ML20238A424
ML20238A424 | |
Person / Time | |
---|---|
Site: | Pilgrim |
Issue date: | 12/31/1977 |
From: | Kannenberg S, Mogolesko F, Sowdon T BOSTON EDISON CO. |
To: | Grier B NRC OFFICE OF INSPECTION & ENFORCEMENT (IE REGION I) |
References | |
BECO-78-34, NUDOCS 8708310072 | |
Download: ML20238A424 (74) | |
Text
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e PILGRIM NUCLEAR POWER STATION RADIOACTIVE EFFLUENT AND WASTE DISPOSAL REPORT l l'
INCLUDING RADIOLOGICAL IMPACT ON HUMANS l l
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JULY'l THROUGH DECEMBER 31, 1977 l
Prepared by: f--~~-
Thomas L., Sowdon Radiological Engineer l
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.t*t '?d " 1 ,- % 1
- Reviewed by: , >-'-*t
/ Susan L. Kannenberg /
Senior Environmental Scientist Approved by: ,
Fred Jt7Mogo1%sid Manager of Environmental Science Group l
4 Date of Submittal: March 1, 1978 9708310072 771231 PDR ADDCK 05000293 '
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TABLE OF CONTENTS Section Pajyt 1
1 Introduction and Summary Effluent, Waste Disposal and Wind Data 1-2 3 Off-Site Doses Resulting from Radioactive Liquid Effluents 41 4 Off-Sdte Doses Resulting ' from Radioactive Gaseous Effluents 46 5 0ff-Site Doses from_ Direct Radiation 69 q LIST OF TABLES Table Page Supplemental Information 2 Gaseous Effluents - Summation of All Releases 3 lA 1B Gaseous Effluents - Elevated Release 4 IC Gaseous Effluents - Ground Level Release 5 1
L* 2A Liquid Effluents - Summation of All Releases 6
- 2B Liquid Effluents 7
, _ , 3 Solid Waste and Irradiated Fuel Shipments 8-4A-1 Distribution of Wind Directions and Speeds - 33 ft Level 9 j l ,
i 4A-2 Distribution of Wind Directions and Speeds - 160 ft Level 25 !
l 1 3.2-1 July-December 1977 Liquid Release Maximum Individual Doses from all Pathways for Adults (MREM) 42 3.2-2 July-December 1977 Liquid Release Maximum Individual Doses from all Pathways for Teenagers (MREM) 43 l
3.2-3 July-December 1977 Liquid Release Maximum Individual 1 Doses from all Pathways for Children (MREM) 44
- 3.3-1 Population Doses Resulting from the July-December 1977 Liquid Effluents 45 1
4.1-1 Undepleted Relative Concentrations per Unit Emission for
" Buil. ding Reactor Vent for July through September,1977 48 ,
, 4.1-2 Depleted Relative Concentrations per Unit Emission for Building Reactor Vent for July through. September, 1977 49
.~4 111 l-L_i__ _ -_ _ _ --- . - _ _ ;
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l LIST OF TABLES (Cont)
Table Page 4.1-3 Relative Deposition Concentrations per Unit Emission for Building Reactor Vent for July through September, 1977 50 4.1-4 Undepleted Relative Concentrations per Unit Emission for Building Reactor Vent for October through December,1977 51 4.1-5 Depleted Relative Concentrations per Unit Emission for Building Reactor Vent for October through December, 1977 52 4.1-6 Relative Deposit 1&n Concentrations per Unit Emission for Building Reactor Vent for October through December, 1977 53 4.1-7 Undepleted Relative Concentrations per Unit Emission for Main Stack for July through September, 1977 54 4.1-8 Depleted Relative Concentrations per Unit Emission for l Main Stack for July through September, 1977 55 l 4.1-9 Relative Deposition Concentrations per Unit Emission for )
Main Stack for July through September, 1977 56
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4.1-10 Undepleted Relative Concentrations per Unit Emission for Main Stack for October through December, 1977 57 4.1-11 Depleted Relative Concentrations per Unit Emission for Main Stack for October through December, 1977 58 j l
4.1-12 Relative Deposition Concentrations per Unit Emission for i Main Stack for October through December, 1977 59 i 4.1-13 Special Parameters Used in Finite Cloud Model 60 4.2-1 Maximum Individual Locations and Pathways 61 4.2-2 July-December 1977 Gaseous Release Maximum Individual Doses from all Pathways for Adults (MREM) 62 n
4.2-3 July-December 1977 Gasecus Release Maximum Individual Doses from all Pathways for Teenagers (MREM) 63 4.2-4 July-December 1977 Gaseous Release Maximum Individual Doses from all Pathways for Children (MREM) 64 4.2-5 July-December 1977 Gaseous Release Maximum Individual Doses from all Pathways for Infants (MREM) 65 4.2-6 July-December 1977 Gaseous Release Maximum Individual Doses (0.8 Miles WSW) 66 4.3-1 Population Distribution 67 4.3-2 Population Doses Via Major Pathways Resulting from Gaseous Effluents During July-December 1977 68 iv
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- 1. INTRODUCTION AND SUFotARY i
This report is issued for the period July-December 1977 in accordance with NRC Regulatory Guide 1.21 " Measuring, Evaluating and Reporting Radioactivity in Solid Wastes and Releases of Radioactive Materials l in Liquid and Gaseous Effluents from Light-Water Cooled Nuclear Power Plants" (Rev. 1). The information supplied includes actual effluent releases, radioactive waste and meteorological data; doses from liquid I releases, doses from gaseous releases and direct gamma radiation doses.
The calculated doses are below the limits specified in 10 CFR 50, Appendix I I .
- 2. EFFLUENT. WASTE DISPOSAL AND WIND DATA 3
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Radioactive liquid sud gaseous releases, wind speed data together i with measurement errors and solid waste disposal information are given !
in Tables lA,1B,1C, 2A, 2B, 3, 4A-1, 4A-2 and supplemental information l section in the standard Regulatory Guide 1.21 format,. j f
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.o ' EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT Supplemental information July - December,1977
'~ Pilgrim Nuclear Power Station Ucense ' DPR 35 peggity
- 1. Regulatory Umits Qs ~ Qv '
1 n.
Fission and activation gases: 0.25/E + 0.10/E1- 1 '
- b. lodines: 13(Qs X 1.8E4 + Qv X l l.8ES)b .
- e. Particulaies half.hves >x days: 13(Qs X 1.8E4 + Qy X 1.8ES)b 1
- d. Uquid enluents; 10 C1/ quarter
- 2. ' Maimum Permissible Concentrations i
Provide the MPCs used in determining allowable release rates or concentrations.
- a. Fission and activation gases: 10 CFR 20 b; lodines: . Appendix B q
'l Particulate. half.hves >H days:
- e. Table !!
- d. Liquid efnuents: H 3 = 1 X 101 #C1/mt: all rest,10 CFR 20, Appendix B, Table II
- 3. Average Energy j Provide the average energy (5 of the radionuchde mixture in releases of fission and activation gases.N applicable. E = 1 Mev .
- 4. Measurements and Approximations of Total Radioactivity l
Provide the methods used to measure or approumate the total radioactivity in enluents and the methods used to !
determine radionuelide composition. .
- a. Fission and activation gases: c,ti
- b. lodines: !
gg,,,, !
- c. Particulales:
Analysis
- d. Liquid e nluents:
- 5. Betch Releases Provide the following information relating to batch releases of radioactive matenals in liquid and gaseous efnuents.
- a. Uquid
- l. Number of batch releases: 194
- 2. Total time period for batch releases: 2,980 hours0.0113 days <br />0.272 hours <br />0.00162 weeks <br />3.7289e-4 months <br />
- 3. Maxirnum time penod for a balch release: -
- 4. Average time period for batch releases: 15.36 hours4.166667e-4 days <br />0.01 hours <br />5.952381e-5 weeks <br />1.3698e-5 months <br />
- 5. Minimum time penod for a batch release: - . i
- 6. Average stream now dunng periods of release of enluent into a nowing stream: 2.06E + 4 GPM
- b. Gaseous (Not Applicable)
- 6. Abnormal Releases
- a. None
- b. None Wo.A 4
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TABLE 1 A EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT (1977)
GASEOUS EFFLUENTS-SUMMATION OF ALL RELEASES July - December,1977 Quarter Quarter Est. Total Unit 3 4 Error, %
A. Fissioc and ac'tivation gases
- 1. Total re! ease Ci 6.87E+ 4 5.30E+ 3 2.50E0 l j]
- 2. Average release rate for period - gCi/sec ' 8.64E+ 3 - 6.67E+ 2
- 3. Percent of Technical Specification limit % 3.51E0 3.75E-1 B. Iodines
- 1. Total iodine-131 C1 1.44E-1 1.50E-3 2.81E+ 1 l
" Average release rate for period gCi/sec 1.81E-2 1.89E-4
- 3. Percent of Tschnical Specification limit % 2.28EO . 1~.13 E-2 C. Particulate
- 1. Particulate with half-lives > 8 days Ci 3.87E-2 8.25E-3 2.84Et 1 l
- 2. Average release rate for period yCi/sec 4.87E-3 1.04E-3
- 3. Percent of Technical Specification ilmit % 2.93E-1 1.07E-1
- 4. Gross alpha radioactivity Ci 3.89E-7 < 1.14E-7 D. Tritium
- 1. Total release C1 1.04E+ 1 3.71E0 3.40E+ 1 l
- 2. Average release rate for period pCi/sec 1.31E0 4.67E-1
- 3. Percent of Technical Specification limit % - -
ed
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s TABLE 1B EFFLUENT AND WASTE DISPOSAL SEMI ANNUAL REPORT (YEAR)
GASEOUS EFFLUENTS - ELEVATED RELEASE July - December,1977
' < CONTINUOUS MODE BATCH MODE Unit Quarter Quarter l Quarter l Guarter l l Nuclides Releened l l l
- 1. Fission gases krypton 85 Ci 2.36E0 3.07E-3 I
k'rypton-85m Ci 8.22E+ 3 6.61E+ 2 krypton-87 Ci 6.12E+ 3 5.56E+ 2 krypton-88 C1 1.61E+ 4 1.46 E+ 3 f xenon-133 Ci 2.90 E+ 4 2.13 E+ 2 xenon 135 C1 1.22E+ 3 5.64E+ 1 xenon-135m Ci 2.72E+ 2 8.46 E+ 1 xenon-138 Ci 9.51E+ 2 2.82 E+ 2 xenon-131m Ci 1.77E+ 3 7.21E+ 2 xenon 137 Ci 3.81E+ 3 NDA xenon 133m Ci 4.75 E+ 2 NDA Total for period Ci 6.79 E+ 4 4.03E+ 3
- 2. Iodines t.
iodine-131 Ci 7.45E-2 1.24 E-3 l iodine 133 Ci 6.96 E-2 1.06E-2 iodine 135 Ci 9.80E-2 1.75E-2 l Total for period Ci 2.24E-1 2.93 E-2
- 3. Particulate strontium 89 Ci 9.84 E-3 3.06E-3 strontium 90 Ci 5.60 E-5 2.25 E-5 cesium 134 Ci 5.42E-5 2.86E-5 cesium 137 Ci 2.65E-4 1.08E-4 barium lanthanum.140 Ci 2.13 E-2 1.40E-3 chromium 51 Ci 2.61E-5 NDA manganese 54 - Ci 4.27 E-5 1.03 E-4 cobalt 58 Ci 1.78 E-6 2.33 E-6 iron-59 Ci NDA 6.79E-6 cobalt 60 Ci 1.76E-4 3.57 E-4
., zinc-65 Ci NDA 7.44E-6 zirconium niobium 95 Ci NDA 1.79 E-5 cerium 141 Ci 2.08E-5 7.82 E-6 cerium 144 Ci NDA 4.55 E-6 s..
ruthenium 103 Ci 2.00 E-6 1.76 E-6 ruthenium 106 Ci 1.50E-5 NDA Ws s 4
- _ - - - . _ _ _ - - _ . - - - - - - . - - - _ - - _ _ - - - . _ - _ - - - - - - -x- . - J
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1 TABLE 1C l EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT (1977) 1 GASEOUS EFFLUENTS - GROUND LEVEL RELEASE July - December,1977 CONTINUOUS MODE BATCH MODE Nuclides Released Unit Quarter - Quarter Quarter Quarter i
- 1. Fission gases 1 l
krypton-85 Ci NDA NDA krypton-85m Ci NDA NDA krypton 87 Ci NDA NDA krypton-88 Ci NDA NDA xenon 133 Ci 5.49E+ 2 9.18E+ 2 xenon 135 Ci 7.00E+ 1 1.17E+ 2 xenon 135m Ci 4.18E+ 1 6.99E+ 1 xenon 138 Ci 9.96E+ 1 1.67E 2 Total for period Ci 7.60E+ 2 1.27E+ 3
- 2. Iodines iodine-131 Ci 6.99 E-2 2.60E-4
. lodine 133 Ci 9.41E-2 1.06E-3 lodine-135 C1 1.44E-1 1.39E-3 2.71E-3 Total for period Ci 3.08 E-1
- 3. Particulate strontium 89 Ci 2.98 E-3 2.98E-4 strontium-90 Ci 8.13E-6 5.67E-6 1.06E-4 9.60E-5 cesium 134 C1 .
cesium 137 Ci 2.76E-4 2.12E-4 barium lanthanum 140 Ci 2.18E-3 1 3.95E-4 J
manganese-54 Ci 1.84E-4 4.33E-4 cobalt.58 C1 2.48E-5 1.52E-5 fron 59. Ci 1.89E-5 NDA cobalt-60 Ci 9.27 E-4 1.57E-3 zine 65 Ci 1.55 E-5 1.06E-5 a zirconium niobium 95 Ci 8.38 E-6 9.47E-6 cerium 141 Ci 3.04 E-5 NDA ruthenium-103 Ci 5.83 E-6 4.97E-6 ruthenium 106 Ci NDA 6.88E-5 5
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TABLE 2A EFFLUENT AND WASTE DISPOSAL SEMI ANNUAL REPORT (1977)
LIQUID EFFLUENTS-SUMMATION OF ALL RELEASES July - December,1977 l
l l
Ouarter Quarter Est. Total Unit 3 4 Error, %
A. Fission and activation products
- 1. Total release (not including tritium, Ci 1.45E0 9.38E -1 3.185+ 1 noble gases, or alpha)
- 2. Average diluted concentration uCi/ml 2.74E -7 1.09E -7 during period
< ' 3. Percent of applicable limit % 1.45E+ 1 9.38E0 B. Tritium
- 1. Total release Ci l 1.59E+1 1.22E+ 1 3.20E+ 1
[' 2. Average diluted concentration gCi/ml 3.00E-6 1.41E-6 l <
during period
- 3. Percent of applicabla ilmit % 3.00E+ 1 1.41E+ 1 C. Dissolved and ent:ained gases
- 1. Total release Ci 2.47E-4 1.68E-3 4.40E+ 1
- 2. Average diluted concentration pCi/ml 4.66E -11 1.94 E-10 f during peried )
- 3. Percent of applice.ble limit % - -
D. Gross alpha radioactivity l 1. Total release ,,
l Ci l< 1.20E ,4 l 4.93E-5 l 4.38 E+ 1 l E. Volume of waste released (prior liters 2.50E9 6 2.43E+ 6 2.00E+ 1 to dilution)
I F. Volume of di!ution water used liters 5.30E+ 9 8.64E+ 9 1.00E+ 1 during period k
L 6
==
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TABLE 2B EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT (1977)
LlOUlDEFFLUENTS I i
July - December,1977 C'.)NTINUOUS MODE BATCH MODE Nuclides Released Unit Quarter Quarter Quarter Quarter strontium-89 C1 1.04E- 3 1.14E- 3 strontium 90 - Ci 1.43E- 3 8.25E-4 !
cesium 134 Ci 5.35E-2 4.54E -2 cesium 137 Ci 1.44E- 1 8.69E-2 iodine-131 Ci 3.01E -3 5.24E-5 cobalt-58 C1 1.25E-2 ' 5.36E-3 cobalt 60 Ci 3.46E-1 1.95E -1 iron 59 Ci 1.76E _2 2.31E-3 zine 65 Ci 9.57E-3 3.11E- 3 manganese-54 Ci 1.02E-1 6.40E-2 chromium 51 ,
Ci 4.30E-3 2.19 E-3 zirconimum niobium 95 Ci 1.36E-2 8.64E-3 molybdenum 99-technetium 99m Ci 1.63 E- 3 3.14E-5 l barium-lanthanum 140 Ci 1.64E- 2 1.07E-4 cerium 141 Ci 3.19E-3 i 6.63E-4 i
iodine 133 Ci 5.86E- 4 3.19E-6 ,
cerium 144 C1 1.22E-2 8.73E-3 silver-110m Ci 1.44E-3 iron 55 Ci 6.22E-1 3.72E-1 l unidentified Ci 8.48E -2 1.40E-1 !
1 l
Total for period (above) Ci 1.45E0 9.38E-1 xenon 133 Ci 2.43E-4 5.63E-4 i L xen n-135 Ci ,f.68E-6 1.12E -3 7
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4 k TABLE 3 EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT (1977)
SOLID WASTE AND IRRADIATED FUEL SHIPMENTS July - December,1977 A. SOLID WASTE SHIPPED OFFSITE FOR BURIAL OR DISPOSAL (Not irradiated fuel)
Unit 6eonth Est. Totes
- 1. Type of waste Period Error. % 1
- a. Spent resins, filter sludges, evaporator m' 105.0 bottoms, etc. ^
Ci 1944.0 3 I
- b. Dry, compressible waste, contaminated m equip, etc. Ci )
m' j
- c. Irradiated components, control rods, etc. Ci 3
m 182.0
- d. Other (describe)
Ci 129.5 Miscellaneous low. level waste
- 2. Estimate of major nuclide composition (by type of waste)
% . E i a.
Diatomaceous Earth: r=137 15 f Co60 52 Mn54 16 b.
Cs134 6 c.
Spent Resin: Co60 19 Cs137 53 C8134 24 !
d.
Mn54 3 l
- 3. Solid Waste Disposition Number of Shipments Mode of Transportation . Destination 37 Truck Barnwell, S.C.
B. IRRADIATED FUEL SHIPMENTS (Disposition)
Number of Shipments, Mode of Transportation D_estination None
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M- > as i
'l
% -1 N
me W D00 N Ne ae ' 45M Fdke .m@M 000 NOF I o e e o e ,e e s e e e N e e .,
1 OO QO C3 O se O OQ OO- M as !
I p
4
% 3 mmm MMN #FN NM4 .mNe mmm Ne> l e o e e o e e e ao e e e e M e e -j as 3 wO OO 3 OO. OC OO ae O M se 1 l
.]
- .C.
3 OOC me m e .e # .= m m,e >e #.
meM e e as 3 e e C.
. ,=e N e e N e o e e p ee Oc as O N as . M se .e C DC ee 3 CCc me N 4 F>M eMC mme e e eeN e e WMN N e e m
n
- g. e e en a e e e e M e e M \
3 O CD as O FN *N Me CC as F e e j i
m E n A l 3 NNm yaN , e e 80 pMm- we a .e me N> g ;i a e e e M e e N e e N e e e e p e e g 1 QO CC Mm M as N as CC 2F )
W H '3 se = .m m4m 80 0P ONO PQm COO Me# >=
g3 g e/t e e e a e e N e o e e e e mo e W W W 3 OC CD c NQ N se as O CC mN 3.
W > D L W o A E 3 NN NM4 em e g> F 4>M COC FMW C3 g C M e e ,e o e N e e. N e e e e 'e e P. e e C QO em Q Mm N as CC O C3 #M w;
.g I a
W W gg 2 E W 3 MMN N N ,e d 80 m mp4 *eN OOO Q > as 2 m c 5 g m e e o e on e a M e e e a -e e d.o e &
& em.
O w w eW m E
=e eee e a. e eee e n, e -m Occ e Ce se I
i c sE g > e e e e e e a e e e a e e e i g e c U CC CC CO CC CQ CO NO E l W 4 l
- m O e E E !
T E
3 m
C I
one cW as m MMN P. 4 F N N ,,e fen C O CD P. e e g 3 e e e a e e e e e o e e e ,e e e e l p w O M CO CO QC C0 CO QQ MS W
.J k. 6 W I M M C .J A F A e W GCC CCC p@w ** N 4 eeN MMN Woe m
$ b m @ e e e e mc e e m e e mC- CO e e e e DO N e e >
W p =
4 20 00 Mm b
2 >=
m e O O i = W W Q f5 0 MMN eeN 4 p=. M e P. M d>M. mWM- WD e g > m e e e e e e e a e e a e N e o (D ae CD em e,J W QQ OC CO OO CC O C3 N as 4 at i A W &W w l
- O A Q~ A A l W NN-e e eeF e e Pm eF e e
- $Fa e #4>
.= e a
> C3 m e e eem ae e
- W gg ,g ac l
O a 55
> W .s se se NMe me F we m N 80 meM meM e o p 4 em 6 la, q
> g e a m o e N e o m o e e o mo e I OC CQ 4M MM '
me W CC se C N as .* O d . 88 j k W NNm
- e meM o e
- CS.
we o e FPM Nem N e e mNe
,e o e NFM ce e Og oO W
> E iP e e W DC CC NO eN N we mC se e m OO d
.= LD e 4 6 A
.J .J W W .a me en MMN e e O ae m NMe e e e 4 P.
e e NMe
,e e e NWN g e e ga og g M ,
p., y e o e o e ,,, ,, ese
.J E OC OO se O .e C ' == C *e O mN 2 W 66 >
c'S S OO E E ese b. an ma en m == == == =m m e m. O 3 4~ % as N N mN se N se N mN M me N 3E
& Www mww Aww mww Qww Oww CD w e. WW M
.s >= M E *
- e e o e W yy .g
- u. M w M M N O F F W g3 3 :
i em se N N L- WW 1 O O O l 1 i B i M e. L N d 4- W O 4 4 e di a 16 I4 e m ese W e e e e- s' W ,,3 m se a L as M N N # > ,,J .e N
- ' M en se O E us w 36
n - - _ - _-- - _ . _ _
> J pad- kmS se i4 0 - O == 0 Moe fi c1 O e O4 m' e e-
% e m i e a em e e-NeN M e e oee mo e N>N NN N e e M es 400 4 % > Nm OM m ~C aus M se M as
. as '
M- >=
N N M ese -e eOCC CCC CCC #NF es 3 en se se e e m>M e e e s, e e e e e e p CC CC CC CC CC CC ene C
> CCC OCC eNe
% 3 g
men ee NMm e o N M en ea e e m se me e e e e o e
- C ne CCC CCC' N po p 3 CCC >C& @N9 m9N g e e o e ee e a e e e e . e e-CC == c mc 'OC CC CC NC 3 m as e so 4 p. O e NMe en ce ne CCC MeM -
M g e e N,e e e N e e N e a e e e e 4 e e CC CC eM &
3 CC ao c F me Mm E
.J 3 - ,e m .e M>M C C en #4m men OOC e e mew p *
- 4
.J e e e e F e e ae e e e OC CC 4N 4N OC CC MF ,
m .
.Nm CCC cec Ms. -
m a 3 m- M,N e e
.e .e a e e y a e e e e e p e a y g g e e a
- p. N OC CC Me &
W W 3 CC CC 4N me W > C L W e M E >me CQC NMM C 3 NM Me> e4 e so c C 'C @ e e we e e M e e M e e en e e ee C e e w
O CC ad C e me mN NO CC ne e m 3 -e 4 ee E
W W 3 #Nm e p. M == e 4#C T 3 w W 3 CCC 4eM 4Fe g e e e e e e y e e L C s e e e e e M e e
.w O
O w W MFN 4mF m W me W CCC m P= M 4pM @NF F4N .*
a e a e ae e a e e e e N e e C Fe C > CC CC M me E 4 C U CC CC CC me C 8 N
- 4 W E o E 8
C >
M E 2 m m #=9 e4N Ne4 .= 44 e4N m .e g m m o CW e N M .4 o e e e m e e e e e e e e M e e w g 3 CC CC C .e C CC CC m we M w C W W
.4 6 > .J M M C i g e N 3 o W CCC p. C e deM WNr o e 4mm e e CCC e e e= 0 F N
- e w l e e e e 4 C m
C i
e e e CC se C CC as O CC CC e .e U
~
b >=
3 > C C a
w 4 W CCC e4Ne a pCe as 4 4 N M ao e4N 4NA WG e g > e o e e e e o e e e e N e e em C J W CD C CC mC m C3 CC CC e e- ea a-M W gW w
OCC CCC 55
> W N M as 6* C F N M em e e e e e e N M **
e a M e P*
w a a 66
> g e e e e w W D CD ad C CC CC CC CC =C AA 88 d.
4 W m me me .* 4 4 m P= M e4N e4N men eN@ CC.
a e m e e o e a e e e o e N e e CC W
A 4 F4N NMm mmm. emp d..j W f m W e 4. N e M F. Ne e e e e a 4. Ne o e m e . e.e l
.J E CC CC CC CC CC CC NC E bb C C
= m - -- - - - -- - -- -> E 3 p. N N me N en N ** M .eN A me N 2E W
mww @ww mww Cww Cw- Cw w WW W mww e o e e e s y yu g
>= M # W EE E l . , M w M ** N # F 6
I se we N N & WW C C W LL W D i 0 4 4 4
8 2 11 il 4 4 4 W C 4 4 4
-- 4
.e se W e a e e e W .J
& m M > N W D J as N e M == ,
me C 4 ww 37
I
- 0m >O0 mmm 060 mpe N e Nom
> -a pdm e e e e oe e
> E e e e ue e m o em= MG CO mOne >
%- > cO >= 00 .
O se @ N. m a se m >
% -.d N COC C CS C i m a C05 e e COO- e e 500. e00O e e e e C 0. Ce o e 1 cc j i oO CD em oc Om 50 i
> COO N N em m e se .QQQ CQO QCO mmN !
% 3 e e e e e e eo e e E
== Nme' 3 .= 4 m NNm emN OOO CQc' *
- QQC e * * *
- * *
- 8 * * * '
E NO OC CC CC FC O C3 em C CDC emN Nmee OCC C CeC3 COO m m4 a=
3 e e e o e e e e e e .m o e e i 3
NO FQ CC CQ CD 4Q m l 3 CO x ;
e d f N m.e e '
3 000 Pee Occ C me c. < ;
e e e me N. M a. ke e e e e 4
CO NC ec mO Oc cC .
b i cec e .= m . OCC =m4 w M 3 C3 C C 4 .e Am e e e e .m e e U >
M e e e e e e N e e I c M 3 CC CQ mC Nm MC CC em S.
W .4 .e W g D A W e A > eANe c C3 O C3 O C Ne4 C W 3 NNm m 4 .e m .e M e e e e e ,e e e
/
c E M e e e e e e w wQ OO mC NO C C3 OC P= 0 z
4 C m O W H =
mpN .4 4 e QQO OOO NMf 2 w 3 .m 4 .e NN e e e
, 3 o S g e e e e e ee e e e e e e eQ E a
M W W DO ew Q mQ QQ QQ OC gl m O M &
O t S U 5 MpN CCC C C3 O C44 m as *W CCC e e
- Ce e e e#C m ee e e e e e e me e
, c pie 4 >
CC mC se m .= C CC DC C .a E N 4 c W W m as 8 m O W ce 2
d O
= =m c = QW 2 >
, m
- QCO QCO e e 4 e 00e ccCe e ccc e o CCC e e de e e @
a e @ e e em .e o ee CC on m .eo a w 5 O a ee W 1 .a 6 a at C W a
O & mem kne Occ CCC Ccc woe a
( 3 4 W Occ e e e e e e e e m O e M e e e o e e rC CC OC QC 4Q U M OO CD Q M
3 > O :3 2
- n W &W =
w c W Z Q
W NNe NNm .= 4 .= CCO CCC CCO m .= m mW e 1 g e e o e e e e e e e e e e e gg g '
C '
OQC N N **
b5
> W N N se OOQ COO OCC C3 C Q 66 e e e e e e e e a e e o e e
> E CC CC CC CC == 0 0W M W .4 O OC @@
.J CG M
S OOC QCC QQc OCC NN ec e W m4m en 4 e e e e e e e e Co W
> g e e e e e e
' A OQ QO CC C3 C Cc QO em C CO 4 44 W
000 000 000 000 H 4 W CCC CCC e e C00 e e e e e e e e e . . d. a.
> , e e
.J z Oc cC CC Dc cO cc cO z W b6
' OG S O E '
E em > .= aa m. m =a m= ma ma => U !
2 .e N N mN .n N en N N MmN 22 M 3 6 mw w mww Cww Cw w Oww WW
& mww m ee =.
e e o e e y uy g
' s > M E e e e e W m3 3 m m > N 6 me en .e N N A WW i
l I l M 4, & .*
Q C O I i 4 g H 44 4 4 4 W C 4 4 4 .= en m W e o e e e .W g m em
- 3e aN 1 L me m P= N og mw
=e .= as M . _O
-38 L____. -_ _ _ _ _ _ _ . . - _ _ _ . _ _ _ _ _ _
,, j
.s ppm Nmm Nad pmm 000 000 N,O m N a e e a e e
- > E e e N e e se e e e e e e CC
% n. >C Ne MC >C CC 'CN C se e N em C
<--. m m m >
N CCC CCC em 3 CCC CCC e e C 13 aCe CCC e e CCC e e e e e e e e I CC CC CC CC P3 C CC CC
> 2 se p me men OCC CCC CCC CCC e>N
% e e e e e e e e e e m y e e e e E mc mc CC CC OC CC >C C
en CCC eee 2 .e e m Nem eem CCC CCC e e o e e e e e e e e e e e g CC eC
== C pO eC CC .OC m
3 CCC se a se CD C C C3 C CD CCC CCC meae e m
A e o e e e e e e e e e e m CC eO 3 CC ** C CC CC CC at E
.J 3 CCC Nem CCC CCC CCC CCC N e en .J e e e e e e e e e e a e as e e M CC mO CC CC CC CC mC C
b H b F>N CCC CCC m
> g ,3 m ee N. e >e N. C Ce C. e e e e e e m m N. 4e U C >C CC MC CC CC == 0 L W 3 mO' N W C C
& C m m QOC CCC 4@M C 3 O se N e aus en m e N e se e e g e e e e o e e a e o e e g g CC == C w 3 W mC mC em C MC CC i i
me 4 & I N l W H U C C C3 e>N T 3 x 3 CCC ee s ,e .e ae me N e se CCC f C C @ g e e e o e e e e e e e e g, a
g m. m' W M CC se C .e C mC C C3 CC >C E O ** C C
> W g e O 6 W C G men me p == CCC CCC JmM m
l g w w 1 en
, 4 C3
= rm z m 8 2 m
CCC
.E=
Y m CW. CCC CCC =p CCC CCC e e
,e p ==
e e m g 2 m e e e e e e e e e e M @ g e CC C0 mc CC CC CC mc M
.8 L W W
J m C a= .J M & 4 New CCC CCC
< z W W m e. ne C Ce C. e . e e o e C C. Ce m ee N. ,=.
C a b m $ mc CC mc CC CC CC m0 U
- n. I C m.
C C 10 m 4 W CCC '3 C C CCC CCC C3 C C C C3 C CCC WC e g p g e e e o e e e e e e e o e e @ en C
- h. ,J W CC CC CC CC CC CC CC 4g AW w A w A m C A A C CCC CCC CCC mW W C3 C3 C CCC CCC e e CCC e e e e e a e e gg at g
o e e e 3
CC CC CC CC CC CC CC b. m C 'i CCC 88
> W se P se se e m CCC CCC CCC e e e e N e *=
e a 66 y e e e e o e e e Q *e C en C CC CC CC CC mC MM d $$ i 9 W men New CCC 000e CCe CCC m eN O e e * *
- A mc MC CC
@@ 4 l
- = A CCC m>m deb 4 W 000 CCC A C Ce C. m e. n* C C. Co e e o e e e . e -
m ,
mC
.J R CC se O CC CC C* O CD C 3 W 46 > )
CC i C O E 3 en a > >= 0- -
m > a *= m a= .= a a= == = a=
2 *N *N mN mN M N mN AmN EX !
6 Z g,, mw mww cw w mww Cww Cww Cww wW W 5 4
> m g e e e o e e W WW g N e e a W ga 3 6 m er m N m N N & wW l m '
C 3
l l @ L& N C C 1 8 a 4 e se H li e 4 e W C 4 o
4 e o e Q ,J am m se se W e se m M N e at se N m m C I ww.
i 39 j
%- J M@@' m@m N99 M&t. MCC &Of OCH >
P= et mo e e e e ee e a e o me e ee e N e e gg -
%. to NN NNN eMM emM. NMM ## PCC W m' C -e m MM MM' m me me *.C se M M .seC C-
% U w
N.m 2 == me .d &@m e&F M NN mMM m em ay a e e e e e e N e e e e e e ee e .
l CC CC C0 mm CC CC NN 4 l 9= l
>* 4 mMM m44 Nea N44 mm m. - e, m d m 3, ee .e e e e M>.>. e o e e e 6 2 CC CC C2 C CC. OC CC NN U.
% A C
e c c' 3 N .= mmm eOC 4ee mMM m # CO g a e N e e a e e M e e m e e e e M e a p.
CC .ae no NN NN CC CC .ao e 4 &
3 .= we m #m# #F# m P= P= 4#F P= t F P=
- F e e N e o O e e M e e F e * *
C j C ,
I N N Pe, M m 3 MNN N>> CNN so 4 4 P= r a e- e e
.e
]
e e .e e e C e e eo e- N e M e e g CC CC eAa FF m en CC NNN W l
== m 4. .l W
CCC eMe . E W 3 AMM # b. P= C44e A@>.
e.
. e# a 6 e a y e a w t s m e e e e p. e p e e 8 3 CC UC MM F# CC CC s== C C m
w .4 W
A M C 3 >## eme C3 4 4 e@e MNN CCC Nem > 3 C e e e N e e N e e em e e N e e e e C e e 1 2 CC .= MM MM .m we CC NOC E -J n .4 e=e e
t k W d M 3 E 3 9NN ** 4 4 4@> bAA >AA m .m em N P= r= 2
^ C C A e e ,e o e m NN eo e e e e a e e 4 e e g y m m t=
0 y y ,e O 6 w C N I w 2 mA CCC m@ > c W Zr 2CC 4MM MNN .:l, N q e.= p. e e .= e e M e e N e e e # 4 e e' Ne Ne :'
N O U C f') OC .= se == m CC CC Fe 6 me w g C m =*=
3 m x Y m 4l2 W mNN P= *
- 4&> M P= P= 4ea .a == #mA s.
e e m o e e e o e 4 e'e E q 3 A e o M .=e ce e
CC CC C3- MM S I. A CC CC M d k e a.
z e u m .- m Cer Amm SCC =mA M e. N 4ee
~
< C W M e * *
a h =* y CC CC . = = == .m MM e= m g llll M .-
E ^
O CCC ap p p r= p p .= >m Wae NNN W3 A m C y
W e e e e e e ,e e e e e PJ 4 4
.= e e 4 e e cm e g A m W CC CC CC CC CC CC MM 4a w 4 W &W .J
- w a.
O m A .
e., y AMM 4e9 c*r 4 :D 2 e e r= M e as m .; ..
m e e A. M
. e e. e e e e .e e e e e P. e e 1; g y
.J CC CC CC CC CC CC MM em m &
ene E
MNN ree NOC 58 9 C
> W 4MM ==.=.* A co eS AmM 66 W 2 e o N e e N e e m o e o e e e N *
" 88 e e
W AMM &CC M NN e # .n 4rF e P= > mCC CC z 3 e e .e e e N e e a e e N e e .= *
- M e o OC C "l1 m .= == m NN == .w C 02 .e P= > CC O 44 e=
el J g W AMM P= F F # P= P. CCC M N r= r CO 4 .a .J
- p. g o e e e e.
. 9e10 e .e e e N e e ,e e e p. e e ag J y CC CC CC CC .=== CC MM w 66 W C M Co &
E Z
- > . a. . m .= ,= t>
3 6 2 as N we N *e N ** N .* N *= N W we N 22 c L A w e. -A=w m** Aww C e. == Cw w Cww WW C'
> M g e e e e e a w yy C 6 M w M P= N 9 F F W Sk 'e i .= == N N A ww C C e 8 i e l 1 A AA P 4 4 W C 4 4 4 4 g ti le N as .se w e e o e a w ,J s. p
& == M P= N 4 m J sa N ,,
M == == C 4 =w ,
40-
I l
l
- 3. OFF-SITE DOSES RESULTING FROM RADIOACTIVE LIQUID EFFLUEFTS 3.1 General Dose Assessment ]
The methods and parameters used to calculate the off-site doses are presented in the Appendix I analysis for Unit #1 . Population 1
data and other numerical constants are those of the Appendix I ;
submittal; effluent releases are given elsewhere in this report. i 1
3.2 Maximum Individual Doses The maximum individual doses and pathways considered are shown in Tables 3.2-1 through 3.2-3.
3.3 Population Doses 3
The population doses are shown in Table 3.3-1.
i I
i 41 ,
1 e 5
~: li .
y -
d --
o 1 1 1 1 B 0 4 0 0 1 3 8 0 0 l
0 0 0 1 a 0 0
< 0< < <
t -
o .
T -
1 1 1 1 1 n 0 0 0 0 0 0 i 0 k 0 0 0 S 0 0 0
< 0< < <
I 1 1 L 9 1 1 -
4 4 0 0 0 0 9 L
l -
0 0 0 0 1 a I 0 1 u G d
i v) iM g dE nR 1 1 1 1 0 7 IM g 2 5 0 0 0
( n 0 0 0 0 4 m u 1 3 us L < < < .. -
mt il xu ad -
MA er y so 1 1 1 6 1- a( e 1 4 1 0 0 0 0 a n 0 0 0 s d 1.
3Ra l
ey i K
0 0 0 0
0 0
0 w _
edh -
l i t b ua -
a qP Ti Ll d l i o 1 1 1 1 1 1 1 7 a 0 0 0 0 0 7 r 0 0 9 m y -
1 o h 0 0 0 0 0 0 0 r T < < < < < <
rf e
b s .
me es co r 1 1 1 1 eD 0 0 0 0 2 D e 1 1
- v 3 0 0 0 0 4 y i 1 _
l L < < < <
u -
J e 5 9 1 1 1 1 5 -
n 2 6 0 0 0 0 9 -
o 0 0 0 0 -
B 0 0
< < < 0< _
t -
e e n n ._
i i .
l l y r rh e
r r e -_
i a e es eo o g w t ti gh h s g h a aF rS St n _
- t W W a i i n _
a l hl ns m i l a -
P th tl ca ao ep m t a -
l s l e sn i o
t o
ai ah i a ce w SF SS DC OD S B T I
l l l
B -
3 6 4 1 1 1 3 l 2 5 0 0 0 0 8 a
t 0 0 0 0 0 0 0 o < '< <
T n 5 1 1 1 6 i 0 0 0 0 0 0 0 k
S 0 0 0 0 0 0 0 I
L 7 3 4 1 1 1 L 3 9 0 0 0 0 3 l I 0 0 0 0 0 0 1 a G < < <
u d) iM vE iR dM n( g 3 4 1 1 1 I n 9 3 0 0 0 0 3 s u mr ue L 0 2 0 3 0
0 3
mg ia xn ae Me T y 2 e
- s r e 1 2 4 1 1 1 8 2 ao n 0 0 0 0 0 0 0 ef d 3l i 0 0 0 0 0 0 0 es K < < ~< <
eR y l a bd w aih T ut qa iP d L i l o 1 1 4 1 1 1 5 7 l r 0 0 0 0 0 0 0 7 a y 9 h 0 0 0 0 0 0 0 1 m T < < < < <
o rr ef b
ms ee c s r eo e 3 4 1 1 1 DD v 8 1 0 0 0 0 9
- i .
y L 0 2 0 0 0 0 2 l < < <
u J
e 9 6 4 1 1 1 1 n 1 4 0 0 0 0 7 o .
B 0 0 0 0 0 0 0 e e n n i i l l e e y r rh r r i
a e es eo gh o
g w t t i h s h a aF rS S t n g t
a W W l a
hl ns i i m i n
l P t h tl ca ao m t a I l s l e sn ep i a t ai ah i a ce w o o SF SS DC OD S B T
' c
l l
9 9 1 1 1 1 0 l 0 2 0 0 0 0 4 a .
t 0 0 0 0 0 0 0 o < < < <
T n 1 1 1 1 1 i 0 0 0 0 0 0 0 k
S 0 0 0 0 0 0 0 I .
L 6 6 1 1 1 1 3 L 1 4 0 0 0 0 6 l I 0 0 0 0 0 0 0 a G < < < <
u d
i) vM iE dR nM g 0 1 1 1 1 I ( n 4 2 0 0 0 0 6 u .
mn u e L 0 1 0 0
0 0
1 mr i d xl ai Mh C
3 e y
- sr e 1 1 1 1 1 1 3 2 ao n 0 0 0 0 0 0 0 ef d 3l i 0 0 0 0 0 0 0 es K < < < < < <
eR y l a bd w aih T ut qa iP d i
L i l o 1 1 1 1 1 1 1 7 l r 0 0 0 0 0 0 0 7 a y 9 h 0 0 0 0 0 0 0 1 m T < < < < < <
o rr ef b
ms ee cs r eo e 7 1 1 1 1 DD v 3 0 0 0 0 0 4
- i y L 0 1 0 0 0 0 1 l < < < <
u J
e 9 4 1 1 1 1 4 n 0 2 0 0 0 0 3 o
B 0 0 0 0 0 0 0 e e n n i i l l e e y r rh r r i
a e es eo o g
w t t i gh h s h a aF rS S t n g t W W a ns i i n a l hl m i l P th tl ca ao m t a i l s l e s n ep i a t ai ah i a c e w o o SF SS DC OD S B T
- ,*~
Table 3.3-1 Population Doses Resulting from the July-December 1977 Liquid Effluents Thyroid Total Body Pathway (MAN-REM) (MAN-REM)
Salt Water <0.01- 2.3 Tish Salt Water <0.01 3.9
._. Shell Fish j Salt Water <0.01 <0.01 i Plants Ocean Shoreline 0.37 0.37 Deposits Swimming <0.01 <0.01 Total 0.38 6.6 t .
Note: These are the major pathways for liquid effluents.
1
)
-e 4
k l
s.- i
>+e
. esumme 45 l l
-____-_-__.____b
-i
-l
. 'l
-M l
-i
- 4. OFF-SITE DOSES RESULTING FROM RADIOACTIVE GASEOUS EFFLUENTS i
. I!
4.1 General Dose Assessment The <aethods and parameters used to calculate the off-site doses are i presented in the Appendix I analysis for Unit //1 1. The gaseous l releases for both reactor' building vent and the main stack, for i the period July-December 1977 are elsewhere in this report.
Meteorological information for calculating dispersion of these i releases are shown.in Tables 4.1-1 through 4.1-12. For each quarter year, values of X/Q, X/Q depleted ana D/Q are tabulated for twenty-three ;
radial distances at sixteen compass directions using the AEOLUS program which was provided to Boston Edison,by the Yankee Atomic Electric j
Company.
- - AEOLUS is a computer code for evaluating atmospheric dispersion of routine radioactive effluents from commercial nuclear power stations, and for computing statistical distributions _of radiation doses which would result from postulated accidental releases of assumed intensity. The code is based, in part, on Regulatory .
Guide 1.111 developed by the U.S. Nuclear Regulatory Commission j as guidance toward implementation of Appendix I to 10 CFR Part 50 i and the "as low as reasonably achievable" objectives. . Tables 4.1-1 through 4.1-12, are based on data taken at the 160-foot elevation.
Three departures were made from the Appendix I method of analysis:
- 1) The sea bretze effect was not considered. in calculating the X/Q's, depleted X/Q's and D/Q's (The Appendix I study demonstrated the
. sea breeze effect was not important),
- 2) Meteorological '.ata were collected at the 160-foot elevation as described in Appendix I, and
- 3) Gamma immersion doses were calculated using the semi-infinite cloud model. To insure conservatism i in the calculation of gamma immersion doses to receptors within 0.75 miles of the plant these doses were multiplied by a factor of 4 to represent
. the increase observed as a result of a finite cloud calculation. Such a calculation was performed for the last semiannual report and indicated that a ,
factor of 4 is appropriate (see Table 4.1-13). '
The doses for this period were small enough to
. ., permit this very conservative approximation in
.l place of a finite cloud calculation.
t-.
i me 46
__m__________________._.m____.__m_ _ _ _ _ _ _ _ .
~7 4.2 Maximum Individual Doses The maximum individual dose locations and pathways assumed are {
presented in Table 4.2-1. The resultant maximum individual adult, /
teenage, child and infant doses are reported in Tables 4.2-2 through 4.2-5. In the summary Table 4.2-6, doses from noble gas immersion are included for skin and total body; individual organ doses are due to iodine and air particulate only. ,
4.3 Population Doses j The assumed population distribution is shown in Table 4.3-1.
The population doses by pathway are presented in Table 4.3-2. l In accordance with Regulatory Guide 1.21, only pathways yielding significant contribution to the total dose have been included; l those pathways not included account for a total of less than 1 5% of the overall population dose.
1 i
l 1
1
'wa
-W@
47
4 4
TABLE 4.1-1 UNDEPLETED RELATIVE CONCENTRATIONS PER UNIT EMISSION FOR BUILDING REACTOR VENT FOR JULY THROUGH SEPTEMBER,1977 X/O REC 8tR 13hNWIN) HEIGH 7EO AVERAGFS S EC/ M* *3
- 90. DI5taNCE 5- (1) 45w - (2) Sa - (3) a5w - (4) = - (5) wNw -(6) Nw - ( 7) NNw - (8) 4 E IED S 0.0 22.5 45.0 67.5 13.0 112.5 135.0 157.5 1 201.20 1.16 0E - 06 9.060E-07 5.15 0 E-0 7 4.870E-07 1.190 E-0 6 1.18 0 E- 0 6 1. 3 70E- 06 1. 4 90E- 06 2 402.30 1 960E-06 1. 0 3 0 E - 06 2 5 50 E-0 6 1.200E-06 1. 3 20 E-0 6 7.2 70E-0 7 4.810E-07 4. 7 00E - 0 7 3 904.70 1. 210E - 06 8.080E-C7 8.730E-07 4.930E-07 8 . 710 E-0 7 1. 3 50 E- 0 6 1. 8 90E- 0 7 1. 810E- 0 7 l 4 1207.00 6.020E-O' 4. 02 0E- 07 4. 5 9 0E-0 7 3 . 3 40 E-0 7 3 . 5 30 E-0 7 3.080 E-0 7 1. 0 40E- 07 1. 2 6 0E - 0 7 j 5 1609.40 3. 7 5 0E - 0 7 2.490E-07 2 860E-07 2. 3 30 E-0 7 3.420 E-0 7 9.0 20 E- 0 8 8.660E-08 1. 07 0E - 07 j
- 1. 94 0E - 0 7 1. 3 00 E- 07 1.490E-07 7.540E-08 7.250E-08 6.900E-08 7. 010E- 08 8. 3 5 0E - 0 8 '
6 2414.00 7 3218.70 1. 2 50E - 0 7 8. 3 70E-09 5.470E-09 5. 5 40 E-08 6. 3 40 E-0 8 5.650E-08 5. 7 90E- 0 8 6. 66 0E - 0 8 8 4023.40 8. 9 40E - 08 5.950E-C8 4.100E-08 4.4 00 E-08 6.150E-08 4. 670 E- 0 8 4. 8 40 E- 0 8 5. 4 2 0E- 0 8 ,
6.8005-08 4.330E-08 3. 94 0 E-0 8 3.600E-08 5.380E-08 3.930E-08 4.110 E- 08 4. 5 0 0E- 08
~
9 4828.10 10 5632.70 5. 40 0E - O R 3.6l0E-08 3. 810 E-0 8 3. 010 E-08 * .800 E-0 8 3. 3 8 0 E-08 3. 5 5 0E- 08 3. 8 2 0E- 0 8 11 6437.40 4.13 0E - 08 2.960E-08 3 450E-08 2.560 E-08 4.100 E-08 ' 2.950 E-0 8 3.690E-08 3. 3 00E- 0 8 12 7242.10 3.16 0E- 08 2. 4 80 E- 08 2.670E-08 2.250E-08 4.090 E-0 8 2.610E-08 3.2606-08 2. 8 90E- 0 8 13 90 46. P 0 2. 950E- 08 2. 0 7 0E- 08 2. 5 7 0E-0 8 2.030E-08 4 .29 0 E-0 8 5.260E-08 5. 2 3 0E- 0 8 2. 8 50E- 08 14 12070.10 1. 760E - 08 1 150E- 08 1.430E-08 1.140 E-08 2.420E-08 3. 220 E- 08 2.6 80E- 0 8 1. 8 80E- 08 I 15 16093.49 1.2606-08 6.840E-09 8.900E-09 7.500E-09 1.650E-08 1.830E-08 2. 31 C E- 08 1 6 00E- 08 16 24140.29 7. 44 0E - 00 4.350E-09 5.700E-09 4.520E-09 8.6806-09 1.310E-08 1. 360 E- 08 9.17 0E- 09 17 32187.00 5. 03 0E - 09 2.960E-09 3.940E-09 3.150 E-09 6.080 E-09 9. 750 E-0 9 9. 4 20E- 09 6. 0 8 0E- 09 18 40233.79 3. 66 0E - 09 2.000E-09 3.180E-09 2.370E-09 4 .990 E-0 9 7. 440 E-09 7.100E-09 4. 210E- 09 j 19 48280.48 3.13 0E - 09 2.000E-09 2.550E-09 1.880E-09 4.080E-09 5. 9 8 0 E- 09 5.6 90E- 09 3. 40 0E- 09 '
20 56327.29 2. 62 0E- 09 1. 8 2 0 E-09 2.12 0E-09 1. 560 E-09 3.380E-09 4. 9 70 E-09 4.710E-09 2. 610E- 09 21 64373.99 2. 220E- 09 1.560E-09 1.800E-09 1.290E-09 2.8 70 E-09 4.230E-09 4.000E-09 2. 5 40E-09 22 72420.75 1. 2 6 0E -09 1.160 E- 09 1.560E-09 1.140E-09 2.490 E-09 3.680E-09 3 470E- 09 2.190E- 09 23 80467.44 1.12 0E - 09 1.030E-09 1.370E-09 1.000 E-09 2 190E-09 3. 2 40 E-0 9 3. 0 5 0E- 09 1.9206-09 PECP7R 00WNWINO WEIGH 7ED AVERAGES S E C/ M *
- 3
- 13. O!STA9CE N - (9) NNE -(10) NE -(11) ENE -(12 ) .E -(13) ES E -( 14) SE -( 15) SSE - 416) 1E 75R S 180.0 202.5 225.0 247.5 270.0 292.5 315.0 337.5 1 201 20 1. 810E- 06 6.160 E- 06 9.780E-06 2.9 00 E-06 2 .6 70 E-06 1. 750 E- 0 6 1. 8 90E- 06 1. 810E - 06 2 402.30 5. 8 9 0E - 07 2 070E-06 3.090E-06 9. 2 7 0 E-0 7 8.78 0 E-0 7 6. 660E-0 7 6. 0 20E- 0 7 5. 64 E-07 3 804.70 2.160E- 07 7. 8 8 0E-07 1.110E-06 3.040E-07 3.16 0 E-0 7 2. 790 E-0 7 2. 740E- 07 2. 810E- 0 7 4 1207.00 1. 38 0E- 0 7 4. 7 70E- 07 6. 4 8 0 E-0 7 1. 790 E-0 7 1.9 30 E-0 7 1. 460 E-0 7 1.780E-07 2 410E-07 5 1609.40 1. 09 0E - 07 3. 42 0 E- 07 4. 54 0E -0 7 1.310 E-07 1 480E-07 1 120E-07 1. 4 80 E- 0 7 1. 810E-0 7 g 6 2414.00 7. 98 0E- 08 2.12 0E- C7 2. 7 8 0E -0 7 8 950 E-08 1.06 0 E-0 7 8.180 E-08 1. 400E- 0 7 1. 2 70E- 07 i 3218.70 6. 2 4 0E - 08 1.490E-07 1. 96 0 E-0 7 6.860E-08 8 . 380 E-0 8 7.820E-08 1. 010E- 07 9. 8 90E- 08 i 7
c 4023.40 5.110E - 08 1.120E-07 1. 48 0 E-0 7 5. 5 30 E-08 6.8 40 E-08 5. 290 E-0 8 8.140E- 0 8 6. 9 70E-0 8 9 4828.10 4. 26 E- 0 8 8. 8 8 0E - 08 1.180E-07 4.610 E-08 5.730E-08 4. 4 20 E-0 8 4.6 70E- 08 5. 6 8 0E - 08 l 10 5632.70 3. 640E- 08 7. 2 5 0 E - 08 9.740E-08 3.950E-08 4.910E-08 3.770E-08 4. 040E- 0 8 4. 5 70E- 08 11 6437.40 3.16 0E - 0 8 6.080E-08 8.230E-08 3.440E-08 4. 2 70 E-0 8 3.270E-08 3. 5 5 0E- 08 3. 92 0E- 0 8 12 7242.10 2. 7 8 0E - 08 5.190E-08 7.090E-08 3.040E-08 3.7606-08 2.880E-08 3.16 0E- 0 8 4. 86 0E- 08 3 13 8046.80 2. 48 0E - 08 4. 510 E- 08 6.200E-08 2.7 20 E-08 3.360 E-0 8 2.560E-08 2.8 40E- 08 5. 0 00E- 08 l 14 12070.10 1 580E- 08 2.660E-08 3. 76 0 E-0 8 1.770E-08 2.140 E-0 8 1. 6 30 E-0 8 1. 860E- 0 8 2. 9 30E- 08 15 16093.49 1.14 0E- 0 8 1. 8 2 0 E- C8 2. 640 E-08 1.3 00 E-08 1 540 E-08 1.170E-08 1. 3 70E- 08 2. 240E- 0 8 16 24140.29 7.15 0E - 09 1.060E-08 1.000E-08 9.3 70 E-09 9.6 50 E-09 7 290E-09 1.100E- 08 1. 310E- 08 17 32197.00 5.14 0E - O c 7. 3 2 0 E-09 1 130E4 8 7 170E-09 6.910 E-09 6. 790 E-0 9 1.130E- 08 6. 740E- 09 18 40233.79 3. 98 0E- 09 5.510E-09 8.690E-09 6.2 80 E-09 6.9 30 E-09 5. 0 70 E-09 7. 0 20E- 09 3.9206-09 19 48280.48 3. 2 3 0E - 09 4. 3 90E-09 7.0206-09 3.8 70 E-09 5.3 50 E-09 4.150 E- 09 4.110E-09 3. 3 7 0E- 09 20 56327.29 2. 710E - 09 3.630E-09 5. 86 0 E-0 9 3.2 60 E-09 3. 6 30 E-09 3.090E-09 3. 8 00E- 09 2. 610E- 09 21 64373.99 3. 310E - 09 3. 0 7 0E-09 5.010E-09 2.810 E-09 3.110E-09 2. 360 E- 0 9 2.990E-09 2. 3 50E- 09 22 72420.75 2. 960E - 09 2. 66 0E- 09 4.370E-09 2.470E-09 2.720E-09 2.060E-09 2. 6 8 0E- 09 2. 2 50E- 09 23 80467.44 2. 6 00E - 00 2. 3 40 E -09 3. 86 0 E -0 9 2.190 E-09 2 400 E-09 1.830E-09 2.390E-09 1. 9 9 0E- 09 48
i I
i 1
l l TABLE 4.1-2 DEPLETED RELATIVE CONCENTRATIONS PER UNIT EMISSION FOR BUILDING REACTOR VENT FOR JULY THROUGH SEPTEMBER, 1977 l X/O DEPLETED l 9ECP7R 00wNw!NO hEIGHTEb AVERAGES SEC/M*t3 NO. DISTANCE 5- (L) 55n- (2) Sn- (3) w5w - (4) d -(5) nNW - ( 6) Nw - ( 7) NNw - (8)
(E 7ER S 0.0 22.5 45.0 67.5 90.0 112.5 135.0 157.5 i
1 201.20 1. 09 0E - 06 8.480F-07 4.870E-07 4.600 E-0 7 1.120 E-0 6 1.110E-06 1. 2 80E
- 06 1. 3 90E- 06
! 2 402.30 1. 7 2 0E - 06 9. 5 4 0 E- C7 2. 3 2 0 E-06 L.130E-06 1.2 3C E-0 6 6.800E-07 4. 3 7 0E- 0 7 4. 2 00E - 0 7 l 3 804.70 1. 04 0c - 06 6.940E-07 7.650E-07 4.600E-07 7.980E-07 1. 2 40 E- 0 6 1. 6 9 0E- 0 7 1, 5 7 0E - 0 7 4 1207.00 4. 9 8 0E- 07 3. 310 E- 07 3.780E-07 2 .9 90 E-0 7 3.2 50 E-0 7 2.890 E-0 7 9.0 66E-0 8 1.10 0E- 07 1 5 1609.40 3. 00 0E - 0 7 1.990E-C7 2.280E-07 1. 9 70 E-0 7 3.0 8 0 E-0 7 8.1506-08 7.680E-08 9. 410E - 0 8 l 6 2414.00 1. 49 0E - 07 1. 0 00 E -07 1.150E-07 6.090 E-08 6.530E-08 6.350E-08 6.3 20E- 0 8 7. 500E- 0 8 l i 7 3218.70 9. 2 2 0E - 08 6. 210 E-08 5.210E-08 5.0 90 E-08 5.710E-08 5.130 E-0 8 5. 2 30E- 0 8 5. 9 8 0E - 08 I l 8 4023.40 6. 38 0E - 08 4. 2 90E- 08 3.890E-08 4.000 E-08 5 550 E-08 4. 22 0 E- 0 8 4. 3 70E- 0 8 4. 86 0E- 0 8 )
9 4828.10 4.7002-08 3.490E-08 3.730E-08 3.230E-08 4.860E-08 3.530E-08 3. 7 00E- 0 8 4. 02 0E - 0 8 l 10 5632.70 3. 7 30E - 0a 2. 6 6 0 E-08 3.430E-08 2.660 E-08 4.320E-08 3. 0 20 E- 0 8 3.190E- 0 8 3. 4 00E- 0 8 )
11 6437.40 3. 3 2 0E - 08 2.230E-08 2. 7 3 0 E-0 8 2.240E-08 3.68 0 E-08 2.630E-08 3.340E-08 2. 9 2 0E- 0 8 i 12 1242.10 2. 7 3 0E - 08 1. 92 0 E-08 2.410E-08 1.920E-08 3.590E-08 2.320E-08 2.9506-08 2. 5 50E- 08 l 13 8046.80 2. 400E - 08 L.600E-08 1.840E-08 1.530E-08 2.710 E-0 8 4.520E-08 4. 5 30E- 0 8 2. 5 2 0E- 08 j 14 12070.10 1. 310E - 08 9. 5 40 E-09 1.160E-08 8.860E-09 L.670E-08 2. 560 E-0 8 2. 3 7 0E- 0 8 1. 62 0E- 0 8 )
15 16093.49 7.15 0E - 09 5. 7 40 E- 09 7.750E-09 5.980E-09 1.070E-08 1.560E-08 1. 460E- 0 8 8. 810E - 09 l 16 24L40 29 4. 050E - 09 3.430E-04 4.320E-09 3.0 00 E-09 6 .4 7 0 E--09 9.110 E-09 7.6 6 0E-09 4. 5 3 0E- 09 l
- 2. 82 0E - 00 2. 2 90 E- 09 2.810E-09 1. 510 E-09 4.140 E-0 9 4.910 E-0 9 4. 4 00E- 09 17 32187.00 3. 5 50E- 09 18 40233.79 2. 08 0E - 09 1. 5 7 0E- 09 1. 44 0 E-0 9 9.9 60 E- 10 2 . 5 80 E-0 9 3.060E-09 3. 0 00E- 09 2. 9 40E- 09 to 48280.48 1. 3 50E - 09 1.15 0 E-09 1. 07 0 E-0 9 7.820E-Lo 1.6 20 E-0 9 2.290E-09 2.180E- 09 2.171 -09 20 56327.29 1. 02 0E - 09 7.760E-10 8.040E-10 5.9 30 E- 10 1. 2 20 E-0 9 1.7906-09 1.710E-09 1. 9 7 0E- 09 21 64373.99 8. 3 7 0E - 10 5.580E-10 6.450E-10 7.090E-10 9.800E-10 1 450E-09 1.3 80E- 09 8. 910E- 10 22 72420.75 9. 4 8 0E - l o 7.800E-10 5.400E-LO 3.770E-10 8.0906-10 1.200E-09 1.130E -09 7. 39 0E- 10 l 23 80467.44 8. 3 6 0E - 10 6.750E-10 4.520E-LO 3.150E-10 6.790E-10 1.010 E-0 9 9. 480E- 10 6.180E- L O l
}
RECPTn 00WNWINO hETCHTED AVERAGE 5 S EC/ M* *3 N3. 3tSTANCE N - (H AN5 -(tal NE -(L1) ENE -(12) E -(L3) E5 E -( 14 ) SE -115) SSE -(16) 1E TE8 5 180.0 202.5 225.0 247.5 270.0 292.5 315.0 337.5 1 201.20 1.6906-06 5. 7 6 0E - 06 9.130E-06 2.710 E-06 2. 500 E-0 6 1. 6 30 E- 0 6 1. 7 70E- 0 6 L . 6 9 0E - 06 2 402.30 5.2904-07 L . 8 6 0E -06 2. 7 7 0E46 8.350E-07 7.9 20 E-0 7 6. 060 E-0 7 5. 3 90E- 0 7 5. 04 0E- 0 7 3 804.70 1.88 -07 6. 8 80E-07 9. 6 2 0E -0 7 2.650E-07 2.7606-07 2.500E-07 2. 4 30E- 0 7 2. 5 2 0E - 0 7 4 1207.00 1. 2 00E - 07 4.100E-07 5.480E-07 1.520E-07 1.6 60 E-0 7 1.280E-07 1. 5 70E- 0 7 2.2 00E- 07 I 5 1609.40 9.4705-08 2.920E-07 3. 8 0 0 E -0 7 L .110 E-0 7 1.270E-07 9. 8 60E-0 8 1. 3 20E- 0 7 L . 6 5 0E - 0 7 1 6 2414.00 7. 02 0E - 08 L . 7 90E-07 2 300E-07 7.620E-08 9.310E-08 7. 2 70 E- 0 8 1. 2 90E- 0 7 1.160E - 0 7 7 3218.70 5. 5 3 0E - 08 1. 2 5 0E- 07 1.600E-07 5.840E-08 7.370E-08 7.0505-08 9.2402-08 9. 06 0E - 0 8 8 4023.40 4. 4 9 0E - 08 9. 2 6 0 E-08 1.200E-07 4. 7 00 E-08 6.0 20 E-0 8 4. 7 00 E- 0 8 7.460E-08 6 320E-08 9 4828.10 3. 74 0E - 08 7. 210E - 08 9.400E-08 3.910E-08 5.030E-08 3 910E-08 4.160E-08 5.14 0E- 02 ,
10 5632.70 3.1806-08 5.820E-08 7.670E-08 3.340E-08 4.3 00 E-0 8 3.320E-08 3.600E-08 4.100E- 0 8 j 11 6437.40 2. 7 5 0E - 0P 4. 8 30E-03 6.
- 3 0 E -0 8 2.900E-08 3. 7 40 E-0 8 2.870E-08 3.160E-08 3. 510E - 0 8 l 12 7242.10 2. 42 0E - 08 4.080E-C8 5.490E-08 2. 560 E-08 3. 2 9 0 E-08 2. 5 20 E- 0 8 2. 810E- 0 8 4. 3 40E - 0 8 l 13 8046.80 2.15 0E - 0 8 3. 5 2 0 E- 08 4.780E-08 2.2905-08 2.930E-08 2. 240E-0 8 2. 52 CE- 08 4.12 0E - 0 8 l 14 1207C.10 1. 3 60E - O R 2.000E-08 2. 82 0 E-08 1.480E-08 1.8 50 E-08 L.400E-08 1. e 50E- 0 8 2. 310E - 0 8 15 16003.49 9. 76 0E - 09 1.330E-08 1.940E-08 1.0 80 E-06 1.3204:-08 9.990E-09 1. 210 E- 0 8 1. 2 5 0E - 08 16 24140.2c 6.0202-09 7.4006-09 1.140E-08 7.720E-09 8.140 E-0 9 6 110 E- 0 9 9. 6 7 0E- 09 6. 7 00E - 09 L7 32187.00 4. 2 00E - 0 0 4.900E-Oo 7.820E-Oc 5.650E-09 5.760E-Oo 4. 710 E-0 9 6.300E-09 5. 2 5 0E - 09 18 40213.79 3. 2 9 0E - 09 3.570E-C9 5. 86 0E-0 9 4.0 80 E-09 3.950E-09 3. 4 20 E-0 9 5.2906-09 3. 310E- 09 19 48230.46 2. 6 5 0E - 09 2. 7605-09 4.630E-09 3.060 E-09 3.200E-09 2.510E-09 3. 5 9 0E - 09 2. 810E - 09 20 56327.29 2. 210E - 00 2.220E-00 3.800E-00 2. 5 60 E-09 2 930E-09 2.330E-09 3. 310E - 0 9 2. L 8 0E- 09 21 64373.90 1. 42 0E- 09 1.830E-09 3.190E-09 2.190c-09 2.490 E-0 9 1.860E-09 2.6002-09 1. 96 0E - 0 9 22 72420.75 9.750E-10 1.5505-09 2. 75 0E-09 t.910E-09 2.160 E-0 9 1.610E-09 2.3305-09 1. 8 2 0E - 09 23 80467.44 8.17 & -10 L . 3 4 0E-09 2.400E-09 1.680E-09 1.900 E-09 1.420E-09 2.0 7 0E- 09 ,1. 6 00E - 09 49
m, TABLE 4.1-3 RELATIVE DE?0SITION CONCENTRATIONS PER UNIT EMISSION FOR BUILDING REACTOR VENT FOR JULY THROUGH SEPTEMBER, 1977 ,)
i O/O ]
RECPTR 33WNWINO 'E10H7E0
. AvfRA0FS 1/Me*3 NO. 0157ANCE 5- (L) 55W - (2) Sn - 43) m5W - (*) u- 45) wNw - ( c ) NW - ( 7) NN w - tel M E TER S 0. 0 22.5 45.0 67.5 90.0 112.5 135.0 157.5 1 201.20 5.110E - 08 4. 62 0 E- 08 1.110E-08 1.2 70 E-08 3.680E-08 3. 0 30 E- 0 8 2.340E-08 2. 360E- 08 2 402.30 3.070E-08 2. 3 3 0 E-08 1.390E-08 1.500E-08 2 .650 E-0 8 2.330E-08 1.210E-08 8. 7 7 0E - 09 3 804.70 1. 310E - 08 9.16 0E-09 5.110E-09 5.340E-09 9.230E-09 1.0 20 E-0 8 4. 5 90E- 09 3. 5 30E- 09 4 L 2 07.00 6. 460E- 00 4. 510E- 09 3.010E-09 2.750E-09 4.4 70 E-09 4. 3 30 E-0 9 2. 3 30E-09 2.190E- 0 9 !
5 1609.40 3. 85 0E - 09 2. 7 2 0E- 09 1.810E-09 L . 7 70 E-09 2.710 E-09 2.140E-09 1. 5 5 0E- 09 1. 5 2 0E - 09 I 6 2414.00 1. 8 5 0E - 09 1.310E-09 8.510E-10 7.100E-10 1.160 E-0 9 1.L40E-09 8.3 7 0E- 10 0. 3 90E- 10 i 7 3218.70 1.10 0E - 09 7.780E-10 2.640E-10 4. 4 20 E-10 7.340E-10 7. 300 E- 10 5. 3 8 0E- 10 5. 43 0E - 10 8 4023.40 7. 44 0E- 10 5.210E-10 L.810E-10 3.0 30 E-10 5.060E-10 5.090E-10 3. 760E- 10 3. 8 20E- 10 9 4828.10 5. 47 0E - 10 3.5209-10, 1.3306-10 2.2005-L0 3.670E-10 3. 73 0E- 10 2. 7 70E- 10 2. 8 3 0E - 10 to 56 32.70 4.100E - 10 2.830E-10 1.140E-10 L .6 80 E-10 2.800E-10 2. 860E- 10 2.130E- 10 2.180E- 10 11 6437.40 2. 7 3 0E- 10 2.1806-10 1.200E-10 1. 3 20 E-10 2 200 E-10 2. 2 8 0 E- 10 1.710E-10 L.730E-10 12 7242.10 L . 98 0E - 10 1.710E-10 7.070E-11 1.090 E- 10 1.830E-10 1. 86 0 E- 10 1. 3 8 0E- 10 1. 4 00E- 10 13 8046.80 1. 7 6 0E - 10 1.340E-10 9.380E-11 1.010 E-10 2.0 30 E- 10 1. 690 E- 10 1. 310E- 10 1.160E- 10 14 12070.10 1. L 8 0E - 10 7.010E-11 5. 96 0E -11 5.6 90 E-11 1.060E-10 1.320E-10 6.140E- 11 5. 530E- 11 15 16093.49 6. 0 30E - 11 3. 5 00E-11 2.270E-11 2.680E-11 7.660E-11 5. 370 E- 11 1.030E-10 6.090E-11 16 24140.2c 3.140E - 11 1. 7 7 0E-11 2.150E-11 2.190 E-11 3.000E-11 5. 200 E- 11 4.2 30E- 11 2. 810E- 11 17 32187.00 2.12 0E - 11 1.070E-11 1.060E-11 9.200E-12 1.750 E-11 2.140 E- 11 1. 790E- 11 2.9106-11 l
18 40233.79 1. 42 0E - 11 7.330E-12 5.740E-12 5.890E-12 1.250E-11 1.170 E- 11 1.110 E- 11 8. 9 00E- 12 19 48280.48 8. 32 0E - 12 6.530E-12 4.090E-12 4.460E-12 1.150 E-12 8.250E-12 7.6 5 0E- 12 8. 04 0E- 12 20 56327.29 5. 94 0E - L 2 4.450E-12 2.870E-12 3.270E-12 5.100 E- 12 6.160 E- 12 5.7306-12 4. 3 00E- 12 21 64373.99 4.7206-12 3.100E-12 2.230E-12 2.990E-12 3.950E-12 4. 810 E- 12 4. 4 4 0E- 12 4.410E-12 22 72420.75 1. 3 50E - 12 2.950E-12 1.850E-12 1.960E-12 3.19 0 E-12 3. 860 E- 12 3.580E-12 3. 5 5 0E- 12 23 80467.44 2. 78 0E- 12 2.4802-12 1.520E-12 1.610E-12 2.610 E-12 3 .160 E- 12 2.9 30E- 12 2. 910E- 12 RECP7R 00WNWINO hEIGHTED AVERAGES 1/M**3 NO. 0157ANCE N - in NNE - t 101 NE -ull Eht -(12) E -4131 Es t -414) SE -t 15) 55E -ile) 1E 7!R S 190.0 202.5 225.0 247.5 270.0 292.5 315.0 337.5 1 201.20 3.9005-08 1.990E-07 2.660E-07 4. 7 80 E-08 5.210 E-0 8 3.450E-08 3.6 30E- 0 8 4. 2 50E- C 8 2 402.30 1.540?-08 7. 6 5 0 E- 08 9.850E-Os 1.940E-08 2.110 E-0 8 L . 7 40 E- 0 8 1.400E-08 1. 5 60E- 0 8 3 804.70 5. 9 7 0E - 09 2. 8 4 0E- 08 3.490E-08 7.350E-09 8 .06 0 E-0 9 7.220E-09 5. 36 0E- 09 5. 8 90E- 09 4 1207.00 3. 3 7 0E- 09 1. 5 30 E- 08 1.820E-08 3.870E-09 4 . 3 20 E-0 9 3.580E-09 2.180E- 09 3.190E- 09 5 1609.40 2. 2 00E - 09 9.660E-79 L.120E-08 2.400E-09 2.720 E-09 2. 310 E-0 9 1 7 70E-09 1. 9 50E- 09 6 24L4.00 1.15 0E - 0 9 4.910E-09 5. 6 00E -09 1. 210 E-09 1.390 E-09 1.200E-09 9. 3 00 E- 10 9. 74 0E- 10 7 3218.70 7. 3 0 CE - 10 3. 0 5 0 E- 09 3.440E-09 7.480E-10 8.660E-10 7.790E-10 5.650E-10 5. 990E- 10 8 4023.40 5. 07 0E - 10 2.090E-79 2. 3 5 0 E-09 5.130 E-10 5.960E-10 5 290E-10 3. 8 50E- 10 4. 03 0E - 10 J 9 4828.10 3. 7 3 0E - 10 1. 5 4 0E - 09 1.720E-09 3. 750 E-10 4.370E-10 3.870E-10 2.7406-10 2. 96 0E - 10 10 5632.70 2. 8 7 0E - 10 L .18 C E - 09 L.320E-09 2.870E-10 3.350E-10 2.970E-10 2.110E- 10 2. 2 60E- 10 11 6437.60 2. 2 7 0E - 10 9.290E-10 L.040E-Oc 2.270E-10 2.6 50 E- 10 2.360E-10 1. 6 7 0E- 10 1. 7 80E- 10 L2 7242.10 L. 84 0E- 10 7.500E-10 S. 42 0E -10 1.8 40 E-10 2 .15 0 E- 10 1. 9 20 E- 10 1. 3 50E- 10 1 540E- 10 13 0046.80 1.5205-10 6.190E-10 6.950E-10 1. 5 3 0 E- 10 1.790E-10 1.590E-10 1.110E- 10 1. 6 2 0E- 10 14 12070.10 7.3106-11 2.c50E-10 3.280E-10 7. 310 E- 11 8 . 5 7 0 E- 1 1 7. 730E- 11 5.300E-11 1. 4 50E- 10 15 16093.49 4. 37 0E - 11 1.750E-10 1.930E-10 4.360E-11 5 120E-11 4.660E-11 3. L 30E- 11 6.18 0E - 11 16 24140.29 2.1308-11 8. 5 006- L1 9. 3 4 0 E -11 2.140E-11 2.5 20 E- L 1 2. 3 30 E- 11 1. 4 80E- 11 2. 8 80E- 11 L7 ?2187.00 1. 2 9 0E - 11 5.1'0E-11 5.660E-L1 1.390E-11 1.560E-11 2. 610 E- 11 3.190E- 11 1. 310E- 11 18 40233.79 8. 7 6 0E - 12 3. 4 90 E - 11 3.830E-11 1.900E-11 3.0 30 E-11 1.550E-11 1.010E-11 6.17 0E- 12 19 4?280.48 6.3305-12 2.5306-11 2.780?-11 S.890?-12 1.8106-L1 1. 290 E- 11 4.3005-12 4. 6 3 0E - 12 20 56327.20 4. 9 3 0E - 12 L.c20E-11 2.1306-11 5. 3 00 E - 12 6.200E-12 6.7906-12 3.6 30E- 12 3. 3 8 0E - 12 21 64373.99 6. S 7 0E - 17 1.5106-11 1.690E-11 4.380E-12 5.020c-L2 4. $40E- L 2 2. 6 4 0E - 12 2. 8 8 0E - 12 22 72420.75 4. 2 00E - 12 1.230!-11 1.380E-11 3.660E-12 4. 200 E- 12 3. 740E- 12 2.2 70E- 12 3. 0 7 0E - 12 23 9046'.44 3.4405-12 L.020E-11 1.150E-11 3.110 E-12 3.570E-12 3.140 E- 12 1. 9 4 0E- 12 2. 710E- 12 ?
50
r l
l l .
.+%.
l TABLE 4.1-4 )
UNDEPLETED RELATIVE CONCENTRATIONS PER UNIT EMISSION FOR BUILDING REACTOR VENT FOR OCTOBER THROUGH DECEMBER, 1977 X/O g RECP79 m% h ] WEf %760 AVERA0ES S E C/ * *3
- 10. 0lSTANCE 5- (1) SSn - U) Sn - (3) wi= - (*) w- 15) aNW -(6) Nw - ( 7) NNW - (8) ]
M TE3 5 0. 0 22.5 45.0 67.5 90.0 112.5 135.0 157.5 l 1 ?01.20 7. 0 7 0E - 0 7 1.600E-06 3.240E-06 1.700E-06 1 010E-06 1.460E-06 1. 6 50E - 06 2. 5 8 0E- 06 2 402.30 B. 9 9 0E - 0 7 1. 410 E - 06 4.650E-06 2. 5 20 E-06 1.29 0 E-0 6 5. 790E-0 7 5. 2 30E-0 7 8.15 0E- 0 7 3 804.70 4. 2 2 0E - 07 7.910E-07 1. 5 3 0E -0 6 9.530E-07 6.6906-07 4.650 E- 0 7 2 .18 0E- 07 3.110E - 0 7 4 1207.00 2.13 0E - 0 7 4.070E-07 7. 9 2 0 E-0 7 6.630E-07 3.170 E-0 7 1.8 30 E-0 7 1. 2 00E- 0 7 1. 94 0E- 07 5 1609.40 1. 32 0E - 07 2. 6 0 0 E- 07 5.010E-07 4.o 10 E-07 2.550 E-0 7 7.230E-08 8.8 30E-08 1. 4 3 0E - 0 7 6 2414.00 6.7003-08 1.350E-07 2. 5 8 0 E -0 7 1. 310 E -0 7 7.8605-08 4.660E-08 5. 790E- 08 9. 4 5 0E - 08 1
7 3219.70 4. 2 00E - 0 8 9.540E-08 1.150E-07 c .140 E-08 6.2 40 E-08 3.360E-08 4. 2 50E- 08 6.9006- 08 8 4023.40 2. 9 50E- 08 5. 9 90 E - 08 8. 2 0 0 E-08 7.140E-08 5.400 E-0 8 2.580E-08 3. 310 E- 0 8 5. 4 50E- 0 8 9 4828.10 2.2206-0A 4. 42 0E- C8 7.15 0 E -0 8 5.850E-08 4.420E-06 2.060E-08 2. 6 8 0E- 08 4. 410E - 08 to 5632.?O 1. 740E - 08 3.560E-09 6.450E-08 4.9 40 E-08 3.7 20 E-0 8 1.700E-08 2. 2 40E- 0 8 3. 6 7 E- 08 11 6437.40 1. 3 9 0E- 08 2.910E-08 5. 6 7 0E-08 4.270E-08 3.110 E-0 8 1.430E-06 2.150E- 08 3.130E- 08 12 7242.10 1.1406-08 2.420E-09 4.410E-08 3.970E-08 2.830E-08 1.230E-08 1.8606-08 2. 710E - 08 13 90 46. go c. 9 6 0E - 00 2. 0 40 E -08 4.12 0 E -0 8 3. 7 00 E-00 2 .710 E-08 1. 29 0 E- 0 8 2.420E-00 2. 6 00E - 08 14 12070.10 5. 52 0E- 00 1.110E-06 2.230E-08 2.0 00 E-08 1.500 E-0 8 7.270E-09 1. 2 70E- 0 8 1. 64 0E- 08 15 16093.49 3.720E-00 6. 940 E- 09 1.370E-08 1. 210 E-08 1.010 E-08 4.750E-09 1. 010E- 0 8 1. 2 8 0E- 08 16 24140.20 2.100E - 00 4.050E-00 8.100 E-09 7.660E-09 5 .410 E-09 2.750E-09 5. 8 60E- 09 7. 2 6 0E - 09 17 32187.00 1.4106-09 2.700E-09 5.490E-09 5.4005-09 3 .6 8 0 E-09 1.870E-09 4.0 20E- 09 4. 8 50E- 09 1 18 40233.79 1.0406-09 1. 8 9 0E-09 4.340E-09 4.010 E-09 2.830E-09 1.390E-09 3. 010E- 09 9. 440E- 09 i 19 48280.48 8. 310E- 10 1. 6 00 E-09 3.420E-09 3.180E-09 2.270E-09 1.100 E- 0 9 2. 4 00E - 09 2. 7 5 0E- 09 l 20 56327.29 6. 62 0E- 10 1.410E-09 2.800E-09 2.610 E-09 1.850E-09 8.970E-10 1.9 80E- 09 2.160E- 09 21 64373.99 5.7306-10 1.190 E-09 2.360E-09 1.980E-09 1.560 E-09 7.550E-10 1.6 70E- 09 1. 9 7 0E- 09 22 72420.75 4. 66 CE - 10 9.550E-10 2.030E-09 1. 8 90 E -09 1.330E-09 6.500E-10 1. 4 40E- 09 1. 6 90E- 09 23 90467.44 4. 09 0E - 10 8.360E-10 1.770E-09 1.6 50 E-09 1.160 E-0 9 5. 6 9 0E- 10 1.2602-09 1 480E - 09 RECP7p 00WNWN D hE1GHTED AVER AGES S EC/ M* *3 NO. 0157ANCE N - (9) NNE -(tal NE -(11) ENE -812), E -( 13 ) ES E -114) SE -t 15) SSE -(16) 4 E TER $ 180.0 202.5 225.0 247 5 270.0 292.5 315.0 337.5 1 201.20 1. 92 0E - 06 3. 3 5 0 E-06 6. 2 00 E-06 4. 5 40 E -0 6 4.6006-06 4. 910 E- 0 6 2.620E-06 9. 410E - 07 2 402.30 5. 69 0E - 0 7 1. 000 E-06 1. 8 3 0 E-0 6 1.370E-06 1 4 70 E-0 6 1. 6 70 E- 06 9 130E-07 3.110E - 0 7 3 804.70 1. 99 0E - 07 3.920E-07 7.15 0E-07 5.030E-07 5 .6 2 0 E-0 7 7.590E-07 4. 3 50E- 0 7 1. 500E- 07 4 1207.00 1. 22 0E - 0 7 2.530E-07 4.440E-07 3.1306-07 3 . 510 E-0 7 4.110 E-0 7 2. 6 40E- 0 7 1.110E - 0 7 5 1609.40 9. 98 0E - 0 8 1. 9 5 0 E- 07 3.280E-07 2.330E-07 2.630E-07 3.090 E-0 7 1.980E-07 8. 03 0E- 08 ,
6 2414.00 6. 05 0E - 08 1.350E-07 2.16 0 E-0 7 1.570E-07 1.7 60 E-0 7 2. 0 60E-0 7 1. 4 70E- 0 7 5.4 80E- 08 i
? 3218.70 4.650!-08 1.010E-07 1. 5 8 0 E-0 7 1.160E-07 1.310 E-0 7 1.710E-07 1. 000E- 0 7 4. 310E- 08 8 4023.40 3. 7 8 0E - 0 8 7. 9 8 0 E- 08 1.230E-07 9.100 E-08 1.0 20 E-0 7 1.160 E-0 7 7.610E-08 3. 040E- 0 8 9 4828.10 3.17 0E - 08 6. 5 00 E - 08 9. 92 0E -0 8 7.390E-08 8 . 29 0 E-0 8 9.280E-08 4. 910E- 08 2. 4 90E - 08 10 5632.70 2. 7 2 0E - 0 8 5. 4 3 0E- 08 8.240E-08 6.170E-08 6.9 20 E-08 7.6 40 E-0 8 4.0 70E- 08 2. 0 00E- 0 8 11 6437.40 2. 3 9 0E - 0 8 4. 6 3 0E- C8 7.000E-08 5.270E-08 5.8 9 0 E-0 8 6.440E-08 3. 4 5 CE- 08 1. 7 2 0E - 0 8 12 7242.10 2.110E-0A 4.010E-C8 6. 04 0 E-0 8 4 570E-08 5.1006-08 5 5 30E-00 2.9 80E- 08 2.18 0E- 0 8 13 8046.80 1. 8 90E - 08 3. 5 2 0E-08 5.290E-08 4.030E-08 4.480E-08 4. 8 20 E- 0 8 2. 610 E- 08 2.17 0E - 0 9 14 12070.10 1. 22 0E - 08 2.130 E-08 3.180E-08 2.480 E-08 2. 720 E-0 6 2.850E-08 1. 5 80E- 0 8 1. 2 50E- 08 15 16093.40 P. 92 0E- 09 1.4806-C8 2.210E-08 1.750E-08 1.900 E-08 1. 9 50 E- 0 8 1.100E-08 8. 8 90E- 09 16 24140.29 5. 6 50E- 0 9 8.800E-09 1.320E-08 1 170E-08 1.140 E-0 8 1.130 E- 0 8 7. 5 5 0E- 09 5.150E- 09 17 32187.00 4. 08 0E - 09 6 100 E-09 9.180E-09 8.680E-09 7.9 30 E-09 8.450E-09 6. 6 90E- 09 2. 8 90E- 09 18 40233.79 3.17 0E - 09 4. 6 00 E- 09 6.9$0E-09 7. 400 E-09 6.990 E-09 6. 2 40 E-0 9 4. 3 7 0E- 09 1. 6 90E - 09 19 48280.48 2. 5 8 0E - 09 3.670E-09 5. 56 0E-09 4.690E-09 5.440 E-09 4.960E-09 2. 8 00E- 09 1. 4 50E - 09 20 56327.20 2.170E - 00 3. 0 30 E-09 4. 6 00 E -09 3.910 E-Oc 3.980E-09 3.930E-09 2. 4 70E- 09 1.12 0E - 09 21 64373.99 2. 52 0E- 09 2. 5 7 0E- 09 3.910E-09 3.340E-09 3.380E-09 3.190E-09 1.9 8 0E- 09 1. 010E- 09 22 72420.75 2. 2 2 0E - 09 2. 2 2 0 E- 09 3.390E-09 2.920E-09 2.9 30 E-0 9 2.750E-09 1. 7 40E - 0 9 9. 53 0E- 10 23 80467.44 1. 940E - 0 C 1.950E-Oc 2. 98 0 E -09 2. 5 80 E-09 2.5 80 E-09 2. 410 E- 09 1. 540E- 0 9 8. 42 0E - 10 i
i m
51 1
i
_ _ _ _ _ _ _ _ _____________________d
J TABLE 4.1-5 DEPLETED RELATIVE CONCENTRATIONS PER UNIT EMISSION FOR 1 BUILDING REACTOR VENT FOR OCTOBER THROUGH DECEMBER, 1977 !
X/O DEPLETED RECPf4 DjwN w (N) WEI GH 750 AVER AGES S EC/ M*
- 3 NO. 315fAMCE 5- (16 55n - (2) 5=- (3) =5w - (*a n - ( 5) n Nw - ( 6 ) NW - ( 7) NN w - te)
ME TER S 0.0 22.5 45.0 67.5 90.0 112.5 135.0 157.5 i l
1 201.20 6. 6 00E - 0 7 1. 310 E- 06 3. 03 0 E-0 6 1. 590 E-06 1,7 8 0 E-0 6 1. 3 70 E-0 6 1. 5 40E- 0 6 2.
- 10E- 06 l' 2 402.30 8. 24 0E - 0 7 1. 3 00E-06 4.180E-06 2.320E-06 1.190 E-06 5.270E-07 4.6 70E- 07 7.250P 07 3 804.70 3. 6 3 0E - 0 7 6.790E-07 1.310E-06 8.620E-07 6.060 E-0 7 4.090E-0 7 1. 910E- 0 7 2. 690E - 0 7 -
4 1207.00 1. 7 7 0E - 0 7 3. 3 5 0 E- 07 6.510E-07 5.740E-07 2 .8 30 E-0 7 1. 640 E- 0 7 1 020E-01 1. 6 5 0E - 0 7 5 1609.40 1. 05 0E - 0 7 2. 090E-07 4.000E-07 3.780E-07 2.240E-07 6.0 70 E- 0 8 7. 4 70E- 0 8 1. 210E- 0 7 6 2414.00 5.12 0E - 08 1.040E-07 1.990E-07 1.15JE-07 6.750 E-08 3.9 30 E-0 8 4. 910E- 0 8 8. 04 0E- 08 7 3218.70 3. 09 0E - 08 6.350E-OS 9.810E-08 7. 960 E-08 5.360 E-0 8 2. 8 20 E- 0 8 3. 6 00E- 0 8 5. 92 0E - 08 8 4023.40 2. 09 0E - 08 4.310E-08 7.0106-08 6.160 E-0 8 4.6 30 E-0 8 2,150 E-0 8 2. 790E- 08 4. 610E- 0 8 9 4828.10 1. 5 30E - 0 8 3.510E-08 6. 03 0 E-0 8 5.000E-08 3.770E-08 1.700E-08 2. 2 4 0E- 08 3. 7 00E- 0 8 10 5632.70 1 240E- 0 8 2. 6 40 E-08 5 24 0E-08 4.2 00 E-08 3.150 E-08 1.390E-08 1. 8 60 E- 0 8 3. 0 7 0E- 0 8 11 6437.40 1.1005-00 2.18 0 E- 08 4.140E-08 3.600E-08 2.620 E-0 8 1.170E-08 1. 810 E- 0 8 2.600E-08 j 12 7242.10 9. 2 9 0E - 09 1. 84 0 E- 08 3.560E-08 3.180E-08 2.350 E-0 8 9. 940 E- 0 9 1. 560E- 0 8 2. 2 4 0E- 08 13 8046.80 7. 76 0E- Oc 1.620E-08 2. 75 0E-08 2.660E-08 1.720 E-0 8 9.570E-09 1.9 50E- 0 8 2.17 0E- 08 14 1207C.10 4. 04 0E - 09 8. 8 90 E-09 1.630E-08 1.4906-08 1.040E-08 4. 9 30 E- 0 9 1.040E-08 1. 340E- 0 8 15 16093.49 2.19 0E- 09 5.65 0E-09 1.050E-08 9.450E-09 6.600E-09 3.460E-09 5. 9 7 0E- 09 6. 960E- 09 16 24140.20 1.19 0E - 00 3.130 E-09 5.540E-09 4.900 E-09 3.850E-09 1.620E-09 3. 090E- 09 3. 54 0E- 09 17 32187.00 7. 95 0E- 10 2. 0 7 0E - 09 3.490E-09 2.420E-09 2.430E-09 8. 540 E- 10 1. 8 00E- 09 2. 6 70E- 09 18 44233.79 6. 010E - 10 1. 4 90 E- 09 1. 86 0 E-09 1.640E-09 1.48 0 E-09 5.6805-10 1. 2 30E- 09 2. 2 40E- 09 19 C 280.48 3. 690E - 10 9. 4 7 0E- 10 1. 3 ' 0 E -09 1.230E-09 9 .160 E- 10 4.19 0 E- 10 9.1706-10 1. 6 3 0E- 09 20 Se327.29 2. 74 0E - 10l 6. 040 E- 10 1. 04 0 E-09 9.4 70 E-10 6. 770 E- 10 3.230E-10 7.12 0E- 10 1. 510E- 09 21 64373.99 2. 2 30E- 10 4. 2 00E- 10 5.310E-10 1.100E-09 5. 3 20 E- 10 2. 5 8 0E- 10 5. 7 00E- 10 6.790E-10 22 72420.75 3. 3 50E - 10 6. 66 0E- 10 6.850E-10 6.150 E-10 4.340E-10 2.120 E- 10 4. 6 90E- 10 5. 6 0 0E- 10 23 80467.44 2. 900E - 10 5.750E-10 5.720E-10 5.130E-10 3.610E-10 1. 770 E- 10 3.9 30E- 10 4. 6 7 0E - 10 RECP7R l 00WNW IN O WEIGH 7ED AVER AGES SEC/M**3 NO. OlSTANCE N- (9) NNE -(10) NE -(11) ENE -(12) E -( 13 F ES E -419) SE -( 15) SSE -( 16) 1E 7ca 5 180.0 202.5 225.0 247.5 270.0 292.5 315.0 337 5 1l 201.20 1. 7 9 0E- 06 3.120E-06 5.790E-06 4.240E-06 4.300 E-0 6 4. 580 E- 0 6 2. 4 50 E- 06 8. 7 8 0E- 0 7 2 j 402.30 5. 06 0E - 0 7 8. 92 0E- 07 1.630E-06 1.220E-06 1. 310 E-06 1.490E-06 8.180E- 0 7 2. 7 7 0E- 0 7 3
)
804.10 1. 710E - 0 7 3. 3 80E- 07 6.150E-07 4.340E-07 4.870E-07 6.720E-07 3.8 80E- 07 1. 3 3 0E- 07 4 1207.00 1. 03 0E - 07 2.170E-07 3. 76 0 E-0 7 2.660 E-0 7 3.010E-07 3. 550 E-0 7 2. 3 20E- 0 7 9. 900E- 08
'~
5 1609.40 7. 5 3 0E - 0 8 1. 6 7 0E- 07 2. 7 7 0E-0 7 1.980E-07 2. 2 50 E-0 7 2. 6 80E- 0 7 1.740E-07 7.12 0E - 0 8 6 2414.00 5.100E - 08 1.17 0E- 07 1.840E-07 1.340E-07 1.5 20 E-0 7 1. 79 0 E-0 7 1. 290E- 0 7 4. 8 7 0E- 0 8 7 3218.70 3. 93 0E - 08 8. 7 9 0 E- 08 1.340E-07 9.900E-08 1.120 E -0 7 1. 48 0 E-0 7 8. 6 6 0E- 0 8 3. 8 40E- 08 8 4023.40 3. 2 0 E - 0 8 6.880E-08 1.030E-07 7.700E-08 8.7 30 E-0 8 9. 910 E- 0 8 6. 510E- 0 8 2. 68 0E- 0 8 9 i 4829.10 2. 68 0E - 08 5. 5 7 0E- 08 8.2606-08 6.210 E-08 7.0406-08 7.840E-08 4.130E- 0 8 2 190E- 08 to 5632.70 2. 30 0E - 08 4. 6 3 0 E- 08 6.820E-08 5.160E-08 5.8 40 E-08 6.400E-08 3. 390 E- 0 8 1. 7 50E - 08 11 6437.40 2. 010E - 08 3.930E-08 5. 75 0 E-08 4. 3 90 E-0 8 4.9 60 E-0 8 5.350E-08 2. 8 5 0E- 08 1. 5 00E - 0 8 12 7242.10 1. 7 8 0E- 08 3. 3 90E- 08 4.940E-08 3. 790 E-08 4.270E-08 4.560E-08 2.440E- 08 1. 910E- 08 13 8046.80 1. 59 0E - 0 8 2. 9 7 0E- 08 4.300E-08 3.330E-08 3.740E-08 3.950E-08 2.130E- 0 8 1. 750E - 08 14 12070.10 1. 0 3 0E - 0 8 1. 7 7 0E- 08 2.540E-08 2.020E-08 2.230E-08 2. 2 70 E-0 8 t.260E-08 9. 5 70E- 09 15 16093.49 7. 4 7 E - 09 1. 210E- 08 1.740E-08 1. 410 E-08 1. 5 40 E-0 8 1.520E-08 8.6 30E- 09 4. 9 90E - 09 16 24140.29 4. 7 00E - 09 7.030E-09 1.010E-08 9.260E-09 8.980E-09 8.520E-09 5.760E-09 2.6205-09 17 32187.00 3. 3 7 0E - 09 4. 7 90E-09 6.880E-09 6.5506-09 6.150E-09 5.280E-09 3. 510E- 09 2.190E-09 18 40233.79 2. 600E - 09 3. 5 6 0E-09 5.130E-09 4.680E-09 3.760 E-09 3.7706-09 2. 8 70E- 09 1. 3 8 0E- 09 19 48280.48 2.110E- 09 2.810E-09 4.040E-09 3.570E-09 3.020F-09 2. 720E-09 2. 0 20E- 09 1.18 0E- 09 20 56327.29 1. 76 0E - 09 2.300E-00 3.310E-09 2.950E-09 2.960 E-0 9 2.540E-09 1. 7 80 E- 0 9 8. 9 8 0E- 10 21 64373.99 1. 02 0E - 09 1. 9 3 0E- 09 2. 7 8 0 E -09 2.500E-09 2. 490 E-0 9 2.170E-09 1. 400E- 09 8. 0 8 0E- 10 22 72420.75 7. 210E - 10 1. 66 0E- 09 2. 3 90 E-09 2.170E-09 2 .140 E-09 1.850E-09 1. 2 30E- 0 9 7. 4 2 0E - 10 23 80467.44 6. 0 3 0E - 10 1.450E-09 2. 0 90E-09l 1.910 E-09 1.860E-09 1.600E-09 1. 0 80E- 09 6. 5 00E- 10 52
~,
TABLE 4.1-6 i RELATIVE DEPOSITION C0FCENTRATIONS PER UNIT DIISSION FOR BUILDING REACTOR VENT FOR OCTOBER THROUGH DECEMBER, 1977 O/O R ECP 7R 03WNWINO kEIGHTED AVE R AGE $ 1/M**3
- 40. DISTANCE 5- til 55'm- 82) 5n - 433 n' 5W - 143 w - 1H =NW -(68 NW - t 73 NNW - tal 1ETERS 0. 0 22.5 45.0 67.5 90.0 !!2.5 135.0 157.5 1 201.20 2. 500E - 08 4.920E-08 1.210E-07 5. 47 0 E-0 8 6.910 E-0 8 4. 9 30 E-0 8 4.i60E-08 6 460E-08 2 '402.30 1. 60 0E - 08 2. 3 50E- 08 6.250E-08 3. 78 0 E-08 3.300 E-08 1.960 E-0 8 1. 550E- 08 2. 2 2 0E- 0 8 3 804.70 6. 04 0E - 0 9 8. 9 7 0E- 09 2.070E-08 1.310E-08 1.130 E-0 8 7.460E-09 5.420E-09 7. 94 0E- 09 4 1207.00 2. 9 7 0E- 00 4. 5 5 0 E-09 1. 07 0E-0 8 6. 3 70 E-09 5.470E-09 3. 290 E- 0 9 2. 6 70E- 09 4. 3 90E-09 5 1609.40 1. 810E - 09 2. 7 30E- 09 6.380E-09 4.010E-09' 3.290E-09 1.790E-09 1. 700 E- 09 2. 82 CE- 09 6 2414.00 8. 70 0E - 10 1. 310 E- 09 3.060E-09 1.7 00 E-09 1.450E-09 8.900E-10 8.650E-10 1. 4 50E- 09 7 3218.70 5. 2 00E - 10 7.840E-10 1.540E-09 1.0 20 E-09 8.970E-10 5. 44 0 E- 10 5.3 50E- 10 8. 9 9 E- 10 8 4023.40 3. 500E- 10 5.280E-10 1.030E-09 6.8 8 0 E-10 6 .130 E- 10 5. 710 E- 10 3. 6 7 0E- 10 6.180E-10 9 4828.10 2. 5 8 0E - 10 3.540E-10 7.580E-10 , . 9 80 E-10 4.470E-10 2. 7 30E - 10 2. 7 00E- 10 4. 5 5 0E- 10 10 5632.70 1 420F-10 2.840E-10 6.010E-10 3. 7 80 E-10 3.*10E-10 2. 040 E- 10 2.0 7 0E- 10 3.4 80E- 10 11 6437.40 1. 3 3 0E - 10 2.180E-10 5.150E-10 2.980E-10 2.68 0 E-10 1.650E-10 1.640 E- 10 2.750E-10 ,
- 1. 010E - 10 1.710E-10 3. 75 0E-10 2.4 50 E-10 2.190E-10 1. 3 30 E- 10 1. 310E- 10 2.2006-10 i
12 7242.10 13 8046.80 8. 64 0E - 11 1.340E-10 3.550E-10 2.2606-10 2.120 E-10 1. 250 E- 10 1.2 40E- 10 1. 810E- 10 14 12070.10 5. 200E - 11 6. 960E- 11 1.900E-10 1.170 E-10 1.050E-10 8. 49 0 E- 11 6.140E- 1 1 8. 410E- 11 15 16093.49 2. 97 0E- 11 3.310E-11 8.720E-11 5.570E-11 7.0 20 E-11 4.9 00 E- 11 5. 8 5 0E- 11 7. 3 60E- 11 16 24140.20 1. 52 0E - 11 1.610E-11 5.290E-11 3.900 E-11 2 . 710 E- 11 2.960 E- 11 2. 5 30E- 11 3. 4 00E- 11 17 32187.00 9. 24 0E - 12 9.150 E- 12 2.790E-11 1.740E-11 1.570E-11 1.140 E- 11 1.250E-11 2.9 60E - 11 19 40233.79 5.7006-12 5.970E-12 1.730E-11 1.1406-11 1.120 E-11 7.150 E- 12 8.010E-12 1. 220E- 11 19 48280.48 3. 8 8 0E - 12 5.8606-12 1.220E-11 8.110 E-12 7.110E-12 5. 080 E- 12 5. 600E- 12 1. 010E- 11 {
20 $$32 7. 29 2. 79 0E - 12 4.240E-12 8.990E-12 6.040 E-12 5.2606-12 3. 790 E- 12 4.240E-12 5. 77 0E- 12 21 64373.99 2.19 0E- 12 2. 9 8 0 E- 12 6.970E-12 4 . 810 E-12 4.0 80 E-12 2.940 E- 12 3. 290E- 12 5. 340E- 12 22 72420.75 1. 510E- 12 2.380E-12 5.640E-12 3.790F-12 3. 290 E- 12 2. 3 70 E- 12 2. 660E- 12 4. 3 3 0E- 12 23 80467.46 1. 24 0E - 12 2. 010 E- 12 4.620E-12 3.100E-12 2.700E-12 1.9 40 E- 12 2.170E- 12 3. 5 40E- 12 RECPTR DOWNWIND hE!GM7EO AVERAGES 1/M**3 ,
NO. O!57ANCE N- ( 9) NNE -110) NE -111) ENE -(12) E -( 13 ) ES E -t 14 ) SE -( 15) SSE -416) 1E7ERS 180.0 202.5 225.0 247.5 270.0 292.5 315.0 337.5 1 201.20 3.0806-08 7. 3 40 E- 08 1.490E-07 9.180 E-08 1.180E-07 1. 540 E-0 7 7.550E-08 2. 7 50E- 08 2 402.30 1. 04 0E - 08 2. 5 00E- 08 5.090E-08 3.le0E-08 4. 2 40 E-0 8 5. 960 E-0 6 3.040E-08 1. 010E- 0 8 j 3 804.70 3. 66 0E - 0 9 8. 8 8 0 E-09 1.740E-08 1.110E-08 1.5 20 E-08 2. 300 E- 0 8 1. 2 00E- 08 3. 96 0E- 09 l 4 1207.00 2. 010E - 09 4.950E-09 9.300E-09 5.960 E-09 8 . 2 50 E-09 1.140 E- 0 8 6. 210E- 09 2 140E- 09 1 5 1609.40 1.2906-09 3.210E-09 5.880E-09 3.770E-09 5 240 E-09 7.390E-09 3. 9 70E- 09 1. 3 0CE- 09 6 2414.00 6. 640E - 10 1. 66 0E- 09 2.s10E-09 1.920E-09 Z.670E-09 %B30F-09 2.100E- 09 6. 4 6 0E- 10 7 3218.70 4.12 0E - 10 1.040E-09 1.85LQ 09 1.190E-09 1.660E-09 2.470E-09 1'. 270E- 09 3. 040E-10 8 4023.40 2. 840E - 10 7 170E-10 1 270549 l 8.140 E-10 1.140 E-09 1. 660 E-0 9 8. 6 30E- 10 2. 6 50E- 10 9 4828.10 2.090E-10 5. 2 90E- 10 9.360E-10 5.9906-10 8 .40 0 E-10 1.220E-09 6.160E- 10 1. 9 40E- 10 ,
10 56 32.70 1.6006-10 4.060E-10 7.180E-10 4.600E-10 6 .440 E- 10 9. 3 70E- 10 4.730E-10 1. 4 8 0E- 10 l 11 6437.40 1. 2 6 0E - 10 3.210E-10 5.670E-10 3.6 30 E-10 5.090E-10 7. 410 E- 10 3.740E-10 1.16 0E- 10 12 7242.10 1. 01 T- 10 2.570E-10 4. 56 0E- 10 2 . 9 20 E -10 4.100 E-10 5.960E-10 3.0 20E- 10 9. 6 5 0E- 11 13 8046.80 8.330!-11 2.120E-10 3. 75 0E-10 2.400E-10 3.3 80 E- 10 ' 4. 910 E - 10 2. 490E- 10 8. 8 50E- 11 14 !12370.10 1.9306-11 1.000E-10 1.770E-10 1.130E-10 1.600 E- 10 2.3406-10 1.190E- 10 6. 080E- 11 15 16093.49 2. 3 00E - 11 5.8906-11 1. 03 0E -10 6.6 60 E-11 9 .4 5 0 E- 11 1.390E-10 7. 0 40E- 11 3. 03 0E- 11 ,
16 124140.29 1 080E-11 2.760'- A r S+-He f-11 4.5ZOE-11 o . 6 30 E- 11 3. 2 90E- 11 1. 4 3 0E - 11 l 17 ' 3 218 7.QL 6J0E-17 . 2 0E-11 2.et0E-11 1.960E-11 2. 710 E- 11 5. 2 30 E- 11 2.930E-11 6. 3 50E- 12 1
'40217??9 4. 210E - 12 1. 0 7 0E - 11 1.900E-11 2.670E-11 3.950E-11 3. 2 30E- 1 1 1. 4 80E- 11 3. 9 00E- 12 l 19 48280.48 3.0205-12 7. 6 6 0E- 12 1.300E-11 9.050E-12 2.450E-11 2.490E-11 9.4 7 0E- 12 2. 790E - 12 1 20 56327.29 2. 3 3 0E - 12 5.850E-12 1.040E-11 6.080E-12 1.000 E-11 1.550E-11 7.2 30E- 12 2. 0 7 0E- 12 l 21 64373.99 4. 9 8 0E - 12 4.6905-12 8. 2 4 0E -12 5.6 40 E-12 8.0006-12 1 110E- 11 5. 560E- 12 1. 450E- 12 ;
22 72420.75 2.9405-12 3.890!-12 6.800E-12 4.720E-12 6.610E-12 9.0 50E- 12 4. 540E- 12 1. 510E- 12 J 23 80467.44 2. 410E - 17 3.300E-12 5.710E-12 4 030E-12 5.560E-12 7.500E-12 3. 760E- 12 1. 2 8 0E- 12 l
4 i m J 53
- \
l
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ .__ _ _ _ _ .J
. )
i
. 1
.l TABLE 4.1-7 !
UNDEPLETED RELATIVE CONCENTRATIONS PER UNIT EMISSION FOR l MAIN STACK FOR JULY THROUGH SEPTEMBER, 1977 X/O RECD 7R m% IN1 #197E0 AVOME5 5F0/ m 3
- 93. O!$TANCE 5- (t) 55w - (2) sn - U) n5n - (*) a - (5) wNd - 16 ) Nw - t 71 11w - (B)
ME TE# 5 0. 0 22.5 45.0 67.5 90.0 112.5 135.0 157.5 1 201.20 2. 64 CE - 04 2.310E-09 7.0 W ?9 6.040E-Oc 3.700E-09 6. 490 E- 0 9 2. 6 40E- 0 9 2. 2 0 0E - 10 2 402.30 2.14 0E - 0 7 1.850E-07 1.530E w? 1. 7 30 E-0 7 1.39 0 E-0 7 1. 6 20 E-0 7 5. 010E- 0 8 9. 5 50E - 09 3 804.70 1. 62 0E - 0 7 1 010E-17 5.480E-08 5 750E-08 6.9 20 E-0 8 8.150E-08 2.100E- 0 8 4. 9 90E - 09 i 4 1207.00 1.15 & -07 1. 310 E- 07 4.580E-08 6.960E-08 4. 3 20 E-0 8 3. 760E-0 8 L.2 30E-08 5. 6 8 0E - 09 j 3 110E-0 8 1. 2 50E- 0 8 9. 3 4 0E- 09 5 1609.40 1. 4 7 0E - 0 7 1.060E-07 5.300E-08 7. 9 20 E-08 2.760E-08 6 2414.00 1.160E - 07 9.9305-08 3.310E-08 2.4406-DE 1.970E-08 2.6 30 E-0 8 1. 610E- 0 8 1. 6 6 0E- 0 8 l 7 32!8.70 8. 47 0E - 08 6.140 E- 08 1.180E-08 2. 2 40 E-0 8 2.420 E-08 2.390E-08 1. 7 60E - 0 8 1. 9 5 0E - 0 8 l 8 4023.40 4. 76 0E - 08 3.040E-08 L.380E-08 1.980E-08 2 . 2 50 E-0 8 2 150E-08 1. 7 50E- 0 8 1. 9 7 0E - 0 8 1 9 4828.10 3.6405-08 1. 8 7 0E- 08 1.5LOE-08 1.940F-08 2.040E-08 1. 9 3 0E-0 8 1.650fa08 1. 8 70E- 0 8 l 10 5632.70 2. 3 9 0E- 08 1. 75 0E-09 1.680E-08 1.6 80 E-08 1.8 50 E-08 1. 7 20 E-0 8 1. 5 30E- 0 8 1. 7 3 0E- 0 8 l 11 6437.40 1. 69 0E- 08 1.460E-08 1.800E-08 1.560E-08 L .6 30 E-0 8 1.550E-08 1.410E-08 1. 6 00E- 0 8 l 12 7242.10 1. 340E - 08 1.230E-06 1.300E-08 1. 400 E-0 8 1.610E-08 1. 410 E-0 8 1.310E-08 1. 4 7 0E- 0 8 I 13 8046.80 1. 2 7 0E - 08 1.020E-08 1.550E-08 1.390E-08 2.610 E-0 8 1.970E-08 1. 9 5 0E- 08 1. 3 60E- 0 8 14 L2070.10 8. 02 E - 00 9.910E-09 9.750E-09 8. 3 00 E-09 1. 5 80 E-0 8 1. 28 0 E-0 8 1 2 80E- 08 9. 2 90E- 09 f L5 16093.49 7. 00 0E - 09 3.6309-09 5.080E-09 5.070E-09 8.2 50 E-0 9 7.870E-09 1.150E- 08 1. 210E - 0 8 j 3.180 E-09 3 .990 E-09 5. 8 7 0 E-09 7.190E- 09 6. 5 3 0E- 09 16 24140.29 4. 03 0E- 00 2 3 40E-09 3.500E-09 17 32187.00 2. 62 M - 09 1. 6 00E-09 2.460E-09 2 250E-09 2.8 70 E-09 5.170 E-0 9 5. 56 0E- 09 3. 9 6 0E- 09 18 40233.79 1. 84 0E - 09 1.110E-09 2.280E-09 1.330E-09 2.610E-09 4. 3 20 E-0 9 4. 3 6 0E- 09 2. 610E- 0 9 19 48290.48 1. 72 0E- 00 1.170E-09 1.820E-09 1. 280 E-09 2.450E-09 2. 290 E- 09 2.18 0E- 09 2.13 0E- 09 20 56327.29 1. 4 7 0E - 09 1 100E-09 1.430E-09 9.8 90 E- 10 1.2 50 E-09 1. 790 E- 09 2. 4 00E- 09 1. 610E- 09 21 64373.99 1. 2 2 0E - 09 8. 2 3 0E- 10 1.190E-09 8.1706-10 9.810E-10 1.600E-09 1. 9 40E- 09 1. 63 0E- 09 22 72420.75 6. 900E - 10 6.080E-10 L.070E-09 4.0 70 E-10 8 .10 0 E- 10 1. 200 E- 0 9 1.130E-09 1. 510E- 09 l 23 80467.44 6. 06 0E - 10 5.350E-10 9.310E-10 3.390E-10 6.8 00 E- 10 1.010 E-0 9 9.500E-10 1. 3 2 0E- 09 l R E CP TR 00WNWING hE10H7EO AVE G AGES S E C/ M *
M E TER S 180.0 202.5 225.0 247.5 270.0 292.5 315.0 337.5 1 201.20 9. 83 E - 10 3.330E-09 4.200E-09 1.640F-09 1.420E-09 9.040E-10 1. 3 40E- 10 2. 53 0E- 10 2 402.30 3 16 0E - 08 1.0706-07 1.370E-07 5.940 E-08 5.660 E-0 8 4. 360 E-0 8 6.820E-09 1.5900-08 3 804.70 1. 640E - 0 8 7. 5 7 0E- 08 8.490E-Oe 2.9 50 E-08 3.770E-08 4.730E-08 8. 4 3 0E- 09 4. 2 3 0E- 08 4 1207.00 1. 25 0E - 08 5. 510 E-08 5. 440 E-0 8 1.820E-08 2.270E-08 2.850E-08 7. 7 40e- 09 7. 960E- 08 5 1609.40 1. 3 8 0E - 08 5.160E-08 4.740E-08 1.5306-08 1 0 40 E-08 2 150E-08 9. 0 7 0E- 09 5.020E-08 6 2414.00 L. 7 5 0E - 08 5. 310E- 08 4.770E-08 L .400 E-08 1.890E-08 1.930E-08 1.6 40E- 0 8 2.110E - 08 7 3218.70 1. e5 09 - 08 5. 040 E- 08 4.740E-08 L.380E-08 2 .0 50 E-0 8 L.950E-08 1. 8 8 0E- 0 8 2.3 3 0E- 08 8 4023.40 1. 7 8 0E - 08 4. 5 40 E-08 4.440E-08 1. 3 30 E-0 8 2 .0 40 E-0 8 1. 9 30 E-0 8 1 8 90E- 0 8 1. 960E- 0 8 9 4828.10 1 65 CE - 08 4. 02 0E - 08 4. 05 0E -08 1.240E-08 1.940 E-0 8 1.730E-08 1 510E- 0 8 1. 7 30E- 08 10 5632.70 1. 510E - 0 8 3.550E-08 3.670E-08 1.160E-08 1 8 20 E-0 8 1.590E-08 1 440E-08 1 72 0E- 08 11 6437.40 1. 3 8 0E - 08 3.15 0 E- 08 3.340E-08 1.080E-08 1.700E-08 L.460E-08 1. 3 50E- 08 1. 5 00E- 0 8 12 7242.10 1. 2 7 0E - 0 A 2. 810 E- 08 3. 05 0E -08 1.020E-08 1.5 90 E-0 8 1. 3 50 E- 0 8 1. 2 70E- 0 8 2. 02 0E- 08 13 8046.80 1.17 0E - 08 2.520E-08 2.790E-08 9. 5 40 E-09 1.490E-08 1. 2 50 E- 0 8 1.190E-08 2.13 0E- 0 8 14 12070.10 8. 0 8 G - 09 1. 610 E- 08 1 890E-08 7.0 40 E-09 1.070E-08 8. 700 E- 0 9 8. 7 40E- 09 1 3 70E- 08 15 16093.49 6. 02 0E - 09 1.140E-08 1.400E-08 5.510 E- 09 8. 2 20 E-0 9 6. 520 E- 0 9 6. 7 5 0E- 09 1. 310E- 08 16 24140.29 3. 88 0E - 09 6. 7 70 E- 09 8.8606-09 3. 7 90 E-09 5.470 E-09 4. 210 E-09 4. 810E- 09 7. 6 7 0E - 09 17 32187.00 2. 840E - 09 4. 6 8 0 E- 09 6.390E-09 2.8 90 E-09 4.0 60 E-0 9 3.720E-09 5. 9 30E- 09 3. 5 00E- 09 18 40233.79 2. 22 0E - 09 3, 5 00E- 09 4.930E-09 2.9 20 E-09 4. 2 40 E-0 9 2.800E-09 3. 310 E- 09 2. 3 7 0E- 09 19 48280 48 1. 810E- 09 2. 7 5 0 E- 09 3 990E-09 2.410E-09 3.190 E-09 2. 320 E-09 2.2 70E- 09 1. 9 3 0E- 09 20 56327.29 1. 52 0E - 00 2.2506- 09 3. 3 30 E-0 9 1.640E-09 2 . 2 20 E-0 9 1.680 E- 0 9 1.9 30E- 0 9 1. 6 2 0E- 09 21 64373.99 1. b e 0E - 09 1. 8 90 E - 09 2.840E-09 1 4 30 E-09 1.920E-09 1.390E-09 1. 6 80E - 09 1. 390E- 09 22 72420.75 1. 8 5 0E - 09 1.620E-09 2.480E-09 1.270E-09 1.690 E-09 1.220E-09 L . 490E- 09 1. 2 4 0E- 09 23 90467.44 1. 62 0E - Oc 1.410E-09 2.190E-09 1.140 E-09 1 500 E-09 1.080E-09 1. 3 40E- 09 1. 0 90E - 09 i
54
TABLE 4.1-8 DEPLETED RELATIVE CONCENTRATIONS PER UNIT EMISSION FOR MAIN STACK FOR JULY THROUGH SEPTEMBER,1977 X/O DEP1.ETE D ,
RECP7R 03WNWINO hEfGH7E0 AVEnAGES S EC/ M* *3 NO. O!5TANCE 5- (1) 55m - (2) SW - (3) wSW - 141 m - 15 ) CN -(6) Nw - ( 7) NNW - (8) 9 E TER S 0. 0 22.5 45.0 67.5 90.0 112.5 135.0 157.5 1 201.20 2. 640E- 09 2. 310E-09 7.090E-09 6.090 E-09 3. 7 00 E-09 6. 490 E- 0 9 2. 64 0E- 09 2. 2 8 0E- 10 2 402.30 ' 2.190E - 0 7 1.890E-07 1.550E-07 1.750E-07 1.400 E-0 7 1.640 E-0 7 5.0606-08 9. 6 5 0E- 09 3 804.70 1. 7 00E - 0 7 1.060E-07 5.710E-08 5.940E-08 7.150 E-0 8 8. 440 E-0 8 2.170E- 08 5.15 0E- 09 4 1207.00 1. 2 00E - 0 7 1.390E-07 4.7*0E-08 7.190E-08 4.490 E-0 8 3. 9 70 E-0 8 1.290E-08 5. 8 90E - 09 5 1609.40 1. 5 6 0E - 07 2.100 E - 07 5.470E-08 8.2 70 E-08 2.900 E-0 8 3. 320 E-0 8 1.320E-08 9. 64 0E- 09 6 2414.00 1. 2 60E - 0 7 1.120E-07 3.430E-08 2. 5 70 E-08 2.090E-Os 2. 8 30 E- 0 8 1.6 8 0E- 08 1. 7 2 0E- 0 8 7 3218.70 9. 410E- C8 6.770E-00 1.260E-00 2.3 00 E-08 2. 5 80 E-08 2. 500 E-0 8 1. 8 60E- 0 8 2. 0 30E- 08 8 4023.40 5.110E - 08 3. 2 8 0 E-08 1.460E-08 2.130E-08 2.410 E-0 8 2.350E-08 1. 8 5 0E- 08 2. 060E- 0 8 9 4828.10 3. 9 2 0E - 08 2.030E-C8 1 600E-08 2.100 E-oa 2 210 E-08 2.110 E- 0 8 1. 7 5 0E- 0 8 1. 9 7 0E - 0 8 10 5632.70 2. 5 8 0E - 60 1. 910 E- 08 1 770E-08 1. 8 50 E-08 2.0 20 E-0 8 1. 8 90 E-0 8 1. 6 30E- 0 8 1. 8 30E- 08 11 6437.40 1. 8 3 0E - 0 8 1.590E-08 1.890E-08 1. 710 E-0 8 1. 79 0 E-0 8 1. 710 E-0 8 1. 510E- 0 8 1. 7 00E- 0 8 12 7242.10 1. 440E - 08 1.550E-08 1.370E-08 1.560E-08 1. 7 70 E-0 8 1.560E-08 1.4006-08 1. 5 7 0E- 0 8 13 8046.80 1. 3 90E - 08 1.130E-03 1.630E+09 1.560E-08 2.910E-08 2.160 E- 0 8 2. 0 8 0E- 08 1. 4 5 0E- 08 14 12070.10 8. 910E - 09 1. 2 2 0 E- 00 1.040E-06 9.5 80 E-09 1.810E-08 1. 420 E-0 8 1.3802-08 1. 010E- 0 8 1$ 16093.49 7. 8 8 0E - 09 6.230E-09 5.560E4 9 5.940E-09 9.420E-09 8. 9 4 0 E- 0 9 1. 2 40E- 0 8 1.420E-08 16 24140.20 4. 610E
- 00 h810E-09 3.890E-09 3.8 90 E-09 4.7 30 E-09 6. 7 30 E-09 7.8 30E- 09 8. 2 6 0E- 09 17 32187.00 3. 06 0E - 0 9 1.990E-09 2.780E-09 2.9 30 E-09 3.460 E-09 5. 9 30 E-0 9 6.140E-09 4. 4 50E- 09 j 18 40233.79 2. 210E - 09 1. 440 E- 09 2.630E-09 2.330E-09 3.140 E-09 6. 290 E-0 9 4.9 30E-09 2. 9 8 0E- 09 !
19 48200.48 2. 0 7 0E- Oc 1. 4 70 E- 09 2 130E-09 1. 7 80 E-09 3 .0 7 0 E-0 9 5. 990 E- 0 9 5.7106-09 2. 4 5 0E- 09 j 20 56327.29 1.7906-09 1.380E-09 1.870E-09 1.490E-09 3.380 E-09 4.9800-09 4. 2 3 0E- 09 1. 8 7 0E- 09 )
21 64373.99 1. 5002-09 1. 4 3 0E- 09 1.600E-09 1.160E-09 2.870E-09 4 190E-09 3. 6 00E- 09 2. 2 7 0E- 09 22 72420.75 9 320E-10 8 330E-10 1. 3 5 0 E-0 9 1.140E-09 2.490 E-09 3.680E-09 3. 4 80E- 09 1. 8 8 0E- 09 .
23 80467.44 8. 3 2 0E - 10 7.440E-10 1.200E-09 1.000 E-09 2 .190 E-09 3.240E-09 3.06 0E- 09 1. 6 5 0E- 09 RECPTR 00WNWIND HEIGH 7ED AVERAGES S E C/ M*
- 3 1 NO. DI57ANCE N - 49) NNE -110) NE -til) ENE -412) E -(13) E5 E -t 16 ) SE -4151 $$E -1161 N E 7ER S 180.0 202.5 225.0 247.5 270.0 292.5 315.0 337.5 ;
1 201.20 9. 83 CE- 10 3.330E-09 4.200E-09 1.6 40 E-09 1.4 20 E-09 9. 04 0 E- 10 1. 3 4 0E- 10 2. 53 0E- 10 !
2 402.30 3.190E - 08 1.080E-07 1.390E-07 6.000 E-08 5.7 20 E-0 8 4. 400 E- 0 8 6. 8 90E - 09 1. 6 00E- 0 8 3 204.70 1. 6 9 0E - 08 7. 8 2 0 E - 08 8.780E-08 3. 0 50 E-08 3.900E-08 4.890E-08 8. 7 00E- 09 4. 310E- O S 4 12 C 7.00 1. 310E- 08 5.790E-on 5. 73 0 E-0 8 1.920E-08 2.400E-08 3. 000 E-0 8 8.040E-09 8.110E- 98 5 1609.40 1. 4 5 0E - 08 5. 4 3 0 E- 08 5.020E-08 1. 6 3 0 E-08. 1.9 50 E-0 8 2 290 E-0 8 9. 3 80E- 09 5 110E- 0 8 1 6 2414.00 1. 84 0E - 08 5.610E-08 5.050E-08 1.500E-08 2.000 E-0 8 2. 0 5 0 E-0 8 1. 690 E- 0 8 2.160E- 0 8 '
7 3218.70 1. 95 0E - 08 5. 3 70 E- 08 5.030E-08 1.4806-08 2.160E-08 2.080E-08 1.9 50 E- 08 2. 410E - 0 8 8 4023.40 1. 890E - 04 4.890E-08 4.740E-08 1 420 E-08 2.160 E-0 8 2.0 50 E- 0 8 1.9 70E- 08 2. 03 0E- 08 9 4828.10 1. 76 0E - 08 4.350E-C8 4.3300-06 1.3 20 E-08 2 . 0 5 0 E-0 8 1. 8 50 E- 0 8 1. 5 8 0E- 0 8 1. 8 00E- 08 l 10 5632.70 1. 6 2 0E - 08 3. 8 7 0 E- 08 3.940E-08 1.240E-08 1.9 30 E-0 8 1.710E-08 1. 5 00E- 0 8 1. 7 9 0E- 0 8 I 11 6437.40 1. 49 0E - 0 8 3. 4 5 C E- 09 3.590E-08 1.160E-08 1.8006-08 1.570E-08 1.420E-08 1. 5 7 0E- 0 8 12 7242.10 1. 3 7 a - 18 3.100E-C8 3.290E-08 1.090E-08 1.690E-08 1. 460 E-0 8 1. 3 40E- 0 8 2.110E- 0 8 13 8046.50 1.2606-08 2. 8 00 E- 08 3.020E-08 1.020E-08 1.580E-08 1. 3 50 E- 0 8 1.260E-08 2. 2 3 0E - 08 i 14 12070.10 8. 8 7 0E - 09 1.840E-06 2.090E-08 7. 56 0 E-0 9 1.150 E-08 9. 540E-0 9 9. 2 7 0E- 09 1. 440E - 0 8 15 16093.49 0. 7 00E - 09 1.330E-C8 1. 56 0 E-08 5.9 50 E-09 8.900 E-0 9 7. 2 4 0 E- 09 7. 2 00E- 09 1. 4 2 0E- 0 8 16 24140.29 4. 3 9 0E - 0 9 8.250E-09 1.010E-08 4.140E-09 5.9906-09 4.770E-09 5.150E- 09 8. 44 0E- 09
, 17 32167.00 3.250E-00 5.P90E-09 7.440E-09 3.180E-09 4. 490 E-0 9 4 200E-09 6. 2 60E - 0 9 3. 7 80E - 0 9 18 40233.79 2 570E-00 4.5306-09 5. 84 0 E-0 9 3.180E-09 4.6 30 E-09 3. 210 E-0 9 3. 5 40E- 09 2. 6 00E - 09 19 44220.48 2.110E-Oc 3.660E-09 4. 7 8 0 E -0 9 2.640E-09 3.520E-09 2.680E-09 2.46 0E- 09 2.130E - 09 20 56327.29 1.7906-00 3.050L-0c 4 040E-09 1. 8 50 E-09 2.510E-09 2.000 E-0 9 2.10 0E- 09 1. 7 90E - 09 21 +4373.99 2.13 0E - 00 2. 610 E - 09 3.490E-09 1. 6 2 0 E -0 0 2 1806-09 1.680E-09 1. 8 30E- 0 9 1. 5 50E - 09 22 72420.75 2.3206-00 2.2006-09 3. 0 7 0 E -09 1.**0E-09 1.9 30 E-0 9 1.480E-09 1.630E-09 1. 3 7 0E- 09 23 93467.-4 2.050E 09 2.020E-Oc 2.740E-Oc 1.300E-09 1.730E-09 1.320E-09 1. 46 0E- 09 1. 210E- 09 l
55 L ____
I TABLE 4.1-9 RELATIVE DEPOSITION CONCENTRATIONS PER UNIT EMISSION FOR MAIN STACK FOR JULY THROUGH SEPTEMBER, 1977 O/O )
1 REco7t 00 mN w lN ) Mf M 780 AVEAAGES 1/ "* 3 i No. 7tS7ANCi 5- (1) SSn - (2) Sw - (3 ) uw - (4) w- (St wNd -(6) NW - ( 7) NNw - (8)
M E TER S 0.0 22.5 45.0 67.5 90.0 112.5 135.0 157.5 ,
1 201.20 2.84E-09 2.13 0E - 09 1. 2 2 0E-09 1.070E-09 1.550F-09 2.680E-09 1.18 0 E- 09 3. 3 7 CE- 10 2 402.30 1. J 3 0E - 08 9. 5 70E - 09 3.470E-09 3.190 E-09 4.910 E-09 7. 210 E-0 9 2. 4 90E- 09 7.17 T- 10 l 3 804.70 6. 9 5 0E - 09 4.8706-09 2.000E-09 1.9 50 E-09 3.150E-09 4.230E-09 1. 710E- 09 6. 2 0 0E- 10 i 4 1207.00 3. 49 0E - 09 3.110 E-09 1.090E-00 1.6906-09 1.950 E-09 2. 2 8 0 E- 0 9 1.190E- 0 9 6. 690E- 10 l 5 1609.40 2. 3 50E - 09 2.14 0E- 09 6.990E-10 1.2 50 E-09 1.260 E-09 1. 400 E- 0 9 9.090E-10 6. 4 3 0E- 10 6 2414.00 1.19 0E - 04 1.0106-09 3.470E-10 5.0 20 E-10 7.6 50 E-10 9.280E-10 5. 7 3 0E - 10 4. 7 2 0E- 10 7 3210.70 7.46 2 -10 5.7'OE-10 2.060E-10 3. 400 E-10 5.4 30 E- 10 6.040E-10 3. 90 0E - 10 3. 410E - 8 0 8 4023.40 4. 4 3 0E - 10 3.510E-10 1.450E-10 2.460E-10 4.000 E-10 4. 310 E- 10 2.8 30E- 10 2. 57 0E- 10 9 4828.10 3.2008-10 2.570E-10 1. 08 0 E-10 1.910 E-10 3 .030 E- 10 3.160 E- 10 2.120E-10 1. 9 8 0E- 10 10 5632.70 2. 50 0E - 10 1. c6 0E- 10 8.490E-11 1.4806-10 2 .600 E-10 2. 45 0 E- 10 1. 6 60E- 10 1. 5 80E- 10 l l 11 6437.40 1. 98 0E - 10 1. 5 5 CE- 10 6.870E-11 1.2 20 E-10 1.9 30 E- 10 1. 9 8 0 E- 10 1. 3 50E- 10 1. 3 00E- 10 7242.10 1.6205 10 1.270E-10 5.580E-11 1.000 E- 10 1.620E-10 1. 66 0 E- 10 12 1.130E- 10 1. 090E- 10 13 8046.80 1. 36 0E - 10 1.060E-10 4.730E-11 8.510 E-11 1.360E-10 1. 4 70 E- 10 9.9 70E- 11 9. 24 0E - 11 14 12070.10 6. 75 0E - 11 7. 7 4 0 E- 11 2.340E-11 4.200E-11 6.430E-11 7.330E-11 5.000E-11 4. 7 7 0E- 11 15 16093.49 4. 040E - 11 3. 2 7 0E- 11 1.470E-11 2. 610 E-11 *.100E-11 4. 540 E- 11 3. 0 20E- 11 3. 53 0E - 11 16 24140.29 2.13 0E- 11 1.700E-11 7.790E-12 1. 310 E-11 2.110 E-11 2. 340 E- 11 1.5206-11 2. 090E- 11 17 32107.00 1. 410E - 11 1.120 E- 11 5.180E-12 7. 910 E-12 1.330E-11 1. 470 E- 11 9. 4 5 0E- 12 8.630E-12 18 40233.79 1.010E-11 7.9106-12 3.680E-12 7.270E-12 8.890E-12 1. 4 20 E- 11 6. 770E- 12 5. 7 90E- 12 19 48280.48 7. 38 0E- 12 5. 6 9 0E-12 2.920E-12 4.G70E-12 6.470E-12 8.260E-12 7. 6 5 0E- 12 4.110E- 12 20 56327.29 5. 84 0E - 12 4. 3 6 0 E- 12 2.940E-12 3.290E-12 5 260E-12 6.160E-12 8. 2 30E- 12 3.120E- 12 i 21 6 43 7 3. C9 4. 66 0E- 12 4. 2 2 0 E- 12 2.560E-12 2. 510 E-12 3.95dE-12 5. 8 20 E- 12 6.3 30E- 12 4. 62 0E- 12 )
22 72420.75 3.920E-12 2.920E-12 1.c30E-12 2.200E-12 3.19 0 E-12 3. 870 E- 12 3.5005-12 3. 03 0E- 12 j l 23 80467.44 3. 2 50E - 12 2.420E-12 1.700E-12 1.7906-12 2.610 E- 12 3.170E-12 2.9 30E- 12 2. 73 0E- 12 RECP7R 00WN W IN O WEICH 7EO AVE R ACES 1/M**3 4 N3. DI S TANC E N- (9) NNE -(101 NE -(11) ENE -(12J E -t .) ES E -( 141 SE -(15) SSE -(16) !
4ETER $ 180.0 202.5 225.0 247.5 270.0 292.5 315.0 337.5 a
1 201 20 1. 290E- 0 9 5. 95 0 E- 09 5.950E-09 1.910E-09 2.0 20 E-09 2.130 E-09 3.9302-10 5. 0 5 0E- 10 2 402.30 2. 7 3 0E - 09 1.2602-08 1.260E-08 4.020E-09 4. 260 E-0 9 4. 500 E-0 9 8. 3 30E- 10 1. 4 8 0E- 09 3 804.70 1. 910E - 00 8. 6 3 0E- 09 8.490E-09 2.650E-09 2.8 40 E-09 3.000E-09 6. 5 40E- 10 1. 86 0E- 09 4 1207.00 1. 3 90E - 0 4 5. 9 8 0 E-09 5.650E-09 1.610E-09 1.8 20 E-0 9 1. 910 E- 0 9 5. 99 0E- 10 1. 410E- 09 5 1609.40 1.10 0E - 09 4. 5 6 0E-09 4.180E-09 't .110 E-09 1. 300 E-09 1. 3 7 0 E-0 9 5. 3 30E- 10 8. 4 7 0E-10 6 2414.00 7.13 -10 2. 8 7 0E- 09 2. 56 0E -0 9 6.350E-10 7.750E-10 8.130E- 10 3. 7 80E- 10 3. 9 5 0E- 10 7 3218.70 4. 910E - 10 1. 9 5 0 E- 09 1. 72 0 E-09 4.140 E- 10 5.150E-10 5.390E-10 2.6 90E- 10 2. 7 7 0E- 10 8 4023.40 3.5805-10 1. 410E-09 1. 2 4 0E-0 9 2.910 E-10 3.6706-10 3. 840 E- 10 2.0 00E- 10 1. 990E- 10 9 4828.10 2. 7 00E - 10 1. 06 0E- 09 9.220E-10 2.120E-10 2.710 E- 10 2.8 40E- 10 1. 5 30E- 10 1. 510E- 10 10 5632.70 2.130E-10 8.310E-10 7.210E-10 1.640E-10 2.110 E- 10 2.210E-10 1. 2 20E- 10 1. 2 00E- 10 l 11 6437.40 1.7305 10 6.750E-10 5. 84 0 E-10 1. 3.?O E-10 1.710 E-10 1.780E-10 9.960E-11 9. 7 5 0E - 11 1 12 7242.10 1. 45 0E - 10 5. 66 0E- 10 4.900E-10 1.110 E-10 1.430E-10 1.500E-10 8. 3 50E- 11 8. 56 0E- 11 13 8046.80 1. 240E - 10 4.820E-10 4.180E-10 9.480E-11 1.220E-10 1.280E-10 7.100E- 11 7. 2 3 0E - 11 14 12070.10 6. 38 0E - 11 2.490E-10 2.160E-10 4 800 E-11 6.2906-11 6. 590 E- 11 3 6 70E-11 3. 5 90E- 11 15 16093.49 3. 92 0E - 11 1. 53 0E-10 1.330E-10 3.030E-11 3.890 E-11 4.0 7 0 E- 11 2. 240E- 11 2.090E-11 l 16 24140.29 1.97&-11 7.740E-11 6.770E-11 1 580E-11 2.000 E-11 2.100E-11 1 1005-11 1. 05 0E - 11 17 32187.00 1. 2 4 0E - 11 4.920E-11 4.350E-11 1.0 40 E-11 1.300 E- 11 1.360E-11 6 690E-12 6. 760E- 12 i l 18 40233.79 8. 5 3 0E - 12 3.410E-11 3. 03 0 E-11 7. 3 8 0 E- 12 9.000 E-12 9.5406-12 4 5806-12 4. 5 8 0E- 12 l 19 48280.68 6. 2 30E - 12 2.510E-11 2. 2 4 0 E-11 5.470E-12 6.670 E-12 6. 990 E- 12 3 290E-12 3. 3 20E- 12 20 56327.29 4. 7 50E - 12 1.020E-11 1.710E-11 4.2 80 E-12 5 200 E-12 5. 46 0 E- 12 2. 4 90E- 12 2. 5 20E- 12 21 64373.99 3. 6 00E- 12 1. 510 E- 11 1.350E-11 3.390E-12 4.120 E- 12 4. 3 20 E- 12 1.940E-12 1. 9 7 0E - 12 22 72420.75 4.450E-12 1.2305-11 1.100E-11 2.790E-12 3.370 E-12 3 530E-12 1. 56 0E- 12 1. 5 90E- 12 23 80467.64 3. 94 0E - 12 1. 010 E - 11 9.110E-12 2.320E-12 2.790E-12 2.930E-12 1. 2 70E- 12 1. 300E- 12 l
l 56
_ _ _ _ _ _ _ __________J
g
(
i- TABLE 4.1-10 .
l- l l UNDEPLETED RELATIVE CONCENTRATIONS PER UNIT EMISSION FOR l MAIN STACK FOR OCTOBER THROUGH DECEMBER, 1977 !
X/O I RECP7R D3 WN W 1N D WElGH7EO AVERAGES S EC/m* *3 NO. 0157 ANC E 5- 41) 55W - (2) SW - (3d WSW - (4) W - (Si WNW -(68 NW - ( Tl NNW - (8) )
M E TER S 0.0 22.5 45.,0 67.5 90.0 112.5 135.0 157.5 l 1 201.20 2. 84 0E - 10 2 360E-16 8.810E-25 8.620E-16 1.640 E-09 1.340E-09 1.3 50E- 17 1. 600E- 3 5 l
. 2 402.30 4. 2 5 T - 08 1.390E-08 2.490E-09 2.350E-09 3. 38 0 E-08 2.700E-08 2 660E-11 3. 310E- 16 ,
3 804.70 1. 06 0E - 07 9.2 60E-08 1.350E-07 2.610 E-08 2. 670 E-08 1. 0 40 E-0 8 6.430E-10 1. 910E- 10 1 4 1207.00 7. 7 70E - 08 2.100 E-07 1.610E-07 1 2006-07 2. 6 30 E-0 8 4 200E-09 2 220E-09 2. 9 00E-09 I 5 1609.40 9 170E - 08 2. 4 30E-07 1.650E-07 1. 400 E-0 T 1.810E-08 5.140E-09 4. 7 00E- 09 7. 8 8 0E- 09 l 6 2414.00 5. 9 5 0E - 08 1.260E-07 9.280E-08 3.570E-08 1.610e-08 7.870E-09 8. 8 50E- 09 1. 600E- 0 8 7 3218.70 3. 94 0E - 0 8 7. 6 90E- 08 3. 23 0 E-0 8 3.430E-06 2 3 60 E-0 8 8.990E-09 1.0 30E- 0 8 1. 8 60E- 0 8 8 4023.40 2. 5 3 0E- 08 4. 2 8 0E-08 3.620E-08 3.050 E-08 2.270E-08 8. 990 E-09 1 0 30E- 08 1. 8 5 0E- 08 9 4828.10 1.910E-00 2.740E-08 3.640E-08 3. 010 E-06 2.09 0 E-08 8.450E-09 9. 7 2 0E- 09 1. 74 0E - 08 10 5632.70 1. 3 7 0E- 08 2. 460 E-06 3.650E-08 2 590E-08 1.910 E-0 8 7. 8 20 E-0 9 9.020E-09 1. 610E- 0 8 l
11 6437.40 1. 01 T - 08 2. 02 0E- 08 3.570E-08 2 400 E-08 1.680E-08 7. 200 E-0 9 8. 3 20E- 09 1. 4 70E- 0 8 12 7242.10 8.10 0E- 09 1. 7 00E-08 2.660E-08 2 160E-08 1.660 E-0 8 6.640 E-0 9 7.6 90E- 09 1. 3 50E- 08 13 3046.80 7. 50 0E - Oc 1.420E-08 2.850E-08 2.2 00 E-08 2.280 E-08 9.270E-09 1.140E- 0 8 1. 2 50E -0 8 14 12070.10 4. 5 3 0E - 09 1.140E-08 1.700E-08 1 330E-08 1.3 30 E-08 5.720E-09 7.370E-09 8. 6 2 0E- 09 15 16093.49 3. 3 8 0E - 09 5.080E-09 9.360E-09 7. 6 80 E-09 7.7 30 E-09 3. 6 50 E- 09 6.2706-09 1.180E - 08
~
16 24140.29 1. 92 0E- 09 3.130E-09 5.840E-09 5.0 50 E-09 3.9 70 E-09 2.370E-09 3. 8 40E- 09 6. 7 8 0E- 09 17 32187.00 1.2906-09 2.130E-09 3.990E-09 4.150E-09 2.810 E-09 1. 7 30 E-09 2.900E-09 3. 790E- 09 18 40233.79 9. 510E - 10 1. 5 3 0E-09 3.570E-09 3.760E-09 2.330E-09 1 360E-09 2.2 80E- 09 2. 5 3 0E- 09 19 48280.48 7. 83 0E - 10 1. 410E-09 2. 830 E-0 9 2 490E-09 2.030E-09 1.100E-09 2. 400E- 09 2. 08 0E- 09 20 56327.29 6. 48 0E - 10 1.220E-09 2. 4 5 0 E -09 2.150E-09 1.8 50 E-09 8. 970 E- 10 1. 8 20E- 09 1. 5 90E- 09
~
21 64373.99 5. 46 0E - 10 1.140E-09 2.070E-09 1 350E-09 1 560 E-09 7.560E-10 1.540E-09 1. 840E - 09 22 72420.75 4 270E-10 7.910E-10 1. 7 3 0E-0 9 1.880E-09 1. 340 E-09 6. 510E- 10 1. 4 5 0E- 09 1. 54 0E- 09 23 80467.44 3. 77 0E- 10 6. 96 0 E- 10 1. 52 0 E-09 1.640E-09 1.160 E-0 9 5.69 0E- 10 1.2 70E- 09 1. 3 50E- 09 RECP7R 00WNW1ND HEIGH 7EO AVERAGES S EC/ m* *3 N3. DISTANCE N- (9) NNE -(10) NE -411) ENE -412) E -413) ES E -t 14) SE -( 15) S SE -(16 8 M 7ERS 180.0 202 5 225.0 247.5 270.0 292.5 315.0 337.5 l 1 201.20 1. 92 0E- 36 1.020E-35 8.580E-14 3.150 E-13 6.520E-10 5. 200 E- 10 5.530E-11 1. 720E- 18 l 2 402.30 7.370! 17 2.540E-16 5 110E-10 1 820E-09 3.070E-08 2.140 E-0 8 3. 710E- 09 6. 0 70E- 10 l 3 804.70 5.950E-11 1.7R0E-10 5.560E-09 9.680E-09 2.610 E-08 4.230E-08 1. 710E- 0 8 2. 9 30E- 0 8 l 4 1207.00 T. 8 3 0E- 10 2.940E-09 1. 000 E-08 1 100 E-08 2.300 E-08 3. 760 E- 0 8 2.120E- 08 4. 6 2 0E- 0 8 l 5 1609.40 2.8102-09 8. 6 3 0E-09 1.660E-08 1.380E-08 2 .5 80 E-08 4.170E-08 2.440E-08 2. 9 30E- 08 l 6 2414.00 6.18 0E = 09 2. 010 E- 08 3. 05 0E -08 2.140E-08 3.380E-08 5.220E-08 3. 4 90 E- 08 1. 3 00E- 0 8 l 7 3218. 70 7. 6 0 0E - 09 2.5305-08 3.700E-08 2 510E-08 3.6706-08 5.370E-08 3.440E-08 1. 3 3 0E- 08 8 4023.40 7. 92 0E - 09 2.640E-08 3.800E-09 2 5 50 E-08 3.590E-08 5.190E-08 3.130E- 0 8 1.100E- 0 8 9 4828.10 7.7105- 04 2. 54 0E-08 3.640E-08 2 430 E-08 3.350E-08 4.580E-08 2. 490E- 08 9. 5 9 0E- 09 to 5632.70 7. 3 7 0E - 09 2. 3 90 E - 08 3.410E-08 2 280E-08 3.080E-08 4.120E-08 2. 2 30E- 0 8 9.17 0E - 09 11 e43 7. 40 6. 99 0E - 09 2. 22 0 E- 08 3 170E-08 2 120E-08 2.8 30 E-0 8 3.700F 08 1. 9 90E- 0 8 7. 9 8 0E- 09 12 7242.10 6. 6 3 0E - 09 2. 060E-08 2.940E-08 1 980E-08 2.610E-08 3.340E-08 1. 7 90E- 0 8 9. 8 30E- 09 13 A046.80 6. 2 7 0E - 09 1.910E-08 2.730E-08 1 840E-08 2.400E-08 3.030E-08 1.6 20E- 08 1. 010E - 08 14 12071.10 4. 7 7 0E - 09 1.340E-08 1. 9 N E-08 1 310 E-0 8 1.670E-08 2.010E-08 1. 050E- 08 6. 4 40E-0 9 13 16093.49 3. 8 00E - 09 9. 9 8 0E- 09 1.440E-08 9.880E-09 1.240E-08 1. 450 E-0 8 7. 5 8 0E- 09 6.150E- 09 16 24140.29 2. 68 0E - 09 6.3306-09 9.L 2 0E -09 6.4 50 E-09 7.9 7 0 E-0 9 8.910E-09 4.120E- 09 3. 5 00E - 09 17 12187.00 2. 08 0E - 09 4.560E-09 6.480E-09 4.750E-09 5 .800 E-0 9 6.960E-09 4. 3 8 0E- 09 1. 6 3 0E- 09 18 40233. 79 1. 6 9 0E - 09 3. 5 2 0E - 09 5,180E-09 4. 3 50 E-09 5.430E-09 5.200E-09 2. 7 30E- 0 9 1.12 0E- 09 19 48280.48 1. 42 T- 09 2. 6 5 0 E - 09 . 210E-09 3.540E-09 4.17 0 E-09 4.200E-09 2.000E-09 9.100E - 10 20 56327.29 1 22 0E - 09 2. 3 8 0 E- 09 3. 5 2 0 E -09 2 570E-09 3.080 E-09 3.2600-09 1. 6 60E- 0 9 7. 6 2 0E - 10 21 64373.99 1. 6 3 0E - 09 2. 03 0E - 09 3.020E-09 2.220E-09 2. 6 50 E-09 2. 7 30 E- 09 1. 410E - 09 6. 5 30E- 10 22 72420.75 1.7906-09 1.780E-09 2.640E-09 1.9 50 E-00 2. 3 20 E-09 2.3805-09 1. 2 30E- 09 5. 7 7 0E - 10 23 j N46 7.44 1. 5 8 0E- 09 j 1. 5 '0E-04 2.340E-09 1.740E-04 2.0 60 E-39 2.100E-09 1 090E- 04 5. 0 70E- 10 mW
- W 57
- - - - - _ _ . - - . . - _ ~ - - - - - . . . _ _ _ . _ -
t TABLE 4.1-11 DEPLETED RELATIVE CONCENTRATIONS PER UNIT EMISSION FOR MAIN STACK FOR OCTOBER THROUGH DECEMBER, 1977 X/O DEP1.ETED RECP70 03kNw!N0 h2IGHTED AVEpaGES S EC/ M* *3 '
N3. DI STANCE 5- (1) 55=- (U &n - (3) w5u - (*) n - 15) nNa -60) Nu - ( 7) NNW -.ts) 1ETEGS 0.0 22.5 45.0 67.5 90.0 112.5 135.0 157.5 1 201.20 2. 84 0E- 10 2.360E-16 8. 810E-2 5 8.620E-16 1.640E-09 1. 3 40 E-0 9 1. 3 50E- 17 1. 600E- 3 5 2 402.30 4 14E - 08 1.360E-08 2.480E-09 2 3 30 E-09 3 . 3 40 E-0 6 2.680E-08 2.6 30E- 11 3. 310E- 16 3 804.70 1. 02 0E - 07 0.060E-08 1.330E-07 2.600E-08 2 .6 30 E-08 1 010 E- 0 8 6. 2 50E- 10 1. 910E- 10 4 1207.00 7. 3 9 0E - 08 1. 990 E- 07 1.570E-07 1.170 E-0 7 2.600E-08 4.0 30 E-0 9 2.17 0E- 0 9 2. 8 90E- 09 5 1609.40 a.49E-08 2.130E- 07 1. 5 8 0 E -07 1 330E-07 1 7700-08 4.960E-09 4. 610 E- 09 7. 7 90E - 09 ,
6 2414.00 5.3202-08 1.100E-07 8.890E-08 3.4 80 E-08 1.550E-08 7.600E-09 8.610E-09 1. 56 0E-0 8 i 7 3218.70 3.430b O8 6. 86 0 E- 09 3.100E-08 3. 2 80 E-08 2.260E-08 8.620E-09 9. 910 E- 09 1. 7 90E- 0 8 j 8 4023.40 2. 2 8 0E - 08 3. 9 6 0E - 08 3.440E-08 2.890 E-08 2 140 E-08 8. 5 8 0 E- 0 9 9. 8 80E- 09 1. 7 7 0E- 0 8 9 4828.10 1. 720E - 06 2.570E-08 3.430E-08 2. 8 20 E-08 1.960 E-0 8 8.040E-09 9. 2 8cE- 09 1. 6 50E- 08 {
10 5632.70 1 25 0E- 04 2 280E-08 3.380E-08 2.400 E-08 1. 7 70 E-0 8 7. 420 E-0 9 8. 5 80E- 09 1. 52 0E- 0 8 )
11 6437.40 9. 2 6 0E - 09 1. 8 7 0E- 08 3. 23 0 E-08 2.190 E-08 1. 5 50 E-0 8 6. 8 00 E-0 9 7. 8 90E- 09 1. 390E- 06 l 12 7242.10 7. 410E- 09 1. 5 7 0E-08 2.430E-08 1.950E-08 1. 520 E-08 6.250E-09 7.2705-09 1. 270E- 08 ]
13 9046.80 6.9006 09 1.310E-08 2. 53 0 E-08 1.940E-09 1.980 E-08 8.670E-09 1. 0 70E- 0 8 1.17 0E- 08 .J) 14 12070.10 4. 04 E - 09 9.100 E-09 1.480E-08 1 150 E-08 1.1300-08 5 270E-09 6. 8 70E- 09 7. 900E- 09 15 16093.49 2. 9 00E - 09 4.600E-09 8.200E-09 6.630E-09 6.7 00 E-09 3. 340 E-09 5. 8 0 0E- 09 9. 8 90E - 09 16 24140.29 1. 62 0E- 0 9 2. 7 80E-09 4.980E-09 4. 2 20 E--09 3.3 70 E-09 2.120 E-09 3. 530E- 09 5. 260E- 09 17 32187.00 1. 08 0E- 09 1.870E-09 3.340E-09 3.330E-09 2. 350 E-09 1. 500 E-09 2. 600E- 09 3. 380E- 09 1 18 40233.79 7. 810E- 10 1. 3 20 E-09 2. 87 0E-09 2.180 E-09 1.9 30 E-0 9 8.490E-10 1.9 8 0E- 09 2. 24 0E- 09 '
19 48280.48 6. 2 8 0E - 10 1 210E-09 2.250E-09 1.9 40 E-09 1.580E-09 4.200E-10 9.190E-10 1. 83 0E- 09 .)
20 56327.29 5.10 0E- 10 1.040E-09 1.750E-09 1 5506-09 6.950 E-10 3.2405-10 9.9 30E- 10 1. 3 8 0E- 09 j 21 64373.99 4.250E-10 6.870E-10 1.450E-09 1.060 E-09 5.330 E- 10 2. 710 E- 10 7. 950E- 10 1. 2 90E- 09 22 72420.75 3'. 290E- 10 6.660E-10 1.290E-09 6.5 20 E-10 4. 3 50 E- 10 2.120E-10 4. 7 00E- 10 1. 2 2 0E- 09 23 80467.44 2. 8 70E- 10 5.830E-10 1.120E-09 5.4 20 E-10 3.620 E-10 1. 770 E- 10 3.940E-10 1. 060E- 09 i
RECPTR 00WNW IN O WFfGHTED AVERAGE $ S E C/ M *
- 3 j No. DISTANCE N - (9) NNE -810) NE -ill) ENE -il2) E -113) E5 s -t 14 6 SE *( 15) 55E -(16) 4E TER $ 180.0 202.5 225.0 247.5 270.0 292.5. 315.0 337.5 1 201.20 1. 92 0E- 36 1.020E-35 8.580E-14 3.150 E-13 6.520E-10 5 200E-10 5.530E-11 1. 720E-18 2 402.30 7. 37 0E- 17 2.540E-16 5. 06 0E-10 1.810 E-00 3.040 E-0 8 2.120E d 1. 6 7 0E- 09 6. 010E- 10 3 804.70 5.950E-11 1. 7 80E- 10 5.380E-09 9.380E-09 2. 5 20 E-08 4.090E-08 1:6 50E- 08 2. 8 80E - 08 4 1207.00 9. 790E-10 2.930E-09 9.640E-09 1 950 E-08 2.200 E-08 3. 590 E-0 8 2.340E-08 4. 5 00E- 0 8 5 1609.40 2. 7 8 0E- 09 8.540E-09 1. 610E -08 1 3 20 E-08 2.460 E-0 8 3.990 E- 0 8 2. 3 30E- 08 2 860E-08 6 2414.00 6.040E-09 1. 9 70E-08 2. 97 0E -08 2.070E-08 3.240E-08 5.0006-08 3. 363E- 08 1. 2 60E- 08 7 3218.70 7. 36 0E = 09 2.450E-08 3.570E-08 2.420E-08 3.500E-08 5. 08 0 E- 0 8 3. 2 70C- 08 1. 2 70E- 08 8 4023.40 7.6408-09 2. 5 50E- 08 3. 66 0 E-0 8 2.450E-08 3.400 E-0 8 4. 8 80 E- 0 8 2. 9 40E- 0 8 1. 040E- 08 l i 9 4829.10 7. 410E - 09 2. 44 0E- 08 3.490E-08 2. 3 30 E-08 3.17 0 E-08 4.280bO8 2. 3 20E- 08 9. 050E- 09 i 10 5632.70 7. 07 0E - 09 2 280E-08 3.260E-08 2.180 E-08 2 .910 E-0 8 3.830E-08 2 060E-06 8. 610E- 09 11 6437.40 6. 7 00E - 09 2.120E-08 3.030E-08 2 020E-08 2.660 E-0 8 3. 420 E- 0 8 1.8 30E- 0 8 7. 4 5 0E- 09 12 7242.10 6. 34 E- 09 1. 96 0E- 08 2 810E-08 1.880E-08 2.440r238 3. 070 E-08 1.6306-08 9.12 0E- 09 13 8046.80 5. 990E - 09 1. 810 E-08 2.600E-08 1.740E-08 2.240E-08 2. 7 70 E-0 8 1.460E-08 9. 3 2 0E- 09 14 12070.10 4. 53 0E- 09 1. 2 50 E- 08 1.810E-08 1.230E-08 1.5 30 E-0 8 1. 780 E-0 8 9. 2 20E- 0 9 5. 8 30E- 09 15 16093.49 3. 5 9 0E- 09 9. 2 3 0E- 09 1.340E-08 9.210E-09 1.130 E-08 1.260E-08 6. 4 50E- 09 5. 4 3 0E- 09 16 24140.29 2. 5 3 0E - 09 5. 7 80 E- 09 8.500E-09 5.9 50 E-09 7 110 E-09 7. 500 E-0 9 3. 8 80 E- 09 3.12 0E - 09 17 32187.00 1. 96 E - 09 4.130 E- 09 6.110E-09 4.353E-09 5 .100 E-09 5.750E-09 3. 5 80E- 09 1. 410E- 09 18 40233.79 1 59 0E- 09 3.160E-09 4. 710E-09 4. 010 E-09 4.800 E-09 4. 2 20 E-09 2.160E- 09 9. 4 50E- 10 19 48280.48 1. 3 30E - 09 2. 550E- 09 3.800E-09 3.250E-09 3 .640 E-09 3.350E-09 1. 520E- 09 7. 5 80E- 10 20 56327.29 1.15 0E - 09 2.120 E- 09 3 170E-09 2. 3 20 E-09 2.640 E-0 9 2.550E-09 1. 2 50E- 09 6. 290E- 10 21 64373 99 1. 56 E- 09 1. 8 00E- 09 2. 710E-09 2. 000 E-09 2. 250 E-0 9 2.100E-09 1. 0 50E- 09 5. 3 50E- 10 22 72420.75 1. 4 70E - 09 1.570E-09 2.360E-09 1 7 50 E-09 1.960 E-09 1. 800 E-0 9 9.0 20E- 10 4. 710E-10 23 80467.44 1. 2 8 0E - 09 1.380E-09 2. 09 0E -09 1 560 E-09 1.730E-09 1. 570E-0 9 7.890E-10 4.110E - 10
~
m&a
- p'"
58 1
_ _ _ _ _ __ _ _ _ _ _ . _ _ _ _ _ _ _ _ . _ _ l
4 i
l TABLE 4.1-12 l l
RELATIVE DEPOSITION CONCENTRATIONS PER UNIT EMISSION FOR I MAIN STACK FOR OCTOBER THROUGH DECEMBER, 1977 l D/O RECPTR DOWNWIND hE!GHTED AVERA0ES 1/Me*3
- 40. 0157ANCE 5- (1) 55=- (2) Sn - 08 n5W - (4) W -(5) mNw --(6) NW - ( 7) NNn - (B) i 9ETEPS 0.0 22.5 45.0 67.5 90.0 112.5 135.0 157.5 1 201.20 6. 94 T- 1 C 1.920E-10 1.790E-11 8.180E-11 4.260 E- 10 4. 8 70 E- 10 5. 7 40E- 11 1. 23 0E- 12 2 402.30 4. 3 7 0E - 09 3. 2 6 0E-09 3.180E-09 1.630E-09 2.150 E-09 1. 4 70 E-09 1. 260E- 10 1. 2 6 0E- 11 l 3 804.70 3. 52 0E - 09 3. 5 2 0E- 09 6. 78 0E-0 9 1.910 E-09 2.080E-09 1.100 E-0 9 2. 0 9 0E- 10 2. 610E- 10 4 1207.00 1. 8 7 0E - 09 3. 3 7 0E-09 5. 04 0E-09 3. 200 E-09 1. 560 E-09 6 160E- 10 3. 760E- 10 6. 5 5 0E- 10 5 1609.40 1. 410E - 09 2.13 0E-09 3. 7 90ii-09 2.640E-09 1.0 30 E-09 5.340E-10 4.130E-10 7. 6 00E- 10 6 2414.00 6. 900E - 10 1.020E-09 1.790E-09 8. 7 7 0 E-10 6.910 E-10 3. 690E- 10 3.260E-10 6.1306-10 7 3218.70 4 120E-10 5.970E-10 8.240E-10 6.390E-10 5.350E-10 2. 600 E- 10 2. 410E- 10 4. 5 6 0E-10 8 4023.40 2. 54 T - 10 3.530E-10 6.820E-10 4.810 E-10 4 .100 E-- 10 1.9 30 E- 10 1.830E-10 3. 4 90E- 10 I 9 4828.10 1.8106-10 2.440E-10 5. 56 0E-10 3.9 30 E- 10 3.190 E-10 1. 48 0 E- 10 1. 4 3 0E- 10 2. 73 0E- 10 i 10 5632.70 1. 3 8 0E- 10 1.880E-10 4.560E-10 3.080E-10 2.550E-10 1.17 0E- 10 1.150E- 10 2. 2 00E- 10 4 11 6437.40 1. 08 0E - 10 1. 4 7 0E- 10 3.690E-10 2.5 30 E-10 2.0 50 E- 10 9.580E-11 9. 4 5 0E- 11 1. 810E- 10 l 12 7242.10 8. 610E - 11 1.170E-10 2.880E-10 2.060E-10 1. 710 E-10 8. 0 30 E- 11 7. 910E- 11 1. 510E- 10 l 13 8046.80 7.18 0E - 11 9. 5 50 E- 11 2.420E-10 1.720E-10 1 460 E-10 7.120E-11 7.000E-11 1. 2 90E- 10 14 12070.10 3. 5 50E - 11 7. 88 0E- 11 1.160E-10 8.370E-11 6.8 80 E-11 3. 530 E- 11 3.490E- 11 6. 6 50E- 11 15 16093.49 2. 09 0E - 11 2.900E-11 7.270E-11 5.200E-11 4.230E-11 2.1806-11 2 070E-11 6. 2 60E- 11 16 24140.29 1. 0 50E - 11 1. 400E-11 3.470E-11 2.460 E- 11 2.120L-11 1 060 E-11 9. 8 90E- 12 3. 380E- 11 1 17 32187.00 6. 7 00E - 12 8.380E-12 2.070E-11 1.370E-11 1.280 E-11 6. 3 30 E- 12 5.890E-12 1.150E- 11 j 18 40233.79 4. 640E - 12 5.530E-12 1.290E-11 1.250E-11 8 . 280 E-12 1. 03 0 E- 11 4.250E-12 7. 6 5 0E- 12 l 19 48280.48 3. 2 4 0E - 12 3.820E-12 9.280E-12 6.5 50 E-12 5.9 70 E-12 5. 0 80 E- 12 5. 6 80E- 12 5. 3 20E - 12 20 56327.29 2. 4 7 0E - 12 2.860E-12 7. 93 0E-12 5.260E-12 5.3 20 E-12 3. 79 0 E- 12 5. 920E- 12 4. 0 20E- 12 21 64373.99 1. 9 5 0E - 12 3.300E-12 6.500E-12 3.8 30 E- 12 4.0 80 E- 12 3.190 E- 12 4. 4 2 0E- 12 5. 53 0E - 12 22 72420.75 1. 66 0E - 12 1 800E-12 5.010E-12 3.930E-12 3.290E-12 2. 370 E- 12 2. 660E- 12 3. 76 0E- 12 23 80467.44 1. 37 0E 4 2 1. 4 7 0E- 12 4.270E-12 3.200E-12 2.700 E- 12 1. 9 40 E- 12 2.170E- 12 3.350E-12 ;
RECPTR. 00WNWINO kE10HTED AVEGAGES 1/M**3 NO. DISTANCE N - 19) NNE -(10) NE -(11) ENE -(12) E -(13) ES E -( 14) SE -(15) SSE -(16) l 9 E TER S 180.0 202.5 225.0 247.5 270.0 292.5 315.0 337.5 {
1 2C1.20 3. 910E- 13 1.190 E- 12 4.550E-10 6. 2 50 E-10 1.700E-09 3.060E-09 1.0 8 0E- 09 1.1405-10 2 402.30 3.7306-12 1.190E-11 9.700E-10 1. 3 20 E-09 3.600E-09 6.480E-09 2.290E-09 4. 0 00E- 10 3 804.70 7. 7 3 0E - 11 2.470E-10 9.060E-10 1.060E-09 2.660E-09 4. 75 0 E-0 9 1.8 30E- 09 1. 4 00E - 09 l
- t. . 4 1207.00 1. 94 0E - 10 6.180E-10 1.080E-09 1.0 00 E-09 2.190 E-09 3.8 50 E- 0 9 1.7 3 0E- 09 1. 2 3 0E- 09 I 5 1609.40 2. 25 0E - 10 7.170E-10 1. 0 7 0E-09 9.180E-10 1.870E-09 3.240E-09 1. 5 5 0E- 09 7. 3 3 0E - 10
, 6 2414.00 1. 810E - 10 5.790E-10 8. 010 E-10 6.550E-10 1.270E-09 2. 200 E- 0 9 1.110E- 09 3. 300E- 10 7 3218.70 1. 3 5 0E- 10 4.300E-10 5.820E-10 6.680E-10 8 .9 5 0 E-10 1. 540 E- 0 9 7. 920E- 10 2. 3 9 0E- 10 i 8 4023.40 1. 03 0E - 10 3. 2 9 0E-10 4.390E-10 3.500E-10 6.6206-10 1.140E-09 5. 910E- 10 1. 7 2 0E-10 l c 4828.10 8.080E-11 2.580E-10 3.400E-10 2.690E-10 5.040E-10 8.660E-10 4. 510E- 10 1. 3 2 0E - 10 10 5632.70 6. 5 00E - 11 2.070E-10 2. 72 0E-10 2.140 E- 10 4.000E-10 6.870E-10 3.590E-10 1. 0 7 0E- 10 l 11 6437.40 5. 3 5 0E - 11 1.710E-10 2. 2 3 0E-10 1.7 5 D E-10 3. 27 0 E-10 5.600E-10 2. 9 40E - 10 8. 7 0 0E- 11 -
12 7242.10 4. 4 8 0E - 11 1.430E-10 1.870E-10 1 470E-10 2.7406-10 4. 7 00E- 10 2. 46 0E- 10 7. 6 9 0E- 11 l 13 8046.80 3. 810E - 11 1.220E-10 1.590E-10 1.250E-10 2.3 30 E- 10 4.000E-10 2.100E-10 6. 4 7 0E- 11 14 120 7 C.10 1 9 7 0E - 11 6.2 80E- 11 8.21GE-11 6.450E-11 1.200E-10 2.060 E- ; 0 1.0 0 0E- 10 3. 2 00E- 11 15 160c3.49 1.19 0E - 11 3. 810E- 11 5.000E-11 3.940E 11 7. 360 E-11 1 260E-10 6.610E-11 1. 8 2 0E - 11 16 24140.29 5. 72 0E - 12 1. 8 3 C E- 11 2.430E-11 1.930E-11 3.640E-11 6 260E-11 3.240E-11 8.820E-12 17 32187.00 3.390E-12 1. 0 A 0E - 11 1.460E-11 1.180E-11 2.2 50 E-11 3.9 20 E- 11 1. 9 50E- 11 5. 710E - 12 18 40233.79 2. 2 4 0E - 12 7.150E-12 9.790E-12 8.000E-12 1. 5 30 E- 11 2.650E-11 1. 340E- 11 3. 7 5 0E- 12 19 48280.48 1.590E-12 5. 0 B OE- 12 7.020E-12 5.680E-12 1.100 E- 11 1.890E-11 9. 6 5 0E - 12 2. 6 8 0E - 12 20 So327.79 1.19 0c - 17 3.790E-12 5 270E-12 4.330E-12 8.650E-12 1.460E-11 7. 2 80E- 12 2. 010E- 12 21 64373.99 9. 7 6 0E - 13 2. 94 0E-12 4.119E-12 3.380E-12 6.6 20 E-12 1.140 E- 11 5.690E-12 1. 56 0E- 12 22 72420.75 2s 970F - 12 2. 3 2 0E- 12 3. 2 6 0 E -12 2 . 7 00 E- 12 5.320E-12 9 200E-12 4. 5 50E- 12 1. 2 40E- 12 23 306b7.44 2. f 9 0E - 17 1.880E-12 2.660E-12 2.210E-12 4.3 60 E-12 7. 5 5 0E- 12 3.720E-12 1. 010E - 12 6M aie h
59
_ - - - - _ _ . _ _ . _ . J
I
~ l TABLE 4.1-13 .
- SPECIAL PARAMETERS USED IN
~
FINITE CLOUD MODEL f Stack Height 100 meters (above grade)
Shielding Factor 0.7 I
Depth for total Body Dose 5 cm.
Human Tissue Density 1 gm./cm.3 i
I f
4 t
i I
imm 60 L_-- - - _ _ - - - - - - - - - _ _ _ _ . - _ _ _ _ _ _ _ _ _
m 7 s s s s s
. e e e e o o e 4W Y Y Y Y N N Y s
e l
i m
6 s s s s s s e e e e e e o 4W Y Y Y Y Y Y N s
e l
i m
3 s s s s s
. e e e e e o o 2S Y Y Y Y Y N N
, s e
s l y i a m w
h W s s s s t 5. S e e e e o o o a 1 W Y Y Y Y N N N P
d s n e a l i
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1 l-1 e i A l i
Table 4.3-2 Population Doses via Major Pathways Resulting from Gaseous Effluents during July-December 1977 Thyroid Total Body Pathway (MAN-RDI) (MAN-RDI)
Noble Gas Immersion 47. 47.
(Gamma)
Ground Plane 3.7 3.7
)
Deposition l
l
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1
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. fD,
't
- 5. OFF-SITE DOSES FROM DIRECT RADIATION Direct radiation doses for July-December, 1977, measured along the' property '
line using thermoluminescent dosimeters, range between 36 and 53 mrem. 'An estimate of background is.given by doses at two distant locations; 47 mrem at 23 miles NW, 34 mrem at 8 miles WSW. Using the smaller of these values to correct for background conservatively, the dose above background at the southeast property line (abutting nearest residence) 'is:
Total Dose at 0.35 mi. SE 45.0 + 2.5 i
-i.
Background 34.2 1 1.6 ;
Dose above Background 10.8 1 2.9 mrem The net dose above background is three times the associated statistical error and therefore appears to indicate an impact from station operation.
This result, however, uses the smaller of two remote location doses. Using the larger of the background measures would yield a net above background-dose of less than zero.
l The real significance, however, of the dose from direct radiation is 1
determined by comparison of the property line readings of 36 to 53 mrem with total direct radiation doses measured at various' times and locations
- prior to operation of Unit 1. Moreover, this radiation detection mechanism responds to all sources of radiation, some of which (gaseous effluents)
'~
have been taken into account elsewhere.
Preoperational average six-month doses varied by more than fifteen mrem
- among various observation points. Thus the net above background dose during July-December, 1977 is below the variation encountered at several geographical locations prior to t.he existence of Pilgrim Station, i
1ss u .
~
69
T
. F.
REFERENCES I
I
- 1. ' Pilgrim Station Unit 1 Appendix I Evaluation" Submitted in Accordance with 10CFR 50 Appendix I, April 1977.
- 2. Pilgrim Station Environmental Report, Amendment 4 April 1975 pg. 2-329/330.
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