0 =1.2 =1.7 =2.0 *2.3 =2.5 =2.5 =2.3 =1.5 -1.8 =0.9 =0.1 0.4 0.9 0.6 =0.9 2 0.6 0.3 =0.1 0.2 -0.2 0.4 0.0 =t.2 al.5 =1.5 -1.6 -1.4 =1.5 1.4 =1.9 a2.3 =2.3 =2.1 .t.5 al.0 0.5 2.5 2.1 0.2 =0.6 . 3 0.3 0.7 0.7 0.8 1.2 1.0 8.0 -0.7 -0.8 =1.4 =l.5 =1.3 -1.2 =1.4 =1.1 =1.0 al.0 =1.0 0.5 *0.6 0.5 0.5 0.6 =0.2 *0.4 ! 4 =0.3 =0.4 =0.9 -l.0 =0.0 -0.3 =0.6 0.8 =0.8 -1.0 -1.1 =1.8 =0.3 =1.6 =1.2 31.4 -1.4 =1.1 =0.9 0.4 0.5 =0.3 -0.3 0.6 =0.8 y 5 =0.6 0.6 =0.5 *0.1 =0.3 -0.3 -0.5 -l.0 -1.5 =1.7 =1.7 =2.0 =1.9 =1.7 =1.5 =1.6 -1.4 .l.0 -0.9 0.0 0.6 0.6 -0.5 =0.4 =1.0 g l 6 =0.4 0.5 =0.3 =0.7 =0.9 -1.3 -1.3 .t.5 -1.6 =1.7 -1.7 -1.7 =t.7 -1.6 -1.2 =0.6 0.2 0.3 0.1 0.1 =0.5 -0.9 y 1 =0.6 =0.6 =0.6 0.3 0.1 0.7 0.1 =1.2 -1.0 =2.3 =2.4 =2.6 =2.8 =2.0 -2.9 =3.0 =2.6 =2.1 =1.9 .t.7 al.6 p. 8 =1.4 =1.5 =1.9 -1.0 -2.3 -2.5 -2.6 1.6 5.2 4.7 =0.2 g, 9 2.0 1.7 1.0 0.2 1.9 *.4 0.1 =1.4 -1.5 -1.9 =2.5 -2.6 -2.6 3.2 -3.0 3.0 =2.8 =2.3 -l.7 0.3 3.5 5.3 6.1 7.4 0.1 -( 10 5.5 8.1 0.1 9.2 7.8 9.5 6.4 1.2 =0.8 al.5 -2.1 =2.9 -3.0 =2.8 *2.6 =2.6 =2.5 =1.6 =1.0 0.1 8.4 2.3 1.9 3.7 1.1 Q 11 1.9 l.5 1.6 1.3 1.2 1.0 0.6 =1.0 -1.2 *1.5 -1.7 l.7 =1.9 -3.8 -1.9 =1.9 -3.4 *l.4 =1.0 0.5 0.2 =0.3 0.4 -0.3 -0.5 g 12 *0.3 =0.3 -0.5 0.3 0.3 -0.4 =0.6 *0.8 =1.1 =1.1 -1.5 1.9 =1.8 =1.7 -1.0 =1.4 =1.0 -1.0 -0.0 -0.6 =0.4 =0.3 -0.5 =0.4 =0.9 13 =0.3 =0.8 =0.3 =0.3 =0.3 =0.3 -0.5 =l.0 *1.2 -1.5 =1.7 *1.9 *2.1 =2.5 =1.9 -1.9 =1.8 =1.5 -1.2 *0.8 =0.4 0.5 =0.5 =0.3 -1.0 M 14 =0.4 -0.1 0.1 0.3 0.5 0.6 0.5 =l.1 -1.3 -1.7 =1.7 -2.0 -2.3 -2.3 =2.0 =2 1 =1.7 =1.0 0.0 0.3 0.5 0.2 0.0 -0.7 2' 15 0.1 =0.3 -1.3 0.7 0.7 0.7 *0.0 =6.5 =5.7 -5.6 =5.5 -5.4 =4.4 -2.7 t.0 1.4 -1.4 *1.4 -1.4 =2.5 ( 16 =1.2 =1.1 =1.0 0.9 =0.9 =1.8 al.4 -3.2 =2.2 ~3.0 =2.6 =1.9 =5.3 5.3 =5.2 5.0 -4.7 -4.1 =2.5 =1.5 =0.4 =0.6 0.2 =0.1 =2.4 g 17 =0.4 =0.6 =0.6 =0.3 0.1 0.1 -1.0 -1.9 -1.6 =2.6 -3.2 =4.6 =5.3 =6.9 =4.5 =5.0 3.6 -3.4 =2.5 -1.2 1.0 2.4 3.5 3.9 .t.6 0 1.9 2.4 1.5 1.3 1.4 l.6 0.2 =2.1 1.5 *I.9 -2,4 =2.5 -3.1 =3.1 =2.6 =2.9 =2.3 =1.6 0.8 1.9 1.3 4.2 3.2 2.4 0.1 3,, 19 18 2.0 3.0 3.3 3.3 1.8 2.2 =0.7 -2.1 =1.9 -2.0 -3.2 -3.0 3.1 4.8 3.3 =2.3 =4.8 -3.e .1.7 0.0 0.4 0.5 0.3 0.2 =0.8 2 LJ 20 0.5 0.0 0.0 -0.4 =0.5 1,0 -1.2 =l.4 =1.8 =2.0 -3.8 =1.0 =2.1 =2.3 =2.8 =3.0 =2.9 2.8 2.1 l.4 0.1 1.0 1.9 1.5 =t.1 $ Ch 21 0.6 =0.1 =0.5 =0.3 0.3 0.8 0.1 =l.7 -1.4 =2.4 =4.1 =4.3 =4.3 =4.0 =3.7 =3.5 =3.2 =2.4 =l.A =1.0 0.0 0.0 1.2 0.5 =1.4 m 22 0.1 0.3 0.3 0.1 0.0 =0.7 0.3 -1.0 -1.1 =2.0 =2.7 =4.6 =5.5 -4.6 =4.9 =1.9 =1.9 =0.4 -3.5 *2.8 =1.3 =0.6 0.6 0.0 -1.6 7 23 =0.3 =0.4 =0.3 =0.5 =0.6 -0.5 -1.2 -1.7 -2.5 -3.2 3.2 -3.0 -4.8 =7.3 =5.3 *6.2 5.2 =4.R -3.3 -2.9 0.5 1.5 2.1 2.5 -2.1 4 24 2.8 2.9 2.4 1.4 1.1 1.4 0.3 =1.6 =1.4 =1.9 =2.0 2.3 -2.6 =2.4 =2.1 -2,4 -1.9 -l.e =1.4 0.3 -0.3 0.6 0.5 =0.6 ) 25 =0.4 =0.3 =0.3 0.1 0.3 0.1 =0.5 -2.5 =1.5 =2.5 =5.1 -4.6 =5.5 -3.9 *t.5 =1.7 =l.9 =1.5 =t.2 =0.5 0.4 1.4 1.2 0.9 -1.3 r-24 1.0 1.2 0.5 0.8 0.0 0.8 1.4 =0.3 -1.0 -1.4 =t.7 -l.6 =t.9 =1.9 =1.7 =1.7 t.1 -1.5 =0.8 0.1 0.8 1.9 2.3 l.7 =0.2 E 27 1.9 1.0 0.5 0.4 =0.1 -0.5 =0.6 =0.7 =1.2 *t.4 =1.6 =1.0 =1.9 =1.5 =1.3 =1.5 -1.5 .t.1 -1.6 0.2 0.6 0.1 0.9 0.7 =0,5 28 0.1 -0.0 -0.6 =0.5 =0.5 0.0 -0.1 =0.7 -1.2 .t.2 =1.3 =1.7 =2.0 =2.2 =2.3 2.2 -2.3 -2.0 0.0 0.0 1.3 2.0 2.3 =0.7 0 29 9.7 9.9 0.8 9.6 1.9 3.3 -1.2 =1.4 =2.0 =2.6 =2.9 =2.9 -2.9 =2.8 =2.0 -2.4 =2.3 =1.0 0.9 2.3 3.0 3.0 2.7 1.2 M 30 2.1 2.3 1.1 0.0 0.7 0.5 0.1 =1.2 =1.4 =1.4 .t.9 =1.5 =1.7 =1.9 -1.9 al.9 =1.7 =1.4 =1.1 0.6 0.1 0.6 1.1 2.4 =0.3 Z OUPL1 Q EAN 0.7 1.1 0.4 0.0 0.8 0.5 0.0 =1.2 =1.4 t.0 2.2 =2.5 2.9 3.0 2.7 2.6 2.5 =2.0 -1.5 =0.7 0.3 0.9 1.2 1.0 m

   ............==.=..=......- -=...........--...=---...... ...==....=.=....===-=. ....===.......=.=............ .....................                                                            g MAXIMUMa         9.9            MINIMUMa *7.3             MEAN e 0.79 690 VALID OBSERVAftnN8 ( 95.9%)

DAILY FITNEME STATISTICS

                       ..........=.=...=....=....=..............=.......=...=.==..=..........=...-==..........=.............
  • Onf 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 MAX t.0 2.1 1.2 =0.3 *0.1 0.3 0.7 5.2 ,7. 4 9.5 8.9 30.3 =0.1 0.6 0.1 MIN =2.5 =2.3 -1.5 .l.6 -2.0 al.7 =1.0 =2.6 -3.2 =1.0 =1.9 -l.9 -2.1 =2.3 =6.5
                        .................e.....e..................?...........e...........e..................................

DAT 16 17 IS 19 20 21 22 23 24 25 26 27 28 29 30 MAX 0.2 3.9 4.2 3.8 1.9 8.2 0.6 2.1 2.9 1.4 2.3 1.9 2.3 9.9 2.4 MTN -5.3 =6.9 =3.1 -4.0 *) O =4.3 -5.5 =7.3 2.6 =5.5 =1.9 .t.9 2.3 -2.9 .t 9

                       ...............=--..=......=.=...==...=...=...--...--..=..==..==.......=..=.-=....===................

MAXIMUM MEANs 2,14 MINIMUM MfAMs 3, _ _

_ _ _ _ HAZLETIN CNVIRONM~lNTAL CCCNC'D

           . H       0                                                                                                    0 3

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  • 0 4 4 6 0 8 0 0 8 a e4 3 3 0 s0 0 3 8 ee e=Op 0
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  • 8 0 0 0 0 8 8 8 8 8 8 0 0 0 0 9 3 0 0 0 0 0 0 0 8 8 e 0 8
  • 8 g eS= eO O N S 0 eO O MmemgeMOggpermMO*mOPOp=Oded@ Nee W t 0 eN8 e e e e e e e e e e e e o e e e e e o e o e e e o e o e e e e et 0 m o e em e et
  • 8 0*COOmmmOOOOm=GMOO=OOOmOw=Omm=O 0 8 a *= = =M 8 0

e g g a g g g 3 g t eg a3 0 g . g a e 8 0 8 0 0 0 3 g e 0 0 e 6 O 9 S e E

  • O 3 ep t ypMmenp=MagmeNOMWMdMpMMMMMWMmem eI o g S

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  • 4 OOOOOmmmmOOOmOmmommOOOOOmmommmO ee 0 0 9 0 0 0 8 8 0 8 0 9 0 = *
  • 8 mm o *M e t
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  • O 8 *e0 @p-feeM=mmeMdwe@=OcOMedmMmedeem ea e
  • 0 o g g e 3 8 s am t e e e o e e e e o e o e e o e e o e e o e e o e e e e e e o e em** em e d e 8 e R OOmOOmmmmOOOOOO*CommOOmO-NO-mac 8 8 9 0 6 0 S 0 O S t 8 5 =
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  • 8 0 0 0 8 8 0 0 S I 5 0 0 0 8 0 s e 6 0 e @= e wM S
  • s 9 9 t e 8 8 I *M 9eeMp=eme=MMeDeOmemmpOmeme=NewmN 0 8 0 g e #

9 om 8 e e o e e e a e e e e e e e o e o e e o e e o e e e o e o e e et I m 3 0

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                                                                                                                                                                                                                                                                                   -_

318 FT TD 155 FT DIFFEEENTIEL TEKFlpATU3E (C/1002) COOPIR NUCLEAR STATION NLTEOROLOGICAL DATA mANCH 1900

          .............................................................................................................................. ..-
                                                                                                                                      'Houp
                    .......................................................................................................................                                                                                                                       DAILY DAT             0         8         2         3         4.       5         6         7         8         9       to        11        12        13        14        85        16        17        le        19        20        21       22        2J MEA 4
          . . . . . . . . . . . . . . . . . . - . - . - . . . . . . . . . . . . . - . . . . . . . - . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . - - . . . . . . . . . . . . . . . . . . . - - - - - . . . . . . . . = . . . . . . - - . - - . - -

I -1.2 -1.0.-l.2 -I.5 -1.7 -1.1 -1.5 -1.2 -1.1 =2.0 =2.0 -1.5 -2.6 -2.5 -2.7 -2.0 -2,3 -2.7 al.6 -0.2 0.1 8.6 0.0 2.9 -1.3 2 8.7 4.4 7.3 4.0 2.8 7.4 10.6 3.5 2.5 0.0 -1.0 -1.3 -1.1 -3.3 -1.3 -1.2 -l.1 -l.1 -0.7 -0.2 0.0 0.1 -0.1 -0.2 3.4

             -3       0.8 -0.2 -0.2 0.n -0.2 -0.4                              -0.2 0.0 -0.2                 -1.1 -1.0           -l.1     -l.7      -l.0      -1.1      -1.0      -1.0      -1.0      -0.2        0.0       0.8        8.6 2.5 2.6 =0.2 4       4.7 1.3 2.3 2.8 0.9 =0.0                                 -1.0 -1.0 -1.1                -1.0 -1,2           -l.0      -l.2     -l.2      -1.2      -1.5      -1.6      -1.6      -l.2      al.6      -l.9     -1.9 -1.0 -1.5 -0.5                          I 5     -l.5 -1.3 -1.2 -l.0 -l.) al.2                              -1.5 -1.6 -1.6                -2.0 -2.3          -2.1      -2.8      -2.7      -2.6      -2.6      -2.2      -1.6      -1.2     -1.0      -0.4         0.0 0.0 0.3 -1.4                          I 6     -0.1        0.0 0.4 0.4 0.0 -0.6                           -0,6 -1.0 =l.1                -1.t'-l.2           -1.3      =1.1     -1.6      -1.5      -2.8      -I.7      -1.0      -0.4      -0.7      -0.4     -0.7 -1.0 -0.9                   0.8-7     -l.0 -1.7 -l.1 -l.1 -1.0 -1.0                              -0.9 -1,2.-l.2                -1.3 -l.7           -1.7     -l.6      -1.6      -1.5      -1.5      =1.3      -1.0      -1.0      -1.0      -1.0     -l.1 -1.1 -1.1 -1.2 e     -I.0 -1.0 -1.2 -I.0 -l.3 -1.2                              -1.2.-l.6 -1.9                -2.2 -2.0          -2.0      -1.5      -1.3      -1,3      -1,3      -1.3      -1.2     -1.0         0.0       1.8       1.0 0.7 1.5 -0.9                          q 9       3.2 2.2 2.7 6.3 4.0 4.7                                    3.9 1.5 0.3                 -0.7 =0.3           -1.1     *l.0      -1.1      =1.0      -l.3      -1.0      -0.6         1.2       8.6      1.1       4.4       3.6       6.8       8.6         0 in        1.6       8.6       8.7       2.3 0.6 0.6                  2.1 0.s 0.1                 -1.0 -l.I           -1.3     -l.6      -1.7      -1.7      -2.0      -1.9      -1.7      -1.5 -I.5 -0.s -1.2 -1,3 -0.e -0.4                                        g II      -0.7 -0.7 0.2                  0.0 0.6 0.7                   0.6 0.2 =1.0                -1.2 -1.3           -1.3     -1.2      -1.3      -1.3      -1.3      -1.2      -0.9      -0.4 =0.4 -0.7 -0.7 -0.7 -0.9 -0.6 12      -0.9 =0.9 -0.9               -1.1 -0.9 =0.0                -1.0 -1.1 -l.1                -l.1 -1.1           -1.1     al.2      -1.2      -1.2      -1.2      -1.1      ~3.1      -l.0 -1.0 -0.9 =0.9 =0.9 -1.3 -1.0                                        pl 13      -1.2 -l.6 -l.0               -1.0 -1.0 -1.1                -1.1 -1.1 -1.5               -1.5 -3,5           -2.0      =2.2      -2.3      -2.1      -2.0      -2.0      -1.7     -1.3 0.0 0.8                     1.3 3.8 4.4 -0.0                          g 14        5.0       3.6       4.0      2.7 1.5 0.2                   0.0 -0.2 0.0                -0.3 -1.0          -1.1      -3.1      -1,1      -1.1      -1.3      al.1      -0.0        0.9       1.5       3.8       3.6       5.5       1.0       1.0         (

IS 0.3 0.0 2.1 3.0 0.9 0.6 0.3 0.2 -0.2 -0.2 -l.0 -1.0 -1.0 -1.0 -1.2 -1.0 -1.0 -0.9 -0.6 -0.2 -0.2 -0.3 -0.2 -0.3 -0.2 - 16 -0.3 0.0 0.6 0.0 0.0 0.3 1.7 2.1 1.6 1.1 -1.2 -1.3 -1.7 -1.3 -1.6 -1.2 al.) -1.3 -I.1 -l.0 -1.0 -1.0 -1.2 -1.3 -0.5 I

 }*         17     -1.b -1.1 -l.5               -1,3 -1.2 -l.2 -1.2 -1.6 -1.9 -2.1                                     -1.9      -2.2      -2.6     -3.0      -2.7      -2.3      -2.0      -1.9      -0.8        0.4 0.0 1.8                   8.6 1.2 -3.2                    O to         le       0.1        1.0       1.0      2.0       1.0 0.8 1.3 0.9 0.7 0.0 -0.9                                       -1.6      -1.2      -1.2      -1.2      -1.2      -1.1      -1.0      -0.9      =0.0 -0.2 -0.1                  0.0 0.1 -0.3                    2 4D         19       0.1       0.2                 0.3 0.0 -0.2 0.2 -0.7 -1.1 -1.5 -1.6                                         -1.3      -l.5      -1.3      -1.6      -1.2      -1.0      -0.6     -0.1         2.6 1.5 1.0                 -0.2 -0.9 -0.4                    g 20      -0.9 -0.1 =0.9                =0.7 =0.9 -l.1 -0.7 -l.2 -1,6 -1.8 -1.8                                        -2.0      -2.2        2.2     -2.0      -2.0      -1.5      -1.5      -0.9      -0.9 -0.7 =0.6               =0.6 -0.1 =1.2                     gg 28       0.0 -0.6 -0.9               -0.6 -0.4 -0.3 -0.9 -2.0 -l.5 -1.8 -1.9                                        -1.9      -2.0      -2.0      -1.9      -1.9     -1.5      -1.2      -0.7         0.1       2.1       3.1       2.9 3.s -0.5 22       2.6       2.0        3.0      0.0 -0.6 -0.7 =0.8 -1.1 -1.1 -3.3 -l.1                                       -1.3      -1.5      -1.5      -1,3      -1.2      -l.0      -0.2     -0.4      -1.0      -0.6      -0,9      -1.1 =0.8 -0.6                     Z 23     -1.0      -0.9      -0.9      -1,2 -1.0 -I.9 -I.9 -1.9 -l.7 -1.8 -1.0                                        -1.6      -1.5      -1.7      -l.5      -1.7     -1.3      =0.9      -0.8      -0.0      -0.e      -0.9      -0.9 -l.0 -l.)

q 24 -1.0 -1.0 -1.1 -1.1 -l.1 -1.1 -1,2 -1.3 -1.5 -1.0 -1.0 -1.0 -1.8 -l.7 -1.5 =1.5 -1.5 -1.1 -1.0 -0.0 -1.1 -l.0 -0.9 =0.9 -1.) g p 25 -0.8 -l.0 al.1 -1.0 -1.5 -1.0 -l.0 -1.1 -1.3 -1.3 -1.3 -l.2 -1.2 -1.3 -1.1 -1.1 -1.3 -1.1 -0.9 -1.0 -1.2 -l.0 -1.0 -0.7 -1.8 26 0.0 -0.2 -0.7 -0.9 -0.6 -0.9 -0.7 -1.1 -0.9 -1.3 -1.2 -1.1 -1.0 -l.1 -3.1 -l.) -1.5 -l.1 -1.0 -0.9 -0.7 al.0 -0.8 -0.8 0.9 5 27 0.0 0.0 -0.4 0.6 -0.6 - 0. 7 - 1. 6 - 1.1 - 1.1 - 1. 7 - 1. 3 - 1. 2 - I . 3 -I . 5 -1.5 -1.5 -1.2 -0.6 -0.7 -0.3 -0.2 -0.3 -0.6 -0.6 -0.9 0 28 -0.6 -0.8 -( . 8 -0.7 -0.9 -0.9 =0.9 -l.0 -l.1 -1.3 -1.2 =1.0 -l.a -1.0 -0.9 -1.0 -0.8 -0.8 -0.7 -0.7 -0.8 -0.0 -0.0 -l.0 -U.9 pl 29 -l.3 -1.3 -l.2 -1.3 =0.0 -0.0 -0.9 -l.0 -1.0 -1.0 -l.t -1.0 -l.0 -1.1 -1.0 -1.1 -l.0 -1.0 -0.9 -0.7 -0.9 -0.8 -l.0 -0.9 -1.0 g 30 -1.0 -0.9 -1.0 -1.0 -0.9 -0.9 -1.0 -1.3 -1.0 -1.2 -1.0 -3.0 -1.0 -3.0 -1.1 -1.1 -1.0 -1.0 -1.0 -1.0 -0.9 -1.1 -l.? -1.3 -1.0 g 31 -0.h =1.2 -0.0 0.0 -0.4 0.0 -0.7 -0.9 -1.9 -1,6 -I.9 -1.6 -1.6 -1.5 -1,3 -0.9 -1.2 -1.1 -1.0 -0.1 0.3 2.1 2.2 1.5 =0.6 gg HOUNLT g Mtau 0.1 0.0 0.2 0.2 -0.2 =0.2 -0.1 -0.6 -0.3 -l.2 -3.4 -l.4 -l.5 -1.5 -1.5 -l.5 -l.4 -1.1 -0.7 -0.4 -0.2 0.2 0.2 0.3

         ......................-.................. ......................................................................,.................

MAXIMUMa 10.6 MthlMUMs -3.0 MEAN = =0.61 743 WALID OBSERVATIDMS ( 99.96) DAILY EXTREnt STATI6 TICS

                                      .....................................................................................................

DAT l 2 3 4 5 6 7 8 9 to il 12 13 14 IS MAX 2.9 10.6 2.6 4.7 0.0 0.4 -0.9 3.S 6.9 2.3 0.7 -0.8 4.4 5.5 2.1 MIM -2.7 -1.3 -l.2 -1.9 -2.8 -2.u -1.7 -2.2 -l.3 -2.0 -l.3 -l.3 -2.3 -1.5 -1.2

                                      .....................................................................................................

DAV 16 17 18 19 20 2t 22 23 24 25 26 27 20 29 30 31 MAX 2.1 1.8 2.0 2.6 -0.1 3.8 2.6 -0.0 -0.8 -0.7 0.0 0.h =0.6 -0.7 -0.9 2.2 DIN -1.7 -3.0 -1.6 -l.6 -2.2 -2.0 -l.5 -l.9 -1.8 -1.5 -l.5 -1.7 -1.1 -1,3 -l.3 -1.9

                                     ........-.................-.....-....................................................................

MAXIMUM Ml' A M s 3.g3 MikIMUM MEAme -2. I . .

- _ - _ _ - _ _ _ _ _ _ _ - _ _ _ _ _ _ __ 318 FT T0 155 FT DIFFE,BENTIAL TEMPERATURE (C/100M3 C00PER NUCLEAR STATION METEOROLOGICAL DATA APRIL 1980

                                         .......=... -..==.                  ..-....................==.....=..................c............................s................................

HOUR DAV

                                                   .......................................................................................................................

0 3 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 it 19 20 21 22 DAtLY 23 > FAN

                                         . . . . . . . . . . . . . . . . . . - - . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . - - . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . - - - . . . . 1,3
                                                                                                                                                                                                                                                         . . . ..l.2
                                                                                                                                                                                                                                                                 . . . . el.3
                                                                                                                                                                                                                                                                         . . . . . .0.9
                                                                                                                                                                                                                                                                                      ....=.-..

t 0.3 0.B 0,1 =0.1 =0.6 0.0 -0,7 0.0 =0.7 =l.0 =1.2 =t.0 -0.9 =l.a -l.1 1.1 -l.3==1.7 .l.a .l.1 1.0 -1. 0 = 0. 6 = 0. 9

                                                                                                                                                                                                                                       .l.2   =1.9
                                                                                                                                                                                                                                               =0. 8  =0. 6   =  l . 0  . l  . 0 -l .1 2     =1. 3 = 1. 3 . l . 2 = l . 3 -1. 6 =1. 5 = 0. 8 = 1. 8 = 1. 2 = 1. 2 -1. 2 = 1. 2 =1.2 ==1.                                1. 2 a l . 2
                                                                                                                                                                                     -1. 3  =  1. 3   = 1. 3  =1.1      =  1. 0  =1. 0 = t . 0 0. 9 -1. 0 -0. 8 = 1. 2 3       1.3    ~1.3      -1,2    -1.0     -1.0     =s.1     -1.3     -1.3     -1.3    =2.2      -1.8     =  0. 7   -l . 2         3 1.0 -0.7 0.2 2.0 2.2 8.a .0.7 4     =0.2 0.0 =0.3 =0.1 0.7 0.2 0.2 .t.0 -1.9 2.0 =2.0 =2.5 2.5 =2.2 =2.1 -1.9 -1.9 =1.6                                                                                 1.3     =0.7    =0.6 -0.6 0.4 =0.7 =0.4 0.2                              -I 5       3.8 4.5 5.3 3.5 l.7 0.9 0.2                                      0.8    =0.3       =l.2       1.2     -l.)   .t.)   .t.5    =1.5      -1.2       -1.3  t  .0  .t   . 8   =0. 8 0.0 0.7 0.6 0.2 0.9 -0.5                                    )

6 =0.3 =0.4 =0.4 0.0 0.0 0.8 -0.1 =0.0 -1.0 al .1 =1. 3 a l .7 .l . 3 -1.5 -1.5

                                                                                                                                                                                       -C-
                                                                                                                                                                                               -1,1
                                                                                                                                                                                                 -C. =1.2 .t.1 =0.4                      0.6 0.4 1.2 =0.1 =0.1 =0.3                              g 7       1.0 0.7 1.0 1.3 0.0 0.4 =0.3 -0.9 =1.8                                                               -1.5       1.3     .:.5 0.9 0.9 .t.0 -1.1 =t.1 -l.1                             s 8       0.7 =0.9 0.9 .t.0 0.9 =1.0 -1.0 -l.2 -1.2 -1.3 -1.2 =t.2 -1.5 =1.4 =1.3 *t.2 =1.2 =1.1 =0.9                                                                                                0.9      2.3      3.0       3.7 -0.7             El 9 =1.1 =l.0 -1.1 .l.1 -1.3 -l.1                                 -Da -l.1 =1.2 =1.5 -1.6 -1.9 =1.9 =2.1 =2.1 =2.8 =1.8 =t.5 =1.2 =0.2                                                                                                                "O t . 0  . l  . 0    0. 9    0. 3   0.0      0.2      0.4 -0.9 0.2 to       1.2 l.7 2.3 B.O 3.7 3.9 2.5 0.4 =0.2 =1.2 -1.9 -1.8                                                             1. 2  -  1. 5  =  1. 3 =   1.1 0.6 1.3 1.e .0.3 .l.1                            O 11     =0.6 =0.4 0.7 0.7 0.9 -1.0 al.3 0.9 =1.0 -0.9 =0.7 -0.7 =0.0                                                             =1.1 *2.2 -3.4 =4.2 =4.5 -3.8 =0.9 =0.4                                      0.0                                     Z 0.1 0.6 0.0 0.3 0.0 -0.0 -0.4 =l.7 *t.8 -2.0 -2.2 2.5 2.0 =2.1 =1.9 al.O                                                                               =1.8 .l.7 -l.) =1.1                                   0.6       0.4    .t.0 12 1.5 1.5 2.8 0.2 0.2 0.9 -1.7 =2.2 =2.2 -2.2 -1.9 =1.9 =1.9 2.0 =2.0 =2.2=1.5                                                                              .t.5 .t.2 -1.2 .t.1           =l.3 -l.6 -1.0                   gg 13       0.0 0.4                                                                                                                                                                           =0.4 1.0 1.7 2.3 3.4 1.8 14     =1.2 =l.1 .t.3 -1.5 -3.9 =1.9 =1.5 =1.9 =1.7                                           2.0    -2.1    =2.2      =2.5     =2.2     =1.9      -2.0       =2.0      -1.8                        0.0 1.1 1.9 4.6 =0.1 7

15 3.6 0.2 0.6 0.6 1.9 3.7 1.2 0.7 -1.8 2.0 =2.1 =2.1 =1.7 =l.6 =1.5 =l.2 .t.3 =1.3 =1.3 0.7 0.8 =0.3 0.0 0.1 =l.1 0.1 b 4.0 2.9 2.2 4.4 2.7 1.1 0.8 1.3 0.0 -f.2 l.6 1.9 -1.3 =1.3 =1.3 1.2 =1.7 =1.5 =1.1 16 0.0 -0.7 =0.9 .o;.ff'-0.6 =0.6 =0.8 =G.9 =1.0 =1.0 1.3 .t.3 -1.0 .t.1 -1.2 =0.6 0.3 0.0 -0.8 3 17 0.0 =0.9 =0.5 =0.9 =0.9 1.2 0.6 8.9 3.5 4.0 0.4 0 18 0.1 =0.2 =0.6 0.2 1.7 2.5 2.5 2.9 0.3 =0.S .0.8 -1.2 =l.2 =1.3 =1.0 -0.0 -1.0 -0.3 =0.9 =0.6 0.0 1.8 4.6 4.5 2.9 0.9 g 2.6 2.3 3.4 1.5 2.8 2.2 1.5 0.8 0.6 =1.0 -0.9 -1.1 -1.5 -1.2 =1.1 1.1 =1.2 =l.1 =0.0

3) 19 0.0 =l.1 -1.6 =1.5 =1.2 =1.5 =1.5 =1.2 -1.0 =1.3 =1.0 =0.7 0.7 3.5 4.7 4.2 0.6 y j3 20 2.8 2.8 1.f 1.6 1.6 1.8 1.9 1.2 1.2 0.9 0.7 1.5 3 c2 28 4.0 2.5 7.f 1.4 5.4 2.7 2.9 1.9 0.6 =1.0 .l.6 -1. 6 . l . 5 = 1. 9 -1. 3 1. 3 -1. 3 t .1 0. 0 -0. 2 0.9 2.0 2.R 1.0 0.1 El
                                                                                                                                                           -1.5     =1.3      *1.2     =l.2     .t.0      -1.0     -1.0       =0.0        0.0 2.9 22        1.0 1.1 0.9 8.3 1.2 8.8 0.2 0.2 =0.9 =1.3 =1.1                                                                                     1.6       1.7     -1.7     =1.8       =0.9    =0.2      0.0     1.8      0.6 0.0 -0.3                    2 23        2.2 0.9 3.9 0.6 -0.2 0.3 -0.6 =0.9 =1.1 1.0                                                  0.9   =1.5       =1.2     =1.6 24 -0.2 0.0 0.0 -0.2 0.3 1.6 1.0 -1.1 al.1 =1.2 =0.9 -1.2 =1.3 -1.7 =1.7 1.7 -1.8 =1.9 -1.1 -0.0 0.2 0.9 2.0 2.0 -0.4                                                   =4
                                                                                                                                                                                                                                                                                                  >
                                                                                                                                                                    -1. 5  . t . 5  =  0.9   =  1. 2       1. 3  -   1.1   = 0. 8     0. 8 =0.6   =0.9     =0.7     =0.9      =0.2 25        2.0 1.7 0.9 1.7 0.0 0.9 1.5 2.1 =0.3 =0.9 0.9 al.1                                                   -1,3     .l.1      al.%    -1.3      .l.3       -1.5          1.3 -1.0 -0.3 0.0 -0.2 -0.7 -1.0 -1.0 I

26 =0.8 0.6 0.8 =0.9 =1.0 =l.l 0.9 l.0 .l.1 el.2 =l.1 0.0 1.7 3.1 3.7 2.7 =0.7 Ul 27 -1.1 -l.1 0.9 l.2 =0.9 -1,2 0.6

                                                                                                           -l.2 =1.2 =1.5 =1.5 -1.7 -1.7 -1.6 =t.8 -1.6 -1.7 -1.8 -1.9 =1.5
                                                                                                           -1.0     =1.1      =1.2       -1.5    -1.3     =1.5      -1,5     -1.3    -1.2     =1.3        -1.2     =1.0           0.0 0.1 0.4             1.1 3.5 t.6 =0.3                        0 28        0.8 0.6 0.6                0.8       1.0                                                                                                     2.0 =l.7 =1.2 t.1 0.6 0.0 0.4 0.4 1.1 -0.8                                                      g 29        0.1 0.1           0.7       1.8      3.9      5.1       1.9      0.3    =1.3      =1.5     =2.3     -1.7     =1.9     =1.7     =1.8                                                        0.1 0.7 1.7 1.1 =0.4 30       1.5 1.7                                                 0.3      0.3    =0.9       .t.2      l.1     -1.0   =  1. 3   =  1.2  =   1. 3  .t  . 6   =  1. 6  =    1. 8  =1.1   =0.7                                                       Z OURLT                                                                                                                                                                                           9.5    0.1      0.9      1.0      0.9                    0 0.7 0.5 0.8 0.8 0.7 0.5 0.2 =0.3 -1.0 1,4 =l.4 =1.5 =1.4 =1.5 -l.5 =1.5 .t.5 l.5 .l.1                                                                 FR EAN
                                          . . . . - . . . . . . = . . . . . . . . . - . . . . . . . . . . . . . . - - . . - - = = . - . . . . . . . 4.5                        . . . = MFAN
                                                                                                                                                                                         . . . = ===0.38  . . . . . - - . . . . . . . . . - - = . . . = = - = . - - = = . . . . . . . . UI         =...

MAXtunus 7.6 MINIMUma lit. VALID OBSERVAT!nNS ( 99.2%) DAll.Y EXTREMF. STATISTICS

                                                                     ..--...........==.= -...=..-==..=--==.=.........-======......-..                      7          8           9
                                                                                                                                                                                          ==..-=.--........

to Il 32

                                                                                                                                                                                                                             -=...-======--.===

13 14 15 Der 8 2 3 4 5 6

                                                                                                        =0.7          2.2        5.3         0.9        1.3      -0.7          3.7       3.9          8.8         0.6          2.5       3.4      4.6 MAX        0.3      =0.6                                                                           =2.1       =1.9           4.5        =2.5        -2.2      -2.2     -2.1 MIN      =l 9       *1.6       -2,2        =2.5       -1.5        =1.7      =1.8        al.5
                                                                     .....................................................................................................

DAT 3A 17 le 19 20 21 22 23 24 25 26 27 20 29 30 4.7 7.6 2.8 3.9 2.5 2.1 0.0 3.7 1.6 5.1 8.7 MAX 4.4 0.0 4.0 4.6 1.9 -1.5 =2.3 =1.6 MIN .l.9 =l.3 =1.3 =1.2 *t.h .l.6 =1.% =1.0 al.9 =l.5 .t.5

                                                                     . . . . . . . . . . . - . . - - . . . = = . - = . . - - . . - = . . = . = . . = =MINIMHM             . . . = . .MEANs
                                                                                                                                                                                        . . . . . . . =2  ==.......====...=.-....-==--==-......======

MAXIMUM MFAha 7.%7

                 .                                                                                                                                                                                     --
                                - - _ _                                                                   .      _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ - _ _ _ - . _ _ _ _ - _ .

348 FT 73 155 FT DIFFERE TIAL TE"PE247UIE (C/1002) COOPER EUCLF.AR STAT 104 KEfrOROLOGICAL DATA MAT 1980

                                             = = = . = . . . . . . = . . . . . . . . = = . . = . . . . . = . . . . . . . . . . . . . . . . . . . . . . . . . = = = . = = . = . . . . . . . . . . . . = = . . . . . . = = . . . = . . . . . . . . . . . . . - = . . . . . . = . . . . = . = . . . . . . = . -

Hnup

                                                                               ....................................................................................................................... DAILT DAI                                  0     1           2     3          4                                        5                                         6      7     8      9      10    11      12    33  *f   15     16                               17     le   19   10             21       22  23 MLAN
                                             . . = . = . = = . = . . . . . = . . . . . . . . . . . . = . . . = . . . . . . . . = . = . . . . . . . . = . . . = = = . . = = = = = . . . . . . . . . . . . . . . . = = . . . . . . . . . . = = . . . . . = = . . . . . . . . . . . . . . . . . . = = . .

t 0.4 0.0 -0.4 0.1 =0.2 =0.1 0.2 =0.6 -1.0 =1.2 =1.3 =1.1 =1.0 =1.3 =1.3 =1.2 =1.2 =0.9 =0.9 =0.3 0.1 0.6 1.1 2.1 =0.4 2 3.6 2.5 1.5 1.1 1.7 2.7 2.2 3.6 =0.4 *t.1 -1.6 =1.7 =1.5 =1.5 =1.6 =1.5 =1.5 -1.6 *l.0 =0.4 0.4 0.8 0.1 0.3 0.2 3 1.2 1.0 2.3 1.2 4.4 5.6 5.8 0.6 =0.9 =1.1 =1.7 *1.1 =1.5 =t.3 al.2 =1.6 =1.5 =1.0 -0.9 =0.9 0.3 0.2 0.1 1.7 0.4 4 3.6 6.0 7.9 7.3 1.5 6.9 9.5 5.0 0.4 =1.1 =1.5 =1.7 =1.3 =1.9 =1.6 =1.8 =1.0 -1.1 =0.0 0.7 =0.3 0.0 0.3 0.9 1.7 5 3.5 2.9 8.7 f.3 2.2 3.0 2.2 1.2 =0.9 -1.1 .l.2 .t.2 =1.7 =1.8 -1.0 =2.1 =2.2 =1.A =1.8 0.1 =0.7 =0.7 =0.6 0.0 =0.3 I 6 0.0 0.0 0.0 -0.2 1.0 f.6 3.7 1.2 =0.4 .t.1 =1.2 =1.6 =2.1 0.7 0.3 =0.2 0.1 0.1 0.8 > 1 0.1 =0.2 =0.6 0. 7 =0.7 0. 4 -0. 7 = I . 2 -1.7 = 1. 3 = 1.6 = 2. 2 =2. 2 ~2. 3 = 2.1 = 2. 2 = 2. 5 = 1. 8

  • t .5 -1. 2 0. 0 -0. 8 = 0.6 =0. 9 -i . 2 N 8 =0.8 =0.4 =0.6 =0.4 =0.6 =t.0 =t.2 =1.6 -1.0 =1.s .1.9 =2.1 =2.2 =1.9 =1.0 =1.9 =1.9 =1.7 =1.5 =0.6 0.0 1.1 1.5 2.9 =0.9 9 4.9 5.7 5.7 5.5 4.5 2.9 3.5 1.7 =0.9 =1.2 =1.5 =1.5 -1.6 =1.2 al.0 =1.0 -1.2 -1.2 =0.9 =0.7 0.8 0.0 -0.2 -0.4 0.0 4 10 -0.3 =0.4 =0.4 0.0 -0.6 =0.3 =0.9 =0.8 =0.9 0.9 0.9 .t.3 =1.2 -1.0 -1.2 =0.9 =1.2 =0.3 =0.3 =0.2 =0.7 =0.6 =0.0 -0.1 =0.7 O Il 0.2 0.9 0.' =0.4 =0.6 =0.9 .t.0 *t.0 =1.2 =1.3 =1.2 -1.2 al.1 =1.2 *1.1 =1.5 -0.9 =1.0 =0.8 =0.4 =0.2 0.0 0.1 0.1 =0.7 Z 12 0.2 =0.6 =0.6 =0.6 =0.9 =0.0 =0.0 =0.9 *1.1 =1.2 .t.2 =1.0 =0.4 =0.9 =1.0 =0.9 =1.0 =1.3 =l.5 =l.0 0.0 0.7 2.1 1.8 *0.6 13 0.0 -0.6 =1.0 0.9 =0.8 =0.0 -1.1 .t.3 -1.3 =1.6 -1.8 =1.7 =1.7 .l 9 1.9 =1.7 =1.9 -1.2 -1.5 1.0 0.1 1.2 2.3 5.0 -0.7 m 14 3.4 4.2 4.0 4.0 2.6 2.6 2.0 0. 9 =0. 8 1.1 . l .1 = 1. 3 -1. 2 1. 3 = t . 0 = 1. 2 . t . 2 -1. 0 -0. 9 0. 7 = 0. 4 = 0. 8 =0. 3 1.2 0.5 2 15 1.0 2.0 1.1 0.2 4.1 7.4 6.9 3.7 =0.2 al.1 =1.2 =1.1 -1.1 =1.1 =1.2 =1.1 =1.1 =1.0 -0.0 =0.7 =0.4 0.0 =0.4 =0.6 0.5 g 16 =0.4 =0.7 -0.4 -0.3 =0.7 =0.7 =1.0 -1.0 -0.9 =1.6 =0.7 =0.8 =t.3 1.2 =0.9 =0.9 -1.0 0.6 0.6 =0.6 =0.4 =0.8 -

17 =0.3 =0.3 =0.6 =0.6 *0.4 =0.7 -9.9 .t.1 -1.3 -1,6 =2.3 =2.5 =2.9 =2.9 =3.9 =3.0 0.0 -0.6 =1.3 *l.5 =1.2 =t.3 =1.2 -1.0 -1.4 3 18 =0.9 al.0 =l.1 -1.1 *t.0 =l.1 -0.9 =0.9 =1.2 -1.6 =I.2 al.2 =1.1 =$.2 -l.2 =1.2 =1.2 =1.2 =0.9 0.9 =0.9 =0.8 0.8 =0.7 -1.s O

                                        }",

19 =0.0 -0.0 -0.9 =1.3 =1.2 =0.7 =0.9 -1.2 =1.6 .t.1 =l.0 -1.9 *1.2 =0.0 =1.0 -1.1 =1.1 *t.2 =0.9 =0.4 2 0 0.8 1.7 1.2 0.1 0.7 1.6 1.7 1.2 =0.7 =1.3 =1.7 =1.3 *1.5 =1.1 =1.1 =1.0 =1.2 =0.9 =0.6 =0.7 0.9 3.5 3.1 2.9 0.3 0.3 0.4 0.0 1.6 =0.8 2 4 g ed 21 1.9 2.7 4.2 5.1 4.0 3.0 2.2 1.3 *t.1 =2.1 =2.1 =1.7 =1.9 =1.7 =1.5 -1.7 =2.1 =I.3 =0.9 =0.* 0.1 0.0 0.3 1.7 0.4 g 22 2.6 1.8 2.2 4.2 5.4 5.0 6.1 5.0 -0.6 -I.6 -I.2 =1.0 -1.0 -1.1 1.7 -1.2 -1.5 -1.1 =0.9 .e.9 0.0 0.1 1.5 2.6 1.0 23 2.9 3.4 5.1 4.0 5.3 5.6 5.5 4.2 0.1 =1.2 ft.9 =1.3 =1.5 =1.2 =1.2 =1.3 -1.3 =0.6 =0.3 01 0.0 0.1 0.4 0.3 1.0 2 24 0.6 0.7 1.2 1.2 1.1 1.3 1.2 0.1 =l.3 t.5 =1.5 =1.5 =1.5 =1.6 =1.6 *t.7 =1.9 =0.9 *0.8 =C.s =0.3 =0.1 =0.4 0.0 -0.4 25 0.1 0.2 =0.3 0.4 =0.3 =0.4 0.4 =t.2 =1.3 1.2 =1.3 =1.3 =1.3 -1.6 =1.7 =1.3 =l.6 -1.0 -0.9 =0.8 -0.6 =0.6 =0.8 =0.2 =0.9 f. 7 26 0.0 ' 0.1 0.0 0.3 0.6 =0.3 =0.8 =0.8 =0.4 1.0 -1.2 1.3 =0.4 =1.1 =1.5 -1.5 =1.6 =0.9 =0.7 =0.3 =u.: 0.4 1.5 1.7 0.2 27 2.1 0.2 0.3 1.1 1.5 2.0 1.5 0.4 =1.0 *1.3 =l.5 =l.3 =1.2 al.2 -1.7 =1.7 -1.5 *t.2 =0.9 =0.7 =0.4 =0.2 0.0 0.8 =0.3 W 28 0.1 0.1 1.0 1.7 1.1 1.0 0.6 =0.8 -1.3 -1.1 -l.1 al.3 =1.0 =1.3 -1.5 =1.3 -1.5 .l.5 =0.8 0.9 =0.4 =0.4 =0.6 =0.4 =0.5 0 29 =0.7 =0.0 =0.7 =0.8 =0.1 0.0 =1.5 =1.5 -1,6 ~1.6 =l.7 -1.5 =1.7 =1.6 =1.3 0.9 .l.0 -1.0 0.9 =0.9 =0.7 =1.1 5 30 -0.4 =0.2 =0.7 -1.1 -1.2 =0.7 0.9 -1,2 =1.2 l.2 -1.5 =1.3 -1.5 at.6 .l.5 =1.3 =1.4 -1.7 -1.5 =1.1 =0.9 =0.0 -0.4 0.1 =1.8 7 38 1.1 0.9 0.4 0.3 0.3 1.2 0.0 -1.0 =1.0 =1.1 -1.0 0.8 =0.6 =t.2 =1.2 -1.2 =0.4 -1.0 -0.9 =0.7 =0.9 =0.4 =0.6 =0.9 =0.4 g OURLY EAM 0.9 1.0 1.0 1.0 8.2 1.5 3.5 0.6 =0.9 -1.2 =1.4 =1.3 61.4 =1.4 =1.5 =t.5 =1.4 =1.1 =0.9 0.6 =0.3 =0.0 0.2 0.1

                                                ==....=...........=........-=.....===...=.-=........====.....=.~..=......=.=......=............==.=.....====...............-.=

MAXIMUMa n.5 MINIMUM * =1.9 Mram z =0.23 732. VALID OBSERVAT10NS ( 98.4%) DAILY EXTREME 87471571C3

                                                                                          .=.-=..=....=..........==..=...===. .....=.=.-==.=.=.....=.=.==...==.====..===...-===.......-.....==.

DAY l 2 3 4 5 6 7 8 9 10 18 12 13 14 15 MAX 2.1 3.6 5.0 8.5 3.0 3.7 0.1 2.9 5.7 0.0 0.9 2.1 5.0 4.2 7.4 MIN al.) =1.R *l.7 *t.9 =2.2 *2.1 *2.3 *2.2 =l.6 =1.3 =l.5 =1.5 =t.9 .l.) =1.2

                                                                                          .....................................................................................................

DAT 16 17 le 19 20 21 22 23 24 25 26 27 28 29 30 31 MAX =0.3 0.0 -0.1 1.6 3.5 5.1 4.1 5.6 1.3 0.2 1.7 2.1 1.7 0.0 0.1 1.2 MIN .t.6 =3.9 =1.6 =1.9 =1.7 =2.1 =1.7 al.9 =1.9 .t.7 *t.6 .l.7 -1.5 =1.7 =1.7 1.2

                                                                                          ....................-=.......=====..e==                                                                                             =====.-============. ==============....-===== .========.                                             =e..

MAXIMHN MEAha 2.72 MINIMUM MFAma 2 . _ _ _ _ _ _ _ . _ _ . _ _ _ ._ . _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ . _______ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ ___

                                                        - - _ _ _ - _ _ _ _ _ _ _ _ _ _ _                  - _ _ _ - _ _ _ _ _ _ _ _ _ _ - _ _ - _ _ _ _ _ _ _ _ _ _ - _ _ _ _ - _ _                                           _ _ _ _ _ .

ElO FT T3 15S FT DIFFERE*TIAL TEEPE2ATURE (C/1003) COOPER NUCLEAR STATION METEOROLOGICAL DATA JUNE 1900 i

              .................................=........................................................ ....... ..=...i.. ........ =.... e==. .

HOHR

                      ........................................................ .............................................................. dally DAY         0    1     2                      3                             4      5     6                     7                                         8               9    10                    11     12            13    14    15   to    17     le         19   20   21                                     22  23 NEA4
              ................................. ....... .......................................................=........---....=....--..........

t =0. 9 . 0.0 =0.3 =l.6 =0.0 -0.2 0,5 =0.4 *0.9 1.0 =1.2 =1.9 .t.1 =1.7 =l.9 =2.0 2.3 =l.3 .l.0 0.7 0.2 0.1 0.4 0.8 0.s 2 0.9 0.4 0.0 0.6 0.0 1.0 0.0 -1.3 *l.9 *l.6 =1.0 1.2 -1.8 =1.1 =1.8 =2.2 *2.0 -1.R -1.0 -0.6 0.4 0.4 0.2 =0.3 =0.6 3 0.4 l.0 0.9 0.8 1.0 1.0 1.9 =0.4 =0.9 -1.5 =1.5 =1.1 1.0 =1.2 .t.1 =1.0 =0.9 =1.0 -0.0 -0.7 0.3 -0.0 -1.1 0.2 -0.4 4 = 0. 3 = 0. 3 -0. 9

  • 0. 9 = 1. 2 = 0. 3 -0. 4 = 0. 7 = 0.7 =0. 9 = 0. 8 =0.9 =0.7 =1.3 -1.2 -1,3 l.3 =1.0 -0.5 0.3 0.3 -0.2 0.0 =0.8 -0.7 I 5 =0. 7 *0. 4 = 0. 4 0.1 -0. 6 =0. 7 0. 0 -1. 2 = t . 3 = 1. 6 . l . 5 = 1. 5 =1. 5 1. 3 . t . 2 = 1. 3 = 1. 5 = 1. 0 -0. 8 0. 9 =0. 7 = 0. 6 = 0. 9 =0. 4 = 1. 0 >

6 -0.3 =0.4 =0.7 =1.0 0.9 =1.2 =1.2 -1.3 =l.3 *1.5 =1.3 =1.5 .t.6 =1.6 1.1 =0.9 0.4 -0.2 0.4 0.2 =0.6 -0.9 7 0.7 =0.4 -0.4 =0.4 0.1 0.3 0.0 .t.2 -1.5 *2.2 -2.3 =2.0 -2.3 =2.8 2.3 =1.5 t.2 -1.2 =t.2 1.9 3.2 =0.5

                                                                                                                                                                                                                                               '

8 =1.1 el.2 =1.3 -1.5 =1.9 -2,1 =2.2 t.3 9 3.9 2.6 1.0 0.0 1.9 8.5 0.2 *1.5 =l.9 2.8 =2.5 =2.6 2.3 =2.7 2.0 =2.7 2.3 2.0 -1.6 0.4 0.7 2.5 4.5 5.4 -0.8 10 4.9 6.0 5.4 6.6 5.3 6.4 3.1 1.2 -1.2 l.3 .l.7 =2.2 =2.2 2.3 2.2 =2.1 -1.9 -1.6 =1.2 =0.3 =0.1 1.7 1.3 8.2 1.0 0 18 8.3 l.7 1.7 1.9 1.1 1.8 0.3 0.4 =1.1 1.2 el.6 .t.) -1.5 =1.5 =1.5 -1.5 .t.3 =1.2 0.8 =0.6 0.0 0.1 = 0. 3 =0. 3 =0. 2 2 12 0.1 =0.4 0.4 0.4 =0.2 =0.4 =0.6 =0.6 =1.0 ~1.0 -1.2 =1.5 -1,6 =1.3 =t.2 =1.0 -0.8 =1.0 =0.8 =0.6 -0.3 -0.6 0.8 =0.6 =0.0 13 =0,4 =0.4 -0.4 0.6 =0.6 =0.7 =0.0 al.0 =1.0 =t.2 =1.1 -1.6 =1.3 =1.5 =1.6 .t.3 .t.2 =1.0 -1.1 -0.7 =0.6 =0.0 -0.e .0.7 -0.9 m 14 =0.6 =0.6 0.6 =0.6 =0.4 0.0 0.1 =0.9 =1.0 =1.3 =1.3 .t.8 al.9 =2.1 =1.7 =1.6 =1.3 0.7 0.1 =0.1 0.0 0.0 0.3 -0.8 Z 15 =0.1 =0.2 -l.2 -0.7 =0.3 =0.6 0.9 =2.9 =2.7 =1.8 2.0 =2.5 =2.0 =1.5 1.3 =1.5 .l.0 -l.2 .t.0 -1.3 g 16 =0.9 =1.0 -0.9 -0.8 -0.0 -3.1 -1.5 =1.9 ~1.5 =1.9 =1.6 =2.3 =2.9 =2.9 -2.6 2.6 =2.6 =2.2 -1.6 -0.6 0.3 =0.2 0.1 0.0 =1.4 - E 17 -0.1 0.7 -0.4 0.0 0.2 0.3 =0.9 -2.1 =2.3 3.4 3.2 =5.4 5.9 =6.7 -3.9 =4.2 -3.7 -3.2 -2.2 el.5 0.0 1.2 2.2 1.0 -1.9 18 1.0 1.3 0.4 0.6 0.6 1.2 =0.3 -2.2 =1.3 .l.7 2.2 -2.2 -2.3 =2.5 =2.1 =2.0 .l.9 =l.1 0.4 1.6 1.2 4.2 2,5 2.0 -0.2 Q 32 19 0.9 2.2 2.3 2.2 2.1 2.8 -1.1 .l.5 =1.2 -3.8 =2.3 =2.1 -3.0 =3.0 =2.3 -1.8 -3.9 =2.5 =1.1 =0.4. 0.9 0.0 0.8 0.3 =0.6 Z j, 20 0.9 1.1 0.1 0.1 -0.2 =0.8 .l.1 =1.3 *1.6 1.7 t.8 =1.5 =2.8 =2.6 =2.9 3.4 -3.6 =4.9 =3.7 =2.2 0.1 8.6 3.5 0.9 =1.1 7 na 21 0.0 .0.4 0.7 0.7 =0.6 0.0 -0.9 al.3 =1.9 =4.4 =3.8 6.4 5.4 -3.9 =3.9 -3.4 =2.8 =2.5 =1.6 0.8 0.1 =0.1 0.2 0.0 al.9 2 0.4 E 22 =0.8 =0.2 =0.2 -0.2 0.0 0.6 0.1 =0.9 al.1 =2.2 =3.0 .S.4 =5.7 *4.5 =5.0 *t.5 =l.6 =0.8 =4.0 =2.7 =0.7 -1.2 0.0 al.7 2 23 -0.2 =0.8 =0.1 =0.9 =0.9 -0.8 =0.9 -1.3 *2.1 =2.9 =3.4 =2.9 ~5.7 8.7 =8.3 =6.6 -5.5 =4.0 -2.9 =2.2 0.0 1.5 1.6 1.6 =2.3 l 24 2.0 2.8 2.7 0.6 1.0 1.0 0.2 =1.6 *l.0 =2.2 =2.1 -3.9 .l.9 =2.0 =1.6 -1.0 -le7 .t.7 .t.5 0.1 0.2 0.0 -0.9 -0.5 d i 25 -0.7 -0.4 -0.3 Del 0.7 0.6 0.7 -1.7 =1.5 2.2 =3.4 -2.s .3.0 2.1 -0.e =1.0 =1.2 =1.2 -0.e .0.2 0.3 t.5 8.3 0.9 =0.s > l 26 1.0 1.9 0.9 1.2 0.2 1.7 f.9 0.0 -0.9 0.9 -1.0 =1.5 =1.3 =1.6 *t.0 =1.1 =1.3 =1.0 -0.4 0.1 0.9 1.6 1.9 1.5 0.8 I 27 2.8 1.5 1.0 0.8 =0.2 0.6 =0.6 =0.6 =1.1 =l.3 =1.3 .t.1 =1.0 =0.8 =0.9 0.9 -0.8 -1.7 0.7 1.2 3.0 1.0 1.8 1.7 0.0 Ul 28 0.7 =0.1 0.1 0.0 0.0 0.0 0.1 0.4 =1.2 -1.0 -1.0 .t .2 -1.2 el .2 .t .2 =1.2 =1. 3 1.1 -1.0 0.0 1.3 2.5 2.1 1.9 =0.2 0 29 3.4 3.4 4.7 5.1 6.1 2.0 2.2 =0.7 .t.1 1.6 -1.0 2.3 -2.3 =2.0 =1.0 1.7 =1.5 2.2 -1.9 0.4 0.1 1.6 1.6 2.7 0.5 g 30 1.8 1.1 1.0 1.1 1.2 1.1 0.4 -l.0 -1.2 =1.5 -1.8 -1.2 .l.2 =l.3 -1.5 .t.3 -1.3 =1.0 -0.7 0.6 0.0 0.7 0.9 2.6 0.2 Z 00PL1 0 l (AN 0.7 0.7 0.5 0.5 0.5 0.5 =0.1 *1.0 -1.4 =1.7 al.9 =2.2 2.4 =2.4 =2.2 =2.0 =2.0 =1.7 =l.3 =0.7 0.1 0.6 0.8 0.8 m ( ..............................=-=.... ............==.....................................=.................=...................... UI l MAXINUMa 6.8 MINIMUMa 8.7 MEAN a =0.72 690 VALID OBSERVATIONS ( 95.9%) l DAILT EXTREME STATISTICS  :

                                 .....................................................................................................

DAT l 2 3 4 5 6 7 8 9 to il 12 13 14 15 MAX 0.8 1.0 1.0 0.0 -0.2 =0.2 0.3 3.2 5.4 6.0 1.0 0.1 -0.4 0.0 -0.1 i l MIN =2.) =2.2 =1.5 *t.3 =1.6 -1.6 =2.3 =2.2 2.s =2.3 1.6 =l.6 .l.6 =2.5 2.9 \ ................ee... .e...e.ee..e....................e...e.............e..... .....e................ ' DAT 14 17 se 19 20 21 22 23 24 25 26 27 20 29 30 l dnX 0.1 2.2 4.2 2.9 3.5 0.2 0.4 1.6 2.8 1.5 1.9 2.0 2.5 6.1 2.6 l MIN =2.9 =6.7 =2.5 -3.9 *4.0 -6.4 =5.7 =S.7 2.2 -3.4 =1.6 =1.7 al.) =2.3 =1.8 ! ...........................=.=..............=............... ...... ................................. I MAXimpu MEANs 1.24 ulNimuM F*ANs =3 l l l _ _ _ _ - _ _ _ _ _ _ . . _ _ _ _ _ _ _ _

                                                                                                                                                                                                                                                    -                 -_____-              _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

__ 35 IT A BIE37 TEIPLHATUIE (DEG Cl COOPER NUCLEAR STATION METEUR0 LOGICAL DATA . JANUARI 1980

    ...................... .........................................................................................-.................

HOUR DAT ................................................................ o 2 5

                                                                                                              ...................................................... DAILY l              3      4              6       7       8      9     to             12       IJ     14      16    16    37             19     20     21     22
    ..........................................................................................................................23 2.1 il                                                la                                        NEAN
                                                                                                                                                                                            .......

1 2 -l.1 al.7-2.5-2.8

                            -3.0-3.2
                                   -3.0-3.0-3.2-3.5-2.2-3.1
                                                          -3.2-3.3
                                                                 -3.5-3.3-3.6-2.7-3.5-2.1
                                                                                        -3.3 -3.4 *2.7 -2.0 -l.4 -0.8 =0.7 al.1 -1.3 -1.5 -1.4 -1.6 -l.0 -1.7 =2.3 l.9 -3.2 -0.9 -1.4 -1.9 ~2.2 -3.0 3.4 -3.s -3.s -3.9 -3.0 -3.4 -2.7 3 - 3. 6 -1.2 -3.2 -3.4 -3.2 -3.3 -3.9 -3.5 -3.8 -3.8 -3.6 -3.3 -2.7 =2.3 -2.2 -1.7 -2.2 =2.5 2.6 -2.3 -2.3 -2.2 -2.2 -2.6 *2.9                                                                 I 4   -2.4 -2.6 -2.6 =2.6 -2.9 -2.0 -2.9 -2.8 =2.9 -2.5 -2,2 -1.9 =1.4 -0.9 -0.3                                           0.3 0.7 0.6 -0.1 -0.8 -1.3 -1.5 =1.9 =2.3 -1.7                         )

5 6

            -2.5 -3.0 -3.5 -3.9 -3.3 =3.9 -4.0 -4.6 -4.4 -3.6 -2.5 -1.7 =0.7 0.1 1.8 0.3 0.3 -0.4 0.6 -0.5 -0.7 =0.6 -n.g -1.1 .t.8
             '

N

            -t.4 -1.4 -I.) -1.4 -1.2 -1.2 -1.1 -0.7 -0.6 0.2 0.4 0.6 0.0 -4.0 -6.3 -6.7 -5.7 -7.4 -8.2 -8.9-80.3-30.7-10.9-11.2 -4.1                                                                    F 7 -31.4-18.7-12.1-12.5-12.5-13.1-13.5-13.5-13.4=12.3-30.9 -9.3 *1.7 6.0 -6.3 -5.8 -6.4 =7.5 -8.0 -8.5 -8.7 -9.2 -9.6 -9.6-10.0 e

Nl 9.malu.1-to.3-80.4-12.1-12.0=12.2 82.5-12.l-30.4 -0.6 -8.2 -6.9 =6.5 =6.5 =5.5 -5.4 -6.6 -7el 7.5 -7.9 -0.8 -9.3 -9.8 -9.0 d 9 -10.3=t8.4=11.7-12.0-12.5-13.0=14.4=15.3*15.8-14.6-12.5-10.0 -9.1 -7.5 -6.1 =5.0 -5.2 -5.7 -6.1 -6.6 -7.2 -7.5 -7.8 -7.6 -9.9 0 lo - 7. 3 - 7.1 - 7.1 -6. 7 -5. 0 -4.6 -2.5 -0.7 1.2 3.7 4.6 5.4 6.7 7.2 2 18 11.3 9.1 0.5 -1.6 4.n -5.7 -6.0 -7.6 -7.5 -5.2 ~3.3 -2.2 =0.6 0.7 0.9 10.7 12.2 30.7 10.3 10.1 10.3 10.4 11.2 II.9 3.9 1.3 1.3 3.0 0.2 -1.3 -2.2 -4.3 -4.5 -1.7 -6.4 =l.8 12 -7.7 -7.4 -0.0 -8.3 -0.6 -0.7 =0.6 -0.4 -6.0 *5.5 *0.5 1.3 2.9 4.4 5.8 4.7 4.7 g 13 1.2 3.3 2.5 3.) 2.9 3.1 2.9 2.9 2.7 3.0 4.6 4.6 4.6 4.4 4.3 4.2 3.6 3.6 =1.8 y 14 -l.) -1.3 =2.9 -1.2 -0.3 -0.6 -0.0 -0.6 -0.2 0.6 3.4 6.3 8.1 9.3 12.8 12.6 13.5 32.0 10.3 4.2 4.2 2.1 -1.0 -0.7 5.3 - 15 7.8 8.1 1.3 6.7 0.6 10.3 12.9 12.4 13.9 9.0 9.6 9.2 9.3 7.8 A.) 0.4 4.9 b 8.3 7.2 7.0 6.9 6.7 6.0 6.3 7.7 9.6 11.4 11.6 10.7 11.1 9.9 9.5 0.6 7.5 7.8 7.3 7.3 6.7 8.3 16 6.4 6.0 f.0 5.9 5.2 4.7 4.1 3.1 2.5 2.4 1.8 1.3 1.1 1.0 0.6 3 0.9 0.5 0.7 0.3 0.6 0.0 1.0 1.1 0.6 2.4 Q }" 17 0.2 -0.5 -0.4 =0.9 -1.7 2.0 -3.1 - 1. 6 -2.8 -2.4 0.3 0.6 2.3 2.8 3.4 4.9 5.6 4.6 2.8 1.0 1.4 0.8 0.3 0.4 0.6

  • >

DJ 18 -0.6 -0.9 -1.2 -1.0 -1.3 =l.6 -2.1 -2.3 -2.2 al.2 0.6 2.2 4.2 7.6 8.8 7.9 7.3 7.2 5.7 3.6 3.3 3.4 3.3 2.6 2.2 7 19 8.# 2.2 1.7 1.3 1.1 0.9 -0.1 -0.2 -0.3 -1.5 =1.4 =1.8 -1.2 =1.4 -1,3 -1.3 -1.5 =2.3 -2.3 -3.3 -3.7 -4.1 -3.s .4.2 -1.1 5 20 -3.7'-3.7 -3.7 -3.7 -3.1 -3.1 -3.3 -3.7 3.4 3.6 -2.4 -0.7 =0.1 28 -2.1

                                                                                                              -1,1 -0.6 =1.3 -0.9 -1.6 -1,3 -1,3 -1.2 -3.7 -3.4 =1.0 -2.2                              E
                    -2.3 -2,2 -2.7 -2.6 -2.6 -2.2 -l.6 -1.7 -1.2 =0.0 1.1 1.2                                   3.3     3.7     3.6  1.8    1.2    0.4    1.3     2.6   2.6     2.9    2.6 22      1.6      1.1 0.6 0.1 0.3 -0.5 -1.1 -0.1 =0.8 =0.0 -0.1 0.3 0.7                                                                                                                    0.3     Z 0.0     1.2     0.7  0.6 -0.1 -1.9 -2.4 -3.0 -3.8 -4.6                  4.7 -0.6       4 23    -5.0     -5.8 ~6.5 -6.6 -6.7 -6.5 -6.0 -6.2 -6.1 -4.3 -2.8 -1.7 -0.4                                 0.4     0.7     0.8  0.1 =0.3 -0.1 0.2 0.9 1.0 2,9                      4.4 -2.2       >

24 5.7 6.2 5.4 5.0 5.7 4.9 4.7 3.9 4.1 5.3 6.3 6.7 7.9 0.1 S.6 8.9 9.5 8.1 6.9 7.3 5.7 4.9 4.7 1.3 6.8 I 25 3.1 2.9 2.4 2.9 1.9 1.9 1.8 1.0 2.0 4.7 1.0 2.2 2.6 26 4.9 1.0 0.9 -0.7 -1.8 -2.9 -4.1 -4.0 -6.2 -5.9 -6.6 0.1 g

           -7.0 -6.3 -0.A-10.3-It.3-11.2-12.7-12.5-12.9-12.2-11.6610.2-11.1-10.4-10.4 -9.9 -9.9 -9.9 -9.6 -9.9-80.3=10.7-10.6-11.1-10.5                                                                g 27 -12.4-88.2-13.5-18.7-11.0-12.5-12.4-13.0-12.2=11.7-10.4 -9.7-10.2 -9.6 -9.1 -0.9-80.0 12.2-12.3-13.4-12.7-13.5-15.9-16.6-11.9                                                                  --

24 -16.9-16.9-16.8-16.9-15.3-16.5-14.2-83.5-12.4-11.7-10.6-10.2 -9.1 -9.3 -9.8 -9.2 -9.1 -9.6-10.2-10.3-10.2-10.1 -9.8 10.4-12.0 E 29 30

          -in.4-It.6-II.9-12.7-12.4-83.2-13.3-13.7-13.0-10.8
           -9.4 -9.6 -9.0 -9.8 -9.4 -9.7-10.2-10.7-10.9=30.7 -9.8
                                                                                       -9.7-10.4 =0.7 =9.3 -9.3 -9.2 -9.4 9.4 9.4 -9.2 -9.4 -9.8 -9.6 =9.9-10.7                                        2 31                                                                                       -9.6 -9.0 =0.0 -0.6 -0.6 -9.2=10.3-11.6-!!.9-12.4=13.0-13.9-16.4=10.6                                    O HuupLy - 19. 2-   18. 2- 18. 4- 8 9. 4- 19. 9- 19. 3- 2 0. 0- 2 3. t -2 3. 0 - 21. 6- 8 7. 9 - 15. 0 = 15.1 -13. 6- 12. 2= l 8 . 4-11. 4= 11. 9- 1 1.1- 13. '# - 14. 6- 16. 7 = l 7. 4 - 10. 6-16. 9 M mFAN     -),5     =).7 -4.5 -4.5 -4.7 -4.9 -5.1 -5.2 -5.1 -4.2 -2.9 -2.2 -1,3 -0.5 -0.4 -0.2 =0.3 -1.1 -l W
   .................................................................................................

MAIIMUMa 13.5 MiglMuMa a -2.4 -2.6 -3.0 -3.2 -1.7

                                                                                                                                                     ................................

23.8 MEAN e =2.96 744 VALID 088ERVATIONS (100.0%) DAILY EXTREME STATISTICS

                         ................................................... ................................................

DAY I 2 3 4 5 6 7 8 9 to 13 12 13 14 15 NAA =0.7 -0.9 -l.7 0.7 1.8 0.8 ~5.8 =5.4 -5.2 32.2 11.3 5.0 13.5 12.9 St.6 min -3.6 -3.9 -1.9 -2.9 ~7.3

                                                                        -4.6 -19.2 -11.5 =12.2 -li.8                           -7.6   -8.7    -l.0    =2.9       6.0
                         .....................................................................................................

DAT 16 17 le 19 20 28 22 23 24 25 26 27 20 29 30- 31 MA4 6.4 5.6 A.I 2.2 -0.1 3.7 1.6 4.4 9.5 4.9 -1.0 *0.9 -9.1 =8.7 -0.6 -81.4 mit 0.3 -3.6 -2,2 -4.2 ~3.7 -2.7 -4.7 6.7 1.3 -6.6 -82.9 -16.6 -16.9 -13

                         ................................-...................-.....................-............

MaxlMun MEANs 7 -16.4 -23.0

                                                                                                                                                           .............
                                                                                           ) 39          MINIMUM MEANs            *7
 - - - _          - _ -
                                                                                                                                             .                       .              - -

35 FT ANSIENT TEMPLNATUME (DEG Cl COUPLS MUCLEAR STATION MLTEOROLOGICAL DATA FEBRUARV 1980

                    ----------------------------------------------------------------------------------------------------------------------------- ----

HOUR

                             ..........................             .................................................................................:......... 0AILT DAV         O       1       2       3     4      5     6      7    8      9                    to     !!     12      13     14    15     16     17     18    19       20    21   22    2) MEAN
                    ------------------------------.                 --------------------------------------------------------------------------------------------------

I -2n.3-2u.u-20.9-20.9-22.1-28.4-22.3 21.5-20.2-87.7-14.2-11.9-10.2 -0.8 -0.2 -7.6 -7.4 -7.3 -0.2 -R.2 -0.2 -0.1 -0.7 -7.9 83.9 2 -7.4 -1.1 -7.8 -7.1 -6.7 -e.8 -6.4 -6.1 ~6.0 -6.1 -4.7 -4.1 =2.7 -1.7 -1.1 -1.4 -1.7 -2.7 -2.9 -3.3 *).1 -4.1 -4.4 -4.0 -4.6 3 -4.5 -4.9 -8.9 -5.7 -1.4 -8.9 -9.8 -9.9 10.0 -0.7 -7.2 -5.9 -4.1 -3.9 -2.7 -2.9 -3.7 -4.8 ~5.1 -6.2 -6.2 -6.2 -6.2 -6.1 -6.8 4 -6.0 -6.4 -0.6 -6.1 -6.7 -6.0 -7.2 -7.u -7.6 -7.0 -6.6 ~5.8 -5.1 -4.8 -4.0 -4.2 -3.9 -3.8 -3.0 -3.9 -3.9 -3.7 -2.2 -3.1 -5.3 I 5 -2.3 -1.4 -0.0 -0.4 -0.6 -1.0 0.8 -0.2 -0.7 -0.9 -1.1 -1. 3 - 1. 2 - l . 2 - 1. 3 -1. 3 - 1. 3 -l .1 - 3. 9 -4. 5 -4. 6 - 4. 3 - 4. 4 -5.3 -1.9 ) 6 ~5.8 -5.5 -5.3 -5.6 -6.1 -6.2 -6.6 -7.1 -7.0 -6.7 -5.4 -5.3 -4.8 -4.0 -3.4 -2.9 -4.1 -5.1 -5.9 -6.9 -s.3 -9.3-10.9-12.6 -6.3 N 7 -14.5-14.9-14.7-14.6-12.9-11.6-10.8 10.9 -9.6 -9.1 -7.7 -7.0 -5.3 -4.9 -4.1 -4.5 -4.8 -4.6 -4.3 -4.6 -4.7 -4.9 -5.4 -5.9 -8.2 r= pl 8 -5.5 -5.9 -5.9 -6.1 -6.7 -6.9 -6.7 -6.6 -6.9 -6.7 -6.2 -5.6 -4.4 -3.3 -3.2 -3.2 -3.9 -5.4 -6.9 -7.4 -0.3-18.4-12.8-13.5 -6.6 9 =l4.1-87.2-17.2-87.1-15.6-14.7 14.1-15.2-13.7-13.6-18.1 -9.8 -9.2 -0.5 -0.2 -0.5 -R.6 -9.4-30.0-18.9-12.9-13.8-14.5-13.4-12.5 -4 0 to -14.1-15.8-14.7-13.e-14.2-14.1-13.u-12.8-11.7-10.2 -0.3 -5.9 -2.8 -1.4 -0.4 -0.5 -0.6 -0.9 -1,3 -1.9 -3.4 -3.6 -3.R -3.6 -1.2 I 18 -3.9 -4.2 -5.5 -7.1 -8,5 -9.7-11.5-10.9-10.2 -0.7 -7.2 -6.3 -5.9 -5.7 -5.5 -5.1 -5.5 -6.6 -0.3 -9.3 -9.8-10.9-11.8-13.6 -0.0 Z 12 -85.9-15.5-15.3-15.7-in.4=IS.7-16.9-17.6 16.6 34.7-10.6 -0.8 -7.0 -5.5 -4.6 0.6 -4.4=0.0

                                                                                                                                                           -4.8 -0.4
                                                                                                                                                                  ~5.4-0.8
                                                                                                                                                                         -5.2-0.4
                                                                                                                                                                               -5.4-0.4 -6.2-0.5
                                                                                                                                                                                             ~6.7  -7.1 -7.5-10.6
                                                                                                                                                                                                 -0.7 -0.8 -2.3               E 13   -7.4 -1.2 -7.7 -7.4 -6.6 -5.2 -I.9 -3.3 -2.5 -l.6 -l.2 -0.1                                       0.6 0.7 0.7 le   -1.0 -1.2 -1.4 -l.3 -1.2 -2.5 -2.3 -3.1 -1.2 -3.4 -3.3 -3.3 -2.9 -3.1 -2.8 -2.4 -2.6 -2.4 -2.0 -3.1 -3.1 -2.9 -2.9 -3.1 -2.5 Z

15 -3.1 -3.1 -3.7 -3.8 -4.2 -4.5 -5.5 -5.7 -5.5 -5.5 -5.8 -5.9 -6.4 -5.9 -5.6 -6.2 -6.3 -6.7 -7.9 -8.3-10.0-11.0-31.9-12.2 -6.5 C 14 -12.9-17 5-13.5-13.3-13.0-13.4-13.2-13.6-13.2-12.1-10.4 -9.2 -9.3 -0.2 -7.9 -8.2 -0.5 -9.2-10.1-It.3-t2.0-12.6-12.8-13.5-11.4 j

                                                                                                                                                                                                              -11.*
           }-           17 -15.0-i4.4-14.9-14.e-15 i-i?.6-18.7-18.7.t?.9-16.1-t).2-10.6 -7.9 0.5                                        -6.7 -5.7    -5.2 -5.2 -5.4 -6.2 -6.8 -7.0 -7.4 1.3 2.1 2.2 2.4 2.6 2.3 2.2 1.6 1.6 8.7 -2.4 O

43 14 -0.2 -0.3 -H.I =0.2 -8.1 -8.8 -7.2 -7.0 -5.5 -3.9 -2.3 -1.7 -1.0 Z 4= 19 e.2 8.3 n.) 0.1 -0.2 -0.6 -1.1 -1.3 -0.9 0.4 2.6 1.0 2.3 3.7 3.8 3.4 3.1 2.7 2.6 2.0 1.6 1.5 1.6 1.5 1.4 20 9.6 0.9 0.5 0.2 0.3 0.2 -0.n =0.5 -0.4 -0.6 -0.5 -0.4 -0.0 -0.0 0.5 0.7 0.3 0.9 0.6 0.5 0.8 1.4 1.6 1.6 0.4 $ 2.9 2.9 2.4 2.5 8.8 1.8 2.8 pl 23 7,a 2.6 2.6 3.2 2.6 2.0 2.9 2.8 1.1 2.9 3.3 3.6 3.6 3.6 3.6 3.1 2.3 l.7 22 1.2 1.3 1.2 1.6 1.8 1.4 1.3 1.1 2.8 2.3 2.9 3.1 3.7 4.8 5.1 4.8 5.2 4.3 4.2 3.0 3.4 3.2 3.1 3.1 2.9 Z 23 2.6 2.3 2.1 1.5 0.6 0.3 0.1 0.3 0.6 -0.0 -0.3 -0.2 -0.6 -0.2 -0.2 -0.4 -0.3 =0.4 -0.8 -0.6 -0.8 -1.4 9.3 - 24 2.5 1.4

                             -1.% -1.5 -2.1 -l.4 -l.6 -2.4 -2.2 -2.5 -0.0                  2.8                    3.2    4.2 5.0 7.8 7.5 8.6 9.3 7.9 7.7 6.0 5.3 5.2 4.4 3.1 3.0                                              )(

25 1.9 0.4 -1.9 -3.6 -5.2 -6.4 -7.4 -0.3 -8.4 -7.2 -1.3 -6.6 -6.2 -5.8 -5.3 -4.6 -4.6 ~5.3 -5.4 -6.4 -6.9 -1.6 -7.8 -8.0 -5.6 F 26 -a,4 -9.1 -0.9 -9.3 -9.4 -9.5 -9.4 -8.8 -7.2 -6.8 -3.6 -1.3 1.6 3.4 4.6 6.4 7.2 7.2 6.3 5.5 4.7 4.7 4.2 3.1 -1.4 g 27 3.2 2.9 1.6 2.9 2.9 2.4 1.6 0.9 1.0 1.7 2.3 3.7 3.4 4.4 6.5 7.0 7.6 8.6 7.9 6.8 5.2 4.0 g lo.6 8.0 6.2 7.2 5.3 2.9 0.8 -0.3 -1.1 -0.9 -0.2 -0.0 -0.6 -0.8 -l.2 -1.1 -0.6 -0.7 -1.5 -2.5 -2.9 -4.2 -3.9 28 9.9 1.2 -- El 29 -4.6 -4.9 -5.9 -7.3 -8.4 -9.4 -9.6 -9.9 -9.6 -9.4 -9.5 -9.4 -9.3-10.6-11.5-11.1-12.4-13.2-13.3-13.2-13.4-13.2-13.5-13.3-30.2 Z HOUWLV MFAN -5.3 -5.5 -5.9 -6.0 -6.4 -6.6 -6.8 -6.9 -6.6 -5.8 -4.6 -3.8 -1.0 -2.1 -1.8 -1.7 -1.9 -2.2 -2.7 -3.1 -4.1 -4.5 -4.8 -4.7 0

                    ------------------------------- --------------------------------------------------------------------------------------------------                                                                        pl MAXIMUMS     10.6                      MINIMUMa =22.)           NEAN e -4.47                                                                   5 691. VALID OBSERVATIONS f 99.3%3                                                                                  s DAILY EXTREME STATISTICS
                                          -----------------------------------------------------------------------------------------------------

DAV l 2 3 4 5 6 7 8 9 to il 12 Il 14 15 l MAI =7.5 -l.1 -2.7 *).1 0.3 -2.9 -4.1 -3.2 -0.1 -0.4 -3.9 *4.4 0.7 -1.0 -3.5 Mik -22.5 -7.4 -80.0 -7.8 -5.3 -12.6 -14.9 -13.5 -17.2 -15.8 -13.6 -18.7 -7.8 -3.4 -12.2

                                          .....................................................................................................

t) A t 16 17 18 19 20 21 22 23 24 25 26 27 28 29 NAX -7.9 -5.2 2.6 3.8 1.6 3.6 5.2 2.6 9.3 1.9 7.2 0.6 10.6 -4.6 Min -85.8 -18.7 -8.3 -1,3 -0 n 1.7 1.5 -l.4 -2.5 -0.4 -9.5 0.9 -4.2 -83.4

                                          .-...--....-..-.---..----.--------------.--------.------...------.----------------...---------------.

MAIIMUM MEANs *0.19 plNIMH4 MEAha =9.

         .- __ -                     __            --                                           _ _ _ - _ _ _ _ _
                                                                                                                                      -            -                                                              _--__-_- _.

_

                                                                                                                                               -s-  .

35 ff AmstE"? TE"PE*A7URE (DEG Cl COOPER hDCLEAR STATION PiTEOROLnCICAL DATA MARCH 1990

   ..................................................................................................................................

HOU4

           .......................................................,............................................................... 0AILV IJ A f      0      1                                  2   3     4      5     6       7           8      9    10      11     12    13     14     15      36     17     le   19  20  21   22  23 MFAN
   ..................................................................................................................................

I ~15.4-13.3-13.5-13.0-84.9-l6.3-17.2-17.4-16.t=15.1-12.6-10.1 -9.2 =0.3 6.5 -6.2 -6.0 -6.9 -0.0-10.6-10.9-12.5 11.6-15.6-12.0 2 al6.5-19.4-19.9-19.3-19.g-39.9 19.4 19.1-17.2-14.3-12.2-10.2 -0.5 -7.3 -6.1 -4.6 -3.9 -3.4 -4.2 -4.9 -5.3 -5.2 -5.4 -5.1-11.3 3 -6.1 -5.2 -5.0 -4.7 4.4 -4.3 4.4 -4.8 =4.6 -3.4 -l.4 0.3 1.9 2.6 3.1 3.7 3.9 3.6 3.7 2.8 1.1 1.1 0.7 0.7 -0.8 4 0.2 0.6 0.6 0.7 0.5 0.3 =0.1 =0.3 -0.3 0.1 -0.1 0.3 0.3 -0.3 -2.3 =4.2 -5.7 -6.7 -6.9 -7.6 -n.6 -8.7 -9.3-10.6 -2.8 I 5 -11.1-12.0=12.4-13.6-14.2 84.4 14.3 13.9-12.3-11.1 -9.6 ~8.1 -6.6 -6.7 =5.3 -5.7 6.2 -6.4 -7.6 -9.0 -9.6 -9.6-18.2=11.4=10.1 I 6 -10.4-10.9 10.9-80.4-10.9-10.3 -9.4 -8.7 -8.1 -6.2 4.1 -2.6 -0.3 1.1 3.6 3.7 3.1 2.3 1.6 0.6 -0.2 -0.3 -1.7 -2.3 -3.8 7 -2.5 -2.2 -2.3 -2.8 -7.0 -3.4 -2.9 -2.9 0.3 2.1 2.8 2.7 2.6 2.2 2.3 1.6 1.5 1.3 0.8 =0.1 -0.6 0.1 f g 9 -0.9 -1.3 -l.3 -1.6 -1.4 -1.3 -l.6 -1.6 -1.6 -0.8 -0.0 0.2 1.5 1.6 1.8 2.2 2.0 1.8 0.4 =0.3 -1.9 -2.8 -3.4 -3.9 0.6 4 9 -4.6 -6.2 -5.3 =#.0 -6.6 -5.9 -4.6 -2.6 0.3 2.6 3.8 5.7 6.4 6.5 7.0 6.8 7.1 6.7 5.1 4.4 3.7 2.1 2.4 1.0 1.2 to 0.9 2.0 3.8 4.0 2.8 8.4 2.3 1.0 3.5 5.0 5.6 2.8 3.3 3.4 2.7 2.2 1.6 0.0 -0.4 -1.9 -2.2 -2.6 3.0 3.6 1.5 0 11 -4.2 -4.0 -6.3 -6.3 -6.2 -6.8 -6.3 -6.3 -4.6 -3.8 =2.6 2.2 -1.2 =0.7 0.3 0.7 1.4 1.2 0.9 0.6 0.7 0.8 0.6 0.2 -2.3 2 12 -0.6 -1.1 0.9 -0.9 =l.4 -l.8 -l.6 =1.8 =t.7 =1.4 =1.0 0.7 0.1 0.1 =0.6 -0.6 -0.5 -0.3 -0.2 =0.5 -l.3 -1.2 =l.4 -l.s -1.0 pl 13 -l.7 -l.6 -3.4 -l.6 -1.3 al.5 -1.0 -2.4 -2.8 -2.3 -1.3 0.0 1.1 1.6 2.0 2.0 4.1 4.3 3.0 0.4 1.2 -0.5 -1.8 -1.3 -0.1 Z 14 =l.0 -1.0 -2.3 -2.1 -l.8 -0.6 -0.2 -0.2 1.6 4.4 6.3 7.8 9.0 12.0 13.3 15.0 17.1 16.1 14.8 12.7 8.8 S.2 7.6 0.3 6.3 4 15 7.a 7.4 5.9 5.2 5.1 4.8 5.3 5.1 6.6 8.3 11.2 13.3 15.3 16.1 18.2 18.5 18.3 17.9 16.5 14.9 IJ.R 13.0 12.2 11.4 11.3 - 16 11.4 10.7 9.1 9.8 10.1 8.3 7.7 9.6 7.5 9.6 8.8 5.4 5.1 5.2 5.3 4.8 4.7 4.7 4.8 4.9 4.9 4.2 2.7 2.0 6.7 3 32 17 l.1 0.6 0.5 0.1 -0.6 -0.8 .t.2 -1.4 -l.2 0.1 2.3 4.6 6.3 7.4 8.3 0.7 9.6 9.4 8.7 6.7 5.3 2.9 2.3 1.6 3.4 0 j, le 1.2 0.8 1.2 1.4 1.3 5.2 0.0 1.9 4.4 1.2 10.6 12.3 14.2 15.7 16.7 17.4 17.4 17.1 15.3 12.9 15.6 10.2 8.0 1.6 8.7 Z Ln 19 6.9 5.9 5.6 5.3 5.6 6.3 6.4 6.6 8.1 11.0 12.7 14.2 15.7 16.7 17.3 10.0 18.9 19.0 17.9 16.3 14.6 13.1 12.7 12.9 12.0 g 2u 1u.6 9.8 9.2 8.2 8.3 7.5 5.6 5.4 5.6 5.4 5.8 6.9 9.2 30.6 11.1 11.7 II.6 10.9 9.2 7.3 6.3 5.6 4.2 3.2 7.9 g 21 2.4 1.4 l.0 0.2 -0.7 -1.1 -l.5 -1.0 1.0 2.1 3.6 5.3 6.6 7.7 0.7 9.6 9.7 9.6 8.3 6.8 5.7 4.3 3.0 2.5 4.0 22 2.0 1.5 1.7 2.0 1.9 1.7 les 1.8 2.9 6.2 8.6 11.5 13.4 14.5 16.5 16.0 17.2 17.0 15.3 13.8 11.9 18.7 9.9 8.6 8.8 23 6.8 5.3 4.2 2.7 1.6 0.8 0.6 0.3 0.6 1.0 1.1 2.3 4.2 4.5 4.4 4.7 4.3 3.4 2.7 2, 4 1.8 1.6 0.6 0.5 2.6 g 24 -0.2 -0.6 -0.6 -0.6 -0.8 -0.4 0.3 -0.6 -0.2 -0.2 0.6 1.1 1.3 1.4 2.0 2.6 2.9 2.8 2.1 1.4 0.8 0.7 0.5 0.1 0.7 p. 25 -1.1 -0.8 -l.1 0.9 -0.9 .l.3 -0.k =0.9 -0.0 -0.8 0.2 0.6 0.0 1.2 1.3 1.5 1.5 1.4 1.0 0.0 n.1 0.6 0.0 0.9 0.1 26 0.7 3.8 1.6 8.5 1.3 1.3 1.3 1.1 1.0 0.3 2.3 3.2 3.7 3.4 3.1 3.4 3.4 3.4 3.6 4.1 4.2 4.0 4.9 4.6 2.7 W 27 4.7 4.4 4.3 3.4 2.6 2.9 3.3 2.3 1.5 2.3 5.2 6.9 7.9 9.4 10.6 10.9 11.2 11.1 10.6 10.1 8.5 0.2 9.4 s.2 6.6 0 28 7.3 7.2 7.2 7.2 7.3 7.1 6.7 6.8 7.1 7.3 6.8 7.3 7.0 6.8 7.2 7.7 7.2 7.2 6.8 5.9 5.6 5.4 5.2 5.4 6.0 g 29 5.0 5.0 4.9 5.0 4.9 4.9 4.3 4.3 4.2 4.5 4.9 4.7 4.5 4.2 3.s 4.3 4.2 4.2 4.4 4.7 4.6 4.7 4.7 4.0 4.6 7 30 4.9 4.9 4.2 4.2 3.9 3.8 3.6 2.0 2.1 1.6 1.8 2.1 1.5 2.3 1.4 3.7 2.9 3.4 3.4 3.2 3.3 1.4 3.6 3.3 3.2 g 38 3.3 3.4 3.4 2.9 2.1 2.0 2.4 2.7 4.0 5.1 7.6 9.4 10.6 11.4 12.3 12.3 12.8 12.7 12.3 10.7 9.6 9.3 8.0 7.4 7.4 g HOUHl.V

                                                                                                                      ).O           4.7          5.1      5.7 g

MFA> 0.1 -0.3 -0.5 -0.7 -1.0 -l.2 _l.1 -1.1 0.3 0.9 2.3 4.1 5.4 5.5 4.7 3.1 2.9 2.3 1.0 1.3

    ..................................................................................................................................

MAXIMUMS 19.0 MINIMUma -19.9 MEAN e 1.99 741. VALID OBSERVA7 IONS ( 99.6%) DAILY EI7RFMF STAflSTICS

                             .....................................................................................................

DAV 1 2 3 4 5 6 7 8 9 lH 18 12 Il 14 IS MAX -6.0 3.4 3.9 0.7 5.3 3.7 2.0 2.2 1.1 5.8 1.4 0.1 4.3 17.1 19.5 WIN =l?.4 -19.9 6.8 -10.6 -14.4 -10.9 3.4 -3.9 =9.0 -3.6 -6.8 -1.P =7.8 -2.3 4.R

                              .....................................................................................................

DAV 86  !? le 19 20 21 22 23 24 25 26 27 28 29 30 31 mat 18.4 9.6 17.4 19.0 11.7 9.7 17.2 6.9 2.9 1.5 4.9 18.2 7.7 5.0 4.9 12.a MIN 2.0 -1.4 0.9 5.3 3.2 -1.5 l.5 0.3 -0.8 -1.3 0.3 1,5 5.2 3.8 1.5 2.0

                             .....................................................................................................

nAntmuM MFANs 6.66 nlglaum stANs -3. _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - - _ _ _ _

35 FT A9BILNT Tt'mPERATUNE (DtG Cl COOPER huCLEAN 374T804 MFTFORULOGICAL DATA APRIL 1980

  ..................................................................................................................................

Mnun DAILT

         .......................................................................................r...............................

16 e7 tg 19 20 21 22 23 MEAN 0 2 3 4 5 6 7 8 9 10 11 12 13 14 , 15

  ..................................................................................................................................

DAT 1 7.2 m.4 9.) 9.3 9.7 9.4 7.8 6.7 5.9 5.6 4.9 4.4 6.9 7.0 6.8 6.4 6.5 5.9 6.2 5.# 4.9 5.7 6.5 7.6 7.8 5.7 I 2 4.3 4.3 3.3 5.9 3.9 4.1 4.3 4.3 4.9 5.2 5.7 6.2 6.3 7.1 0.0 0.2 8.2 7.9 6.5 6.3 6.4 5.9 5.4 5.7 3 6.0 6.4 6.7 6.3 6.3 6.1 6.1 5.6 4.8 5.0 4.6 4.1 4.1 3.8 3.9 4.0 4.4 4.6 4.2 4.7 4.7 4.0 4.2 4.3 5.0 2.7 2.8 2.1 1.0 1.9 2.4 4.2 5.9 7.6 10.3 18.3 11.7 12.8 12.1 12.6 12.A 11.6 10.3 0.4 6.0 6.1 5.7 6.9 4 2.9 t.4 I 5 5.2 5.9 4.4 3.9 3.6 2.7 3.1 3.7 5.7 4.1 10.1 12.9 15.1 16.5 18.9 19.6 17.4 16.0 14.9 13.8 13.7 13.2 10.3 I 6 13.5 13.2 13.1 12.6 10.7 11.1 10.5 30.7 12.2 11.3 14.5 15.4 16.9 10.5 19.0 18.9 15.4 17.9 16.0 15.2 14.3 14.0 13.7 32.3 14.5 N 7 18.9 12.3 11.2 9.4 7 6.7 7.4 9.3 11.0 12.5 14.9 16.6 18.2, 17.0 10.1 10.2 17.5 17.2 16.0 15.5 14.0 13.8 12.6 13.1 g

      . 30.9  9.5    ..)   .5      0. 66   .16 ,.i      7.. 7.i    6.2    6.,    6.4   7.7     ..         7    7.,     7.2    7.6   7.4   6.9   5.. 5.2  4.3   3.9   7.4 7.7 9   4.0  4.0    4.5 ' 4.5     4.1     4.0   4.9    4.6   4.3    4.9    5.7    6.3   7.4     9.9 11.0 12.9 13.0 14.) 13.9 12.1 10.3 8.7 7.7                     6.8        q 3.4          8.7 18.7 11.6 14.7 15.9 16.3 16.7 16.7 16.4 16.3 14.9 83.6                         12.9 12.1  l^.6 10.5   0 50   6.9  6.0    4.s   4.3     3.9     4.8   2.0          6.3 3.2         3.1 18   9.4  8.9    a.4   6.9                                2.7    1.5 =0.3 0.1 0.5 0.5 1.0 1.3 2.3 2.9 3.9 3.3 2.9 3.0 5.9                                                  Z 12                                                        1.9    2.6 3.6 5.1 7.2 8.4 9.) 10.5 11.1 11.0 10.0 9.4 7.8 7.1                                        5.4   7.3 3.s 13   5.3  3.9    0.8   0.4     1.5     0.2 .l.6     0.9   3.4    4.6    5.6    7.1   7.9     7.4     7.3     6.6     6.4    6.1   5.9   4.2    3.4   2.4  1.2   0.6        m 14   1.3  0.7    0.3   0.4     0.4     0.1   0.1 -0.2     0.3 0.3       1.1    2.4   4.5     6.1     7.7     9.2     9.s 10.5 10.8 9.9         0.6   7.9 6.7    5.A   4.4  Z 1.9     3.7     3.4                s.4 10.7 10.6 12.7 14.0 14.8 15.7 15.6 15.4 16.0 16.2 15.1 12.7 10.5 s.5                                   10.2  g 15    4.7  5.0    2.0                         6.7 9.9 14.4   -

16 9.6 12.3 14.4 16.0 17.1 10.1 10.4 10.3 16.9 16.) 14.6 13.7 12.8 18.3 10.5 E 17 9.0 9.7 9.5 9.3 0.4 0.0 7.8 0.1 8.) 9.1 S.9 a.6 9.2 10.0 9.7 4.9 9.1 9.6 9.1 9.3 9.5 9.9 9.9 9.9 9.1 0 19 10.3 9.9 9.7 0.7 7.4 6.8 5.4 5.3 0.3 10.R 12.2 14.0 14.9 15.7 16.3 16.3 15.9 15.4 16.2 15.2 14.2 13.3 12.3 10.1 II.9 2 35 19 10.0 9.7 8.2 7.9 7.7 7.1 6.8 7.7 10.8 12.3 14.2 16.1 19.2 21.1 22.2 22.6 23.3 24.0 23.9 23.4 20.3 17.9 15.5 15.1 15.2

1. 20 14.6 13.8 11.6 13.1 12.1 12.1 11.3 13.4 13.7 17.1 19.5 21.5 24.8 26.4 21.2 27.6 27.8 27.0 27.2 2%.1 23.0 20.9 19.2 17.7 19.5 g

Os 2 8 17.5 14.0 ll.) 12.7 18.6 12.0 12.1 13.0 17.1 20.3 21.6 26.1 28.9 29.3 29.6 30.1 30.4 30.1 29.2 25.9 22.4 20.6 19.7 17.9 21.2 g l ' 22 18.1 16.9 16.4 15.6 14.9 14.2 14.4 1%.7 17.9 20.4 23.2 2%.1 2A.4 29.8 29.5 29.6 29.6 29.2 29.4 26.6 22.6 20.3 20.2 18.7 21.9 7

                                                                                                                                                                                -

23 18.9 17.5 15.7 15.9 14.7 13.8 12.6 11.8 13.1 14.0 15.2 16.6 18.8 19.0 20.3 20.9 20.9 20.9 20.3 19.2 17.4 15.9 14.6 13.4 16.8 24 12.7 11.9 11.0 10.1 7.9 6.5 1.5 7.4 9.7 10.7 11.0 11.0 13.0 13.6 13.9 14.3 14.5 14.0 13.5 12.1 11.4 10.9 9.9 0.9 11.3 p 25 7.7 7.7 6.9 6.4 4.s 3.0 3.9 5.9 7.3 10.3 11.7 13.3 14.6 16.1 16.4 16.9 17.3 17.8 17.9 16.2 14.5 12.4 18.9 10.9 11.3 26 10.9 10.3 9.2 0.3 7.6 7.2 7.9 8.4 0.7 9.1 9.0 13.4 12.7 14.1 14.9 15.6 15.7 16.3 16.1 15.4 14.9 13.5 13.1 12.0 11.8 E 27 11.7 10.6 9.6 9.7 8.4 7.6 7.9 9.0 9.8 11.9 14.2 14.6 15.8 16.6 16.9 17.2 18.6 10.7 17.7 16.2 14.7 13.5 13.6 13.2 0 28 13.2 12.5 18.9 13.3 10.8 10.2 9.3 9.9 12.2 13.7 15.6 17.3 19.3 20.3 21.2 21.5 21.s 21.9 28.4 20.1 10.7 16.9 15.9 10.9 15.7 Q 29 11.3 9.4 4.4 7.8 6.4 4.7 4.9 8.9 11.6 14.2 16.8 19.7 19.8 20.6 20.7 20.7 20.7 22.4 21.9 20.2 17.9 16.6 14.6 14.9 14.0 30 14.0 17.8 12.0 10.5 10.1 9.7 9.7 11.5 13.2 14.9 17.1 17.9 18.0 19.2 19.2 19.3 20.6 20.4 19.7 18.7 17.5 15.0 14.3 14.5 15.4 g OppbY g EAN 9.8 9.1 S.) 7.7 7.) 6.0 6.6 7.2 9.4 9.8 13.1 12.5 13.9 14.8 15.3 15.6 15.0 15.9 15.5 14.3 12.9 18.0 10.9 10.4 g

   ..................................................................................................................................                                           ,, i
                                                                                                                                                                                   '

MAIlmpMa 10.4 MINIMHus .l.6 MEAN a 11.4% 694 val.lD OMSEHVATIONS ( 96.463 DAILY EXTNFML STATISTICS

                    .....................................................................................................

DAY I 2 3 4 5 6 7 8 9 In 11 12 13 14 1% MAX 9.7 8.2 6.7 12.8 18.9 19.0 10.2 10.9 14.3 16.7 9.4 11.1 7.9 10.8 16.2 MIN 4.4 3.9 3.9 1.4 2.7 10.5 6.7 3.9 4.0 2.0 0.8 1.9 =1.6 0.2 1.9

                    .....................................................................................................                             30 DAY        16      17      le      19      20      28      22      23       24        25       26       27      20     29 MAX    10.4     10.0     16.3 24.0 27.0 30.4 29.6 20.9 14.5 17.9 16.3 18.7 21.9 22.4 20.6 MIN     9.6       7.0     5.3     6.8   II.)    11.6 14.2 Bl.s             6,3      3.a       7.2      7.6     9.3    4.7     9.7
                    .....................................................................................................

mAvlMHM Mraks 16,69 MINIMUM MEANs 6 _ _. ___________.m.__._

                                                                                                                                                               .          _           _

! 35 FT A%01E5T TEKPEk&TU E (DEC Cl COOPER KUCLIAR STATID3 EETr0:0 LOGICAL DATA MAY 8980

                                                 ...................................................................................................................................

Houp

                                                       ....................................................................................................................... DA1LT DAY       0    1       2       3      4     5      6      7     8      9    10     11     12    13   14   15    16    17      18    19  20    21   22   23 MEAN
                                                 ..................................................................................................................................

I 12.7 11.7 II.6 in.1 10.3 10.2 9.5 10,4 12.6 14.0 15.3 17.9 19.1 19.8 20.2 19.9 20.1 20.t 19.9 19.5 88.4 15.7 12.6 12.9 1%.2 2 10.6 9.6 9.6 7.8 7.3 7.0 7.8-10.2 15.6 19.6 20.9 22.9 23.h 24.4 25.1 24.7 25.1 25.4 24.9 23.1 21.4 19.6 19.9 18.4 17.7 3 18.3 17.6 16.7 15.6 13.8 13.1 13.1 14.1 16.0 19.8 22.2 23.9 24.7 25.4 25.6 25.4 24.9 24.7 24.0 22.9 21.5 19.1 17.1 15.9 19.9 4 14.2 13.0 11.5 10.9 10.4 10.3 8.8 18.8 16.9 20.9 22.8 24.7 25.0 25.0 25.6 25.4 25.4 26.3 24.6 22.4 21.1 19.6 18.3 15.8 18.8 g 5 14.6 14.2 14.8 12.0 11.7 10.5 11.1 12.5 16.1 20.1 21.4 24.2 25.6 26.4 26.4 26.9 26.9 27.7 26.9 25.1 24.1 22.1 20.7 18.a 20.1 g 6 17.6 17.1 16.8 15.2 12.4 11.0 11.7 14.4 17.6 20.4 22.5 21.8 24.9 26.5 26.6 26.3 26.4 26.9 26.1 24.1 21.8 18.9 17.4 16.0 20.1 N 7 15.3 14.9 13.7 12.3 11.7 10.8 10.2 10.3 11.6 12.0 14.1 14.5 14.9 15.5 15.3 15.8 16.0 15.1 14.6 13.9 12.8 11.5 10.1 n.9 13.2 8 7.7 6.1 6.1 5.3 4.4 4.0 3.3 4.7 5.7 6.7 7.6 9.3 10.8 12.2 12.9 13.7 14.3 15.1 14.8 14.2 12.3 9.3 8.4 7.9 9.0 9 6.6 5.8 4.4 3.7 4.1 4.4 4.9 8.3 12.6 14.7 15.4 16.9 18.3 19.0 18.5 18.4 19.2 19.8 19.3 16.2 15.4 15.9 16.1 15.5 13.1 .g to 14.8 14.7 14.3 14.0 14.0 14.5 14.0 16.8 16.0 17.5 18.3 19.5 20.7 22.2 24.6 25.6 27.3 25.3 25.1 22.9 20.3 16.9 14.6 13.6 18.7 0 11 12.9 12.2 11.0 10.2 8.9 8.8 8.3 8.1 9.2 10.0 18.2 12.6 13.7 14.1 14.0 13.7 13.4 15.4 15.2 14.5 13.6 12.6 11.7 13.1 11.9 7 12 10.6 10.6 10.4 10.2 10.3 10.9 11.1 11.2 11.7 12.7 14.9 16.3 15.7 15.6 15.2 15.6 17.3 18.4 18.1 17.3 15.1 13.7 12.1 11.6 13.6 13 II.7 10.7 9.7 8.9 9.0 9.8 10.2 10.0 10.5 13.0 12.1 11.8 15.3 15.9 16.7 15.8 15.9 17.a 16.9 16.0 13.5 11.6 9.6 9.7 12.6 Nl 14 9.7 9.6 0.1 7.8 7.3 7.6 1.3 9.3 14.2 18.1 19.5 19.8 21.0 20.8 20.7 20.6 20.4 21.9 19.5 19.1 17.3 15.4 15.2 'Z 15 13.7 12.5 10.3 9.7 9.0 8.1 9.8 II.2 15.1 17.6 19.1 21.2 21.7 22.4 22.3 22.4 22.2 22.5 22,1 21.3 20.2 19.1 18.6 18.5 17.1 ( 18.3 17.2 17.1 15.6 14.1 11.9 13.8 11.8 11.1 15.0 10.8 10.9 11.6 11.9 12.2 11.6 10.8 II.6 11.3 11.1 10.9 10.8 10.7 11.0 12.5

                                                                                                                                                                                                                                                   -

16 17 13.4 10.9 10.7 10.4 10.4 11.1 11.6 11.7 11.7 12.0 13.7 14.1 15.1 15.4 17.5 15.4 14.9 14.3 13.8 13.2 12.6 12.5 12.0 11.9 12.9 I 18 11.6 11.5 11.2 18.6 10.9 10.8 10.9 10.2 10.9 11.4 13.3 13.3 13.3 14.1 13.8 13.7 13.6 13.6 13.6 13.5 12.6 11.8 11.2 12.3 12.2 0 19 12.2 12.2 12.3 12.3 11.8 12.1 11.5 12.6 13.7 14.1 14.9 17.1 17.4 17.6 18.1 18.3 18.4 18.6 18.1 17.3 16.9 15.1 13.9 14.9 15.t Z

                                               }"

4 20 14.4 14.4 13.4 13.2 11.1 12.1 12.7 12.6 14.4 16.6 17.8 18.9 19.7 20.? 20.9 20.7 20.9 20.2 20.6 19.1 th.6 14.5 13.5 14.4 16.5 {

                                               'J 21 12.8 13.4 10.8 10.4 10.6 9.6 10.6 11.9 14.6 16.5 18.2 21.3 22.4 22.5 22.1 23.2 23.6 24.3 24.0 22.6 20.9 18.8 17.4 16.9 17.5                                                                   gy 22  14.0 13.9 11.7 10.3 9.6 10.1 9.9 12.5 16.3 19.1 21.2 23.1 23.8 24.6 24.6 25.1 24.7 24.A 24.1 22.9 21.1 19.2 17.3 16.6 80.4                                                                  7 23  15.1 14.0 13.4 12.8 12.1 18.4 10.7 13.1 15.9 18.4 20.7 23.0 24.4 24.4 24.8 24.5 23.8 24.0 23.4 22.2 20.9 19.7 18.4 17.r 18.8 24  17.3 16.4 15.3 14.6 14.1 14.6 14.9 16.1 18.4 20.7 22.4                                                        26.1 25.9 25.2 23.0 21.9 28.0 21.2 19.4                                       h 25 20.3 18.9 in.7 18.4 17.6 18.7 18.7 20.1 22.0 23.8 25.4 26.9 28.2 29.1 29.8 30.3 30.4 30.2 29.1 28.2 26.8 25.6 24.4 23.7 24.4                                                                 p 26 23.3 22.4 21.9 21.7 20.6 20.3 20.3 20.9 21.2 20.7 18.9 20.6 22.8 24.3 24.4 24.3 25.1 26.1 25.8 24.1 23.4 21.6 19.6 19.4 22.2
                                                   ??  19.1 20.3 19.5 18.1 17.9 17.6 16.9 17.3 17.7 18.6 28.9 25.9.2$.9 25.9 27.1 27.2 26.1 26.6 26,9 24.8 23.4 21.6 20.1 19.7 21.9                                                                @

28 18.9 18.7 18.5 18.0 17.2 16.9 17.4 18.8 20.5 20.9 21.6 25.1 25.4 26.8 26.8 26.9 27.4 2 7. f, 26.3 25.5 24.4 24.1 22.6 22.9 22.5 9 29 22.6 22.3 21.9 20.0 20.1 19.9 20.4 20.9 21.9 21.1 24.4 27.8 28.9 29.9 30.1 30.0 30.2 29.4 29.3 27.3 26.3 24.9 23.4 24.6 25.1 pl 30 21.4 23.2 21.4 17.9 16.4 15.4 15.7 17.1 17.7 18.8 20.6 21.3 22.3 23.8 24.7 25.1 25.7 26.2 25.4 23.0 21.2 19.6 18.6 18.3 20.9 Z 31 17.9 16.4 16.1 14.6 15.0 14.4 14.8 16.1 18.6 20.9 22.3 22.6 22.2 19.9 18.0 15.0 16.3 18.6 18.5 17.8 17.6 1J.1 15.6 16.5 17.6 g OUMLT gg Es4 14.9 14.4 13.6 12.7 12.1 12.0 12.0 13.1 15.2 16.9 18.2 19.8 20.6 21.2 28.5 21.4 21.6 22.1 21.6 20.4 19.0 17.5 16.3 15.9 g

                                                  ..................................................................................................................................

MANIMUMa 30.4 MINIMHun 3.3 mFAN e 17.21 736 VALID OBSERVAT10NS ( 98.9%) DAll.Y FF fMEME 57 Af tSTICS

                                                                   .....................................................................................................

DA7 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 MAX 20.2 25.4 25.6 26.3 27.7 26.9 16.0 15.5 19.8 27.3 15.4 18.4 17.8 21.9 22.5 Mth 9.5 7.0 11.8 8.8 10.5 11.0 8.9 1.3 3.7 81.6 8.1 10.2 8.9 7.3 8.7

                                                                   .....................................................................................................

DAY 16 17 18 19 20 21 22 23 24 2b 26 27 28 29 30 31 NAR 18.5 17.5 14.1 18.6 20.9 24.3 25.1 24.8 26.1 30.4 26.1 27.2 27.6 30.2 26.2 22.6 mlh 10.7 10.4 10.2 11.5 12.1 9.6 9.6 10.7 14.1 17.6 18.9 16.9 16.9 19.9 15.4 14.4

                                                                   .....................................................................................................

MAXIMHM NEANm 22.79 NIkIMH4 NFANs 11, _ _ _ _ _ _ _ . _ . . _ _ _ _ _ _ _ _ _ _ _ _ __ __ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

                                                                                                                                                                                 - - - - - -          --        - - - - - - - - - - - - - - -           ---         - - - - - - - - - - - - -
 ..                   ..      .      .. . - . .. .             . . - . ..              .        ..

35 FT AEBIf27 TEKPL2ATUIE (DLG C) COOPER NUCLEAR STAfl04 ME7FOROLOGICAL DATA JUNE 1900

                           .................................................................................................................w................

HOUk

                                  .......................................................................................................................

I 4 5 6 7 8 9 10 11 12 13 14 35 16 17 18 19 20 21 22 DAILV 23 MFAh

                           ..................................................................................................................................

DAT C 2 3 I 17.1 18.2 87.A 16.4 16.4 16.1 16.6 17.9 18.2 18.9 19.5 20.9 28.8 27.1 21.3 23.0 24.4 74.4 24.2 21.9 72.1 28.5 20.e 20.2 20.1 2 20.3 19.8 19,6 19.9 10.7 16.9 16.7 16.9 17.9 19.5 21.3 24.0 25.0 26.2 75.7 25.1 24.5 25.4 24.6 23.7 20.9 18.7 17.1 19.0 71.1 3 18.4 17.9 17.2 16.0 16.2 15.8 15.6 17.0 17.9 21.9 23.1 24.3 25.7 26.9 27.1 26.9 27.4 27.1 26.9 26.4 24.3 23.2 23.5 21.5 22.8 4 22.5 22.5 20.8 17.1 18.3 14.9 19.5 19.2 19.7 20.8 22.1 22.8 22.6 21.9 25.3 27.6 29.1 28.4 28.3 27.4 26.5 26.0 24.8 24.1 23.2 I 5 23.9 27.4 21.5 21.5 21.5 21.9 22.6 23.5 24.4 26.8 27.7 29.5 30.3 31.0 31.9 32.3 32.2 32.1 31.7 38.0 29.6 20.3 27.1 26.3 27.8 > , 6 75.6 25.2 74.9 24.s 23.8 23.6 23.5 24.2 25.2 26.7 27.6 20.4 29.4 30.3 30.0 30.3 30.3 30.2 30.0 29.0 2s.6 28.4 27.8 27.7 27.3 N 7 27.2 26.2 25.7 25.2 24.2 21.5 23.4 23.6 23.2 23.9 25.4 26.6 26.4 26.6 26.2 26.1 24.2 23.5 23.0 22.2 21.1 19.2 17.6 17.4 23.n I P 16,4 15.7 34.7 11.1 12.7 12.5 12.1 13.2 14.7 16.5 17.5 17.6 19.3 20.4 21.2 20.9 20.7 22.5 21.6 20.8 19.6 18.3 15.1 15.2 17.1 9 17.1 17.4 17.6 16.1 14.9 14.1 15.1 17.1 19.1 20.4 22.3 23.6 24.4 25.4 26.0 25.6 25.8 26.7 26.4 24.1 20.7 19.3 17.1 16.9 20.5 10 17.3 15.9 14.6 13.6 13.8 12.2 13.0 17.1 20.2 22.7 25.2 26.9 28.5 28.5 29.8 29.2 29.4 28.1 20.1 26.7 25.3 22.5 20.0 21.0 22.1 0 11 20.6 19.3 17.4 17.2 16.3 15.0 15.4 17.1 19.2 28.4 73.0 26.7 28.2 20.7 29.3 29.5 79.1 28.8 27.9 26.6 74.6 23.1 23.s 21.9 22.9 Z 12 28.6 20.0 20.2 18.9 14.3 19.8 19.e 20.6 22.2 22.6 73.8 26.2 27.A 27.R 28.6 29.0 20.7 20.9 29.1 29.2 28.1 27.9 27.8 25.9 24.7 m 33 22.7 22.1 22.3 22.9 24.6 25.9 27.0 29.4 38.1 33.9 32.6 13.1 32.8 11.4 32.0 31.s 30.3 28.8 27.9 27.6 70.6 g to 26.8 26.4 25.7 24.4 23.4 22.0 22.2 73.5 25.2 26.a 29.2 30.2 10.8 31.7 32.6 33.4 12.9 33.4 32.9 31.8 30.1 28.8 78.8 27.6 78.3 15 27.1 25.0 20.9 19.9 20.5 20.4 20.4 27.1 23.3 26.6 29.3 28.4 30.3 29.2 27.9 27.4 27.2 26.2 73.9 28.5 89.2 18.8 19.1 17.6 23.8 4

                                                                                                                                                                                                                                                                                              -

l 16 17.2 17.2 17.0 16.9 16.9 16.1 85.7 18.1 87.9 19.2 19.4 21.3 24.7 25.4 26.1 26.7 26.6 25.3 23.2 21.9 20.6 19.I 18.2 18.3 70.3 13 l 17 18.3 17.6 16.0 16.0 15.4 14.6 14.7 16.6 17.0 20.2 23.1 76.6 28.3 30.9 27.9 29.5 27.7 27.7 26.5 74.9 22.6 21.1 19.7 19.0 2t.a C) ! 1R 19.2 17.9 17.6 17.2 16.8 16.4 17 9 20.7 22.7 23.9 25.6 27.7 29.7 29.4 29.9 30.6 30.2 28.1 49.4 20.2 19.9 19.8 19.6 20.1 72.5 2 3= 19 22.1 20.2 19.0 18.5 te.1 1a.4 18.6 37.6 16.6 16.9 19.e 19.1 20.1 27.1 21.0 19.9 24.4 23.9 21.3 20.5 19.0 17.8 16.& 36.1 19.5 1 j, 20 14.7 44.3 14 t 13.9 13.9 14.1 14.6 14.6 15.t 15.5 15.6 16.6 17.6 to.e 19.9 21.0 21.1 21.s 21.s 20.0 to.2 16.1 16.2 16.3 16.9 g l co 2 8 16.1 16.2 15.9 15.7 13.5 11.4 13.7 15.6 17.1 20.6 23.7 25.3 26.6 25.6 27.7 27.9 27.7 27.m 27.3 26.2 23.9 28.9 20.7 20.0 21.3 E 72 19.3 19.4 17.4 17.2 16.5 17.5 17.4 17.3 17.0 19.3 22.4 27.4 30.1 10.4 30,7 27.7 24.2 19.A 74.4 22.4 20.9 20.) 20.1 19.1 21.% 2 23 19.0 14.8 18.7 18.0 17.2 17.4 17.e 19.7 19.4 28.1 22.1 22.4 26.3 30.5 30.8 30.3 29.3 29.1 26.7 75.9 22.4 21.3 20.2 19.9 22.6 74 19.6 19.1 10.4 17.9 17.9 17.9 18.4 20.1 22.2 24.3 25.9 26.8 27.9 28.7 29.3 30.3 29.9 29.1 29.0 27.6 25.6 24.2 23.3 21.3 24.0 25 23.1 22.7 22.1 21.5 21.2 20.7 21.6 24.0 24.3 27.3 31.6 31.3 32.7 32.2 30.3 30.4 31.1 31.2 31.1 30.2 79.2 28.3 27.4 26.3 77.5 I 76 26.3 25.2 24.4 23.3 24.1 23.4 23.1 24.4 26.1 29.2 29.9 30.0 32.5 !).O 34.8 34.0 34.9 32.0 32.3 31.5 29.9 28.5 26.7 26.6 28.7 Ul 27 75.4 26.2 76.5 26.1 26.2 25.) 25.4 26.4 27.1 29.2 31.1 32.9 34.0 36 n 38.5 39.7 39.1 39.2 37.3 35.3 31.9 32.5 31.3 7e.7 31.5 O 28 27.6 26.8 25.8 24.8 23.8 23.6 23.2 23.e 24.4 24.s 25.0 26.5 28.0 29.0 30.3 10.7 30.6 38.1 30.2 78.3 27.1 26.1 24.6 19.7 26.5' g 79 88.3 17.6 15.P $5.3 14.6 19.9 18.6 21.1 23.2 24.1 75.3 25.5 26.8 27.7 27,9 27.7 27.9 29.3 28.9 26.7 25.8 23.8 23.5 22.0 21.2 30 20.6 19.4 19.9 10.1 17.2 18.3 18.1 20.4 22.4 23.3 24.7 25.7 26.9 27.2 27.3 27.6 28.9 31.1 30.8 30.1 79.1 27.7 77.5 27.7 24.5 Z 00 PLY O EaN 21.0 20.4 19.6 19.7 18.5 10.4 le.6 19.A 20.9 22.6 24.2 25.7 27.1 29.0 20.3 29.5 28.4 28.2 27.4 76.3 24.7 23.4 22.4 23.8 Rl

                            ..................................................................................................................................

MEAN a 21.47 E MAXIMuMa 39.7 MIMisUMs 12.1 716 VALID ORSEHVATIONS ( 99.4%) l AII.Y EtTREME ST*TISTICS

                                                       .....................................................................................................

2 3 4 5 6 7 8 9 to la 12 13 14 85 DA7 8 MAX 24.4 26.2 27.4 29.1 32.3 30.9 27.2 22.5 26.7 29.4 29.5 29.2 33.4 33.4 30.3 MIN 16.1 16.7 15.6 17.1 23.5 23.5 17.4 12.1 14.1 12.2 15.4 10.3 22.3 22.2 17.6

                                                       .....................................................................................................                  26             27     20        29                              30 DAY                36      17      18       19       20     21        22      23       24            25 MAX  26.7               30.9     30.6     24.4     21.9   27.9     30.7     30.0    30.3       32.7              34.9    39.7            31.5      29.3                      31.1 MIN  15.7               14.6     $6.4     16.1     13.9   l).4     16.5     17.2    17.9       70.7              23.1   25.3             19.7      14.6                      17.2
                                                       .....................................................................................................

MAXIMUM uEAha 79.48 M I p l MitM MLANs 17 _ _ _ _ _ _ _ _ - - _ _ _ _ . _ - _ _ _ _ _ _ ~ _ _ . - -

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                  .          O.

A-54

HAZLETON CNVIRONM2NTAL CCII-lNCOO APPENDIX B Joint Frequency Tables 8-1

_ _ _ _ _ _ - _ _ _ _ _ _ _ _ HAZLETON ENVIRONM~NTAL CCI NC']] _ TABLE OF CONTENTS Page Definitions ........................................................... B-3 Arrangement of Da ta Analys i s Tabl es . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . B-4 l I l

                                                                                                                                   !

{ ! l B-2

HAELET!ZN CNVIRONMTINTAl. CCCNC2O Definitions The tables presented in this Appendix are results obtained from asiolysis of the hourly monitoring data presented in Appendix A. The joint frequency tables represent the frequency of occurrence, expressed as a percentage, that a particular wind speed and wind direction occurred simul-taneously. On a quarterly and semi-annual basis, the joint frequency tables were produced for: wind speed and wind direction for all stability cate-gories; wind speed and wind direction by atmospheric stability corresponding to the seven Pasquill stability classes. Pasquill Stability Classes Temperature Change Stability Classification with Height ('C/100m) Extremely Unstable (EU) <-1.9 Moderately Unstable (MU) -1. 9 t o -1. 7 ' Slightly Unstable (SV) -1. 7 to -1. 5 Neutral (N) -1.5 to -0.5 Slightly Stable (SS) -0. 5 to 1. 5 Moderately Stable (MS) 1.5 to 4.0 1 Extremely Stable (ES) >4.0

                                                               .

B-3

HA2LETON ENVIRONMZNTAL. CCCNC]'3 LIST OF TABLES Title Page Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, January-March 1980, all obser-vations .......................................................... B-8

                                                                                                                                             '

Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, January-March 1980, extremely unstable ......................................................... B-9 Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, January-March 1980, moderately unstable ......................................................... B-10

    .

Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, January-March 1980, slightly unstable ......................................................... B-11 Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, January-March 1980, neutral stability ........................................................ B-12 Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, January-March 1980, slightly stab 1c ........................................................... B-13 Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, January-March 1980, moderately stable ........................................................... B-14 Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, January-March 1980, extremely stable............................................................ B-15 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, January-March 1980, all ob s e rv a t i o n s . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . B-15 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, January-March 1980, extremely unstable ........................................................ B-17 = Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, January-March 1980, moderately unstable ......................................................... B-18 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level,. January-March 1980, slightly unstable ......................................................... B-19 B-4

                                                                                     )

HAZLETON CNVIRONMZNTAL. CCl3NC]"3

                                                                                   .

LIST OF TABLES (Continued) Title Pace Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, January-March 1980, neutral stability ........................................................ B-20 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, January-March 1980, slightly stable ........................................................... B-21 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, January-March 1980, moderately stable ........................................................... B-22 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, January-March 1980, extremely stable ........................................................... B-23 $ Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, April-June 1980, all observations ...... B-24 Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, April-June 1980, extremely unstable ......................................................... B-25 Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, April-June 1980, moderately unstable ......................................................... B-26 Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, April-June 1980, slightly unstable ..... B-27 Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, April-June 1980, neutral stability ..... B-28 Joint frequency of occurrence of wind speed and wind direction I class at the 35-ft level, April-June 1980, slightly stable ....... B-29 Joint frequency of occurrence of wind speed and wind direction  ; class at the 35-ft level, April-June 1980, moderately j stable ........................................................... B-30 Joint frequency of occurrence of wind speed and wind direction class at the 35-ft level, April-June 1980, extremely stable ...... B-31 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, April-June 1980,'all observations ..... B-32 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, April-June 1980, extremely unstable ......................................................... B-33 8-5

HA2LETON ENVI ONMENTAR. SClZNCE 3 l LIST OF TABLES (Continued) Title Page Joint frcquency of occurrence of wind speed and wind direction class at the 318-ft level, April-June 1980, moderately unstable ......................................................... B-34 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, April-June 1980, slightly unstable ......................................................... B-35 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, April-June 1980, neutral stability .... B-36 , Joint frequency of occurrence of wind speed and windd 'irection class at the 318-ft level, April-June 1980, slightly stable ...... B-37 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, April-June 1980, moderately I stable ........................................................... B-38 Joint frequency of occurrence of wind speed and wind direction class at the 318-ft level, April-June 1980, extremely , stable ........................................................... B-39 l l

                                                                                           '

Joint frequency of occurrence of wind speed and wind direction class, 35-f t level , January-June 1980, all observations . . . .. ... . . B-40 Joint frequency of occurrence of wind speed and wind direction class, 35-ft level, January-June 1980, extremely unstable ........ B-41 Joint frequency of occurrence of wind speed and wind direction class, 35-ft level, January-June 1980, moderately unstable ....... B-42 Joint frequency of occurrence of wind speed and wind direction class, 35-ft level, January-June 1980, slightly unstable ......... 2-43 Joint frequency of occurrence of wind speed and wind direction class, 35-f t level , January-June 1980, neutral stability .... . . . . . B-44 Joint frequency of occurrence of wind speed and wind direction class , 35-f t level , January-June 1980, slighty stable . . . . .. . .. .. . B-45 Joint frequency of occurrence of wind speed and wind direction class, 35-ft level , January-June 1980, moderately stable .. . . . .. . . B-46 Joint frequency of occurrence of wind speed and wind direction class, 35-f t level , January-June 1980, extremely stable .. . . . .. . . . B-47 B-6

! HA2LETON CNVIRONMENTAL. SCl~NCE3 LIST OF TABLES (Continued) Title Pace Joiat frequency of occurrence of wind speed and wind direction class, 318-ft level, January-June 1980, all observations ......... B-48 Joint frequency of occurrence of wind speed and wind direction class, 318-ft level, January-June 1980, extremely unstable ....... B-49 Joint frequency of occurrence of wind speed and wind direction class, 318-ft level, January-June 1980, moderately unstable ...... B-50 Joint frequency of occurrence of wind speed and wind direction class, 318-f t level, January-June 1980, slightly unstable ........ B-51 Joint frequency of occurrence of wind speed and wind direction class, 318-ft level, January-June 1980, neutral stability ........ B-52

 ! Joint frequency of occurrence of wind speed and wind direction class, 318-ft level, January-June 1980, slightly stable  .. . .. . . .. B-53 Joint frequency of occurrence of wind speed and wind direction class, 318-ft level, January-June 1980, moderately stable ........ B-54 Joint frequency of occurrence of wind speed and wind direction class, 318-ft level, January-June 1980, extremely stable ......... B-55 I
                                                         .

t 4 I i

                                                                                         .

B-7 _

_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ HAZLETON ENVCONMENTAL. CCENC2']

                                       .

J0 X 4T P REGur:t4CY Of OCCURHENCE Of alNU SPEED (VH) AND *150 OIRECTION CLASS (35 FC ) COOPER NUCLEAR STATION 4ETE0HOLOGICAL DATA JANUARY -

  • ARCH 1940 4LL OBSERVATIONS
 .................................... .... ............ . ............

aIND SPEED (MPH) l al4O ................................................... DINECTI'h 1-4 4-a 8-13 13-19 19 25 25-32 32 39 39 45 >tb TOTAL

                  ............. ............ ...............................

(PERCENTAGE OF VALID DATA) I td 2.57 4.45 4.40 1.43 0.00 0.00 0.00 0.00 0.00 12.85 I I aNE 1.29 2.27 1.68 0.40 0.00 0.00 0.00 0.00 0.00 S.64 9E 0.79 2.42 0.99 0.00 0.00 0.00 0.00 0.00 0.00 4.20 Da6 0.84 1.88 0.64 0.00 0.00 0.00 0.00 0.00 0.00 3.36 t, 0.79 0.79 0.49 0.00 0.00 0.00 0.00 0.00 0.00 2.09 FSE 0.69 2.42 1.24 0.00 0.00 0.00 0.00 0.00 0.00 4.35 j l S *: 1.24 3.31 2.13 0.25 0.00 0.00 0.00 0.00 0.00 6.92 l S.W. 2.03 1.44 1.14 0.49 0.15 0.05 0.00 0.00 0.00 5.34 5 1.99 2.22 2.13 2.27 0.64 0.15 0.00 0.00 0.00 9.39 l 55= 0.9% 1.04 1.33 0.74 0.44 0.20 0.00 0.00 0.00 4.70 l S. 1.19 0.n9 0.79 0.20 0.05 0.00 0.00 0.00 0.00 3.11

      .. S =   0.84      0.H9      1.04      0.30                                           0.00                                       0.00                                             0.00 0.00   0.00  3.0a a     0.54      1.33      0.64      0.15                                            0.05                                       0.00                                            0.00 0.00   0.00  2.72 a rd . 0.99      1.63      1.63      0.54                                            0.05                                       0.00                                            0.00 0.00   0.00  4.84
r.
  • 1.14 2.27 2.o2 0.94 0.20 0.05 0.00 0.00 0.00 7.17
      'a N a   1.83      4.99      3.86      3.16                                           0.44                                       0.00                                             0.00 0.00   0.00 14.29 TOTAL 19.h7 34.31 26.74 10.92                                                           2.03                                       0.44                                             0.00 0.00   0.00 94.12   ,
                                                                                                                                                                                                               !
 ....................................................................                                                                                                                                           j I
                                                                                                                                                                                                                '
              $4AXI40*=         27.6          CAI.M MIND =119(5.88% OF V4 bid DATA)

VAI,1D GeSERVATIONS=2023( 97.7% OF TOTAL) TOTAL, DATA COLLECTED (HOUkS) = 2070 I i B-8 '

                                                 - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

HAZLETON ENVIRONMENTAL CCENCCO JOINT F Cr.G u r.h C) UV OCCONNENCE Of alND SPEED (SPH) AND also DIRECTIO's CLASS (35 F1 ) COOPER huCLEAR STATION METECHOLOGICAL DATA JANUARY *AFCH 1969 EXTREFELY UNSTAubE

 ....................................................................

aIND SPEEQ (MPH) alND ................................................... L!hECT10N 14 4.d 8 13 13 19 19 25 25 32 32 39 39-45 >45 TOTAL

             ..........................................................

(PEHCENTAGE OF VALTD DATA) N 0.30 1.43 1.83 0.44 0.00 0.00 0.00 0.00 0.00 4.00 NNE 0.35 0.40 0.30 0.00 0.00 0.00 0.00 0.00 0.00 1.04 NF 0.25 0.30 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.64 s ENE 0.44 0.25 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.79 E 0.25 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.30 r:S E 0.05 0.4% 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.59 SE 0.05 0.35 0.10 0.15 0.00 0.00 0.00 0.00 0.00 0.64 NSE u.05 0.05 0.10 0.10 0.00 0.00 0.00 0.00 0.00 0.30 6 0.20 0.25 0.15 0.30 0.00 0.00 0.00 0.00 0.00 0.89 l l l SSa u.10 0.05 0.30 0.20 0.15 0.10 0.00 0.00 0.00 0.H9 Sa 0.35 0.10 0.20 0.15 0.05 0.00 0.00 0.00 0.00 0.H4

    .v S e n.30   0.25    0.25    u.05     0.00  0.00  0.00  0.00   0.00   0.84 w  0.15   0.40    0.05    0.00     0.00  0.00   0.00 0.00   0.00   0.59
     .Na   0.05   0.44    0.64    0.30     0.05  0.00   0.00 0.00   0.00   1.4R Nw 0.15   0.h4    1.43    0.40     0.00  0.00   0.00 0.00   0,00   2.A2 NNa    0.15    1.R8   1.68     1.29    0.10  0.00   0.00 0.00   0.00   5.09 TOTAL 3.16     7.46    7.32    3.36     0.35  0.10   0.00 0.00    0.00 21.75
 ....................................................................

CALM WIND = 5( .25% OF VALID DATA)

     ,
      -                                     B-9 h

a

HA2LETON ENVIRONMZNTAL CCl:NCZ] J01NT FRhuuENCY OF OCCLPbE.sCE OF alhD SPEED (*iPH) A:v D wIhD DlHECTION CLASS (35 FT ) COOPER NUCLEAN STATION METE 0HOLOGICAL DATA JANUARY -

                                                  *ANCH 19h0 WODERATELY     UNSTAbLL

.................................................................... dIND SPEED (HPH) 41ND ................................................... D i F FC r it19 1-4 9-4 M-13 13-19 19-25 25-32 32-39 39-45 >45 TUTAL

              ..........................................................

(PERCENTAGE OF VALID DATA) w 0.10 0.49 0.79 0.05 0.00 0.00 0.00 0.00 0.00 1.43 NNF 0.00 0.10 0.20 0.00 0.00 0.00 0.00 0.00 0.00 0.30 NM 0.00 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.10 s ENE 0.00 0.15 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.15 ' E 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0,00 0.15 i E S k. 0.05 0.15 0.20 0.00 0.00 0.00 0.00 0.00 0.00 0.40 SN 0.00 0.10 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.2S SSE 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.05 S 0.00 0.00 0.05 0.10 0.05 0.15 0.00 0.00 0.00 0.35 SS4 0.00 0.00 0.00 0.0S 0.05 0.05 0.00 0.00 0.00 0.15 Sa 0.10 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.25 45= 0.10 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.20

      ,

0.05 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 ANa 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 NW 0.00 0.10 0.05 0.05 0.00 0.00 0.00 0.00 0.00 0.20 AN= 0.05 0.59 0.25 0.35 0.25 0.00 0.00 0.00 0.00 1.48 4 TOTAL 0.49 1.93 1.93 0.64 0.3S 0.20 0.00 0.00 0.00 5.54 .................................................................... I CAbu aINO: 1( .n5% of VALID DATA) B-10

____

f HAZLETON ENVIRONMENTAL CCCNC] ] J01 AT F%uuCeC1 0F 0CCbm t.CE LW *140 8 5'L ED (SPH) ANO *INO DI9EC110r. CLASS (35 FT ) COOPER I.UCLEAR STATI0r. NETEOR0t.UGICAL DATA JANUARY .*4 ARCH 1980 SLIGHTLY Ur* STABLE

   ....................................................................
                                           *IND SPEED (MPH) alND     ...................................................

LIEMCTION 14 4.n H.13 13 14 19 25 25 32 32 39 39-45 >45 TOTAL

                ..........................................................

(PERCENTAGE OF VALID DATA) N 0.05 0.44 0.64 6.05 0.00 0.00 0.00 0.00 0.00 1.19 NNE 0.05 0.00 0.35 0.10 0.00 0.00 0.00 0.00 0.00 0.40 NE 0.05 0.20 0.20 0.01 0.00 0.00 0.00 0.00 0.00 0.44 ENE 0.lb 0.30 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.44 t E 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 FSF 0.05 0.25 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.30 58 0.00 0.15 0.15 0.05 0.00 0.00 0.00 0.00 0.00 0.35 3SE 0.00 0.00 0.10 0.00 0.00 0.C0 0.00 0.00 0.00 0.10 S 0.10 0.05 0.25 0.20 0.15 0.00 0.00 0.00 0.00 0.74 SS* 0.10 0.05 0.15 0.05 0.05 0.05 0.00 0.00 0.00 0.44 Sa 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 WSw 0.10 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.25

  • 0.05 0.00 0.05 0.00 0.05 0.00 0.00 0.00 0.00 0.15
       .Nm    0.05    0.05      0.00     0.00     0.00      0.00     0.00  0.00   0.00  0.10   l Na   0.00    0.15      0.1S     0.05     0.00      0.0S     0.00  0.00   0.00  0.40 NNa    0.00    0.49      0.20     0.30     0.05      0.00     0.00  0.00   0.00  1.04 TOTAL 0.74      2.42      2.27     0.69      0.30     0.10     0.00  0.00   0.00  6.52
   ....................................................................

CALM wtan: 2( .10% OF VALID DATA) B-11 _

HAZLETON ENVIRONMENTAL CCCNCZ'] JOINT FRE00ENCY IIF GCCURHr.'NCE OF v1ND SPEEb (*PH) A '4 D alND DIRECTION CLASS (35 FT ) COOPEH NUCLLAH STATION METE 0kubuGICAL DATA JANUARY - MAHCH 1980 NEUTPAL

  ....................................................................

WINO SPEED (MPH)

        *INO       ...................................................

DIRECTIO4 1-4 4-o b-13 13-19 19-25 25-32 32 39 39-45

                                             '
                                                                                       >45  TOTAL
                  ..........................................................

(PERCENTAGE OF VALID DATA) F4 1.83 2.03 1.09 0.89 0.00 0.00 0.00 0.00 0.00 5.83 NNE 0.59 1.73 0.e4 0.40 0.00 0.00 0.00 0.00 0.00 3.56 NE 0.49 1,68 0.59 0.00 0.00 0.00 0.00 0.00 0.00 2.97

                                                                                                  '

ENE 0.10 1.09 0.54 0.00 0.00 0.00 0.00 0.00 0.00 1.73 E 0.40 0.41 0.44 0.00 0.00 0.00 0.00 0.00 0.00 1.29 FSE 0.40 0.99 0.89 0.00 0.00 0.00 0.00 0.00 0.00 2.27 SF 0.10 1.7) 1.14 0.00 0.00 0.00 0.00 0.00 0.00 3.02 SSE 0.44 0.59 0.40 0.35 0.15 0.00 0.00 0.00 0.00 1.93 S 0.44 0.35 0.89 1.04 U.40 0.00 0.00 0.00 0.00 3.11 554 0.35 0.4> 0.54 0.25 0.15 0.00 0.00 0.00 0.00 1.7R 3= 0.35 0.30 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.70 aSa 0.20 0.20 0.15 0.05 0.00 0.00 0.00 0.00 0.00 0.59

  • 0.15 0.30 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.59
       'da a       0.49      0.49      0.59       U.25     0.00      0.00     0.00  0.00   0.00  1.83 Na    0.54      0.64      0.59       0.49     0.20      0.00     0.00  0.00   0.00  2.47 NNa     1.04      1.6d      1.oH        1.24    0.05      0.00     0.00  0.00   0.00  5.68 TOTab 1.91 14.93 10.63                  5.04      0.94      0.00     0.00  0.00   0.00 39.45
 ....................................................................

CALM WIND: 31(1.53% OF VALID DATA) I , l B-12 l

  .

_ l l HAZLETON ENVIAONMENTAL CCCNCEJ JOINf FAE00ENCY OF GCCURR>.NCE OF mI4D SPEED (NPH) AND =IND DIFECTI0t. CLASS (35 FT ) CCOPER NOCLEAH ST A T lut. fiETEORuf,0GICAL DATA JANUARY -

  • ARCH 1980 SLIGHTLY STABLE
 ....................................................................

MIND SPELO (wPh) aIND ................................................... l LIHFCTlum 1-4 4-d 8-13 13 19 19-25 25-37 32 39 39 45 >45 TOTAL

                  ..........................................................

l (PEHCENTAGE nF VALID DATA) L N 0.25 0.05 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.35 N f* E 0.20 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.25 AE 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.05 FfsF 0.15 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.25 . E 0.10 0.05 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.20 , FSE 0.10 0.35 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.49 l SF 0.44 0.64 0.54 0.00 0.00 0.00 0.00 0.00 0.00 1.63 SSE 0.49 0.69 0.49 0.0S 0.00 0.05 0.00 0.00 0.00 1.78 5 0.69 1.14 0.79 0.64 0.0S 0.00 0.00 0.00 0.00 3.31 S S '. 0.15 0.35 0.25 0.20 0.05 0.00 0.00 0.00 0.00 0.99 Sw 0.30 0.35 0.30 0.00 0.00 0.00 0.00 0.00 0.00 0.94 aSa 0.05 0.35 0.44 0.20 0.00 0.00 0.00 0.00 0.00 1.04 a 0.05 0.35 0.44 0.10 0.00 0.00 0.00 0.00 0.00 0.94 3da 0.25 0.40 0.40 0.00 0.00 0.00 0.00 0.00 0.00 1.04 Nw 0.30 0.54 0.40 0.00 0.00 0.00 0.00 0.00 0.00 1.24 fili a 0.54 0.35 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.94' l ( tnt 4L 4.05 5.74 4.25 1.19 0.10 0.05 0.00 0.00 0.00 15.42

  ....................................................................

CALM WIND: 28(1.3d1 UF WALID DATA) r , B-13 t

                       \,                                                                          _ _ _ _ _ _ _ _
                                                                                           -

HAZLETON ENVIRONMENTAL CCENCZJ JOIST FwFullEtaCY OF GCCbkwEr.CE Of aING SPEED (*PH) AND = 11411 01HECT10N CLASS (35 FT ) COOPEP NUCLF.AR STATION MET 60kULU(;1 CAL DATA JANbAHY - 'd A N C H 1980 MODEPATEI,Y STAdL6

 ....................................................................

aIND SPF.ED (MPH)

  • I.8 D ................................................... TOTAL GIkTCTION 14 40 8 13 13 19 19 25 25 32 32 39 39 45 >45
                ..........................................................

(PERCE4fAGE OF VALID DATA) 0.00 0.00 0.00 0.00 0.00 0.0u 0.00 N 0.00 0.00 0.00 i NhE 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 NC 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 tt5 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ( E 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.0c 0.00 0.05 c:S E 0.05 0.25 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.30 SF 0.40 0.25 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.69 S58 0.54 0.05 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.64 5 0.40 0.49 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.79 SSa 0.20 0.10 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.40 Sa 0.10 0.00 0.10 0,00 0.00 0.00 0.00 0.00 0.00 0.20 aSa 0.10 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.15

         =     0.10    0.25   0.00     0.00   0.00       0.00     0.00  0.00   0.00  0.35
         ,44   0.15    0.25    0.00    0.00   0.00       0.00     0.00  0.00   0.00  0.40' na    0.15    0.00    0.00    0.00    0.00      0.00     0.00  0.00   0.00  0.15
   .

N h 'a 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 TOTAL 2.27 1.54 0.35 0.00 0.00 0.00 0.00 0.00 0.00 4.20

  ....................................................................

CALM aIND: 27(1.33% OF VALID DATA) i B-14 l

HAZLETON ENVIZONMENTAL CCENCD3 JOINT FRF.GUENCY OF OCCUPPENCE OF n1:4D SPEED (SPH) ANO WIND DIRECTIUS CLASS (35 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY .

  • ARCH 19AO EXTHEPFLY STABLE
 ....................................................................

a190 SPEED (idPH) atND ................................................... b 1 P EC T 10 fe 14 48 8 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

                ..........................................................

(PEHCENTAGE OF VALID DATA) , h 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 u.05 NNF 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 NE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ' ENE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 E 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 t FSE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 SE 0.25 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.35 i i SSE 0.49 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.54 i 5 0.15 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.20 SSi 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.05 Sm 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 e S 'a 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00

    ,

a u.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 u.00 0.00 ana 0.00 0 . (' O 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 Na 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 te N W 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.05 TOTAL 1.04 0.20 0.00 0.00 0.00 0.00 0.00 0.00 0.00 1.24

 ....................................................................

CAL > =INO: 25(1.24% OF WALID DATA) B-15

_ _ _ _ _ _ _ _ _ _ _ _ _

                                                                            --_-

HAZLETON ENVIRONMZNTAL CCIZNCO:3 JOISI F84.00EhCY OF HCCUk9ENCE OF WIND SPEE0 (*PH) AND WIND DIRECTION CLASS (318 FT ) l l C00FFH NUCLEAk STATIO4 .4ETEOH0bOGICAL DATA I l

                                 . JANUARY -
  • ARCH 1990 )

ALL UbSEbVAfl0d5 ............--......--...................--.........................

                                     ,ING SPEED (upg)
   'T    D     ...................................................

OlwEcr100 1-4 4.a n-13 13-19 19-25 25-32 32-39 19-45 >45 TOTAL

               ................--...............--.......................

(PEHCF.NTAGE OF VAI.TD DATA)

    ..      u.34    1.o3   3.oo    3.30 1.73 0.58 0.00 0.00                                  0.00 11.29 4*h      0.24    0.uS   2.16    2.64                         0.82  0.36       0.00 0.00   0.00   7.11
r. E 0.29 0.49 1.54 1.01 0.19 0.05 0.00 0.00 0.00 3.Se
                                                                                                         <

voE 0.51 0.72 1.20 1.11 0.19 0.00 0.00 0.00 0.00 3.75 E 0.'34 0.9e 0.o2 1.35 0.38 0.00 0.09 0.00 0.00 3.84 VSE 0.24 2.16 2.11 1.49 0.24 0.05 0.00 0.00 0.00 6.30 SE 0.00 0.59 1.83 2.31 0.77 0.05 0.00 0.00 0.00 5.S3 I SS r: 4.05 0.H2 1.S9 1.49 0.86 0.24 0.05 0.00 0.00 5.09 5 0.14 0.3H 1.59 2.45 1.87 1.92 0.19 0.00 0.00 d.S5 SSv 0.43 0.77 1.35 1.bd 0.82 0.72 0.05 0.00 0.00 5.81 Sa 0.59 1.01 0.91 1.01 0.34 0.05 0.00 0.00 0.00 3.49 vSa 0. 44 1.00 0.67 0.72 0.10 0.05 0.00 0.00 0.00 3.08 v 0.5H 0.82 0.91 0.58 0.14 0.14 0.00 0.00 0.00 3.17 dN4 0.43 1.01 1.00 1.39 0.72 3.38 0.05 0.00 0.00 5.05 Ha 0.14 1.11 2.21 2.11 1.83 0.Sd 0.43 0.00 0.00 d.41 Ni

  • 0.72 2.11 3.60 3.H4 2.07 1.59 0.24 0.00 0.00 14.18 10TLL S.57 16.4H 27.15 28.54 13.07 o.78 1.01 0.00 0.00 98.01

............--......................--........--.................... dAXIMuu: 36.0 CALM alhD: 29(1.39% OF VALIn DATA) VALID UBSERVAT10NS=20H1( 97.d4 0F TOTAL) TOTAL DATA CubLFCTED CHOURS) = 2132 l

                                                                                                           .

B-16

_ __ HAZLETON CNVIRONMZNTAL CCIENC3 JOINT FWEQUKNCY OF GCCURRENCE OF 4140 SPEED (*pH) ADD WI!*n DIRECTION CLASS (318 FT ) COUPER NilCLEAR STATIOS METEOPOLOGICAL DATA i

                                                                                                      '

JAdOANY ~ ** A N C H 1980 EXTHESEbY UNSTA6LC

   ....................................................................
                                                  *IMD SPEED (MPH)
         *IND         ...................................................

01k EC f l0a 14 4-8 6 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

                      ..........................................................

(PEHCENTAGE OF VALIO DATA)  ; i .4 0.19 0.34 1.44 1.30 0.62 0.05 0.00 0.00 0.00 3.94 ' I

         *NF    0.10         0.24      0.53      0.77     0.00       0.00     0.00 0.00   0.00   1.63 l I

N8 0.10 0.19 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.3H ' Mf4 E 0.19 0.05 0.24 0.05 0.00 0.00 0.00 0.00 0.00 0.53 E 0.29 0.02 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.91 KSE 0.05 0.3H 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.58 SE 0.00 0.05 0.24 0.10 0.10 0.05 0.00 0.00 0.00 0.53

SSE 0.00 0.14 0.14 0.05 0.05 0.10 0.00 0.00 0.00 0.48 S 0.00 0.05 0.19 0.10 0.14 0.00 0.00 0.00 0.00 0.4H SSa 0.14 0.10 0.19 0.24 0.14 0.19 0.00 0.00 0.00 1.01 54 0.2% 0.00 0.00 0.10 0.05 0.05 0.00 0.00 0.00 0.43

        =Sa     0.10        0.34      0.14      0.14      0.00       0.00     0.00 0.00   0.00   0.72 w    0.29        0.43      0.14      0.05      0.05       0.00     0.00 0.00   0.00   0.96 l
        . rd a  0.14        0.19      0.29      0.43      0.24       0.10     0.00 0.00   0.00   1.39 l Hw   0.00        0.34      0.96      0.4H      0.77       0,14     0.00 0.00   0.00   2.74 NNa     0.14        0.5A      1.49      1.35      1.11       0.29     0.00 0.00   0.00   4.95 TOTAL 1.97            4.0d      b.20      5.19      3.27       0.96     u.00 0.00   0.00 21.67
   ....................................................................

CALM a l .10 s 7( .34% Of VALID DATA) B-17

HAZLETON ENVIRONMINTAL CCl3NC2O

                .101 !.T F4EqudNCY 0F GCCl>HkC.CE OF 414D SPEED (wpH)

A 40 a t ten 01MECTIUn CLASS (31b FT ) C00PEH nUCI, EAR STATION ;d E T EO R O T,0 G I C A I, DATA

                                      .1 A N U A H Y - :eARCn 1980 MODEHATELY         UNSTABLE
 ....................................--..............................

nIflD SPEED (HPM) 14D ................................................... O t h rC rIn. 1-4 49 d-13 13 19 10 25 25 32 32-39 19 45 >45 TOT A I.

                .......................................--.................

(PERCENTAGE OF VAL 10 DATA) N 0.00 0.00 0.S) 0.67 0.14 0.05 0.00 0.00 0.00 1.39 h r' E 0.05 0.05 0.10 0.38 0.14 0.00 0.00 0.00 0.00 0.72

        .4 E  0.05    0.00     0.00     0.05      0.00    0.00       0.00         0.00   0.'00  0.10 t

P.E 0.00 0.05 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.10 E 0.00 0.14 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.14 ESE 0.00 0.34 0.29 0.05 0.00 0.00 0.00 0.00 0.00 0.67 SE 0.00 0.00 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.05 SSE 0.05 0.00 0.00 0.05 0.05 0.00 0.00 0.00 0.00 0.14 S 0.00 0.00 0.05 0.05 0.10 0.19 0.00 0.00 0.00 0.38 SSa 0.00 0.00 0.00 0.00 0.05 0.05 0.00 0.00 0.00 0.10 S4 0.10 0.05 0.00 0.14 0.05 0.00 0.00 0.00 0.00 0.34 aSe 0.05 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.10

         . 0.10    0.0S     0.00     0.00      0.00    0.00        0.00        0.00   0.00   0.14
      .N'a    0.00    0.00     0.00     0.00      0.00    0.00        0.00        0.00   0.00   0.00 Na    0.00    0.05     U.10     0.00      0.00    0.05        0.00        0.00   0.00   0.19 l

via 0.00 0.10 0.24 0.34 0.10 0.14 0.19 0.00 0.00 1.11 INTAL 0.34 0.82 1.34 1.78 0.o2 0.48 0.19 0.00 0.00 5.67

 .......................--...........................................

CALM 'a I N D : O( 004 Of VALID DATA) l t ! ! ,

                                                                                                        -

B-18

                                                                               - - - _ _ - _ _ _ _ __

HAZLETON ENVIRENMZNTAL CCl3NCZL3 JOI4T FREOUKnCY OF OCCUW E1CE Of *IND SPEED (MPH) A *4 0 WINO DIdECTION CLASS (318 FT ) C00 PEP NOCLEAN STATION

  • METEOROLOGICAL DATA JANUAdY - *AdCH 1980 SLIGHTLY 04 STABLE
  ....................................................................

dIND SPEED (MPH)

      *tND     ...................................................

UlkECTION 1-4 4-4 H-13 13-19 19-25 25-32 32 39 39 45 >45 TOTAL

              ..........................................................

(PERCENTAGE OF VALID DATA) H 0.00 0.10 0.24 0.19 0.14 0.05 0.00 0.00 0.00 0.72 NNE 0.00 0.00 0.14 0.58 0.14 0.00 0.00 0.00 0.00 0.91 nK 0.00 0.05 0.10 0.19 0.00 0.00 0.00 0.00 0.00 0.34 l ENE 0.00 0.05 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.19 K 0.00 0.00 0.19 0.05 0.00 0.00 0.00 0.00 0.00 0.24 ESE 0.05 0.24 0.24 0.00 0.00 0.10 0.00 0.00 0.00 0.62 SK 0.00 0.00 0.05 0.19 0.09 0.00 0.00 0.00 0.00 0.24 SSR 0.00 0.00 0.14 0.00 0.00 0.00 0.00 0.00 0.00 0.14 5 0.00 0.00 0.00 0.24 0.29 0.05 0.00 0.00 0.00 0.58 554 0.00 0.10 0.05 v.19 0.19 0.05 0.00 0.00 0.00 0.53 SW 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.14 aS4 0.10 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.24 4 0.00 0.00 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.05 ANa 0.00 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.05 Nd J.00 0.05 0.10 0.00 0.10 0.05 0.19 0.00 0.00 0.49 NN* 0.00 0.10 0.34 U.43 0.10 0.10 0.00 0.00 0.00 1.05 TOTAL 0.19 0.86 1.7A 2.31 0.91 0.29 0.19 0.00 0.00 h.54

 ....................................................................

CALM 'w t r4 0 = 1( .064 OF VALIO DATA) B-19

HAZLETON CNVIRONMZNTAL CCCNC]'3 J01 tit FWEvue NCY OF UCCURHt:.dCE OF dIND SPEED (MPH) AND WIND 014 EC T I O'e CLASS (318 FT ) COOPER NUCLEAR STATI0f. METEOROLOGICAL DATA

                                        . sand 4kY - 9AnC4 19b0 N>llTHAL
 ....................................................................

wl4D SPEED (MPH)

      *110       ...................................................

DIhEC110N 1-4 49 H.13 13 19 19-25 25-32 32-39 39-45 >45 TOTAL

                ...........................--.............................

(PERCENTAGE OF VALID DATA) N 0.10 0.82 1.35 1.06 0.82 0.43 0.00 0.00 0.00 4.57

      .NE    0.00      0.53     1.30     0.91      0.53     0. 38     0.00 0.00   0.00  3.65 NE    0.10      0.24     1.35     0.72      0.19     0.05      0.00 0.00   0.00  2.64 ENE    0.29      0.3R     0.67      0.86     0.19     0.00      0.00 0.00   0.00  2.40 E     0.00      0.10     0.4H      1.30     0.38     0.00      0.00 0,00   0.00  2.26 ESF    0.00      0.58     1.01      0.91     0.10     0.00      0.00 0.00   0.00  2.59 )

SE 0.00 0.34 1.25 1.20 0.19 0.00 0.00 0.00 0.00 2.9H SSE 0.00 0.34 0.3H 0.30 0.19 0.14 0.05 0.00 0.00 1.49 5 0.19 0.14 0.48 0.34 0.48 1.20 0.19 0.00 0.00 2.93 SSa 0.10 0.29 0.67 0.34 0.38 0.29 0.00 0.00 0.00 2.07 Sa 0.10 0.19 0.14 0.24 0.00 0.00 0.00 0.00 0.00 0.72 aSa 0.14 0.19 0.14 0.00 0.00 0.00 0.00 0.00 0.00 0.53 a 0.19 0.10 0.4H 0.10 0.05 0.00 0.00 0.00 0.00 0.91

      .N. 0.24      0.14     0.24      0.51     0.34      0.24     0.05 0.00   0.00  1.78 Na    0.10      0.24     0.77      0.72     0.53      0.34     0.24 0.00   0.00  2.9)

NNa 0.24 0.62 1.15 1.39 0.72 1.00 0.05 0.00 0.00 5.24 T0f40 1.oA S.24 11.92 11.05 5.09 4.13 u.5a 0.00 0.00 39.o9

 ...............................................................----.

CALM .IND: 13( .62% OF VALID DATA) B-20 -

__

                                                           .    .   .
                                                                                 .

HAZLETON CNVIRONM3NTAL CCIENCCO J01Nr FREQUtNCY UF GCCUPHEldCE OF aIND SPEED (MPH) A N D w ih D 01 H r:CT 10r. C L A S S (318 FT )

                                                                                                  -

COOPEH !JUCLEAR SrATIUh METE 0HOLOGICAL DATA JANUARY -

  • ARCH 1980 SLIGHTLY STABLE
      ....................................................................

aIND SPEED (MPH)

           "l%U      .............................:. ...................

01 k rCT I 01 1-4 4-d H-13 13-19 19-25 25 32 32 39 39 45 >45 TUTAL

                     ..........................................................

(PERCEhTAGE OF VALID DATA) i N 0.00 0.19 0.00 0.14 0.00 0.00 0.00 0.00 0.00 0.34 1 N e' O.05 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.10 NE 0.05 0.00 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.10 EVE 0.00 0.10 0.19 0.10 0.00 0.00 0.00 0.00 0.00 0.30 E 0.00 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.14 ESE 0.14 0.24 0.24 0.14 0.10 0.05 0.00 0.00 0.00 0.91 SE 0.00 0.19 0.29 0.3H 0.34 0.00 0.00 0.00 0.00 1.20 SSE 0.00 0.19 0.48 0.67 0.43 0.00 0.00 0.00 0.00 1.78 S 0.05 0.00 0.43 1.39 0.82 0.48 0.00 0.00 0.00 3.17 SSa 0.05 0.19 0.10 0.38 0.10 0.14 0.05 0.00 0.00 1.01 Sa 0.05 0.14 0.48 0.34 0.14 0.00 0.00 0.00 0.00 1.15 l

           =Sn     0.05    0.24      0.19     0.5A      0.10      0.05    0.00  0.00   0.00  1.20 a     0.00    0.14      0.05     0.34      0.05      0.14    0.00  0.00   0.00  0.72 ana     0.00    0.53      0.38     0.24      0.14      0.05    0.00  0.00   0.00  1.35 Na    0.05    0.29      0.19     0.91      0.3H      0.00    0.00  0.00   0.00  1.83 NNa     0.10    0.19      0.34     0.34      0.05      0.00    0.00  0.00   0.00  1.01 TOTAL 0.58        2.74       3.46    6.01      2.e4      0.91    0.05  0.00   0.00 16.39   l l
      ....................................................................

CALM WThD: 5( .24% OF VALID NATA)

                                                                      .

B-21

 .
                                                              .

HAZLETON ENVIRONMZNTAL CCINCCO J01NT FWE00GCY OF OCCUhPENCE OF aIND SPEED (*PH) AND *IND 01RECTIOf. CLASS (318 FT ) COOPER NUCLEAR STATION MKTEOROLOGICAL DATA JANllARY - MARCH 1980 M8) DER AT EL Y STA6LM

 ....................................................................

MIND SPEED (*PH)

      .ING      ...................................................

CIHFCTICr4 14 4.s H 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

                ..........................................................

(PERCENTAGE OF VALID DATA) N 0.10 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.19 <

     *NF     0.00      0.00     0.00      0.00      0.00      0.00      0.00  0.00   0.00  0.00 NE    0.00      0.00      0.00     0.00      0.00      0.00      0.00  0.00   0.00  0.00
                                                                                                $

ENE 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.14 E 0.00 0.00 0.0$ 0.00 0.00 0.00 0.00 0.00 0.00 0.uS ESE 0.00 0.14 0.14 0.24 0.05 0.00 0.00 0.00 0.00 0.59 SE 0.00 0.00 0.00 0.29 0.14 0.00 0.00 0.00 0.00 0.43 SSE 0.00 0.00 0.34 U.24 0.10 0.00 0.00 0.00 0.00 0.67 8 0.00 0.0S 0.24 0.29 0.05 0.00 0.00 0.00 0.00 0.o7 SSa 0.10 0.05 0.34 0.48 0.00 0.00 0.00 0.00 0.00 0.96 Sa 0.05 0.24 0.10 0.05 0.10 0.00 0.00 0.00 0.00 0.53

      .S. 0.05      0.05      U 00      0.00      0.00      0.00      0.00 0.00   0.00  0.10 g     0.00      0.10      0.10      0.05      0.00      0.00      0.00 0.00   0.00  0.24
      -N. 0.05      0.10      0.16      0.19      0.00      0.00      0.00 0.00   0.00  0.43 Na    0.00      0.10      0.10      0.00      0.05      0.00      0.00 0.00   0.00  0.24 NNa    0.19      0.34      0.00      0.00      0.00      0.00      0.00 0.00   0.00  0.53 TOTAL 0.53         1.35      1.54      1.03      0.48      0.00      0.00 0.00   0.00  S.77
 ....................................................................

CALM 4IND: 3( .14% OF VALIO OATA) ! l B-22

                    .

HAZLETON CNVI7.INMZNTAL CCl NCF9 JOINT FREQUENCY OF OCCbHRENCE OF *IND SPEED (MPH) AND w!ND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY - MARCH 1980 EXTREMELY STABLE

 ....................................................................

alND SPEED (MPH)

    ' 1ND    ...................................................

ClHFCTION 14 44 d-il 13 19 19-25 25-32 32-39 39-45 >45 TOTAL

             ..........................................................

(PERCENTAGE OF VALID DATA) 3 h 0.00 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.14 NNE 0.05 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 nF 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ENE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 E 0.05 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.10 ESE 0.00 0.24 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.34 SK 0.00 0.00 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.10 SSE 0.00 0.14 0.10 0.10 0.05 0.00 0.00 0.00 0.00 0.39-S 0.00 0.14 0.14 0.05 0.00 0.00 0.00 0.00 0.00 0.34 SSa 0.05 0.05 0.00 0.05 0.u0 0.00 0.00 0.00 0.00 0.14 Sa 0.00 0.29 0.19 0.10 0.00 0.00 0.00 0.00 0.00 0.58

     *Sa   0.00   0.14   0.05     0.00     0.00  0.00   0.00   0.00   0.00    0.19
       =   0.00   0.00   0.14     0.00     0.00  0.00   0.00   0.00   0.00    0.14 aNa    0.00   0.05   0.00     0.00     0.00  0.00   0.00   0.00   0.00    0.05 Na  0.00   0.00   0.00     0.00     0.00  0.00  0.00    0.00   0.00    0.00  !

I

    .i n a 0.05   0.19   0.05     0.00     0.00  0.00  0.00    0.00   0.00    0.29 TOTAL 0.19     1.39   0.86     0.38     0.05  0.00   0.00   0.00   0.00    2.08
 ....................................................................

CALM WIND: O( 004 0F VALID DATA) B-23

                                     .
                                .                                          .
                                                                               .

HAZLETON GNVIRONM3NTAL CCI'INCEO JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA APRIL . JUNE 1980 ALL ORSERVATIONS .................................................................... WIND SPEED (MPH) WIND ................................................... DIRECTION 14 48 8 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

            ..........................................................

(PERCENTAGE OF vat.!D DATA) N 3.51 6.40 4.23 0.27 0.00 0.00 0.00 0.00 0.00 14.41 NNE 1.80 3.87 2.34 0.10 0.00 0.00 0.00 0.00 0.00 8.20 NE 1.26 2.79 1.71 0.00 0.00 0.00 0.00 0.00 0.00 5.77 ENE 1.26 1.53 0.72 0.00 0.00 0.00 0.00 0.00 0.00 3.51 E 0,36 0.63 0.36 0.09 0.00 0.00 0.00 0.00 0.00 1,44 ESE 1.17 1.26 1.98 0.45 0.00 0.00 0.00 0.00 0.00 4.86 SE 1.17 1.80 1,53 0.45 0.00 0.00 0.00 0.00 0.00 4.95 SSE 2.61 1,62 2.16 0.54 0.00 0.00 0.00 0.00 0.00 6.94 S 2.70 2.25 1,53 1.89 0.00 0.00 0.00 0.00 0.00 0.38

 -

SSW 0.81 1.35 0.81 0.99 0.00 0.00 0.00 0.00 0.00 3.96 SW 0.45 0.63 1,62 0.99 0.00 0.00 0.00 0.00 0.00 3.69 WSW 0.72 0.81 0.54 0.00 0.00 0.00 0.00 0.00 0.00 2.07 W 0.54 0.63 0.45 0.27 0.09 0.00 0.00 0.00 0.00 1.98 WNw 0.63 1.89 1.89 0.54 0.54 0.00 0.00 0.00 0.00 5.50 NW 0.36 1.80 2.25 1.44 1.35 0.00 0.00 0.00 0.00 7.21 NNW 2,07 3.42 3.60 0.81 0.00 0.00 0.00 0.00 0.00 9.91 TOTAL 21.44 32.70 27.75 8.92 1.98 0.00 0.00 0.00 0.00 92.79 .................................................................... MAXIMUMS 22.7 CALM WINDu 80(7.21% OF VALID DATA) VALID OBSERVATIONSs1110( 51.9% OF TOTAL) TOTAL DATA COLLEC"ED (HOURS) = 2137

       ,

B-24 s i

_ _ _ _ _ _ _ - _ - _ _ _ __ HAZLETON ENVIRONM2NTAL CCIGNCO3 JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEORDLOGICAL DATA

                    .

APRIL = JUNE 1980 EXTREMELY UNSTABLE .................................................................... WIND SPEED (MPH) WIND ................................................... DIRECTION 14 40 8 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

            .............................................. ...........

(PERCENTAGE OF VALID DATA) N 0.09 1.26 1.17 0,00 0.00 0.00 0.00 0.00 0.00 2.52 NME 0.45 0,36 0.36 0.00 0.00 0.00 0.00 0.00 0.00 1.17 NE 0.00 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.09 ENE 0.00 0.27 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.27 E 0.00 0.18 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.18 ESE 0.18 0.00 0.27 0.00 0.00 0.00 0.00 0.00 0.00 0.45 SE 0.18 0.00 0.00 0.09 0.00 0.00 0.00 0.00 0.00 0.27 SSE 0.00 0.00 0.00 0.00 0,00 0.00 0.00 0.00 0.00 0.00 3 0.09 0.00 0.09 0.18 0.00 0,00 0.00 0.00 0.00 0.36 SSW 0.09 0.18 0,09 0.09 0.00 0.00 0.00 0.00 0.00 0.45 SW 0.00 0.00 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.09 WSW 0.00 0.00 0.18 0.00 0.00 0.00 0.00 0.00 0.00 0.18 W 0.00 0.09 0.09 0.09 0.00 0.00 0.00 0.00 0.00 0.27 WNW 0.09 0.36 0.27 0.27 0.09 0.00 0.00 0.00 0.00 1.08 NW 0.09 0.18 0.45 0.09 0.27 0.00 0.00 0.00 0.00 1.08 NNW 0.27 1.26 1.98 0.27 0.00 0.00 0.00 0.00 0.00 3.78 TOTAL 1,53 4.23 5.05 1.08 0.36 0.00 0.00 0.00 0.00 12.25 .................................................................... CALM WINDa 2( 18% OF VALID DATA) B-25

                                                                                   -__________________

HAZLETON ENVIRONM2NTAL CCGNCOG JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (NPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA APRIL - JUNE 1980 MODERATELY UNSTABLE

 ....................................................................                                                         ;

WIND SPEED (dPH) WIND ................................................... DIRECTION 1=4 48 8-13 13=19 19 25 25 32 32=39 39 45 >45 TOTAL l

            ..........................................................

l (PERCRNTAGE OF VALID DATA) N 0.09 0.27 0.45 0.00 0.00 0.00 0.00 0.00 0.00 0.81 NNE 0.00 0.09 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.18 NE 0.00 0.27 0.36 0.00 0.00 0.00 0.00 0.00 0.00 0.63 ENE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 E 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ESE 0.18 0.18 0.18 0.00 0.00 0.00 0.00 0.00 0.00 0.54 SE 0.00 0.00 0.27 0.18 0.00 0.00 0.00 0.00 0.00 0.45 i l l SSE 0.00 0.18 0.00 0.09 0.00 0.00 0.00 0.00 0.00 0.27 5 0.00 0.09 0.09 0.45 0.00 0.00 0.00 0.00 0.00 v.63 SSW 0.09 0.09 0.00 0.18 0.00 0.00 0.00 0.00 0.00 0.31 Sw 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 WSW 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 W 0.00 0.00 0.00 0.09 0.00 0.00 0.00 0.00 0.00 0.09 i WNW 0.00 0.00 0.09 0.00 0.09 0.00 0.00 0.00 0.00 0.18 ( NW 0.00 0.09 0.09 0.00 0.18 0.00 0.00 0.00 0.00 0.36 ! NNW 0,00 0.36 0.27 0.00 0.00 0.00 0.00 0.00 0.00 0.63 1 TOTAL 0.36 1.62 1.89 0.99 0.27 0.00 0.00 0.00 0.00 5.14 I

  ....................................................................

CALM *IND 0( 00% OF VALID DATA) B-26 I ____ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

_ _ _ HAZLETON ENVIRONMSNTAL CCl~NCOO JOINT FPEQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTIch CLASS (35 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA APRIL . JUNE 1980 l l SLIGHTLY UNSTABLE \ .................................................................... WIND SPEED (MPH) WIND ................................................... DIRECTION 14 4=8 8 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

                    ..........................................................

i (PERCENTAGE OF VALID DATA) N 0.00 0.27 0.27 0.00 0.00 0.00 0.00 0.00 0.00 0.54 NNE 0.00 0.00 0.36 0.00 0.00 0.00 0.00 0.00 0.00 0.36 NE 0.00 0.63 0.45 0.00 0.00 0.00 0.00 0.00 0.00 1.08 ENE 0.09 0.27 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.36 E 0.00 0.09 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.18 ESE 0.09 0.00 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.18 SE 0.09 0.09 0.27 0.00 0.00 0.00 0.00 0.00 0.00 0.45 SSE 0.00 0.18 0.18 0.09 0.00 0.00 0.00 0.00 0.00 0.45 S 0.09 0.18 0.00 0.45 0.00 0.00 0.00 0.00 0.00 0.72 SSW 0.00 0.18 0.09 0.45 0.00 0.00 0.00 0.00 0.00 0.72 SW 0.00 0.00 0.09 0.36 0.00 0.00 0.00 0.00 0.00 0.45 WSW 0.09 0.09 0.09 0.00 0.00 0.00 0.S0 0.00 0.00 0.27 N 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 WNW 0.00 0.36 0.00 0.09 0.27 0.00 0.00 0.00 0.00 0.72 NW 0.00 0.09 0.09 0.09 0.18 0.00 0.00 0.00 0.00 0.45 NNW 0.09 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.18 TOTAL 0.54 2.52 2.07 1.53 0.45 0.00 0.00 0.00 0.00 7.12

       ....................................................................

CALM WIND 0( 00% OF VALID DATA) B-27

                                                                                                                                    .____________ - ______

HAZLETON CNVIRONMCNTAL CCICNCE2, JOINT FRE00ENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA APRIL . JUNE 1980 NEUTRAL 1

 ....................................................................

WIND SPEED (MPH) l WINO ................................................... DIRECTION 14 48 8 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL I

            ..........................................................

(PERCENTAGE OF VALID DATA) N 0.63 2.97 1.80 0.27 0.00 0,00 0.00 0.00 0.00 5.68 l NNE 0.45 3.06 1,44 0.18 0.00 0.00 0.00 0.00 0.00 5.14 NE 0.45 1.71 0.81 0.00 0.00 0.00 0.00 0.00 0.00 2.97 ENE 0.45 0.72 0.72 0.00 0.00 0.00 0.00 0.00 0.00 1.89 E 0.18 0.18 0.27 0.09 0.00 0.00 0.00 0.00 0.00 0.72 ESE 0.45 0.54 1.35 0.45 0.00 0.00 0.00 0.00 0.00 2.79 l SE 0.18 0.63 0.81 0.18 0.00 0.00 0.00 0.00 0.00 1.80 I SSE 0.00 0.72 0.63 0.27 0.00 0.00 0.00 0.00 0.00 1.62 5 0.45 0.72 0.01 0.72 0.00 0.00 0.00 0.00 0.00 2.70 SSW 0.18 0.63 0.63 0.27 0.00 3.00 0.00 0.00 0.00 1.71 l SW 0.27 0.16 1.26 0.63 0.00 0.00 0.00 0.00 0.00 2.52 WSW 0.18 0.45 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.63 W 0.09 0.27 0.09 0.09 0.09 0,00 0.00 0.00 0.00 0.63 kNW 0.09 0.90 1.17 0.18 0.09 0.00 0.00 0.00 0.00 2.43 NW 0.09 0.81 0.90 1.26 0.72 0.00 0.00 0.00 0.00 3.78 NNW 0.45 0.90 0.63 0.45 0.00 0.00 0.00 0.00 0.00 2.43 l TOTAL 4.59 15.59 13.33 5.05 0.90 0.00 0.00 0.00 0.00 39.46 ;

  ....................................................................

CALM WIND = 6( 54% OF VALID DATA) B-28

                      - - - _          _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

HAZLETON CNVIRONMZNTAL. CCCNC2C) JOINT FREQUENCY OF OCCURHENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR 3TATION METEOROLOGICAL DATA APRIL = JUNE 1980 SLIGHTLY STABLE

 ....................................................................

WIND SPEED (MPH) WIND

            ...................................................

DIRECTION 14 48 8 13 13 19 19 25 25 12 32 39 39 45 >45 TOTAL

            ..........................................................

(PERCENTAGE OF VALID DATA) N 1,53 1.53 0.18 0.00 0.00 0.00 0.00 0.00 0.00 3.24 NNE 0.01 0.36 0.09 0.00 0.00 0.00 0.00 0.00 0.00 1.26 NE 0.72 0.09 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.90 i ENE 0.77 0.27 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.99 E 0,19 0.18 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.36 ESE 0.27 0.45 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.81 SE 0.45 0.90 0.18 0.00 0.00 0.00 0.00 0.00 0.00 1.53 SSE 0.54 0.45 1.35 0.09 0.00 0.00 0.00 0.00 0.00 2.43 3 0.45 0.54 0.54 0.09 0.00 0.00 0.00 0.00 0.00 1.62 SSW 0.18 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.27 SW 0.09 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.18 WSW 0.45 0.27 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.81 l W 0.18 0.27 0.18 0.00 0.00 0.00 0.00 0.00 0.00 0.63 WNW 0.09 0.18 0.36 0.00 0.00 0.00 0.00 0.00 0.00 0.63 NW 0.09 0.54 0.36 0.00 0.00 0.00 0.00 0.00 0.00 0.99 NNW 1.08 0.63 0.45 0.09 0.00 0.00 0.00 0.00 0.00 2.25 TOTAL 7.84 6.85 3.96 0.27 ( 00 0.00 0.00 0.00 0.00 18.92

 ....................................................................

CALM WIND 22(1,98% OF VALID DATA) B-29 _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ . _ _ - . - ._ .

HAZLETON CNVIRONM2NTAL CCI']NC2O JOINT FHEQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEOH0 LOGICAL DATA APRIL . JUNE 1980 MODERATELY STABLE

 ....................................................................

WIND SPEED (MPH) WIND ................................................... DIRECTION 14 48 8 13 13 19 19 25 25 32 32 39 39-45 >45 TOTAL

           ..........................................................

(PERCENTAGE OF VALID DATA) 4 N 0.99 0.09 0.18 0.00 0.00 0.00 0.00 0.00 0.00 1.26 NNE 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.09 NE 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.09 C ENE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 E 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ESE 0.00 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.09 SE 0.27 0.18 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.45 SSE 0.99 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 1.08 3 0.99 0.63 0.00 0.00 0.00 0.00 0.00 0.00 0.00 1.62 SSW 0.09 0.18 0.00 0.00 0.00 0.00 0.00 0.00 0.00 'O.27 SW 0.00 0.09 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.18 WSW 0.00 0.00 0.18 0.00 0.00 0.00 0.00 0.00 0.00 0.18 W 0.18 0.00 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.27 WNW 0.36 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.45 Nw 0.00 0.09 0.36 0.00 0.00 0.00 0.00 0.00 0.00 0.45 NNW 0.18 0.18 0.27 0.00 0.00 0.00 0.00 0.00 0.00 0.63 TOTAL 4.23 1.71 1.17 0.00 0.00 0.00 0.00 0.00 0.00 7.12

 ....................................................................

CALM WINDS 20(1,80% OF VALID DATA) B-30

_ _. HAZLETON CNVIRONMENTAL CCl2NCCO JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA APRIL . JUNE 1980 . EXTREMELY STABLE ,

      ....................................................................

WIND SPEED (MPH) WIND ................................................... DIRECTION 1=4 4=8 8 13 13 19 19 25 25 32 32=39 39-45 >45 TOTAL

                 ..........................................................

(PERCENTAGE nF VALID DATA) N 0.18 0.00 0.18 0.00 0.00 0.00 0.00 0.00 0.00 0.36 NNE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 NE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ENE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 E 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ESE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 SE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 SSE 1.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 1.08 5 0.63 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.72 SSW 0.18 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.18 SW 0.09 0.09 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.27 WSW 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 W 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.09 WNW 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 NW 0.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.09 NNW 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 i TOTAL 2.34 0.18 0.27 0.00 0.00 0.00 0.00 0.00 0.00 2.79

      ............................,.......................................

CALM WINDu 30(2.70% OF VALID DATA) B-31

HAZLETON CNVI AONMJNTAL CCl3NC3G JOINT FREQUEflCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT )

                                                                                     '
                                                                                     '

COOPER NUCLEAR STATION METEOROLOGICAL DATA l APRIL - JUNE 1980 l ALL OBSERVATIONS .................................................................... WIND SPEED (MPH) WIND ................................................... DIRECTION 14 48 8 13 13=19 19 25 25-32 32 39 39 45 >45 TOTAL

            ..........................................................

(PERCENTAGE OF VALID DATA) N 0.25 1.14 1.79 2.93 0.89 0.10 0.00 0.00 0.00 7.00 NNE 0.30 0.70 1.34 2.43 0.60 0.00 0.00 0.00 0.00 5.36 NE 0.20 0.89 2.93 1.04 0.20 0.05 0.00 0.00 0.00 5,31 ENE 0.40 1.04 1.69 0.89 0.30 0.00 0.00 0.00 0.00 4.32 E 0.30 1.19 2.23 1.24 0.60 0.15 0.00 0.00 0.00 5.71 ESE 0.50 1.34 3.53 3.08 0.65 0.30 0.10 0.00 0.00 9.48 SE 0.50 0.89 3.92 3.18 0.50 0.15 0.00 0.00 0.00 9.14 SSE 0.74 1.24 2.43 2.50 0.84 0.50 0.00 0.00 0.00 8.34 S 0.30 0.74 1.99 2.38 2.33 1.14 0.05 0.00 0.00 8.94 SSW 0.20 0.79 2.23 1.99 0.40 0.60 0.00 0.00 0.00 6.21

                                                                            ~

SW 0.35 0.50 1.34 1.14 0.25 0.05 0.00 0.00 0.00 3.62 WSW 0.20 0.65 0.50 0.60 0,25 0.05 0.00 0.00 0.00 2.23 W 0.25 0.65 0.84 0.25 0.40 0.05 0.00 0.00 0.00 2.43 WNW 0.40 0.99 2.33 1.44 0.74 0.45 0.00 0.00 0.00 6.36 NW 0.20 0.89 1.84 1.19 0.99 1.04 0.20 0.00 0.00 6.36 NNW 0.35 1.39 2.43 2.93 1.24 0.35 0.00 0.00 0.00 8.69 TOTAL 5.41 15.04 33.37 29.20 11.17 4.97 0.35 0.00 0.00 99.50 .................................................................... MAXIMUMS 33.5 CALM WINDS 10( .50% OF VALID DATA) VALID OBSERVATIONSz2014( 93.2% OF TOTAL) TOTAL DATA COLLECTED (HOURS) = 2161 B-32

_ HAZLWTON CNVIRONM3NTAL CCl2NCOC3 JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA APRIL JUNE 1980 EXTREMELY UNSTABLE

 ....................................................................

WIND SPEED (MPH) WIND

             ...................................................

DIRECTION 1=4 4=8 8 13 13 19 19 25 25=32 32 39 39 45 245 TOTAL

             ..........................................................

(PERCENTAGE OF VALID DATA) . N 0.00 0.25 0.35 0.65 0.45 0.05 0.00 0.00 0.00 1.74 f , l l NNE 0.05 0.10 0.15 0.35 0.10 0.00 0.00 0.00 0.00 0.74 NE 0.00 0.15 0.20 0.10 0.00 0.00 0.00 0.00 0.00 0.45 l ENE 0.00 0.15 0.35 0.05 0.00 0.00 0.00 0.00 0.00 0.55 C 0.05 0.15 0.35 0.10 0.00 0.00 0.00 0.00 0.00 0.65 l l ESE 0.00 0.15 0.05 0.15 0.00 0.00 0.00 0.00 0.00 0.35 l SE 0.10 0.25 0.35 0.15 0.00 0.00 0.00 0.00 0.00 0.84 SSE 0.10 0.30 0.15 0.20 0.05 0.00 0.00 0.00 0.00 0.79 l 3 0.05 0.05 0.20 0.10 0.35 0.15 0.00 0.00 0.00 0.89 SSW 0.10 0.10 0.25 0.15 0.00 0.05 0.00 0.00 0.00 0.65 SW 0.00 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.1C WSW 0,05 0.05 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.15 W 0.10 0.15 0.25 0.10 0.15 0.00 0.00 0.00 0.00 0.74 WNW 0.05 0.20 0.40 0.10 0.10 0.05 0,00 0.00 0.00 0.89 NW Oyto 0.25 0.45 0.15 0.35 0.05 0.00 0.00 0.00 1.34 l NNW 0.05 0.45 0.94 1.09 0.55 0.25 0.00 0.00 0.00 3.33 i ( T0*AL 0.79 2.73 4.57 3.43 2.09 0.60 0,00 0.00 0.00 14.20

 ............................................-        ,......................

CALM WINDa O( 004 OF VALID DATA) B-33

____________ _ - HAZLGTON ENVIRONMENTAL SCICNCED JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICA1, DATA APRIL . JUNE 1980 MODERATELY UNSTABLE .................................................................... J WIND SPEED (MPH) WIND ................................................... DIRECTION 1=4 48 8 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

          ..........................................................

(PERCENTAGE OF VALID DATA) N 0.00 0.10 0.30 0.25 0.10 0.00 0.00 0.00 0.00 0.74 j NNE 0.00 0.00 0.20 0.05 0.00 0.00 0.00 0.00 0.00 0.25 NE 0.00 0.10 0.15 0.05 0.00 0.00 0.00 0.00 0.00 0.30 ENE 0.00 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.05 E 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.0C 0.05 ESE 0.05 0.15 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.30 SE 0 10 0.00 0.10 0.15 0.00 0.00 0.00 0.00 0.00 0.35 SSE 0.00 0.10 0.15 0.30 0.05 0.05 0.00 0.00 0.00 0.65 5 0.00 0.00 0.00 0.25 0.40 0.25 0.00 0.00 0.00 0.89 SSW 0.00 0.10 0.00 0.05 0.05 0.00 0.00 0.00 0.00 0.20 SW 0.00 0.00 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.05 WSW 0.05 0.00 0.05 0.05 0.00 0.00 0.00 0.00 0.00 0.15 W 0.00 0.05 0.00 0.00 0.15 0.00 0.00 0.00 0.00 0.20 WNW 0.05 0,00 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.15 NW 0.00 0.05 0.00 0.00 0.00 C.10 0.05 0.00 0.00 0.20 NNW 0.00 0.10 0.15 0.10 0.20 0.00 0.00 0.00 0.00 0.55 TOTAL 0.25 0.79 1.19 1.44 0.94 0.40 0.05 0.00 0.00 5.06 .................................................................... CALM WINDa O( 00% OF VALID DATA) l l l B-34

_ - _ _ _ . HAZLCTON CNVIRONMZNTAL CCl2NCOO JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA APRIL = JUNE 1980 SLIGHTLY UNSTABLE

  ..................................... ..............................

WIND SPEED (MPH) WIND ................................................... DIRECTION 1=4 40 8 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

               ..........................................................

(PERCFNTAGE OF VALID DATA) , N 0.00 d.10 0.00 0.20 0.00 0.00 0.00 0.00 0.00 0.30 NNE 0.00 0.05 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.20 NE 0.00 0.05 0.40 0.10 0.00 0.00 0.00 0.00 0.00 0.55 ENE 0.05 0.05 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.25 E 0.00 0.05 0.25 0.20 0.00 0.05 0.00 0.00 0.00 0.55 > ESE 0.00 0.05 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.20 SE 0.00 0.10 0.25 0.30 0.00 0.00 0.00 0.00 0.00 0.65 SSE 0.05 0.10 0.10 0.25 0.00 0.00 0.00 0.00 0.00 0.50 S 0.05 0.00 0.10 0.20 0.40 0.05 0.00 0.00 0.00 0.79 SSW 0.05 0.00 0.35 0.15 0.05 0.15 0.00 0.00 0.00 0.74 SW 0.05 0.05 0.00 0.20 0.00 0.00 0.00 0.00 0.00 0.30 1 WSW 0.05 0.00 0.00 0.05 0.05 0.00 0.00 0.00 0.00 0.15 { W 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.05 WNW 0.00 0.05 0.15 0.10 0.00 0.05 0.00 0.00 0.00 0.35 NW 0.00 0.05 0.10 0.15 0.05 0.15 0.10' O.00 0.00 0.60 NNW 0.10 0.15 0.00 0.10 0.10 0.00 0.00 0.00 0.00 0.45 TOTAL 0.45 0.84 1.89 2.23 0.65 0.45 0.10 0.00 0.00 6.60

 ....................................................................

CALM WIND O( 00% OF VALID DATA) B-35

___ - _________ .- HAZLETON CNVIRONMENTAL CCl2NCCO JOINT FPEOUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA APRIL - JUNE 1980 NEUTRAL

 ....................................................................

WIND SPEED (MPH)

                                                                                                ]

WIND ................................................... DIRECTION 1-4 4-8 8=13 13-19 19 25 25 32 32=39 39 45 >45 TOTAL

             ..........................................................

(PERCENTAGE OF VALID DATA) N 0.15 0.20 0.35 1,49 0.30 0.05 0.00 0.00 0.00 2.53 NNE 0.00 0.30 0.55 1,39 0.40 0.00 0.00 0.00 0.00 2.63 NE 0.00 0.25 1.69 0.70 0.20 0.05 0.00 0.00 0.00 2.88 ENE 0.20 0.20 0.65 0.35 0.30 0.00 0.00 0.00 0.00 1.69 E 0.10 0.35 0.65 0.65 0.45 0.10 0.00 0.00 0.00 2.28 ESE 0.20 0.55 1.14 1.64 0.55 0.25 0.10 0.00 0.00 4.42 SE 0.20 0.20 0.79 1.34 0.35 0.15 0.00 0.00 0.00 3.03 SSE 0.30 0.30 0.65 0.55 0.30 0.20 0.00 0.00 0.00 2.28 8 0.05 0.30 0.70 0.70 0.60 0.60 0.05 0.00 0.00 2.98 SSW 0.00 0.20 0.40 0.04 0.20 0.35 0.00 0.00 0.00 1.99 SW 0.15 0.10 0.50 0.60 0.10 0.05 0.00 0.00 0.00 1.49 WSW 0.05 0.35 0.10 0.25 0.20 0.05 0.00 0.00 0.00 0.99 l W 0.00 0.20 0.20 0.05 0.00 0.05 0.00 0.00 0.00 0.50 WNW 0.15 0.45 1.04 0.60 0.30 0.30 0.00 0.00 0.00 2.83 NW 0.00 0.20 0.55 0.30 0.50 0.74 0.05 0.00 0.00 2.33 NNW 0.10 0.30 0.55 0,84 0.20 0.10 0.00 0.00 0.00 2.09 TOTAL 1,64 4.42 10.49 12.26 4.92 3.03 0.20 0.00 0.00 36.94

 ....................................................................

C5LM WINDS 5( 25% OF VALID DATA) l l 1 B-36 _ _ . . -

i HAZLOTON GNVI AONMENTAL CCIONC33 JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND AIND DIRECTION CLASS (318 FT ) COOPER ' NUCLEAR STATION METEOROLOGICAL DATA APRIL = JUNE 1980 SLIGHTLY STABLE

 ....................................................................

WIND SPEED (MPH) WIND ................................................... DIRECTION 1=4 4-8 8-13 13-19 19 25 25-32 32-39 39-45 >45 TOTAL

            ..........................................................

(PERCENTAGE OF VALID DATA) N 0.05 0.25 0.65 0.25 0.05 0.00 0.00 0.00 0.00 1.24 NNE 0.10 0.20 0.20 0.55 0.10 0.00 0.00 0.00 0.00 1.14 NE 0.10 0.20 0.45 0.10 0.00 0.00 0.00 0.00 0.00 0.84 ENE 0.00 0.30 0.40 0.40 0.00 0.00 0.00 0.00 0.00 1.09 E 0.05 0.45 0.84 0.30 0.15 0.00 0.00 0.00 0.00 1.79 ESE 0.05 0.25 1.94 1.14 0.10 0.05 0.00 0.00 0.00 3.53 SE 0.05 0.20 2.04 0.99 0.10 0.00 0.00 0.00 0.00 3.38 SSE 0.15 0.05 0.94 1.14 0.45 0.25 0.00 0.00 0.00 2.98 3 0.05 0.25 0.55 0.79 0.60 0.10 0.00 0.00 0.00 2.33 SSW 0.00 0.20 0.20 0.25 0.10 0.05 0.00 0.00 0.00 0.79 SW 0.00 0.20 0.15 0.15 0.10 0.00 0.00 0.00 0.00 0.60 WSW 0.00 0.10 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.25 , W 0.00 0.05 0.05 0.05 0.10 0.00 0.00 0.00 0.00 0.25 l WNk 0.00 0.05 0.20 0.30 0.30 0.05 0.00 0.00 0.00 0.89 NW 0.10 0.15 0.40 0.40 0.10 0.00 0.00 0.00 0.00 1.14 NNW 0.05 0.05 0.45 0.70 0.20 0.00 0.00 0.00 0.00 1,44 TOTAL 0.74 2.93 9.48 7.60 2.43 0.50 0.00 0.00 0.00 23.68 l

 ....................................................................

CALM WIND

  • 3( .15% OF VALID DATA)

B-37 _

                                                                                . _ _ _ _ _ _ _ _ _ _ .

HAZLETON UNVIRONMENTAL CCl!NCED JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) Cu)PER NUCLEAR STATION METEOROLOGICAL DATA APRIL . JUNE 1980 MODERATELY STABLE l

  ........................................... ........................                                              ;

WIND SPEED (MPH) WIND

                                                                                                                    ,
                                                                                                                    '
              ...................................................

DIRECTION 1=4 48 8 13 13-19 19 25 25 32 32=39 39 45 >45 TOTAL I ' .......................................................... (PERCENTAGE OF VALID DATA) ' N 0.00 0.15 0.15 0.00 0.00 0.00 0.00 0.00 0.00 0.30 NNE 0.05 0.05 0.20 0.00 0.00 0.00 0.00 0.00 0.00 0.30 NE 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.15 s l ENE 0.05 0.15 0.20 0.00 0.00 0.00 0.00 0.00 0.00 0.40 E 0.00 0.10 0.15 0.00 0.00 0.00 0.00 0.00 0.00 0.25 ESE 0.05 0.05 0.25 0.00 0.00 0.00 0.00 0.00 0.00 0.35 SE 0.00 0.15 0.30 0.25 0.05 0.00 0.00 0.00 0.00 0.74 ! SSE 0.00 0.05 0.40 0.15 0.00 0.00 0.00 0.00 0.00 0.60 3 0.05 0.05 0.40 0.25 0.00 0.00 0.00 0.00 0.00 0.74 SSW 0.05 0.20 0.45 0.30 0.00 0.00 0.00 0.00 0.00 0.99 SW 0.05 0.15 0.35 0.15 0.05 0.00 0.00 0.00 0.00 0.74 WSW 0.00 0.10 0.15 0.15 0.00 0.00 0.00 0.00 0.00 0.40 W 0.00 0.10 0.15 0.05 0.00 0.00 0.00 0.00 0.00 0.30 WNW 0.05 0.10 0.30 0.25 0.05 0.00 0.00 0.00 0.00 0.74 NW 0.00 0.00 0.20 0.20 0.00 0.00 0.00 0.00 0.00 0.40 NNW 0.05 0.15 0.25 0.10 0.00 0.00 0.00 0.00 0.00 0.55 TOTAL 0.50 1,59 3.87 1.84 0.15 0.00 0.00 0.00 0.00 7.94

 ....................................................................

j CALM WIND .2( .10% OF VALID DATA) B-38

                                       - _ _ _ _ _ _ _ _ _ _ _ _ _

HAZLETON CNVIRONMINTAL CCIENC30 JOINT FREQUENCY OF GCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA APRIL . JUNE 1980 EXTREMELY STABLE

            ....................................................................

WIND SPEED (MPH) WIND DIRECTION 1=4................................................... 4-8 8 13 13=19 19=25 25=32 32-39 39=45 >4

                         .....................................-..........5            TOTAL
                                                                                    .........

(PERCENTAGE OF VALID DATA) N 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.15 NNE 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 NE 0.00 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.15 ENE 0.10 0.20 0.00 0.00 0.00 0.00 0.00 0.00 1 0.00 0.30 E 0.10 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.15 ESE 0.15 0.15 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.35 SE 0.05 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.15 SSE 0.15 0.35 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.55 3 0.05 0.10 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.30 SSW 0.00 0.00 0.60 0.25 0.00 0.00 0.00 0.00 0.00 0.84 SW 0.10 0.00 0.20 0.05 0.00 0.00 0.00 0.00 0.00 0.35 WSW 0.00 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.15 W 0.10 0.10 0.20 0.00 0.00 0.00 0.00 0.00 0.00 0.40 WNW 0.10 0.15 0.25 0.00 0.00 0.00 0.00 0.00 0.00 0.50 NW 0.00 0.20 0.15 0.00 0.00 0.00 0.00 0.00 0.00 0.35 NNW 0.00 0.20 0.10 0.00 '0.00 0.00 0.00 0.00 0.00 0.30 TOTAL 1.04 1.74 1.89 0.40 0.00 0.00 0,00 0.00 0.00 5.06

           .....................................................................

CALM WIND 0( 00% OF VALID DATA) B-39

 - _ . _ .                       -
                                     -
                                                                                              - - - -

__________________ _ ________ _- HAZLGTON ENVIRONM' INTAL SCIENCES JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) STATION

                                                                                                          -

COOPER NUCLEAR METEOROLOGICAL DATA JANUARY . JUNE 1980 ALL OBSERVATIONS .................................................................... j WIND SPEED (MPH) WIND ................................................... DIRECTION 14 48 6 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

            ..........................................................

(PERCENTAGE OF VALTD DATA) N 2.90 5.14 4.34 1.02 0.00 0,00 0.00 0.00 0.00 13.41 NNE 1,47 2.84 1.92 0.32 0.00 0.00 0.00 0.00 0.00 6.54 NE 0.96 2.55 1.24 0.00 0.00 0.00 0.00 0.00 0.00 4.76 ENE 0.99 1.76 0.67 0.00 0.00 0.00 0.00 0.00 0.00 3.42 0.73 0.45 0.03 0.00 0.00 0.00 0.00 0.00 1.85 1 E 0.64 ESE 0.86 2.01 1.50 0.16 0.00 0.00 0.00 0.00 0.00 4.53 SE 1.21 2.78 1.92 0.32 0.00 0.00 0.00 0.00 0.00 6.22 i SSE 2.23 1.53 1.50 0.51 0.10 0.03 0.00 0.00 0.00 5.90 S 2.23 2.23 1.92 2.14 0.41 0.10 0.00 0.00 0.00 9.03 SSW 0.89 1.15 1.15 0.83 0.29 0.13 0.00 0.00 0.00 4.44 SW 0.93 0.80 1.09 0.48 0.03 0.00 0.00 0.00 0.00 3.32 WSW 0.80 0.86 0.06 0.19 0.00 0.00 0.00 0.00 0.00 2.71 4 0.54 1.09 0.57 0.19 0.06 0.00 0.00 0.00 0.00 2.46 WNw 0.86 1.72 1.72 0.54 0 , 2.1 0.00 0.00 0.00 0.00 5.08 NW 0.86 2.11 2.49 1.15 0.61 0.03 0.00 0.00 0.00 7.25 NNW 1.92 4.44 3.77 2.33 0.29 0.00 0.00 0.00 0.00 12.74 TOTAL 20.30 33.74 27 10 10.21 2.01 0.29 0.00 0.00 0.00 93.65 ...................u.............................c.................. MAXIMilMa 27.6 CALM WIND =199(6.35% OF VALID DATA)  ; VALID OBSERVATIONSz3133( 74.5% OF TOTAL) l TOTAL DATA COLLECTED (HOURS) = 4207 B-40 _______ _

__ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ HAZLETON ENVIRONM~_ INTAL CCCNCE JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY . JUNE 1980 EXTREMELY UNSTABLE

                                                                                                                                                       .
 ....................................................................

WIND SPEED (MPH) WIND ................................................... DIRECTION 1=4 48 8 13 13 19 19 25 25=32 32 39 39 45 >45 TOTAL

             ..........................................................

(PERCENTAGE OF VALID DATA) . N 0.22 1.37 1.60 0.29 0.00 0.00 0.00 0.00 0.00 3.48 NNE 0.38 0.38 0.32 0.00 0.00 0.00 0.00 0.00 0.00 1.09 l NE 0.16 0.22 0.06 0.00 0.00 0.00 0.00 0.00 0.00 0.45 I ? ENE 0.29 0.26 0.06 0.00 0.00 0.00 0.00 0.00 0.00 0.61 l E 0.16 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.26 ESE 0.10 0.29 0.16 0.00 0.00 0.00 0.00 0.00 0.00 0.54 SE 0.10 0.22 0.06 0.13 0.00 0.00 0.00 0.00 0.00 0.51 SSE 0.03 0.03 0.06 0.06 0.00 0.00 0.00 0.00 0.00 0.19 5 0.16 0.16 0.13 0.26 0.00 0.00 0.00 0.00 0.00 0.70 SSW 0.10 0.10 0.22 0.16 0.10 0.06 0.00 0.00 0.00 0.73 SW 0.22 0.06 0.16 0.10 0.03 0.00 0.00 0.00 0.00 0.57 WSW 0.19 0.16 0.22 0.03 0.00 0.00 0.00 0.00 0.00 0.61 W 0.10 0.29 0.06 0.03 0.00 0.00 0.00 0.00 0.00 0.48 WNW 0.06 0.41 0.51 0.29 0.06 0.00 0.00 0.00 0.00 1.34 NW 0.13 0.61 1.09 0.29 0.10 0.00 0.00 0.00 0.00 2.20 NNW 0.19 1,66 1,79 0.93 0.06 0.00 0.00 0.00 0.00 4.63 TOTAL 2.59 6.32 6.51 2.55 0.35 0.06 0.00 0.00 0.00 18.38

 ....................................................................

CALM WINDS 7( 22% OF VALID DATA) B-41

HAZLETON CNVIRONM2NTAL CCIZNC2C I JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) STATION METEOROLOGICAL DATA ' l COOPER NUCLEAR JANUARY . JUNE 1980 i MODERATELY UNSTABLE

    ....................................................................

WIND SPEED (MPH) 1 WIND ...................................................

 '

DIRECTION 14 48 8 13 13 19 19 25 25=32 32 39 39 45 >45 TOTAL

                ..........................................................

(PERCENTAGE OF VALID DATA) N 0.10 0.41 0.67 0.03 0.00 0.00 0.00 0.00 0.00 1.21 NNE 0.00 0.10 0.16 0.00 0.00 0.00 0.00 0.00 0.00 0.26 J NE 0.00 0.10 0.19 0.00 0.00 0.00 0.00 0.00 0.00 0.29 ENE 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 E 0.03 0,06 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 ESE 0.10 0.16 0.19 0.00 0.00 0.00 0.00 0.00 0.00 0.45 SE 0.00 0.06 0.16 0.10 0.00 0.00 0.00 0.00 0.00 0.32 SSE 0.00 0.10 0.00 0.03 0.00 0.00 0.00 0.00 0.00 0.13 5 0.00 0.03 0.06 0.22 0.03 0.10 0.00 0.00 0.00 0.45 SSW 0.03 0.03 0.00 0.10 0.03 0.03 0.00 0.00 0.00 0.22 SW 0.06 0.03 0.06 0.00 0.00 0.00 0.00 0.00 0.00 0.16 WSW 0.06 0.00 0.06 0.00 0.00 0.00 0.00 0.00 0.00 0.13 W 0.03 0.03 0.00 0.03 0.00 0.00 0.00 0.00 0.00 0.10 WNW 0.00 0.00 0.03 0.00 0.03 0.00 0.00 0.00 0.00 0.06 NW 0.00 0.10 0.06 0.03 0.06 0.00 0.00 0.00 0.00 0.26 NNW 0.03 0.51 0.26 0.22 0.16 0.00 0.00 0.00 0.00 1.18 TOTAL 0.45 1,82 1.92 0.77 0.32 0.13 0.00 0.00 0.00 5.39

    ........................ ...........................................

l 1( 03% OF VALID DATA)

                                                                                   '

CALM WIND = I , l B-42 l

HAZLETON CNVIRONMZNTAL CCl3NCCD JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEOH0 LOGICAL DATA JANUARY - JUNE 1990 SLIGHTLY UNSTABLE .................................................... ............... WTNO SPEED (MPH) WIND ................................................... DIRECTION 14 48 8 13 13 19 19 25 25 32 32=39 39 45 >45 TOTAL

          ...........................................................

(PERCENTAGE OF VALID DATA) N 0.03 0.38 0.51 0.03 0.00 0.00 0.00 0.00 0.00 0.96 NNE 0.03 0.00 0.35 0.00 0.00 0.00 0.00 0.00 0.00 0.38 NE 0.03 0.35 0.29 0.00 0.00 0.00 0.00 0.00 0.00 0.67 ENE 0.13 0.29 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.41 E 0.00 0.10 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.13 ESE 0.06 0.16 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.26 SE 0.03 0.13 0.19 0.03 0.00 0.00 0.00 0.00 0.00 0.38 SSE 0.00 0.06 0.13 0.03 0.00 0.00 0.00 0.00 0.00 0.22 S 0.10 0.10 0.16 0.29 0.10 0.00 0.00 0.00 0.00 0.73 SSW 0.06 0.10 0.13 0.19 0.03 0.03 0.00 0.00 0.00 0.54 SW 0.00 0.06 0.03 0.13 0.00 0.00 0.00 0.00 0.00 0.22 WSW 0.10 0.10 0.06 0.00 0.00 0.00 0.00 0.00 0.00 0.26 W 0.03 0.00 0.03 0.00 0.03 0.00 0.00 0.00 0.00 0.10 WNW 0.03 0.16 0.00 0.03 0.10 0.00 0.00 0.00 0.00 0.32 MW 0.00 0.13 0.13 0.06 0.06 0.03 0.00 0.00 0.00 0.41 NNW 0.03 0.35 0.13 0.19 0.03 0.00 0.00 0.00 0.00 0.73 TOTAL 0.57 2.46 2.20 0.99 0.35 0.06 0.00 0.00 0.00 6.73 .................................................................... CALM WINDS 2( 06% OF VALID DATA) B-43

              .
                                      .
                                                   .

_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ HAZLETON CNVIRONM2NTAL CCIINCES JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY . JUNE 1980 NEUTRAL

 ....................................................................

WIND SPEED (MPH) WIND ................................................... DIRECTION 14 48 8 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

              ..........................................................

(PERCENTAGE OF VALID DATA) N 1.40 2.36 1.34 0.67 0.00 0.00 0.00 0.00 0.00 5.78 j l NNE 0.54 2.20 1.05 0.32 0.00 0.00 0.00 0.00 0.00 4.12 NE 0.48 1.82 0.67 0.00 0.00 0.00 0.00 0.00 0.00 2.97 ENE 0.22 0.96 0.61 0.00 0.00 0.00 0.00 0.00 0.00 1.79 E 0.32 0.35 0.38 0.03 0.00 0.00 0.00 0.00 0.00 1.09 i ESE 0.41- 0.83 1.05 0.16 0.00 0.00 0.00 0.00 0.00 2.46 )

                                                                                                                                                                     ,
                                                                                                                                                                     '

SE 0.13 1.34 1.05 0.06 0.00 0.00 0.00 0.00 0.00 2.59 SSE 0.29 0.64 0.48 0.32 0.10 0.00 0.00 0.00 0.00 1,82 S 0.45 0.48 0.86 0.93 0.26 0.00 0.00 0.00 0.00 2.97 SSW 0.29 0.54 0.57 0.26 0.10 0.00 0.00 0.00 0.00 1,76 1 i Sw 0.32 0.32 0.51 0.26 0.00 0.00 0.00 0.00 0.00 1.40 l l WSW 0.19 0.29 0.10 0.03 0.00 0.00 0.00 0.00 0.00 0.61 l W 0.13 0.29 0.10 0.06 0.03 0.00 0.00 0.00 0.00 0.61 WNW 0.35 0.64 0.80 0.22 0.03 0.00 0.00 0.00 0.00 2.04 NW 0.38 0.70 0.70 0.77 0.38 0.00 0.00 0.00 0.00 2.94 N4W 0.83 1.40 1.31 0.96 0.03 0.00 0.00 0.00 0.00 4.53 TOTAL 6.73 15.16 11.59- 5.04 0.93 0.00 0.00 0.00 0.00 39.45 j

 ....................................................................

CALM WINDu 37(1,18% OF VALID DATA) B-44 I

                                                                                                                                                                     '

_ _ _ _ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ _ _ _

HAZLETON ENVIRONM2NTAL CCGNC23 JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED'(MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY JUNE 1980 SLIGHTLY STABLE

     ....................................................................

WIND SPEED (MPH) WIND ................................................... DIRECTION 14 48 8 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

                ..........................................................

(PERCENTAGE OF VALID DATA) N 0.70 0.57 0.10 0.00 0.00 0.00 0.00 0.00 0.00 1.37 NNE 0.41 0.16 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.61 l l' NE 0.26 0.06 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.35 . ENE 0.35 0.16 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.51 j l E 0.13 0.10 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.26 ESE 0.16 0.38 0.06 0.00 0.00 0.00 0.00 0.00 0.00 0.61 SE 0.45 0.73 0.41 0.00 0.00 0.00 0.00 0.00 0.00 1.60 1

                                                                                '

SSE 0.51 0.61 0.80 0.06 0.00 0.03 0.00 0.00 0.00 2.01 S 0.61 0.93 0.70 0.45 0.03 0.00 0.00 0.00 0.00 2.71 SSW 0.16 0.26 0.16 0.13 0.03 0.00 0.00 0.00 0.00 0.73 SW 0.22 0.26 0.19 0.00 0.00 0.00 0.00 0.00 0.00 0.67 WSW 0.19 0.32 0.32 0.13 0.00 0.00 0.00 0.00 0.00 0.96 W 0.10 0.32 0.35 0.06 0.00 0.00 0.00 0.00 0.00 0.83 WNW 0.19 0.32 0.38 0.00 0.00 0.00 0.00 0.00 0.00 0.89 NW 0.22 0.54 0.38 0.00 0.00 0.00 0.00 0.00 0.00 1.15 l NNW 0.73 0.45 0.19 0.03 0.00 0.00 0.00 0.00 0.00 1.40 TOTAL 5.39 6,16 4.15 0.86 0.06 0.03 0.00 0.00 0.00 16.66

     ....................................................................

CALM WINDS 50(1.60% OF VALID DATA) B-45 ('

  ,.  -

_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ HAZLETON ENVIRONM2NTAL CCIENC']O JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY . JUNE 1980 MODERATELY STABLE I .................................................................... 1 WIND SPEED (MPH) WIND .,................................................. DIRECTION 14 48 0 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

             ..........................................................

(PERCENTAGE OF VALID DATA) ) N 0.35 0.03 0.06 0.00 0.00 0.00 0.00 0.00 0.00 0.45 NNE 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 NE 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.03 ENE 0.00 0.00 , 0,00 0.00 0.00 0.00 0,00 0.00 0.00 0.00 E 0.00 0,03 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.03 ESE 0.03 0.19 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.22 SE 0.35 0.22 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.61 l SSE 0.70 0.06 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.80 S 0.61 0.48 0.00 0.00 0.00 0.00 0.00 0.00 0.00 1.09 SSW 0.16 0.13 0.06 0.00 0.00 0.00 0.00 0.00 0.00 0.35 SW 0.06 0.03 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.19 WSW 0.06 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.16 W 0,13 0.16 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.32 WNW 0.22 0.19 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.41 NW 0.10 0.03 0.13 0.00 0.00 0.00 0.00 0.00 0.00 0.26 NNW 0.06 0.06 0.10 0.00 0.00 0,00 0.00 0.00 0.00 0.22 TOTAL 2.97 1.63 0.64 0.00 0.00 0.00 0.00 0.00 0.00 5.23 <

                                                           .

.................................................................... , 1 CALM WINDS 47(1.504 0F VALID DATA) 1 I. B-46

               --                                                                          -. .-_       -

HAZLETON CNVIRONM2NTAL CCIONC30 JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (35 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY . JUNE 1980 EXTREMELY STABLE

....................................................................

WIND SPEED (MPH) WIND ................................................... DIRECTION 14 48 8 13 13 19 19 25 25=32 32 39 39 45 >45 TOTAL

                  ..........................................................

(PERCENTAGE OF VALID DATA) N 0.10 0.00 0.06 0.00 0.00 0.00 0.00 0.00 0.00 0.16 NNE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 NE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ENE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0 ,00 E 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ESE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 SE 0.16 0.06 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.22 SSE 0.70 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.c0 0.73 i S 0.32 0.06 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.38 SSW 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 SW 0.03 0.03 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.10 WSW 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 W 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.03 WNW 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 NW 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.03 NNW 0.03 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.03 TOTAL 1.50 0.19 0.10 0.00 0.00 0.00 0.00 0.00 0.00 1.79 ..................i................................................. CALM WINDu 55(1.76% OF VALID DATA) i B-47

HAZLETON ENVIRONMENTAL CCISNCE3 JOINT FPEQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL 'D A T A JANUARY . JUNE 1980 ALL OBSERVATIONS .............................. ..................................... WIND SPEED (MPH) WIND ................................................... DIRECTION 14 48 0 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

              ...............................,..........................

(PERCENTAGE OF VALID DATA) , N 0.32 1,39 2.71 3.10 1.32 0,34 0.00 0.00 0.00 9.18 NNE 0.27 0.78 1,76 2.54 0.71 0.20 0.00 0.00 0.00 6.25 NE 0.24 0.66 2.22 1.03 0.20 0.05 0.00 0.00 0.00 4.42 ENE 0.46 0.88 1,44 1.00 0.24 0.00 0.00 0.00 0.00 4.03 j E 0.32 1.07 1.51 1,29 0,49 0.07 0.00 0.00 0.00 4.76 ESE 0.37 1.76 2.81 2.27 0.44 0.17 0.05 0.00 0.00 7.86 SE 0.24 0.73 2.86 2.74 0.63 0.10 0.00 0.00 0.00 7.30 SSE 0.39 1.03 2.00 2.03 0.85 0.37 0.02 0.00 0.00 6.69 3 0.22 0.56 1.78 2.42 2.10 1.54 0.12 0.00 0.00 8.74 SSW 0.32 0.78 1.78 1.83 0.61 0.66 0.02 0.00 0.00 6.01 Sw 0.46 0.76 1.12 1.07 0.29 0.05 0.00 0.00 0.00 3.76 WSW 0.34 0.85 0,59 0.66 0.17 0.05 0.00 0.00 0.00 2.66 W 0.42 0.73 0.88 0.42 0.27 0.10 0.00 0.00 0.00 2.81 WNW 0.42 1.00 1.68 1.42 0.73 0.42 0.02 0.00 0.00 5.69 NW 0,17 1.00 2.03 1,66 1,42 0.81 0.32 0.00 0.00 7.40 NNW 0.54 1.76 3.03 3.39 1.66 0.98 0.12 0.00 0.00 11.48 TOTAL 5.49 15.78 30.21 28.86 12.14 5.89 0.68 0.00 0.00 99.05 .................................................................... M A X t MilM s 38.0 CALM WIND: 39( 95% OF VALID DATA) VALID OBSERVATIONS =4095( 95.4% OF TOTAL) TOTAL DATA COLLECTED (HOURS) = 4293 B-48

HAZLETON GNVIRONMENTAL GCIONC23 JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY = JUNE 1980 EXTREMELY UNSTABLE

 ....................................................................

WIND SPEED (MPH) WIND ................................................... DIRECTION 14 48 8 13 13 19 19 25 25 32 32 39 39=45 >45 TOTAL

            ..........................................................

(PERCENTAGE OF VALID DATA) N 0.10 0.29 0.90 0.98 0,54 0.05 0.00 0.00 0.00 2.86 NNE 0.07 0.17 0.34 0.56 0.05 0.00 0.00 0.00 0.00 1.20 , NE 0.05 0.17 0.15 0.05 0.00 0.00 0.00 0.00 0.00 0.42 $ ENE 0.10 0.10 0.29 0.05 0.00 0.00 0.00 0.00 0.00 0.54 E 0.17 0.39 0.17 0.05 0.00 0.00 0.00 0.00 0.00 0.78 ESE 0.02 0.27 0.07 0.10 0.00 0.00 0.00 0.00 0.00 0.46 SE 0.05 0.15 0.29 0.12 0.05 0.02 0.00 0.00 0.00 0.68 SSE 0.05 0.22 0.15 0.12 0,05 0,05 0.00 0.00 0.00 0.63 S 0.02 0.05 0.20 0.10 0.24 0.07 0.00 0.00 0.00 0.68 SSW 0.12 0.10 0.22 0.20 0.07 0.12 0.00 0.00 0.00 0.83 SW 0.12 0.00 0.05 0.05 0.02 0.02 0.00 0.00 0.00 0.27 WSW 0.07 0.20 0.10 0.07 0.00 0.00 0.00 0.00 0.00 0.44 W 0.20 0.29 0.20 0.07 0.10 0.00 0.00 0.00 0.00 0.85 WNW 0.10 0.20 0.34 0.27 0.17 0.07 0.00 0.00 0.00 1.15 NW 0.05 0.32 0.71 0.32 0.56 0.10' O.00 0.00 0.00 2.05 NNW 0.10 0,51 1.22 1.22 0.83 0.27 0.00 0.00 0.00 4.15 TOTAL 1,39 3.42 5.40 4.32 2.69 0.78 0.00 0.00 0.00 18.00

 ....................................................................

CALM WIND = 7( 17% OF VALID DATA) I B-49 i

                                                                       .

(

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_ - _ - _ _ _ _ - _ _ _ _ _ - _ _ _ _ _ _ - _ -

                                                                                                                           . .

HAZLETON CNViAONMENTAL CCIENCES JOINT FRE00ENCY OF OCCURRENCE UT WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT )

 ,

COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY = JUNE 1980 MODERATELY UNSTABLE

     ....................................................................

WIND SPEED (MPH) WIND ................................................... DIRECTION 14 4=8 8=13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

                  ..........................................................

(PERCENTAGE OF VALID DATA) N 0.00 0.05 0.42 0.46 0.12 0.02 0.00 0.00 0.00 1.07 j NNE 0.02 0.02 0.15 0.22 0.07 0.00 0.00 0.00 0.00 0.49 NE 0.02 0.05 0.07 0.05 0.00 0.00 0.00 0.00 0.00 0.20 ENE 0.00 0.02 0.05 0.00 0.00 0.00 0.00 0.00 0.00 0.07 E 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 ESE 0.02 0.24 0.15 0.07 0.00 0.00 0.00 0.00 0.00 0.49 SE 0.05 0.00 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.20 SSE 0.02 0.05 0.07 0.17 0.05 0.02 0.00 0.00 7,00 0.39 5 0.00 0.00 0.02 0.15 0.24 0.22 0.00 0.00 0.00 0.63 SSW 0.00 0.05 0.00 0.02 0.05 0.02 0.00 0.00 0.00 0.15 SW 0.05 0.02 0.02 0.07 0.02 0.00 0.00 0.00 0.00 0.20 WSW 0.05 0.00 0.05 0.02 0.00 0.00 0.00 0.00 0.00 0.12 W 0.05 0.05 0.00 0.00 0.07 0.00 0.00 0.00 0.00 0.17 WNW 0.02 0.00 0.00 0.05 0.00 0.00 0.00 0.00 0.0.0 0.07 NW 0.00 0.05 0.05 0.00 0.00 0.07 0.02 0.00 0.00 0.20

   .

NNW 0.00 0.10 0.20 0.22 0.15 0.07 0.10 0.00 0.00 0.83 TOTAL 0.32 0.81 1,29 1,61 0.78 0.44 0.12 0.00 0.00 5.37 <

     ........ ...........................................................

CALM WINDS O( 00% OF VALID DATA) l I ! B-50

- i HAZLGTON CNVIRONMENTAL SCIENC'20 JOINT FRE00ENCY OF OC"URRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY . JUNE 1980 SLIGHTLY UNSTABLE

    ....>...............................................................

WIND SPEED (MPH) WIND f DIRECTION................................................... 14 48 8 13 13 19 19 25 2S=32 32 39 39 45 >45 TOTAL i

                ..........................................................

(PERCENTAGE OF VALID DATA) j N 0.00 0.10 0.12 0.20 0.07 0.02 0.00 0.00 0.00 0.51 NNE 0.00 0.02 0.12 0.34 0.07 0.00 0.00 0.00 0.00 0.56 NE 0.00 0.05 0.24 0.15 0.00 0.00 0.00 0.00 0.00 0.44 ENE 0.02 0.05 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.22 E 0.00 0.02 0.22 0.12 0.00 0.02 0.00 0.00 0.00 0.39 ESE 0.02 0.15 0.17 0.07 0.00 0.00 0.00 0.00 0.00 0.42 SE 0.00 0.05 0.15 0.24 0.00 0.00 0.00 0.00 0.00 0.44 SSE 0.02 0.05 0.12 0.12 0.00 0.00 0.00 0.00 0.00 0.32 S 0.02 0.00 0.05 0.22 0.34 0.05 0.00 0.00 0.00 0.68 SSW 0.02 0.05 0.20 0.17 0.10 0.10 0.00 0.00 0.00 0.63 SW 0.05 0.07 0.00 0.10 0.00 0.00 0.00 0.00 0.00 0.22 WSW 0.07 0.05 0.02 0.02 0.02 0.00 0.00 0.00 0.00 0.20 W 0.02 0.00 0.00 0.02 0.00 0.00 0.00 0.00 0.00 0.05 UNW 0.00 0.02 0.10 0.05 0.00 0.02 0.00 0.00 0.00 0.20 NW 0.00 0.05 0.10 0.07 0.07 0.10 0.15 0.00 0.00 0.54 NNW 0.05 0.12 0.17 0.27 0.10 0.05 0.00 0.00 0.00 0.76 TOTAL 0.32 0.05 1.83 2.27 0.78 0.37 0.15 0.00 0.00 6.57

 ....................................................................

CALM WINDu 1( 02% OF VALID DATA) B-51 l i .

          .
            . _ - l _. .   .
                                                                         -

_ _ _ _ _ _ _ _ _ _ _ _ _ - _ HAZLETON GNVIRONMENTAL CCCNC'!Q JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY . JUNE 1980 NEUTRAL .................................................................... WIND SPEED (MPH) WIND ................................................... DIRECTION 14 4=8 8 13 13 19 19 25 25=32 32 39 39 45 >45 TOTAL

             ..........................................................

(PERCENTAGE OF VALID DATA) N 0.12 0.51 0.85 1.27 0.56 0.24 0.00 0.00 0.00 3.57 I NNE 0,00 0.42 0.93 1.15 0.46 0.20 0.00 0.00 0,00 3.15 l 1 NE 0.05 0.24 1,51 0.71 0.20 0.05 0.00 0.00 0.00 2.76 EME 0.24 0.29 0,66 0.61 0.24 0.00 0.00 0.00 0.00 2.05 E 0.05 0.22 0.56 0.98 0.42 0.05 0.00 0.00 0.00 2.27 ESE 0.10 0.56 1.07 1.27 0.32 0,a2 0.05 0.00 0.00 3.49 SE 0.10 0.27 1.03 1.27 0.27 0.07 0.00 0.00 0.00 3.00 SSE 0.15 0.32 0.51 0.46 0.24 0.17 0.02 0.00 0.00 1.88 5 0.07 0.22 0.59 0.51 0.54 0.90 0.12 0.00 0.00 2.95 SSW 0.05 0.24 0.54 0.59 0.29 0.32 0.00 0.00 0.00 2.03 SW 0.12 0.15 0.32 0.44 0.05 0.02 0.00 0.00 0.00 1.10 WSW 0.10 0.27 0.15 0.12 0,10 0.02 0.00 0.00 0.00 0.76 W 0.10 0.15 0.34 0.07 0.02 0.02 0.00 0.00 0.00 0.71 WNW 0.20 0.29 0.63 0.56 0.32 0.27 0.02 0.00 0.00 2.30 NW 0.05 0.22 0.66 0.51 0.51 0.54 0.15 0.00 0.00 2.64 NNW 0.17 0.46 0.85 1.12 0.46 0.59 0.02 0.00 0.00 3.69 TOTAL 1.66 4.84 11.21 11.65 5,01 3.59 0.39 0.00 0.00 38.34 , e

....................................................................

l CALM wINDu 18( 44% OF VALID DATA) l J i B-52 _- -_ - _ _ _ - _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ -

-- HAZLETON CNVIRONMENTAL CCIENC2O JOINT FREQUENCY OF OCCUNRENCE OF WIND SPEED (MPM) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY - JUNE 1980 SLIGHTLY STABLE

   ....................................................................

WIND SPEED (MPH) WIND

               ...................................................

DIRECTION 14 48 8 13 13=19 19 25 25 32 32 39 39 45 >45 TOTAL

               ..........................................................

l (PERCENTAGE nF VALID DATA) i N 0.02 0.22 0.32 0.20 0.02 0.00 0.00 0.00 0.00 0.78 NNE 0.07 0.10 0.12 0.27 0.05 0.00 0.00 0.00 0.00 0.61 NE 0.07 0.10 0.22 0.07 0.00 0.00 0.00 0.00 0.00 0.46 f i ENE 0.00 0.20 0.29 0.24 0.00 0.00 0.00 0.00 0.00 0.73 E 0.02 0.27 0.44 0.15 0.07 0.00 0.00 0.00 0.00 0.95 ' ESE 0.10 0.24 1.07 0,63 0.10 0,05 0.00 0.00 0.00 2.20 l SE 0.02 0.20 1.15 0.68 0.22 0.00 0.00 0.00 0.00 2.27 SSE 0.07 0.12 0.71 0.90 0.44 0.12 0.00 0.00 0.00 2.37 S 0.05 0.12 0.49 1.10 0.71 0.29 0.00 0.00 0.00 2.76 SSW 0.02 0.20 0.15 0.32 0.10 0.10 0.02 0.00 0.00 0.90 SW 0.02 0.17 0.32 0.24 0.12 0.00 0.00 0.00 0.00 0.88 WSW 0.02 0.17 0.12 0.34 0.05 0.02 U.00 0.00 0.00 0.73 W 0.00 0.10 0.05 0.00 0.07 0.07 0.00 0.00 0.00 0.49 WNW 0.00 0.29 0.29 0 . 2"i 0.22 0.05 0.00 0.00 0.00 1.12 NW 0.07 0.22 v.29 0.66 0.24 0.00 0.00 0.00 0.00 1.49 NNW 0.07 0.12 0.39 0.51 0.12 0.00 0.00 0.00 0.00 1.22 TOTAL 0.66 2.83 6.42 6.79 2.54 0.71 0.02 0.00 0.00 19.98

  ....................................................................

CALM WIND 8( 204 0F VALID DATA) B-53 L _ _ - _ _ _ _ _

HAZLMON CNVIRONM2NTAL CCIENC12G JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY = JUNE 1980 MODERATELY STABLE .................................................................... WIND SPEED (MPH) WIND ................................................... DIRECTION 14 48 8 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

          ..........................................................

(PERCENTAGE OF VALID DATA) N 0.05 0.12 0.07 0.00 0.00 0.00 0.00 0.00 0.00 0.24 NNE 0.02 0.02 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.15 NE 0.05 0.02 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.07 ENE 0.05 0.12 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.27 E 0.00 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.15 ESE 0.02 0.10 0.20 0.12 0.02 0.00 0.00 0.00 0.00 0.46 l SE 0.00 0.07 0.15 0.27 0.10 0.00 0.00 0.00 0.00 0.59 SSE 0.00 0.02 0.37 0.20 0.05 0.00 0.00 0.00 0.00 0.63 5 0.02 0.05 0.34 0.27 0.02 0.00 0.00 0.00 0.00 0.71 SSW 0.07 0.12 0.39 0.39 0.00 0.00 0.00 0.00 0.00 0.98 SW 0.05 0.20 0.22 0.10 0.07 0.00 0.00 0.00 0.00 0.63 WSW 0.02 0.07 0.07 0.07 0.00 0.00 0.00 0.00 0.00 0.24 W 0.00 0.10 0.12 0.05 0.00 0.00 0.00 0.00 0.00 0.27 WNW 0.05 0.10 0.20 0.22 0.02 0.00 0.00 0.00 0.00 0.59 NW 0.00 0.05 0.15 0.10 0.02 0.00 0.00 0.00 0.00 0.32 NNW 0.12 0.24 0.12 0.05 0.00 0.00 0.00 0.00 0.00 0.54 TOTAL 0.54 1.47 2.69 1.83 0.32 0.00 0.00 0.00 0.00 6.84 .................................................................... CALM WINDS 5( 124 0F VALID DATA) B-54

_ _ _ _ _ _ _ _ _ _ _ _

                                                                                                            ,

HAZLMON CNVIRONMENTAL CCIENC23 JOINT FREQUENCY OF OCCURRENCE OF WIND SPEED (MPH) AND WIND DIRECTION CLASS (318 FT ) COOPER NUCLEAR STATION METEOROLOGICAL DATA JANUARY . JUNE 1980 EXTREMELY STABLE .................................................................... WIND SPEED (MPH) WIND ................................................... DIRECTION 14 48 8 13 13 19 19 25 25 32 32 39 39 45 >45 TOTAL

             ..........................................................

(PERCENTAGE OF VALID DATA) N 0.02 0.10 0.02 0.00 0.00 0,00 0.00 0,00 0.00 0.15 NNE 0.07 0.02 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.10 NE 0.00 0.05 0.02 0.00 0.00 0,00 0.00 0.00 0.00 0.07 ENE 0.05 0.10 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.15 E 0.07 0.02 0.02 0.00 0.00 0.00 0.00 0.00 0.00 0.12 ESE 0.07 0.20 0.07 0.00 0.00 0.00 0.00 0.00 0,00 0.34 SE 0.02 0.00 0.05 0.05 0.00 0.00 0.00 0.00 0.00 0.12 SSE 0.07 0.24 0.07 0.05 0.02 0.00 0.00 0.00 0.00 0.46 S 0.02 0.12 0.10 0.07 0.00 0.00 0.00 0.00 0.00 0.32 SSW 0.02 0.02 0.29 0.15 0.00 0.00 0.00 0,00 0.00 0.49 SW 0.05 0.15 0.20 0.07 0.00 0.00 0.00 0.00 0.00 0.46 WSW 0,00 0,10 0.07 0.00 0.00 0.00 0.00 0.00 0.00 0.17 w 0.05 0.05 0.17 0.00 0.00 0.00 0.00 0.00 0.00 0.27 WNW 0.05 0.10 0.12 0.00 0,00 0.00 0.00 0.00 0.00 0.27 NW 0.00 0.10 0.07 0.00 0.00 0.00 0.00 0,00 0.00 0.17 NNW 0,02 0.20 0,07 0.00 0.00 0.00 0.00 0.00 0.00 0.29 TOTAL 0.61 1,56 1.37 0.39 0.02 0,00 0.00 0.00 0.00 3.96

....................................................................

CALM WINDS O( 00% OF VALID DATA)' B-55 is.-, .__

                                      !

l

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HAZLETON CNVIRONMZNTAL CCIENCZ) APPENDIX C Radiological Dose Calculation from Airborne Sources I

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_ _ _ _ _ _ _ _ - _ . HAZLETON ENVIRONM2NTAL CCENCZO TABLE OF C0fiTENTS Page Definitions ........................................................... C-3 Arrangement of Data Analysis Tables ..................-................ C-5 i l i 1 1 I, 1 i i I I I C-2

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HAZLETON LNVIRONMZNTAL EClZNC2D Definitions Five types of tables are presented in this section: . predicted concentration-to-emission ratios, individual radiation doses for selected sites, radiation doses for the ALARA population, radiation doses for the NEPA population, and predicted gamma radiation dose.

          -The tables of predicted concentration to emission ratios were generated using the Computer Model X0QD0Q discussed in Appendix D. Predicted concentration-to-emission ratios are given for 22 distances and 16 compass points. centered on the Cooper Nuclear Power Plant. Tables are presented for ;

the vent stack and elevated release options separately, and the following time periods: January-March, April-June, and January-June 1980. The individual radiation doses at selected points were generated using the GASPAR computer model discussed in Appendix D. Two sites were , selected for each quarts!rly period based on the predicted gamma radiation dose table; the two highest locations outside the plant boundary for each quarter are given. Radiation dose is given for total body, gastrointestinal-tract, bone, liver, kidney, thyroid, lung, and skin by 7 pathways and 4 age groups. Tables of radiation dose to the ALARA (As Low As Reasonably Achiev-able) population within 50 miles of the plant, and the NEPA (National Envi-ronmental Policy Act) population of the continental United States were g:nerated using the GASPAR computer model. Tables are presented for each quarter covered by this report, and are combined vent stack and elevated releases. Radiation doses to the 8 body components given above are given for / pathways, for individual isotopes by pathway, and a total for each isotope. C-3

__ _ - -____ - _ - MA2LETON CNVIptONM2NTAL CCl!NCJD . The tables of gamma radiation dose were generated using the GASPAR computer model. The tables are for a combined vent stack and elevated release, and cover the same points and periods as the. concentration-to-emission ratio tables. s

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_ _ _ _ _ _ - HAZLETON CNVIRONMZNTAL CCGNC2'3 LIST OF TABLES

                                          . Title                                               Page X/Q ( sec/m3) , vent stack rel ease, fi rst qua rter 1980 . . . . . . . . . . . . . . . . . . C-7 X/Q ( sec/m3) , el evated rel ease point , fi rst qua rter 1980 . . . . . . . . . . . . . . C-8 X/Q ( sec/m3) , vent stack rel ease, second quarter 1980 .... .. . . ... ... . . . C-9 X/Q ( sec/m3) , elevated release point, second quarter 1980 . .. . . . .... ... C-10 X/Q ( sec/m3), vent stack release, first semi-annual period,1980 ...... C-11 X/Q (sec/m3), elevated release point, first semi-annual period,1980 .. C-12 Combined release doses by source at 0.5 miles N, first quarter 1980 ... C-13 Combined release doses by source at 0.75 miles NNW, first quarter 1980                       C-14 ALARA summary of popul ation dose, fi rst qua rter 1980 . . . . . . . . . . . . . . . . . . C-15 ALARA summary of population dose by plume, first quarter 1980 ......... C-16 ALARA summary of population dose by ground, first quarter 1980 ........ C-17 ALARA- summary of population dose by inhalation, first quarter 1980 .... C-18 ALARA summary of population dose by vegetation, first quarter 1980 .... C-19 ALARA summary of population dose by cow milk, first quarter 1980 ...... C-20 ALARA summary of population dose by meat, first quarter 1980 .......... C-21 ALARA summary of population dose total, first quarter 1980 ............ C-22 NEPA summary of popul ation dose, fi rst quarter 1980 . . . . . . . . . . . . . . . . . . . C-24 NEPA summary of population dose by plume, first quarter 1980 .......... C-25 NEPA summary of population ' dose by ground, first quarter 1980 ......... C-26 NEPA summary of population dose by inhalation, first quarter 1980 ..... C-27 NEPA summary of population dose by vegetation, first quarter 1980 ..... C-28
 ' NEPA summary of population dose by cow milk, first quarter 1980 ....... C-29 NEPA summary of population dose by meat, first quarter 1980 ........... C-30 NEPA summary of population dose total , fi rst , quarter 1980 . . . . .. . ... ... C-31
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_ - _ _ _ _ - _ - _ - _ _ _ _ _ _ _ _ _ _ . . .. HAZLETON ENVCONM3NTAL. CCCNC2] LIST OF TABLES Title Page Vent release doses by source at 0.5 miles N second quarter 1980 ....... C-33 l

  ' Vent release doses by source at 0.75 miles NNW second quarter 1980 .... C-34 ALARA summary of population dose, second quarter 1980 .. . . . . .... . .. .. .. C-35                                                   i i

ALARA summary of population dose by plume, second quarter 1980 ........ C-36 ALARA summary of population dose by ground, second quarter 1980 ....... C-37 ALARA summary of population dose by inhalation, second quarter 1980 ... C-38 ALARA summary of population dose by vegetation, second quarter 1980 ... C-39 ALARA summary of population dose by cow milk, second quarter 1980 ..... C-40 ALARA summary of population desa by meat, second quarter 1980 ......... C-41 ALARA summary of population dose total, second quarter 1980 ........... C-42 i NEPA summary of popul ation dose, second qua rter 1980 . . . . . . . . . . . . .. . . . . C-44 I NEPA summary of population dose by plume, second quarter 1980 ......... C-45 NEPA summary of population dose by ground, second quarter 1980 ........ C-46 NEPA summary of population dose by inhalation, second quarter 1980 .... C-47 NEPA summary of population dose by vegetation, second quarter 1980 .... C-48 hEPA summary of population dose by cow milk, second quarter 1980 ...... C-49 NEPA summary of population dose by meat, second quarter 1980........... C-50 NEPA summary of population dose total, second quarter 1980 ............ C-51 Predicted gamma dose values (millirad), combined release point, f i rs t qu a rt e r 19 80 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . C-53 Predicted gamma dose values (millirad), combined release point, second quarter 1980 .................................... C-54 l Predicted gamma dose values (millirad), combined release point, I fi rst semi-a nnual pe ri od 1980 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . C-55

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COOPER kuCLEAR STAT 10N I VENT RE'.F ASE POINF / FIRST QUAR 7ER 1980 NO DEC47 UNDEPLETFD CORREC?ED FCn nPEN TEbpAIN RECIRCULATION ANNUAL AVERAGE CH1/0 ISEC/NE7ER CUBED) DISTANCE IN MILES SECTOR 0.250 0.500 0.750 1.000 1.500 2.002 2.500 3.000 3.500 4.000 4.500 S 3.082r=05 1.26tE=05 1.136E=06 3.630E Gt 1.434E=06 7.607E=07 4.732E=O7 3.249E=07 2.384E-07 8.835t=07 1.464E=07 88W l.661E=05 6.929E=06 3.935E*06 2.00tE=06 7.896E=0? 4.194E=07 2.613E=0? 1.797E=07 1.32tE=07 1.0tSE=07 0.135E=08 Sh 1.3tSE=05 4.919E=06 2.639E=06 1.305E*06 4.999E=07 2.606E=07 1.60lE=07 1.088E=07 7.988E=08 6.052E=08 4.798E=08 WSW l.074E=05 3.829E=06 2.016E=06 9.885E*07 3.779E-07 1.975E=07 1.218E-07 8.312E=08 6.076E*08 4.665E=08 3.794E=08 u 1.24*E=06 3.ltlE=06 1.153E=06 8.864E=07 3.475E=07 1.837E=J7 1.14tE=07 7.818E=06 5.730E=08 4.401E-00'3.511E=08 kWW 3.410E=05 5.632E=06 3.140E*06 1.58tE=06 6.176E=07 3.26fE=07 2.031E=07 1.395E=07 1.025E=07 7.896L=08 6.307E=08 37 NW 2.658E=05 1.153E=05 7.326E=06 4.002E=06 1.782E=06 9.560E=07 6.178E=07 4.372E-07 3.295E=07 2.589E=07 2.805L-07 ) NNW 2.189E=05 1.190E=05 8.400E=06 4.887E=06 2.tSSE=06.1.25tE-06 0.065E=07 5.765E=07 4.372E=07 3.460L=07 2.820E=07 N N 3.015E-05 1.392E=05 8.610E=06 4.592E-06 1.912E=06 1.052E=06 6.725E=07 4.72tE=07 3.53tL=07 2.763E-07 2.237E*07 F" hME 1.35tE=05 6.012E=06 3.674E=06 8.946E=06 8.030E-07 4.388E=07 2.79tE=07 1.952E=07 8.455E=07 1.135E=07 9.164E=08- M "O NL 1.065E=05 4.947E=2' 2.925E=06 1.512E=06 6.090E=07 3.280E*07 2.066E=07 1.433E*07 1.062E=07 8.239E=08 6.623E-08 ENE 8.987E=06 3.682E=06 2.055t=06 1.047E*06 4.372E=07 2.235E=07 1.404E=07 9.724E=08 7.194E=08 5.580E=08 4.483E-08 0 E 9.099E=06 3.684E*06 2.119E=06 1.086E-06 4.357E=07 2.347E=07 1.48tE=07 1.029E-07 7.637E.00 5.930E=08 4.782E=08 2 ESE 1.425E=05 6.546E=06 3.878E=06 2.000E=06 0.088E=07 4.355E=07 2.742E=07 1.902E=07 3.408E=07 1.091E=07 8.779E-08 g SE 1.661E=05 7.259E=O6 4.224E=06 2.172E=06 8.7tlE=07 4.678E=07 2.940E=07 2.036E=07 1.506E=07 1.167E=07 9.368E=08 2 SSE 2.997E=05 1.210E=05 A.796E=06 3.449E*06 1.365E=06 7.269E=07 4.540E=07 3.129E=07 2.304E=07 1.179E=07 1.424E*0, b n c, O e ANNUAL AVERAGE CHI /O (SEC/NFTER CUSED) 7 'd DISTANCE IN MILES SEARING 5.000 7.500 10.000 15.000 20.000 25.000 30.000 35.000 40.000 45.000 50.000 s M S 1.202E=07 5.993E=08 3.799E=08 2.115E=08 1.406E=08 1.026E=08 7.952E=09 6.416E=09 5.333E=09 4.534E=09 3.923E=09 2 SSW 6.644E=08 3.337E=08 2.lt7E*08 1.t?9E=08 7.810E=09 5.78tE=09 4.419E=09 3.56tE=09 2.957E=09 2.580E-09 2.169E=09 -4 SW 3.9tSE=04 3.900E=08 1.181E-08 6.39tE=09 4.165E=09 2.994E-09 2.289E=09 1.826E=09 1.503E=09 1.266E+09 1.087E=09 M WSu 3.044F.=08 1.500E=08 9.536E=09 5.317E*09 3.562E-09 2.618E=09 2.040E=09 1.654E-09 1.183E=09 1.178E=09 1.023E=09 I" h 2.882E=08 1.43tE=08 9.048E=09 5.009E=09 3.309E-09 2.404E=09 1.054E=09 1.491E=09 1,234E=09 1.046L=09 9.024E=10 yl thw 5.183E=08 2.594L-08 1.650E=08 9.220E=09 6.150E=09 4.499E=09 3.490E-09 2.819E-09 2.344E=09 1.994E=09 1.125E=09 O Nw I.757E=07 9.300E=08 6.148E=08 3.624E=08 2,499E=08 8.877E-08 1.488E=08 1.223E=08 1.033E-08 8.902E=09 7.79EE=09 -- E kNw 2.370E=07 1.274E=07 8.50tE=0E 5.072E=08 3.526E=08 2.664E=08 2.120E=08 t.750E-08 1.483E=08 1.28tE=08 1.125E=08 2

         >  1.059E-07 9.701E=08 6.35tE=08 3.694E=08 2.52eE=08 1.885E=0B 1.486E=08 1.216E=08 1.023E=0B a.785E=09 7.670E=09 NME    7.599E=08 3.930E=08 2.558E=08 1.477E=08 1.00EE-08 7.482E=09 5.883E=09 4.006E=09 4.036E=09 3.462L=09 3.019E=09                           O NE   5.475E=08 2.798E=08 1.006E=0B 1.030E-OR 6.940L=09 5.122E-09 4.002E=09 3.251E=09 2.787E=09 2.32tL=09 2.036E=09                           M ENE    i.795E=08 8.896E=08 1.226E=0B 1.030E=09 4.177E=09 3.540E=09 2.187E=09 2.274E-09 1.909E=09 1.636L=09 1.427E=09                           UI E  3.957E*08 2.035L=08 1.320E=08 7.585E=09 5.148E=09 3.820E=09 2.990E-09 2.444E=09 2.050E=09 1.756E=09 1.529E-09 ESE    7.248E=08 3.686E=08 2.370E*08 1.344E=08 9.027E-09 6.643E=09 5.177E=09 4.197E=09 3.502E=09 2.986E*09 2.590E-09 SE   7.729E-08 3.923E=08 2.519E=08 1.427E=08 9.577E=09 7.046E=09 5.49tE=09 4.45tE=09 3.714t=09 3.167E=09 2.748E=09 SSE    1.172t*07 5.9078-08 3.'e76E*0 0 2.126E=08 3.424E=08 1.046E*04 8.140E=09 6.594E=09 5.499E=09 4.688E=09 4.067E-09

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C00 PEN NUCLEAR STATION a ELEVATED RELEASE POINT / FlpST QUARTER 1980 CopMIC7ED E08 OPEN TERDAIN BFCIRCULATION WO DECAY, UNDEPLETED h ANNUAL AVENAct CN!/Q tsEC/NFTER CUSED) DISTANCE IN MILES SECTOR 0.250 0.500 0.750 1.000 1.500 2.000 2.500 3.000 3.500 4.000 4.500

        $  1.644F=05 5.03nE=06 2.521E-06 1.220E=06 4.600E=07 2.473E=07 1.543E=07 1.066E-07 7.869E=08 6.098E=08 4.897F=08 88u   1.n50E=05 3.268t-06 1.634E=06 7.86tE=07 2.958E=07 1.538E-07 9.484t=08 6,486E=08 4.75)E=08 3.659E=08 2.927t=0e Su  6.59tE=06 2.153E=06 1.090E+06 5.270L=07 2.010E-07 1.064E=07 6.664E=08 4.616E=08 8.417E=08 2.652E=04 2.13tE=08 uSW   7.997E=06 2.657t=06 1.360E=06 6.667E=07 2.635E-07 1.440E=07 9.244E=08 6.52tE*08 4.895E=00 3.839E=00 3.ll2E=08 W  6.576E=06 2.034E=06 1.006E-06 4.045E-07 3.856E-07 9.77tE=08 6.071E=08 4.178t=08 3.076E=08 2.377E=08 1.904E=08 WNm   1.604E=05 5.950E-06 2.685E=06 1.327E=06 5.552E-07 2.744E=07 1.725E=07 1.199E-07 8.917E=J8 6.95tE=08 5.613E=09                                                                   I NW  1.055E=05 3.M70E=06 1.e6tE=06 9.10eE-07 3.476L-07 3.822E=07 1.128E=07 7.73tE=00 5.673E=0g 4.367E-os 3.487L-08                                                                   D NNw   t.188E=05 3.995E=06 2.129E=06 1.G62E-06 4.165E=07 2.227E=07 1.400E=07 9.724E-08 7.285E=08 5.6824.=08 4.522L=08                                                                  N N  1.4%t=05 4.90?E=06 2.60lE-06 1.294E=06 5.079E=07 2.73tE=07 1.720E=07 1.207E=07 8.993E=08 7.02tE=08 5.674E-08                                                                    I NME   1.143E=05 3.026E=06 2.009E=06 9.942E=07 3.903E=07 2.101E-07 1.332E=07 9.Ji9E=08 6.96tE=08 5.447E=08 4.413E-08 NE   t.2tlE=05 4.044E=06 2.167E=06 1.097E=06 4.423E-07 2.419E=07 1.550E=0? 1.093E=07 8.218E=08 6.465fp08 5.268L=00 ENE   7.838E=06 2.566E=06 1.362E=06 6.850E-07 2.757E=07 1.509E=07 9.604E-08 6.036E=08 5.84tE=0B 4.044E=08 1.2898-08                                                                   0 E  6.745E=06 2.200E-06 1.339E-06 5.637E=07 2.27tE=07 1.252E=07 8.082E=08 5.728E=08 4.318E=08 3.430E=00 2.766E-00                                                                   2 ESE   1.009t =05 3.418E=06 1.790E=06 8.864E-07 1.528E=0? 1.9265-07 1.234E=07 8.696E-00 6.526E-08 5.12tE-08 4.154f-08                                                                  m SE   1.19 t t.=05 J. 8 0 3 E=06 1.996E=06 9.726E=07 3.758E=07 2.002E=C7 1.259E=07 0.745E=08 6.49tE=08 5.049E-00 4.067E=08                                                            7 SSIC  2.160E=05 6.735E-06 3.442E*06 1.608E=06 6.606E=07 3.557E=07 2.257E=07 1.503E=07 1.102E=07 9.256E=00 7.504E=08                                                                   g
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D m O 3 ANNUAL. AVERAGE CHI /O (SEC/NETER CUBED) Z W DISTANCE IN MILES BEARING 5.000 1.500 10.000 15.000 20.000 25.000 30.000 35.000 40.000 45.000 50.000 g 3 4.040E=08 2.08tE=08 1.153E=08 7.837E=09 5.364E-09 4.cogE=09 3,167E=09 2.597E=09 2.189E=09 1.884E=09 8.640E-09 2 88W 2.404E=08 1.213E=08 7.769E=09 4.404E=09 2.974F=09 2.200E=09 3.724E*09 1.405E=09 1.178E=09 1.009t=09 8.79%L-10 d SW t.760E=08 8.944E=09 5.724E-09 3.210E=09 2.137E-09 1.559E-09 1.205E=09 9.703E-10 0.044E-10 6.820L-10 5.886L-10 D h5m 2.500E=05 1.345E=08 8.729E=09 4.987E=09 3.35BE=09 2.473E=09 1.927t=09 1.562L-09 3.302E=09 1.110E=09 9.6240-10 I W t.970E=08 7.983E-09 5.150E=09 2.954E=09 2.019E-09 1.500E=09 1.183E=09 9.706E-to 8.ts7E=to 7.054L=to 6.lenE-to (A WNW 4.661E=08 2.433E=08 1.595E=00 9.312E=09 6.398E=09 4.790E-09 3.784E=09 3.103E=09 2.614E=P9 2.249L-09 1.966E=09 0 hu 2.863E-08 1.428E=08 9.067E=09 5.056E=09 3.358E=09 2.450E=09 1.997E-09 1.529L-09 1.269E=ws 3.078E-09 9.315 Lalo g NNw 3.746E=08 1.934E=08 1.259E-08 7.28mE=09 4.965E-09 3.697t=09 2.980E-09 2.379E-09 2.000E=09 1.717tp09 l.499t=09 N 4.730E=08 2.446L-08 1.595E=00 9.287E=09 6.270E=09 4.658E=09 3.658E-09 2.983E-09 2.502E=09 7.144L-09 1.867t=09 2 NME 3.672E=08 1.929E=08 1.27tE=08 7.481E=09 5.166E=09 3.e85E=09 3.08tE=09 2.535L-09 2.542E-09 1.047L=09 8.6 t e tp0 9 O NE 4.196E=08 2.)(9E=08 1.564E=08 9.325E=09 6.49tE-09 4.909E=09 3.9ttE=09 3.230E=09 2.737E=09 2.367L-09 2.079E=09 E l ENE 2.747E=08 8.460E-08 9.668E-09 5.720L=09 3.969E=09 2.992E=09 2.378E=09 1.958E=09 1.656E=09 l.429t=09 1.251L-09 O E 2.380E=C8 1.224E=08 8.06tE=09 4.705E-09 3.216E=09 2.190E=09 1.888E=09 1.545E-09 1.299E=09 1.115L=09 9.733L-10 E8E 3.450E=08 1.009E-08 1.183E=00 6.850E-09 4.658E-09 3.458E-09 2.784E-09 2,212E=09 8.854E=09 1.588E=09 1.392L-09 SE 3.366fp00 1.720E=08 1.tt?E=08 6.370E=09 4.;93E=09 3.166t=09 2.47tL=09 2.005E=09 1.674t=09 1.428E-09 1.240E-09 SSE 6.250E-08 3.299E=08 2.18tE=00 1.289E=08 8.926E=09 6.726E=09 5.343E=09 4.402E-09 3.724E-09 3.235L=U9 2.819E=09 l l l l l l _ _ _ _ _ - _ _ - _ _ _ _ _ _ _ _ _ .

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COOPER FUCLEAR STATION s VENT BELEASE POINT / SECOND QUARTER 1980 NO DEC47. UNDEPLETED CORDECTED FOR OPEN TEppAIN REclaCULATION ANNUAL AVERAGE CHI /O ISEC/NETER EUGED3 013fANCE IN MILES SECTop 0.250 0.500 0.750 1.000 1.500 2.000 2.500 3.000 3.500 4.000 4.500 3 4.997t=05 2.373E=05 1.476E=05 7.070E=06 3.269E=06 1.793E=06 1.144E=06 0.020E*07 5.990E=07.4.60tE*07 3.705E=07 SSw 2.145t=05 1.16tE=05 6.567E=06 3.329E=06 1.3ttE=06 6.971E=07 4.35tE=07 2.997E=07 2.206t=07 8.704t=07 1.363E=07 SW l.94tE=05 0.037E=06 5.109E=06 2.605E=06 1.026E=06 5.444E=07 3.192E=07 2.333E=07 l.715E=07 1.323E=07 1.057F-07 WSW t.370E=05 6.046t=06 4.010E=06 2.053E=06 0.ll6t=07 4.380E-07 2.694E*07 1.055E=07 8.365E=07 1.053E=07 0.425E=00 w 4.733E=06 2.220E=06 1.207E=06 6.550E*07 2.505E=07 8.373E=07 0.560E=00 5.009E=00 4.330E=00 3.340E=00 2.669E=00 I tNu 1.400E=05 6.104E=06 3.304E=06 1.694E=06 6.560E=07 3.450E=07 2.142E=07 1.467E=07 1.075E*07 0.265E*00 6.590E=00 Nw 1.744E=05 7.922E=06 4.700E=06 2.440E=06 9.03tE=07 S.302E=07 3.345E=07 2.325E=07 1.724E=07 1.340E*07 1.070E=07 ) kNW 3.240E=05 1.501E=05 1.195E=05 7.146E=06 3.327E=06 1.940E=06 1.200E-06 9.296E-07 7.103E=07 5.656E=07 4.647E=07 N n 3.362E*05 1.620E=05 1.132E=05 6.479E=06 2.094E=96 1.652E=06 1.002E=06 7.737E=07 5.060E=07 4.645E=07 3.797E=07 I* M NNE I.230E*05 5.015E=06 3.190E=06 1.763E=06 7.652E=07 4.306E=07 2.796E=07 1.905E-07 8.490E*07 1.181E=07 9.623E=00 "4 NE 1.101E=05 4.266E=06 2.53tE=06 1.347E=06 5.622Ea07 3.090E=07 1.90lE=07 1.394E=07 1.043E=07 8.864E=00 6.612E=00 0 ENE 0.540E=06 4.193E=06 2.4490-06 1.252E*06 4.954E=f 94tE=07 1.65tE=07 1.140E=07 0.402E=00 6.496E=00 5.204E=00 E 7.285E=06 3.557E=06 2.373E=06 1.32tE=06 5.73sE- 10E=07 2.095E=07 1.407E=07 1.122E=07 0.043E=00 7.202E=00 2 E8E I.377E=05 5.000E=06 3.400E=06 1.021E=06 7.439E-t 25E=07 2.549E=07 1.716E=07 1.32SE=07 1.020E=07 0.209E=00 g SE 1.658E=05 5.909E=06 3.316E=06 1.709E=06 6.937E*M 7tE=07 2.194E=07 1.673E=07 1.246E=07 9.725E=00 7.054E=00 7 85E 2.649E=05 1.203E=05 7.040E=06 3.624E=06 1.455E=08 32E=07 4.933E=07 3.424E=07 2.530E=07 1.97tE=07 1.50SE=07 D n O e a.NhUAL AVERACF (. 3 (SFC/>ETFR CUBED) Z M3 .

                                         '

DISTANCE I= NILES SEARING 5.000 7.500 10.000 15.000 20.000 25.000 30.000 35.000 40.000 45.000 50.000 m 3 3.144E*07 8.635E=07 8.C60E=07 6.197E=00 4.287E=00 3.139E=00 2.469E=00 2.0t?E=00 1.694E=00 1.453E=00 1.267E=00 2

                                                                                                                               =4 Saw   1.12tE=07 5.624E=00 3.50lE=00 2.002E=00 1.33tE*00 9.712E=09 7 SteE=09 6.060E=09 5.OllE=09 4.27tE=09 3.690E=09      b su  8.e93E=00 4.357E=00 2.767E=00 1.547E=00 1.030E=00 7.531E=09 f 037E=09 4.780E=09 3.913E=09 3.324E=09 2.074E=09 M5w   F 926E=00 3.464E=00 2.200E=00 1.226E=00 0.147E=09 5.942E=09 4.596E=09 3.70lE=09 3.070E=09 2.604E=09 2.240E*09      I w 2.194E=00 1.095E=00 6.94SE=09 3.064t=09 2.562E=09 1.066E=09 1.442E=09 1.160E*09 9.617E=10 0.153E=10 7.035L-10      m WNu   5.480E=00 2.699E=00 1.712E=00 9.535E-09 6.330E=09 4.617E-09 3.572E=09 2.079E=09 2.309E=09 2.020E=09 1.753E=09      g
                                                                                                                               ==

Nw 0.919F=00 4.560E=00 2.952E=00 1.600E=00 1.14tE=00 9.436E*09 6.600E=09 5.360E=09 4.490E=09 3.030E*09 3.336E=09 E NNu 3.912E=07 2.236E=07 8.440E=07 0.110E=00 6.tt0E=00 4.647E=00 3.720E=00 3.003E=00 2.622E=00 2.27)E=00 2.001E=00 2 N 3.303E=07 8.712E=07 1.144E=07 6.033E=00 4.757E*00 3.590E=00 2.967E=00 2.367E=00 2.007E=00 1.735E=00 1.524E-00 O hhE 0.046E=00 4.292E-00 2.053E=00 1.695E=00 1.177E=00 0.090E-09 7.076E=09 5.039E-09 4.947E=09 4.276E=09 3.755E=09 M NE 5.497E=00 2.07tE=00 1.002E=00 1.097E=00 7.520E=09 5.623E=09 4.442E=09 3.642E=09 3.069E=09 2.64tE=0V 2.31ee=09 W 8.h g 4.205F=00 2.150E=00 1.370E=00 7.743E-09 5.177E=09 3.795E=09 2.940E-09 ?.803E=09 8.902E=09 1.606E=09 1.459E=u9 E 6.087E=00 3.190E=00 2.lt9E=00 1.252E-00 0.645E*09 6.490E=09 5.152E-09 4.237E=09 3.579E=09 3.005E=09 2.703E=09 ESE 6.064E=00 3.532E=00 2.29tE=00 1.316E=00 0.915E=09 6.630E=09 5.202E=09 4.24tE=09 3.556E-09 3.045E=09 2.652E=09 SE 6.516E=00 3.300E=00 2.205E=00 1.270E.00 0.726E=09 6.50SE=09 5.825E=09 4.194E=09 3.520E=09 3.031E=09 2.647E=09 OSE 1.310E=07 6.699E=00 4.325E=00 2.460E=00 1.665E=00 1.230E=08 9.6tlE=09 7.010E=09 6.530E=09 5.570E=09 4.047E=09 i

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D9 A "'

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                                                                                                                                                                         ~
                                                                                                                                              'D                     f
                                                                                                                                               .        l CDOPLR NUCLEAR STATION    ELEVATED NELEASE POINT / SEC0hD QUARTER 1980                                              (y J h0 OECA7. UNOFFLETED
                                                                                                                                  "

d ['" (9/k J3 CoppECTLD FOR OPEN TENRath aECIRCULAfl0N y

                                                                                                                           ,

ANNUAL AVENACE CHt/O (SEC/NETER CUSEDI DISTANCE Ih NILLS 4.000 4.500 1.500 2.000 2.500 3.000 3.500 SECTom 0.250 0.500 0.750 1.000 8 1.250E=05 4.055E=06 2.103r=06 1.034E=06 4.030E=07 2.16tE=0? 1.365E=07 9.522E=00 7.090E=06 5.530E=ce 4.465E=ce 3.56BE=08 see 1.022F=05 3.427E=C6 1.784L=06 0.736E*07 3.355E=07 l.775E=07 1.380E=07 7.696E=0D 5.695L=0S 4.429t*00 3.709E=07 1.997E=07 1.246E=07 5.606E=ce 6.366E=00 4.943E=08 3.940L-08 Ss WSW 1.193E=05 3.9ttE=06 t.168E=05 3.066E=06 2.02%E=06 9.900E=071.032E=06 4 ll2E=07 2.235E*07 3.425E=07 9.999E=0S 7.400E=08 5.856E=08 4.744E 2.057E=06 h 1.302E=05 4.40?E=06 2.306E=06 1.134E=06 4.396E=07 2.343E=07 1.472E=07 1.75tE=07 1.300E=071.022E=0? 1.0llE=07 0.14tE=0S 7.552E=08 5.896L-04I 4.74sE=0 uNu 2.t?0E=05 7.4tlE=06 3.907E=06 1.93tL=06 7.506E=of 4.001E=0? 2.52tE=u7 ) Nu 1.n98E=05 6.544E=06 3.440E*06 1.698L*06 6.594E=07 3.520E=07 2.236E=07 1.540E=07 1.143E=07 0.092L-08 N 7.t&3L-0 NNw l.090F=05 6.200E=06 3.276E=06 1.638L=06 6.527E=07 3.559E=0? 2.278E=07 1.606E=07 1.206E=07 9.479L=0S 7.704L-08 r" N 1.589E=05 5.337E=06 2.812E=06 1.393t=06 5.419E=07 2.087E=07 1.913E*07 1.250E=07 9.32er=08 7.254L-08 RI

                                                                                                                                                                     -4    5.044E=00 NME    1.502E=05 4.960E=06 2.590E=06            1.303E=06 5.168E=07 2.784E=07 1.760E=07 1.220E=07 9.849L=00 1.845L*00 S.780E=07 3.50tE=0? t.903E=07 3.2tlE=07 s.4t9E=0S 6.347E=00 4.967E=00 4.022E=00                                        O 5.775E=08 NE   9.674E=06 3.246E=06 1.144E=06 LNE    6.054E=06 2.027E=06 1.085E=06 5.4 39E=07 2.14 9E=07 1.155E=07 7.2 0 8 E=09 5.072E=0e 3.7 6tE=0 9 2.9 3 3E=0S 2. 364E=ce                                Z E  6.497E=06 2.018E=06 1.071L=06 5.453E=074.920E=07 2.203E=07 1.199E=07 7.642E=08 5.36tE=0B 4.012E=00 3.143E=08 2.549E=0*

2.659E=07 1.686E=07 1.178E*07 8.787E=00 6.863E=08 5.549L-08 g LSE 1.457t=05 4.728E=06 2.495E=06 1.246E=06 3.08tE=07 2.00SE=07 1.319E=07 9.28tE=0e 6.Se0E=08 5.3BIL=0S 4.35eL-08 2 SE 1.190E=05 3.9tSE=06 1.99tE=06 9.804L*07 < SSE 1.460E=05 4.579E=06 2.306E=06 1.146E*06 4.689E=07 2.52eE=07 1.602E*07 1.120E=07 e.356E=08 6.532E=0S 5.2e6E=0e Il O c4 ANNUAL AVERAGE CHt/O (SEC/NETER LUBED) Z e

 "                                                       DISTANCE IN NtLLS 25.000     30.000    35.000      40.000     45.000                        50.000                $

"C3 BEAHING 5.000 7.507 10.000 al.000 20.n00 m Z s 3.70SE=0s 1.923E=0e 1.252E=0e 7.224E=09 ,964E=0942.903E=09 910E=092.337E=09 3.646t=09 2.e63E=09 1.915E=09 2.336t=09 1.613E=09 1.3t?E=09 8.960E=ce 1.212E=093.680E=09 > 1.464t=09

                                                                                                                                                                     =(

SSW 2.956E=08 1.530E=0B 9.980E=09 5.808E=0f Su 3.296E=08 1.707E=08 1.tl6E=0s 6.58tE=09 4.474E=09 3.35tL=09 2.649E=09 2.173E=09 1.03tE=09 1.575E*09 1.377L=09 I" WSu 3.945E=05 2,06tE=08 1.351E*08 7.874E=09 5.402E=09 4.042L*09 3.195E=09 2.622K=09 2.782E=09 1.904L=09 1.667L.09 gg u 3.929E=0S 2.015E=0S 1.303E*05 7.455E=09 5.045E=09 3.735L=09 2.926E=09 2.303E=09 1.997E=09 1.710E=09 g 1.489E=09 WNw 6.74tE=08 3.46tE=0e 2.249E=09 1.29tE=09 8.742E=09 0.479E=09 5.000E=09 4.840E=09 3.47tE=09 2.973E=09 2.509E=09 -- E 2.236t=09 Nw 5.930E=08 3.050E=08 1.975E=08 1.130L=0S 7.640E=09 5.649E=09 4.420E=09 3.595E=09 3.00et=09 2.57tE=o9 2 2.779E=09 NNu 6.427t=00 3.196E=08 2.2 39E=08 1.382E=08 9.Ot?E=09 6.752E=09 5.336E=09 4.378E=09 3.69tE=09 3.177E=09 O N 4.840E=08 2.500F=09 1.629E=0D 9.435E=09 6.449E=09 4.0120 09 3.794E=09 3.106E= 09 2.6 8 45.=09 2.2 46L*09 M 1.962E= NNE 4.79sE=00 2.510E=08 8.652E=08 9.725t=09 6.729E=09 5.070L=09 4.029E=09 3.32tE=09 2. Silt 09 2.427t=09 2.130L=09 NE 3.345E=0S 1.959E=08 3.740L=08 1.012E=08 1.147E=08 6.583E=09 3.799E=096.69AL*09 4.606E=09 2.589E=09 1.928E=09 3.453E=09 1.587E=09 2.734E=09 1,240E=09 1.042L=092.247E=09 8.945L=to 7.806E=10 1.097L=09 1.E15E=09 1.433E= Ul ENE E 2.823E=08 1.12tE=08 7.426E=09 4.480E=09 3.072E=09 2.329t=09 8.8621 09 1.543E=09 1.313E=09 1.140E=09 1.005t=09 ESE 4.608E=09 2.402E=00 1.573E=0S 9.174E=09 6.295E=09 4.713E=09 3.72SE=09 3.0etE=09 2.583E=09 2.22SE=07 1.949E=0 SE 3.625L-08 1.903E=08 1.252E=08 7.343E=09 5.054E=09 3.799E=09 2.990E=09 2.46tE=09 2.075E=09 1.187E=L9 1.563E=09 SSE 4.395E=0D 2.304E=08 1.516E=0D 8.904E=09 6.140E=09 4.622E=09 3.666E=09 3.016E=09 2.549E=09 2.198E=09 1.926

   ,

_- - _ _ _ _ . _ _ . _ _ _

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                                                                                                                                                                                       )

COOPER NUCLEAR STATION : VCnf DELEASE P0th? / Finst 3Ent-AmuuAL PERIOD 1980 no DEC6Y. umorPLETED COMMECTED FOR OPEN TERRAIN DECIDCULAf!DN AmmunL AvEnAGE CMI/O (SEC/ METER CueED) DISTANCE IN MILES SECTOR 0.250 0.500 0.750 1.000 1.500 2.000 2.500 3.000 3.500 4.000 4.500 S J.722L-05 1.663E-05 9.914E=06 5.180L-06 3.104E=06 1.140E=06 7.198t=07 5.003E=07 3.780E=07 2.882E=07 2.3 tee =07 85s 2.040E=05 9.579E=06 4.06BE=06 2.472E=06 9.752E=07 5.lt3E=07 3.232E=07 2.225E-07 8.637E=07 1.263L=07 1.010E=07 Su 1.545F.=0s 6.375E*06 3.55eE=06 8.789E=06 6.95sL=07 3.664E=07 2.26sE=07 1.552E=07 1.136E=07 8.727E=0A 6.95tE=08 mSW 3.187E=05 4.934E=06 2.743E=06 1.376E=06 5.357E=07 2.027E=07 1.755E=O7 1.204E=07 8.830E=06 6.799E=08 5.427E=00 w 6.345E=06 2.795E=06 1.507E=06 0.039E=07 3.35sE-07 8.672E=07 1.039E=O7 7.132E=08 5.233E=09 4.020E=00 3.284F=08 maw 1.427E=05 5.752E=06 3.195E=06 1.604E=06 6.244E=07 3.295E=07 2.045E=07 1.403E=07 1.029E=07 7.924E=0S 6.324L-08 I pu 2.3 tee =05 1.017E=05 6.334E-06 3.4ttL=06 1.436E=06 7.952E=07 5.309E*07 3.599E=07 2.700E=07 2.tleE=07 t.7 tee =07 I sht 2.693E=05 1.335E=05 9.667E=06 5.649E-06 2.574E=06 8.404E=06 9.705t=07 7.026E=07 5.347E-07 4.244t=07 3.47sE=07 N N 3.843E=05 1.478E=05 9.605E=06 5.20tE=06 2.269E=06 1.269t=06 0,280E=07 5 u!3E=07 4.377E=07 3.444E=07 2. tote =07 hhE I.294E=05 5.629E=06 3.4etE=06 1.s76E-06 7.887E=07 4.350E=07 2.795t=07 1.966E=07 8.472E=07 1.153L*07 9.54eE=00 h q hE 1.054E=05 4.504E=06 2.704E=06 1.409E=06 5.733E=07 3.109E=07 1.967E=07 1.370E=07 1.018E=07 1.923E=09 6.384E=0' O ENE h.000E=06 3.195t=06 2.175E=O6 1.800E=06 4.393F=07 2.347E=07 1.470E=07 1.016E=07 7.507E-08 5.813E=00 4.6641 00 E 6.405E=06 3.647E=06 2.215E=06 1.172E=06 4.058E=07 2.685t=07 1.702t-07 1.194E=07 0.92tE=0e 6.977L-00 5.646L=ce 2 ESE I.395E=05 6.210E=06 3.692E=06 1.919E=06 7.756E=07 4 lt?E=07 2.64tE=07 1.835E=07 1.360E=07 1.057E=07 9.498E=0S m SE 1.644E=05 6.697E=06 3.84eE=06 1.977E=06 7.95tE=07 4.204E=07 2.700E=07 1.074t=07 t.309E=07 1.079E=07 e.673E=00 2 SSE 2.065t=05 1.204E=05 6.058t=06 3.497E=06 1.390E=06 7.429E=0? 4.653E=07 3.2tSE=07 2.372E=07 1.e36E=07 t.472E=07 <

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D n O B ANNUAL AVFPAr.F CHI /O (8FC/NE!FR CUBED) 2 [ 5.000 7.500 10.000 DISTANCE IN MILE 5 20.000 25.000 35.000 45.000 50.000 g SEARING 15.000 10.000 40.000 g 5 1.917E-07 9.909E=0S 6.335E=00 3.610E=ce 2.444E=08 1.007E=08 8.414E=00 1.150E=0D 9.624E-09 9.23C1=09 7.15st=09 2 SSw 8.300E=08 4.153E=09 2.640E=00 1.473E=00 9.786E-09 7.140E=09 5.526E=09 4.454E=09 3.697E=09 3.139L-09 2.712E=09 Su 5.S95E=08 2.883E-08 1.77tE*00 9.765E=09 6.444E=09 4.670E=09 3.605E=09 2.995E*09 2.396E=09 2.02eL=09 1.740E=09 p W5u 4.455E=08 2.219E=08 1.407E=00 7.846E=09 5.23tE=09 3.829E=09 2.97tE=09 2.400E=09 8.997E=09 1.699L=09 1.470E=09 a 2.618t=08 3.312E=08 4.30tE=09 4.602L=09 3.041E=09 2.213E=09 8.704E=09 1.373E=09 1.137E=09 9.638L=to a.335t=to M hhw 5.195L-00 2.596E=0B 1.649E=00 9.200E=09 6.12?E=09 4.477E=09 3.469E*09 2.799E=09 2.326E=09 1.977E=09 1.710E=09 0. Wh 1.410E=07 7.515E=00 4.943E=08 2.094E=08 1.907E=08 1.488E=08 1.l?6E=00 9.644E=09 0.120E=09 6.993E=09 6.115t=09  % N>w 2.92tE=07 1.58tE=07 1.06tE=07 6.370E=08 4.449E=08 3.372E=0e 2.69tE=08 2.226t=0g 1.ee9E=ce 1.635L*00 1.4381-09 2.33AE=07 1.2 3 46:=9 7 8. t S SE=0 8 4.825E=0S 3.129E=09 2.503E=00 1.902E=0s 1.630E=08 1.317E=ne 1.1968.=09 1.039E=00 7 N g thE 7.776E=08 4.n72E=00 2.673E=08 1.56tE=00 1.072E=0D 8.025E=09 6.343E=09 5.204E=09 4.306E=09 1.775L-09 3.302E=09 g NE 5.295t=08 2.739E=0D 1.763E=08 1.012E=00 6.06tE=09 5.089E=09 3.987E=09 3.249E=09 2.723E=09 2.332E=09 2.038t=09 g EnE 3.940E=08 1.954L=08 1.257E=0B 7.143E-09 4.82tE=09 3.562E=09 2.795E=09 2.264E=09 3.894E=09 3.689E=09 3.407L=09 E 4.693E=ct 2.449E=09 1.603E.00 9.330E=09 6.302E=09 4.763E=09 3.755E=09 3.074E=09 2,586E=09 2,22tE=09 1.940E=09 ESK 7.023E=08 3.585L-09 2.382E=d8 1.317E=00 8.876E=09 6.550E=09 5.1t?E=09 4,tS6E=09 3.473E=09 2.966E=09 2.576E=09 SE 7.868F=08 3.66tE=08 2.163E=08 1.340E=04 9.095E=09 6.720E-09 5.255E=09 4.273E=09 3.575E=09 3.056E=09 2.657E=09 55E 1.283F=07 6.145r=00 3.94tE=08 2.230E=00 1.497E=08 1.10tE=0s 8.585t=09 6.962E-09 5.810E=09 4.957E=09 4.302E=09

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e

        . . _ . _ _ _ - _ _ - _ _ . _ . - _ _ _ _ _ _ _ _ . - -                           ---            - - -

O' 'b ) Q:) . Ne ,, b 3 COOPER mUCLEAR STAfton s ELEVATED DELEAst PotuT / FIRST SEnt=AmmuAL PEstDD 1990 40 DECAT. WhDEPLETED C00RECTED FOR OPE 4 TERRAth DECIRCULAtl0N AmhUAL AVERACL CHt/0 (SEC/ PETER CusED3 DIST4=CE IN WILES 4.000 4.500 1.500 2.000 2.500 3.000 3.940 SECTOR 0.250 0.500 0.750 1.000 3 1.434E=0S 4.501E=06 2.289E=06 1.11SE*06 4.304t=07 2.289E=07 8.436E=07 9.955E=08 7.370E=00 5.732E*06 4.614 8.166E=07 3.103E=07 1.627E=07 1.030E=07 6.949E=00 S.12tE=00 3.96tE*00 3.177t=00 Seu 1.02tE=0S 3.296E=06 1.683E=06 3.7tSE=08 2.990E=00 Su 9.107L 06 2.98tE*06 1.S30E=06 7.453E=07 2.846E=07 1.501E=07 9.370E=0D 6.477E=0e 4.19tE=08 4.787E*00 3.57tE=08 m3v 9.169E=06 3.230E=06 1.69tE=06 8.400E*07 3.336E=07 1.986E=07 8.36tE=07 8.tSOE=08 6.110E=00 I u 9.622E=06 3.165E=06 1.621E=06 7.944t=O7 3.067E=01 t.62et=07 1.019E=07 7.050E=00 5.223E=00 4.053E=08 3.25eE=00 wNW t.876E=05 6.239E=06 3.273E=06 1.617E=06 6.207E=07 3.355E=07 2.t:2E=07 1.469E=07 1.09tE=07 8.490E=0e 6.85SE=0B SellSL=0S > Nu t.472t=0S 5.042E=06 2.646E=06 1.300E=06 5.020E=07 2.664E=07 3.668E=07 1.tS4E=07 S.S34E=09 6.6t?E=0S N NNu t.%24E=0S 5.050E=06 2.675E=06 1.336L=06 S.293F.=07 2.nh6E=07 1.524E=07 1.279E=07 9.57tE=0a 7.496E=08 I 6.074E=0e N 1. Site =05 S.002E=06 2.607E=06 1.333E=06 5.205t=07 2.785E=07 1.755E=07 1.22tE=07 9.074E=00 1.069LM d00 5.703E=0e hpE t.303EcOS 4.279E=06 2.264E=06 1.130E=06 4.456E=07 2.397E=07 1.516E=07 1.0SeE=07 7.8eSE=04 6.tS9E=08 O 4.9stE NE t.100E=05 3.640E=06 3.95eE=06 9.a93E=0? 3.969E=07 2.164L=07 1.382E=07 9.72tE=0e 1.20eE=ce3.414E=08 5.719E=0e 4.643E=ce 2.766E=0. 2 Eut 6.823E=06 2.254E=06 1.199E=06 6.087E=07 2.40lE=07 8.304E=07 8.309E=00 5.829E=0D 4.36tE=0S 3.256E=0S 2.645E*05 E 6.600E=06 2.106E*06 t.102E=06 S.52tE=07 2.226E=07 1.220E=07 7.924E*00 S.S30E=00 4.145E-04 g ESE t.223E=05 4.042E=06 2.125E=06 1.058E=04 4.196E=07 2.27?E=07 1.450E=07 1.018E=07 7.610E=0S 1.tR5E=0S 3.830E*06 3.943E=06 9.750E=07 3,797E=07 2.030E=07 1.280E=07 8.917E=00 6.636E=08 S.175E=ce 4.te0E=0e 5.957t=0e Z 4.s24E=0e SE g SSE 3.000L-05 S.62tE=06 2.894E=06 1.427E=06 5.600E=07 3.020E=07 1.914E=07 1.339E=07 9.997E=08 7.02tE=00 .= D 6.334E=08 ANNUAL AVERACE CHt/0 (SEC/ METER CUBED) 2 y plSTANCE IN PtLES h >d 25.000 10.000 35.000 40.000 45.000 S0.000 m 15.000 20.000

  -

N BEANtNG 5.000 7.500 10.000 2 a 3.e20E=0e t.97tE=ce 1.2e2E=0e 7.404E=09 5.049E=09 3.76tE=0e 1.96tE=09 2.422E=09 2.037E=09 a.749E=09 1.527t=09 d SSW 2.622E=09 1.339E=09 8.65tE=09 4.958E=09 1.365E=09 2.499E=09 3.963E=09 1.602E=09 3.346t=09 1.tS4L*09II1.007E=09 Sw 2.473F=08 1.272E=0e 8.252E=09 4.750E=09 3.230E=09 2.399E=09 1.903E=09 1.536E=09 1.209E=09 1.103E*09 9.603E=to mSu 3.225E=08 t.6tlE=09 1.091E=09 6.349L=09 4.325E=09 3.287E=09 2.530E=09 2.067E=09 1.736E=09 1.489t=09 1.299E=09 2.693E=00 1.376E=08 R.OpTE=09 5.OuGE=09 3.440E=09 2.549E=09 2.000E=09 3.63tE=09 1.36eE=09 1.173L*09 1.023E=09 3 u 0

                                                                                                                                         ="

the 5.603E=08 2.943E=0S t 917E=08 1.300L=08 7.547E=09 5.614E=09 4.435L*09 3.606E=09 3.029E=09 2.590L=09 2.26AL*09 hw 4 lt9t=08 2.235L=08 3.434E=08 8.tS4E=09 5.483E=09 4.035E=09 3.145E*09 2.55uE=09 2.12eE=09 8.st%E=09 1.575E=09 2 2.120E=09 h4W S.055F=00 2.650E=0D 1.739E=0D 1.014E=00 6.947E=09 5.189E=09 4.094E=09 3.tS3E=09 2.a2BE=09 2.427t=09 O

            >  4.729t=08 2.447t=00 1.594E=00 9.219E=09 6.283E=09 4.676E=09 3.670F=09 3.00SE=09 2.524E=09 2.16SE=09 t.SteE=09             E hht    4.139F=00 2.865L=08 1.424E=08 8.36sE=09 5.779E=09 4.347E=09 3.449E=09 2.839E=09 2.400L=09 2.07tL*09 3.el5L                      09 E 1.753E=09 NE   3.07tE=GS 2.047E=08 1.354E=06 0.00tL=09 5.540E=09 4.174E=09 3.3t?E=09 7.734E=09 2.333E=09 3.99nL=09 Lug    2.102E=08 1.207E=08 7.929E=09 4.636E=09 3.tSSE=09 2.389E=09 1.889E=09 8.550E=09 1.307E=09 1.125E=U9 9.536E 10 E  2.206t*08 t.l6eE=00 7.7ttE=09 4.540E=09 3.332E=09 2.JSSE=09 1.869E=09 1.539E=09 1.303E=09 1.124E=09 9.860E=10l LSE    4.0tlL*00 2.095E=00 1.37tE=00 1.973E=09 S.450E=09 4.066E=09 3.206E=09 2.624E=09 2.200E=09 1.890L=09 1.65sL=09 SE    3.46tE=00 1.900E=08 1.I?4E=00 6.796E=09 4.632E=09 3.446E=09 2.180E=09 2.213E=09 1.05eE=09 1.593E=09 1.le9E=09 SSE     5.27tL*00 2.772E=08 1.029E=OB 1.077E=00 7.453E=09 5.6ttE=09 4.454E=09 3.660L=09 3.102E=09 2.676E=09 2.347E=09
                                                                             -        ~-        _

HAZLETON CNVIRONM3NTAL CCl~INC3D

                                                                           -      e Q '\f         f l

CO!PER NUCLEAR STATION I FlpST QUARTER 1980 SPECIAL LOCAfl0N 8 i LOCATION NO. 9 AT 0.$0 ulLES N ANNUAL OFTA Alp DOSE e 1.SIE*00 NILLDADS ANNUAL GAmuA Alp 00SE a 2.29E+00 NILLNAOS PATMuAY T.R0pf Gl* TRACT PCNE LIVER RIDNET THYRotD LUNG SFIN

  .........+..........,.....................+.....................,................................+
              *
  • 1.54E,00
  • 8.54Fe00
  • 1.54F+00
  • 1.54E+00
  • 1.SSF+00
  • 2.98F,00
  • Pluul 1.54E+00
  • 1.54F+00
  .........+..........e..........+................................ .....................e...........
  • GROUND
  • 9.9er.02
  • 9.9AE.02
  • 9.9at.02
  • 9.98E.02
  • 9.9er.02
  • 9.9st.02
  • 9.9st.02
  • 1.17E.01
  ....................,................................,.......... ..........+..........+...........
              *             *             *          *             *            *              *           *
  • VEGET
  • 1.02E.03
  • 0.00E,00
  • ADULT
  • 1.SSE.02
  • 8.34E.02
  • 8.6]E.02
  • 1 93E.02
  • 9.78E=03
  • 3.87E.01 e..............................+..........,...........................................,..........,

,

                                                                                                                      *

\ TEEN

  • l.49F.02
  • l.4tE=02
  • 2.4tE.02
  • 2.94E.02
  • l.19E.02
  • 5.Olt.01
  • 3.32E.03
  • 0.00E+00
  ......... ...........................................,............................................

CHILD

  • 8.57r.02
  • 9.20E 03
  • S.27F.02
  • 4.str=02
  • 1.817 02
  • 7.74r.01
  • 4.96F.03
  • 0.00F+00 *
  .................... ................................,..........,..........+..........+..........+
               *            *             *          *             *            *              *           *
  • trat ADULT
  • 1.40E.03
  • 3.80E.03
  • l.03E.03
  • 1.79E.03
  • s.63E.04
  • 6.07E.02
  • 1.46E=04
  • 0.00E,00 *
  ................................................................ ............ ...................,
                                                                                                                      *
)     TEEN
  • 8.27F.04
  • 1.67t=0)
  • n.3SE-04
  • 1.42E.0)
  • 4.a9r.04
  • 4.97E.02
  • 1.34E=04
  • 0.00E+00
  ............................... ..........,..........,..........+.....................+..........,

CNILD

  • 8.52E.04
  • 8.49E.04
  • 1.SOE.03
  • 1.SiE.03
  • 9,$tt.04
  • 7. Sit.02
  • 1.SSE.04
  • 0.00E,00 *
  .........+..........+................................,................................,..........,
               .            .             .          .             .            .              .           .          .

gn3 ,gg, ADULT

  • l.lOE.02
  • 2.69E.03
  • 1.llt.02
  • 1.75E.02
  • 1.40E.02
  • 1.90E,00
  • 1.24E=03
  • 0.00E+00 *

,

  ...............................+..........+......................................................+
  • l.19E=n2
  • 1.41E.01
  • 1.99E.02
  • 3.06E.02
  • 2.47E.02
  • 3.0ltoon
  • 2.50E.0)
  • 0.00E,00
  • TEEN

}

  ...............................+..........+..........,.....................+.....................+

! CNILD

  • 1.69E.02
  • 2.5Sr.03
  • 4.74E.02
  • 5.20E.02
  • 4.07t=02
  • 5.94F+00
  • 3.78E=0)
  • 0.00E,00 *
   ....................+.....................,.......... ..........+.....................,..........,

INFANT

  • 2.11F.02
  • 3.62E.03
  • 4.44F.02
  • 1.09E.01
  • 6.887 02
  • 1.44E+01
  • 6.73E=03
  • 0.00E,00 *
   ....................+..........+..........,..........,..........,................................+
                             *            *           *            *            *              *           *
  • GnAtalLs
  • ADULT
  • 2.87E.02
  • 2.6SE.03
  • 2.SSE.02
  • 4. bet.02
  • 2.32E=02
  • 2.20E+00
  • 3.73E=03
  • O.00E,00 *
   .........+..........+.....................+..................... ..................... ..........,
  • TELN
  • 3.41E.42
  • 3.40E.41
  • 4.SSE.02
  • 7.14E.02
  • 4.n9r.n2
  • 3.6tt+04 7.SOE.03
  • 0.00Eeon *
   ..........................................,..........+...........................................+

CHILD

  • 2.99F.02
  • 2.69E*03
  • 1.00F.01
  • 1.21E=01
  • 4.71E.02
  • 7.13E*00
  • Sel3r=02
  • 0.00E+00 *
   ....................+..........,.......... .......... ...........................................+
  • 2.02F.02
  • 0.00E,00
  • luPANT
  • 3.93E=02
  • 2.16E.03
  • l.04F=01
  • 2.4tE.08
  • 1.1t*.01
  • 1.73E,08
   .........+..................... ................................ ..................... ..........,
                .            .             .          .             .            .             .            .          .

g gn a g,

                                                                    *
  • 1.00E*01
  • 5.02E=03
  • 0.00E,00
  • ADULT
  • 4.03E.04
  • 3.SOE.04
  • S.l?E 04
  • 6.23E.04 6.93E.04
   ..................................................................................................

TrEN

  • 4.14E.04
  • 3.35E.04
  • 6.99F.04
  • 8.40E.04
  • 9.49F.04
  • 1.35E.01
  • 7.15E.03
  • 0.00E+00 *
   ....................,.................................................................,...........

CHILD

  • 3.44E-04
  • 1.3Sr.04
  • 4.7st.04
  • 8.14F=04
  • 8.86E.04
  • 8.$0r.01
  • 5.97E 03
  • 0.00F+00 *
   ....................,..................... ...........................................,...........

INFANT

  • 2.ltF*04
  • 4.07E.09
  • 5. war.04
  • 6.00r.04
  • 9.7Sr.04
  • 1.37F=01
  • 3.07E.03
  • 0.00r+00 *
   .........,.......... ..................... ................................+..........,..........,

l l ! l C-13

                       . .

__ __

_ _ _ _ _ _ _ _ .- HAZLOTON CNVIRONMENTAL CCl3NC30 Q

                                          '
                                "Q" I

{

 .l b c.) ]            O    .I T   3 ou. Jhm l

l COOPER NUCLEAR STATION FtpST QUARTER 1980 SPECIAL LOCAT10N e 2 LOCAft0M ND. 8 AT 0.75 m!LES NN8 AhMUAL SETA Alp OOSE a 7.72E=01 ptLL8405 AhmUAL Gamma Alp DOSE e 1.16E*00 ptLLDADS Ct= TRACT BCNE LtVER KtDNET THfR010 LUNG SEIN l T.8007

      ...............................

PATNeAf

                                                   *
                                                     ..................................................................

7.stE.01

  • 7.?tF.01
  • 7.etE.01
  • 7.9tE=01
  • 7.89E.01
  • 1.5tE+00
  • j p t.H m F
  • 7.4tE.01
  • 7 etF.01
      ....................,..........s..........+.....................,................................,

l I cn00ND

  • 2.99F.02
  • 2.59t=02
  • 2.59F.02
  • 2.59E.02
  • 2.59r.02
  • 2.59E.02
  • 2.$9F.02
  • 3.04E=02 *
      ...............................+........._,.....................,................................,
                                                                                                                 .                          .            .            .
                     .              .              .               .                                .

vgcgf ADULT

  • 4.04E=03
  • 3.48E.03
  • 4.31E.03
  • S.05E.03
  • 2,34E.03
  • 1.6SE.01
  • 4.72E.04
  • 0.00E+00 *
      ..................................................................................................

l TEEN * ................................,................................e.......... 3.99F.03

  • 3.6SE.03
  • 6.37E.03
  • 7.6SE*d)
  • 3.lSE.03
  • 1.4tE.01
  • 8.60E=04
  • 0.00E+00 *
                                                                                                                                                            ..........+
      .........
  • l CNALD
  • 4.13E.03
  • 2.39E=03
  • l.19E.02
  • 1.2SE.02
  • 4.7et.03 a 2. tee.01 1.29 E.0 3
  • 0.00 E+00
  • l
      .........,.......... .....................,................................+.....................,                                                 .            .
                                                   .               .                                .            .                          .
      .g.,           .              .

l ADULT

  • 3.86E*04
  • 8.0SE.04
  • 2.7tE=04
  • 4.67E.04
  • 2.32t=04
  • t.93E.02
  • 3.7st.05
  • 0.00E+00 *
      .................................................................................................,

TEEM

  • 2.16F.04
  • 4.34E=04
  • 2.10F.04
  • 3.72E.04
  • 1.05F.04
  • 1.40E.02
  • 3.49E.0$
  • 0.00E*00
  • l ...........................................,.......................................................* (

l CHILD

  • 7.24r.04
  • 2.20E.04
  • 3.15E=04
  • 4.75E=04
  • 2.3tt.04
  • 2.tlE.02
  • 4.03E=0S
  • 0.onE+00

' ..................................................... ..........,..........,...................... *

                                                    *               *                               *            *                          *             *
                      *
  • CDs 8tLN ADULT
  • 3.13E.03
  • 7.33E.04
  • 2.98E.03
  • 4.66t=03
  • 3.04E.03
  • 5.35E=01
  • 3.22E.04
  • 0.00E+00 *
       ....................,.....................,......................................................,

l 7FFN

  • 3.7tE.03
  • 9.36F.04
  • 5.33E.03
  • 8.t?F.03
  • 6.19E.03
  • 9.46E=0
  • 6.48E=04
  • 0.00F+00
  • l ....................,..........,..........,.......................................................

i C u ll.D

  • 4.6tE=03
  • 6.90E.04
  • 1.27E.02
  • 1.39F.02
  • t.12E.02
  • 1.67E+00
  • 9.00E.04
  • 0.00E+00 *
       ...............................+................................+.....................+...........                                                                 l INFANT
  • 7.13F=0)
  • 9.75E.04
  • 2.27E.02
  • 2.9tE=01
  • 1.90F=02
  • 4.06t+00
  • 1.14E.03
  • 0.00E+00
  • 3.......................................+..........,..........,..........+
       .......................                                                                       *            *                          *            *            *
                                      *              *
  • COAtalLR
  • ADULT
  • 7.53E=03
  • 7.30E.04
  • 6.?tE.03
  • 1.07E.02
  • 6.29E.03
  • 6.42E.01
  • 9.67E.04
  • 0.00E+00 *
       ..........................................,.....................,.................................

7EEh

  • p.0tF.03
  • 9.59F=04
  • 1.20K.02
  • 1.89F.02
  • 1,tlF=02
  • 1.0tE+00
  • 1.95E.03
  • 0.00E+00 *
       .........,.....................,.....................,..................... ......................

Cull.0

  • 8.0tr.03
  • 7.42F.04
  • 2.96E.02
  • 3.17E.02
  • 1.82F=02
  • 2.0tE*00
  • 2.94E.03
  • 0.00E+00 *
       ................................................................,................................,
  • lefam?
  • 1.01E.02
  • 7.60E=04
  • 4.86E.02
  • 6.36F.02 a 3.03E.02
  • 4.97E.00
  • 5.23E.03
  • 0.00E+00
        ...............................,.....................,................................,..........,                                                             .
                                                     .               .                                .            .                         .             .
                       .              .

gangt AnULT

  • 2,36F.04
  • 2.00E.04
  • 3.01E=04
  • 3.62E.04
  • 3.92E.04 6.07E.02
  • 3.06E.03
  • 0.00E,00 *
                                                                                                                   *
        .................................................................................................,
                                                                                                      *
  • 7.50E.02
  • 4.47E.03
  • 0.00E,00
  • TFEu
  • 2.40E.04
  • l.98E=04
  • 4.00E.04
  • 4.92E=04 5.36E=04
        .........,.....................+................................,.......... ......................

CNit.n

  • 1.97E.04
  • 7.94r.05 * $.10E.04
  • 4.72F=04
  • 5.00E.04
  • 9.42E.02
  • 3.63E=03
  • 0.00E+00 *
        ......................................................................................,..........,

INFANT

  • 1.24E.no
  • 7.85E.09
  • 3.44E.n4
  • 3,92E=04
  • 3.25E 04
  • 7,70E.02
  • 2.36E.03
  • 0.00E+00 *
        ....................+.....................,.....................,.....................,..........,

I l I i l

                                                                                                                                                                          ,

1 C-14

                                                        -                 _ _ _ _ _ _ _ _ _ - _ _ _
                                                                                                             -    - - -                  _ _ _ _ _ _ _ _

HAZLCTON CNVIRONM3NTAL CCCNC30 D D k J uln .

                                              !r    A h rh -

COOPER NUCLEAP STAfl0N 8 FIRST QUARTER 1980 t C0mBihED PELEASE ALARA ANhUAL INTEGRATED POPULATION DOSE SUMMARf (4ANDEM) Gl.TWACT MONE LIVEP KIDNET THYP010 LUNG SKIN PATMwAT T.RODY

                       ..........................................+................................,.....................,
 <                     Pt.uut
  • 4.A9E.n2
  • 4.Aer.02
  • 4.A9E=02
  • 4. AGE.02
  • 4.A9E=42
  • 4.69E=02
  • 4.77E 02
  • l.09E.01 **
  • 89.55%
  • 90.444 *
                                                                $0.23%
  • 87.A0%
  • 08.90%
  • 15.944
  • 90.93%
  • 95.454
                       ..........................................,................................,.....................,

GROUND

  • 4,onE.n l
  • 4.0nE-ni = 4.n0E.03
  • 4.noE.0)
  • 4.00E.03
  • 4.0nE 03
  • 4.ont.03
  • 4.7nE.03 a
  • 7.Att
  • 7.72%
  • 7.93%
  • 7.47%
  • 7.98%
  • 1.33%
  • 1.63%
  • 4.159 *
                       .......................................... ..................... .....................,...........
  • 6.52E.n5
  • 7.4AE.09
  • 8.55E=45
  • 1.37F. 02
  • 5.59E.04
  • 0.Ontenn
  • l 1* MAL
  • 4.30E n5 - 1.21E.n9 4.54%
  • l.06%
  • 0.00% *
  • 0.n0%
  • U.06%
  • 0.12%
  • 0.14%
  • 0.16% *
                       .....................................................e..........+..........+.....................,

4.64E=n4

  • 6.30F.04 ** 1.10E.03
  • l.47E.0)
                                 *
  • l.06E.03
  • l.39E.01
  • 1.12E.04
  • 0.00E,00
  • vrGrf
  • 1.22% 2.60%
  • 2.75%
  • 2.40%
  • 46.09%
  • 0.21%
  • 0.00% *
                       ..................................................................................................
l. Aft
  • C05 mits
  • 4.5sg.no a 9,0er.0%
  • 7.19E.04 *
9. Sit.04
  • 7.04E.no
  • 9.25E.02
  • 7'.40E.05
  • 0 nnE,no *
                                                                                                                                                         ,
  • 0.09%
  • 0.13%
  • 1.35%
  • 1.70%
  • l.33%
  • 30.60%
  • 0.14%
  • 0.00% *
                       .........    ..........,.....................,.......................s...................+..........e EFAT
  • 1.04E.04 ** 2.04E.04
  • 8.t?F.05
  • l.4tE.04
  • 8.elt.05
  • 5.47E.03
  • 1.18E 05
  • 0.0nE,no a 0.00% *
  • 0.20% 0.39%
  • 0.17%
  • 0.26%
  • 0.13%
  • l.01%
  • 0.02% * <

-

                       ................................................................,.................................

eTOTAL*

  • 5.2)E.n2
  • 5.18E 02
  • 5.1tE.02
  • 5.35t.02
  • 5.2aE=02
  • 3.02E=01
  • 5.24E.02
  • 1.13E.01 * )
                       .........e.....................,.....................+ .........,................................,                                  <

l /~ C-15 _ _ _ _ _ _ - _ _ - .

__ __________

                                                                                                                       -                                   ..

HAZLETON ENVIRONMZNTAL CCCNC]3 Q O

                          'Q~
   '  A           wI       S. L COOPER NUCLEAR STAT 10h : rips 7 QUAp?ER 1980 3 COu8thED SELEASE l

ALAW4 ANNU4L INTFCR&7ED POPULATION 00SE SU"MARI (MAhREM) I PATHenf a PLtJM E T.sony Ct. TRACT Bohr LIVEP EID9EY THYROID LUNG SRIN huCLIDF.

 .................................................................................................,                                                               (

4.3tt.n6

  • 4.3%F.06
  • 4.1tE.n6
  • 4.3tr.06 4.1tE 06 4.3tE.06
  • 1.41E.05
  • 7.22E.04 *
                                                                                                                                                                   '
                                                                     *             *
  • ER 95
  • 0.n0%
  • 0.n0%
  • 0.00%
  • 0.n0%
  • 0.00%
  • 0.00%
  • 0.03%
  • 0.A6% *
 ..................................................... ...........................................,

pp 49m

  • 1.26F.01
  • t.2AE.nl
  • 1.2 6E.01
  • 1.26E.0 3
  • 1.26E.n l
  • 1.2 AE=0 2.70%
  • 3
  • 1.3tE=41 2.74% ** 4.61E.n3 4.26% **
  • 2.70%
  • 2.70%
  • 2.70%
  • 2.70%
  • 2.70% *
 .........e............................................................................e...........
   ## 87    *
3. 32E=n1
  • 3.32E.0%
  • 3.32E.08
  • 3.32E.01
  • 3.12E.01
  • 3.32E.03 7.09% *
  • 3.44E.03 7.21% *
  • 1.4st.02 13.59% **
  • 7.09%
  • 7.09%
  • 7.09%
  • 7.09%
  • 7.09%
  • I
 ..........................................,.....................+.......... ......................

sh se

  • 2.75E.02
  • 2.75r.02
  • 2.15E.02
  • 2.75E.02
  • 2.75E.02 -* 2.75E=02 ** 2.76E.02
  • 4.04E.02 *
                                                                                        $8.694                 57.97%
  • 37.22% *
  • St.A9% * $8.69%
  • St.A9%
  • 58.69%
  • St.A9%
 ...............................,........................................... ........ ............,

IE133

  • 2,$1 r.0 3
  • 2.S t E.0 3
  • 2.S t r.4 3
  • 2.SI E.0 3
  • 2.SI E.n l
  • 2.S i t.0 3 ** 2.69 E.0 3
  • 8.56E.0 3 *
  • 5.15%
  • 5.15%
  • 5.35%
  • S.15%
  • 5.35%
  • S.354 5.63% a 7.nen *
 ...............................e................................,..................... ..........,                                                             '
  • 1.18E=02
  • 1.lar.n*
  • 1,ter.02 a 1.lmr.n2
  • t tar n2
  • 1.tAF.02
  • 1.2tE.n2
  • 3.etE.n2
  • 37139
  • 25.12%
  • 25.12%
  • 25.12%
  • 25.12%
  • 25.12%
  • 25.12%
  • 25.36%
  • 35.n2n *
 ..................................................................................................

Itt35m

  • 3.12r 05
  • 3.32E=0S
  • 3.32E=0S
  • 3.12r=0S
  • 3.32E.05
  • 3.32r.05
  • 3.34E*0S
  • 5.49E.05
  • 0.07%
  • 0.07%
  • 0.05% *
  • 0.07%
  • 0.07%
  • 0.07%
  • 0.07%
  • 0.07% *
 ..........................................,................................,........ .............

1.97E.a4

  • 3.97E.no ** 1.97E.04
  • 3.97E.no a 1.97E.04
  • 3.97E.04*
  • 4.n2E.04
  • 4.3tE.no *
             *
  • IE138
  • 0.85% 0.95% 0.ASt
  • 0.95%
  • 0.85%
  • 0.954 0.84%
  • 0.77% *
  ...............................,................................+..................... ...........                                                              j mp og
  • 1.77E.no
  • t,77E.0g a 1.77E.03
  • 3.77E.09
  • 1.77E=n2
  • 1.77E=08*
  • 1.00E no
  • 4.21E.09 ** 1
                                                                                                                                                                   '
  • 0.006
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004 0.00%
  • 0.006
  ....................,.....................,.....................+..........,..........,..........,a
    #R 83m
  • t.4?r.ne
  • 1.42E 02
  • 8.42r.00 ** 1.42E.08
  • 1.4?r.08
  • 1.42E.0a a 1.ttE=06
  • 4.02g.nA 0.n0g *
  • 0.n0%
  • 0.n0%
  • 0.006 0.n0%
  • 0.00%
  • 0.n0%
  • 0.00% *
  ................................................................,.................................

ILt37

  • 1.S07 08
  • 1.50E.0a
  • 1.50r 08
  • 1.50F=0A
  • 1.50E=08
  • 1.SnF.48
  • 1.76r=08
  • 2.7AF.07 *
  • 0.n0%
  • 0, nog
  • 0.n0%
  • 0.n0%
  • 0.n0%
  • 0 not
  • 0.00%
  • 0.n0% *
  ..........................................,.....................,..........,......................
  • EE133m
  • 5.90E=nS
  • S 9BE=0S
  • 5.98E.05
  • 5.98E.05
  • 5.98E.05
  • S.9st.05
  • 6.6et.0S
  • 5.6tE=04 0.14%
  • 0.924 *
  • 0.13%
  • 0.13%
  • 0.13%
  • 0.13%
  • 0.13%
  • 0.13% *
  ..........................................,......................................................,

IEllta

  • 2.997=06
  • 2.99F.nA
  • 2.99F.06
  • 2.99r.04
  • 2.99E=06
  • 2.99E.04
  • 3.7tt.06
  • 3.6AE.05 *
  • 0.n0%
  • 0.00%
  • 0.n0%
  • 0.n0%
  • 0.00g a 0.n0g
  • 0.00%
  • 0.n3g *
  ..........................................+..........+...........................................,

e70 tale

  • 4.6er.n2
  • 4.69E.02
  • 4.Aer.02
  • 4.6st.02
  • 4.49r.02
  • 4.6eE.02
  • 4.77E.02
  • 1.09E.nl *
  .....................................................,................................+...........

1 I l l I i C-16 _ _ _ _ _ _ _ _ _ _ _ _ _

HAZLETON CNVIRONM2NTAL CCCNC2O J wo COOPER hUCLEAR 87A7104 i FIRST QUARTER 1990 : CousthED RELEASE ALapa An4UAL INTFCRATFD POPULATION 00SE

SUMMARY

(MAhpEM) l

   #ATMuAY s CROU40                                                                                                                                                                                   )

1 EUCLIDF. T.80D7 Cl.fRACT Ruht LIVER RIDNEY fHYROID LUNC Sk!N

 .>.......e..........e..........v.....................s..........,.....................s..........e
  • i 131
  • 1.94F.05
  • l.94E.05
  • 8.94F.05
  • i.94E.05
  • 1.*4r.05
  • 1.94E.05
  • 1.94F.05
  • 2.36E.05
  • 0.49%
  • 0.49%
  • 0.49%
  • 0.49%
  • 0.494
  • 0.49%
  • 0.49%
  • 0.904 *
 .........e..........e..........s.......... ..........+..........+..........e..........e..........,
                   *
  • I f 133
  • t.2*E.nA 8.29E.06 ** l.29F.nh
  • l.29E 06 ** 1.29F.nn
  • 1.29E.06
  • l.29E 0A
  • 1.56E=06
  • 0.0)%
  • 0.n34 0.03%
  • 0.03% 0.03%
  • 0.03%
  • 0.03%
  • 0.034 *
 ..........................................+................................,.....................,
  • 82 59
  • 9.40E.it
  • 9.48 Fall
  • 9.48E=ll
  • 9.48F=tl
  • 9.48E=11
  • 9.40E.11
  • 9.40F.lt
  • 1.10E.10
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004
  • 1 .................................................................................................,
  • CS$34
  • 8.94F.44 ** 8.94E.04
  • l.94ren4
  • 1.94E=04 ** l.94E.04
  • l.94E.04
  • 1.94E.04
  • 2.27E.04
  • 4.864 4.e64
  • 4.864
  • 4.e64 4.46%
  • 4.964
  • 4.86%
  • 4.42% *
 ..........................................+..........+.....................+.....................+

08137

  • 4.577.no
  • 4.57E.04
                   *
                                                               *
  • 4.57F.04
  • 4.57E.04
  • 4.577.n4
  • 4.57E.04
  • 4.57E.04
  • 5.33E.04
  • 11.42% *  !!.42% 11.42%
  • 11.42%
  • 11.424
  • 11.424
  • 11.42%
  • 11.344 *
 ................................................................,.....................+...........

Ral40 *

4. Set.n?
  • 4.gaE.07
  • 4.5eE 07
  • 4.98E.07
  • 4.snt.n?
  • 4.5mE.07
  • 4.50E.07
  • 5.23E.07 *
  • 0.ntt
  • 0.08%
  • 0.01%
  • 0.01%
  • 0.01%
  • 0.014
  • 0.01%
  • D.014 *
 ..................................................... .....................,......................
  • F 131 3,09E.07
  • 3.09E=07
  • 3.09E.07
  • 3.09F.07
  • 3.09E.07
  • 3.09E.07
  • 3.09E=07
  • 3.76E.07 *
  • 0.00%
  • 0.n0%
  • 0.004
  • 0.00%
  • 0.004
  • 0.00%
  • 0.004
  • 0.00% *
 .......................................... ..........+..........+..........+..........,..........,
                   *
  • CD SA
  • 4.97E.06
  • 4.97E.on
  • 4.97E.06 4.97E.nn
  • 4,97E.n6
  • 4.97E.06
  • 4.97E.n6
  • 5.87E=06
  • 0.12%
  • 0.82%
  • 0.12%
  • 0.12%
  • 0.12%
  • 0.12%
  • 0.12%
  • 0.124 *
 ....................,.....................+................................+.....................+
  • CO 60
  • 1.26E*03*
  • 3.26E.nl ** 3.26E.03
  • 3.26E.01
  • 3.26E.03
  • 3.26E.01
  • 1.26E.03
  • 3.8IE.03
  • St.41% 31.41% St.414
  • 81.41%
  • 81.414
  • 08.41%
  • 88.414
  • 81.51* *
 ..........................................+...........................................+...........
  • Em S4 6.ler=05
  • 6.19E.05
  • 6.19F.05
  • 6.19E.05
  • 6.t?F.oS
  • 6.t9E.05
  • 6.190 05
  • 7.25E.0* *
  • 1.55%
  • 1.95%
  • l.55%
  • 1.95%
  • 1.53%
  • 1.95%
  • 1.55%
  • 1.544 *
 . . . . . . . . . .* . . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .

Ca 55

  • 9.22E=00 * *.22F.00
  • 9.22E.08
  • 9.22F.08
  • 9.22E.08
  • 9.22E=08
  • 9.22E 00
  • 1.09F.07
  • 0.00%
  • 0.n0g = 0.00%
  • 0.n0%
  • 0.00%
  • o.not
  • 0.009
  • 0.n0% *
 ...............................+.....................,..........,................................,

74 65 *

  • 4.16r.06
  • 4.16E.06 *
  • 4.14E.36
  • 4.16E.06
  • 4.14F.06
  • 4.16E.06
  • 4,16E.06
  • 4.79E.06
  • 0.10%
  • 0.10%
  • 0.104 0.10%
  • 0.10%
  • 0.804
  • 0.10%
  • 0.10% *
 .........e.es..................s..........+..........s..........+................................,
   ! 131
  • 2.72E.49
  • 2.72E.00
  • 2.72E.09
  • 2 72E.0s a 2.12E.08
  • 2.72E.ca
  • 2.12E.09
  • 3.30E.0P *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
 ................................................................+................................,
                    *
 @ TOTAL 8              4.00E*nt
  • 4.00E.01
  • 4.00 Ecol
  • 4.00E.03
  • 4.00E.o1
  • 4.00E.03
  • 4,00E-03
  • 4,70E.0) *
 ....................,.......... ......,...+..........,..........,..........,......................

I l l C-17

                                                                                                                                                      - _ _ - - _ _ _ _ _ _ _ _ _ _ _ _ -                       _

HAZL.CTON CNVIRONMENTAL SCIENCEO P(D '?W I 9 } A L

            %\            JL           bd               .h COOPER NUCLEAR STATION s FIkST QUAR 7ER 1980 I C0m8tNED RELEASE ALAWA AhWUAL 147ECRA7ED POPULATION D.1SE $UmMART (uANDEM)

PA7HW4f . INHAL LIVER ktDhEY TNTROID LUNG SE!N j NUCLtDE 7.mnOf 41 7NACT R0hE i

 ................................................................,..........+.....................,
   ! lll
  • 2.l?F.nS
  • 9.97F.n6
  • 2.96E.n5
  • 3.0lE=0S
  • 6.90r=n5
  • t.24E.02
  • n n3E+n0
  • o.00E+00 * ,

17.n6%

  • 45.32%
  • 51.32%
  • 15.97% * .......... 92.06%
  • 0.00%
  • 0.n0% * ]
                 *         $0.48% *                                                                                                                                                                           .....................,
 .........s..........e..........e..........,.....................

I 133

  • l.66E=06
  • 2.64E.06
  • 3.28t=06
  • 5.15 E.0 6
  • 8. 90 E.0 6
  • 7.97E.04 S.82%
                                                                                                                                                                                                            *
  • n.00E+00
  • 0.00E+0n
  • 0.00%
  • 0.00% *
  • 3.85%
  • 8.11%
  • 5.03%
  • 6.90%
  • 10.40% *
 ..................................................................................................

5.n9E.07

  • 5.9)F.n?
  • 0.00Ee00
  • n.00F+nn
  • 0.00E,00
  • 2.61E no a n,0nE+00
  • SR 89
  • 1.70F.08
  • 0.00%
  • 0.47%
  • 0.00% *
  • 0.n4%
  • 1.57%
  • 0.914
  • 0.00%
  • 0.00% *
 ....................,..................... .....................,.................................

SR 9a

  • 7.11E.07 **7.S?E=0A
  • 1,15E*05
  • 0.OnE+0n
  • n.00E+00
  • 0.0nE+0n
  • 1.29E.06
  • 0.0nteon *
  • 0.23%
  • 17.60%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.234
  • 0.00% * '
 .........+..........e..........+..........+..........s................................+..........,

1.6S% C3tle

  • 8.00F.06
  • t.30E=07
  • 6.23C.06
  • 1.29E=05
  • 4.34E.06
  • 0.onE+00 0.00% ** 1.53E.06 0.27% ** 0.00E+00 0.00% **
  • 20.43%
  • 0.40%
  • 9.54%
  • 17.34%
  • 5.07% *
 ..........................................,......................................................+

1.68F.07

  • l.28E.05
  • t.52E 05
  • 5.39E*06 0.00E+00 1.90E.06
  • 0.00E+0n *
                                                                                                                                                                                               *            *
                   *
  • CA137 8.04E.06 0.00%
  • 0.34%
  • 0.00% *
  • 18.67%
  • 0.92%
  • 19.66%
  • 20.34%
  • 6.30% *
  ............................... .....................,...........................................,                                                                                                                                        j
                                                                                                                                                                                                                                            '

BA140

  • 3.06F.08
  • 2.03F=06
  • 4.82F*07
  • S.S2E.10
  • 1.86E.10
  • 0.00E+00 0.n0% ** 1.48E.05 2.65% ** 0.00E*00 0.00% **
  • 0.07%
  • 6.79%
  • 0.74%
  • 0.n0%
  • 0.00% *
  ..........................................+.....................+.................................

I 131

  • 4.84E.07 1.23F=07*
  • 6.60E.07
  • 8.SSE.07
  • 1.45E.04
  • 2.82F.04
  • 0.00E+00 0,00% ** 0.00F+00 0 n0% **
  • 1.12%
  • 0.38% 1.01%
  • 1.14%
  • 1.70%
  • 2.05% * /
  .................................................................................................,                                                                                                                                         l r0 Sa
  • 1.S4t.nn
  • 6.06E.n?
  • 0.00E+0n
  • l.10E.08
  • 0.0nE+00
  • 0.0nteon
  • 6.6tt.n6
  • n.00E+no **

0.01%

  • 0.00%
  • 0.00%
  • 1.19%
  • 0.00%
  • 0.04%
  • 1.87%
  • 0.nft *
  ...............................+..........,................................,.....................+

CO 60

  • l.28E.06
  • 1.89F.nS
  • 0.00E*00
  • 9.29r.07
  • 0.00E+00
  • 9.00E.cn
  • 4.92E.04
  • 0.00E+00
  • 0.00% *

{

  • 2.974
  • 58.38%
  • 0.50%
  • 1.25%
  • 0.00%
  • 0.00%
  • 88.32%
  • i
  ...............................+.......... .....................,.......... .....................+                                                                                                                                          l
                                                                                                                                                                                                              *
  • MN 54
  • 1.60r.n?
  • l.49E=06
  • n,n0E+00
  • 9.33E=07
  • 2.29r.07
  • 0.00E+00 3.36E=0S
  • 0.00E*00 *
  • 0.00%
  • 1.75%
  • 0.27%
  • 0.00%
  • 6.034
  • 0.n0%
  • 0.37%
  • 4.42%
   ....................,................................ ..........,................................+
  • 0.00E,00
  • 0.00E+00
  • 2.38E.10
  • 6.SSE-to
  • t.5SE=07
  • 0.00E+00
  • Ca 51
  • l.13E.09
  • 2.86E.08 0.n0%
  • 0.00%
  • 0.03%
  • 0.00% *
  • 0.n0%
  • 0.09%
  • 0.00%
  • 0.00% *
   . . . . . . . . . . . . . . . . . . . . . . . . . . . . .* . . + . . . . . . *. . . . . . . . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . .

2h 64

  • 1.48E.n?
  • 1.29F.n? 9.00E.nN 3.04F.n?
  • 2.n0E.n7
  • 0.nnr.On
  • 2.6tt.06
  • 0.00E*0n 0.00% *
                                                                                                                                                                                                                                          *
  • 0.34%
  • 0.40%
  • 0.15%
  • 0.41%
  • 0.23%
  • 0.00%
  • 0.47% *
   ................................................................,.................................

I 131

  • 1.58E.08
  • 4.02F=09
  • 2.16E.08
  • 2.79E=08
  • 4.74E.08
  • 9.20E=06
  • 0.00E+00
  • 0.00E.ca
  • 0.01%
  • 0.014
  • 0 n4%
  • 0.06%
  • 0.07%
  • 0.00%
  • 0.00% *
  • 0.044 *
   ..........................................+.....................,.................................
  • TOTAL 8
  • 4,30g.nS
  • 1.21F*nS
  • 6.S?E.n5
  • 7.46E.05
  • 8.SME.ns
  • 1.37F.02
  • 5.SaE=04
  • 0.00E+00 *
    ..........................................+ ....................+..........,.....................+

i

                                                                                                                                                                                                                                              ,

C-18

                                  - .                            ____              - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ . _ _ _ _ _ _ . _

HAZLGTON GNVIRONM3NTAL CCCNC30 O

                                                                                                 ~

OO "f ~ J Ak X Y ~ COOPER RUCLFAR STAft0N FIRST QUARTER 1900 ConstpED SELEASE abspA AmmUAL INTEGRATED POPUf,ATION DOSE

SUMMARY

(MANREM) PATM*AT = VEGET EUCLtDF 7.90DY Gl. TRACT BONE LIVER N!DNEY THYRUID LUNG SKIN

 .........+.....................+..........+=.........+..........+..........+..........+..........+

f 131

  • 2.39r.n4
  • 7.96E.05
  • 3.43F.04
  • 4.22E.04
  • 7.12E.04
  • 1.37E.01
  • 0.00E+00
  • 0.00E 00 *
  • 27.644
  • 12.644
  • 24.824
  • 29.70%
  • 47.40%
  • 98.334
  • 0.004
  • 0.00% *
 .........+..........+..........+..........+..........+................................+..........+
  • 2,llE=to
  • 4.34E*t0
  • 4.23E.to
  • 6.34E.10
  • 1.n9E.n9
  • 1.02E.07
  • 0.0nE*00
  • 0.00E+00
  • F 133
  • 0.00%
  • 0.00%
  • 0.006
  • 0.00%
  • 0.00%
  • 0.not
  • 0.00%
  • 0.00% *
 .........+..........+..........+..........+.....................+..........+..........+..........+

KR 99

  • 1.3tE.06
  • 1.14E.05
  • 1.16E.04
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00 *
  • 0.10%
  • 1.006
  • 9.104
  • 0.n0%
  • 0.00%
  • 0.00%
  • 0.004
  • 0.006 *
 .........+..........+..........+..........+.....................+..........,..........+...........

SR 90

  • 9.49E.nS
  • 5.24E 06
  • 2.7tF.04
  • 0.00E+00
  • 0.00E+nn
  • 0.00E+00
  • 0.onE+00
  • 0.0CE+00 *
  • 6.15%
  • 0.93%
  • 15.994
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004
  • 0.00% *
 .........+................................+..........+..........+.................................

C8934

  • 2;34E=04
  • S.20E.06
  • 2.06E=04 ** 4.2tE.04 ** 1.34E.04 ** 0.00E+00
  • 4.66E.05
  • 0.00E+00 *
  • 27.n66
  • 0.n4%
  • 14.884 28.47% 12.A94 0.00n
  • 41.78%
  • 0.n04 *
 ....................+..........+..........+.....................+..........+..........+...........

C8837

  • 2.36r.04
  • 7.6SE.04
  • 4.74E.04
  • 5.56E.04
  • 1.867 04
  • 0.00E+00
  • 6. Sit.0S
  • 0.00E*00
  • j
  • 27.264
  • 1.21%
  • 34.314
  • 37.86%
  • 17.674
  • 0.00%
  • 58.20%
  • 0.00%
  • 1 .........,..........+..........+..........+..........+..........+..........+..........+.........u+

CA340

  • 8.16E.07
  • t.69E=0S
  • 1.3tE=0S
  • 1.42E.00 ** 4.74E.09
  • 0.00E+00
  • 8.42E.09
  • 0.00E+00 *
  • o.09%
  • 2.68%
  • 0.954
  • 0.00% 0.004
  • 0.004
  • 0.00%
  • 0.004 *
 .........+.....................+.....................+..........+..........+..........+...........
  • I 131
  • 3.70E.06
  • t.23E.04
  • 5.3tE=06
  • 6.54E.06
  • t.10E.05
  • 2.12E.03
  • 0.00E+00 0.00E+0n *
  • 0.434
  • 0.20%
  • 0.38%
  • 0.444
  • 1.04%
  • t.52%
  • 0.004
  • 0.00% *
 .........+.....................+..........,..........+.....................+..........+...........

C0 Sa

  • t.n0E-n6
  • 1.03E.ns
  • 0.00E,00
  • 7.t3E.07
  • 0,00E+00
  • 0 noEson
  • 0.00E+00
  • n.0nten0 a
  • 0.21%
  • 8.64n
  • c.004
  • 0.nSt
  • 0 non
  • 0.n04
  • 0.not
  • 0.004 *
 .........+.........s+..........+..........+..........+..........+..........+..........+..........+
  • g.ter.nS
  • 4.46E n4
  • 0.00E+00
  • 3.3tg.nS
  • 0.00E+00
  • 0.00E+00
  • 0.onE+00
  • 0.0nE+00
  • Cn An
  • 9.464
  • 10.76%
  • 0.00%
  • 2.26%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00% *
 .........+..........+..........+..........+..........+..........+..........+..........,..........+
  • EN S4
  • 4 t2E.nn
  • 4.tSE.05
  • 0.00E+no
  • 1.90E.05
  • 5.55E.n6
  • 0.0nE+0n
  • 0.00E+00
  • 0.00E+00
  • 0.404
  • 6.S9%
  • 0.00%
  • 1.29%
  • 0.53%
  • 0.00%
  • 0.00%
  • 0.00% *
 .........+.....................+..........+..........+.....................+..........+.a........+

Cp 51

  • 2.86F.09
  • 4.56r.07
  • 0.00r+00
  • 1.00r*00
  • 5.49E.10
  • 1.6SE.09
  • 3.46E.09
  • 0.00E+00 *
  • 0.00%
  • 0.07%
  • 0.00%
  • 0,00%
  • 0.00%
  • 9.00%
  • 0.00%
  • 0.004 *
 ....................+................................+..........+..........+..........+..........+

RN 65

  • S.17E=0t
  • 4.SSE.06
  • 3.3SE.n6
  • 1.0lE.05
  • 6.59E.04
  • 0.00r+00
  • 0.00E+00
  • 0.00E+00 *
  • 0.60%
  • 0.72%
  • 0.24%
  • 0.69%
  • 0.62%
  • 0.00%
  • 0.00%
  • 0.00% *
 . . . . . . . . . . . . . . . . . . . . , . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ,
  • i 138
  • 3.4SE.07
  • t.tSE.07
  • 4.eSr.07
  • 6.09E.07
  • 1.03E.06
  • 1.97E.04
  • 0.00r+00
  • 0.09E+00
  • 0.044
  • 0.n2n
  • 0.n4g
  • 0. net
  • 0.10%
  • 0.144
  • 0.00%
  • 0.004 *
 ...............................+..........+..........+.......... ..........+..........+...........
 'TOTALe
  • 4.64r.no
  • 6.30E=04 -

1.3nr.nl

  • 1.47E.03
  • t.n6E.n3
  • 1.39E.01
  • 1.17E.04
  • 0.00E+00 *
 .........+..........,..........,..........+................................+..........+..........+

C-19

_ _ _ _ _ _ _ _ _

                             .,                 MAZL" TON GNVIRONMENTAL CCl2NC2O
                                                                                                                                                                                                  !

l COOPER NUCLEAR STAfl0N 3 FIRST 00AR7ER 1980 : Com8INED RELEASE ALARA Ah4UAL INTEGRATED POPULATION CO5E SumMARI (MAhEEN) PAThuAY e CDs 4tLR NUCLfDE 7.RODY Gl= TRACT SONE LtVER RIDNET THTROID LUNG SRtN

 ....................,.....................+..........+...........................................,

I lit

  • 1.59E.no
  • 4.9tE*05
  • 2.34E.n4
  • 2.81E.04
  • 4.73E.no
  • 9.09E.02
  • 0.onE+00
  • 0.00E+00 *
  • 34.66%
  • 14.11%
  • 32.60%
  • 29.54%
  • 67.13%
  • 90.24%
  • 0.00%
  • 0.00% *
 ...............................+..................... .....................+..........+...........

1 133

  • l.93E.07
  • 3. sir-n?
  • 1.7tE.n7
  • 9.42r.n?
  • 9.27E.n?
  • 8 RAF.05
  • 0.00E+n0
  • 0.Onr.nn *
  • 0.04%
  • 0.39%
  • 0.05%
  • 0.06%
  • 0.13%
  • 0.10%
  • 0.00%
  • 0.00% *
 .........+..........+.....................+..........+................................+..........+

SR 89

  • 1.46F*07
  • 4.52E=07
  • 5.09r.06
  • 0.00E+00
  • 0.00r+00
  • 0.00E+00
  • 0.00E+0C
  • 0.00E*00 *
  • 0.n3%
  • 0.50%
  • 0.7t%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
 .........+..........+..........+..........+..........+..........+..........+..........+...........

A# 90

  • 2.1tr.06
  • 2.09F=07
  • 9.26E=06
  • 0.00E+00
  • 0.00E+00
  • 0.00r+00
  • 0.00E+0C
  • 0.00E+00 * '
  • 0.30%
  • 0.23%
  • 1.29%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
 .........+..........+..........+.s........+..........+..........+..........+..........e..........+

C3134

  • 1.40r.04
  • 3.22E 0A ** l.40r.04 ** 2.78E.04 ** 8.a2r.05
  • 0.00E+00
  • 3.09E.05
  • 0.00E+oo *
  • 30.42%
  • 3.944 19.40% 29.76% 12.52%
  • 0.n0%
  • 41.83%
  • 0.n0% *
 ....................+..........+..........+..........+..........+..........+..........+...........
  • CSl37
  • t.19E.04
  • 4.64E.0A
  • 3.20E=04
  • 3.65E.04
  • t.22E.04
  • 0.00E+00
  • 4.30E.OS
  • 0.00E+00
  • 30.33%
  • 5.11%
  • 44.44%
  • 30.41%
  • 17.36%
  • 0.00%
  • 50.17%
  • 0.00% * (
 ....................+.....................+..........+..........+..........+..........+..........+.                                                                                            !

84140

  • 2.6tE.00
  • 4.92E.07
  • 4.24F.07
  • 4.45E.10
  • 1.40F=10
  • 0.00E+00
  • 2.64E.10
  • 0.00E+00 *
  • 0.n0%
  • 0.94%
  • 0.06%
  • 0.00%
  • 0,n0%
  • 0.00%
  • 0.00%
  • 0.00% *
 .........+..........+..........+..........+.....................+.....................+...........

I 131

  • 2.46E.06
  • 7.62E.n7
  • 1.63E.06
  • 4.35E 06
  • 7.33E=06
  • 1.4tE.03
  • 0.00E+00
  • 0.00E+0n *
  • 0.544
  • 0.94%
  • 0.58%
  • 0.46%
  • t.04%
  • 1.52%
  • 0.00%
  • 0.00% *
 ....................+..........+..........+..........+..........+.....................+...........

CO SO *

9. 6 A E.oit
  • 4.90E.07 ** n,00E+00
  • 3.73E.03
  • 0,00E+oo
  • 0.00E+0n
  • 0.00E+00
  • 0.00E+on *
  • 0.02's
  • 0.95% 0.00%
  • 0.n04
  • 0.03%
  • 0.00%
  • 0.00%
  • 0.00% *
 .........+.....................+..........+..........+..........+..........+....................+

CD to *

4. Set.04
  • 2.25F.05
  • 0.00E+00
  • l.82E.06
  • 0.00E+00
  • 0.00r+00
  • 0.00E+00
  • 0.00Ee00 *
  • 1.00%
  • 24.76%
  • 0.00%
  • 0.19%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 1
 .........+..........+..........+..........+.......... ..........+..........,..........+..........+

mh 54

  • 5.67E.08
  • 5.12E.07
  • 0.00E+00
  • 2.55E.07
  • 7.41E=08
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00 *
  • 0.01%
  • 0.96%
  • 0.00%
  • 0.03%
  • 0.01%
  • 0.00%
  • 0.00%
  • 0.00% *
 .........+.....................+..........+..........+..........+..........+..........+..........+
CR 58
  • 3.47E.tn
  • 5.25E.08
  • 0.00E+00
  • 0.00E*00
  • 6.06E.lt
  • 2.InE.tc
  • 4.37E.10
  • 0.00E+00
  • l l
  • 0.00%
  • 0.06%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
 ......... ................................+=.........+.....................+..........+..........+

Em 49

  • t not.ng
  • 7.9tt.04
  • A 4)E nA
  • 1.92E=09
  • 1.24E.n3
  • 0.onE+00
  • 0.00r 00
  • 0.onE+00 *
  • 2.19%
  • 8.73%
  • 0.09%
  • 2.02%
  • 1.77%
  • 0.00%
  • 0.00%
  • 0.00% *
  .........+.....................+..........+..........+..........+..........+..........+..........+

1 131 *

  • 2.29E=07
  • 7.10 Foot *
  • 3.39E.n?
  • 4.06E.07
  • 6.03E.07
  • 3.1tE.04
  • 0.00E+00
  • 0.00E+00
  • 0.05%
  • 0.09% 0.05%
  • 0.04%
  • 0.10%
  • 0.14%
  • 0.00%
  • 0.00% *
  . . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . , . . . . . . . . . . + . . . . . . . . . . ,
  • 4.sgE.no
  • 9.0er.og
  • 7.19E.04
  • 9.Str no
  • 7.04E.no
  • 9.29E.07
  • 7.40E.0S
  • 0 OnE+no
  • eTOTALe
  ....................+...........................................+..........+..........+...........
                                          .

i 1 l C-20

i 6

                                          ;,
                                         > t \;is HAZLETON ENVIRONM2NTAL CCIONC~IO i-1 : .
    ; p ' . . . : 1. : i t        -3 , t . < l I '!
              !

y; i( !,!'OIIU jdg J 4 ohvh)p ji d b a CCOPER NUCLEAP STATION : ripST QUApfEp* 1980 Com8INED RELEASE ALARA ANNUAL INTFGRATED POPULATION DOSE

SUMMARY

(MANRE4) PATHWAT e " EAT cetCLIpE 7,80DY Cf.tpACT BONE LIVER RIDNET TNTROID LUNG SKIN

   .........+..........+..........+..........+..........+..........+..........+..........+..........,
  • t 139
  • 9.42E=06 * ).69E.nA
  • 9.26E.05
  • t.66E.og a 2.Atr.05
  • S.38E.01
  • 0.00E+00
  • 0.onr*00
  • 9.03%
  • 1,004
  • 14.19%
  • 11.70%
  • 41.31%
  • 98.33%
  • 0.00%
  • 0.00% *
   .........+..........,..........+..........+..........+..........+..........+..........+..........+

1 131 *

f. tor =13
  • 2.69E.tl
  • 7.tSE.11
  • 3.44E.13
  • 5.94E.11
  • 5.30E.11
  • 0.nnE+00
  • 0.00E+00 *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
   .........+..........+..........+..........,.....................+..........+..........+..........+

M2 09 *

  • 3.04E=0a
  • 1.66E.07
  • 1.34E 06
  • 0.00E*00
  • 0.00E+00
  • 0.00E+00
  • 0.00E*00
  • 0.00E+00
  • 0.04%
  • 0.00%
  • 1.51%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0
   ....................+..........+..........+.........+..........+..........+................00%*

S2 90

  • 9.9?E*47
  • 9.51E.04
  • 3.A4E.n6 *
                                                                                                                                           ....+
  • 0.00E*00 ** n.00 reno
  • 0.00E+0n ** 0.00E+00
  • 0.00E+0n
  • h 0.06%
  • 0.n5%
  • 4.10%
  • 0.n04 0.00%
  • 0.00% 0.00%
  • 0.00%
  • 1
   .........+..........+..........+..........+..........+..........+..........+..........+..........+

C3lle

  • 3.07E.n%
  • 6.76r=07
  • l *
  • 2.0er.05
  • 4.57E.05
  • 1.46E.05
  • 0.00E+00
  • 5.00E.06
  • 0.00E+00
  • j 29.47% 0.33%
  • 23.47%
  • 32.10%
  • 21.51%
  • 0.00% *
   ....................+..........,..........,..........+..........,..........+..........+.....00%*
  • 42.21%
  • 0
                                                                                                                                          ....+

f3tl7

  • 3.tlf.49
  • 9.63E.07
  • 4.7tt 05
  • 5.92E.05
  • 1.99E.as
  • 0.onE+00
  • 6.e4E.06
  • 0.00E+00
  • 29.A2%
  • L 0.47%
  • S3.85%
  • 41.A7%
  • 29.29%
  • 0.00%
  • J ......... ..........+..........+..........+..........+..........,..........,..........+..... S7.78%
  • 00% 0
                                                                                                                                              *
                                                                                                                                          ....+

94140

  • 4.02F=00
  • 1.01E*06
  • 6.32R.07
  • 7.29E.10 *
                                                                                                          .

2.46r.10

  • 0.00E+00 ** 4.20E.10
  • 0.00E+00 *
  • 0.04%
  • 0.50%
  • 0.71%
  • 0.00%
  • 0.00%
  • 0.00% 0.00%
  • 0
   ...............................+.....................+..........+..........+................

T til

  • 1.46E.n?
  • 5.71E.08
  • 00% ....+*

(

  • 0.14% *
  • 1.95E.07
  • 2.57E.07 ** 4.16r.07
  • 4.34E 05 ** 0.00r+00
  • 0.00E+00
  • 0.034 0.22%
  • 0.18% 0.64%
  • 1.524

[

   ....................+..........+..........+.....................+..........+.....

CD SS

  • 5.05t=07
  • 3.6?r.06
  • 0.00E+00 2.tlF.07
  • 0.00E+no
  • 0.00E+00
  • 0.00E+00
  • O.00F*00 *
  • 00%0
  • 0.00% *
                                                                                                                            ....+..........+
                        *

( 0.40%

  • 1.78%
  • 0.00%
  • 0.15%
  • 0.00% *

.

   ...............................+..........+..........+..........,................                        0.00% *00%   0
  • 0.00% *
                                                                                                                            ....+...........

CO 60

  • 2.7eE.oS ** 1.09E=04
  • 0.00E*00 *
  • t.19E.05
  • 0.00E+00
  • 0.00E*00
  • 0.00E+00
  • 0.00E+00
  • 26.60% 92.S5%
  • 0.00%
  • 8.40%
  • 0.00%
  • 0.00%
  • 00%
   ....................+..........,..........+.....................+................
  • 0
  • 0.00% *
                                                                                                                            ....+..........+

un $4

  • e.75E=00
  • 1.0SE.nn
  • 0,00E+00 ** 4.04E.n7
  • 3.19E.07
  • 0.00E+04
  • 0.00E+00
  • 0.00E*00
  • 0.06%
  • 0.51%
  • O.00% 0.79%
  • 0.17%
  • 0.00%
  • 0 0.00% *
   ....................+.....................+..........+..........+................00%*

CR 58

  • 1.26r-10
  • 2.50E=0a
  • 0.00r+00
  • 0.00E*00 *
                                                                                                                            ...............+
  • 2.57F.11
  • 7.34E.lt
  • 1.59E.10
  • 0.00E+00
  • 0.00%
  • 0.01%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
   .........+..........+.....................+......................................00%*

FN 65

  • 1.40E.06
  • 3.04E.06
  • 0
                                                                                                                            ....+..........+
                        *
  • 2.33E.06
  • 7.22E=06
  • 4.76E.06
  • 0.00E+00 ** 0.00E+00
  • 0.00E+00
  • 3.14% 1.80%
  • 2.42%
  • 5.10%
  • 6.99% *
   .........+.....................+..........,..........+.....................+................00%*
  • 0.00% 0.00%
  • 0
                                                                                                                                          ....+

I 131

  • 1.36E=ce
  • S.3tE=09
  • 1.02E.00
  • 2.39E.08
  • 4.06E.00
  • 7.77E.06
  • 0.00E+00
  • 0.00E+00
  • 0.0t%
  • 0.00%
  • 0.02%
  • 0.02%
  • 0.06%
  • 0.14%
  • 0.00% *
   .........+..........+..........,..........+.....................+.....................+.....00%*                                    0
                                                                                                                                          ....+

e?07 ale

  • 1.04E=04
  • 2.04E.04
  • 8.87E=05
  • 1.4tE.04
  • 6.8tE=05
  • 5.47E.03
  • t.18E=0S
  • 0.00r+00 *
   .........+..........+..........,..........+.....................+..........+..........+..........+

, C-21

_ _ _ _ - . 1 s l ANTON CNVIRONM7NTAL. CCl3NCGG D \ C00 pep NUCLEAR STAT 3DN I FIRST QUAR 7ER 1990 3 CQsBINF.D RELEASE ALANA ANNUAL INTFGRATED POPULATION DOSE SUmnAny isApatn) j PATHmAY e 8 TOTAL 8 l NUELIDE 7.800f CI. TRACT BONE LIVER RIDNEY THYR 010 LUNG SKIN

 ..........................................+.....................,................................+

so 35 .

  • 4.3tE.06
  • 4.3tF=06
  • 4.3tE=06
  • 4.3tE.06
  • 4.3tE.06
  • 4.3tE.06
  • 1.43E=05
  • 7.22E=04
  • 0.00%
  • 0 n0%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.n0%
  • 0.03%
  • 0.A4% *
 ...........c.....................................................................................,

km 85m *

  • 1.26E.01
  • l.26E.03
  • 1.26E.03
  • t.26E=03
  • t.26E.01
  • 1.26E.03
  • 1.3tE.03
  • 4.63E.03
  • 2.414
  • 2.44%
  • 2.38%
  • 2.36%
  • 2.39%
  • 0.42%
  • 2.49%
  • 4. net *
 ..................................................................................................
  • rm 87
  • 3.32r.01 = 3.32E.01
  • 3.32F.03
  • 3.32E.03
  • 3.32F=03
  • 3.32E 03
  • 3.44E.03
  • 1.48E.02
  • 6.35%
  • 6.41%
  • 6.25%
  • 6.71%
  • 6.29%
  • 1.10%
  • 6.55%
  • 13.n24 *
 ...........................................................................+.....................,

sp 4e *

  • 2.75F.02 - 2.79F=n2** 2.75F.02
  • 2.75E.02
  • 2.75E=02
  • 2.75F.02
  • 2.76E.02
  • 4.04E.02
  • 52.561
  • S3.out 51.784
  • 51.41%
  • 52.12%
  • 9.12%
  • 52.71%
  • 35.60% *
 ................................................................ .................................
  • IFl3)
  • 2.StE.03 - 2.5tE*01
  • 2.5tE.03
  • 2.StE.03
  • 2.51E.03
  • 2.StE.03 ** 2.69E.03
  • 4.56E.93
  • 4.79%
  • 4.R44
  • 4.724
  • 4.69%
  • 4.75%
  • 0.83% 5.12%
  • 7.55% *
 .................................................................................................,
  • ILt39
  • 1.ter.02 ** 1.tst.02
  • 1.30E.02
  • 1.lAE.02
  • 1.18E=62 ** l.taE.02
  • 1.2tE.02
  • 3.8tE=02
  • 22.49% 22.71%
  • 22.16%
  • 22.00%
  • 22.304 3.90%
  • 23.06%
  • 33.574 *
 ...............................<..........,..........................................                 3...........

Irt39m

  • 3.32E.05
  • 3.12F.0S
  • 3.32E.05
  • 3.32E.05
  • 3.12E.05
  • 3.32E.05
  • 3.34E.05 ' 5.40E=05 *
  • 0.n6%
  • 0.n6%
  • 0.06%
  • 0.06%
  • 0.n6%
  • 0.nt%
  • 0.06%
  • 0.n5% *
 .................... .....................,.....................,..................... ..........,
  • XEl30 3.97E.no
  • 3.97E.04 ** 1.97E.04
  • 3,97E.04
  • 1.47Eene
  • 3.97E.04
  • 4.02E 04
  • 8.3tE.04 *
  • 0.76%
  • 0.774 0.75%
  • 0.74%
  • 0.75%
  • 0.13%
  • 0.77%
  • 0.73% *
 ..........................................,.......................................................                   ,

PP 4e *

  • 1.77E.0E
  • t.77F.na
  • 1.77E=08
  • 1 77F.08
                        *
  • 1.77E.08
  • 1.77E.0a
  • t.goE.03
  • 4.21F.no
  • l 0.n04 0.n0%
  • 0.00%
  • 0.n0%
  • 0.00%
  • 0.n0%
  • 0.00%
  • 0.00% *
 ...............................,................................+.................................

En Slp

  • 1,42E nn
  • t.4?E 0g
  • 1.42E.0a
  • 1.42E.09
  • t.42E.08
  • 1.42E.08
  • t.1tE 06
  • 4.02E.06 *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
 ........................................" ....................,................... ...........,

IF137

  • 1.50E.09
  • t.50F.08
  • 1.50E.63
  • 1.50F.08
  • 1.50E.0%
  • 1.50F.08
  • 1.76E.09
  • 2.76F.07 *
  • 0.00%
  • 0.n0%
  • 0.n0g
  • 0.00g
  • 0,00%
  • 0.00%
  • 0.0ct
  • 0.00% *
 ....................+.....................,.....................,..........+....... ............+
  • IE133m
  • 5.90E.05
  • 5.99K.05
  • 5.98E.0S
  • S.98E.05
  • 5.9st.05
  • S.9aE.05
  • 6.68E.05
  • 5.6tE.04 **

0.11%

  • 0.32%
  • 0.11%
  • 0.11%
  • 0.11%
  • 0.02%
  • 0.13%
  • 0.49%
 ................................................................ ................................,
  • Ett3lp
  • 2.99E=06
  • 2.99F.nA
  • 2.99E.06
  • 2.99E.0A
  • 7.99E=06
  • 2.99R.04
  • 3.7tE.n6
  • 3.6er.n9
  • 0.n0%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.03% *
 ....................,..................... ......................................................,
  • t 138
  • 4.40E.04
  • 1.57E.04
  • 6.39F.04
  • 7.77E.04
  • 1.30E=03*
  • 2.4AE=0!
  • 1.94E.05
  • 2.36E.05
  • 0.86%
  • 0.30%
  • 1.20%
  • 1.454
  • 2.46% 81.44%
  • 0.04%
  • 0.02% *
 .................................................................................................,
  • I til
  • 3.11E.06
  • 4.29E=66
  • 4.94E.06
  • 6.90E.06
  • 1.11r.0%
  • 8.A7E.04
  • 1.29E.06
  • 1. Sat.06
  • 0.0C%
  • 0.00%
  • 0.00%
  • 0.01%
  • 0.02%
  • 0.29%
  • 0.00%
  • 0.00% *
 ..................................................................................................
  • SR 29 3.52E.06
  • 1.29E.ng
  • 1.23E.04
  • 9.4at.31
  • 9.4sg.it
  • 9.4pE.11
  • 2.63E.06
  • 1.tnE.30 *
  • 0.00%
  • O.02%
  • 0.23%
  • 0.00%
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00% *
 ..........................................,.......................................................

Am 90 * *

  • S.OSE=n9 S.62E*06 2.45F.04
  • 0.000,00
  • 0.00r,no
  • 0.00F+00
  • 1.29r.66
  • 0.00E,00 *
  • 0.11%
  • 0.ntt
  • 0.464
  • C.00%
  • 0.00%
  • 0.n0%
  • 0.00%
  • 0.00% *
 .................... .....................,..................... .......... ......................
            *
  • C8834
  • 6.0eF.04
  • 2.04E.04
  • 5.66F.04
  • 9.53E 04
                                     *          *
  • 4.35r.04
  • 1.94E.04
  • 2.78F.04
  • 2.27E.04
  • 1.16% 0.194 1.07% t.794
  • 0.82%
  • 0.n6%
  • 0.53%
  • 0.70% *
 ..................................................... ............................................
                                                                                                                      <

l

                                                                                                                      ;

1 1 C-22

   --
                                      .
                                                   .                     .
                                                                                                                 .
                                                                                                                                             . .

HAZLETON CNVIRONM2NTAI. CCl2NC3D

                                                                                                                       .

COOPER NUCLEAR STATION 3 FIRST QUARTER 1900 COM8thED RELEASE 4LApa agNU4L INTrGRATED POPULATION COSE SUmMART (MANREM) PATHeaf a

  • TOTAL * (CONTINUE 0)

MUCLIDE T. Bony GI-TRACT BONE LIVER KIDNEY TPYROID LUNG $ KIN

          ......................................................,.....................,......................
  • C5137
  • 8.71E=0i
  • 4.70E*04
  • 1.3tE=0)
  • 1.45E-03
  • 7.90E.04
  • 4.87K.04
  • 5.74E.04
  • 5.33E=04
  • 1.664
  • 0.914
  • 2.47%
  • 1.50% *
          ..........................................,..........,......................................

rat 4G

  • 2.724
  • 0.154
  • 474
  • 1.09g
  • 0
                                                                                                                                   ....,
  • 1.37E.06
  • 2.09E*05
  • 1.5tE*05
  • 4.7JE.07
  • 4.63E.07
  • 4.59E.07
  • 1.52E.05
  • 5.23E.07
  • f 6 0.00%
  • 0.04%
  • 0.03%
  • 0.00%
  • 0.004
  • 0.03% *
          .........+................................,...............................+................004*

0.004

  • n
                                                                                                                                   ....,

t 138 ** 7.tnE.n6

  • 2.49E.no
  • 8.ntE.n5
  • 1.23E.09
  • 2.06E.05
  • 3.89E.01
  • 3.09E.07
  • 3.7ht.n?
  • 0.ntt
  • 0.00%
  • 0.n2%
  • 0.02%
  • 0.04%
  • 1.29% *
          ................................................................,........................... 004 *
  • 0.00%
  • 0
                                                                                                                                   .....

CO 58 7.39E.06

  • 2.00E.05
  • 4.97E.06
  • 5.94E.06
  • 4.97t=06
  • 4.97E.06 *
  • 1.16E.05
  • 5.02E.06
  • 0.ntt
  • 0 n4%
  • 0.00%
  • 0.ntt
  • 0.00%
  • 0.not
  • 0.02%
  • 0 s ............................................................................................

CO 60

  • 3.37E-01
  • 3.93E.01
  • 3.26E.03
  • 3.30E.08
  • n04 .....
  • i
  • 6.444 *
  • 3.26E.03
  • 3.26E.03
  • 3.75E.03
  • 3.83E.n3
  • i 7.994 6.lJn
  • 1.006 *

! um 54 6.174 *

          ................................................................               ..........

6.174 *

                                                                                                     ..... 15% 7
  • 3.104 *
                                                                                                                   ...............,
  • 6.63r=05
  • 1.06E.04
  • 6.19E=05
  • 8.25E.05
  • 6.7AE.05
  • 6.19E.05
  • 9.55E.05
                       *
  • 7.25E.n5
  • l 0.13%
  • 0.714
  • 0.12%
  • 0.15%
  • n.13%
  • 0.02%
  • 0.10%
  • 0

)

          ..........................................

CR 51

  • 9.67E.08 *
                                                                ................................................. n64 *            ....,
  • 6.54E.07
  • 9.22E.09
  • 9.22E.08
  • 9.3tE.00
  • 9.48E=00
  • 2.5tE=07
  • 1.09E.07 *
  • l 0.004 - 0.00%
  • 0.00% 0.00%
  • 0.00%
  • 0.00% *

-

          .................................................................................

FN 65

  • 00%
  • 0.004
  • 0
                                                                                                                   ...............,        e
  • 2.30E.05
  • 2.06E-05 a* 1.64E 05
  • 4.10E.05
  • 2.82E.05
  • 4.16E=06
  • 6.77E.06
  • 4.79E.06
  • 0.04%
  • 0, net 0.03%
  • 0. net
  • 0.n5%
  • 0. nog
  • 0 0.n0% *
          .......................................... ..........,..........,................ ...............,       014
  • t 131 *
  • 6.31E.07
  • 2.22E=07
  • 9.0tE.07
  • 1.09E.06
  • 1.83E.n6
  • 3.46E=04
  • 2.72E=08
  • 3.3nE=0A
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.11% *
          ..........................................,...................................... 00% * ...............,

0 0.00%

  • tTOTAL
  • 5.23E.02
  • 5.18E.02
  • 5.1tE.02
  • 5.35E=02
  • 5.2AE.02
  • 3.02E=01
  • 5
  • 1.13E=01 *
          .......'...................................,.....................,.............        24E.02      ..................,
                                                                                    .

i C-23

      . .         . .
                                   .
                                                             .
                                                                     .
                                                                             -

_ _ _ - _ _ _ _ _ _ _ _ - HA2LETON CNVIRONMENTAL CCl2NCOO J f a i COOPER NUCLEAR STAT 10N e r!RST QUARTER 1980 : COMBINED SELEASE 4 EPA ANNUAL 1NTFCRATED POPULATION DOSE .1UMMART (MANREM) LlyER 51D4ET TNTROID LUNG SKIN PATHwAf 7.80DY C1 7mACT RCNE ..........................................+ PLUpt

  • 2,3tr nl *
                                                    ....................+..........

2.3tt.01

  • 2.1tE.nl
  • 2.3tE.08
  • 2.ltF.01
  • 2.3tE.01
  • 2.40E.04
  • 7.42E=08
                                                                                                         .......................
  • 91.934
  • 93.72%
  • 13.59%
  • 97.63%
  • 99.37%
  • I
  • 94.734
  • 95.964
  • 93.174 *

....................,.....................,................................+....................., r.m0UND ' 4.00F=03

  • 4.00E.0 3
  • 4.00E 0 3
  • 4.00E.0 l.59%3*
  • 4.00F=03 1.634 *
  • 4.00E.0 0.2443*
  • 4.00E.03 1.636 ** 4.70E.0 0.6343 **
  • 1.644
  • t.66%
  • 1.624 *

..........................................+......................................... .+.... ...... 0.0ntenn

  • IMMAL
  • 4.30E=05 - 3.21E.09
  • 4.52E.05
  • 7.44E.05
  • A.55E.05 0.034 ** 1.37E.02 0.81% ** 5.5fE=04 0.234
  • 0.00% *
  • 0.C2%
  • 0.0l%
  • 0.03%
  • 0.034 *

..................................................................................................  ; VECET

  • 2.76E.01
  • 2.02E.03
  • 4.42E 03
  • 4.70E.03
  • 3.30E=03
  • 4.45E.01 26.204**3.57E=04 0.15% ** 0.00E+00 0.006 **
  • 1.144
  • 0.a4g a 1.794
  • 1.n74
  • 1.37% *

................................................................+.................................

  • 7.21E.01
  • 9.56E.03
  • 7.0st.03
  • 9.30E.01
  • 7.44E.04
  • 0.00E,00
  • Cn stLa a* 4.6tt.03 * *9.13E.04 3.91%
  • 2.884
  • S4.83%
  • 0.30t
  • 0.000
  • 1.894 0.39%
  • 2.92% *
.................................................................................................,                                   *
 -

MEAT

  • 1.40E=03
  • 2.74E.01
  • 1.19E.03
  • 1.90E.03
  • 9.16E=04
  • 7.36E.02
  • 1.59E.04
  • 0.COE,00
  • 0.506
  • 1.14%
  • 0.40%
  • 0.764
  • 0.37%
  • 4.34%
  • 0.06%
  • 0.004 *
....................+.....................+ ...............................,..........+..........,
  • stoyste . 2,43g.nl . 2,qng.0g
  • 2.47E.01
  • 2.5tE.01
  • 2.44E=01
  • 1.70Eeno
  • 2.46E.01
  • 7.46E.41
................................................................+..........+..........+..........,

1 1 C-24 ___

_ HAZLETON CNVIRONM2NTAL CCIENCM C00PER NUCLEAR STAT 10N I FIRST QUARTER 1980 s C04BINED PELEASE KEPA ANNUAL INTEGRATED POPULAT10N DOSE

SUMMARY

(MahAEM) P47MuaY a PLUut EUCLIDE 7.80DY GI= TRACT PONE LIVER RIDNET THYROID LUNG SKIN

   .........+..........,.....................+..................... ..........+.......... ..........,
  • E2 85
  • 7.02E.04
  • 7.01F.04
  • 7.02E.04 ** 7.02F.04
  • 7.02E.04
  • 7.02F.04
  • 2.33E=03
  • t.18E.01 l
  • 0.306
  • 0.404
  • 0.304 0.10%
  • 0.304
  • 0.304
  • 0.974
  • 15.874
  • 1
   .........      ..........+..........,..........s..........e.....................+..........,..........,

l RR 852

  • 4.5tE=03
  • 4.56E.03
  • 4.56E=03
  • 4.56f.03
  • 4.SaE.03
  • 4.56E=03
  • 4.7tt.03
  • 1.67E.02
  • 1
  • 1.90%
  • 1.90%
  • 1.994
  • 1.904
  • 1.984
  • t 90%
  • 1.964
  • 2.254 *
   ................................................................+.................................

l N2 07

  • 9.13E.03
  • 9.11r.03
  • 9.ttE.03
  • 9.11t.03
  • 9.1tE.03
  • 9.11E.03
  • 9.43F=03
  • 4.05E.02 *
  • 3.954
  • 3.954
  • 3.954
  • 3.954
  • 3.95%
  • 3.954
  • 3.93%
  • 5.46% *
   ..........................................+.....................,.....................+..........,

um 44

  • 8.57E.02
  • 4.57E=02*
  • 9.97E=02
  • e.57E 02
  • 8.57E.02
  • 8.57E.02*
  • 8. Alt.42
  • 1.2AE.01
  • 1
  • 37.18%
  • 37.19% 37.194
  • 31.184
  • 37.18%
  • 37.itt 35.884
  • 16.994 *
   ....................,..........+............................................+.....................+

IEl33

  • 7.50E=n2
  • 7.50E 02
  • 7.50E.02
  • 7.5(E.02
  • 7.50E 02
  • 7.50E=02
  • 8.03E 02
  • 2.56E.01 *
  • 32.534
  • 32.53%
  • 32.534
  • 32.534
  • 12.53%
  • 32.53%
  • 33.404
  • 34.534 *
   ..........................................+................................ ..........+...........
  • tEt35 5.29E.02
  • 5.19E.02
  • 5.29E.02
  • 5.29E.02
  • 5.29E.02
  • 5.29E=02
  • 5.44E.02 a 1.7tt.01 *
  • 22.964
  • 22.964
  • 22.964
  • 22.964
  • 22.96%
  • 22.964
  • 22.65%
  • 23.07% *
   ....................+..................... .......................................................

IE135p

  • 1.00E=04
  • 1.00E.04
  • 1.00E.04
  • 1.00E.04
  • t.00E.04 ** 1.00E.04
  • 1.09E=04
  • t.79E.04 *
  • 0.054
  • 0.05%
  • 0.05%
  • 0.054
  • 0.054 0.054
  • 0.056
  • 0.024 *
   ....................+..........+...........................................+.....................,

XEt38

  • 1.36F.03
  • t.36E.03
  • 1.36F 03
  • 1.36E.03
  • 1.36E*03
  • 1.36E 03
  • 1.37E.03
  • 2.84E.03 *
  • 0.59%
  • 0.M9%
  • 0.594
  • 0.594
  • 0.59%
  • 0.59%
  • 0.57%
  • 0.304 *
   ....................+.....................+..........+...........................................,

sp 89

  • 7.70E.07
  • 7.7AE.07
  • 7.7st.07
  • 7.76E.07
  • 7.78E=0?
  • 7.7mE=07
  • 7.88E.07
  • 1.85E.04 *
  • 0.006
  • 0.00%
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004 *

,

   ............................... ...........................................+.....................+

Ep 03M

  • 4.07r.ca
  • 4.o7E.co a 4.n?E.Os
  • 4.07E.0e
  • 4,07E.Os
  • 4.07E.0g
  • 3. tee.06
  • 1.15E.05
  • l i
  • 0.00%
  • J.004
  • 0.004
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.004
  • 1 .........s..........s..........s..........s..........e..........s..........e..........e..........e
  • ret 37
  • 3.53E=47
  • 3.53E=07
  • 3.53E.07
  • 3.53E.07
  • 3.53E.07
  • 3.53E.07
  • 4.14E*07
  • 6.49E.06 t
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004
  • 0.004
  • 0.00% *
    .........................................=*..........+...........................................,

ret 33m

  • 8.95E.44
  • 4.95E=04 ** 8.95F=04
  • 9.95E.04
  • 9.95E=04
  • 8.95E.04
  • 9.99E.04
  • 9.39E=03 **
  • 0.394
  • 0.394 0.39%
  • 0.39%
  • 0.394
  • 0.394
  • U.426
  • 1.134
    ..........................................+..........+..........,..........+.....................+

Ett3tm

  • 1.15F=04
  • 1.75E.04
  • t.75E.04
  • 1.75E 04
  • 1.75E.04
  • 1.75E.04
  • 2.17E 04
  • 2.tSE.03 *
  • 0.004
  • 0.00%
  • 0.08%
  • 0.00%
  • 0.08%
  • 0.004
  • 0.094
  • 0.29% *
    ....................+.....................+..........+..........,................................,
  • eTOTALs
  • 2.31E.01
  • 2.3tt.01
  • 2.3tE.01
  • 2.3tE=01
  • 2.Jir.01
  • 2.3tE.01
  • 2.40E.01
  • 7.42E.01
    .........+..........+.....................+..........+.....................+.....................+

i C-25 i __

HAZLETON GNVIRONMENTAL CCCNCZ 3e n

                  .y                     _

D' D 9 4 _j "

       "

o o . ,

                                                                                                                                                                                             ,

I

                                                                                                                                                                                             ;

COOPER NUCLEAR STATION e FIRST QUARTER 1980 1 Cam 81Nr0 RELEASE i NEPA ANNUAL INTEORATED POPULATION DOSE SUmeARf(mAhpE4) l PAThuAT a GenumD 1 l GI. TRACT BONE LIVER EIDNEY THYR 0!D LUNG SKIN NUCLIDE T.800Y ....................+...........................................+.....................

  • 1,947*45
  • 1.94E.05
  • 1.94F=05
  • l.94E.05
  • l.94r.05
  • l.94E.n5
  • t 94E.05
  • 2.36E 05 *
                                                                                                                                                                              +...........

I 131 0.49%

  • 0.49%
  • 0.50% *
  • 0.49%
  • 0.494
  • 0.49%
  • 0.49%
  • 0.49% *

....................+.....................+..........+....,................+..........+........... I 133

  • 1.29E.04 ** 1 29E=06
  • 1.29E=04
  • 1.29r.06
  • 1.29F*06
  • 1.29E.06
  • 1.29R=06
  • 1.56E=06 *
  • 0.03% 0.03%
  • 0.03%
  • 0.03%
  • 0.03%
  • 0.03%
  • 0.03%
  • 0.03% *
                                                                                                                                                                              +..........+

. . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . +* . . . . . . . . . . +* . 9.4pt.11

                                                                                                                                     . . . . . . . . . +* . 9.49E=tl
                                                                                                                                                            . . . . . . . . .
  • l.10E.80 *
 .ta 39
  • 9,49E.lt
  • g.40E.lt
  • 9.49E=ll
  • 9.48E.11 9.49E.lt *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%

.........+................................,.....................+.....................+........... cst 34

  • l.94E.04
  • 1.94E.04
  • 1.94E.04
  • 1.94E.c4
  • l.94E.04
  • 1.94E.04
  • 1.94E.04
  • 2.27E 04 *
  • 4,A6%
  • 4.A6%
  • 4.A6%
  • 4.R6%
  • 4.n6%
  • 4.A6%
  • 4.86%
  • 4.R2% *

....................+.....................,.....................+..................... +..........+ C3137

  • 4.57E.04 ** 4.57E.04
  • 4.57E.04
  • 4.57E 04
  • 4.57E.04
  • 4.57E=04
                                                                                                                                 *
  • 4.57E.04
  • 5.33F=04 *
  • 11.426 11.424
  • 11.42%
  • 11.42%
  • 11.42% 11.424
  • 11.42%
  • 11.34% *

................................................................+..........+.....................

  • 4.58E=07
  • 4.99R n7
  • 4.58E.07
  • 4.54R.07
  • 5.23E.07 *
                                                                                                                                                                                           .

8A140

  • 4.5sr.n?
  • 4.58E.07
  • 4.58F.07 0.01%
  • 0.014 *
  • 0.01%
  • 0.01%
  • 0.01%
  • 0.01%
  • 0.014
  • 0.01% *
...............................+.................................................................         -

3.09E.o?

  • 3.0eE.07
  • 3,09E.n7
  • 3.74E.n?
                                                                                                                                                                                           .
  • I 131
  • 3,n9E=07
  • 3.09E.n?
  • 3.09E.o? " 3.09E=07 0.00% *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% * ,
..........................................+................................
  • 4,97t=06
  • 4.97E.04
                                                                                                                                              ..........+..........
  • 4.97E=06
  • 5.87E.n6
                                                                                                                                                                                           .
                                                                                                                                                                                           *
                                                                                                                                                                                             ,

f CO 59

  • 4.97E.0A
  • 4.97E.06
  • 4.97E 06
  • 4.97E=06 0.12% *
  • 0.17%
  • 0.12%
  • 0.12%
  • 0.12%
  • 0.12%
  • 0.12%
  • 0.12%
  • i
..................................................................................................

CO 60

  • 3.26E nl
  • 3.26E.03
  • 3.26t*03
  • 3.26E.03 01.41% *
  • 3.76E=43
  • 3.26E.03
  • 81.41%**3.2AE=03 .R1.41% *
  • 3.03E.03 81.51% **
  • 31.41%
  • 81.41%
  • Bl.41%
  • 81.41%
....................+..........+......................................................+...........
  • 6.19E.09
  • 6.19r n 5
  • 7.25E.n5
  • uN 54
  • 4.19E.05
  • 6.19E.n9
  • 6.19E.05
  • 6.19E.09
  • 4.19F.09 1.94% *
  • 1.95%
  • l.55%
  • 1.55%
  • 1.95%
  • 1.55%
  • l.95%
  • 1.55% *
.........s..........+..........s..........+.....................+..........s..........+..........+
  • 9.22 r.0 8
  • 9. 2 2E.0 a
  • 9.2 2 K*0 8
  • 1.0 9E.07
  • Ce St
  • 9.227 08
  • 9.22E.04
  • 9.227 08
  • 9.22E.04
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
 .........e.....................+ .........e..........s..........+..........s..........+...........

ZN 65

  • 4.16E.no
  • 4.16E.04
  • 4.lAE.06
  • 4.16E.06
  • 4.16K.04
  • 4.16E=0A
  • 4.thE=06
  • 4.79E.0A *
  • 0.10%
  • 0.10%
  • 0.10%
  • 0.10%
  • 0.10%
  • 0.10%
  • 0.10%
  • 0.10% *
.........e..........+..........+.....................+..........e..........+..........e..........e
  • 2.72E.an
  • 2.72E.c4
  • 2.777.an a 2,72E.no
  • 3.3nt.ca a I 1 31
  • 2.72E.09
  • 2.727 0a **2.72E=04 0.00g
  • 0.n0%
  • 0.00%
  • 0.00% *
  • 0.00%
  • 0.00% 0.00%
  • 0. nog *
.........+........................................................................................
  • TOTAL 8
  • 4.00E.03
  • 4.00E.03
  • 4.00E-03
  • 4.00E.03
  • 4.0CE*01
  • 4.00E.03
  • 4.00E.03
  • 4.70E.03 *
....................+.....................+.....................+.....................+...........

C-26

HAZLETON GNVIRONM2NTAL CCCNC'20

                                                -

_ .g. cc,e '

           ,h h dhl ld S        -       I
    $ld)[[d                             L                       a C*0PER NUCLEAR STATION : FIRST OUARTER 1980 : C0m61NED RELEASE EEPA ANNULL INTEGRATED POPULATION DOSE 

SUMMARY

(NA4RE4) PATHNAF s INHAL EUCLIDE T. ROOT C1. TRACT BONE LIVER KIDNEY THIROID LUNG SKIN

   .........,.....................,..................................................................

I 131

  • 2.t?E 05
  • 5.52E.06
  • 2.96E.05
  • 3.83E.05
  • 6.50E.05
  • 1.26E 02
  • 0.00E+00
  • 0.00E+00 *
                     *
                              $0.4t%
  • 17.06%
  • 45.32%
  • 51.32%
  • 75.97%
  • 92.06%
  • 0.00%
  • 0.00% *
   .........e..........s..........s..........s..........s.....................+..........s... ......+
                      *
     ! 133
  • 1.66E.06
  • 2.64E.06
  • 3.2eE.06
  • 5.15E.06
  • 8.90E.06
  • 7.97E 04
  • 0.00E+00 = 0.00E+00
  • 3.854
  • 4.17%
  • 5.03%
  • 6.90%
  • 10.40%
  • 5.82%
  • 0.00%
  • 0.00% *
   .........+..........s................................ .......... ..........+..........+.. .......+

C2 09 *

  • t.70E*09
  • 5.09E.07
  • 5.93E.07
  • 0.00E*00
  • 0.00E+00
  • 0.00E+00
  • 2.63E.06
  • 0.00E+00
  • 0.04%
  • 1.57%
  • 0.91%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.47%
  • 0.00% *
   ..........................................+..................... .....................,..........e
                      *

) 92 90

  • 7.11r.07
  • 7.52E.08
  • 1.15E.05
  • O.00E+00
  • 0.00E*00
  • 0.00E+00
  • 1.29E.06
  • 0,00E+00 *
                                                                 *

' 1.65%

  • 0.214 17.60%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.23%
  • 0.00% *
   .........s..........s..........e..........+..........s..........+.....................s..........e C8134            *
  • 4.ent.06
  • 1.30E=07 **6.21E.06
  • 1.29E.n5
  • 4.34E.06
  • 0.00E+00
  • 1.53E 06
  • 0.00E+00
  • 20.43%
  • 0.404 9.54%
  • 17.34%
  • 5.07%
  • 0.00%
  • 0.27%
  • 0.;0% *
   .........s.....................+......... e..........,..........s..........+..........+..........+

C5t37

  • 8.04E.06
  • 1.68E.07
  • 1.2st.05
  • 1.52E.05
  • 5.39E.06
  • 0.00E+00
  • 1.90E.06
  • 0.00E+00 *
  • 18.67%
  • 0.52%
  • 19.66%
  • 20.34%
  • 6.30%
  • 0.00%
  • 0.344
  • 0.00% *
   .........+..........+..........+..........s.....................+..........s..........+..........s
                      *                                          *
  • pat 40
                      *
1. NAE.na** 2.03E.06 4.n2r.n7 5.52E.10
  • 1.A6E.10
  • 0.OnE*00
  • 1.48E.05
  • 0.00E*00
  • 0.07% 6.29%
  • 0.74%
  • 0.00%
  • 0.00%
  • 0.00%
  • 2.65%
  • 0.00% *
   ..............................+.....................+..........+................................+
  • t 138
  • 4.04F.07
  • 1.23C.07
  • 6.60E.07
  • 8.55E.07
  • 1.45E.06
  • 2.82E.04
  • 0.00E+00
  • 0.00E+00
  • 1.12%
  • 0.38%
  • 1.01%
  • 1.14%
  • 1.70%
  • 2.05%
  • 0.00%
  • 0.00% *
   .................... ................................,.......... .................................
  • CO 59 t.54E.0a ** 6.06E=07
  • n.n0E+0n
  • 1.10E.09
  • n.onE+00
  • 0.00E+00
  • A.4tE.06
  • 0.00E+00 *
  • 0.04% 1.87%
  • 0.00%
  • 0.ntt
  • 0.00%
  • 0.00%
  • 1.19%
  • 0.00% *
   ...............................,..................................................................

r0 60 *

  • 1.2er.n6
  • t.89E.05
  • 0.00 reno a 9,29E.07
  • 0.nor+no
  • 0.00E+00
  • 4.92E=04
  • 0.00E+00
  • 2.97%
  • 58.30%
  • 0.00%
  • 1.25%
  • 0.00%
  • 0.00%
  • 86.32%
  • 0.00% *
   .........+.....................+..........+..........,..........+..........e..........s..........e
  • E3 54
  • 1.60E.07
  • 1.49E=04
  • 0.00E+00
  • 9.33E.07
  • 2.29E=07
  • 0.00E+00
  • 3.36E.05
  • 0.00E+00
  • 0.37%
  • 4.62%
  • 0.00%
  • 1.25%
  • 0.27%
  • 0.00%
  • 6.03%
  • 0.00% *
   ..........................................+................................+......................
  • 1.13F.ng
  • 2.36E.00
  • 0.00E+00
  • CR St 0.00E+00
  • 2.ler.to
  • 6.55E.10
  • 1.59E.n?
  • 0.00E+00 *
  • 0.n0%
  • 0.n9%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.03%
  • 0.00% *
   ..........................................,................................+.....................,

22 A5

  • 1.40E=07
  • t.29E.07
  • 9.00E.09
  • 3.04E.07
  • 2.00E.07
  • 0.09F,00
  • 2.6tE=06
  • 0.00E+00 *
                      *
  • 0.341 0.404
  • 0.15%
  • 0.41%
  • 0.23%
  • 0.00%
  • 0.47%
  • 0.00% *
   .................... ................................,...........................................,

t 131 *

  • 1.53E.09
  • 4.02F=09
  • 2.16E.09
  • 2.79E.08
  • 4.74E.09
  • 9.20E.06
  • 0.00E+00
  • 0.00E+00
  • 0.n4%
  • 0.01%
  • 0.03%
  • 0.04%
  • 0.06%
  • 0.07%
  • 0.00%
  • 0.00% *
   . . . . . . . . . .* . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . + = . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . +

eTOTAL* +.3ng.oS

  • 3.23E.05
  • 6.52g.n5
  • 7.4AE.05
  • 9.55E=n5
  • 1,37E=02
  • 5.5sE.04
  • 0.0nE+00 *
   .........+..........,..........+..........,..........+..........,................................+

l I ! C-27 _ _ _ _ _ _ _ _

                                                                                     . _ _ - _ -                       ___                      _

HAZLETON CNVIRONMENTAL CCCNC'2D

  • V D**' D I
                                                 '9   1i b

i Wc J .L L a l C0esthED RELEASE l COOPER NUCLEAR STATION FIRST QUAnfER 1980 j NEPA ANNUAL INfrCRATED POPULAT104 POSr.

SUMMARY

(MANRE4) ' PATMWAY a VEGET BONE LIVER KIONEY THip0!D LUNG SKIN guCLIDE 7.80DT GI=TPACT

           ...............................
                            *
                                                                 ...........................................
                                                                      *-1. Int.03
  • 1.lSE.03.* 2.2RE nl
  • 4.37E.01
  • 0.00E+00
  • 0.00E+00 *
                                                                                                                                                       +.......... ..........,

f 131 7.A4E.04 ** 2.%9E.04 28.70%

  • 67.40%
  • 94.314
  • 0.00%
  • 0.00% *
  • 27.64% 12.A46
  • 24.02%
  • I
           ..........................................+..................... ..........                                                                 .......................

f $33

  • 6.76E.10
  • 1.40F.09 ** 1.3SE.09
  • 2.03F.09 ** 3.48E.09 0.00%**3.26F.07 0.00%* *0.00C+00 0.00%** 0.00E+00 0.00% **
  • 0.0?%
  • 0.00% 0.00%
  • 0.00%
           ..........................................+.....................+..........

1.06E.49

  • 1.44r.n5
  • 3.70E.04
  • 0.pnE+no
  • 0.00E*00
  • 8.OnK+00
                                                                                                                                                       ......................+
  • 0.00E+00
  • 0.onE*oo0.00% a
  • Se n9 0.00%
  • 0.00% * *
  • 0.39%
  • 1.80%
  • 8.38%
  • 0.00%
  • 0.00% *
           ...........................................................................
  • 1.75E.04
  • 1.68F.05
  • 7.01E.04
  • 0.00E,00
  • 0.00E+00
  • 0.00E.00 0.00E+00
  • 0.00E+00
                                                                                                                                                    .....
                                                                                                                                                        *
                                                                                                                                                                    .....+..........+
  • Am 90 0.00%
  • 0.00g *
  • 6.15%
  • 0.33%
  • 15.99%
  • 0.00%
  • 0.00%
  • 0.00% *
           ....................+..........+..........,..........+..........+..........+..........+..........+

C5134

  • 7.49f.04
  • l.69E.05
  • 6.57E.04
  • 1.3SE.03 29.A74 *
  • 4.28r.04 12.69%* *0.00E*00 0.00%* *1.49E.04 41.71%* *0.00E+00 0.00% **
  • 27.064
  • 0.A4%
  • 14.88% * ...........+..........+
           .........+.....................+................................+..........

CS137

  • 7.54E.04
  • 2.4SE.05
  • 1.52E.03
  • 1.78E.01 * $.95E.04
  • 0.00E+00 0.00% *
  • 2.00E*04 59.294 *
  • 0.00E+00 0.00% **
  • 27.26%
  • 1.21%
  • 34.314
  • 37.96%
  • 17.62% *
            ..........................................+................................+.......
  • 1.StE.08
  • 0.0nE+04 *
                                                                                                                                                                       ...+..........+

2.69E.00

  • 0.00E+00
                                                                                                                                                                                                  *           (

BAten

  • 2.6tt.06
  • S.39Een9
  • 4.2tE.05
  • 4.S3E=0A 0.00%
  • 0.00% *
  • 0.09%
  • 2.60%
  • 0.95%
  • 0.00%
  • 0.00%
  • 0.00% *
            .........+....................e..........+................................+....... ...+..........+
     -        t 131
  • 1.lOE.05
  • 3.95E.06
  • 1.70E.05
  • 2.09E.05
  • 3.53E.05
  • 6.78E.03 1.52%* *0.00E+00 0.00%** 0.00E+00 0.00% ** /
  • 0.43%
  • 0.20%
  • 0.38%
  • 0.44%
  • 1.04%
  • i
            ....................,..........+..........+.....................+..........+..........+..........,

CD Se

  • 5.77E.06
  • 3.3tE-ng
  • 0.00E+00
  • 2.2AE.06
  • 0.00E+00
  • 0.noE+00
  • 0.00E+00
  • 0.OnE+oo *
  • 0.21%
  • 1.644
  • 0.00%
  • 0.05%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
            ..........................................+.....................,..........,..........+..........+                                                                                     *
  • 0.00E,00
  • 1.06E.04
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00 CO 60
  • 2.62F. 04
  • 1.43E.03 0.00%
  • 0.00%
  • 0.00% *
  • 9.46%
  • 10.76%
  • 0.00%
  • 2.26%
  • 0.00% *
             ............................... ..........+......................................................+
  • 6.00E,00
  • 0.00F,00
  • um 54
  • t.l?E=09
  • l.33E.04 ** 0.00E,00
  • 6.0SE.05
  • 1.77E 05
  • 0.00E+00 0.00%
  • 0.00%
  • 0.00% *
                               *
  • 0,40%
  • 6.59% 0.00%
  • 1.29%
  • 0.53% *
             ...............................+..........+..........+.....................+..........+..........+
                                                                        *
  • 5.26E.09
  • 1.18E.08
  • 0.00E*00
  • CD St
  • 9.147 49
  • 1,4AE.nA 0.n0E*on
  • 0.00E+0n
  • 1.76E-n9
  • 0.00%
  • 0.00% *
  • 0.00%
  • 0.n?%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
             . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . . . .*. . . . . . . . + . . . . . . . . . . +         * . . . . . . . . . . +

th 45

  • 1.6SE*nS
  • 1.4SE.05
  • 1.07E 05
  • 3.23E.05
  • 2.11F*05
  • 0.00E+00 0.00E+00
  • 0.00E+00 0.72%
  • 0.24%
  • 0.69%
  • 0.62%
  • 0.00%
  • 0.00%
  • 0.00% *
  • 0.60% *
             . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . + . . . . . . .* . . . + . . . . . .* . . . . + . . . . .* . n.00E,00
                                                                                                                                                              . . . . + . . . .* . . . . . . + . . . . . . . . . . +
  • l.SAE.06
  • 1.95E.06 1.29E.06 6.Jtt.04 0.OnE+nn *
               ! 131           *
1. tnt 04
  • 3.68E.07 0.14%
  • 0.00%
  • 0.00% *
  • 0.04%
  • 0.02%
  • 0.04%
  • 0.04%
  • 0.10% *
             ...........................................................................+......................

et07ALo

  • 2,7Ar.n3
  • 2.02E.03
  • 4.42E.03
  • 4.70E=03
  • 1.3RE=03
  • 4.4SE.01
  • 3.57E.04 0.00E+00 *
                                                                                                                                                                               *
             ....................,..........,..........+..................... ..........+..........+..........+

l , C-28

 - . ___ .

_ _ _ _ _ _ _ _ - _ _ _ - - _ HAZLETON CNVIRONME"NTAL CCl3NCT COOPER NUCLEAR STATION 8 FIPST QUARTER 1980 t Com8INED RELEASE itPA ANNUAL INTEGRATED POPULATIO4 DOSE SUMuARl(MANRE4) RATMwat e CON MILK KUCLICE T.RODY GI. TRACT BONE LIVER K!DNET TNTROID LUNG SRIN

  .........+..........+..........+..........+..........+..........+..........+..........+..........+
    ! 131
  • 1.Apr.61
  • 4.94E.no
  • 2.14r.03
  • 2.82E.C3
  • 4.75r.43
  • 9.14E.01
  • 0.0nr+00
  • 0.00E*00
                                         *
  • 14.66%
  • 54.l1% 32.60%
  • 29.54%
  • 67.13%
  • 90.24%
  • 0.00%
  • 0.00% *
  .........+..........+..........+..........+..........+..........+..........+..........+.. .......+
    ! 133
  • l.04r.06
  • 3.55E.06
  • 3.73F.06
  • 5.45E.06
  • 9.32E.06
  • 8.9tE.04
  • 0.00E+00 *
  • 0.00E+00 *
  • 0.n4g = 0.19%
  • 0.n5%
  • 0.n6%
  • 0.13%
  • 0.80% 0.00%
  • 0.00% *
  ...............................+..........,..........+..........+..........+..........+..........+

SR 99 *

  • 1.47E.06
  • 4.54E.06
  • 5.32E=05
  • 0.00E+00
  • 0.00E+00
  • 0.0nE+00
  • 0.00E+00
  • 0.00E*00
  • 0.03%
  • 0.50%
  • 0.71%
  • 0.CJ%
  • 0.00%
  • 0.00%
  • 0.004
  • 0.00% *
  .........+..........+..........e..........+..........+.....................+..........+e.........+

S2 90 *

  • 2.32F.03
  • 2.10E.06
  • 9.IlE.05
  • 0.00E*00
  • 0,n0r+00
  • 0.00E+00
  • 0.00r.+00
  • 0.00E+06
  • 0.50%
  • 0.23%
  • 1.29%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
  .........+..........+..........+..........+.....................+..........+..........+..........+

Cst 34 *

  • 1.4tr.03
  • 3.23E.05
  • l.40E.03
  • 2.s0E.03
  • 8.47t=04
  • 0.00E+00
  • 3.llE 04
  • 0.00E+00
  • 30.62%
  • 3.54%
  • 19.40%
  • 29.26%
  • 12.52%
  • 0.00%
  • 41.83%
  • 0.00% *
  .........+...........+..........+..........+.....................+..........+..........+..........+                                             ,

C5137 *

1. 40r.01
  • 4.6 6E.05 * *3. 2 t r.0 3
  • 3.6 7 E.0 3
  • l . 2 2r.0 3
  • 0.00 E+ 00 ** 4. 3 3E=0 4
  • 0.00E+00 *
  • 30.33%
  • 5.11% 44.44%
  • 30.41%
  • 17.30%
  • 0.00% 50.174
  • 0.00% *
) .........+..........+..........+..........+..........+..........+..........e.....................+

t $a144 *

  • 2.63r.07
  • 4.95E.an
  • 4.27r.an a 4.47E.09
  • 1.49E.09
  • 0.00E+00
  • 2.6eE.09
  • 0.0nE+00 *
                .

0.00%

  • 0.54%
  • 0.06%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
  ...................+.....................+..........+...........................................+

i i 131

  • 2.4RF.oS
  • 7.66E.06
  • 3.65F.05
  • 4.38E 05
  • 7.17F.05
  • 1.42E.02
  • 0.00E+00
  • 0.00E+00 *

)

  • 0.54%
  • 0.N4%
  • 0.51%
  • 0.46%
  • 1.04%
  • 1.52%
  • 0.00%
  • 0.00% *
  .........+..........+..........+..........+..........,..........,..........+..........+..........+

CO St

  • 9.7tt.07
  • 5.00E=06
  • 0.00E+00
  • 3.75E 07
  • 0.00E+00
  • 0.00F+00
  • 0.00E+00
  • 0.00F+00 *
  • 0.02%
  • 0.55%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0,00% *
  ....................+..........+..........+.....................+..........+..........+...........

CO 60

  • 4.60E.n9
  • 2.2AF.64 ** 0.00E+no
  • 1.elt.05
  • 0.00E+no
  • 0,00R+00 ** 0.00E+no
  • 0.00F+00 *
  • 1.00%
  • 24.76% 0.00%
  • 0.19%
  • 0.00%
  • 0.00* 0.00%
  • 0.00% *
  ...............................+..........+..........+.....................+..........+..........+

Ek 54

  • 5.70E=07
  • 5.14E.0A
  • 0.00E+00
  • 2.56E=06 ** 7.45E.07
  • 0.00E*00.
  • 0.00E+00
  • 0.00E+00 *
  • 0.01%
  • 0.56%
  • 0.00%
  • 0.03% 0.01%
  • 0.00%
  • 0.004
  • 0.004 *
  .................... ..........+..........+..........+..........,..........+..........+...........
  • CS St *
  • 3.6*rao9
  • 5.2eE.07
  • 0.00E+00
  • 0.00E+00
  • 6.89E.10
  • 2.llE 09
  • 4.39E=09
  • 0.00E+00
  • 0.0nt
  • 0.06% 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
  .........,................................+..........+..........+..........+..........+..........+
  • 1.0lF=04
  • 7.97E.05
  • 6.46E.05
  • 1.93E=0,
  • l.25E.04
  • 0.00F+00
  • 0.00E+00
  • 0.00E+00
  • 12 65
  • 2.19%
  • 8.73%
  • 0.99%
  • 2.02%
  • 1.77%
  • 0.00%
  • 0.00%
  • 0.00% *
  ..........................................+..........+..........+.....................+..........+

1 131

  • 2.3tF=06
  • 7.13E.07 ** 3.40E.06
  • 4.08E.06
  • 6.86t=06
  • 1.32E=03
  • 0.00E+00
  • 0.00E+00 *
  • 0.05%
  • 0.08% 0.05%
  • 0.04%
  • 0.10%
  • 0.34%
  • 0.00%
  • 0.00% *
   .........+..........o..........+..........+ .........+..........+..........+.....................+
  • eTOTAL+ 4.6tt.03
  • 9.13F.04
  • 7.23E.01
  • 9.56E.03
  • 7.00E=03
  • 9.30E.01
  • 7.44E 04
  • 0.00E+00 *
   .........+..........+..........+..........+.....................+..........+.....................+
                                                                             .

4 C-29

                  .
                                                                                      "
                                                                                                                                                .

_ _ _ _ _ - _ - _ _ _ - _ _ _

                                                                                                                                    .        _

l HA2LETON CNVIRONMENTAL SCCNCO3 l f f CocPts NUCLEAR STATION : rimsf QUARTER 1980 : ConstNED RELEast I 4 EPA AmmUAL INTECDATED POPt!LATION DOSE SUMMART(MAhREP3 ' PATHWAT a MEAT T 800Y GI. TRACT 804E LivtR KIDNEY TMTRO1D LUNG 5 FIN NUCLICE

 ..........................................+................................+......................
  • 2.21K.04
  • 3.79E.04 7.24E.02
  • 0.00E+00
  • 0.noE+00
  • I 131
  • 1.27F.n4
  • 4.99E.n9
  • 1.69t*04 41,33%
  • 98.33%
  • 0.00%
  • 0.00% *
  • 9.03%
  • 1.n0%
  • 14.19%
  • 11.70%
  • I
 ....................,.....................,............................................+...........

I 133

  • 1.4ar.t3
  • 3.62E l?
  • 2.R9E.12
  • 4.62E.12
  • 9.nor.t2
  • 7.13E.to
  • 0.00E+00
  • 0.00Eeno
  • 0.00%
  • 0.00%
  • 0.00% *
  • 0.006
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
 ...............................+................................+ ......... ,..........+ ......... ,

sa 39

  • 9,ttr.n?
  • 7.33g.06
  • 1. ace.n3
  • 0.00E*06
  • 0.n0E*no
  • 0.00E+00
  • 0.00E*00
  • 0.00E+no *
  • 0.04%
  • 0.08%
  • 1.51%
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00% *
 ...............................+.................................................................+                   0.00E+00
  • 0.00E+00
  • SR 90
  • t.2tE.n3
  • 1.28E.06
  • 4.09E.05
  • 0.00E.J0
  • 0.00E+00
  • 0.00E+00 *
  • 0.a6%
  • 0.n5%
  • 4.10%
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00% *
 ..........................................,...........................................+...........

cal 34

  • 4.llt.04
  • 9.09E.06
  • 2.00E 04
  • 6.tSt.04
  • t.97E.04
  • 0.00E*00
  • 6.73E.05
  • 0.00E+00 *
  • 29.47%
  • 0.33%
  • 23.47%
  • 32.30%
  • 21.51%
  • 1.004
  • 42.21%
  • 0.00% *
 .........+................................+......................................................+

C8137

  • 4.ttt.04
  • 1.30E.05
  • 6.34E.04
  • 7.97E.04
  • 2.6BE.04
  • 0.00E+00
  • 9.2tt.05
  • 0.t0Ee00 57.78%
  • 0.00% *
                                                                                                                                               *
  • 29.42%
  • 0.47% * $3.15%
  • 41.A74
  • 29. 9%
  • 0.00% *
 ..................................................................................................
  • 0.00E+00
  • 5.75E.09
  • 0.00E,00 *
                                                                                                                                                  )

BA140

  • 5.40F=47
  • 1.37E.05
  • 8.50F.06
  • 9.StE*09
  • 3.1tE.09
  • 0.04%
  • 0.50%
  • 0.71%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
 ...............................,........................................... .....................,
                                                                                                                                               *
    ! 131
  • 1.96t=n6
  • 7.69E.07
  • 2.62E 06
  • 3.45E nh
  • 5.87E.06
  • 1.12E.01 **0.00E+00
  • 0.onE+00
  • 0.14%
  • 0.03%
  • 0.22%
  • 0.10%
  • 0.64%
  • 1.52% 0.00%
  • 0.00% *
 ...................       4............................................................................,
                                                                                                                   *
  • CO 58
  • 6.00r.n6
  • 4.87E.05
  • 0.00E+00
  • 2.84E.06
  • 0.00E+00
  • 0.00E+00 0.00E+00
  • 0.00E+00
  • 0.40%
  • 1.79%
  • 0.00%
  • 0.15%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
  ......................................................................................,..........,
  • 0.00Ee0n
  • 0,00E,00
  • 0.00E*0n
  • CD 60
  • 1.74r.64
  • 2.54E 01
  • G.nnEenn
  • 1.60Eant
  • o.00E+00
  • 26.64%
  • 12.95%
  • 0.00%
  • 8.40%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.n0% *
  ...............................,.................................................................,

au $4

  • 1.ltF=06 **l.4tE.05
  • 0.00E+00
  • 5.43E.06
  • 1.60E.06
  • 0.00E+00
  • 0.00r+00
  • 0.00E+00 *
  • 0.00%
  • 0.51%
  • 0.00%
  • 0.294
  • 0.17%
  • 0.00%
  • 0.00%
  • 0.00% *
  ..........................................,.....................,..................... ...........

CD St

  • t.69E=09
  • 3.37F.07
  • 0.00E+00
  • 0.00t+00
  • 3.46E.10
  • 9.eRE.50
  • 2.14E.09
  • 0.00E+00 *
  • 0.00%
  • 0.01%
  • 0.00%
  • 0.00%'* 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
  .........+.......... ............................................................................+

EN 65

  • 4.69E 05
  • 5.17E=09
  • 3.13E.05
  • 9.7tt 05
  • 6.40E.05
  • 0.00E+0n
  • n,00E+00
  • 0.00Eeno a
  • 3.34%
  • 1.80%
  • 2.62%
  • 5.10%
  • 6.99%
  • 0.00%
  • 0.00%
  • 0.00% *
  ............... ..........................,..................... .....................+...........
                                                                                                                    *
  • I 131 *
1. ole.n?
  • 7.15E 08
  • 7.45E=07
  • 3.22E 07 ** 5.47E 07
  • 1.05E.04 0.00E+no
  • 0.00E.00
  • 0.ntt
  • 0.00%
  • 0.h?% a 0.02% 0.06%
  • 0.14%
  • 0.00%
  • 0.00% *
  ..................................................................................................
  +V07AL8
  • 1.40E.03
  • 2.74E.03
  • 1.19E.03
  • 1.90E.03
  • 9.16E.04
  • 7.36E.02
  • 1.59t.04
  • 0.00E+00 *
  .........+.......... .......... ,................................ ,..........+..................... ,

I l C-30

______ . .

                                                                                                         .

HAZLETON CNVIRONM7NTAL. CCCNC30

                                         ,~         -

n - D D D ?y* Im m[b-

                             '

s) . - a COOPER NUCLEAR STATION 3 FIF37 OUARTER 1980 t Com81NED DELEASE NEPA ANNUAL INTEGRATED POPULATION DCSE SUmpARftNANREu) 86TM2&T e '70TAbe EUCLIDE T. BODY GI.7RACT BONE LIVER KIDNEY THYROID LUNG SMIN

          .................................................................................................,

RD OS *

  • 7.02E.04
  • 7.02F.04
  • 7.02E.04
  • 7.02E=04
  • 7.02E*04
  • 7.02F.04
  • 2.33E.03
  • 1.tpR.01
  • 0.296
  • 0.284
  • 0.20%
  • 4.28%
  • 0.29%
  • 0.044
  • 0.95%
  • 15.77%
  • I
          ...............................,..................................................................

F2 ES2

  • 4.S6E=03
  • 4.56E=01
  • 4.56E.03
  • 4.56E.01
  • 4,56E 03
  • 4.96E.01
  • 4.7tt 03
  • 1.67E.02 *
t. net a
  • 1.a7%
  • t.90%
  • t.g2g
  • 1,pSt
  • 0.27g
  • 3.924
  • 2.24g
  • i ..................................................................................................
  • 89 97
                      *
9. t t f.0 3
  • 9. I t E 0 3
  • 9. l lt.01
  • 9. t t E.0 3
  • 9. i t t 0 3
  • 9.* i t E=0 3
  • 9. 4 3 E.0 3
  • 4.0 5E.0 2
  • 3.744
  • 3.79%
  • 3.684
  • 3.63%
  • 3.70% 0.544
  • 3.844
  • 5.43% *
          ...............................,.................................................................+
  • l 89 88
  • 8.S7E.n2
  • 4.S7F.02
  • 9.57E=02
  • 8.57F.02
  • 8.57E=n2*
  • 8.57E*02
  • 8.6tt.02
  • 1.26E.01
  • 35.224
  • 33.Att
  • 34.644
  • 34.18%
  • 34.844 5.nSt
  • 35.03%
  • 16.seg *
          ............................... .................................................................+
  • Att33
  • 7.5 0 E.02
  • 7.5 0E.02*
  • 7.50E.0 2
  • 7.t'0E.02
  • 7.50 t=0 2
  • 7.50E.02
  • 8.03E 02
  • 2.56E=0!
  • 30.02%
  • 31.22% 30.31%
  • 19.91%
  • 10.49%
  • 4.42%
  • 32.69%
  • 34.31% *

[ ....................,.......... .....................e..........,.................................

  • RE135
  • 5.79r.02
  • S.29E*01 ** 9.29E.02
  • 5.29E*02
  • 5.29E=02** 5.29E 02
  • S.44E.02
  • 1.7tE.nl
  • 21.75%
  • 22.934 21.39%
  • 21.10%
  • 21.51% 3.12%
  • 22.114
  • 22.924 *
          ....................,...........................................,.....................+..........,
  • IE1332 1.08E*A4
  • 1.00E.04** 8.00E.04
  • 1.00E.04
  • 1.03E=04** 1.00E.04 ** 1.09E.04
  • 1.79E.04 *
                      *
0. net
  • 0,nSt 0. net
  • 0.04%
  • 0.046 0.004 0.04%
  • 0.024 *
          ..........................................,..................... ..................... ...........
  • I tElla 1.36E.43** t.36E.01
  • 1.36E.03
  • 1.36E.43
  • 1.36E.05
  • 1.16E.03
  • 1.37E.03
  • 2.84E.03
  • I
  • 0.564 0.974
  • 0.554
  • 0.54%
  • 0.S$4
  • 0.006
  • 0.564
  • 0.186 *
          .................................................................................................+

nc 39

  • j 7,7er.n?
  • 7.78E.07
  • 7.78E.n7
  • 7.7eE.07
  • 7,7eE.n1
  • 7.7tg.07
  • 7,saE.c7
  • 1.35E.n6 *
  • l 0.004
  • 0.40%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.004
  • 0.004
  • 0.00%
  • I
          ....... .............................................................................,..........+

sp elp

  • 4,07r.0g
  • 4.07E.ca
  • 4.07E.00
  • 4.07E.04
  • 4.07t.09
  • 4.n?E.na
  • 3, tat.06
  • 1.lSE.nS *
                      *
  • 0.n04 0.n0%
  • 0.00%
  • 0.00%
  • 0, nog
  • 0.00%
  • 0.00%
  • 0. nog *
          .........,........................................................................................

IEl37

  • 1.5)[=47
  • 1.SIE.07
  • 1.53r.47
  • 3.93E=0?
  • 3.53r.n?
  • 3.53F=07
  • 4.14r.07
  • 6.4eE.06
                      *
  • 0.not
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004
  • J.004
  • 0.00% *
          ................................................-.....................................,...........

IE1312

  • 8.99E.04
  • 8.95E.no ** 8.95E=04*
  • 8.99E*oe*
  • 5.95E.no*a A 99E 04
  • 9.99E.no a s.3nt 0) *
  • 0.374
  • 0.374 0.166 0.364 0.364 0.0$4
  • 0.484
  • 1.124 *
          ..........................................,......................................................+
  • IE13tm 1.75r.04
  • 1.75E.04
  • 1.75r.04
  • 1.79E.34
  • t.75r.04
  • t.75E.04
  • 2.17E.04
  • 2.tSE=0) *
  • 0.nfg
  • 0.074
  • 0.074
  • 0.074
  • 0.074
  • 0.01%
  • 0.09%
  • 0.29% *
          .................................................................................................+

f 131 *

  • 2.53E.03
  • 9.23r.04
  • 3.67E.03 ** 4.4SE.03
  • 7.49E.01
  • 1.44r+00
  • 1.94E=0S
  • 2.36E.05
  • 1.044
  • 0.346
  • 1.45% 1.794
  • 3.05%
  • B4.64%
  • 0.00%
  • 0.00% *
          ......a..,............................................,................................+..........,
  • t 133
  • 4.79E.06
  • 7.4et.06
  • 9.29E.06
  • l.19E.05
  • 1.95E oS
  • 1.69E.03
  • 1.29E.06
  • t.56E.06
  • 0.n0%
  • 0.n0%
  • 0.00%
  • 0.n0%
  • 0.00%
  • 0.104
  • 0.00%
  • 0.n0g *
          ................................................................ .................................

A2 09 *

  • 1.26r nS
  • 4.37F.09
  • 4.40E=04
  • 9.40E.11
  • 9.48F=t1
  • 9.48E.11
  • 2.63E.06
  • 1.10E=to a 0.00%
  • 0.02%
  • 0.18%
  • 0.004
  • 0.00%
  • 0.00%
  • C.00%
  • 0.40% *
          ..........................................,..................... .................................
  • Sp to 2.ltE.04
  • 2.n2F.GS
  • 4.60E.04
  • 0.00E.00
  • 0.n0E no
  • 0.0nr+00
  • 1.29E.06
  • 0.00E+00 *
  • 0.09g
  • 0.004
  • 0.15%
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00% *
          ..........................................,.....................,................................,

(3134

  • 2.?IE.03
  • 2.53F.04
  • 2.54E.03
  • 4.97E.03 ** 1.7tE.43
  • 1.94r 04
  • 7.23E.04
  • 2.27F.04 *
                      *
  • 1.146
  • 0.114 t.03%
  • 1.984 0.70%
  • 6.01%
  • 0.294
  • 0.03% *
          ..........................................+........................................... ..........,

1 l C-31

                                              - - -

_.

                                                                                   ._________________ _ _ _

HAZl.CTON CNVIRONMENTA1. CCIONC2O

         ~ (q o             w        "u, D>i          D         0
                                          .\[ Tg b               o        1.            _ ,.

COOPER NuCbEAR STATION : FIRST OUARTER 1900 8 COMBINED RELEASE 4 epa ANNUAL INTF. GRATED POPHLAT10N DOSE SUM" ART (MANRE*) PATHWAT e eTOTALe (CONTINUED) l SKIN

                                                                                                                                              '
     #UCLlDE       T. BODY       Ct.794CT        RONE       LIVER         k!DNEY                            THYROID      LU#C
    ...............................+..........+..........+..........+..........+..........+..........+

CSl37

  • 3.0 3 r.o l
  • 9. 4 8 6.n4
  • S.03E*0)
  • 6.7?E.03
  • 2.SSE.nl
  • 4.97E.04
  • 1.19E.03
  • 5.3tE.04 *
  • 1.25%
  • 0.23%
  • 2.36%
  • 2.60%
  • 1.04%
  • 0.03%
  • 0.40%
  • 0.07% *
    ....................+.....................+......................................................+

maten

  • 3.90E.06
  • 7.50F.0S
  • S.50E.05
  • S.18E=07
  • 4.70E.07
  • 4.58E.01
  • 1.S3E=0S
  • 5.23E.07 *
  • 0.n0%
  • 0.n3g
  • 0.02%
  • 0.00%
  • 0.00%
  • 0.n0%
  • 0.00%
  • n.00% *
    .........+..........+...........................................+.....................+..........+
  • 1 131 *
                   ).94r.05
  • t.2et.05
  • S.7tt.05
  • 6.93E.05
  • 1.17r.04
  • 2.23E.02
  • 3.09E.07
  • 3.76E=0)
  • 0.02%
  • 0.n0%
  • 0.02%
  • 0.03%
  • 0.05%
  • 1.32%
  • 0.004
  • 0.00% *
    ........................................+..........+..........+..........,..........+..........+

cn Se

  • 1,sSE.05
  • 9.24F.05
  • 4.97E.06
  • 1.0SE.05
  • 4.97E.06
  • 4.97E.06
  • 1.16E=0S
  • 5.R2E.06 * <
  • 0.00%
  • 0.04%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
    ..........................................+.......... .......... .....................+..........+
  • cn 60 3.94F.91
  • 7.47E.03
  • 3.26F.03
  • 3.54E.03
  • 3.26E.03
  • 3.26E.03 ** 3.75E.03
  • 3.03E.03 *
  • 1.62%
  • 3.114
  • 1.32%
  • 1.41%
  • 1.32%
  • 0.19% 1.52%
  • 0.51%
  • 1
    ...............................+.....................+...........................................,

l um Se

  • 7.69K.09
  • 2.lSE 04
  • 6.19E.05
  • t.32E.04
  • 8.22E.05
  • 6.19E.05
  • 9.SSE=0S
  • 7.2SE.05 *
  • 0.03%
  • 0.n9%
  • 0.48%
  • 0.n5%
  • 0,n3g
  • o.n0%
  • 0.04%
  • 0.00% *
    .........+..........+.....................+.....................+..........+..........+..........+

CR St

  • 1.00E 07
  • 2.44E.n6 9.22E.09
  • 9.22E.09
  • 9.53E.08
  • t.0tt.07
  • 2.6SE*07
  • 1.09E.07 *
                                             *
  • 0.00%
  • 0.n0%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.n0% *
    ..........................................+..........+..........+................................,
  • l.69F.04
  • 1.50E.04*
  • l.itE.04
  • 3.27E.04
  • 2.lSE.04 ** 4.16E.06
  • 6.77r.06
  • 4.79E.06
                 *
  • ZN 69
  • 0.07%
  • 0.06% 0.04%
  • 0.13% 0.09% 0.00%
  • 0.n04
  • 0.00% *
    ...............................+..........+=......... ..........+.................................

I til

  • 3.64E*06
  • t.tet.06
  • 5.28E.06
  • 6.40E.06
  • 1.00E.0S
  • 2.06E.03
  • 2.72E.00
  • 3.30E.00 *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.12%
  • 0.00%
  • 0.00% *
    ................................................................,..........+..........,..........+

eTOTALs

  • 2.43E.01
  • 2.40E.01
  • 2.47E.01
  • 2. Sit.01
  • 2.46E=01
  • 1.70E+00
  • 2.46t=01
  • 7.46E.01 *
    ..............................+..........+................................,..........,..........+

I

                                                                                                                                              ,

l C-32

 ..          ..                                  .      .

i

                                                                                                                                                                                                   ,

1 I i HA2LGTON CNVIRONMENTAl. CCl3NCOG i 1 I

                                                                                                                                      ;

D # f L'

                                                                                                                                                  '

M JQ

                                                                                                                                                                  *
                                                                                                                                                                  ,-

W 9

                                                                                                                                                                                      ~

j\\'" JJ' g~/I 3

                                                                                                                                                                                         } 'g '

C03PER NUCLEAR STATION s SECOND QUARTER 1990 SPECIAL LOCATION 8 i LOCATION 40 9 AT 0.50 MILES N AEEUAL BETA AIP DOSE e S.60E.04 m!LLpADS AzEVAL CAWMA AIP DOSE = 4.77E.01 atLLNADS PATM*AT T.800Y CI.fRACT BONE LIVER K!DNET THfRO10 LUNG SKIN .................................................................................................,

  • S. 0 9E*01
  • S. 9 9P =01
  • S.0 9E.01
  • S. 0 9F.01
  • 5.s9E.01
  • S.09E=01
  • S.95E=01
  • 1.14E,00
  • P t.'U E

................... 4.......... ........................................... ....................., GROUXD

  • 7.63F.02
  • 7.63E.02
  • 7.63E.02
  • 7.63E 02
  • 7.63E=02
  • 7.63F.02
  • 7.63E*02
  • 8.97E.02 *

..........................................,................................,..........e.........., .

                 .                     .                     .                    .                     .                    .                      .                    .                     .

, E r. E , i ADULT

  • S.91E.03
  • t.04E.02
  • 4.7tt.03
  • 6.97E.03
  • 2.2SE=03
  • 1.79E.02
  • 6.75E.04
  • 0.00E+00

...........................................................................,.....................,

  • I
                                                                                                                                                                                                   !
  • 6.0$E.03
  • t.10F=02
  • 7.2SE.03
  • 1.09E=02
  • 3.46E.03
  • 1.53E.02
  • 1.23E.03
  • 0.00E,00
  • TEE #

..........................................,........................................... .........., i

                                                                                                                                                                                                    '

CHILD

  • 7.ltr.03
  • 7. TOE.03
  • 1.62E.02
  • t.eOE=02
  • S.49E.03
  • 2.30E.02
  • 8.84E=03
  • 0.00E+00 *

. . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . , . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ,

                 *                     *                     *                    *                     *                    *                      *                    *
  • EFAT
  • ADULT 6.7 9E.0 8
  • 2.S SE.0 3
  • 3.2 0 E 0 4
  • f 0 2E.0 4
  • 2.0 0E.0 4
  • 2.0 3E. 3
  • S. 4 2E.05
  • 0.0 0E+00 *

.................... ..................... ......................................................e TEth

  • 4.tlE.04
  • t.37E.01
  • 2.6SE.04
  • 5.40E.04
  • 1.63E=04
  • t.4AE.03
  • 4.99E.oS
  • 0.00E,00 *

.................... ................................,............................................ CMI! D

  • 4.Str.04
  • 6.93L.04
  • 4.74E.04
  • 6.77E.04
  • 2.00r=04
  • 2.2tE.03
  • S.76E.0S
  • 0.00E,00 *

.................... ..................... .......................................................

                                       *                    *                     *                     *                    *                      *                    *
  • Cns a f f.N *
  • ADULT 3.31E.03
  • 8.10E=04
  • 2.70E=03
  • 4.59E=03
  • 1.83E=03
  • 5.71E.02
  • 4.62E.04
  • 0.00E+00 *

...........................................................................,......................

  • 3.36r.03
  • 9.73E.04
  • 4.00g.03
  • 7.90E.02
  • 3.86F=03
  • 9.04E.02
  • 9.20E-04
  • 0.00E,00
  • TEEN e..............................+..........,..................... ..................... ...........
  • 1.13E=02
  • 1.33E.02
  • 5.12E.03
  • 1.79E.01
  • 1.40E=03
  • 0.00E,00
  • CMIf.D
  • 3.00E.03
  • 6.58E=04 l

....................,...........................................,................................. IEFA%T

  • 3.3 t F=0 3
  • 1.22E=o 3
  • 1.83E=02
  • 2.56E=02
  • 4.12E=03
  • 4.36t=01
  • 2.49E.03
  • 0.00E+00 *

.................... ..................... .......... ..........,.......... ......................

                                       *                    *                     *                     *                    *                      *                    *
  • l cnAt:ILE
  • ADULT
  • 9.32E.03
  • 3.Itt.04
  • 7.64E.03
  • 1 20E=02
  • 4.SSE=03
  • 6.BSE.02
  • 1.39E.03
  • 0.00E+00 *

...............................,..........+.....................,.....................,....... ... TFFS

  • 9.02E.03
  • 4.80F=04
  • t.36E.02
  • 2.23E.02
  • 7.90E.03
  • 1.09E 01
  • 2.78E=03
  • 0.00E,00 *

..........................................,........................................... ...........

  • CHILD
  • 6.9tr.03
  • 3.52E.04
  • 3.23E.02
  • 3.74E.02
  • 1.20E.02
  • 2.tSE.01
  • 4.20E.03
  • 0.00E,00

...............................+..........,..................... ..................... .........., IEFANT

  • 6.6?E.01
  • 4.09E.04
  • S.19E*02
  • 7.14E.02
  • 2.03E.02
  • 5.23E.01
  • 7.40E.03
  • 0.00E,00 *

............................... ..........,..........,..........+..........,.......... ..........,

                 *                     *                    *                     *                     *                     *                     *                    *
  • tzMAL ADULT
  • 1.3SE.04
  • 3.24E.04
  • 1.45E.04
  • 1.00E=04
  • 9.12E.0$
  • 6.17E*03
  • 6.03E.03
  • 0.00E,00 *

.......................................... .....................+..................... ..........,

  • t.lfr=04
  • 2.99E.04
  • 1.92F.04
  • 2.43E.04
  • 1.23F=04
  • 7.74E.03
  • n.42E.03
  • 0.00E,00
  • TEE 2

...............................+......................................................+...........

  • CNit D
  • 7.34E.oS
  • 1.14E.04
  • 2.37E 0i
  • 2.27E.04
  • t.13E=04
  • 9.94E.03
  • 7.16E.03
  • 0.00E,00

..........................................+.....................+..........+.......... .........., 1 FANT

  • 3.64F.0S
  • 3.95 E.05
  • 1. 4 2 F.04
  • 1.67E=d4
  • 7.04E.0S
  • 8.19E=03
  • 4.63E=03
  • 0.00E+00 *

.......................................................................................,.........., 1 l l C-33

_ _ _ - _ - _ _ _ _ _ _ _ _ _ _ _ ____ .__ HAZLETCN GNVIRONM3NTAL. CCIONC3G r)n oy l3d 42d p 1 ^q , l J3 "9 fd 'b > Jllf ;l ld J K a

                                                                                                                    . . . .                 ....     ._

COOPER NUCLEAR STATION I SECOND QUARTER 1990

                                                                                                                                                         ,

l SPECIAL LOCATION e 2 LOCATION NO. I AT 0.75 NILES NNu AhmuAL BETA Ale DOSE a 3.39E.01 NILLa&

  • ANNUAL CANNA AIN DOSE a 5.30E*01 mILLpADS PATMcAT T.5007 CI. TRACT PONE LIVER E!DNET THTROID LUNG SKIN
  .........e................................e .........e...........................................s
  • Plume
  • 3.56E.01
  • 3.56E=41
  • 3.56E.01
  • 3.56F.01
  • 3.36E.01
  • 3.54E.01
  • 3.S9E=01
  • 6.86E.01
  .........s....................s,..........,..........e.....................e..........e..........,                                                    '
                                                                                                                                                         ,

CsoumD

  • 2.90F.02
  • 2.90E.02
  • 2.40F.02
  • 2.90E=02
  • 2.40E=02
  • 2.90E.02
  • 2.90E=02
  • 3.4tE*02 *
  ...............................,...........................................,......................
                                            *            *           *                                           *             *        *        *
              *
  • VFCFT ACULT
  • 2.2SE.03
  • 3.965 03
  • l.00E.03
  • 2.668=0)
  • 8.61E=04
  • 7.JSE=03
  • 2.SO E=04
  • 9.00E+00 *
  .................................................................................................+

TEEN

  • 2.3tF.03
  • 4.19E.03
  • 2.77F=0)
  • 4.17E 03
  • 1.32E.03
  • 6.19E=03
  • 4.70E=04
  • 0.00E+00 *
  ..........................................,......................................................,

CHILD

  • 2.7tE.03
  • 2.79E.03
  • A,18E.01
  • 4.SSE.01
  • 2.10F=03
  • 9.elt 03
  • 7.02E.04
  • 0.00Eenn *
  ..........................................,......................................................,
                            *               *            *           *                                           *             *        *
  • urAt
  • ADULT
  • 2.59E.04
  • 9.7tt.04
  • 1.2SE.04
  • 2.60E 04
  • 7.94E.05
  • 9.13E 04
  • 2.07E.05
  • 0.00E+00 *
  ..................................................................................................

TEEN

  • 1.56E.04
  • 5.22E=04
  • 1.01E.04
  • 2.06E.04
  • 6.23E.05
  • S.09E.04
  • 1.90E.05
  • 0.00Ee00 *
  .........e..........         .....................+.......................................................

CHILD

  • l.03E.04
  • 2.64t=04
  • 1.015 04
  • 2.SPE.04
  • 7.63E.05
  • 9.99F. 04
  • 2.20E.SS
  • 0.00F+00 *
  ......................................................................................,...........
                             *              *            *            *                                          *             *        *
  • Com NILR *
  • ADULT
  • 1.27E.03
  • 3.13E.04
  • 1.03E=03
  • 1.75E.03
  • 7.04E.04
  • 2.30E.02
  • 1.76E.04
  • 0.00E+00
  .....................................................+............................................

TFEN

  • t.29E.03
  • 3.73E=04
  • 1.04E.03
  • 3.0SE 03
  • 1.22E=03
  • 3.6SK=02
  • 3.S4E=04
  • 0.00E+00 *
  .......................................... ................................+.......... ...........

CMll.D

  • 1. l SE=0 3
  • 2.5 2 E=04
  • 4. 3 4E.01
  • 5.18 E.0 3
  • 1.97 E=0 3 * ? .2 4 E 02
  • S. 3 SE=04
  • 0.00E+0 0
   ..........................................+=.........s....................e......................

IhFANT

  • 1.27F.03
  • 4.6SE.04
  • 7.02r 03
  • 9.79E.03
  • 3.14F.03 a 1.76E'ai
  • 9.52E.04
  • 0.00E+00 *
   .........e..........e..........s..........s................................+..........s .........e*
               *             *               *            *           *                                          *             *
  • GOATNILE ADULT
  • 3.56E.03
  • l.47E=04
  • 2.92E.03
  • 4.89E.03
  • 1.75E=03 - 2.76E.02
  • S.29E.04
  • 0.00E+00 *
   .........s..........s..........s..........+.....................,................................e l

1 TEEN

  • 3.4SF.03
  • 1.uSE.04
  • 9.2tr.03
  • 8.S2E=0)
  • 3.03F 03
  • 4.Jer.02
  • t.06E.03
  • 0.00E*00 *
   ...............................,..........+................................,......................
  • CM ll D
  • 2.64E.03
  • l.16E.04 1.2 4E 02
  • 8 4 3E.02
  • 4.9 2 E.0 3
  • 9.69E.0 2
  • 1.6 t E.0 3
  • 0.00E,00 *
   .........,.......... .....................+.....................,..........,.....................,

thrah?

  • 2.S6F.03
  • 1.SAF 04
  • 1.99F.02
  • 2.73E.02
  • 7.81E=03
  • 2.11F.01
  • 2.86E.03
  • 0.00E+00 *
   ...........................................................................,......................
                *            *               *            *           *                                           *            *         *
  • ImMAL ADULT
  • 9.99E.05
  • 2.40E.04
  • 1.09E.04
  • 1.J3E.04
  • 6.6tE.05
  • 4.39E.01
  • 4.49E.03
  • 0.00E*00 *
   .......................................... .....................+.................................

TEEN

  • 9.6SE.49
  • 2.22E=04
  • 1.42E.04
  • 1.79E.04
  • 8.94E 05
  • S.50E=0)
  • 6.57E.03
  • 0.00E+00 *
   ..........................................,..........,.......... .......... .......... ...........

CHILD

  • S.56E.05
  • 8.44E.05
  • 1.75E.04
  • 8.67E=04
  • 5.20E.05
  • 6.34E.03
  • S.33E=03
  • 0.00f
   ..................................................... .......... .....................+.......
  • 2.93E=0S
  • 1.04E 04
  • 3.23E*04
  • 1.ngE.05
  • 5.81E.03
  • 3.49F.03
  • 0.00E+0. -

INFANT

  • 2.A7F=09
   .........+................................+.............ew...... ................................,

(

                                                                                                                                                        ;

l l l l J l l C-34

                                                                    -

HAZl.ETON CNVIRONMENTAI. CCCNC'D

                                              . e O

COOPER 1UCLEAR STATION I SECOND QUARTER 1900 COMBINED RELEASE ALARA AM4UAL INTEGRATED POPULATION DOSE SUMMART (MANPEd) PAThTAf T.8007 CI= TRACT BONE LIVER KlDNEY TNTR01D LUNG SKIN

 ...............................+......................................................+..........,

PLUrt

  • 2.62E.02
  • 2.62E.02
  • 2.62E.02
  • 2.62E=02
  • 2.42E.02
  • 2.62E 02
  • 2.65E.02
  • 5.8SE.02 *
  • 85.54%
  • 04.834
  • 85.21%
  • 44.544
  • 96,104
  • 67.224
  • 04.696
  • 92.79% *
 ....................
             *
                           .....................+......................................................+

G3DCD

  • 3.97E.03 ** 3.87E=0)
  • 3.07F.03
  • 3.87E.03
  • 3.87E.03
  • 3.87E 03
  • 3.87E.03
  • 4.55E.03 * '

12.654 12.554

  • 12.604
  • 12.504
  • 12.744
  • 9.946
  • 12.34%
  • 7.214 *
 .........s..........s..........s..........+.....................+..........s..........+..........s
  • itxAL 1.5st.05 * ).44E=05
  • 2.19E 05
  • 2.53E=05
  • 1.30E.05
  • 9.47E.04
  • 8.43E.04
  • 0.00E+00 *
  • 0.05%
  • 0.12%
  • 0.07%
  • 0.00%
  • 0.04%
  • 2.444
  • 2.69%
  • 0.00% *
 ...............................+..................... .......... ..........+..........+..........,
  • VECLT 3.29F.04
  • 5.34E.04
  • 3.94E.04
  • 5.10E.04
  • l.77t=04
  • 4.65E=03 ** 5.02E 05
  • 0.00E+00 *
  • 1.09%
  • l.73%
  • 1.284
  • 1.65%
  • 0.50%
  • 11.954 0.16%
  • 0.006 *
 ..........................................+...........................................+..........+

Cn3 afLa *

  • 8.43E=04
  • 3.50F.05
  • 2.20E.04
  • 3 13E.04
  • 8.19E=04
  • 3.113 03
  • 3.32E.05
  • 0.00E+00
  • 0.474
  • 0.114
  • 0.72%
  • l.01%
  • 0.39%
  • 7.994
  • 0.114
  • 0.00%
  • 1 ...............................+..........+....... ..............................................,
  • i EEAT
  • 5.99F.05
  • 2.03E.04
  • 3. 39r.05
  • 6.5 8 E*05
  • 1.96E.05
  • 1.0 3E.0 4
  • 5. 32 E.06
  • 0.0 0E+00
  • l 0.20%
  • 0.664
  • 0.11%
  • 0.21%
  • 0.06%
  • 0.47%
  • 0.02%
  • 0.004 *
 ...............................+..........+...........................................+..........,
  • TOT a l.o
  • 3.06E.02
  • 3.09E*02
  • 3.07E.02
  • 3.09E.02
  • 3.03E.02
  • 3.09E.02
  • 3.13E=02
  • 6.31E=02 *
 ....................,..........+..........+.....................,..........+.....................,

l l l l \ C-35 l

                                                                                    ..

_ _ _ _ _ _ _ _ _ _ _ _ _ __ _

                                                        ,

HAZl.ETCN ENVIC1NM2NTAL CCl2NC33 rs - U! D D C9. > M d M'k]6 3 COOPER NUCLEAR STATION SECONV GUARTER 1990 0 Cos8thED RELEASE ALARA ANNUAL IN7EGRATED FOPULAT10N DOSE SUMMART (MANpE43 PAThuat e PLUME LIVER KIDNEY TMTROID LUNG SRIN Bode

 ....................+......................................................+.....................,

NUCLICE  ?.900T C1= TRACT I l se t$

  • 3.62E.07
  • 3.62E*07
  • 3.62E.07
  • 3.62E.07
  • 3.62E.07 0.00% *
  • 3.62E=07 0.00% ** 1.20E.06 0.00% ** 6.00E.05 0.10g ** l
  • 0.00%
  • 006
  • 0.00%
  • 0.00% *
 .........................".........................................................................                                                                                  j se esu **6.23r.04
  • 6.23E.04
  • 4.23E.04
  • 6.23E.04 2.30% *
  • 6.23E=04 2.38%** 6.23E.04 2.386 ** 6.44E=04 2.43% ** 2.20E.03 3.904 **

2.30%

  • 2.38%
  • 2.38% *
 ....................+...........................................+...........................                                                                                         i am 87         '

2.29E.n l

  • 2.29E*03 * ?.29E.03
  • 2.29E.03
  • 2.29E.03
  • 2.29E.03 8.74%
  • 8.744
  • 8.74% *
  • 2.36E8.91%01 **1.02E*C2 17.35% ** J 9.744
  • 9,74%
  • 8.146 *
 ..................................................................................................
  • l t

sa se

  • l.44F.02
  • 1.64E.02
  • l.A4F.02
  • 1.64E.02 62.73% *
  • t.64r.02 62.73% *
  • 1.64E=02 62.73% ** 1.65E 62.00% 02 ** 2.4tE.32 41.71% ** I
  • 42.734
  • 62.734
  • 62.71% *
  ..........................................+...........................................+...........
                  *
  • 7.97E.04
  • 7.97E.04
  • 7.T S E 04
  • 7.97E.04
  • 7.97E*44
  • 4.SIE.04
  • 2.72E.03
  • IE133 7.97F.04 1 J5%
  • 3.0S%
  • 3.0S%
  • 3.224
  • 4.65%
  • l
  • 3.056
  • 3.056
  • 3.0$t *
  ....................,..........+.................................................................,
                                                                                                                                                                                      '

IEl35

  • 5.6tF=0)
  • S.6tE.03
  • S.6tE.03
  • 5.6tE=03
  • 5,61E.03 21.454 *
  • 5.6tt.03
  • 5.76E=03
  • 1.IIE.02
  • 21.454
  • 21.704
  • 30.90% *
  • 21.4St
  • 21.4St
  • 21.4$t
  • 21.454 *
  . . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . +! . . . . . .

IEt3Sm

  • 3.llr.05
  • 3.11E.05
  • 3.tlE.05
  • 3.1tE=0S
  • 3.itt.0$
  • 3.11E.05 0.12%* *3.12E.0$0.12%** 5.13E 05 **

0.09%

  • 0,32t
  • 0.12%
  • 0.12%
  • 0.12%
  • 0.12% *
  ................................................................,.................................                                               *
  • IE130
  • 3.00E.04
  • 3.00E*04
  • 3.00E.04
  • 3.00E.04
  • 3.00E.04
  • 3.00E.04 3.04E.04
  • 7.95E.04 1.456
  • 1 45%
  • 1.4St
  • 1.45%
  • 1.45%
  • 1.4S%
  • 1.364
  • I
  • 8.454 *
  ....................+.............................................................................
  • 1.37E.na a 3.37E.0g
  • 1,37E.0a
  • 1.37E.08 ** 1.37R.08
  • 1.37E.08
  • 1.let.nt
  • 3.25E*08 *

{

                                                                                                                                                                                      -

88 09

  • 0.00%
  • 0.004
  • l
                   *
  • 0.n0%
  • 0.n04
  • 0.n0g
  • 0.00% 0.00%
  • 0.00%
  ..................................................................................................
                   *
  • 9.19F.09
  • 9.19E.n9
  • 9.19r.09
  • 9.19E.ng
  • 9.19E.09
  • 7.17E.07
  • 2.60E.06
  • j
                                                                                                                                                                                      '

NR 83m 9.19E.09 0.00%

  • 0.00%
  • 0.00% *
  • 0.009
  • 0.00%
  • 0.00%
  • 0.00%
  • O.00% *
   ....................+................................ ..........+................................,

IEt37

  • 3.14E.no a 3,34E.09
  • l.14E=0A
  • l.14E.09
  • 1,14E.00
  • 1.34E.08 ** t.57E.08
  • 2.46E.07 *
  • 0.00%
  • C.00%
  • 0.00%
  • 0.00%
  • 0.n0% 0.00%
  • 0.004 *
  • 0.004
   ....................+..........+...........................................,......................*

IEl33m

  • 2.14E.05
  • 2.14E.05
  • 2.14E*05
  • 2.14E.05
  • 2.14E.05 0.04% *
  • 2.14E.05 0.00% ** 2.39C.0$

0.09% ** 2.0tt.04 0.34% *

  • 0.084
  • 0.08%
  • 0.00%
  • 0.00% *
   ..........................................+.......................................................
                                                                                             *
  • 7.90E=07
  • 7.03E=04
  • Ett3tu
  • A 37F 07
  • 6.37t=07
  • 6.37E=07
  • 6.37E.07 A.37E=07
  • 6.37F.07 0.00%
  • 0.00%
  • 0.014 *
  • 0.006
  • 0.00%
  • G 00%
  • 0.00%
  • 0.00% *
   ..........................................+.....................+..................... ...........                                                                    eSt.02
  • erofALs
  • 2.62E=02
  • 2.62E.02
  • 2.62E=02
  • 2.62E.02
  • 2.62E.02
  • 2.67E=02
  • 2.6SE.02
  • Se
   .........          ..........+.....................+.....................                                    ..........+.......... ...........

I , 4 l l l l C-36

HAZLETON CNVIRONMZNTAL CCCNC~D

                                                                                                   - ., ,,               ,    y r   ',     s~r pp B           ,

COOPER RUCLEAN STAT 104 s SECOND QUARTER 1900 COMRINED RELEASE ALARA AugUAL INfrCRATED FDPULATION 003E SUMMARI (MAMPE4) PAT 334V e CROUND EUCLIDE t.eCOT Cl. TRAC 7 e0NE LIVER F,10 NET THYROID LUNC SK

     ...........................................................................

I 131 *

                                                                                                           .................IN    .....

l l

  • a.S7E.07
  • 6 57E.07
  • 6.S7E.07
  • 6.57E.07
  • 6.S7E.07
  • 6.57E.07
  • 6.57E.07
  • 7.97E.07 *  !

0.024

  • 0.024
  • 0.024
  • 0.024
  • 0.02% *
     ....................,.................................................................,.....
  • 0.024
  • 0.024
  • 02L *0
                                                                                                                                  ....,

(  ! 139

  • 2.SIE=47
  • 2.57t=07
  • 2.57E.07
  • 2.57E.07
  • 2.57E.07
  • 2.57E.07
  • 2.57E 07
  • 3.83E.07
  • 0.004
  • 0.00%
  • 0.00% *
    ................................................................,..........,.....
  • 0.00%
  • 0.006
  • 0.00%00%
  • 0
  • 0.004 *
                                                                                                                   ...............,

22 89

  • 2.93F*ll
  • 2.91E.13
  • 2.93F.83
  • 2.93E.13
  • 2,93E.13
  • 2.93E.13
  • 2.93E.13
  • 3.40E.13
  • 9.604
  • O.006
  • 0.00%
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0
     ................................................................+...........................

C5134

  • 00% .....*
  • 9.39F.04
  • 9 39E*09
  • 4.39E.05
  • 9.39r=0S
  • 9.39F=0S
  • 9.39E.05
  • 9.39t=0S
  • 1.10F.04
  • 2.43%
  • 2.414
  • 2.43%
  • 1.434
  • 2.43%
  • 2.434 *
     ....................,......................................................,................

(At37

  • 3.43%
  • 41%
  • 2
                                                                                                                                  ....,           I
  • 2.09E.04
  • 2.0*E.04
  • 2.09E.04
  • 2.09F=04
  • 2.09E.04
  • 2.09E.04 a 2.09E.04
  • 2.44r.04
  • S.404
  • S.404
  • S.404
  • S.404
  • 5.404
  • S.404
  • 5.36% *
    .................................................................................

9Att$

  • 40%
  • 5
                                                                                                                   ....,...........
  • S.13E.07
  • S.13E=07
  • S.13E=07
  • S.13E=0?
  • S.13E.07
  • 5.13E.07
  • S.13E.07
  • S.96E.07
  • l .........,... 0.014
  • 0.014
  • 0.01%
  • 0.01%
  • 0.01%
  • 0.014
  • 0.01%
  • 0.01% *
                      ....................................................................................

I 131

  • 4.3tr.09
  • 4.3tE.00 **4.3tE.09
  • 4.3tE=00 ** 4.3tE=00
  • 4.31E=00
  • 4.3tt 00
  • S.23E.08 *
  • 0.004
  • 0.004 0.00%
  • 0.004
    .........,......................................................         ..... 00% *0 0.004
  • 0.004 *
                                                                                                 ............... ...........

0.004

  • C0 Se *
  • 4.54E.06 0.124 *
  • 4.S4E.06 0.32% *
  • 4.S4E.06
  • 4.54E.06
  • 4.94t*06
  • 4.54E.06
  • 4.54E.06
  • S.3tt.06
  • 0.12%
  • 0.124
  • 0.124
  • 0 0.12% *

!

    ...........................................................................

CD 60

  • 0.124 *
                                                                                                    ..... 124       *
                                                                                                                   ................

3.SO E.01

  • 3.* 0E.0 3
  • 3.5 0E 0 3
  • 3.50E.0 3
  • 3.50E.0 3
  • 3.50E.0 3
  • 3.S OE.0 3
  • 4.12E.0 3 *
  • 90.41%
  • 90.614
  • 90.41%
  • 90.614
  • 90.614
  • 90.68%
  • 90
  • 90.684
  • j

!

    .................................................................................
      #2 $4
  • Att................
  • 5.t&E=CS
  • S.16E.05
  • 5.14E=0S
  • 5.36E.05
  • 5.16E.05
  • S.16E.05
  • 5.16E.05
  • 6.0SE.05
  • 1.33%
  • t . 3 3 'a
  • 1.33%
  • 1.33% *
    ..........................................,...........................       1.33% *334
  • 1 1.334 *
                                                                                                 ............... ...........

t.334

  • E2 65
  • 2,7?E.06
  • 2.77E.0A
  • 2.77E.06
  • 2.77E.on
  • 2.77E=06
  • 2.77E.06
  • 2.77E.06
  • 3.tst.06 *
  • 0.07%
  • 0.07%
  • 0.074
  • 0.07%
  • 0.07%
  • 0.074
  • C 074
  • 0.07% *
     .................w.........................................................,..... ..........,.....

7 138 *

  • 4.94E.80 0.00% *
  • 4.54E=l0
  • 4.S4E=to
  • 4.54E=10
  • 4.54E.80
  • 4.54E=10
  • 4.54E.10
  • 5.StEat0
  • 0.00%
  • 0.00%
  • 0.00% *
     ..........................................

4707 A 1,e

  • 0.006 *
                                                             ........................... 0 004
  • 0.00%
  • 0.004 *
                                                                                                 ...............,...........

3.07E.03

  • 3.efr.03
  • 3.37E.03
    ....................,.....................
  • 3.n?E.03
  • 3.07E.03
  • 3.A7E.03
                                                          ................................... 87E=03 *3           a 4.SSt=03 *
                                                                                                              .......,...........

t , C-37

                                                                  ,                           ..
                                                                                                                                     .

__._ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ ____

                                                                                                                                                                                                                             -

HAZl.CTON CNVIRONMENTA1. SCISNC3D COOPER NUCLEAR STAftom SECOND QUA9TER 1980 6 COM6tNED RELEASE ALADA ANNUAL INTEGRATED POPULAft0N DOEC

SUMMARY

(MANRE9) PATMWAT e INHAL Ct. TRACT suht LtVER KtDNEY TNTROID LUNG SKIN h uCLID F. T.8007 ................................................................+.....................,..........+ f ilt

  • 1.23r.06
  • 3.17E=07
  • 1.67E 06
  • 2 16E.06
  • 3.47r=06
  • 7.13E.04
  • 0.00E+00
  • 0.00E*00 *
  • 7.75%
  • 0.86%
  • 7.64%
  • 8.55%
  • 28.32%
  • 75.27%
  • 0.00%
  • 0.00% *

................................................................,.................................

  • I 133
  • 1.49E.07 - 5.90E 07
  • 7.32E.07
  • 8.15E.06
  • t.99E=06 a 1.78E.04
  • 0.00E*00
  • 0.00E*00
  • 2.33%
  • t.62%
  • 3.35%
  • 4.54%
  • 15.31%
  • 18.77%
  • 0.00%
  • 0.00%
  • j I

.........s..........s..........s..........s..........+..........s................................,

  • Am 89
  • 1.05F.to a 3.14t=09
  • 3.66E.09 0.00E+00
                                                           *
  • 0.00E+00 ** 0.00E*00 1.62E.08
  • 0.00E+00
  • l
  • 0.00%
  • 0.00%
  • 0.02%
  • 0.00%
  • 0.00% 0.00%
  • 0.00%
  • 0.00% * '

.........,.....................,................................+................................. SR 90

  • 3.94R=47
  • 3.7AE.08
  • 9.79E.04
  • 0.00E+00
  • 4.00Ee00
  • 0.00E+00
  • 6.45E=07
  • 0.00E+00 *
  • 2.25%
  • 0.10%
  • 26.29%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.08%
  • 0.00% *

...............................,......................................................+..........,

  • 9.05F.06
  • 3.03F=06
  • 0.00E+00
  • 1.07E.06
  • 0.00E+00
  • est34
  • 6.tSE.0A
  • 9.ttE=08
  • 4.35E.06 0.13%
  • 0.00% *
  • 38,84%
  • 0.254
  • 19.91%
  • 35.72%
  • 23.38%
  • 0.00% *

....................,.................................................................+.........., *

  • CSl37
  • 5,25E.06
  • 1.10E.07
  • 8,38E.06
  • 9.92E=06 ** 3.52E.06
  • 0.00E+00 1.24E.06
  • 0.00E+00
  • 33.15%
  • 0.30%
  • 38.33%
  • 19.17% 27.13%
  • 0.00%
  • 0.15%
  • 0.00% *

.........,................................,................................+.....................,

  • t
  • 9A140
  • 4.77E.08
  • 3.17E.06
  • 7.50E.07
  • 8.59Eato
  • 2.90E.10
  • 0.00E+00 2.30E=05
  • 0.00E+00
  • 0.30%
  • 8.70%
  • 3.43%
  • 3.00%
  • 0.00%
  • 0.00%
  • 2.73%
  • 0.00% *
.........e..........e..........e.....................s..........,..........s.....................,

t 131

  • 9.67E.08
  • 2.44E.08
  • 1.32F.07
  • 1.71E.07
  • 2.90E.07
  • 5.62E.05
  • 0.00F+00
  • 0.00F+00 *
  • 0.61%
  • 0.07%
  • 0.60%
  • 0.47%
  • 2.23%
  • 5.94%
  • 0.00%
  • 0.00%
  • f

..........................................+.....................+.....................,........... ] CO 58

  • 2.03E.08
  • 7.99E=07
  • 0.00E+03
  • 1.45E.08
  • 0.00E+00
  • 0.00E+00 ** 8.72E.06
  • 0.00E+00
  • 1
  • 0.13%
  • 2.70%
  • 0.00%
  • 0.06%
  • 0.00%
  • 0.0C4 1.03%
  • 0.00% *
..................................................................................................                                                                                                                                     *
                                                                                                                                                                                                                                                       ,

CD 60

  • t.98E.06
  • 2.93E 05
  • 0.00E+00
  • 1.44E.06
  • 0.00E+00
  • 0.00Ee00 ** 7.65E.04 0.00E+00 * '
  • 12.52%
  • 80.61%
  • 0.00%
  • 5.70%
  • 0.09%
  • 0.00% 90.78%
  • 0.00% *
.........+........................................................................................                     a  2.76E.07
  • 0.00E,00
  • 4.06E.05
  • 0.00E+00
  • NN 54
  • 1.93E.07 a 1.80E.06 ** 0.00F+00
  • 1.12E.0f
  • 3.22%
  • 4.95% 0.00%
  • 4.444
  • 2.13%
  • 0.00%
  • 4.81%
  • 0.00% *
......... ..........+..........+................................,..........+..........,..........,
  • ZN 49
  • 1.42E=07
  • 1.24E.07 ** 9.42E.08
  • 2.92E.07
  • 1.92E.07 ** 0.00E+00
  • 2. Sit.06 0.00E+00 *
  • 0.90%
  • 0.34% 0.43%
  • 1.15%
  • 1.48% 0.00%
  • 0.30%
  • 0.00% *
..........................................,...........................................,..........+

t 131

  • 3.07E.10 a 7.80r.11
  • 4.18E.10
  • 5.42E.10
  • 9.19E.to
  • 1.78t=07
  • 0.00E*00
  • 0.00E*00 *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.02%
  • 0.00%
  • 0.00% *
.................... ..........+.......... ...........................................,..........,
                                                                                                                                                                                                                                       *
  • TOTAL *
  • 1.58r.05'* 3.64E.05
  • 2.19E.0S
  • 2.53E.05
  • 1.30Ee05
  • 9.47E.04 a

8.43E 04 0.00E+00 *

 ...............................,................................,................................,
                .

4

                                                                                %

C-38

                                       -           . - ___         _ _ _ - _ _ _                                                 - _ _ _ _ _ - _ _ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ _ - _ _ _ _ _ _ _
                                                                          .
                                                                                           .
                                                                                                .      .

HA21.QTON CNVIRONMENTAL. CCCNC'JD COOPER NUCLEAR STATION SECOND QUARTER 1980 t COMBINED RELLASE ALARA ANNUAL INTEGRATED POPULAT!QN DOSE

SUMMARY

(MANDEM) PATN3AY s vtGET EUCLIDE T.80DT C1. TRACT BONE LIVER RIDNEY TNTRO10 LUNG SNIN

   ..........................................+.....................+.....................+..........,

I 131

  • 7.63E.oA
  • 2.54E=06
  • 1.n9E.05
  • 1.35E.05
  • 2.27E*05
  • 4.36E 03
  • 0.00t+00
  • 0.00re00 *
  • 2.326
  • 0.40%
  • 2.78%
  • 2.64%
  • 12.874
  • 93.B5%
  • 0.00%
  • f.004 *
   ...........................................................................,...............u.....,
  • i 133 4.0tt.lt
  • 8.30E.it
  • 8.02E.it
  • 1.20K.10
  • 2.06E=10
  • 1.94E.00
  • 0.00E+00
  • 3.00E+00 *
  • 0.00%
  • 0.004
  • 0.004
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.n0% *
   ................................................................,..........+.......... ...........

3R OS *

  • 9.54E=09
  • 3.29E=0e*
  • 3.35E.07
  • 0.00E*00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00%
  • 0.004 0.006
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00% *
   ..........................................,.....................+.......... ..........,...........
  • 82 90
  • 1.56E.05
  • 1.49E.06
  • 6.27E.05
  • 0.00E+00
  • 0.00E+00
  • C.00E+00
  • 0.00E+00
  • 0.00E 00
  • 4.73%
  • 0.28%
  • 15.90%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004 *
   ..........................................,...........................................+...........
  • C3134
  • l.0er.04
  • 2.45E=06
  • 9.52E.05
  • 1.95E.04
  • 6.2tE.05
  • 0.00E+00
  • 2.16t=0S
  • 0.00E+00
  • 32.95%
  • 0.464 *. 24.16%
  • 39.264
  • 35.15%
  • 0.00%
  • 43.03%
  • 0.00% *
   ..........................................,.....................,.....................+...........
  • C3137
  • 1.03E.04
  • 3.36E.06
  • 2.00E.04
  • 2.44E.04
  • 8. tee.05
  • 0.00E+00
  • 2.06E 05
  • 0.00E+00
  • l 31.434
  • 0.434
  • 52.76%
  • 47.95%
  • 46.24%
  • 0.00%
  • 56.95%
  • 0.00% *
   ....................s..........s..........+.......... ...........................................,

RAlen *

  • 3,7tE.o?
  • 3.stE.05 * *1,1tE.05
  • 1.53E.06
  • 5.49E.49
  • 0.00E*00
  • 9.05E.09
  • 0.00E+00
  • 0.274
  • 3.40% 3.59%
  • 0.004
  • 0.00%
  • 0.004
  • 0.02%
  • 0.00% *
   ....................+.............................................................................
                  *
  • I 131
  • 4.94E.07 1.65E=07
  • 7.09E.07
  • 8.72E=07
  • 1.47E.06
  • 2.03E.04
  • 0.00E+00
  • 0.00E+00
  • h 0.154
  • 0.03%
  • 0.184
  • 0.17%
  • 0.83%
  • 6.08%
  • 0.00%
  • 0.004 *
   ....................+...............................,%.........,.....................+...........
  • CO 50
  • t.5aE=04
  • 9.06E.06
  • n,00E 00
  • 6.25E.07
  • o.00E+00
  • 0.00E,00
  • 0.00E*no
  • 0.00E+00
  • 0.40%
  • t.70%
  • 0.00%
  • 0.124
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
   .........+..........+.....................,.....................,.................................
  • CO 60 8.44E.05
  • 4.60E.04
  • 0.00E+00
  • 3.42E.05
  • 0.00E+00
  • 0.00E*00
  • 0.00E*00
  • 0.00E+00 *
                  *
25.67%
  • e6.26%
  • 0.00%
  • 6.71%
  • 0.00%
  • 0.00%
  • 0.004
  • 0.00% *

[ ..........................................+......................................................, ,

                  *
    #2 54           3.29E.06
  • 3.32E=05
  • 0.00E*00
  • 1.53E.05
  • 4.43E=06
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00 *
  • 1.00%
  • 6.22%
  • 0.00%
  • 2.984
  • 2.51%
  • 0.00%
  • 0.00%
  • 0.00% *
   ...............................,..........,................................,..........,...........
  • 22 69
  • 3.29E.06
  • 2.90E.06
  • 2.13E.06
  • 6.44E.06
  • 4.20E.06
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 1.00%
  • 0.54%
  • 0.54%
  • 1.26%
  • 2.38%
  • 0.00%
  • 0.00%
  • 0.00% *
   ................................................................,..........,.......... ..........,

1 131

  • 5.467 09
  • t.82E=09
  • 7.a3E.09
  • 9.63E.09
  • 1.63E=00
  • 3.12E 06
  • 0.00E+00
  • 0.00E+00 *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004
  • 0.00%
  • 0.07%
  • 0.00%
  • 0.00% *
   ....................,.....................,.....................,.....................,..........,
                  *
  • STOTALe 3.29E=04 5.34E.04
  • 3.94E.04
  • 5.10E 04
  • 1.77E.04
  • 4.65E.03
  • 5.02E.05
  • 0.00E+00 *
   ..........................................+.......... ..........+................................,

l

                                                                                                                    .

C-39 i 1

          . . . .
 . - ____ _ _ - _ _

HAZLETON CNVIRONMENTAL CCIENC33 COOPER NUCLEAR STATION I SECOND QUARTER 1980 C0881MED RELEASE ALA8A ANNUAL INTEGRATED POPULAftch DOSE SUMM ART (MANP!M) l PATHeAY e COW MILK NUCLICE 7.800Y GI. TRACT BONE LIVER KIDNET THVROID LUNG SKIN

                    ...............................,.................................................................+

I 1 31

  • 5.01E=06
  • 1.57F=06
  • 7.48E.06
  • 6.97E.06
  • 1.5tE=05
  • 2.90E.03
  • 0.00E+00 ** 0.00E+00 **
  • 3.54%
  • 4.49%
  • 3.40%
  • 2.86%
  • 12.73%
  • 93.34%
  • 0.00% 0.00%
                    ...................+..........+=....................,.....................+............8.......,
  • i 133
  • 3.48E=08
  • 6.69E.08
  • 7.03E.08 ** 1.03E=07
  • 1.76E.07 ** 1.68E.05 **0.00E+00
  • 0.00E+00
  • 0.02%
  • 0.19%
  • 0.03% 0.03%
  • 0.15% 0.54% 0.00%
  • 0.00% *
                    ....................+.....................+.....................+.....................+..........+             *
  • SR 89
  • 4.2tE.to - 1.3tt.09 1.47E.08
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
                    ....................+.....................+..........+..........+..........+.......... ..........+
  • 3R 9a .

a,54E.07 5,93E.04

  • 2.63E.06
  • 0.00E+00
  • 0.00E+no
  • 0.00E,00
  • 0,00E,no
  • 0.00E+00
  • 0.46%
  • 0,17%
  • 1.19%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
                    .........+..........+................................+..........,..........+..........+..........,

c8134

  • 6.50E.05 ** 1.49E.06 ** 6.46E.05
  • 1.29E.04
  • 4.09E 05
  • 0.00E+00
  • 1.43E=05
  • 0.00E+00 *
  • 45.34% 4.26% 29.37%
  • 41.164
  • 34.46%
  • 0.00%
  • 43.16%
  • 0.00% *
                    ......... ..........+..........+.....................+..........,..........,.......... ..........+
  • CSl37
  • 6.10E.05
  • 2.04E.06
  • 1.40E.04
  • 1.60E.04
  • 5.34E.05
  • 0.00E+00
  • 1.99E=05
  • 0.00E+00
  • 42.54%
  • 5.82%
  • 63.71%
  • 51.17%
  • 45.09%
  • 0.00%
  • 56.84%
  • 0.00% *
                    ...............................+..........+..................... ..........+.....................+               (

PAtto a 2,8tg.08 a 5.30E.07 ** 4.56E.07

  • 4.79E=16
  • 1.60E.30
  • 0.00E+00
  • 2.86E.10
  • 0.00E+00 *
  • 0.02%
  • 1.51% 0.21%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
                    ................................................................+..........,..........,..........+
  • t 131
  • 3.297 07
  • 1.02E.07
  • 4.85E 07
  • 5.8tE 07
  • 9.78E.07
  • 1.885 04 0.00F+00
  • 0.00E+00 *
  • 0.23%
  • 0.29%
  • 0.22%
  • 0.19%
  • 0.83%
  • 6.05%
  • 0.00%
  • O.00% *
                    .........+..........+.....................+.....................+.....................+...........
                                                                                                                        *
  • 8.46E.08
  • 4.36E.07
  • 0.00E+00
  • 3.27E.08
  • 0,0nE+no a 0.00E+00
  • 0.00E*00 0.00E+00
                                                                                                                                      !
  • CD 58
  • 0.06%
  • 1.25%
  • 0.00%
  • 0.01%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • j
                    ............................... ................................,..........+..........+...........

CO 60

  • 4.72E.no
  • 2.32E 05
  • 0.00E+00
  • 1.87E.06 ** 0.00E+00
  • 0.00E+00
  • 0.00E*00
  • 0.00E+00 *
  • 3.30%
  • 66.39%
  • 0.00%
  • 0.60% 0.00%
  • 0.00%
  • 0.c0%
  • 0.00% *
                    .........+..........+.....................+................................+..........,..........+
  • 4.09E*07
  • 0.00E,00
  • 2.04E=07
  • 5.92E=08
  • 0.00E+00
  • 0.00E+00
  • 0.00E,00
  • um 54
  • 4.53E.08
  • 0.03%
  • t.17%
  • 0.00%
  • 0.n7%
  • 0.05%
  • 0.00%
  • 0.00%
  • 0.00% *
                    ...............................+..........,................................+..........,..........+
  • ZN 65
  • 6.40E=06
  • 5.n5E.nA
  • 4.09E 06
  • 1.22E.05
  • 7.93E=06
  • 0.00E+00 0.00E+00
  • 0.00E+0a *
  • 4.46%
  • 14.45%
  • 1.86%
  • 3.90%
  • 6.69%
  • 0.00%
  • 0.00%
  • 0.004 *
                    ..........................................+.....................+.....................+..........,

I 131

  • 3.63F.09
  • 1.12E.09
  • 5.36F.09
  • 6.42E 09
  • 1.08E.08
  • 2.08E.06
  • 0.00E+00
  • 0.00E+00 *
  • 0.n0%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.n0%
  • 0.07%
  • 0.00%
  • 0.00% *
                    ....................+.....................+.....................+.....................,..........,
  • TOTALS
  • 1.43E.04
  • 3.50E 05
  • 2.20E.04
  • 3.13E.04
  • 3.19E.04 a 3.ltg.03
  • 3,32E.05
  • 0.00E+00 *
                    .....................................................,.......... ..........+......................

C-40

HAZ1.OTON ENVIRONMENTAL. CCIENCEO C00 PEP NUCLEAR STATION s SECOND OUARTER 1980 : ComBl%ED RELEASE ALAPA ANNUAL INTECRATED POPULATION DOSE SUMMART (MANDEM) PATMeAY e PEAT NUCLIDE T.nUDY C1. TRACT BONE LtVER Kt' DNET THYROID LUNG SFIN

 .........+* . . . . . . . . . . + . . . . . . . . . .* + . . . . . . . . . *
                                                                            . + . . . . . . . . .*. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . +

t 139

  • 3.0lE=07
  • 1.17F=07 4.02E.07 9.2eE.07 4.98E=07
  • 1.77E.04
  • 0.00E*00
  • 0.00E.00 *
  • j 0.50% 0.06%
  • 1.18%
  • 0.01%
  • 4.50%
  • 93.05% * *
  • l ....................,......................................................+..........,.....
  • 0.00%

00% 0

                                                                                                                                                                                   .....

!  ! 133

  • 2.09E.14
  • 5.11E=14
  • 4.07E.14
  • 6.52E=14
  • 1.13E.13
  • 1.0tt.11
  • 0.00E+00
  • 0.00E+00 *
  • 0,00%
  • l l 0.00% 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0 00% *
 .........s..........+..........s..........s..........+.....................+.........e,.....
           *                                                                                                                                                                      ....e i

1 42 89

  • 1.ttE=10
  • 4.00E=10
  • 3.9et 09
  • 0.00E*00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00%
  • 0.00%
  • 0.01%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
 .........+..........

SR 00 *

                                 .....................,.....................+...........................                                                               00%.....

0

                                                                                                                                                                                      *
  • 2.S5r=07 0.42% *
  • 2. 7 t r.0a
  • 1.03E.c6
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.08%
  • 3.04%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *

[

 .........+.....................,.....................,.....................+................

C3 34

  • 00% 0
                                                                                                                                                                                   *
                                                                                                                                                                                  ....,
  • 1.42E.05 23.75% *
  • 3.13E 07
  • 9.64E.06
  • 2.12E.05
  • 6.7eE 06
  • 0.00E*00
  • 2.32E.06
  • 0.00E+00
  • 0.15%
  • 28.41%
  • 32.52%
  • 34.50%
  • 0.00%
  • I
 ...............................+..........+.....................+..........,..........+.....

CS137

  • 43.55%
  • 00%....+

0

                                                                                                                                                                                       *
  • t.36r.05 22.75% *
  • 4.22E=07
  • 2.07E.05
  • 2.60E=05
  • 9.75E.06
  • 0.00E+00
  • 3.00E.06
  • 0.00E+00
  • 0.21%
  • 60.91%
  • 19.934
  • 44.60% *
 .........+.....................+.....................+..........+.....

P4140

  • 0 00%
  • 56.44%
  • 0.00% *
                                                                                                                                     ....+.....................+
  • 4.32E.08
  • 1.09E.06
  • 6.79E.07
  • 7.84E.10
  • 2.64E=10 0.00E+00
  • 4.60E=10 a 0.00E+00 *
  • 0.07%
  • 0.S4%
  • 2.00%
  • 0.00% *
 ..........................................+..........+..........,.....                                    0.00%
  • 00% 0
  • 0.00% *
                                                                                                                                     ..........................+

0.00%

  • t 131
  • I,95F=04
  • 7.6tE.09
  • 2.60F 00
  • 3.42E-00
  • S.82r.08
  • t.llE.05
  • 0.00E+00
  • 0.00E+00 *
  • 0.03g
  • 0.00%
  • 0.00%
  • 0.05%
  • 0.10%
  • 08%
 ....................,..........+..........+..........+..........+.....                                                          6
  • 0.00%
  • 0.00% *
                                                                                                                                     ..........................+

( CO SS

  • 4.43E=07 0.74% ** 3.17E.06
  • 0.00E*00
  • 1.55E=07
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00 *
  • 1.56%
  • 0.00%
  • 0.20%
  • l ....................,.....................,.....................,..... 00% *...............
  • 0.00%
  • 0 0.00%
  • 0.00% *
                                                                                                                                                                     ...........

f CO 60 2.etr=05

  • 1.95E.04
  • 0.00E+00
  • 1.23E.05
  • 0.00E+00
  • 0.00E,00
  • 0.00E*00
  • 0.00E+03 *
  • 47.41%
  • i 95.85%
  • 0.00%
  • 18.84%
  • 0.00% *

,

 ..........................................+...........................

c3 54

  • 00% 0
  • 0.00%
  • 0.00% *
                                                                                                                                     ....,..........+..........,
  • 6.60E.0h 0.11% ** 9.36E.07
  • 0.00E+00
  • 1.23E=07
  • 9.StE.09
  • 5.00E+00
  • 0.00E+00
  • 0.00r*00
  • 0.41%
  • 0.00%
  • 0.50%
  • 0.44%
  • 0 0.00%
  • 0.00% *
 ....................+.....................+...........................00%*

IN 65 * ...............+..........+

  • 2.22E=66 3.70% *
  • 2.45E.06
  • 1.40E.06
  • 4.40E.06
  • 3.03E*06
  • 0.00E+00
  • 0.00E*00
  • 0.00E+00
  • 1.20%
  • 4.37%
  • 7.07% *
 .........+.....................,...........................................,.....
  • 15.45%
  • 0.00%
  • 00% 0
                                                                                                                                                               -
                                                                                                                                                           ...............+

0.00%

  • t t il
  • 2.tSE=10 0.00% ** 8.41E.lt 0.00% *
  • 2.OSE.10
  • 3.78E.10
  • 6.43E-to
  • 1.23E.07
  • 0.00E+00
  • 0.30E+00
  • 0.00%
  • 0.00%
  • 0 0.07%
  • 0.00% *
 .........+..........+..........+.....................s.....00%*

8707 ale * ....+..........+..........+..........e 0.00%

  • 5.99E.05
  • 2.03Eg04
  • 3.39F.05
  • 6.5tE.05
  • 1.96r.0S
  • 1.83E.04 *
 .........+................................+.....r...............+..........+.5.J2E.06*0.00E+00*                                                   ...................+

! o C-41

         <
                                                                             ~                                               -
                                                                                                                                                 . _ _ _ _ _ _ _ _

HAZLDTON (INVIRONMENTAL. CCIENCES COOPER NUCLEAR STATION 8 SECOND QUARTER 1980 COM8tNED RELEASE ALApA ANNUAL INTFGRATED POPULAT104 DOSE SUMMART (MANPEu) PATMWAY s '70TALs NUCLIDE 7.8007 Ct. TRACT LONE LIVER EtDNEY THYPQ10 LUNG Sk1N

   .........+.....................+..........+..........+..........+..........+......................

NR 45

  • 3.62F.07
  • 3.62F=07 ** 3.62F.07
  • 3.62E 07
  • 3.62F.07
  • 3.62F. 07
  • 1.20F.06
  • 6.08E.05 *
  • 0.00%
  • 0.00% 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.10% *
   .........+..........e..........+..........+.... ................+..........+..........+...........
  • sp 85u
  • 6.23E.04 ** 6.23F=04
  • 6.23Ea04
  • 6.23E=04 6.2 3E.04 ** 6.2 3E.0 4 * ( .4 4E=0 4
  • 2.2 8 E.0 3 **
  • 2.044 2.024
  • 2.03%
  • 2.02%
  • 2.05% 1.60%
  • 2.06%
  • 3.624
   .........+.....................+..........+.....................+.......... .r........+..........+

sm 87 - 2.29E 03

  • 2.29F.03 ** 2.29E.03
  • 2.29E.03
  • 2.29E.03
  • 2.29E.03 2.36E.03
  • 1.02F.02 *
  • 7.48%
  • 7.414 7.45%
  • 7.39%
  • 7.53%
  • 5.87%
  • 7.544
  • 16.10% *
   ...................,..........+.....................+..........+..........+..........+..........+

NR 88

  • 1.64E.02
  • 1.64E=02
  • 1.64E=02
  • 1.64E*02
  • 1.64E.02 a 1.64E 02
  • 3.65E.02
  • 2.41E.02 30.244 *
                                                                                                                                                                                                         *
  • 53.67%
  • 53.211
  • 53.45%
  • 53.03%
  • 54.05%
  • 42.16%
  • 52.58% *
   . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . *. . . . . . . . . . . . . . . . . . . . . . .*. . . . . . . . . . + . . . . . . . . . . +

IE133

  • 7.97F.04
  • 7.97E=04** 7.97F.04
  • 7.97t=04
  • 7.97F=04
  • 7.97E.04
  • 8.53F.04
  • 2.72E.03
  • 4.314 *
  • 2.614
  • 2.584 2.604
  • 2.584 2.62%
  • 2.054 2.72% *

' * ..............................+.....................+.....................+..........+..........+ IE135 ** 5.6tE.01

  • 5.6tt.03
  • 5.6tE.03
  • 5.6tE.03
  • 5.61E=03
  • 5.61E.03
  • 5.76E.03 10.38% *
  • 1.8tE.02
  • 28.754
  • 18.35%
  • 18.19%
  • 18.28%
  • 18.13%
  • 10.48%
  • 14.42% *
   ....................,..........+..........,..........+..........+..........+..........+..........+

IE135N

  • 3.itE.05
  • 3.tlE=05
  • 3.itE.05
  • 3.tlE.05
  • 3.ttt.05 a 3.tlE.05
  • 3.12E.05
  • 5.13E.05 *
  • 0.10%
  • 0.10%
  • 0.10%
  • 0.10%
  • 0.10%
  • 0.084
  • 0.10%
  • 0.08% *
    ....................+..........+..........+..........+..........+.....................+..........+
  • tFt3A
  • 3.40E.04 ** 3.80E.04 ** 3.80E=04 ** 3.80E=04
  • 3.80E.04 ** 3.80E.04 ** 3,84t=04
  • 7.95E.04
  • 1.744 1.235 1.244 1.234
  • 1.25% 0.984 1.234
  • 1.264 *
    . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . *+ . . . . . . . . . .* . . . . . . . . . . . . . . . . . . . . . . *.

pp se

  • 3,37e.08 a 1.37E.0#
  • t.37F.08
  • 1.37F.08 ** 1.37E.08 1.37E.08 1.39E=08
  • 3.25F.08
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00% 0.00%
  • 0.00%
  • 0.00%
  • 0.004 *
    .........+..........+.....................+.....................,..........+..........+..........+

up 83m

  • 9,39E.09
  • 9.19E.09
  • 9.39E.09
  • 9.19E.09
  • 9.19E.09
  • 9.19E.09
  • 7.17E.07
  • 2.60E=06 *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004 *
    ........+.....................+..........+.....................+                                                                                               .....................+...........

1.34F.08

  • 1.34[.08
  • 1.34F.08
  • 1.34E.08
  • t.34F=08 1.34E.08 ' f.57E.08
  • 2.46E.07 *
                        *
  • IE137
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004
  • 0.00%
  • 0.004 *
    ..........................................+.......................................................

l vel 33M

  • 2.14E.05
  • 2.14E=05
  • 2.14E.05
  • 2.14E.05
  • 2.14E.05
  • 2.14E*05
  • 2.39E.05
  • 2.0tt 04
  • i
  • 0.07%
  • 0.07%
  • 0.07%
  • 0.07%
  • 0.07%
  • 0.06%
  • 0.08%
  • 0.32% *
    ....................+.................................................................+...........

IE13tM

  • 6.37E.01
  • 6,37E.07
  • 6.37E.07
  • 6.37E 07
  • 6.17F.07
  • 6.37E.07 ** 7.90E.07
  • 7.83E.06 **

j

  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004 0.00% 0.ott

\ .........+..........+..........+..........+.........+..........+..........+..........+..........+ f $31

  • 1.49E=05
  • 5.20E=06
  • 2.12E=05
  • 2.58E=05
  • 4.30E.05
  • 8.15F.03
  • 6.57E=07
  • 7.97F.07 *
  • 0.05%
  • 0.02%
  • 0.07%
  • 0.08%
  • 0.14%
  • 20.95%
  • 0.00%
  • 0.00% *
     ......... ..........+..........,..........+..........+..........+................................,
                                                                                                                                                                                                           *
  • 6.6tE.0*
  • 9.14E.07
  • 1,0AF.06
  • 1.5tE.06
  • 2.42F.06
  • 1.95E.04
  • 2.57E.07
  • 3.13E.07 t 133
  • 0.074
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.506
  • 0.00%
  • 0.00% *
     .........+..........+.....................+..........+.....................+.....e....+..........+

SR 89

  • 1.02E.08
  • 3.78E=08
  • 3.57t=07 ** 2.93E.13
  • 2.93E.13
  • 2.93E=13
  • 1.62E*08
  • 3.40E=13 ** 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.006 0.00%
  • 0.004
  • 0.00% *
     . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . .*. . . . . . . . . . . + . . . . . . . . . . +

4R 90

  • 1.68F=05
  • 1.6tE.0A
  • 7.2tE=05
  • 0.00E*00
  • 0.00F+00
  • 0.00E+00 6.45F.07
  • 0.00F+0n *
  • 0.06%
  • 0.00%
  • 0.734.* 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
     . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . +* . . . . . . . . . . +* . . . . . . . . . . .

Cat 34 ** 2.88E 04

  • 9.n2F.05
  • 2.68E.04 4.48F.04 2.07E.04
  • 9.39E=05
  • 1.31E.04
                                                                                          *
  • 1.10E.04
  • 0.94%
  • 0.32%
  • 0.874
  • 1.4ft
  • 0.684
  • 0.24% 0.43%
  • 0.l'n *
     ..........................................+..........+..........+..........+..........+..........+

C-42 _ - - - _ - _ . . _ _ _ _ ..

r- . I

   .

l i l , HAZA.CTON GNVIRONMENTAL. CCIENC23 l l l C0!PER Ft1 LEAR STATION 3ECOND QUARTER 1980 COMBINED RELEASE 6La2A AnguAL INTEGRATED POPULAftDN DOSE SUMMART (MAhRE4) PATM24Y a e T07 .Le (CONTINUfD3 EUCLIDE 7.60DY GI-TaaCT B0dt LIVER RIDNEY TNTROID LUNG SKIN

     .......................................... ...........................................+..........+
  • 2.60E=04
  • 2,44F=04
  • i C8337
  • 3.92E.04
  • 2.19E.no ** 5.86E.04
  • 6.49E.04
  • 3.56E.no
  • 2.09E.04
  • l
  • 1.204
  • 0.70% 1.91%
  • 2.10%
  • 1.174
  • 0.544 0.83%
  • 0.39% *
     ............................... .......................................................+..........+

B2140

  • 1.5tE=06
  • 2.14F.09
  • 1.6E?.05
  • 5.30E=07
  • 5.19E.07
  • 5.13E.07
  • 2.35E.05
  • 5.96E.07
  • l
  • 0.00%
  • 0 net
  • 0.05%
  • 0.00%
  • 0 n0% = 0.00g
  • 0.07%
  • 0.00%
  • I ...................+..........+..........+..........+..........+...............................+

1 til '* 9,82E.n7

  • 1.42F.n?
  • 1.40E.nn
  • t.70r.no
  • 2.R4E.06
  • 5.3AE.04
  • 4.htE=08
  • 5.23E.ca *
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00%
  • 1.38%
  • 0.00%
  • 0.00% *
     .........+................................+...........................................,..........+
  • CO 59
  • 6.66E.06
  • 1.00E.05
  • 4.54E.06
  • 5.19E 06
  • 4.54E.06
  • 4.54F.0A
  • 1.33E*05
  • 5.3tE=04
  • 0.02%
  • 0.06%
  • 0.01%
  • 0.02%
  • 0.01%
  • 0.ntt
  • 0.04%
  • 0.004 *
     ....................,........................................... ................................+

t r0 40

  • 3.62r.03
  • 4.2tE.03
  • 3.50E.03
  • 3.55E=03
  • 3.50E.03
  • 3.50E=0)
  • 4.27E.03
  • 4.12E.03 *
  • 11.064
  • 13.644
  • 11.42%
  • 11.49%
  • 11.55%
  • 9.01%
  • 13.624
  • 6.54% *
     ..........................................+................................,..........,.......... ,

m3 54

  • 5.52r.05
  • 8.78E.05
  • 5.16F=05
  • 6.84E.05*
  • 5.64E.05
  • 5.lAE.05
  • 9.2tt.05
  • 6.05E.05 *
  • 0.104
  • 0.206
  • 0.374
  • 0.22% 0.19%
  • 0.33%
  • 0.29%
  • 0.104 *
     ....................,................................+..........,..................... ...........
                   *
  • 1.33E.05
  • 1.0AF.05
  • 2.63E=05
  • 3,atr.05
  • 2.77E.06
  • 9.27E.06
  • 3.10E.06 *
 }       IN 65       t.4er.09 l
  • 0.054
  • 0.n4%
  • 0.03%
  • 0.09%
  • 0.06%
  • 0.00%
  • 0.02%
  • 0.n04
  • l
     ..........................................+.......... ...........................................,

l 1 131

  • 1.0tE 0m
  • 3.56E=09
  • 1.43E.08
  • t.74E.08
  • 2.9tt.08
  • 5.50E.06
  • 4.54E=to
  • 5.StE.to
  • l
  • 0.004
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.01%
  • 0.006
  • 0.00% *
     ..........................................+.....................+.....................+..........+

eTOTAL8

  • 3.06E.02
  • 3.00E.02
  • 3.07E.02
  • 3.09E.02
  • 3.03E=02
  • 3.s9E.02 - 3.13E.02
  • 6.3tt.02 *
     ...............................+..........+.....................+.....................+..........,

i ! i i l l C-43

      .-
                               ..
                                            . .   .
                                                                                                  'E

_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ __ 1 i l l HAZLOTON CNVIRONMENTAL CCl2NCUC l f COOPER NUCLEAR STATION SEC0hD QUARTER 1980 COMBINED RELEASE NEPA ANNUAL INTEGRATFD POPULATION DOSE summary (MANPEN) BohE LIVER kIDNET THYRO 1D LUNG SKIN PATHWAY T.800Y G1. TRACT

 .........+..........+.....................+..........
                                                  *
                                                                ................................+..........+

t.17E.01

  • 1.17F=01
  • 1.11E.01
  • 1.20F.01
  • 3.12E=01
  • P f,U m E
  • 1.17F=01
  • 1.17E.01
  • 1.17F.01 98.56% *
  • 94.20%
  • 93.06%
  • 93.724
  • 92.43%
  • 95.15%
  • 69.59%
  • 95.79% *
 ..r->.....+..........+..........+.........       +..........+..........+..........+..........+ .........+

GRouhn

  • 3.87E.03 ** 3.97F.03 ** 3.87E.03
  • 3.87E.03 ** 3.07E*03
  • 3.97E.03
  • 3.87E 03
  • 4.55F.03 **
  • 3.124 3.09% 3.11%
  • 3.07% 3.16%
  • 2.27%
  • 3.08%
  • 1.44%
 .........+..........+..........+..........+ ....................+..........+..........+..........+

INNAL

  • 1.54E.05
  • 3.64E.05
  • 2.19E.05 ** 2.53E=05
  • 1.30E.05
  • 9.47E.04
  • 8.43E 04
  • 0.00E+00 0.67%
  • 0.00% **
  • 4.01%
  • 0.03%
  • 0.02% 0.02%
  • 0.01%
  • O.56% *  ;
 ...............................+.....................+..........+..........+..........+..........+

VF0FT

  • 1.05E.0)
  • 1.7tE.03
  • 1.26E.03
  • 1 63F. 03
  • 5.65E.04
  • 1.19E 02
  • 1.60E.a4
  • 0.13% ** 0.00E+00 0.00% **
  • 0.05%
  • 1.364
  • 1.01%
  • 1.29%
  • 0.46%
  • 9.75%
 ...............................+..........+.....................+..........+.....................+

Com MILK

  • 1.44E.03
  • 3.51E.04
  • 2.21E.03
  • 3.15E.01
  • 1.19E.03 *
  • 3.12E.02 18.30% ** 3.34E.04 0.274 ** 0.00E on **

0.00%

           *
  • 0.29%
  • 1.794
  • 2.50%
  • 0.97%
 .........s..........+.....................+.....................+.....................+..........+

t.164 2.74E 03

  • 4.51E.04
  • 8.76E.04 2.64E=04 2.46E.03
  • 7.16E.05
  • 0.00E+00 *
                         *                                    *
  • i
  • MEAT 8.06E.04 0.06%
  • 0.00% *
  • 0.65%
  • 2.10%
  • 0.37%
  • 0.69%
  • 0.22%
  • 1.45% *  !
 ...............................+..........+..........+.. .......+..........+..........+...........                                                  I
  *?QTAL*
  • 1.24r.01
  • 1.25E.01
  • 1.24E*01
  • 1.26E=01
  • 1.23r.01
  • 1.70E.01
  • 1.25E.01
  • 3.17E.01 *
  .........+..........+..........+..........+..........+..........+..........+..........+..........+

l C-44

- HAZLGTON ENVIRONMENTAL CCICNC23 C0!PE2 NUCLEAP STAT!D4 1 SECOND QUARTER 1980 8 COMBINED RELEASE MEPA ANNU4L INTEGPATED POPUL47104 DOSE SUMMART(MANPE4) F47MWAT e PLUME EUCLIDE 7.CODY GI. TRACT BCNE LtVER M10NEY THIR01D LUNG SKIN

 ....................,..........,................................+................................,
                   *

sp SS 4.03E=ng

  • 4.e3E.n5
  • 4. 8 3E.n 5
  • 4. 8 3E.05
  • 4. 9 3 r.05
  • 4. 8 3 E.0 S
  • 1. 6 t t.n4
  • e.tnE 03 *
  • 0.04%
  • 0.n4%
  • 0.04%
  • 0.04%
  • 0.04%
  • 0.n44
  • 0.33%
  • 2.60%
  • l
 ......... .......... ...........................................+.....................+...........

rp 852 *

2. 2 0 E*0 3
  • 2.2 0F.0 3
  • 2.20E=0 3
  • 2.20E.0 3
  • 2.2 0E 0 3
  • 2.20E.0 3
  • 2.2 7 E 0 3
  • 8.0 4E.0 3 *
  • l.08%
  • 1.884
  • 1.88%
  • 1.80%
  • 1.884
  • 1.80%
  • 1.894
  • 2.58% *
 ..........................................+.....................+..........+..........,..........+
  • ma 37 3,get.03
  • 5.9PE.03
  • S.00E.01
  • 5.99E=03
  • S.OSE=03
  • 5.0AE.03
  • 6.00E.03
  • 2.6tE.02 *
  • S.046
  • S.04%
  • 5.046
  • 5.04%
  • 5.04%
  • 5.04%
  • 5.06%
  • 8.39% *
 ...............................+................................,..........,.......... ..........+

ep og . 4, ggt.02

  • 4,ggg.02
  • 4.99E.02
  • 4.99E.02
  • 4.99E.02
  • 4.99E.02
  • S.0tt.02
  • 7.34E.02 *
  • 42.A0%
  • 42.00%
  • 42.80%
  • 42.80%
  • 42.80%
  • 42.80%
  • 41.73%
  • 23.52% *
 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . , . . . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . , . . . . . . . . . . + . . . . . . . . . . +

IE133

  • 2.95r.02
  • 2.95E.02 **2.95E.02
  • 2.95E.02
  • 2.95r.02
  • 2.95E.02
  • 3.16E.02
  • 1.01E.01 *
  • 25.32%
  • 25.324 25.32%
  • 25.32%
  • 25.32%
  • 25.32%
  • 26.33%
  • 32.324
  • 1 .................................................................................................+

! IE135 *

  • 2.76E 02
  • 2.76E.02 ** 2.76E.02
  • 2.76E 02 *- 2.76E.02 - 2.76E=02
  • 2.83E.02
  • 8.92E.n2
  • k 23.66%
  • 23.664 23.664
  • 23.666 23.66%
  • 23.66%
  • 23.59%
  • 20.594
  • f .......................................... .....................+.................................
  • IEl3SM *
  • 7.S2E.ni
  • 7.52E.05
  • 7.92E.n5
  • 7.52E.05
  • 7.52E.05
  • 7.S2E.05
  • 7.57E 05
  • 1.24E.04
  • 0.06%
  • 0.n6%
  • 0.06%
  • 9.06%
  • 0.06%
  • 0.06%
  • 0.06%
  • 0.044
 .........+..........+..........+..........+...........................................,..........+

) IEllt

  • 9.36E=04
  • 9.36E.04
  • 9.36E=04
  • 9.36E.04
  • 9.36E.04
  • 9.36E=04
  • 9.46E.04
  • 1.96E 03 *

!

  • 0.004
  • 0.80%
  • 0.80%
  • 0.A04
  • 0.00%
  • 0.80%
  • 0.79%
  • 0.634 *
 ......... ..................... ................................+..........+......................

52 09

  • 3.09E.07
  • 3.09E.07
  • 3.09E.07
  • 3.09E.07
  • 3.n9Een?
  • 3.09E.07
  • 3.13E.07
  • 7.33E.07

,

  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
 ..........................................,.....................+................................+
  • K2 033
  • 2.S2E.08
  • 2.52E.0a
  • 2.52E.00
  • 2.52E.08
  • 2.52E.08
  • 2.52E=0B
  • 1.97E.06
  • 7.15E.06
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00)
  • 0.00%
  • 0.00% *
 ...............................+..........+......................................................+

IE:37

  • l.44r.07
  • 1.44E=07
  • 1.44E.07
  • 1.44E=07
  • 1.44E=07 a 1.44E.07
  • 1.69E=07
  • 2.65E 06 *
  • 0.n0%
  • 0.004
  • 0.006
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
  ........................................................................... ..........+..........+

IL1333

  • 3.9eE.04
  • 3.98E.04 *
  • 3.9st.04
  • 3.98E.04
  • 3.90E=04
  • 3.98E.04
  • 4.44E=04
  • 3.72E.03 *
  • 0.344
  • 0.344 0.34%
  • 0.34%
  • 0.34%
  • 0.34%
  • 0.37%
  • 1.19% *
  .........s..........                      .....................,.....................+..........s..........+..........e
  • IEt31N
  • 3.9tE=n3
  • 3.9tE*05 ** 3.9tE.05
  • 3.9tE.05 ** 3.9tt.05
  • 3.91E.0S
  • 4.85E.05
  • 4.01E 04 **

0.01%

  • 0.n3% 0.034
  • 0.034 0.03%
  • 0.034
  • 0.04%
  • 0.154
  ..........................................+.....................+................................,

e vo7 AI.e a 3.37E.03

  • 1.17E.03
  • 1.17E.31
  • 1.17E.01
  • 1.17E.01
  • t.17E.03
  • 1.20E.01
  • 3.12E.01 *
  ....................+..........s..........,.....................+..........e..........e...........
                                                                                                                                                                                               .

I C-45

                                               -

_ _ _ _ _ _ _ _ _ _

                                                                                                                                                                                                                                              ..

1 ge q] ,11 HAZLGTON GNVIRONMIENTAL SCIENCES D D hqu & 9 {I h  ; COOPER WUCLEAR Stattom i SECOND QUARTER 1980 : COM8thED RELEASE NLPA ANNUAL thTEf. PATED POPULATION DOSE

SUMMARY

(MANREM) PATHWAY s GROUND Ct. TRACT BONE LIVER E!DNET TMTactD LUNG SktN NUCLIDE T.80DY

        ..........................................,..................... .....................+..........,
  • i 131 ** 6.57E.07
  • 6.57E.07
  • 6.57E.07
  • 6.57F.07
  • 6.57E.07 ** 6.57E.07
  • 6.57E.07
  • 7.97E.07 0.02%
  • 0.02% * '

0.02%

  • 0.02%
  • 0.02%
  • 0.02%
  • 0.02% 0.02% *
        .........,................................,......................................................,

I SJ3

  • 2.57F=07
  • 2.57E.07
  • 2.57E.07
  • 2.57E.07
  • 2,97F.07*
  • 2.57E.07
  • 2.57r.07
  • 3.13E 07
  • j
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0,00% 0.00%
  • 0.00%
  • 0.00% *
        ....................,..................... ................. .....................................                                                                                                                                        )'

mm 99 ** 2.93E.13

  • 2.93r.13
  • 2.93E=13
  • 2.93E.13
  • 2.93E.13
  • 2.93E.13
  • 2.93E.13 0.00% *
  • 3.40r. 33
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
        ..........................................,..................... ..................... ...........                                                                                                                                        '

f5334

  • 9.39F.05
  • 9.39E*05 ** 9.39F*05
  • 9.39E.05
  • e.39F.05
  • 9.39E.05 2.43% *
  • 9.39E.05 2.43% *a 1.10E.04 2.41% **
  • 2.43%
  • 2.43% 2.43%
  • 2.43%
  • 2.43% *
        ...............................,.....................,............................................
  • C5137 ** 2.09E.04
  • 2.09E.n4 a 2.C9E.04
  • 2.09E.04
  • 2.09E.04
  • 2.09E=04 ** 2.09E.04
  • 2.44E.04 5.40%
  • 5.40%
  • 5.40%
  • 5.40%
  • 5.40%
  • 5.40% 5.40%
  • 5.36%
  • l
        .................... ................................................................. ...........
  • BA140
  • 5.13F.07
  • 5.13E.07 ** 5.13E=07
  • 5.13E=07
  • 5.13r.07
  • 5.13E.07 0.03% *
  • 5.13E.07 0.01%** 5.86t=07 0.01% *
  • 0.01%
  • 0.01% 0.01%
  • 0.01%
  • 0.01% *
         ..................................................................................................                                                                                                                                      ;

I 131

  • 4.3tE.no
  • 4.3tt.09
                                                                                                                                 *
4. 3 t E.0 8
  • 4. 3 t E.0 8
  • 4. 31E.0 0
  • 4.3tE.08
  • 4.3tt.00
  • 5.2iE.00 *
  • 0.00%
  • 0.n0%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0. nog *
         ..........................................,................................,.....................,
  • CD 59
  • 4.54E.nn a 4.54F.06 ** 4.54E.06
  • 4.54E.06
  • 4.54E.no
  • 4.54E.06
  • 4.54E.06 0.12% *
  • 5.3tE.06
  • 0.12%
  • 0.12%
  • 0.12% 0.12%
  • 0.12%
  • 0.12%
  • 0.12% *
         .......................................... .....................+..........,.....................,

PO 60

  • 3.50E-03
  • 3.50E 03
  • 3.50E.03
  • 3.50F.03
  • 3.50E.03
  • 3.50E.03
  • 3.50E.03
  • 4.12E.03
  • 90.69% *
  • 90.61%
  • 90.61%
  • 90.61%
  • 90.61%
  • 90.61%
  • 90.61%
  • 90.61% * {
         ..........................................,.......................................................

NN 54

  • 5.16r.05
  • 5.16E.oS
  • 5.16E.05
  • 5.16E.05
  • 5.16t=05
  • 5.160 05
  • 5.16E.05 t.33% *
  • 6.05E.n5
  • 1.33% *
  • t.33%
  • 1.33%
  • 1.33%
  • 1.33%
  • 1.33%
  • 1.33% *
         ............................... ........................................... ..........,...........

Th 65

  • 2.17E.06
  • 2.77E.06
  • 2.77E 06
  • 2.77E.06
  • 2.77E.06 2.77E.06
  • 2.77E.06
                                                                                                                                                                                 *                              *
  • 3.18E.06 *
  • 0.07%
  • 0.n1%
  • 0.07%
  • 0.07%
  • 0.07%
  • 0.07% 0.07%
  • 0.n7% *
         ..........................................,................................ .......... ..........,

t 131

  • 4.54E=10
  • 4.54E.10
  • 4.54R=10
  • 4.54E.to
  • 4.54F-10
  • 4.54E.to
  • 4.54E.10 0.00% *
  • 5.5tE.to 0.00% *
                                                                                                                                                                                                                                             *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
         ......... ..........,..................... ................................+.......... ..........,
          *TUTAbe       a 3.87E.n3
  • 3.37E.03
  • 3,R7E.0)
  • 3.07E.03
  • 3.47E=43
  • 3.8 7E.0 3
  • 3.47E.03
  • 4.55E.03 *
          .................... .......... .......... ................................ .....................,

! l l [ l 1 1

                                                                                                                                                                                                                                                  )

l C-46

                           . - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ .                                         _ _ _ _                                           .

(__ .

                                                                                  .
                                                                                                          .

L HAZL~ITON CNVIRONMENTAL CCIENCEO l COOPER NUCLEAR STATION I SECOND QUARTER 1980 l COnstnEn pELgAsE EEPA ANNUAL INTEGRATED POPULATION DO3E SUNMARY(NANRE=) PATMsAf e INHAL EUCLtDr T.900Y Ct. TRACT BONE L1VER RIDNET THTR0tD LUNG SKIN

   .................... ................................ ..........+..........+..........,...........

' t 131 *

  • 1.21E.06
  • 3.12E.07 ** t.67E.06
  • 2.l6E.06
  • 3.67E.06
  • 7.11E.04
  • 0.00E+00
  • 0.00E+0n
  • 7.75%
  • 0.86% 7.64%
  • 8.55%
  • 20.32%
  • 75.27%
  • 0.00%
  • 0.00g *
   ..........................................,.....................+..........+..........,..........+
  • t 133
  • 3.69E=07
  • 5.90E.07
  • 7.32E.07
  • 1.tSE.06
  • 1.99E.06
  • 1.78E.04
  • 0.00E+00
  • 0.00E+00
  • 2.33%
  • 1.62%
  • 3.35%
  • 4.54%
  • 15.31%
  • 18.77%
  • 0.00%
  • 0,00%
  • t ....................+...........................................+.....................+...2......

A2 89 *

  • 1.0SE.10
  • 3.14E.09 ** 3.66E.n9
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 1.62E.08
  • 0 00E+00
  • 0.00%
  • 0.00% 0.02%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
   ..........................................,.....................+.....................+..........,
             *            *
    $2 90
  • 3.56E.07 3.7eE.0a - 5,75E.06
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00 ** 5.4SE=07
  • 0.00E+00
  • 2.25%
  • 0.104
  • 26.29%
  • 0.00%
  • 0.00%
  • 0.00% 0.00%
  • 0.00% *
   ...............................+.....................+..........+..........+..........+..........,
  • C8834 8.15E.06
  • 9.Ilt.0a
  • 4.35E.06
  • 9.05E.06
  • 3. ole.06
  • 0.00E+00
  • 1.07E.06
  • 0.00E+00 *
  • 18.44%
  • 0.75%
  • 19.9t%
  • 35.72%
  • 23.38%
  • 0.004
  • 0.13%
  • 0.00% *
   ......................................................................................+..........+
             *
  • C5137
  • S.2Sr.06 1.10E.07
  • 8.3nr.06
  • 9.92E.06
  • 3.527 06
  • 0.00E+00
  • t,24E.06
  • 0.00E,00
  • 31.15%
  • 0.30%
  • 38.33%
  • 39.17%
  • 27.13%
  • 0.004
  • 0.15%
  • 0.00%
  • j ....................+.....................+.....................+.................................
              *
  • RA140 4.77E=08 3.17F.06
  • 7.50E.07
  • 8.59E.10
  • 2.90E.10
  • 0.00E+00
  • 2.30E=0S
  • 0.00E+00 *
              *
  • 0.30% 8.70%
  • 3.43%
  • 0.00%
  • 0.00%
  • 0.00%
  • 2.73%
  • 0.00% *
   ......... .......... .....................+..................... ..........,..........,..........+
              *           *
    ! 131
  • 9.67E=08 2.46F.08 ** 1.32E.07
  • 1.71E.07
  • 2.90E.07
  • 5.62E.09
  • 0.00E*00
  • 0.00F+00
  • 0.61%
  • 0.07% 0.60%
  • 0.A74
  • 2.23%
  • S.94%
  • 0.00%
  • 0.00% *
   ...........................................................................+.....................+
  • CD 58 2.03E.04
  • 7.99E.07
  • 0.00E+00
  • 1.4SE.08
  • 0.00F+00
  • 0.00!+00
  • 8.72E.06
  • 0.00E+00 *
  • 0.13%
  • 2.20%
  • 0.00%
  • 0.06%
  • 0.004
  • 0.00%
  • 1.03%
  • 0.004 *
   ...............................o..........+..........+..........+.....................,..........,
              *           *
  • CD to
  • 1.98E 06 2.93E.09
  • 0.00E+00 1.44E.06
  • 0.00E*00
  • 0.00E+00
  • 7.6SE.04
  • 0.00E+0c **

12.574

  • 80.6t%
  • 0.00%
  • 5.70%
  • 0.00%
  • 0.00%
  • 99.78%
  • 0.00%
   ................................................................+.....................+..........,

um 54

  • 1.93E=07
  • 1.80E.06
  • 0.00E+00
  • 1.12E.06
  • 2.76E.07
  • 0.00E+00
  • 4.06E.05
  • 0.00E+00 *
  • t.22%
  • s.95%
  • 0.00%
  • 4.44%
  • 2.13%
  • 0.00%
  • 4.81%
  • 0.00% *
   .................... .....................+.....................+..........+..........+..........+

Em 69 *

  • 1.42K.07 ** 1.24E.07
  • 9. 4 2 E.0 f-. ** 2.92E=07
  • 1.92E.07
  • 0.00E+00
  • 2.51E=06
  • 0.00E+00
  • 0.90% 0.34%
  • 0.43% 1.154
  • 1.48%
  • 0.00%
  • 0.30%
  • 0.00% *
   .........+.~...................+..........+..........+..........+..........s..........+..........+
              *
     ! til      1.07E.to
  • 7.80E=ll
  • 4.18E.10
  • 5.42E to
  • 9.19E=10
  • 1.78E.07
  • 0.00E+00
  • 0.00E*00 *
  • 0.00g
  • 0.00%
  • 0.004 - 0.00%
  • 0.00%
  • 0.02%
  • 0.00%
  • 0.00% *
   .........e...,......+..........,................................s..........+..........+..........+
   +707ALs
  • 1.SOF.05
  • 3.64E.05
  • 2.19E.05
  • 2.53E.05
  • 1.30E.05
  • 9.47E.04
  • 8.43E.04
  • 0.00E+00 *
   ....................,..........+..........+....................+..........+......n...+..........e l

\ I C-47

                               -
                                                                                                                       .
                                                                                                                  .. _

_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

                                                                                                                                                                                                                              \

HA2LETON ENVIRONMf:NTAL SCIENCES l LO. COOPER NUCLEAR STAft0N I StCOND QUARTER 1980 I COMBtNED RELEASE NEPA ANNUAL INTEGRATED POPULATION DOSE

SUMMARY

(MAhREM) PATHWAY s VFCET NUCLtDr. T.300Y GI= TRACT BUNE LIVER KIONET THYROID LUNG SK!N

                       .....................................................+...........................................,

t 131

  • 2.44r.05
  • g.13E.nh
  • 3.50E.05
  • 4.31E.05
  • 7.27F. 05 a 1.40E=0? " 0.00E+00
  • 0.00E+00 *
  • 2.32%
  • 0.ast
  • 2.78%
  • 2.44%
  • 12.87%
  • 93.a5%
  • 0.00%
  • 0.00% *
                       . . . . . . . . . , . . . . . . . . . . + . . . . . . . . . . , . . . . . . . . . . , . . . . . . . . . . . . . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . , . . . . . . . . . . +

t 133

  • 1.20E.80
  • 2.6%F.10
  • 2.56E=10
  • 3.85E=10
  • 6.60E*10
  • 6.19E.08
  • 0.00E*00
  • 0.00E+00 *
  • 0.00%
  • n.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
                       ..................................................... .....................+..........+..........+

SR 89

  • 3.04r.08
  • t.05E=07 ** 1.07F.06
  • 0.00E+00
  • 0.00r+00
  • 0.00E*00
  • 0.00E+00
  • 0.00E 00 *
  • 0.00%
  • 0.00% 0.09%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
                       ...............................+..........,................................+..........+ .........+
  • Am 90
  • 4.98E=05
  • 4.75E.06
  • 2.0tE.04
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
                                                                                                                                                                                                 *
  • 4.73%
  • 0.28%
  • 15.90%
  • 0.00%
  • 0.00%
  • 0.00% 0.00%
  • 0.00% *
                       ............................... ...........................................+..........+..........,

C8134

  • 3.47r.04
  • 7.42E 06
  • 3.05F.04
  • 6.24E.04
  • t.90E.04
  • 0.00E+00
  • 6.90E=05
  • 0.00E+00 *
  • 32.95%
  • 0.46%
  • 24.16%
  • 38.26%
  • 35.15%
  • 0.00%
  • 43.03%
  • 0.00% *
                       ..........................................,.....................+..........+..........,...........

C8137

  • 3.31E.04
  • 1.07E.05
  • 6.65E=04
  • 7.8tE.04
  • 2.6tE.04
  • 0.00E+00
  • 9.14E.05
  • 0.00E+00 *
  • 31.43%
  • 0.63%
  • 52.76%
  • 47.954
  • 46.24%
  • 0.00%
  • 56.95%
  • 0.00% *
                       ..........................................,..........,..........+.....................+..........+

I SA140

  • 2.ftE.06
  • 5.00E.05
  • 4.52r.05
  • 4.87E=08
  • 1.63E=08
  • 0.00E+00
  • 2.90E 08
  • 0.00E+00 *
  • 0.27%
  • 3.40%
  • 3.59%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.02%
  • 0.00% *
                       .................... .....................,.....................+..........+.....................,
                                                                                                                                                                                                 *
                          ! 131
  • 1.5eE.no
  • 5.27E.07
  • 2.27E.96
  • 2.79E.n6
  • 4.7tt.06
  • 9.04E.04 0,0nE+00
  • 0.00E+no a
  • 0.15%
  • 0.03%
  • 0.19%
  • 0.17%
  • 0.83%
  • 6.00%
  • 0.00%
  • 0.00% *
                       ...............................,..........+..........+...........................................+                                                                                                      /

CO 58

  • 5.05E.06
  • 2.90E.05
  • u.00E+00
  • 2.00E.06
  • 0.00Een0
  • 0.00E 00
  • 0.00E+n0 a 0.00E 00 *
  • 0.40%
  • t.70%
  • 0.00%
  • 0.12%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
                       ....................,................................+..........,.......... .........,,...........

r0 60

  • 2.70E=04
  • 1.47E=03
  • 0.00E+00
  • 1.09E.04
  • 0.00E+00
  • 0.00E+00
  • 0.00F+00
  • 0.00F+00 *
  • 25.67%
  • 86.26%
  • 0.00%
  • 6.71%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
                        .......................................... ..........+...........................................,

um 54

  • 1.05E.05
  • 1.06E.04
  • 0.00E+00
  • 4.06E.05
  • 1.42E.05
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00 *
  • 1.00%
  • 6.22%
  • 0.00%
  • 2.90%
  • 2.51%
  • 0.00%
  • 0.0C%
  • 0.00% *
                        ....................,.....................,.....................,..........+..........,..........,

EN 65

  • 1.05E.05
  • 9.27F.04
  • 6.82E.06
  • 2.06F.05
  • 1.34E=05
  • 0.0nE+00
  • 0.00E+00
  • 0.00E+00 *
  • 1.00%
  • 0.54%
  • 0.54%
  • t.26%
  • 2.30%
  • 0.00%
  • 0.00%
  • 0.00% *
                        .........+................................+.....................,................................+

t 131

  • 1.75E.nO
  • 5.02E=09
  • 2.5tE=09
  • 3.0eE=08
  • 5.20E.00
  • 9.99d 06
  • 0.00E+00
  • 0.00E+00 *
                                                                                                                                                                                                 *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.07% 0.00%
  • 0.00% *
                        .........s.....................e..........+..........,..........+..........+..........e..........+

eT07AL8

  • 1.05E.03
  • 1.7tE=03
  • 1.16E.03
  • 1.63E.03
  • 5.65E.04
  • 1.49E=02
  • t.60E.04
  • 0.00E+0n *
                        .........+................................,................................+.........                                                                                                  4..........+

l f C-48 - _ _ - - _ _ - _ _ _ _ _

                                                                                                                                                                                                   -
            .                                         .
                                                                          . .                                .. .                .    .
                                                                                                                                              ..

HAZLSTON CNVIRONMENTAL CCl2NCE3

                .- -             r n FA 11 %                          g I                                     L COCPER NUCLEAR STAft0N 8 SECOMO QUARTER 1980                                                 COM8tNED RELEASE CEPA ANNUAL INTEGRATED PUPULATION DOSE SUMMART(MAMREM)

PATH 5AY s CQs MILN EUCLtDE T 90nY GI. TRACT $0NE LtVER KtDNET THYROID LUNG **tN

 ..........................................+................................+..........+...........
                  *
  • 1 131 5. tor.05
  • 1.59E.05
  • 7.52E.05
  • 9.02E.05
  • 1.52E.04
  • 2.92r.C2
  • 0.00E+00
  • 0.00E+00
  • 3.54%
  • 4.49%
  • 3.40%
  • 2.86%
  • 12.736
  • 93.34%
  • 0.004
  • 0.00% *
 ........................................................................... .....................,

I 133

  • 3.50E 07
  • 6.73F. 07 *.7,06E.07
  • 1.03E.06
  • 1.77E.06
  • 1.69E.04 *
  • 0.00E+00
  • 0.00E+00 *
  • 0.02%
  • 0.19%
  • 0.03%
  • 0.03%
  • 0.15%
  • 0.944 0.00%
  • 0.00% *
 ....................,.................................................................+..........,

82 89

  • 4.24E=09** 1.3tr.04
  • 1.48E.07
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E*00 *
  • 0.00% 0.n06
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • l .........+..................... .....................+..........,................................,

1 SR 90

  • 6.57E*06
  • 5.96E.07
  • 2.64E.05
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00.* 0.00E+00 *
  • 0.46%
  • 0.174
  • 1.19%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
 .........+.......... .....................,..........+..........+................................+

C8134

  • 6.54r.04
  • 1.50E.05
  • 6.50E.04
  • 1.30E=03
  • 4.ttE=04
  • 0.00E+00
  • 1.44F.04
  • 0.00r.+00 ?
  • 45.344
  • 4.26%
  • 29.374
  • 41.164
  • 34.464
  • 0.00%
  • 43.16%
  • 0.00% *
 ....................,..........+..........+..........+..........+..........+..........+...........

cst 37

  • 6.13E.04
  • 2.05E.05
  • 1.stE.03
  • 1.6tF.03
  • 5.37E.04
  • 0.00E+00
  • 1.90E.04
  • 0.00E+00 *
  • 42.546
  • 5.92%
  • 63.71%
  • 51.17%
  • 45.09%
  • 0.00%
  • 56.84%
  • 0.00% *
 .........+..........,..........+..........,..........+..........,.................................

B1140

  • 2.A2F=47
  • 5.32E.06
  • 4.59E.06
  • 4.etE.09
  • t.60F=09
  • 0.00E+0n
  • 2.ent.09
  • 0.00E+00 *
  • 0.026
  • 1.51%
  • 0.21%
  • 0.004
  • 0.00%
  • 0.006
  • 0.00%
  • 0.00% *
 .........+..........+.....,....+..........+.......... ..........,..........+.....................,

I 134

  • 3.30E.06
  • 1.02E 06
  • 4.8eE.06
  • 5.84F.06
  • 9.e3E.06
  • 1.89E.03
  • 0.00E+00
  • 0.00E+00 *
  • 0.234
  • 0.29%
  • 0.224
  • 0.19%
  • 0.834
  • 6.05%
  • 0.00%
  • 0.00% *
 .........+......................................................+................................+

CD Se a s.50E.07 - 4.36E.06

  • 0.00E+00
  • 3.29E 07
  • 0.00E+00
  • 0.00E+0n
  • 0.00E+00
  • 0.00E+00
  • l
  • 0.064
  • 1.25%
  • 0.00%
  • 0.01%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00% *
 .........,..........+..........,..................... .....................+..........+..........,

CO to

  • 4,75E.05
  • 2.33E.04 *
  • 0.00E+00
  • 1.8AE=05
  • 0.00E+00
  • 0.00E*00
  • 0.00E+00
  • 0.n0E 00 *
  • 3.30%
  • 66.394 0.00%
  • 0.60%
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • e........s.....................+..........+.... .....+..........+.....................+...........
   #2 54
  • 4.55E 07
  • 4.tlE.06
  • 0.00E+00
  • 2.05E.06
  • 5.95E.07
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00 *
  • 0.03%
  • 1.17%
  • 0.00%
  • 0.07%
  • 0.05%
  • 0.00%
  • 0.00%
  • 0.00% *
 ...............................+.....................+...........................................,

E2 65

  • e.43E.05
  • 5. net.05
  • 4.12E.05
  • t.23E=04
  • 7.97E=05
  • 0.00E+0a
  • 0.00E+00
  • 0.00E+00 *
  • 4.46%
  • 14.45%
  • 1.46% * ).904
  • 6.69%
  • 0.00%
  • 0.00%
  • 0.00% *
 . . . . . . . . . + . . . . . . . . . . + . . . . . . . . . . . . . . . . . . . . . , . . . . . . . . . . + . . . . . . . . . . , . . . . . . . . . . . . . . . . . . . . . , . . . . . . . . . . .
  • 1 131
  • 3.65E-na
  • 1.13E.08
  • 5.3nE os 6.45E.08
  • t.09r.07
  • 2.09E.05
  • 0.00E+no
  • 0.00E+00 *
  • 0.00%
  • 0 n04
  • 0.00%
  • 0.00% 0.00%
  • 0.074
  • 0.00%
  • 0.004 *
 .........+........................................................................................
  • TOTAL *
  • 1.44E.03
  • 3.StE.04
  • 2.2tt 03
  • 3.tSt.03
  • 1.19r.03
  • 3.12E.02
  • 3.34E.04
  • 0.00E+00 *
  .........+..........+.....................+...........................................,..........+

k !

                                                                                                                  ,

d C-49

                                                                                     . .
                                                                                                  . . - .. .           -
                                                                                                                                                                                         .. ..

_ _ _ _ . _

1 HAZl.GTON CNVIRONMENTAL CCIENC25 COOPER NUCLEAR STAT 10h a 3rCOND OUARTER 1980 s COMBINED RELEASE NEpa ANNUAL INTEGRATED POPULAT10N DOSE SU4MARf(MANREm) PATHeaf a NEAT NUCLIDE T. BODY Ct.TPACT BONE LIVER RtDNEY THYRotD LUNG SFIN .................... ..........+..........+..........+..........,.......... ..........+..........+

  • 1 131
  • 4.04ran*
  • 1.58E.06
  • 5.4tr.04
  • 7.11E.06 ** t.21r.05
  • 2.3tE.03
  • 0.00F+00
  • 0.00E+00 0.00%
  • 0.00% *
  • 0.50%
  • 0.n64
  • 1.18%
  • 0.81% 4.50%
  • 93.85% *

.........+..........+..........+.....................+.....................+..........+........... I 133

  • 2.8tE=t3 ** 6.87E.13 ** 5.47E.13 ** 8.77E.13 ** 1.52E=12
  • 1.35E.10
  • 0.00E+00
  • 0.00E*00 *
  • 0.006 0.004 0.00% 0.004 0.00%
  • 0.004
  • 0.00%
  • 0.00% *

.........+..........+..........+.....................+...........................................+

  .9 R 84
  • 1.49E.09
  • 6.45F=09
  • 5.22E=08
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00 *
  • 0.00%
  • 0.00%
  • 0.01%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.006
  • 0.00% *

..........................................+..................... ..........+..........,..........+

  • 3R 90
  • 3.43E.06
  • 3.64E.07
  • 1.39E.05
  • 0.00E+00 0.00F+00
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00 *
  • 0.42%
  • 0.01%
  • 3.04%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *

....................+..........+..........+..........+..........,..........+..........+..........+ C3134

  • t.92E.n4
  • 4.23r.06
  • 1.30E.04
  • 2.85K.04
  • 9.13t=o5
  • 0.00E+00
  • 3.12E.05
  • 0.00E+00 *
  • 23.754
  • 0,154
  • 28.41%
  • 32.52%
  • 34.584
  • 0.00%
  • 43.554
  • 0.00% *

.........+..........+..........+..........+..........+..........+..........+..........+..........+ cst 17

  • 1.83E.n4
  • 9.60F.06 ** 2.78E.04
  • 3.50E.04
  • 1.38E no
  • 0.OnE*00
  • 4.04E.n5
  • 0.00E+00 **
  • 22.75g
  • n.7tt 60.91%
  • 39.93n
  • 44.606
  • 0.004
  • 56.44%
  • 0.00%

....................+..........+..........+....................+..........+.....................+ Patto

  • 5.8!E.07
  • 1.47E.05
  • 9.14E.06
  • 1.05E.08
  • 3.55E.09
  • 0.00E+00
  • 6,19E=09
  • 0.00E+00
  • f
  • 0.07%
  • 0.54%
  • 2.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% * )
                                                                                                                                                                                                            '

.........+..........+....................+.........+..........+..........+..........+..........+ I 131

  • 2.62E=07
  • 1.02E.07
  • 3.50E.07
  • 4.6tE.07
  • 7.83E 07
  • 1.50E.04
  • 0.00E+00
  • 0.00E+00 * '
  • 0.03%
  • 0.00%
  • 0.006
  • 0.05%
  • 0.30%
  • 6.00%
  • 0.00%
  • 0.00% *
.........+..........+..........+..........,.....................+....................+...........
  • CO 58
  • 9.95r.nn a 4.27E.ns a n.0nE*00
  • 2.49E.06
  • n,nnr no
  • 0.00E+0n
  • 0,00E+oO
  • 0.00E 00 j
  • 0.74%
  • 1.56%
  • 0.00%
  • 0.284
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% * '
.  ........+..... ..........................+..................... ..........+.....................+*                                                                                                        l CO to
  • 3.86E.04
  • 2.42E 03 ** 0.00E+00
  • 1.65E.04
  • 0.00r+00 - 0.00E+00
  • 0.00E+00
  • 0.00E+00
  • 47.914
  • 95.85% 0.00%
  • 18,844
  • 0.00%
  • 0.00% 0.00%
  • 0.00% *
...................+..........+..........+.....................,....................,..........+
  • kN 54
  • 8.38E=na
  • 1.11E.05
  • 0.00E+00
  • 4.34E.06
  • 1.28E.06
  • 0.00E+00
  • 0.00E+00
  • 0.00E+04
  • 0.11%
  • 0.41%
  • 0.00%
  • 0.50%
  • 0.48%
  • 0.00%
  • 0.00%
  • 0.00% *
 ..........+................................+.....................+..........+..........+..........+

Zh 45

  • 2.99E.05
  • 3.30E.05
  • 1.99E.05
  • 6.19E.05
  • 4.08E.05
  • 0.00E+00
  • 0.00E+00
  • 0.00E+00 *
  • 3.70%
  • 1.20%
  • 4.37%
  • 7.n7%
  • 15.45% * * . 00%
  • 0.00%
  • 0.00% *
..........+......... .+..........+..........+.....................,..........+..........+...........

I 131

  • 2.89r.0? ** 1.13E.09
  • 3.87E.09
  • 5.09E.09
  • 8.65E.09
  • 1.65E.06
  • 0.00E+00
  • 0.00E+00 *
  • 0.00% 0.00%
  • 0.004
  • 0.00%
  • 0.00%
  • 0.07%
  • 0.00%
  • 0.00% *
.... ...............+..........+..........+..........+..........,..........+.......... ..........+

eTOTALS

  • 8.06E.04
  • 2.74E=0)
  • 4.57F.C4
  • 8.76E.04
  • 2.64E.04
  • 2.46E=01
  • 7.16E.05
  • 0.00E+00 *
.......... .......... .....................+.......... ..........+..........+..........+..........+

C-50

             .
                           .
                                                                   - _ _ - _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ - _

E HAZl.ETON ENVI AONMENTAL SCIENCES COOPE2 NUCLEAR STATION I SECOND QUARTEP 1980 : COMBINED RELEASE KLFA AhMUAL INTEGRATED POPULAft0N DOSE SUMMART(NANRE83 PATHWAY e eTOTAL* EUCLIDE T.800T G1=TPACT BONE LIVER KIDNEY THYROID LUNG SKIN

   .................... ..................... .....................+..........,..........,..........,

80 85

  • 4.83E.05
  • 4.str.05
  • 4.03E.05
  • 4.83E=05
  • 4.83E.05
  • 4.83F.05 ** 1.5tE=04
  • 8.10F.03 *
  • 0.04%
  • 0.04%
  • 0.04%
  • 0.04%
  • 0.04%
  • 0.03% 0.13%
  • 2.56% *

\ .........+...........................................+.....................+............ ........e ! En e52

  • 2.20r.?)
  • 2.20P. 03
  • 2.20F.03
  • 2.20F*03
  • 2.20F.03
  • 2.20E.03
  • 2.27E=03
  • 8.04E=03
  • l
  • 8.71%
  • t.754
  • 1.76%
  • t.74%
  • 1.79%
  • 1.294
  • 3.81%
  • 2.54% *
   .................... ...........................................,.................................

l

  • l R2 Of 5.8 0 F.0 3
  • 5. 8 8 E.0 9
  • 5. 4 8 F.0 3** 5. 8 0 E.0 3
  • 5. 8 0 F. 0 3
  • 5. 8 8 E.0 3
  • 6.0 0 F.0 3
  • 2.6 t E=02 *

!

  • 4.75%
  • 4.69%
  • 4.73% 4.664
  • 4.804
  • 3.46%
  • 4.85%
  • 8.25% *
   ..................................................................................................

l

  • 4.99E.02
  • 4.99E.02
  • 4.99E.02
  • 4.99E.02
  • 4,99E.02
  • 4.99E.02
  • 5.01E.02
  • 7.34E 02
  • t s2 82
  • 40.32%
  • 39.83%
  • 40.11%
  • 39.56%
  • 40.74%
  • 29.36%
  • 39.984
  • 23.18% *
   ..........................................,......................................................+

l IE131

  • 2.95E.n2
  • 2.95K=n2*
  • 2.95E.n2
  • 2.95r.02 a 2.95E.02
  • 2.99E.02 ** 3.16E=n2
  • 1.01E 01 *
  • 23.85%
  • 23.57% 23.73%
  • 23.41%
  • 24.10%
  • 17.374 25.224
  • 31.85% *
   ..........................................,.......... ............................................

IE135

  • 2.76E.02
  • 2.76E.02 ** 2.76E.02
  • 2.76E.02
  • 2.76E.02
  • 2.76E.02 **2.83E=02
  • e.92E.02 *
  • 22.29%
  • 22.02% 22.184
  • 21,87%
  • 22.52%
  • 16.234 22.604
  • 28.10%
  • j .....................................................+...........................................,
  • f IEt35M
  • 7.52F=05*
  • 7.52E.05
  • 7.52F=05
  • 7.52E.05
  • 7.52R.05 ** 7.52E.05
  • 7.57E 05
  • 1.24E.04 *
  • 0.06% 0.06%
  • 0.064
  • 0.064
  • 0.06% 0.04%
  • 0.06%
  • 0.04%
   .........+..........,..........+..........,.....................,.....................+..........,

IFt38

  • 9.36E.04
  • 9.36E.04
  • 9.36E.04
  • 9.36E.04
  • 9.36E.04
  • 9.36E.04
  • 9.46E 04
  • 1.96F.03
  • h
  • 0.76%
  • 0.75%
  • 0.75%
  • 0.74%
  • 0.764
  • 0.55%
  • 0.75%
  • 0.A2% *

[ ...............................,................................ ................................. 52 09

  • 3.09F.07 ** 3.09E=07
  • 3.09E.07
  • 3.09E.07
  • 3.09F.07
  • 3.09E=07
  • 3.13E.07
  • 7.33E 07 *
  • 0.0.4 0.004
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00% *
   ....................,...........................................,..........+.....................,

an 83n

  • 2.52E=00
  • 2.52E.08 ** 2.52E.08
  • 2.52E.08
  • 2.52E.08
  • 2.52F.08
  • 1.97E.06
  • 7.15r.06 *
  • 0.00%
  • 0.00% 0.00%
  • 0.00%
  • 0.60%
  • 0.00%
  • 0.00t a 0.00% *
   .....................................................,.....................,......................

net 37

  • t.44F.07
  • t.44E=07
  • 1.44E.07
  • 1.44E.07
  • 1.44E.07
  • 1.44E=07
  • 1.69E.07
  • 2.65E=06 *
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00% *
   ..........................................,..........,.....................,.....................+

IFl3)2 *

                  ).90E.04    *
  • 3.98E=04
  • 3.98E.04
  • 3.90E.04
  • 3.90E.04 ** 3.98E.04
  • 4.44E.04
  • 3.72E 03 *
  • 0.329 0.32%
  • 0.32%
  • 0.32%
  • 0.12% 0.23%
  • 0.35% a 1.18% *
   ............................... .....................+..........+..........+.....................,
                *
  • IE1312 3.9tF=05
  • 3.9tE.05
  • 3.9tE=05
  • 3.9tt.05
  • 3.9tF.05
  • 3.9tE 05
  • 4.057 05
  • 4.8tE.04
  • 0.03%
  • 0.03%
  • 0.03%
  • 0.03%
  • 0.03%
  • 0.02%
  • 0.04%
  • 0.15% *
    .......................................... ...........................................+..........,

i 131

  • 8.13E.05
  • 2.A4F 0%
  • 1.10E=04
  • 1.43E.04
  • 2.4tE*04
  • 4.61F=02
  • 6.57E.07
  • 7.97E.07 *
  • 0.07%
  • 0.024
  • 0.094
  • 0.11%
  • 0.20%
  • 27.14%
  • 0.00%
  • 0.004 *
    .......................................... .....................,..........+..........+..........,

1 133

  • 9.7AF 07
  • 1.52E.04
  • 1.70K.06
  • 2.44E.04
  • 4.01F.06
  • 3.47E.04
  • 2.57F=07
  • 3.13F.07 *
  • 0.004
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.00%
  • 0.20%
  • 0.00%
  • 0.004 *
    ..........................................+.....................,..........+......................

S2 29

  • 3.65E=0s*
  • t.28F=07
  • t.27E=06
  • 2.99K-13
  • 2.93E.13 ** 2.93E.13 ** 1.62E 08
  • 3.40r.13 *
  • 0.00% 0.00%
  • 0.00%
  • 0.00%
  • 0.00% 0.004 0.00%
  • 0.00% *
    ....................,..................... ..........+..........,..........,..........+..........,
  • 82 90
  • 6.0tF.05
  • 5.75E 06
  • 2.47E.04
  • 0.00E,00
  • 0.00E,00
  • 0.00E,00
  • 6.45E.07
  • 0.00E,00
  • 0.05%
  • 0.00%
  • 0.20%
  • 0.00%
  • 0.00%
  • 0.004
  • 0.00%
  • 0.00% *
    ..................................................................................................

E8134

  • 1.29E.03
  • 1.21F.04
  • 1.10E 03
  • 2.31E.03
  • 7.97E.04
  • 9.39E.05 ** 3.19E.04
  • 1.10E.04 a*
  • 1.04%
  • 0.10%
  • 0.95%
  • 1.83%
  • 0.654
  • 0.09% 0.27%
  • 0.03%
    ..........................................,.......................................................

4 I l C-51 m

_ _ _ _ _ HAZL/3 TON CNVIRONMENTAL CCIENCES

                                                                                                                                    ,

CUDPER WUCLEAR STATION SECOND QUARTER 1980 t CON 81NED RELEASE ) NLPA ANNUAL INTEGRATED POPULAT!QN DOSE

SUMMARY

(MANREM) PATHuAT s

  • TOTAL * (CONTINUED)
                                                                                                                                  #l K10 NET      TNTROID        LUNG                    SktN NUCLICE      T.P00T        Ct. TRACT       B0NE      LIVER
                                                                           .. .................................                *

............................... .............................. cal 37

  • l.14E=0)
  • 2.46F.04
  • 2.57E=03
  • 2.96E.03
  • 1.13E.03
  • 2.09E.04 ** 5.32E=04
  • 2.44E.04 0.42%
  • 0. net *
         *
1. net
  • 0.20%
  • 2.07%
  • 2.356
  • 0.926
  • 0.124

.........s..........+..........s....................+...........

  • 4.23K.06
  • 8.17E.og
  • 6.02E.05
  • 5.7eE.07
  • 9.35E.07 - 5.13E.07 i.....................+..........+a
  • 2.35E.05
  • 5.sAE.n?

8A140 0.00%

  • 0.00%
  • 0.004
  • 0.02%
  • 0.004
  • 0.05% *

............................... ................................,..........,......................

  • 0.00%
  • 0.074
  • I 131
  • 5.29E-06
  • 1.72E 06
  • 7.67E.D6
  • 9.3tE=06
  • 1.57E=05
  • 3.00E=0) 1.774 *
  • 4.3tt.08 0.00% ** 5.23E.04 0.00% **

0.00%

  • 0.0tt *

................................................................,.....................+...........

  • 0.004
  • 0.00%
  • 0.004
  • CD 59
  • t.64r=05
  • 8.14E.05
  • 4.54K.06
  • 9.37E.06 0.004 *
  • 4.54E.06 0.00% *
  • 4.54E.06 0.004 *
  • t.33E.05 0.014 ** 5.3tE.06 0.00% **
  • 0.08%
  • 0.06%
  • 0.00% *

.........s.......... ..........,..........+..........+..........+..........s...................... CO 60

  • 4.2tE=03
  • 7.9AE.03 ** 3.50E.03
  • 3.80K=03
  • 3.50E.03
  • 3.50K.03 3.01%
  • 2.064
  • 2.06% ** 4.27E.03 3.404 ** 4.12E=03 1.30% **

6.276 2.52% * ....................,.....................+...........................................,..........,

          *
  • 3.404 mN 54
  • 6.37E.05
  • 1.75E=04*
  • 5.16E.05
  • 1.00E=04
  • 6.79E=05 0.064 *
  • 5.16E.05 0.034 *
  • 9.2tE.05 0.07% ** 6.05E.05 0.024 *
  • 0.05%
  • 0.146 0.044
  • 0.094 * .....................+

.........e..........s..........+.....................+..........,......,... l 2N 65

  • 1.00E.04
  • 9.59E.05
  • 7.00E=05 - 2.00E=04
  • 1.37E.01
  • 2.77E 0.114
  • 06**

0.004 5.27E.06

                                                                                                 '.= . 0 0 % *
  • 3.11E.06 6.004 **
  • 0.09%
  • 0.00%
  • 0.06%
  • 0.174 * ,

.......................................... ..........+.......................... .....to..........+

                                                                                                                                     >

1 til

  • 5.76K.09
  • 1.8AE.08
  • 9.36E.08
  • 1. ole.07
  • 1.7tE=07
  • 3.27E=050.02% *
  • 4.54E 0.00% ** 5.5IE.10 0.00% **

0.0Cl

  • 0.00%
  • 0.004
  • 0.00% *
....................,.................................................................,...........
  • 0.004. *
  • 1.25E.01
  • 3.t?E.01
  • 3,24E.01
  • 1.25E.01
  • 1.24E.01
  • 1,26E.01
  • 1.23E.01
  • l.70E.01
.........,..........+..........,...........................................,.....................,

efoTate a

               .

C-52

_____________.. .. .. . . . . _ _ . _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _____ _ _ _ _ _ _ _ _ _ _ _ _

                               .

C00PEh NUCLEAR STAflON CONSINED RELEASE e FIRST QUARTER 1980 INDlWIOUAL AmbuAL CANNA AIR DOSE (NILLIDADS) OISTANCE IN NILES SEC7CR 0.250 0.500 0.750 1.000 1.500 2.000 2.500 3.000 3.500 4.000 4.500

                            $           5.59t+00     2.87E+00    1.04E+00   5.06E=0!  1.08E=01    9.23E=02                5.73E=02   3.54t=02       2.56E=02                           1.84E=02           1.47E=02
                   - Sau                3.21E+00     1.13E+00    6.24E=01   2.90E=01  1.05E=01    5.50E=02                3.19E=02   2.00E=02       I.50E=02                           1.06F.=02          8.47E=03 SW           l.97E*00     8.04E=01    4.04E=01   1.80K=01  6.93E=02    3.65E=02                2.23E=02   1. 4 2 F.= 0 2 9.4BF=03                           7.22F=03           5.54E=03 mSw           2.laE*00     6.8IE=08    3.5tE=01   1.72E=01  6.6tE=02    3.27E=02                1.95E=02   1.24E=02       8.77E=03                           n.62E=0)           5.24E=03 m           3.588+00     5.56E=01    3.00E=01   1.45Ea01  4.94t=02    2.56E=02                1.64E=02   1.03E=02       7.09E=03                           5.19E=0)           4.27E=03 WNw           l.42E+00     1.19F+00    5.94E=01   3.14E=01  1.llE=0I    5.53E=02                3.33E=02   2.52E=02       1.68E=02                           l.20E=02           9.18E*03 I NN           4.56F+00     1.8BE+00    1.00E+00   5.20E=01  2.12E=01    1.10E=01                6.34E=02   4.47E=02       3.11E=02                           2.39E=02           8.80E=02 >

Num 4.33E+00 1.95E+00 1.16E+00 6.07E=01 2.??E=0! 1.4tE=01 0.23E=02 5.66E=02 3.92E=02 2.98F=02 2.36E=02 N h 4.DAE+00 2.29E+00 1.24E+00 6.34E=0! 2.52E=01 1.24E=01 7.5tE=02 4.95E=02 3.64E=02 2.78E=02 2.12E=02 I NNF 2.A4E+00 1.08E+00 6.26E=C. 3.01E=01 1.86E=01 5.18E=02 3.8BE=02 2.39E=02 8.8tE=02 1.32E=02 3.0lE=02 E NE 2.22E+00 9.90E=01 5.16E=01 2.39E=01 9.99E=02 5.22E=02 3.otE=02 2.29E=02 1.46E=02 1.33E=02 8.77E=03 d ENE' 3.86E+00 7.00E=01 3.56E=0! 1.6tE=01 6.62E=02 1.38E=02 2.20E=02 1.37E=02 9.88E=0) 7.46E=03 5.77E=03 0 E 1.00E+00 7.04E=0! 3.43E=01 1.54E=0! 6.19E=02 3.52E=02 2.17E=02 1.42E=02 9.8tE=03 7.20E=0) 5.63F=03 2 E8E 2.44F+00 1.06E+00 5.93E=01 3.01E=01 1.13E=01 5.59E=02 3.73E=02 2.26E=02 1.55E=02 1.25E=02 9.64E=03 m SE 3.36F+00 1.23E+00 6.70E=0! 3.26E=01 1.23E=01 6.30E=02 3.54E=02 2.46E=02 1.69E=02 1.20r=02 3.01E=02 g SSE 5.54E+00 2.23E+00 1.09E*00 5.02E=01 2.39E=01 9.06E=C2 5.9tE=02 3.87E=02 2.94E=02 2.13E=02 l.62E=02 g D r, O INDIVIDUAL ANNUAL CANNA Alp DOSE (NILLIRADS) Z n La DISTANCE IN MILES y 20.000 25.000 30.000 35.000 40.000 45.000 50.000 A SEARING 5.000 1.500 10.000 15.000 m 5 1.14t=02 4.83E=03 2.53E=03 1.02E=03 5.22E=04 3.03E=04 1.92E=04 1.29E=04 9.12E=05 6.74t=05 5.03E=05 2 SSN 6.75E=03 2.72E=0) 1.47E=0) 6.27K=04 3.10E=04 1.74K=04 1.09E=04 1.4bE=05 5.10E=05 3.71E=05 2.80E=05 d Sw 4.40E=0) I.84E=03 1.01E=03 3.95E=04 1.97E=04 1.13E=04 6.94E=05 4.442-05 3.23E=05 2.19E=05 1.67E=05 D WSW 4.07E=0) 1.70E=03 9.19E=04 3.78E=04 8.94K-04 1.09E=04 6.70E=05 4.58t=05 3.16E=05 2.25E=05 1.70E=05 I k 3.30F=03 1.37E=03 7.29E=04 3.13E=04 1.59E=04 9.00E=05 5.97E=05 3.85E=05 2.72E=05 1.94E=05 1.49E=G5 W WNw 7.43F=03 3.33E=03 8.74E=03 8.10E=O4 4.35E=04 2.64E=04 1.72E=04 1.tBE=04 8.48E=05 6.llE=05 4.58E=05 O NW l.43E=02 6.27E=03 1.37F=03 8.46E=03 7.45E=04 4.26E=04 2.76E=04 1.90E=04 1.37E=04 1.00E=04 7.95E=05 g hMW 1.82E=02 8.36E=03 4.35F=03 1.83E=03 9.23F=04 5.59E=04 3.51E=04 2.46E=04 1.78E=04 1.31E=04 1.04E=04 N 1.n2E*02 7.23E=03 4.08E=03 1.10E=0) 8.79E=04 5.18E=04 3.26E=04 2.35E=04 1.67E=04 1.24E=04 9.40E=05 Z NNE 7.99E=03 3.35E=0) 1.88E=03 8.02E=04 4.01E=04 2.42K=04 1.53E=04 1.03E=04 1.29E=05 5.26E=05 4.03F=05 O NE 6.95E=03 3.04r=03 1.72E=03 7.38E=04 3.94E=04 2.36E=04 1.55E=04 1.06E=04 7.20E=05 5.48E=05 4.16E=05 E ENE 4.6tE=0D I.96E=03 1.07F=0) 4.7BE=04 2. *.1E=0 4 1.46E=04 9.0tF=05 6.34E=05 4.30E=05 3.15E=05 2.45F=05 E E 4.64E=03 2.0lE=0) 1.16t=0) 5.00E=04 2.5dE=04 1.49E=04 9.52E=05 6.00E=05 4.62E=05 3.30E=05 2.59E=05 ESE 7.57E=03 3.22E=03 1.80E=03 7.60E=04 3.83E=04 2.25E=04 1.42E=04 9.56E=05 6.73E=05 4.00E=05 3.A4E=05 SE 8.02E=0) 3.38E=03 1.00E=0) 0.06E=04 4.19E=04 2.47E=04 1.56E=04 1.11E=04 7.73E=05 5. 8 4 F.=0 5 4.32E=05 SSE 1.25E=02 5.4tE=03 2.96E=03 1.2tF=03 6.38E=04 3.64E=04 2.36E=04 1.59E=04 l.llE=04 8.15E=05 6al2E=05 t _ _ _ _ _ _ _ _

_ _ _ _ _ _ _ _ _ , _ , _ _ COOPER NUCLEAR 37Afl0N e ConstNED RELEASE 8 SECOND QUARTER 1980 INDIVIDUAL ANNUAL C4pMA AIR DOSE (MtLLtRAOSt DISTANCE IN NtLES SECTOR 0.250 0.500 0.750 1.000 1.500 2.000 2.570 3.000 3.500 4.000 4.500 5 2.16E+00 8.53E-01 4.19F=01 2.19E=01 7.85E=02 4.00E=02 2.52E-02 1.66E=02 1.19E=02 8.77E-03 6.94E=03 8SW 1.54E+00 5.42E=01 2.95E=01 1.3!E=01 4.97E=02 2.82E=02 1.42E=02 !.01E=02 6.97r.=03 5.39E=03 4.08E=0) Sm 1.6aE+00 5.76E=01 2,64F=01 1.35E=01 5.06E-02 2.53E=02 1.46E=02 1.05E=02 7.25E=03 5.64E-03 4.15E=0) WSW t.57E+00 4.9?E=01 2.90E=01 1.45E=01 5.21E=02 2.39E*02 1.9tE=02 1.09E=02 7.78E=03 5.86E=03 4.64E=03 W 1.57E*00 4.91 =01 2.4tE=01 1.38E=01 4.58K=02 2.46E=02 1.43E=02 1.23E=02 7.37E=03 5.4SE=03 4.19E=03 huu 2.73E+00 8.95E=0! 4.53E=01 2.49E=21 0.57E=02 4.24E=02 2.73E=02 1.79E-02 1.28E=02 9.10E=03 7.69E=0) I Nw 2,4EE*00 8.7tE=01 4.16E=01 2.27E=01 8.27E=02 4.2tE=02 2.5tE=02 3.65E=02 1.49E=02 9.25E=0) 7.26E=03 > NNu 2.62E+00 9.25E=01 5.10E=01 2.78E=01 1.04E=01 5.46E=02 3.47E=02 2.13E=02 1.69E=02 1.26E=02 9.94E=03 N 5.08E=0i 2.39E=01 9.23E=02 4.62E=02 3.28E=02 1.84E=02 1.37E=02 1.06E=02 0.27K-03 I N 2.37E+00 8.77E=03 M NME 3.92F+00 6.3tE=03 1.4tE=01 1.7tE=01 6.18E=02 3.64E=02 1.93r-02 1.26E=O2 9.98E=03 7.84E=03 6.04[=03 6.79t=0) 4.95E=03 3.90E=03 "4 1.29E+00 1.93E=01 2.33E-01 1.08E=01 4.30E=02 2.tSE=02 1.28E=02 9.35E=03 NE 7.84E=02 2.69E=02 1.60E=02 8.6tE=03 5.79E=03 4.itE=03 3.23E-03 2.5tE=03 O ENE 8.26E=01 2.93E=01 1.56E=01 2 E 8.09E=01 2.82E=01 1.54E=01 7.35E-02 3.17E=02 1.39E=02 9.36E=03 6.36E=03 4.62E-03 3.65E=03 2.64E=03 ESE 1.90E+00 5.84E=01 3.14E=01 1.34E=01 5.76E=02 3.12E=02 1.85t=02 1.20E=02 9.07E=03 7.50E=03 5.52E=03 g SE 1.6*E+00 5.25E=03 2.74E=01 1.30E=01 4.89E=02 _2.86E=02 1.46E=02 1.08E=02 7.64E=03 5.79r.=03 4.5IE=03 2 SSE 2.llE+00 7.22E-01 3.20E=01 1.55E=01 6.40E=02 3.36E=O2 1.99E=02 1.3tE=02 9.80E=03 7.55E=03 5.94E=03

                                                                                                                                                                       -

D $ INDIVIDUAL ANNUAL CANNA AIR DOSE (MtLLtRADS) on DISTANCE IN NtLES y 25.000 30.000 35.000 40.000 45.000 50.000 h

    • #E4ptNC 5.000 7.500 10.000 15.000 20.000 m a 5.55E-03 2.48E=03 1.29E-03 5.92E=04 3.itE=04 t.83E=04 1.20E-04 7.83E=05 5.87r=05 4. tee =05 3. TOE =05 2 SSW 3.34E=03 1.44E=03 8.37E=04 3.62E=04 1.89E=04 1.14E=04 6.95E=05 4.43E=05 3.34E=05 2.33E=05 1.79E=05 =4 2.00E=04 1.24E=04 7.55E=05 5.4tE=05 3.65F=05 2.55E=05 1.96E=05 >

SW 3.35F=0) 1.5tE-03 8.tSE=04 3.80E*04 2.25E-05 I WSt 3.84E=03 1.65E-03 9.94E=04 4.28E=04 2.30E=04 1.39E-04 8.5tE-05 5.97E=05 4.23E=05 3.ttE=05 h 3.49E-03 1.46E=03 8.79E=04 4.13E=04 2.26E=04 1.39E=04 8.59t=05 6.16E=05 4.16E=05 3.09E=05 2.40E=05 g kNW 6.10E=0) 2.70E=03 1.59E=0) 7.63E=04 4.13E=04 2.49E=04 1.63E=04 1.13E-04 7.91F=05 6.03E=05 4.34E=05 O

                                                                                                                                                                       -

Nw 5.93E-03 2.70E-03 1.65E=03 7.49E=04 1.99E=04 2.53E=04 1.65E=04 1.17E=04 8.45E=05 6.29E=05 4.59E=05 E 0.00E=03 3.47E=03 2.03E=03 8.95E=04 4.78E=04 2.84E-04 1.8tE=04 1.23E=04 8.18E=05 6.4tE=05 4.96E=05 NN> 3.04E=03 1.7tE=03 7.68E=04 4.15E=04 2.56E=04 1.67E=04 1.16E=04 8.40E=05 6.03E=05 4.70E=05 2 N 6.64E=03 O 4.83E-03 2.29E=03 1.47E=03 6.89E=04 4.ttE-04 2.68E=04 1.19E=04 1.3tE=04 9.96E.=05 7.42E=05 5.99E=05 i NME 8.79E-05 5.80E=05 4.20E=05 2.97t=05 2.29E=05 E I NE 3.15E=03 1.48E=03 A.14E-04 3.84E=04 2.08E-04 1.34E=04 E ENE 1.99E=03 9.19E=04 5.24E=04 2.40E=04 1.40E=04 8.27E=05 5.70E=05 4.24E=05 2.97E=05 2.17E=05 1.67E=05 E 2.26E=0) 9.95E=04 5.8lE=04 2.74E=04 1.60E=04 9.58E=05 6.56E=05 4.40E=05 3.19E=05 2.47E=05 1.90E=05  ; ESE 4.40E=03 2.00E=03 1.22E=0) 5.44E=04 3.10E=04 1.88E=04 1.22E=04 4.80E=05 6.37E=05 4.56E=05 3.53E=05 i SE 3.59E=03 1.85E-03 1.06E=03 4.90E=04 2.82E-04 1.70E=04 1.14E=04 8.01E=05 5.96E=05 4.27E-05 3.37E=05 i SSE 4.69E=03 2.24E-03 1.15E=03 5.82E=04 3.2SE=04 2.05E=04 1.30E=04 8.98E-05 6.49E=05 4.89E=05 3.59E=05 f I _ - __ - - _ - __ __ .____ __

_ __ _ _ _ _ _ . . _ _ _ _ _ _ _ - - - - - - ----- - - - - - - - - - - - - - - --- - COOPER NUCLEAR STATION 1 COMBINED RELEASE I FIRST SEMI-ANNUAL PERIOD 1980 14D1V10UAL ANNUAL CAM 4A AIR DOSE IMILLIRADSI DISTANCE IN MILES SECTOR 0.250 0.500 0.750 1.000 1.500 2.000 2.500 3.000 3.500 4.000 4.500 8 7.76E+00 3.02E+00 1.46E+00 7.25t=01 2.67E=01 1.32E=01 8.23E-02 5.20E-02 3.75E-02 2.72E-02 2.17E*02 SSW 4.77E*00 1.67t+00 9.19E-OS 4.2EE=01 1.55E=01 0.32E=02 4.6tE=02 3.0tE=02 2.20E=02 1.60E-02 1.2SE*02 Se 3.65E*00 1.3aE*00 6.6eE-01 3.85E=01 1.20E-01 6.18E=02 3.69E=02 2.47E=02 1.67E*02 1.29E=02 uSu 3.73F*00 1.10E*00 9.69E=03 6.01E-01 3.16E=01 1.lOE-01 5.67E=02 3.06E=02 2.33E=02 1.66E*02 1.25E-02 9.OSE*03 w 3.07E*00 1.05E+00 5.49E=01 2.83E=01 9.52E=02 5.02E=02 3.07t=02 2.24E=02 1.45t=02 1.06r=02 9.46E=03 sNw 6.16E+00 2.00E+00 1.05F+00 5.63E=01 I 1.96E-01 9.76F=02 6.07E=02 3.92E=02 2.96E-02 2.93E-02 1.69E*02 ) um 1.02E+00 2.75E.00 1.42E*00 7.47E-01 2.94E=01 1.52E=01 8.95E=02 6.13E=02 4.60F.*02 3.3tE*02 2.53E=02 N Num 6.95E+00 2.90E+00 1.69E*00 8.85E=01 3.8tE=08 1.96E=01 1.87E=01 7.79E=02 5.6tE=02 4.24E*02 7.25E+00 3.17E*00 1.74E+00 3.l5E*02 F N 9.73E-01 1.44E-01 1.70E=01 1.00E=01 6.80E=02 5.01E*02 3.84E-02 2.95E=02 M NNE 4.57E+00 1.7tt+00 9.69E=0! 4.72E=01 1.79E=01 9.42E=02 5.82E=02 3.65t=02 2.01E*02 2.10E=02 1.62E=02 "4 N r. 3.5IE+00 1.38E*00 7.50E=01 3.47E-01 1.43E-01 7.30E=02 4.30E-02 3.23E=02 2.14E*02 1.62E=02 1.20E*02 0 ENE 2.6AE+00 9.93E=01 5.13E=01 2.39E=01 9.3 tea 02 4.90F=02 3.07E=02 1.95E=02 E 2.6tE*00 9.e5E-01 4.97E=0i 2.2eE=01 4.9tE=02 1.40E=0J 1.07E=02 a.2aE.03 Z 9.56E-02 3.IIE-02 2.05E-02 1.44E=02 1.09E=02 8.28E=03 ESE 4.34E+00 1.65E+00 9.27E=01 4.34E=01 1.7tE=01 0.7tE=02 5.58E=02 3.46t=02 2.46E-02 1.96E=02 1.52E=02 gg SE SSE 5.00E*00 1.75E+00 9.44E=01 4.56E-01 1.72E=01 9.16E*02 5.00E=02 3,54E=02 2.45E=02 1.7BE-02 1.46E=02 7 7.65E*00 2.95E+00 1.4tE*00 6.50E=0! 3.03E=01 1.32Ea01 7.9tE=02 5.10E=02 3.92E=02 2.80P=02 2.2tE=02 I a O $I INDIVIDU AL ANNII AL CAMM A Alp DOSE IMit LtR ADS) Ln Ln DISTANCE IN MILES BEARING 5.000 7.500 10.000 15.000 20.000 25.000 30.000 35.000 40.000 45.000 50.000 NI S 1.70E=02 7.3tE=03 3.02E=03 1.6tE-03 8.33E-04 4.83E=04 3.13E=04 Z 88W 2.07E=04 1.50E=04 1.09E-04 8.2tE=05 -4

               !.OtF*02  4.16E=0)  2.3tE=03    9.89E 04   4.99E-04           2.88K*04                  1.78E-04   1.19E=04    8.44E-05                         6.04t=05    4.59E=05      >

SW 7.74F=03 3.36E-03 1.83E=03 7.75E=04 4.05E-04 2.37E=04 1.45F=04 9.85E=05 6.80E=05 4.74E=05 3.63E=05 I uSw 7.9tF=03 3.35E=03 1.1tE=0J 8.05E*04 4.24E=04 2.49E=04 1.52E=04 1.05E=04 7.39E=05 5.36E=05 3.96E=05 W 6.79E-03 2.94E=03 1.6tE=03 7.26E=04 3.f5E=04 2.29E*04 g kNW 1.46E=04 1.00E-04 6.80E=05 5.07E=0S 3.89E=05 0 t.35E*02 6.03E=03 3.33E=03 1.57F=03 8.49E=04 5.tlE=04 3.35E=04 2.30E-04 1.64E=04 1.21E-04 0.92E=05 - Nw 2.00f=02 0.97E=03 5.02E=03 2.2tE=03 1.14E=03 6.79E=04 4.4tE-04 3.07E-04 2.2tE-04 1.63E=04 1. 2 5 F.-0 4 E NNW 2.63E=02 1.18E=02 6.37E-03 2.72E-03 1.40E-03 A.4tE=04 5.32E=04 3.69E=04 2.66E-04 1.95E=04 2 N 1.29E-02 1.03E=02 5.79E-03 1.54E=04 2.47E-03 1.29E=03 7.74E*04 4.93E-04 3.51E=04 2.5tE=04 1.85E=04 NNE 3.20E=02 5.64E=03 3.35E=03 1.497 03 A.14E-04 5.10E=04 3.32E=04 2.34E=04 t.72E-04 1.27E=04 1.4tE=04 9 lu NE t.03Ea02 4.5tE=03 1.00E=04 2.b4E=03 1.12E=03 6.02E-04 3.70E=04 2.43E=04 1.64E=04 1.15E=04 8.45E=05 6.45E=05 E ewe 6.60E=03 2.90F=03 1.59E=03 7.26E=04 1.08E-04 2.20E=04 1.47E=04 1.04E=04 7.27t=05 5.3tE-05 4.12E=05 E 6.9tt 03 3.00E=03 1.74E=03 7.74E-04 4 t?E=04 2.45E=04 1.6tE=04 1.12E=04 8.0tE=05 5.77E=C5 ESE t.2CE-02 5.27E=03 3.02E=03 4.49E=05 1.30E=03 6.93E-04 4.13E=04 2.65E=04 1.84E-04 8.3tE=04 9.35E=05 7.t?E=05 SE 1. TEE *02 5.23E=03 2.97E-03 1.30E=03 7.0tE=04 4.16E=04 2.70E=04 1.9tE=04 1.37E=04 1.0tE=04 7.70E=05 SSE 1.72F=02 7.65E=03 4.10E-03 1.79E=03 9.64E=04 S.69E-04 3.66E=04 2.49E=04 1. 7 6 r.= 0 4 1.30E=C4 9. 7 t r.-0 5 _.

r_ _ HA2LETON r_NVIRONIVIINTAL CCllNCZ2, 1 APPENDIX D X/Q and Dose > Calculation Models and Assumptions ! D-1

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HAZLETON UNVIRONMZNTAL CCIZNCCO X/0 Calculation Models and Assuriotions 1.0 Introduction The transport and dilution of radioactive materials in the form of l aerosols, vapors, or gases released into the atmosphere from a nuclear pc.wer i station are a function of the state of the atmosphere along the plume path, the topography of the region, and the characteristics of the effluents them-selves. For a routine airborne release, the concentration of radioactive material in the surrounding region depends on the amount of effluent re-leased, the height of the release, the momentum and buoyancy of the emitted

                                                                                      '

plume, the wind speed, atmospheric stability, and airflow patterns of the site. In order to evaluate the impact of a nuclear power station under normal operating conditions in a year of " typical" weather conditions, the routine diffusion estimates of ef fluent relative concentrations (X/Q) within a radius of 50 miles from the station are required. The method of evaluating atmospheric dispersion of gaseous effluents, based on the U.S. Nuclear Regulatory Commission (NRC) Regulatory Guide 1.111 (1976), is described here. l l D-2

I HazLETON ENVIRONM ~NTAL SCl?NC~r] l l i 2.0 Meteorological Data l ! Basic meterological parameters influencing effluent dispersion in ! l the atmosphere are wind speed, wind direction, and . atmospheric stability. i ) The following guidelines are used in the categorization of meterological data. 2.1 Wind Speed Wind speeds representing the conditions at the actual release h:ight are used for the times when the release is considered to be elevated. Wind speeds measured at the 10-meter level are used for those times when the effluent plume is considered to be a ground release. 2.2 Wind Direction Wind direction, defined as the direction from which the wind is I blowing, is grouped into 16 compass-point sectors corresponding to 22.5 degree sectors. l 2.3 Atmospheric Stability Atmospheric stability is divided into seven categories to represent Pasquill stability classes A (extremely unstable) through G (extremely l sta ble) . The method for evaluating the atmospheric stability is based on vertical temperature difference between the release point and the 10-meter r level. Criteria for classifying atmospheric stability in tenns of Pasquill stabilityclassesAthroughGarepresentedasfolkows: Stability Pasquill Classification Category ( degrees) ( *C/100m) l'

  • _ Extremely unstable A c e > 22.5 aT < -1.9 Moderately unstable B 22.5 >c > 17. 5 -1.9 < AT < -1.7 Slightly unstable C 17. 5 > c T_12.5 -1. 7 < AT 1 -1. 5 N:utral 0 12. 5 > o > 3.8 -1.5 < AT < -0.5 Slightly stable E 7.5 >o 1 2.1 -0.5 < AT 5 1.5 Moderately stable F. 1.5 < AT <- 4.0 Extremely stable 3. 8 > e >

G 2.1 > a 4.0 < AT 0-3 i

_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ HAZLETON CNVIRONM2NTAL CCClNCOO 2.4 Joint Frequency Distribution Joint fraquency distributions of wind direction and wind speed by atmospheric stability class are used as meteorological data input for routine j diffus' ion estimates. The compilation of joint frequency distributions is done on quarterly,' semi-annual, and annual bases. Wind speeds are grouped according to the Beaufert wind scale (i.e., calm, 1-4, 4-8, 8-13, 13-19, 19-25, 25-32, 32-39, 39-45 and greater than 45 mph) . Wind directions are divided into 16 compass-point directions (22.5 degree sectors). Calms, defined as wind speeds below the threshold speed of the vane or anemometer (whichever is higher), are assigned to wind directions in proportion to the direction distribution, within an atmospheric stability class, of the lowest non-calm wind speed class.

                                                                                                                             !

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         .          .. .
                                                                          -                  . . .
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I HAZLETON CNVI?XNMZNTAL CCGNCIO 3.0 Release Mode For nuclear power stations, most gaseous effluents are released I through tall stacks, through vents located near the tops of buildings, or through combinations of the two. They are dispersed by variations of wind direction and speed, and by tu.bulence (mixing action) of the atmosphere. ' Gaseous effluents released from tall stacks generally produce peak ground-level concentrations near or beyond the site boundary, whereas near-ground level releases produce monotonically decreasing concentrations from the release point to all locations downwind. Under certain conditions, the i ef fluent plume may become entrained in the aerodynamic wake of the building and mix rapidly down to the ground level. Methods have been developed to estimate the effective release height, defined as the sum of the physical height of the release point and l the rise of the plume above the stacks, for calculations of effluent con-centrations at all downwind locations. The important parameters in these methods include: the initial release height, the location of the release point in relation to obstructions, size and shape of the release point, the initial vertical velocity of the effluent, the heat content of the effluent, ambient wind speed and temperature, and atmospheric stability. The acceptable method that is used to detennine the release mode is d; scribed below. 3.1 Effluent Release Mode For effluents ex_hausted from release points that are higher than twice the height of adjacent solid structures, the effective release height (he) is detennined from h e=hs+hpr - ht (3-1) 0-5 1 L'

                                                   - _ _ _ _ _ _ _ _ _ _ __

HAZLETON ENVIRONM"NTAL CCIENC2] i where h s

           = physical height of the release point above the ground; h

pr = rise of the plume above the release point; and h t a minimum terrain height above the stack base between the release point and the point for which the calculation is made. ht must be greater than or equal to zero. For effluents released from points less than or equal to the height of adjacent solid structures, a ground-level release is assumed (he = 0) . For effluents released from vents cr other points that are less than twice the height of adjacent solid structures, the effluent plume is considered as an elevated release whenever the vertical exit velocity (Wg ) of the plume is at least five times the horizontal wind speed (U) at the height of rel ease, i .e. , W o/U ?_ 5.0. If Wo /U is less than 1.0, or unknown, a ground-level release is assumed ( h e =0). For cases where the ratio of plume exit velocity to horizontal wind speed is between one and five, a mixed release mode is assumed, in which the plume is considered as an elevated release during part of the time and as a ground-level release (he = 0) during the remainder of the time. An entrain-ment coefficient, E ,tis detennined for such cases from the following rela-tions: Et = 2.58 - 1.58 (Wo /U) for 1 < Wo /U 11.5 ( 3-2) and Et = 0.3 - 0.06 (Wo /U) for.1.5 < Wo /U 15.0. ( 3-3) The release is considered to occur as an elevated release 100 (1-Et ) percent of the time, and as a ground release 100Et percent of the time. Each of these cases is evaluated separately and the concentration is calculated ac-cording to the fraction of time each type of release occurs. D-6

b HAZLETON ENVIRINMENTAL CCCNC33 I l 3.2 Plume Rise Calculation Nuclear power at.ations generally have cold plumes, so that the plume rise is calculated from Briggs' (1969) momentum rise fonnulae. For nsutral or unstable' atmosphere, the smaller value of h pr calculated from the following equations is used:

!             h pr " 1*44 (Wo/U)2/3 (Z/0)1/3
                                    -

0 ( 3-4) and h pr = 3 (Wo/U) D ( 3-5) where D = inside diameter of the stack or other release points;

                                                            .

W = vertical exit velocity of the plume; o U = mean wind speed at the height of release; and X = downwind distance from the release point. For stable atmosphere, the results from Equations (3-4) and (3-5) are com-pared with the results from the following equations: j h pr " 4 -(Im/S)l/4

                       -

( 3-6) and ( 3-7) pr = 1.5 (Fm/U)1/3 3-1/6 h and the smallest value for hpr is used. In the foregoing relations F m "W o 02/4 = momentum flux parameter; S = 4 g = stability parameter 9 = acceleration of gravity; and

                                                                             .

T a

                    = ambient air temperature D-7 L

e

_ ___ _________ _ _ ____

                                                                                                                         -___

HAZLETON CNVIRONM' INTAL CCIINCCO The quantity oe/o Z represents the vertical potential temperature gradient given by: s Stability Class a /cZ ( *K /m-1) A -0.020 B -0.018 C -0.016 D -0.01 0 E 0.020 F 0.035 < G 0.050 When the vertical exit velocity of the plume is less than 1.5 times the hori-zontal mean wind speed, a height correction for aerodynamic downwash C, given by C = 3(1.5 -Wo/U)D ( 3-8) is subtracted for Equation (1). ( 3.3 Diffusion Model The Gaussian straight-line trajectory model, which assumes that the air flow transports and diffuses effluents along a straight line through the entire- region of interest in the airflow direction at the r,elease point, is modified to account for various modes of effluent releases. In the case of an elevated release, plume rise due to momentum or buoyancy effects is incorporated into the calculation. For those effluents that are entrained into the wake, cavity is usually assumed. The mixing zone can constitute a plume with an initial cross section of one-half or more of the cross-sec-ticnal area of the building. , 1 The mathematical equation used in the Gaussian straight-line tra- I jectory model is: D-8 i

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                         '

[ } xu j Izk l and I zk = (o 2zk + 0.5 02 z/x)l/2 <g3 azk ( 3-10) , whsre i = index identifying downwind direction section; I l' j = index identifying wind speed class; k = index identifying atmospheric stability class; i , average effluent concentration nonnalized by source strength . Q at the specific downwind distance; I f = joint frequency distribution of wind direction, wind speed class, and atmospheric stability class; ) x = distance from the release point to a receptor; I I U = wind speed; Ez = vertical alume spread with a volumetric building wake correc-l tion for a release within the building wake cavity; z = vertical plume spread without volumetric building wake cor-rection; and D7 = maximum adjacent building height either up or downwind of the release point. The term Izk given in Equations (3-9) and (3-10) is used for ground-level release (he = 0) within the building wake cavity. For an ele-vated release, no volumetric building wake correction needs to be considered, i.e. , I zk =ozk' The X/Q dose calculations were performed by means of a computer program X0QD0Q (USNRC 1977) . D-9 I

_-_ _______ - - - __

                                                                                                  . .  . .
                                                                                                            ._

l HAZLETON ENVIRONMENTAL CCENCO:3 4.0 Dose Calculation Model Individual and population doses from routine atmospheric effluent releases are calculated using the computer code "GASPAR" developed by the U.S. Nuclear Regulatory Commission. The "GASPAR" mode' was formulated by the NRC staff to meet the requirements of NRC Regulatory Guide 1.109, "Calcula-tion of Annual Doses to Man from Routine Releases of Re actor Effluents for the Purpose of Evaluating Compliance with 10 CFR Part 50, Appendix I" (USNRC 1977b) . The computer code "GASPAR" computes both individual and population doses considering the following pathways: plume, ground, inhalation, inges-tion of vegetation contaminated by radioiodine deposition, ingestion of milk from cows which consume the contaminated vegetation, and ingestion of meat from beef that consume the contaminated vegetation. For each pathway, doses are calculated for total body, gastrointestinal-tract, bone, liver, kidney,

                                                                                                                         '

thyroid, lung and skin. For individual dose calculations, four different age groups are considered: inf ant (0-1 years) , child (1-11, years) , teenager (' (12-18 years) and adults (over 18 years) .

                               .

D-10

                                             - ____________-___________ -                                      _ _ _ _ _}}