ML20077R536

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Semiannual Rept for Tech Spec Section 5.9.4,Jan-June 1991
ML20077R536
Person / Time
Site: Fort Calhoun Omaha Public Power District icon.png
Issue date: 06/30/1991
From: Gates W
OMAHA PUBLIC POWER DISTRICT
To:
NRC OFFICE OF INFORMATION RESOURCES MANAGEMENT (IRM)
References
LIC-91-208R, NUDOCS 9108230142
Download: ML20077R536 (550)


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Omaha Public Power District August 19, 1991 444 South 1Gth Street Mall L10-91-208R Omaha,ikwAa G8102 2247 402/636 2000 V. S. Nuclear Regulatory Commission Attn: Document Control Desk Mail Station Pl-137 Washington, DC 20555

Reference:

Docket No. 50-285 Gentlemen:

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SUBJECT:

Semi-Annual Radioactive Effluent Release Report l

Please find attached the Semi-Annual " Radioactive Effluent Release Report" for fort Calhoun Station for the period of January 1, 1991 through June 30, 1991 as required by Technical Specification 5.9.4a and 10 CfR 50.36a.

If you should have any questions, please contact us.

Sincerely,

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W. G. Gates y M Division Manager Nuclear Operations WGC/sel c: LeBoeuf, Lamb. Leiby & MacRae R. D. Martin, NRC Regional Administrator, Region IV i

W. C. Walker, NRC Project Manager R. P. Mullikin, NRC Senior Resident inspector l

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Omaha Public Power District i Fort Calhoun Station Unit No. I l Semi Annual Report

! For l Technical Specification i Section 5.9.4

! January 1,1991 to June 30, 1991 inclusive l

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, Docket No. 50 285 Operating License No. DPR-40 l l

Memorandum

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Date: August 12, 1991 PRC Reviewed RS CE 91 95 PRC Mee. Minutes from: T. L. Patterson Distribution AUG 12 E91 To:

SUBJECT:

Semi Annual Report for Technical Specification Section 5.9.4.a.

January 1, 1991 to June 30, 1991 Attached is a copy of the 1991 Semi Annual Report for January 1, 1991 thru June 30, 1991.

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1. L. Patterson Manager - Ft. Calhoun Station TLP/FFF:cas attachment pistribution S. K. Gambhir R. L. Jaworski W. G. Gates J. W. Tills A. W. Richard D. L. Lovett F. K. Smith F. F. Franco A. D. Bilau V. F. Frahm M. A. Wilson J. M. Glantz L J. G. Krist

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INTRODUCil0N O This report is submitted in accordance with Sections 5.9.1.b and 5.9.4.a of the Technical Specifications of Fort Calhoun Station Unit No.1, facility Operating License DPR 40.

This report covers the period of January 1, 1991 thru June 30, 1991 for the Semi Annual Effluent Report for Technical Specification 5.9.4.a. The Effluent Report is presented in the format outlined in Regulatory Guide 1.12, Revision 1.

In addition, this report provides the results of quarterly dose calculations performed in accordance with Technical Specification Sections 2.9.l(l)b and 2.9.l(2)b. Results are presented by quarter for the period January 1, 1991 thru June 30, 1991.

Further, description of any changes made during the preceding six months to the Offsite Dose Calculation Manual and/or the Process Control Program for the Fort Calhoun Station are presented, bIbn- ^-

T. L. Patterson Manager fort Calhoun Station O

TABl.E Of CONTENTS lO l Section Ettt_l a litle l

l INTRODUC110N I Quarter 1v Doses from Effluents i Technical Specifications [2.9.1(1)b and 2.9.1(2)b)

!! Not Applicable to thir Report l

Ill Radioactive Effluent Releases Gaseous Effluents Technical Specification (5.9.4.a)

Table 1A summation of Releases Table IB Not Applicable Table 10 Summation of All Releases l l

IV Radioactive Effluent Releases-Liquid Effluents Technical Specification (5.9.4.a) i Table 2A Summation of All Releases Table 28 Summation of All Releases

V Radioactive Effluent Releases Solid Radioactive i

Waste, ODCM, and PCP Changes Technical Specification (5.9.4.0)

V1 Joint frequency Distribution Wind Direction vs. Wind  ;

Speed by Stability Class and Meteorology Data Per Batch Release (Regulatory Guide 1.21)

Vil Potential Doses to Individuals and Populations (Regulatory Guide 1.21) l

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h SECTION I QUARTERLY DOSES FROM EFFLVENTS Technical Specifications 2.9.l(l)b and 2.9.l(2)b January 1, 1991 - June 30, 1991 k

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Quarterly Dose Calculation Results O January 1, 1991 thru June 30, 1991 With the implementation of the fort Calhoun Station Radiological Effluent Technical Specifications (RETS) on October 1, 1985, radiation doses in the unrestricted area from liquid and 9aseous effluents must be calculated on a quarterly basis in accordance with Sections 2.9.l(l)b and 2.9.l(2)b. These calculations are performed to ensure the annual dose limits delineated in Appendix 1 of 10 CFR Part 50 and implemented by the RETS are not exceeded, if the results of the quarterly calculations exceed fifty percent (50%) of the annual limits of Appendix 1, actions are taken to reduce effluents so that resultant doses do not exceed the annual limits during the remainder of the year and a special report is submitted to the NRC.

This section presents the results of the quarterly dose calculations performed since January 1, 1991. Details are shown in Tables on Pages 1-3 through 1-4 as to the types, sources and resultant doses from the effluents, annual limits and a t.omparison to the annual limits.

As can be seen by review of the quarterly calculational results, OPPD is in compliance with the referenced Technical Specifications. The quarterly totals are well below the 50% annual dose acceptance criteria. In addition, the summation of the quarterly totals shows OPPD to be less than the annual limits and in compliance with the regulations and Technical Specifications.

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QUARTERLY CUMULATIVE DOSE CONTRIBUTIONS FROM RADIDACTIVE EFFLUENTS O riast ouantta. 1992

1. L10VID EFFLUENTS: TOTAL BODY DOSE CRITICAL ORGAN DOSE (MREM) (MREM)

Monitor / Hotel Tank: 1.44E-01 2.02E-01 Steam Generator: 4.25E-05 2.85E 06 Totals: 1.44E 01 2.02E-01 T.S. 2.9.1.A. Annual Objective: 3.00E400 1.00E401 Percent of TS Annual Objective:

This Quarter: 4 80% 2.02%

Year to Date: 4.8v4 2.02%

II. GASE0US EFFLUENTS: TOTAL BODY GAMMA TOTAL BODY BETA DOSE (MREM) DOSE (MREM)

A. Noble Gas Air Dose: 1.72E-03 3.61E 03 T.S. 2.9.1.B. Annual Objective: 1.00E401 2.00E+01 Eercent of TS Annual Objective:

This Quarter: 0.02% 0.02%

Year to Date: 0.02% 0.02%

B. 1-131. H 3, and Particulates TOTAL BODY DOSE CRITICAL ORGAN DOSE t y_ith Half-lives > 8 Days (MREM) (Thyroid. MREM)

  • Inhalation: 9.44E-07 1.74E 04
  • Ground and Food: 5.39E-05 3.67E-02 Totals: 5.49E-05 3.68E-02 T.S. 2.9.1.B. Annual Objective: 1.50E+01 1.50E+01 Percent of TS Annual Objective:

This Quarter: 0.00% 0.25%

! Year to Date: 0.00% 0.25%

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  • Highest of Infant or Child Dose factors

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QUARTERLY CUMULATIVE DOSE CONTRIBUTIONS FROM RADIDACTIVE EFFLUENTS

() SECOND QUARTER, 1991

1. LIQRID_[f flUENTS:. 101AL BODY DOSE CRITICAL ORGAN CDSE (MREM) (MREM)

Monitor / Hotel Tank: 1.13E-01 1.59E-01 Steam Generator: 1249[ 24 8.47E Ol Totals: 1.13E-01 1.59E 01 T.S. 2.9.1. A. Annual Objective: 3.00E+00 1.00E401 Percent of TS Annual Obiective:

This Quarter: 3.77% 1.59%

Year to Date: 8.57% 3.61%

11. GASEOUS EFFLUENTS: TOTAL BODY GAMMA TOTAL BODY BETA

. DOSE (MREM) 005E (MREM)

A. Noble Gas Air Dose: 1.94E-03 3.94E-03 T.S. 2.9.1.B. Annual Objective: 1.00E401 2.00E401 Percent of TS Annual Ohlective:

This Quarter: 0.02% 0.02%

Year to Date: 0.04% 0.04%

B. 1-131, H-3, and Particulates TOTAL BODY DOSE CRITICAL ORGAN DOSE with Half-lives > 8 Days (MREM) (Thyroid. MREM)_

  • Cround and food: 1.21E-04 2.23E-03 Totals: 1.22E-04 2.24E-03 T.S. 2.9.1.B. Annual Objective: 1.50E+01 1.50E+01 Percent of TS Annual Ob.iective:

This Quarter: 0.00% 0.01%

Year to Date: 0.00% 0.26%

  • Highest of Infant or Child Dose factors.

Strontium 89 and Strontium 90 dose contributions not included because results were not available at the time of this report. Values will be O updated when results are available.

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O IECTION II ANNUAL OCCUPATIONAL EXPOSURE REPORT Technical Specifications 2.9.1,b Not Applicable to this Report I

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SECTION 111 RADI0 ACTIVE EFFLUENT RELEASES GASEOUS EFFLUENTS l

Technical Specifications (5.9.4.a) l Table 1A Gaseous Effluents - Sumation of All Releases Table IB Not Applicable I Table IC Gaseous Effluents - Sumation of All Releases January 1, 1991 - June 30, 1991 F

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I Radioactive Effluent Releases - first and Second Quarters O GASEOUS EffLUEf4TS Radioactive gaseous releases for the reporting period totaled 4.21E401 Curies of inert gases. Over the first and second quarters of the reporting period, the gross gaseous activity release rates were 2.62E+00 pCi/see and 2.78E+00 uti/Sec, respectively.

Radioactive halogens and particulates with half-lives greater than eight days released during the reporting period totaled 2.24E 04 Curies. Over the first and second quarters of the reporting period, the halagen release rates were 1.75E-05 uti/sec and 1.06L-06 pCi/sec, respectively. The particulate release rate for isotopes with half lives greater than 8 days for the first quarter was 1.24E 06 pCi/sec. The release rate for particulates with half lives greater than 8 days for the second quarter was 8.88E 06 pCi/sec.

Total radioactive tritium released during the reporting period totaled 5.15E 02 Curies. Gross alpha radioactivity released during the reporting period totaled 3.89E-06 Curies.

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U SECTION IV i

RADIDACTIVE EFFLUENT RELEASES - LIQUID EFFLUENTS Technical Specifications (5.9.4,a)

Table 2A Liquid Effluents - Sumation of All Releases Table 2B Liquid Effluents - Sumation of All Releases January 1, 1991 - June 30, 1991 l

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Radioactive Effluent Releases - First and Second Quarters O LIQUID EFFLUENTS During the reporting period, a total of 1.10E400 Curies of radioactive liquid materials less tritium, dissolved noble gases, and alpha were released to the Missouri River at an average concentration of 3.24E-09 pCi/ml. This represents 3.2% of the limits specified in Appendix B to 10 CFR Part 20 (1.0E-07 pC1/ml) for unrestricted areas.  !

i Dilution water during the period amounted to 3.42E+11 liters, while radioactive  !

liquid waste volume was 7.27E+07 liters.

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Additionally, 71.0 Curies of tritium were discharged at an average diluted con-l centration 2.09E-07 pCi/ml or 6.95E 03% of MPC (3.0E-03 pCi/ml), i I

i l-Gross alpha radioactivity released during the reporting period totaled 6.81E-05 l

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O O-TABLE 2A EFFLUENT AND WASTE DISPOSAL REPORT LIQUID EFFLUENTS-SUMMATION O/ ALL RELEASES SEMIANNUAL FOR JAN THRU JUN 91 1 CUARTER 2 QUARTER A. FISSION & ACTIVATION PRODUCTS TOTAL RELEASE (NO TRITIUM. GAS. ALPHA) C1 1.03E+00 6.60C-02 AVG DILUTED CONCENTRATION UCI/ML 6.10E-09 3.82E-10 PERCENT OF LIMIT 10 CFR 20 APP. B= 1.OE-07 % 6.10E+0D 3.82E-01

8. TRITIUM TOTAL RELEASE C1 4.15E*01 2.95E*01 AVG DILUTED CONCENTRATION UCI/ML 2.46E-07 1.7tE-07 PERCENT OF LIMIT 10 CFR 20. APP. B = 3.OE-03  % 8.21E-03 5. 70E -O'a C DISSOLVED & ENTRAINED GASES TOTAL RELEASE CI 5.57E-02 3.20E-07 AVG DILUTED CONCENTRATION UCI/ML 3.30E-10 1.85E-10 rERCENT OF LIMIT TECH SPEC = 2.OE-04 UCI/ML  % 1.65E-04 9.27E-05 O. GROSS ALPHA RAD 10ACT!v1TV TOTAL RELEASE CI 5.80E-06 6.23E-CS E. VOLUME OF WASTE RELEASE PRIOR TO DIL. ' LITERS 3.44E*07 3.83E*07 F. VOLUME OF DILUTION WATER THIS PERIOD LITERS 1.69E+11 1.73E+11 IV-3

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SECTION V i RADIOACTIVE EFFLUENT RELEASES SOLID RADI0 ACTIVE WASTE Technical Specifications (5.9.4.a)

January 1, 1991 - June 30, 1991 e

i l.

i 5

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N N rW-T T vy r- .er - e1 ew _s m,.e.4 w-e. m., a m-,., _ _ ,_,. _..,_ ,_m m .__.. . _-

Radioactive Effluent Releases Solid Radioactive O waste Effiueat and waste oisposai Report January 1, 1991 thru June 30., 1991 i SOLID WASTE AND 1RRADIATED FUEL SHIPMENTS A. SOLID WASTE SHIPPED OffSITE FOR BURIAL Month Number of Volume Curie Est. Total

1. lyse of Waste...._. 5hicoed Shioments 6 Meter fontent  % Error
a. Spent resins, Jan. 0 0 0 N/A l filter sindges, feb. 0 0 0 N/A evaporator Mar. 1 4.47 7.666 20 bottoms, etc. Apr. 0 0 0 N/A )

May 0 0 0 N/A l Jun. 0 0 0 N/A Six-month Total (Type A) 1 4.47 7,666 N/A b, Dry compressable, Jan. 1 0.49 0.002 20 contaminated Feb. 5 1.11 0.031 20 equipment, etc. M *.r . 9 4.79 0.077 20 bottoms, etc. Apr. 1 0.95 0.016 20 May 2 0.56 0.033 20 Jun. 5 2.28 0.016 20 Six-month Total (Type B) _23 10.18 0.174 20%

c. Irradiated compo- Jan. 0 0 0 N/A nents and other feb. 0 0 0 N/A categories Mar. 0 0 0 N/A Apr. 0 0 0 N/A May 0 0 0 N/A Jun. 0 0 0 N/A Six-month Total (Type C) 0 0 0 N/A
d. Other Jan, 0 0 0 N/A Feb. 0 0 0 N/A l Mar. 0 0 0 N/A Apr. 0 0 0 N/A May 0 0 0 N/A Jun. 0 0 0 N/A Six-month Total (Type D) 0_ 0 0 N/A O

V-2 1

l 1

Radioactive Effluent Releases - Solid Radioactive O Waste offiueat aad Waste Disposa1 Report (Continued)

B. ESTIMATE OF MAJOR NUCLIDE COMPOSITION (By Type of Waste)

1. Percentage of Curies from Represented Isotopes Isotope Percent Curies
a. C 14 44.7 1.350 Cs-134 33.8 1.020 All other nuclides Cs-137 13.1 0.394 consitutue 7ess Tc 99 3.58 0.108 than 1 eercent.

H-3 1.5 0.045 Co 60 1.3 0.039 Mn 54 1.8 0.040

b. Cs-137 62.2 0.117 Tc 99 10.6 0.020 All other nuclides Mo-99 9.7 0.018 constitute less Cs-134 6.4 0.012 than 1 percent.

Ag-110m 4.2 0.008 Co 58 2.0 0.004 Co 60 1.8 0.003 Be 7 1.1 0.002

c. N/A N/A N/A
d. N/A N/A N/A C. SOLID WASTE (DISPOSITION)

No. of Shioments Transportation Mode Destination 19 Closed Sole Use Vehicle Barnwell, South Carolina 5 Closed Sole Use Vehicle Beatty, Nevada D. SOLID WASTE (DISPOSITION)

N/A N/A N/A Q

i V-3 L

Radioactive Effluent Releases - Solid Radioactive O waste Erriueat aad waste Disresai aePort (Continued)

E. PCP and ODCM Revisions for the Period January 1, 1991 - June 30, 1991 In accordance with Technical Specification 5.9.4.a, the radioactive effluent release report shall include any revisions to the Offsite Dose Calculation Manual (0DCM) and the Process Control Program (PCP).

No revisions were made to the PCP.

One revision was made to the ODCM. The purpose of the revision (Rev. 9, 05-15-91) was to add radiation monitors RM041, RM042 RM043 in the new Cher.istry and Radwaste Building to the ODCM.

O V-4

SECTION VI JOINT FREQUENCY DISTRIBUTION WIND DIRECTION VS. WIND SPEED BY STABILITY CLASS AND METEOROLOGY DATA PER BATt,Il RELEASE (Regulatory Guide 1.21) ,

i January 1, 1991 - June 30, 1991  ;

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.lv)

~

VI-1

VI JOINT FREQUENCY DISTRIBUTION WIND DIRECTION VS, WIND SPEED BY STABl'ITY O ct^ss AnD stTronDtoov DATA etR B^ica attt^st A. Meteorology data per batch tables will have -99 values signifying either invalid data or no data available.

B. Meteorological Data Recovery Data recovery from the on-site weather tower for the period January thru June 1991 exceeded the 90 percent regulatory recovery guide for all parameters except WD45 due to sensor malfunction. All parame-teri considered, a cumulative recovery rate of 94.0 percent was achieved. The following table is a summary of the parameters and their respective recovery rates for tha period:

Recovered Actual Parameter Hrs /

Parameter Recovery Rats Total Parameter Hrs WD110 0 n92 4080/4344 WD45 0.7965 3460/4344 WD10 0.9696 4212/4344 WS110 0.9742 4232/4344 WS45 0.9710 4218/4344 WS10 0.9735 4229/4344 Delta T110M 0.9733 4228/4344 T10M 0.9733 4228/4344 Total Possible Hours: 34,752 Actual Tower Recovery: 32,887 Recovery Rate: 0.9463 O

VI-2

B. Meteorological Data Recovery (Continued)

Hourly meteorological data used to replace missing tower data for the months of January 1991 thru June 1991 originated from the North Omaha National Weather Service e d NOAA Daily Synoptic Weather Maps. This raw data was used in formulating synthetic hourly data calculated in accor-dance with a proceduralized Pasquill-Turner transformation which utilizes solar angle, time of day, cloud cover, and wind speed to determine the Pasquill Class.

The tabulations of the Weather Tower Data for January 1, 1991 thru June 30, 1991 look appropriate for the season as indicated. The Pasquill Classes observed for the siv month period are detailed below. The first three months of the first half of 1991 (January-March) were:

Pasquill Class A B C D E F G Total

% Obs. 9.9 13.6 11.1 29.6 22.1 10.3 3.4 - 100.0 and for April thru June were:

Pasquill Class A B C D E F G Total

% Obs. 11.1 16.3 14.1 36.3 16.0 5.6 0.6 - 100.0 The data, when corrected and/or supplemented by the synthetic data, derived from NWS NOAA data brought the recovery rate up above that required for maintaining adequate recovery as specified by the Nuclear Regulatory Commission. Recovery of synthetic and actual data requires a minimum recovery rate of 90 percent for the year.

On the basis of the data and its cross-checks, the weather data as amended is completely valid for use in tabulating reactor vent releases.

O VI-3

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', TABLE 158 - ALL DATA PERIOD 04/01/1991 THROUGH 06/30/1991 RUN FROM' TAPE SERIES TRI-EX OMAHA PUBLIC power DISTRICT FORT CALHOUN NUCLEAR STATION JOINT FREQUENCY DISTRIBUTION WIND DIRECTION VS. WIND SPEED'IN METERS /SEC FOR DT100 = -INF TO +1NF IN FREQUENCY DATA USED -- WD10 .WS10 .DT100 SECTOR I$ WINO DIRECTION NOT AFFECTED DIRECTION 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 a.5 5.0 6.0 7.0 8.0- 9.0 SECTOR TO TO TO TO TO 70 TO TO TO TO TO TO TO TO 10 TOTFL USAR 0.4 0.9 1.4 1.9 2.4 2.9 3.4 3.9 4.4 4.9 5.9 6.9 7.9 8.9 INF i

L NNE 0. 8. 13. 9. 14 10. 2. O. 1. O. O. O. O. O. O. 57. 1.8 NE 3. 3. 10. 5. 11. 10. O. O. O.

2. 2. 2. 1. 1 1 51 2.2 ENE 0. 1 4 11 21. 14 5. 5. O. O. 1. O. O. O. 1. 63. 2.5 E 1 3. 6. 11. 17. 12. 7 7 4. 6. 27. 10. 1 2. 8. 122. 4.0 ESE 1 12. 13. 15. 15. 21 18. 18. 22. 16. 22. 10. 1 O. 2 186. 3.4 SE 8. 11 20. 22. 28. 39. 44 33. 36. 20. 26. 14 9. D. O. 310. 3.3 SSE 4 8. 8. 9. 19. 15. 43. 53. 57. 39. 72. 50. 12. 8. 2. 399. 4.4 5 5. 15. 11. '10. M. 9. 12, 21, 14- 19. 32. 25. 15. 3. 2. 198. 4.2 ,

SSw 11. 7. 5. 15. 7 7. 5. 6. 4 5. 11. 12. 8. 4 5. 112. 3.8 Sm 6. 12. 6, 9. 11. 4 12. 5. 5. 7 1 1. D. O. O. 79, 2.3 wSW 4 19. 6. 10. 11 O. 3. .5. 2. 2. 9. C. O.

1 1. '73. 2.3 W 17. 23. 13. 20. 4 6. 6. 5. 2. 1. 4 O. O. O. 1 102. 1.8 WNw 6. 26. 26. 11 15. 12. 3. 5. 1 2. 2. O. O. O. 1.7 1 110.

Nw 4 22, 21 ~4. 19. 19. 7. 2. 5. 7. 5. O. O. O. O. 129. 2.1 NNw 3. 7. 17, 2 6 .' 11. ' 12. 15. 8. 5. 1. O. O. D. O. 1 106. 2.2 N 5. 3. 12. 23. 17. 14 5. 3. O. O. O. O. O. 4 1 87. 2.4 TOTAL 78, 180. 191 '224 225. 204 189. 178. 160. 126, 213. 123. 46. 21. 26. 2184 3.2 NUMBER OF INVALID OBSERVATIONS = 0.

PERCENT OF VALID OBSERVATIONS = 100.0 l

VI-27

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++00 R MPH DEG DEG C 11 0.5 '288.6 -1.4

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- 16 1.0 32.9 -1.7 17 0.7 41.6 -1.5 18 1.3 229.6 -0.1 19 2.4 115.9 -0.4 20 0.4 181.3 0.2 21 0.2 302.9 1.2 22 0.4 346.9 0.2 23 0.6 15.4 0.3 24 0.R 87.5 -0.7 1 1.8 85.1 -0.8 2 0.5 23.3 -0.4 3 0.5 216.7 -0.1 4 0.4 345.8 -0.7 5 1.3 44.9 -1.3 6 2.4 61.5 -1.5 7 2.4 92.1 -1.4 8 1.6 95.1 -1.3 9 1.3 90.5 -1.4 10 3.8 95.0 -1.7 STOP TIME JAN 10.1991 HOUF. 9 MINUTE s5 STARTING TIME JAN 10.1991 HOUR 11 MINUTE 11

  • IME wS10 WD10 DT110 HOUR MPH DEG DEG C
  • 1 3.0 74.5 -1.8 12 3.8 69.3 -1.8 13 5.9 102.4 -1.7 14 2.9 120.0 -1.5 15 1.6 17.8 -1.7 16 2.0 28.1 -1.7 17 2.6 54.9 -1.6 18 1.7 65.7 -1.5 19 1.3 48.0 -1.5 20 0.8 29.2 -1.5 21 1.3 342.8 -1.1 22 0.8 325.1 -1.1 23 0.7 303.0 -1.1 24 1.8 301.5 <1.1 1 1.0- 295.0 -1.2 VI-42

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RELEASE NUMBER' 91008 CONTAINMENT PURGE i STARTING TIME JAN 24.1991 HOUR 17 M;NUTE 27 TIME WS10 WD10 DT110 HOUR MPH DEG DEG C

- '17 6.4 103.2 -1.6 18 6.3 97.8 -1.6 39 7.1 95.9 -1.7 20 5.8 96.4 -1.6 21 4.5 80.3 -1.5 22 3.4 64.3 -1.5 23 3.8 70.5 -1.4 24 3.9 75.4 -1.5 1 3.4 73.1 -1.5 2 2.0 52.8 -1.4 3 1.8 349.8 -1.5

< 4 2.2 23.4 .-1.5 5 2.5 17.7 -1.6 STOp TIwE JAN 25.1991 HOUR 4 m!NUTE 39 i

STARTIP.G TIME JAN 25.1991 NOUR S MINUTE 15 4

TIwE wS10 WD10 DT110 HOUR MPH DEG DEG C 5 2.5 17.7 -1.6 6 2.8 12.1 -1.7

7 2.3 18.8 -1.6 e 1.7 33.4 -1.5 9 1.2 s.7 -1.6 10 2.1 349.8 -1.9 11 2.5 343.7 -2.2 1 12 3.0 341.6 -2.1 l

STOP TIME JAN 25.1991 HOUR 11 WINUTE 23

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G RELEASE NUMBER 91009 CONTAINMENT PURGE STARTING TIME JAN 31.1991 HOUR 22 MINUTE O TIME WS10 WD10 DT110

$40V R MPH DEG DEG C 22 1.7 12P.0 4.1 23 1.0 2Ld.4 7.0 24 2.2 147.2 10.2 1 1.5 296.2 8.7 2 2.2 275.1 8.2 3 1.2 213.0 9.6 4 1.3 20E.4 9.5 5 1.0 27.0 5.5 6 1.4 158.3 7.4 7 2.5 92.9 3.1 8 3.3 191.9 2.7 9 5.2 158.2 0.6 10 5.8 174.2 -1.0 11 9.0 187.4 -0.9 12 6.7 183.6 -1.7 13 6.9 201.8 -1.1 14 4.1 217.5 -1.8 STOP TIME FEB 1.1991 HOUR 13 MINUTE 22 STARTING TIME FEB 1.1991 HOUR 14 MINUTE 16 "IVE WS10 wD10 DT110 40U 4 MPH OEG DEG C 14 4.1 217.5 -1.8 15 4.5 219.2 -1.6 16 3.8 203.5 -1.4 17 3.5 193.5 -1.2 18 2.0 220.4 -0.8 19 2.0 213.5 0.3 23 2.8 233.1 1.2 21 3.9 227.8 1.6 22 1.7 247.1 1.2 23 1.1 278.5 0.9

4 1.2 270.4 4.1 1 1.4  ??B.9 7.2 2 1.0 203.3 7.3 3 1.3 106.1 8.7 4 1.4 106.7 8.6 5 0.8 118.4 8.0 6 1.4 122.5 7.6 7 1.4 123.3 6.8 8 0.7 206.8 8.4 9 1.2 279.3 8.0 10 1.4 89.4 0.8 11 1.6 153.2 -1.7 VI-51

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< 12 2.4 144.7 -1.8 13 3.6 '157.5 -1.7 14 '

6.5 163.9 -1.4 15 .9.4 162.2 -1.5 16 9.8 161.8 -1.2 17 9.2 153.2 -1.1  !

18 8.4 147.6 -0.7 19 7.1 147.5- -0.4 20 7.3 156.4 0.1 21 11.4 166.7 0.3 t 22 13.b 170.7 -0.1 23 12.9 169.6 -0.1 24 13.0 158.8 -0.2 1 14.8 172.6 -0.2 2 15.8 175.2 -0.2

  • 3 15.7 174.2 -0.3 4 9.1 176.3 -0.6 i

5 6.0 172.1 -0.7 6 9.5 175.8 -0.3 7 12.0 179.5- -0.2 8 11.3 182.2 -0.4 9 12.5 177.5 -0.5 10 12.5 180.3 -1.0 11 12.6 185.6 -1.1

, 12 11.6 182.9 ~-1.3 13 10.1 172.6 -1.3 '

14 10.3 165.4 -1.4 ,

15 8.4 174.8 -1.2 '

16 7.1 169.3 -1.3 +

17 2.0 158.1 -1.2 i 18 0.5 161.4 -0.1 I 19 1.0 138.7 3.2 20 2.1 146.5 4.0 ft 21 1.4 242.4 4.5 22 1.6 144.5 4.8 23 2.4 202.5 5.4 l 1 24 1.4 309.9 4.1 i

1 0.9 57.2 3.8 '

2 0.9 290.1 2.9 i 3 1.6 299.6 1.4 I 4 1.9 289.0 1.1 5 1.6 276.9 0.8 6 1.6 276.8 1.1

, 7 2.0 222.1 1.2 i 8 1.2 250.7 1.3 f 9 1.7 284.8 1.3 10 0.6 291.1 -0.7 f 11 0.8 325.6 -1.3 .

STOP TIME FEB 4.1991 HOUst 10 181NUTE 2 l

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RELEASE NUMBER 91012 CONTAINMENT PURGE STARTING TIME. FEB 21.1991 HOUR 14 MINUTE 14 TIME WS10 WD10 DT110 HOUR MPH OEG. DEG C 14 2.0 320.1 -2.2 15 2.8 353.1 -2.2

$6 3.3 357.4 -2.2 17 2.2 352.6 -1.8 18~ 0.7 350.5 -1.0 19 2.1 297.9 0.5 20 2.9 303.9 0.8 21 1.8 297.6 1.2 22 1.6 300.5 0.9

3 2.5 307.2 0.9
4 1.3 '275.2 0.2
  • 0.6 252.6 -0.3 STOP TIME FEB 22.1991 HOUR 0 MINUTE 58 STARTING TIME FE8 22.1991 HOUR 2 MINUTE 3 ,

TIME WS10 WD10 DT110 l HOUR MPH DEG .DEG C l 2 0.5 281.3 0.4 ..

3 1.6 289.1 0.8 1 a 0.8 288.5 0.1 i 5 1.9 306.0 -0.1 6 1.3 291.3 -0.1 7 7 1.5 327.3 -0.4 4 6 1.1 303.3 -0.3

  • 9 1.0 304.2 -D.6 .,

10 2.0 351.0 -1.8 L.

11  ?.6 30.9 -2.1 12 2.6 29.9 -2.3 13 3.3 53.1 -2.3 14 3.3 48.0 -2.3 15 2.8 335.0 -2.2 16 3.5 50.1 -2.3 17 3.9 75.2 -1.8 18 3.8 73.6 -1.6 19 5.3 90.3 -1.4 20 5.8 106.3 -1.3

?? 6.2 106.4 -1.3 22 6.0 103.2 -1.4

23 5.8 107.2 -1.3 24 8.5 114.9 -1.4 1 1 9.1 118.3 -1.5

. 2 11.9 115.4 -1.4 l 3 11.8 116.B .-1.4 l

4 10.7 120.8 -1.3- ,

t VI-57  :

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O 5 12.6 124.3 -1.3 6 12.7 129.2 -1.4 7 14.4 128.7 -1.3 e 13.6 308.5 -1.3 9 12.9 142.7 -1.5 10 13.3 166.6 -1,6 11 13.2 172.6 -1.7 12 13.5 184.8 -1.8 .

13 11.0 217.0 -2.1 14 7.1 272.4 -2.1 15 11.C 296.1 -2.0 16 12.1 309.2 -1.8 17 12.8 305.1 -1.6 18 11.0 314.3 -1.4

'9 8.6 314.2 -1.0 20 8.1 309.2 -1.1 21 8.8 314.0 -1.2 22 7.4 318.4 -1.4 23 7.5 319.9 -1.4 24 6.4 325.8 -1.5 1 6.9 320.3 -1.5 2 6.6 324.8 -1.5 3 #.3 325.9 -1.4 4 3.3 312.3 -1.3 5 2.9 309.3 -1.2 6 2.0 301.7 -1.0 7 2.0 325.4 -1.3 0 0.4 320.8 -1.3 9 3.0 344.3 -1.9

'O 3.3 348.4 -2.1

'I 3.0 20.9 -2.3 12 3.3 23.8 -2.3 13 3.1 348.3 -2.3 14 3.3 334.3 -2.4 15 3.8 332.8 -2.1 16 2.3 342.1 -2.1

  • 7 2.1 326.2 -1.8 19 1.3 341.9 -1.6 19 1.2 353.6 -1.6 20 2.1 P.7 -1.6 21 2.2 35.3 -1.6 22 2.2 14.9 -1.7 23 3.0 349.2 -1.6
4 2.3 343.0 -1.6 1 2.9 339.1 -1.6 2 3.6 349.5 -1.7 3 3.4 9.2 -1.8 4 2.5 18.1 -1.7 5 2.5 11.1 -1.7 6 2.3 10.4 -1.7 7 2.3 12.1 -1.7 8 2.0 27.8 -T.7 STOP TIME FEB 25.1991 HOUR 7 MINUTE A8 VI-58

O RELEASE NUMBER 91013 CONTAINieENT PURGE STARTING TIME FE8 28.1991 HOUR 14 MINUTE 15 TIME WS10 WD10 DT110 HOUR MPH DEG DEG C 14 7.6 183.2 -2.1 15 6.3 195.7 -2.1 16 6.4 199.8 -1.9 17 3.8 166.7 -1.7 l 18 1.1 240.9 -0.5 19 1.2 123.8 2.1 20 1.5 117.1 J.4 21 2.7 117.1 4.1 22 1.1 263.0 5.1 23 1.6 252.1 5.1 24 0.9 227.5 5.E i 1.9 117.8 5.1 2 10.2 164.9 -O 6 3 9.1 179.5 -0.8 4 65 164.4 -0.8 5 4.3 100.9 -0.9 6 3.6 115.2 -0.7 7 2.0 102.4 -0.7 8 3.4 117.5 -1.0

  • 0.9 242.6 -0.2 to 1.1 259.6 0.4 11 0.4 211.0 0.4 12 0.4 318.7 -0.1 13 0.9 213.2 0.6 14 0.8 320.2 0.2 15 2.3 304.5 -0.8 16 6.2 313.8 -1.4 17 11.3 311.7 -2 1 18 12.2 315.9 -2.1 19 12.5 314.9 -2.0 20 13.2 316.0 -2.2 21 12.6 318.0 -2.1 22 12.0 318.9 -1.9 23 10.0 320.3 -1.8 24 9.6 320.1 -1.8 1 9.0 320.3 -1.7 2 9.6 319.9 -1.6 3 10.2 317.6 -1.7 4 10.8 319.0 -1.6 5 10.2 322.4 -1.6 j 6 9.9 325.4 -1.6 l 7 9.6 323.7 -1.6 8 8.4 327.7 -1.6 9 7.2 330.1 -1.7 10 6.0 332.2 -1.7 11 6.9 330.7 -1.8 12 7.8 331.0 -1.9 13 8.4 331.0 -2.0 14 8.1 332.4 -2.0 VI-59

O 15 0.1 332.5 -1.9 16 '8 330.9 -1.8 17 6.b 331.6 -1.7 18 5.4 326.0 -1.6 19 4.8 335.9 -1.3 20 4.5 339.5 -1.1 21 9.5 341.4 -1.2 22 4.2 139.1 -1.3 l 23 4.2 341.8 -1.4  !

24 4.2 3*~' -1.4 i 1 3.0 324.5 -1.4 2 2.9 322.9 -1.3 i 3 2.7 329.4 -1.4 l 4 1.2 347.1 -1.7 5 1.7 339.8 -1.7 6 2.2 335.4 -1.6 7 2.7 3.3 1.7 8 2.0 21.2 1.8 9 2.0 35.1 -1.8 to 0.3 266.2 -1.7 11 2.0 292.0 -1.9 12 2.0 330.4 -2.0 13 2.0 280.5 -2.0 14 2.0 358.7 -2.3 15 1.3 41.9 -2.2 16 1.9 46.1 -2.3 17 3.2 94.9 -1.9 18 3.8 112.2 -1.7 19 1.4 15.5 -1.1 20 0.8 172.2 -0.5 21 2.1 118.3 -0.1 22 2.2 103.4 -0.3 23 3.7 114.1 -0.3 24 3.5 105.6 -0.8 1 4.7 105.3 -1.0 2 4.9 112.1 -0.7 3 6.6 139.3 -0.8 4 7.0 168.3 -1.0 5 8.4 167.0 -1.0 6 4.6 179.2 -1.1 7 10.7 159.4 -0.8 8 11.8 168.4 -0.9 9 7.6 159.3 -1.4 STOP TIME MAR 4.1991 HOUR 8 MINUTE 13 l

VI-60

O RELEASE NUM9ER 91014 CONTAINMENT PURGE STARTING TIME MAR 7.1991 HOUE 13 MINUTE 27 TIME wS10 WD10 DT110 Hour WPH DEG OEG C 13 5.5 187.8 -2.0 14 7.1 178.0 -2.1 15 7.5 185.4 -2.0 16 8.0 196.3 -1.8 17 7.9 179.5 -1.8 18 6.4 161.7 -1.4 19 5.2 148.2 -0.5 20 6.4 161.0 0.6 21 7.9 175.4 1.4 22 9.4 175.8 1.7 23 9.4 177.2 1.6 24 9.9 179.6 0.6 1 9.0 184.7 0.7 2 10.1 196.7 0.7 3 10.6 208.1 0.8 l a 10.9 210.1 0.3 s 12.1 200.8 0.3 6 12.0 200.4 -0.2 7 12.7 198.9 -0.2 8 12.9 193.4 -0.3 9 15.5 201 9 ~1.2 STOR TIME MAR 8.1991 HOUR 8 MINUTE 45 STARTING TIME MAR 8.1991 HOUR 10 MINUTE 35

'IVE wS10 WD10 DT110 HC c UPH DEG OEG C 10 12.0 206.7 -1.6 i? 7.4 218.1 -1.8 12 5.8 264.2 -2.3 13 7.1 302.8 -2.4 14 8.9 292.5 -2.2 15 8.6 302.8 -2.1 16 S.7 306.6 -1.6 57 10.1 304 1 -1.8 18 7.9 307.4 -1.3 19 5.0 307.3 -0.2 20 1.4 282.1 1.1 21 3.8 285.0 0.6 22 3.7 289.4 -0.1 23 5.2 285.1 -0.2 24 5.1 292.7 -0.3 1 6.6 293.3 0.5 2 5.7 284.3 1.5 3.8 277.9 4 3

VI-61

O 4 4.0 278.3 -0.3 5 4.7 288.1 -0.5 6 5.0 285.7 -0.3 7 3.2 279.0 -0.3 6 3.4 279.9 -0.5 9 3.9 285.5 -1.7 10 3.2 300.6 -2.1 11 3.3 273.6 -2.2 12 3.8 260.8 -2.3 13 3.9 261.4 -2.3 14 4.4 264.1 -2.3 15 4.7 257.6 -2.3 16 5.6 249.7 -2.1 l 17 6.3 235.3 -1.9 18 2.8 218.7 -1.5 19 2.5 147.7 -1.5 20 3.E 130.6 2.5 21 7.4 118.8 1.6 22 7.3 129.6 1.4 23 5.9 135.6 1.9 24 5.2 144.8 2.3 1 6.0 159.0 2.4 2 6.4 163.3 2.2 3 7.5 163.0 2.0 4 8.3 179.9 1.6 5 11.1 188.3 2.0 6 12.4 186.9 1.2 7 10.4 184.5 0.8 e 11.6 172.1 0.2 9 13.8 173.0 -0.6

'O 11.5 165.5 -1.2

1 9.9 156.2 -1.6
  • 2 11.7 168.6 -1.7 13 15.0 171.0 -1.7 14 16.8 173.6 -1.8 15 17.5 177.9 -1.8 16 16.3 169.9 -1.7 17 16.5 166.2 -1.5 18 12.7 157.6 -1.3 19 12.0 144.0 -0.9 20 10.1 141.1 -0.7 21 11.7 156.6 -0.6 22 13.2 156.6 -0.7 23 14.1 158.0 -0.8 24 10.9 149.1 -0.8 1 11.3 161.5 -0.6 2 11.1 158.6 -0.6 3 9.2 155.9 -0.6 4 5.2 134.7 -0.7 5 4.1 117.5 -0.2 6 2.3 83.3 1.2 7 1.3 108.0 2.1 STOP TIME MAR 11.1991 HOUR 6 MINUTE 17 VI-62

O RELEASE NUW8ER 91015 CONTAINMENT PURGE STARTING TIME MAR 14.1991 HOUR 21 WINUTE 12 T!wE WS10 WD10 DT110 HOUR WPH OEG OEG C 25 0.9 66.7 -0.4 22 1.3 327.2 -0.7 23 1.9 223.4 -0.5

?4 1.3 118.8 0.5 1 1.3 '72.9 0.3 2 1.2 271.7 1.0 3 2.6 256.7 1.5 4 1.4 247.8 2.0 5 0.0 273.0 2.4 6 1.6 303.2 2.5 7 1.4 291.2 2.2 8 0.1 152.7 1.4 9 2.0 96.9 -0.1 10 5.4 101.8 -1.0 1' 6.2 119.1 -1.5 i; 5.2 116.8 -1.6

'3 5.7 110.3 -1.6 4 5.9 110.1 -1.6 15 5.4 116.1 -1.5 16 4.9 112.7 -1.5 17 3.3 118.3 -1.4

  • 6 0.4 195.7 -1.3 19 1.0 257.2 -0.8 20 0.8 275.0 -0.8 21 0.6 305.0 -1.0 22 1.0 61.2 -1.3 23 0.3 101.6 -1.4 24 1.6 116.3 -1.3 1 1.9 113.0 -1,3 2 1.6 117.9 -1.4 3 1.8 118.7 -1.3 4 3.2 *21.0 -1.4 5 1.8 76.4 -1.4 6 0.9 136.4 -1.4 7 1.4 132.8 -1.3 8 2.9 150.2 -1.5 9 2.9 158.4 -1.6 50 5.5 177.9 -1.8 11 5.8 188.5 -1.8 12 3.4 135.2 -1.7 13 4.4 167.3 -1.6 14 5.5 134.6 -1.8 15 6.6 129.8 -1.8 16 8.5 114.8 -1.7 17 7.4 113.4 -1.6 1e 4.6 106.3 -1.4

'9 1.7 100.3 -1.1 20 0.4 64.7 -1.1 21 C.2 172.8 -1.0 VI-63

O 22 1.9 220.8 -1.1 23 3.2 8 3 . ". -1.5 24 3.4 80.5 -1.5 1 1.4 308.4 -1.4 2 0.6 0.1 -1.2 3 1.6 13.0 -1.2 4 1.0 7.7 -1.3 5 1.7 345.1 -1.5 6 2.8 355.8 -1.9

' 3.7 359.5 -1.9 0 3.6 356.9 -2.1 9 3.6 353.6 -2.1 to 4.8 347.5 -2.2 11 5.1 341.6 -2.1 12 4.8 336.3 -1.9 13 4.2 320.5 -2.1 14 6.8 322.6 -2.2 15 6.0 331.6 -2.0 16 6.2 332.4 -1.9 17 6.2 324.4 -1.7 18 6.8 318.9 -1.5 19 4.4 309.3 -1.2 20 3.2 307.6 -0.8 21 1.4 292.5 -0.6 22 1.0 275.8 -0.6 23 1.5 281.5 -0.7 24 1.0 286.9 -0.6 1 0.5 270.6 -0.4 2 0.8 275.6 -0.3 3 2.9 243.2 -0.5 4 1.9 257.8 -1.6 5 1.3 229.5 -1.6 6 3.9 119.7 -1.0 S*Op TIME WAR 18.1991 HOUR 5 WINUTE 55 VI-64

WELEASE NUVBER 91016 CONTAINMENT PURGE STARTING TIME MAR 21.1991 HOUR 16 WINUTE 47 TIME WS10 WD10 07110 HOUR WPH DEG OEG C 16 2.0 294.4 -2.0 17 2.9 7.1 -1.9 18 2.8 30.1 -1.7 19 0.6 9.2 -0.7 20 3.5 343.5 -0.9 21 3.9 347.1 -1.2 22 3.1 355.6 -1.3 23 S.C 2.6 -1.5 24 3.2 5.J -1.5 1 2.4 11.9 -1.4 2 3.3 72.0 -1.4 3 1.5 42.9 -1.0 STOO TIME MAR 22.1991 HOUR 2 MINUTE 30 STARTING TIME MAR 22.1991 HOUR 3 MINUTE 32 TIME WS10 WD10 DT110

  • HOUR MPH DEG DEG C a 3 1.5 42.9 -1.0 4 3.4 81.4 -1,3 5 1.4 50.8 -1.1 6 2.1 342.8 -1.0 7 1.4 302.6 -0.9 8 3.5 335.5 -1.6 9 4.8 347.2 -1.8 10 3.9 0.2 -1.9 11 5.0 10.2 -2.0 12 4.0 18.8 -1.9 13 4.8 30.0 -1.9 14 4.0 341.8 -1".B 15 4.6 337.0 -1.7 16 5.9 326.4 -2.1 17 6.9 345.2 -2.0 16 3.9 287.2 -1.7 19 5.0 258.9 -1.6 2t) 7.4 294.7 -1.9 21 9.5 304.2 -1.R 22 10.1 289.9 -1.6 23 10.4 281.4 -1.7 24 11.6 279.8 -1.4 1 10.4 278.1 -1.4 2 10.6 278.2 -1.4 3 9.6 278.4 -1.4 4 9.6 274.1 -1.4 5 9.7 273.5 -1.2 VI-65

O 6 9.9 272.8 -1.3 7 10.2 268.3 -1.2 8 9.7 266.8 -1.3 9 11.4 271.0 -1.4 10 ?3.0 281.5 -1.4 11 13.6 280.2 -1.3 12 14.1 285.9 -1.5 13 14.6 285.3 -1.6 14 13.2 283.2 -1.7 15 14.0 286.2 -1.8 16 13.4 286.2 -1.7 17 13.0 284.7 -1.5 18 11.6 228.8 -1.2 19 9.7 285.4 -0.8 2D 6.4 276.7 -0.2 STOP TIME MAR 23.1991 HOUR 19 u!NUTE'10 l

i VI-66

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RELEASE NUMBER 91017 CONTAINMENT PURGE STARTING TIME MAR 24,1991 ' HOUR 13 MINUTE 44 TIME WS10 WD10 DT110 HOUR MPH DEG DEG C 13 3.5 185.1 -2.0 l 14 4.9 163.1 -2.0 15 6.9 146.5 -2.0 l 16 7.1 141.0 -2.0 17 8.1 147.7 -1.8 18 -7.4 129.6 -1.5 19 5.5 113.3 -0.4 20 3.3 113.1 0.3 21 2. 4 ' 46.3 0.7 22 0.6 151.8 1.5 i

23 3.7 124.6 1.0 1

24 0.5 190.7 0.8 1 2.1 315.3 1.7 2 1.3 319.1 2.3 3 0.1 291.6 2.3 <

4 1.8 272.3 2.6 5 1.5 330.8 2.3 6 0.7 236.6 1.9 7 3.2 98.9 1.6 8 4.0 110.7 0.2 9 6.2 112.6 -0.3

'O 10.2 122.1 -0.8 11 11.9 136.7 -1.6

?2 15.0 150.1 - 1. 7 -

13 15.5 153.6 -1.8-14 16.3 163.5 -1.9 15 14.5 168.1 -1.9, 16 14.6 186 2 -1.7 STOP TIME MAR 25,1991 HOUR 15 MINUTE 50 STARTING TIME MAR 25.1991 HOUR 16 MINUTE 35 7IME WS10 w010 OT110

+4004 MPH DEG DEG C 16 14.6 '186.2 -1.7 17 11.6 198.2 -1.5' 18 7.7 202.2 - 1. 2 '

19 3.6 214.9 -0.2 20 4.4 203.8 0.2 21 6.5 181.3 0.1 22 7.3 172.1 0.1 23 8.6 -151.2 0.5 24 9.1 '162.1 -0.2 1 10.5 162.6 -0.6 2 .10.3 '158.3 -0.9 VI-67

t 10.9 168.4 -1.0 4 9.6 165.0. -1.0 -

5 10.4 170.1 -0.9.

6 -8.5 163.8 -1.0 7 4.4 135.9 -1.0 i

6 8.8 175.7 -1.4 -i 9 10.5' 183.8 -1.7 10 12.9' 189.8 -1,9 l

?

11 13.4 192.6- ~2.0 12 16.6 198.7 -2.I' 13 16.4 204.2 -2.1 Id '16.7 209.6 -2.1 STOP TIME MAR 26,1991 HOUR 13 MINUTE 5 .

t I

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t 4

i 4

VI-68

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RELEASE NUMBER 91017 CONTAINMENT PURGE STARTING 71ME MAR 26.1991 HOUR 14 MIN'JTE 4 TIME WS10 wD10 DT110 HOttR MPH DEG DEG C 14 16.7 209.6 -2.1 15 13.0 217.9 -2.0 16 ?1.6 218.6 -1.8 17 11.9 209.9 -1.6 18 0.0 204.7 -1.3 19 5.5 212.9 -0.5 20 3.3 197.8 1.0 21 3.6 117.9 2.6 22 2.1 203.6 4.2 23 5.5 297.9 1.7 24 6.5 328.7 - 1. 4 1 4.9 339.2 -2.0 2 2.5 232.4 -2.2 3 4.2 338.1 -2.3 4 3.5 326.4 -1.9 5 5.8 328.4 -2.0 6 6.3 336.2 -2.0 7 9.2 349.2 -2.0 8 6.6 336.3 -2.3 9 7.6 331.9 -2.3 10 13.0 319.2 -2.1 11 10.0 318.0 -2.0 12 7.5 318.0 -1.9 13 6.0 303.8 -2.0 14 4.8 310.5 -1.9 15 14.6 311.4 -1.8 16 13.7 298.0 -1.7 17 10.6 292.7 -1.6 18 9.4 283.8 -1.4 19 4.9 262.1 -1.3 20 5.6 248.3 0.9 21 11.0 232.8 0.2 22 9.1 226.8 -0.2 23 7.2 233.2 -0.1 STOP TIME MAR 27.1991 HOUR 22 MINUTE 5 l

t VI-69

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RELEASE NUMBER 91019 CONTAINMENT PURGE START'NG TIVE MAR 28,1991 40VR 18 MINUTE 55 TruE wS10 WD10 DT110 HOUR MPH DEG OEG C 18 7.2 349.5 -1.9 19 5.0 351.9 -1.3 20 2.4 3.8 -1.1 21 1.1 31.7 -0.6 22 0.5 34.4 -0.3 23 1.1 45.7 -0.5 24 2.8 42.1 -1.1 l

1 2.5 38.9 -1.3 2 2.2 43.7 -1.3 3 1.2 11.9 -1.2 4 1.6 349.6 -1.1 5 1.9 329.5 -1.2 6 1.7 323.0 -1.1 7 0.4 290.3 -0.9 e 0.6 326.6 -1.5 9 1.6 46.2 -- 1. 9 10 3.2 40.8 -1.9 11 4.4 18.7 -1.9 12 5.2 14.4 -2.4 13 E.4 359.8 -2.5 14 6.7 335.8 -2.4 15 7.6 340.5 -2.3 16 7.5 335.4 -2.2 17 7.6 338.4 -2.1 28 7.1 340.4 -1.8

$9 4.5 338.8 -1.3 20 1.4 340.3 -1.0 21 0.3 325.5 -0.9 22 0.3 330.2 -0.9 23 0.2 350.3 -0.9 24 0.2 341.3 -0.9

) t 0.8 287.3 -0.5 l 2 0.1 244.2 -0.2 3 0.4 209.2 0.1 l

1 4 0.5 185.2 0.6 5 0.9 129.5 0.7 6 1.6 152.4 0.7 l

7 1.5 116.9 -0.5 I P 3.5 151.3 -1.2 9 6.9 170.6 -1.8 10 8.6 195.3 -1.9 11 10.5 207.1 -2.0 12 11.9 222.5 -2.1 13 12.9 211.9 -2.1 14 12.4 217.2 -1.9 15 13.7 215.9 -1.9 16 14.6 217.5 -1.8 17 12.8 224.* -1.6 18 12.5 216.3 -1.5 VI-70

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. 19- 8.5 20s.8 -1.2 20- 6.2 211.7. -0. 6 '

21 6.6 189.3 ' -1.6

. 22 10.8 209.7 0.4

- 23 11.5 225.1 0.9 24 . 7. 7 250.0 ' O. 5 1 3.7 275.3 0.6 2' '2.9 281.7 0.6 3 2.5 300.6 1.0 4 2.1 - 292.7 1.2 i 5 2.6 294.6 1.0 6 2.4 286.8 1.0

.i 7 2.9 282.5 0.4 8 2.6 290.1 -0.6  !

9 3.8 271.0 -1.8  ;

10 6.2 261.4 -2.1

  • 11 7.7 - 272.3 -2.2 Ih 12 9.1 ' 293.8 -2.4 13 9.2 300.2 -2.S [

! 14 9.1 295.0 -2.4 .{

15 7.7 290.5 -2.2 16 7.3 ' 283.1 -2.0 'I

, 17 5.4 273.4 -1.9 .

18 3.2 261.5 -1.6

19 1.1 301.0 -0.6 20 0.9 265.7 1.4 ,

21 1.0' 297.6 2.0 22 1.3 282.9 1.5 23 1.8 265.6 1.3 24 0.9 ~ 186.1 1.5 1 2.5 121.6 2.3 0.8 131.6 1.7 3 0.2 211.2 2.4 4 1.6 248.8 2.9 5 2.5 248.3 3.4 6 1.3 318.4 3.6 0.2 278.5 2.7  !

B 0.4 275.4 0.5 '1 STOP TIME APA 1.1991 HOUR 7 MINU7E 45 l l

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(V RELE'SE NUMBER 91019 CONTAINMENT PURGE STARTING TIME APR 4.1991 . HOUR 13 MINUTE 20 TIME WS10 WD10 0T110 HOUR MPH OEG DEG C 13 4.1 223.8 -2.3 14 4.0 222.2 -2.2 15 3.1 247.4 -2.2 STOP TIME APR 4.1991 HOUR 14 MINUTE 20 STARTING TIME APR 4.1991 HOUR 18 MINUTE' O TIME WS10 wD10 OT110 HOUR MPH OEG :DEG C 18 1.2 240.8 -1.6 19 1.7 254.6 ' -0.7 20 0.1 144.6 0.9 21 0.7 191.7 2.4 22 1.5 115.9 3.0 23 3.4 117.8 3.1 24 2.3 111.4- 3.6 1 2.3 116.9 5.2 2 5.8 191.5 4.7 3 9.0 188.1 4.1 4 10.1 195.8 0.9 5 13.5 205.8 0.9 6 14.2 212.7 0.3 7 13.9 202.5 0.2 8 14.7 201.0 -0.8 9 13.4 198.0 -1.6 10 15.9 199.8 -1.8 11 14.8 200.2 -2.1 12 14.6 193.6 -2.2 13 15.9 195.8 -2.1 14 16.4 200.5 -2.1 15 15.1 206.2 -2.1 16 16.3 197.9 -2.0 17 15.7 193.7 -1.8' 18 12.6 186.7 -1.5 19 9.7 173.7 -0.9 20 10.3 170.3 -0.5 21 10.0 174.0 -0.6 22 11.8 180.8 -0.8 23 12.9 187.9 -1.0 24 12.9 191.7 -1.0 1 12.6 195.0 -0.9 2 14.0 196.8 -0.0 3 15.1 195.1 -0.9 4 15.3 194.1 -0.9 5 15.7 193.7 -0.7 VI-72

6 16.7 192.5 -0.7 7 17.8 196.0 -0.8 8 21.1 196.6 -1.3 9 21.8 196.9 -1.7 10 20.1 201.6 -2.0 11 16.1 200.6 -2.1 12 18.9 200.1 -2.1 13 20.0 200.6 -2.2 14 20.0 196.0 -2.1 15 19.7 196.1 -2.1 16 17.7 189.4 -2.0 17 16.5 164.6 -1.8 la 14.0 182.8 -1.5 i 19 12.3 176.4 -1.1 20 12.7 166.8 -0.8 21 12.6 163.6 -0.8 22 12.8 165.6 -0.9 23 13.4 168.6 -0.9 24 14.8 173.2 -1.0 1 11.5 172.0 -0.9 2 11.6 169.0 -0.9 3 12.0 175.5 -1.0 4 13.2 170.2 -0.9 5 13.8 171.0 -0.9 6 12.8 170.0 -1.0 7 11.9 168.8 -1.2 8 13.5 166.6 -1.6 9 14.8 172.9 -1.8 10 14.3 171.7 -2.0 11 13.5 172.6 -2.2 12 13.0 162.1 -2.2 13 15.1 167.8 -2.2 14 14.5 180.0 -2.2 15 15.6 187.9 -2.t 16 16.0 105.4 -2.0

'7 14.6 180.6 -1.9 Se 13.9 160.5 -1.6

'9 10.1 169.0 -1.1 20 7.8 159.6 -0.0 21 7.3 162.0 -0.8 22 7.2 176.7 -1.1 23 7.8 166.1 ~1.1 24 9.8 172.8 -1.1 1 8.7 177.9 -1.0 l 2 7.9 186.4 -1.0 3 5.e 188.6 -1.0 4 5.0 167.3 -1.1 5 4.3 157.5 -1.1 6 3.7 248.5 -0.8 7 4.4 280.7 -1.2 57CP TIME APR 8.1991 HOUR 6 MINUTE 25 VI-73

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RELEASE NUM9ER 91020' . CONTAINMENT PURGE STARTING TIME APR 11',1991 HOUR 16 MINUTE 15 T!kE WS10 WD10 DT110 HOUA MPH DEG DEG C

.i 16 20.0 101.1 -1.2 17 21.7 102.0 -1.2 18 20.2 100.6 -1.3 19 18.6 97.7 -1.5 20 17.6 97.7 -1.6 21 18.9 99.9 -1.6 22 21.2 101.2 -1.3 23 15.2 104.0 -1.3 24 14.0 92.4 -1.6  !

1 14.0 89.8 -1.6 2 7.4 308.1 -1.5 '

3 6.1 23.3 -2.1 4 11.3 39.8 -1.7 5 12.6 76.E -1.3 I 6 10.4 82.9 -1.6 7 12.4 91.2 -1.8 8 14.4 95.1 -1.8 9 15.0 98.0 -1.9 10 13.0 97.4 -1.9 '

11 11.9 99.7 -1.8 I 12 11.4 95.2 -1.8 i 13 12.0 100.5 -1.7 14 9.3 101.8 -1.7 9 15 11.1 103.5 -1.6 16 9.9 97.1 -1.5 .

17 6.9 83.0 -1.4 .

18 8.6 88.6 -1.5 '

19 10.0 90.1 -1.4 20 7.4 81.9 -1.2 21 12.4 95.0 -1.2 22 11.6 95.5 -1.3 23 9.4 49.0 -1.6 24 1.6 210.2 -1.9 1 3.1 283.3 -2.0 2 5.9 59.6 -2.1 3 4.8 10.1 -2.0 4 10.9 103.7 -2.4 5 14.6 98.3 -2.1 6 5.4 288.0 -1.6 7 5.4 94.6 -1.6 8 4.5 73.8 -1.8  !

9 3.7 192.7 -1.9 '

10 4.7 47.0 -1.9 11 4.7 58.1 -1.9 l 12 6.6 78.2 -1.9 13 4.4 71.1 -1.9  !

14 0.6 146.5- -1.7 15 1.2 358.3 -1.7 16 3.9 320.8 -2.0 '

VI-74

~

17 4.9 325.2 -1.9 18- .5.5 321.4 -1.7~

19 5.2 333.8: -1.7 20 4 .1. 348.8 -1.7 21 3.7. 331.5 -1.6 22 4.5 314.1' -1.9 23 5.1 328.6' -2.4 24 4.2 318.2 -2.2 1 0.3 327.0 0.1 2 0.3 308.6 -2.3 3 5.9- 324.9 -2.3 .t 4 4.0 '336.4 -2.1 5 4.9 286.7 -1.9 6 6.0 292.S -1.8 7 4.5 313.3 -1.5 8- 1.2 298.1 -1.4 9 2.8 304.1. -1.7 10 4.9 310.6 -1.7 11 3.7 313.2 -1.7 12 2.7 295.3 -1.8 13 2.7 318.8 -2.1 14 2.8 329.6 -2.4 15 2.0 252.6 ~2.1 16 0.9 274.3 -2.1 5 17 1.5 320.4 -2.0 1P 1.5 320.4 -2.2 19 2.0 242.2 -1.6 20 1.0 254.1 -1.5 21 0.6 192.3 -0.2 22 0.6 161.0 1.5 23 0.8 110.7 2.2 '

24 4.0 249.8 1.8 1 7.2 168.7 1.6 2 7.1 172.0 1.8 '

3 8.5 174.6 2.2 '

4 9.5 172.0 2.2 r 5 9.3 178.9 0.9 6 11.1 204.5 ' -0.4 ',

7 6.7 248.2 -0.7 8 3.8 280.2 -1.1 ,

9 5.3 286.8 -1.6 STOP TIME APR 15.1991 HOUR 8 MINUTE 47 VI-75 i

' ' _ _ _ _ _ _ -__ ________m_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ . _ _ _ _ . _ _ _ _ _ . _ _ _ _ . _ _ . _ _ _ _ _ _ _ . . _ . _ _ . _ . . . _ _ . .._ _ . _ _ _ _ _ _ m _ _._ ._=. . 1

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RELEASE NUMBER 91021 CONTAINMENT PURGE STARTING TIME APR 18.1991 HOUR 8 MINUTE'12 TIME WS10 WD10. DT110 HOUR MPH DEG DEG C R 1.9 29.2 -1.5 9 2.2 21.2 -1.8 1 to 4.6 52.0 -1.9 i

'11 6.1 44.8 -1.8 12 7.2 42.3 -1.9 13 7.1 55.9 -1.7 STOP TIME APR 18.1991 HOUR 12 MINT >TE 51 STARTING TIME APR 18.1991 HOUR 14 MINUTE 31 TIME WS10 WD10 DT110 HOUE MDH DEG DEG C 12 7.3 26.0 -1.7 15 6.1 44.4 -1.5 16 6.1 36.4 -1.4 17 4.7 17.2 -1.3 18 3.7 27.7 -1.2 19 4.0 21 0 -1.2 20 5.1 36.4 -1.2 21 4.4 16.1 -1.1 22 4.1 8.1 -1.0 I' 4.7 9.8 -1.1 24 4.5 2.9 -1.2 t 1 5.4 358.7 -1.2 2 4.4 354.1 -1.2 STOP TIME APR 19.1991 HOUR 1 WINUTE 5 i

VI-76

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O RELEASE NUMBER 91021 CONTAINMENT PURGE STARTING T!ME APR 19.1991 NOUR 2 MINUTE 13 TIME w510 wD10 DT110 HOUA M*H OEG OEG C 2 4.4 354.1 -1.2 3 4.0 7.7 -1.2 4 3.9 349.5 -1.2 5  ?.1 332.1 -1.2 6 1.3 344.4 -1.3 7 3.8 349.0 -1.3 8 3.5 339.4 -1.3 9 C.7 353.5 -1.4 to 4.4 5.4 -1.4 11 5.1 11.3 -1.5 12 6.1 15.4 -1.7 13 4.6 6.2 -1.5 14 5.2 356.6 -1.4 1 *a 5.2 350.1 -1.4 16 5.1 340.5 -1.4 17 4.a 352.5 -1.3 18 3.4 341.1 0.1 19 3.5 332.5 0.8 20 3.3 326.5 '.5 21 2.4 344.3 1.5 22 3.5 323.2 1.9 23 5.4 329.1 1.9 24 4.6 331.5 1.6 1 3.9 328.7 -1.6 2 54 314.2 -1.8 3 4.0 317.5 -1.6 4 *

,.4 312.5 -1.3 5 4 8 ' "s . 4 -1.0 6 0. 't.5 -0.7 7 0A 2ti3.6 -0.5 8 0.4 207.3 0.1 9 0.9 285.0 -1,0 to 1.6 281.2 -1.7 11 1.0 335.2 -2.0 12 3.4 227.7 ~1.8 13 3.3 257.6 -1.8 14 7.2 215.0 -2.0 15 6.0 205.0 -2.0 16 4.8 225.0 -2.0 17 2.4 265.0 -1.8 18 6.0 295.0 -1.5 19 6.0 325.0 -1.0 i 20 4.8 315.0 -0.8 l 21 3.6 335.0 0.5 22 3.0 265.0 1.0 l

23 2.4 175.0 1.2 24 2.4 175.0 1.5 1 0.6 180.1 1.1 2 2.8 118.4 1.3 VI-77

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l J J RELEASE NUMBER 91022'

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CONTAINMENT PURGE.

STARTING TIME APR 25,1991' HOUR'16 MINUTE 57 j

TIME WS10 WD10 DT110

, HOUR MPH DEG .DEG C 16 15.5 145.3 -1.7 17 14.9- 135.7 -1.6 18 16.0 146.2 -1.5 19 14.6 149.5 -1.3 20 13.3 137.0 .-1.2 21 12.8 138.7 -1.1 3 22 13.1 137.4 -1.1 23 15.0 128.3 -1.1 24 15.7 126.0 .-1.0 1 15.2 117.4 -0.9 2 13.3 132.1 -1.0 3 15.5 128.2 -1.1 4 13.5 123.6 -1.2 5 14.8 114.4 -1.3 6 11.5 113.2 .-1.6 7 11.0 97.2 -1.6  ;

8 11.2 112.7 -1.4 9 10.7 113.9 -1.3 10 9.4 107.7 -1.4 11 10.0 113.8 -1.3 12 11.8 113.0 -1.3 13 13.2 103.8 -1.6 i 14 12.6 110.0 -1.5 15 15.5 139.5 -1.3 '

16 21.6 160.6 -1.3 17 18.4 165.3 -1.0 ,

18 15.4 153.1 -0.8 19 9.5 2C2.9 -0.1

  • 20 7.9 7.3 1.3 21 0.1 267.4 -0.4 22 11 8 121.0 -0.5 23 3.7 190.2 -0.2 24 1.7 345.3 0.1 1 1.8 174.5 0.7 2 4.4 140.1 0.1 STOP TIME APR 27,1991 HOUR- 1 MINUTE 5 t

VI-79 i

O RELEASE NUMBER 91023 CONTAINMENT PURGE STARTING TIME APR 27.1991 HOUR 13 MINUTE 37 TIME wSIO WD10 07110 HOUR MPH DEG OEG C 13 10.4 233.3 -1.9 14 10.3 232.3 -1.9 15 8.5 211.2 -1.8 16 9.7 193.3 -1.6 17 12.2 166.8 -1.4 18 12.1 160.3 -1.3 19 12.5 166.2 -1.1 20 6.5 209.5 -0.9 21 5.7 185.4 -0.6 22 7.6 174.2 0.5 23 8.8 175.7 0.9 24 8.0 171.8 1.2 1 9.4 158.6 1.9 2 9.5 159.9 1.8 3 8.2 149.0 2.5 4 9.2 156.1 2.6 5 11.0 163.3 3.3 6 11.1 174.6 3.8 7 6.9 147.9 3.1 8 3.5 73.0 1.7 9 4.7 88.3 0.4 10 5.6 102.3 -0.9 11 6.7 108.2 -1.5 12 5.8 109.1 -1.6 13 5.7 96.7 -1.8 14 9.6 117.9 -1.8 15 11.0 121.2 -1.7 16 7.7 96.5 -1,6 17 8.0 86.4 -1.4 18 11.9 94.2 -1.2 19 13.6 91.4 -0.9 20 13.2 106.5 -0.9 21 6.9 93.1 -1.0 22 8.0 98.3 -0.7 23 7.2 102.0 -0.7 24 7.7 107.0 -0.3 1 8.5 112.9 -0.3 2 7.3 123.7 -0.5 3 6.4 119.9 -0.5 4 5.9 121.7 -0.5 5 6.1 134.2 -0.8 6 8.5 160.8 -1.2 7 7.3 175.2 -1.0 8 4.1 285.6 -1.1 9 5.1 303.1 -1.5 STOP TIME APR 29.1991 HOUR 8 MINUTE 24 VI-80

O RELEASE NUMBER 91024 CONTAINUENT PURGE STARTING TIME MAY 3.1991 HOUR 1 MINUTF 13 TIDE WS10 w010 DT110 HOUR MPH DEG DEG C t 10.3 91.0 -1.4 2 11.3 97.9 -1.5 3 8.6 91.6 -1.4 4 6,4 83.3 -1.3 5 6.5 95.7 -1.3 6 8.8 86.8 -1.9 7 11,1 97.1 -2,2 8 12.4 102.1 -2.2 9 12.1 103.8 -2.2 10 11.2 101 2 -2,3 11 11.5 104.1 -2.1 12 9.0 105.5 -2.0 13 9.7 114.3 -1.9 14 9.9 116.5 -2.1 1r 10.7 117.5 -2.4 it 10.6 121.8 -2.5 17 10.5 126.6 -2.6 18 7.9 268.6 -2.3 19 4.6 217.0 -2.1 23 2.3 296.3 -2.2 21 3.2 310.7 -2.5 22 3.2 318.8 -2.7 23 3.7 311.7 -2.3 24 5.2 315.1 -2.4 1 6.3 317.3 -2.3 2 7.4 320.0 -2.0 3 5.7 321.5 -1.8 4 6.3 322.1 -1.8 5 4.2 325.2 -1.9 6 4.0 326.1 -1.9 7 5.7 322.0 -1.9 8 6.1 315.9 -2.0 9 6.2 322.2 -2.1 10 5.6 334.3 -2.1 l

11 6.2 347.4 -2.2 1 2 6.5 351.8 -2.3 t

3 4.7 334.8 -2.1

4 5.6 316.2 -2.0 l 333.5 -1.9 15 5.7 16 7.2 345.0 -2.2 17 7.8 352.0 -2.2 18 6.4 343.8 -1.9 19 6.6 330.0 -1.8 20 6.5 336.0 -1.7 21 8.3 337.7 -1.6 22 6.6 330.1 -1.9 23 6.4 337.1 -2.3 24 6.0 337.9 -2.2 1 6.8 330.8 ~2.0 VI-81

2 8.6 337.5 -2.1 3 7.5 328.9 -2.0 4 7.6 321.0 -2.3 5 9.1 319.1 -2.4 6 9.9 323.9 -2.1 7 10.6 320.0 -2.2 J

0 17.7 324.0 -2.3 1 9 9.0 322.9 -2.3 l 10 9.1 320.2 -2.0 11 12.7 319.2 -1.7 12 11.6 322.2 -2.0 4 13 11.8 322.3 -1.9 14 11.5 310.6 -1.8 15 10.5 308.0 -1.8 16 10.4 309.5 -1.8 17 9.6 308.8 -1.8 18 7.5 305.6 -1.6 19 5.1 301.2 -1.5 20 6.1 304.5 -1.4

1 4.6 294.7 -1.4 22 3.4 297.4 -1.3 23 2.R 287.3 -1.3 24 3.1 292.6 -1.3 1 2.9 290.4 -1.3 2 3.0 289.3 -1.3 3 1.6 279.2 -1.3 4 2.9 291.0 -1.3 5 4.3 305.4 -1.3 6 2.3 292.4 -1.3 7 1.5 281.7 8.4 8 2.4 276.2 -1.5 9 11.0 270.4 -1.6 to 4.6 292.7 -1.8 2*SP TIME MAY 6.1991 HOUR 9 MINUTE 3 l

VI-82

O RELEASE NuwSER 91025 CONTAINVENT PURGE STARTING TIME MAY 9.1991 NOUR 16 WINU7E 52 T!wE wS10 WD10 DT110 HOUE wpH OEG DEG C 16 16.2 140.8 -2.2 17 15.4 149.5 -2.0 18 14.7 141.4 -1.9 19 14.5 126.6 -1.7 20 12.6 128.4 -1.4 21 11.9 126.3 -1.0 22 10.8 124.9 -0.8 23 11.2 126.6 -0.8 24 11.2 130.3 -0.9 i 10.8 127.2 -1.0 2 9.e 125.4 -1.0 3 6.5 131.2 -1.2 4 0.0 138.0 -1.4 5 7.5 127.4 -1.3 6 7.3 123.0 -1.3 7 6.7 133.5 -1.4 8 7.6 148.0 -1.5 9 17.7 295.8 -1.5 10 19.8 351.0 -1.6 11 23.6 350.9 -1.7 12 22.3 336.5 -1.7 13 23.1 350.8 -1.7 14 22.9 349.0 -1.8 15 24.9 359.2 -1.8 16 18.6 254.0 -1.8

$7 13.6 14C.2 -1.8 18 13.0 143.3 -1.6 I 19 12.5 143.7 -1.5 i 20 10.4 146.3 -1.2

1 8.9 137.4 -0.9 22 9.6 138.9 -1.0 23 8.7 144.5 -0.8 24 6.7 140.9 -0.7 1 7.4 141.2 -0.8 2 6.6 147.0 -0.8 3 7.2 149.4 -1.0 4 7.0 153.6 -1.2 5 7.0 138.6 -1.1 6 5.6 123.8 -0.7 7 5.3 148.6 -0.9 8 7.6 131.5 -1.3 9 8.5 128.7 -1.6 10 7.2 159.5 -t.6

't 7.4 166.3 -1.7 12 8.3 142.1 -1.9 3 11.0 161.1 -2.0 14 10.2 157.8 -1.9 15 10.2 151.3 -2.0 16 9.3 147.7 -1.9 VI-83

17 8.9 151.0 -1.9 18 9.7 161.5 -1.6 19 8.4 152.0 -1.5 20 5.6 143.3 -0.9 21 4.4 150.2 0.2 22 6.5 162.1 0.1 23 6.0 174.2 0.1 24 5.4 166.5 0.1 1 4.5 140.1 0.3 2 4.9 133.1 0.9 3 4.3 129.4 0.6 4 4.6 132.4 0.5 5 6.2 151.5 -0.1 6 7.0 150.5 -0.6 ,

7 7.3 155.7 -0.6 i 8 5.9 141.9 -0.6 9 7.4 134.3 -1.1 10 9.6 125.7 -1.6 11 11.6 130.6 -1.8 12 12.9 144.3 -1.9 13 13.3 149.0 -1.9 14 14.3 149.1 -2.0 15 13.0 163.4 -1.9 16 12.3 159.2 -1.7 17 11.7 151.1 -1.6 10 12.7 152.8 -1.6 19 12.8 147.4 -1.4 20 10.3 146.7 -1.0 21 8.9 153.4 -0.7 22 8.0 156.1 -0.5 23 9.9 167.6 -0.4 24 9.2 268.5 -0.8 1 5.4 313.8 -0.5 2 3.5 248.8 0.5 3 2.7 300.4 0.8 4 2.8 223.8 0.3 5 2.3 312.0 0.7 6 1.1 272.2 1.1 7 1.0 192.5 1.5 8 1.1 304.0 1.1 STOP TIME MAY 13.1991 HOUR 7 MINUTE 30

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-15 4.9 155.9 -1.4 16 7.2 124.8 -1.3

?7 9.4 124.6 -1.4 19 9.2 139.3 -1.1 19 8.9 142.1 -0.9 20 7.5 136.8 -0.8 21 5.3 134.1- -0.3 22 5.8 130.4 0.4 23 5.8 124.2 0.3 24 11.2 178.6 -0.'

1 6.9 216.3 -1.1 2 6.2 275.6 -0.5 3 4.6 295.1 -0.4 4 4.2 301.1 -0.3 STOP TIME JUNE 14.1991 HOUR 3 MINUTE 20 STARTING TIME JUNE 14.1991 HOUR 4 WINUTE 34 TIVE WS10 w310 DT110

+40Um uPH OEG DEG C 4 4.2 301.1 -0.3 5 4.0 307.1 -0.3 6 9.5 133.1 -0.8 7 10.7 137.6 -1.1 8 7.1 106.6 -1.0 9 4.2 88.8- -1.1 10 9.4 138.5 -1.2

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O SECTION VII POTENTIAL DOSES TO INDIVIDUALS AND POPULATIONS (RegulatoryGuide1.21.)

l 1

January 1,-1991 - June 30, 1991

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VII-l

l POTENTIAL DOSES TO INDIVIDUALS AND POPULATIONS O

V A. Potential SemiannuM noses to Individuals from Gaseous Releases I Total body, skin and organ doses from ground releases were calculated in millirem (mrem) to an average adult, teenager, child and infant using the annual configuration of the GASPAR program. Results to each receptor are shown in Tables VII- A-1 through VII-A-34. Also, the doses to the same groups, Table VII-B-1, in units of millirads (mrad), due to gamma and beta radiation carried by air, were computed using GASPAR. In its annual con-figuration, GASPAR assumes that all release rates are entered in curies per year (Ci/yr). If the total curies released per isotope during the ,

semiannual period are assumed released #or an annual period (Ci/yr), this release rate reduction is conveniently offset by the annual usage or dose factors, thereby allowina GASPAR to calculate semiannual doses.

The inputs to GASPAR for the semiannual period from January 1,1991 thru June 30, 1991 were a follows:

(1) All gaseous effluents were as described in Section III.

(2) Entrained gases (Xe-131M, Xe-133M, Xe-133, and Xe-135) from Liquid effluents were described in Section IV.

(3) Semi-Annual "X/Qs" at the actu4 receptor locations, which were corrected for open terrain, plume depletion, and radioactive decay factor ware calculated according to Regulatory Guide 1.111. Also included were semiannual deposition rates corrected for the open terrain factor.

(4) The production, intake and grazing fractions were as follows: 1.0 for fresh leafy vegetation grown locally, 0.5 for the pasture grazing seasco, 0.76 for vegetation intake grown in g v-lens, 1 for daily intake of animals while on pasture and 8 g/m- for the air water concentrations.

VII-2 1

Potential Semiannual Doses to Individuals from Gaseous Releases (Con't)

O (5) All dose factors, transport times from receptor to individual, and usage factors were defined by Regulatory Guide 1.109 in GASPAR.

(6) Site specific information, within a five mile radius of the plant, on types of receptors located in each sector was used. That is, if a cow was not present in a sector, then the milk pathway for that sector was not considered. If it was present, then its actual sector distance was used.

These inputs introduce a most conservative approach for the following reasons:

(1) The open terrain and deposition corrections increase semiannual "X/Qs" by a factor ranging between 1.0 and 4.0. l l

(2) The production, intake and grazing fractions, as defined in the input definition statement, represent an environmental area in an extremely conservative manner.

l B. Potential Semlannte Doses to Population from Gaseous Releases The GASPAR program in its annual configuration was also used to calculate the ALARA integrated population dose summary for the total body, skin and organ doses in manrems for all individuals within a 50 mile radius, Re-sults are shown 'n Table VII-C-1. Tim population integrated dose is the

( summation of the dne received by all individuals and has units of man-thyroid-ren, t?,en applied to the summation of thyroid doses. The same inputs were used as in the individual case with the addition of the following:

(1) A total population of 734,668, based on the 1980 census, was used to

-Jefine the sector segments within a 50 mile radius of the plant.

O VII-3

Potential Semiannual Doses to Population from Gaseous Releases (Con't)

O Total productions for milk, meat and vegetation were based on 1973 (2) annual data for Nebraska as recommended by the NRC for use in GASPAR.

C. Potential Semiarnual Doses to Individuals from Liquid Releases The body, skin and organ mrem for liquid releases were calculated for all significant liquid pathways using the annual configuration of the LADTAP program. Dose conversion factors used by LADTAP for ingestion and shore-line deposition are shown in Table VII D-1. Results are shown in Tables VII-D 2 through VII-0-9.

The inputs to LADTAP for the semiannual perico from January 1,1991 thru June 30, 1991 were as follows: ,

(1) All liquid effluents were as described in Section IV, except for the entrained gases (Xe-131M, Xe-133, Xe-133m, and Xe-135).

(2) A plant discharge rate of 802 cubic feet per second (CFS) was utilized.

(3) Dilution factors (inverse of the rixing ratios) were computed based on Regulatory Guide 1.113 (equation 7 in Section 2.a.1 of Appendix A) for a one-dimensional transport model.

(4) A drinking water transport time of 6.6 hours6.944444e-5 days <br />0.00167 hours <br />9.920635e-6 weeks <br />2.283e-6 months <br /> to the Omaha intake and 7.0 hours0 days <br />0 hours <br />0 weeks <br />0 months <br /> to the Council Bluffs intake for the ALARA doses in Table VII-D-2 through VII-D-5 was used. For Tables VII-D-6 through l VII-D-9, a transport time of 0.0 was used from the plant to the L discharoe site.

I (5) A shorewidth factor of 0.2 was used.

O VII-4

Potential Semiannual Doses to Individuals from Liquid Releases (Con't)

() (6) All consumption rates, using rates, and trangt; times from receptor to individual were as defined by Regulato'ry Guide 1.109 in LADTAP.

The discharge site in Tables Vll-D 6 through Vll-D-9 was chosen to present a most conservative estimate of mrem dose for an average adult, teenager, child and infant. A conservative approach is also presented by the assumption that Omaha and Council Bluffs receive all drinking water from the Missouri River.

D. Potential Semiannual Doses to Population from Liquid Releases The LADTAP program in its annual configuration was also used to calculate the total body and organ doses for the population of 734,668 within a 50 mile radius .of the plant. Results are shown in Tables VII-E-1 through VII-E-6. The same input was used as in the individual cases with the addition of the following:

(1) Dilution factors and transport times for the pathways of sportfish, commercial fish, recreation and biota were calculated based on a distance of two miles downstream as approximately the distance to the nearest recreational facility - DeSoto Bend National Wildlife Refuge.

(2) The total fish harvest for both sport and commercia r purp9ses was calculated using an average commercial fish catch for Nebraska.

l E. Direct Radiation Doses to Individuals and Population Diract radiation doses, attributed to the gamma radiation emitted from the containment structure, were not observed above local background at any TLD sample locations for this semiannual period.

VII-5

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I +-+==-+====+==+-.+

N t 4 0 8 4 4 M M i @ l @ t b i b I b i I

> > tO4 0t OIC4Oe M W 4 0 4 4 4 e i n e i 4 w y Z lW tW t laa 6 W l t&J B >

OI @ 4

  • 4 N I du 1 g i y ** I @ l f9 4 O E t et e l ee i6 e. i t O 4e6 4 let a l N t e t N s H t I t t t i e +-+-+====+--+.=.+

@ l 4 4 6 4 4 8 9 to 1 40 I h 46 6b 4 2 4 OI Oe OtO4 Oe O g 6 4 6 e e i e 4 e a W t 4&A I W 6 taJ eW 4 taJ t E' > t @ t ** 1 M t W eN 1 O M t W I fi 6 M4@ 4 ** 4 MM =J t *I o3 t e t . 4 OO I GD 4 *= 4 miMlm4 M 44 0 t e I t t 8% EE +===+..=+==.-+.-.+==+

O =1 .J I i 1 $ t 4

>* JJ l 10 8 @ t b 4 b I b 4 U = *

  • eOt O1 OIOt O W E3 esa e i 4 a 4 e 4 i 4 t.

M Z4W4 laJ t W 4 taJ GW 4 49 O4@ t *= 4 N IN l N 8 a J OO O4@ tMi ~e, i til. 4 b. a1 J t a t e t e I 4 4 4 WW t @ l *= t (9 4 N 4 4 0 0 4D - 0 I 4 6 4 4 Z O9 +==+==+==.-+==+==+

w =

  • 4 0 0 t i 1 Me > t O4@ 4 W th ek 4 Ma U 6 O4 O6 O4O6O6 2 taJ tt 16 ei a ee 4 e i e 4 e i O laJ g I tas i W t W e enJ tW 4 HIW l&J t&J >= 4 @ l *= 0 h I O 46 8 Q. M M MM t a@ t f9 4 t 4. et gr.i i g.iI taJ QO ** t - t 4 U QQ O6W4 ** 4 N I e 4 *= 4 taJ N M i 6 I a e a E ** taJ gE +==+==+=====+===+==+

.J w we t i 4 0 4 0

%m 44 4 If1 4@ l b 4h j h a 3 I OeOI O4 OeOl Z 44 > t t 4 6 4 6 6 4 6 I 6 O4 e3 0tW e saa e las I taJ e av i

  • ** b enJ 3 Ot@ t - I @ 4> 6O t

>=

  • me m4@ t M e b t O4N 4 24T O e t a t > i e t = 0 4

~

[ ,

TABLE VII-A-13 t

FORT CALHOUN 1 RECEPTORS IN ALL SECTORS 08-09-91 SPECIAL LOCATION # 13 RES.vEG AT 'O e8 w!LES 'SSE EETA AIR DOSE = 7.97E-03 k!LLRADS GAMMA AIR DOSE = 3.53E-03 MILLRADS-pathway T.600- GI-TAACT BONE LIVER MIDMEV THvROI LUwG SMIN

.__ .____.._.____. .__________.__.._..___...________.__________.________'J __.__________.__________.

pluwE I 2.15E-03 1 2.15E-03 1 2.15E-03 l 2.15E-03 l 2.15E-03 l 2.15E-03 ! 2.22E-03 l 5.50E-03 l GROUND l 4.93E-05 1 4.93E-05 l 4.93E-05 1 4.93E-05 1 4.93E-05 I 4.93E-05 l 4.93E-OS l 5.75E-05 l vEGET l l l l l l l l l ADutt i s.66E-05 1 2.59E-05-l 4.30E-05 1 1.07E-94 l 5.34E-05 l 1.59E-03 l 3.12E-05 1 2.01E-05 l

_..-_____.__________...._______._-________._____ ..__.__________.__________.________. .__________.  ?

TFEN l 5.07E-05 2.91E-05 l l 6.75E l'd.21E-05 1 2.30E-05 l l 1.32E ___...-_______.._______--+

.______....______._.1 .....___ _._6.37E-05'.l 1.51E-04_._______ __..._____.______-05 __- ._______-03 i.45E-04 1 2.38E-04 l 1.02E-04 l 2.02E-03 l 6.43E-05 1 3.56E-05 l CHito i s.i2E-05 i 4.01E.c5 __________.._________'..

_________._. _______.___ ._____I ________.__________.__________._-_______.. ,

IMHAL l l l .l l l l l l .

ADULT l 1.33E-05 l

  • 19E-05 l 2.04E-06 l 1.46E-05 l 1.46E-05 l 4.10E-04 l 1.20E-05 l 1.11E-05 l ,

_________.__________.__________.__________...._______.___.._____.___ ._____._________..-_________. I TEEN l 1.33E-05 l 1.20E-05 l 2.82E-06 1 1.59E-05 l 1.59E-05 l 5.18E-04 l 1.27E-05 l 1.12E-05 I

__..-___.__._______.--__..___-._________...._______+___-__.-._---____-_.__-____-.-._-__.--.

CHILD 1 i.tSE-05 l'1.03E-05 1 3.79E-06 1 1.44E-05 l 1.43E-05 l 6.07E-04 ! 1.12E-05 I 9.90E-06 l

  • _________.___...____._____ ____ _________ ._____ __.__________. ......___.__________.__________. [

1NFANT I 6.64E-06 1 5.85E-06 1 2.60E-06 I 9.29E-06 I 8.54E-06 1 5.53E-04 1.6.72E-06 1 5.69E-06 I

._.._..-_.---.______.____-_____._-___.____.____----_-._- ..___-_+____--__--.----___-__...-._----..

6 b

VII-18

7%( m

.s s y

TABLE VII-A-14.

FORT CALHOUN 1 RECEPTORS IN ALL SECTORS '08-08-91 SPECIAL LOCATION s 14 BEEF AT 1.81 MILES SSE BETA AIR DOSE = 1.41E-03 MILLRA05 GAWMA AIR DCSE = 5.80E-04 WILLRA05 pathway T.800Y GI-TRACT BONE ' LIVER K!DNEY THYROID LUNG SKIN

_________.________-_+-___- ...... ______....._______..__________.______.___._______.__...________.

PLUME 3.50E-04 l 3.50E-04 1 3.50E-04 l 3.50E-04 l 3.50E-04 1 3.50E-04 l 3.63E-04 l 9.26E-04 l

, _________.1 ._________._________..________ ..__________._________..__________.__________.__________.

GaOUuO I 7.35E-06 I 7 _______._________ 1 7.35E-06 l 7.35E-06 I 7.35E-06 l 7.35E-06 1 7.35E-06 l 8.58E-06 l

_________.__________.___35E-06 . _________.__________.__________.._________.__________.

WEAT I l i l l l l A00LT l 1.75E-06 l 1.03E-06 l 1.75E-J6 1 2.64E-06 l 1.06E-06 l 2.80E-05 l 1.11E-06 ll 5.23E-07 lI TEEN l 9.50E-07 I 6.32E-07 l 1.41E-06 l 2.02E-06 l 7.33E-07 l 2.02E-05 I 8.59E-07 1 3.12E-07 i Custo l 9.79E-07 l 5.72E-07 l 2.65E-06 l 2.62E-06 l 8.90E-07 l 3.04E-05 l 1.06E-06 l 3.77E ___. I

____...________.__________.__________.__________.__________._______-07  ;

t VII-19

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

1 I

..f- .

6 y

k 4-+-+--+-+-+=4 6 ~ t i e I t t IMi@ t @ ltl@ t@ t 1 04 04 0004010s 2e e a e I e 4 4 4 6 6 e t a lW t W I WtW t W IW t E t mib i Wt h tolh 4 M tM t M i 91 4 ( M t t

  • a - t I =n a t M. I6 l b I @ l
  • 4 e t e sb i ]

i I t t i e t

+-+-+--+-+-+-4 9 6 t 6 i e l I M i el @ tm108 @ t 404 06 040000 01 OI 4 8 I i t i e t 4 i 6 4 76W4W 1 WlWeW tW I DtOS T e otb setMI dl De&4 @ t @ tWe ateI eg I *4

  • t e 4e t IMe@ t e l e le let 4 I I 4 e e t

+-+-4--+-+-+-+

6 4 I i 4 1 I Ot M seI wag t ot wa 106 04 09 040 01 "O t a 4 4 e e at i e 4 4

@ E IW I wt W 4WeW 4W t M

> tO t g I M i mlM SN t OtMt i It@.I F q 6 MO a t 4 4W I e t

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e e t

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4 6 4 1 1 e o

g

t-;t;; N I

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y 0t 06 9 i N i@ teGN ,

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t Me@ g t i I mimtosme t  !

e 2 - 4 0408 060s0804 O K t e i e t t t t i 1 6 e t

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e t 4 e t e t e t e t 00 INtet e tnt-te M 44 I t - I t t t t

& EE +-+-+--+-4=+-+ I O JJ e 4 I e e M -JJ IM l pt @ t @ t@ n @ l U aa 4 04 00 06080: 08 W- 22 W i e i I e e a e i t t e M 2eWiWe WeW IW . We NM OeOnwe OsMSN t< 4 1 J 00 ee@ SWt nintOnw1 J t t 8

  • I *t *1 *I e f *4 4 WW I N I @ t NtM0 04Mt me , 9 4 4 4
l. i t M

2 Ob + - + - +i - - +e-- + - +I =4 4 4 t e

  • W -* . M I M e@ t @ t@ tel@ v Ot otot OS M- U t ot ot E N N e 8 4 4 e e e i f I e 4 4 8 OM E t W tW 1 W 4 W I W tW8 kW WW b 0 0 4 9 I mt# 1miet ik E M MM i e@ l af) 9 If1 I O 1 t'l 8GI W C0 M 4 e t - t +1 at e t et U OO Ot N emt
  • t e ta lb f a

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+-+-+--+-+-+--,-+-+

t i t I t t t 4 - 4 GT @ t @ t@ 6@ t h a b 9 5t 00' 00 010400 0 o0008 2i a e6 e e e ee e a e i e q M 4WI W 6 W 6WIW8 W WiW S W IN EN I m000W t N OtM t MIN 600 g p 4 e4 t a t.I e. ttMe et . =. e m. e 6

t@ let. nan 64 1 M N4N6 I I I 4 e i 1. I 4

+-+=+--+-+-+--+-+-+

0 0 t - I t 1 4 8 04 t @ t @ t@ i @ t k th th t 40406 000- Ot O' OIC O4 i I 4 e I t i e t 6 i e i e 28W1 W WIW WG W ! W IW t D64 00 a te. g g g OtMe JI T GM 50. pl Mlmt 4 e 4 e4 I

W.t. T. $ e I e a e i GN49 i Magi @t Gl mtet i e -I t i e li 4 -4 4-+==+-+==+===+====-+==+===+

0 6 4 0 0 I i e t 044 4@ l -4 eW ev. m' sget M tOtOI 08080: O Otot O4 a 6 e ElW4W 1t- . .eet@We tWh e i e@W-i a W. W4wt e I e e

.W >t9 1 IBM 04 MI Mt= b g meet e l5 0 m - et* e t e l e e S. e t t

=eg g

tN g I e= t *= q e= l .

e= l em 4 4 + - ,- + - - +I - ,t-1 - t

+-_,I -+-+

i I e

. 8- -

W I 4 e I i o e e i N

W 49 t@ l @ l@ p: b Ib th i

> > 60006 W l-4 4

  • I 000' e-e e 0

e 080sO i ea ee i I

  • =e X4WlWt~ W lW W WSW4W m y 08T 004 mte e i @ t@ t e, i I
g. ** 4 8"3 4 M i - ("I 4@ OI tp I tr) I ett .

W- W4 e t et e l e e t ee e l

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--* +a==+==+====+==+e==+n-++==+

S I I I t 8

4

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ett I ett h ett I 6 0

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E 80404 '0001 08 0f0000

. O e i I I h a 1 e 4 e e i E a6 8 6 6 WGW3Wt - W4W Wil W- .* WeWB e > wIC1 OtO O. S: 4 to O M MiMl OIg-N ett . N 6 ein 4 mm J e t e l el e t o . s i ee e

' OO- U NIg 8 *= 4 e= 1Ne *+ . e= te M- 44 _ h- I e t i I e 6 E iEE +===+==+====+==+==+*====$==+==+

C JJ 1 a e 1 6 e a e i

~M .Jl 9 4@ $ @ lWi tfl 4 @ 46 4@ -  !

O mm 04 09 OlO u on Co OBO W XX -Wl e $ eI e4 I e I e i e t 8 l j M -

24W6W 6; W 4W WB W- W tW! l 44 00W 3O6 :Mi@ l @$ N- eiO' J CD SI MIMS b emi N 6 O! Nep:

-.J $ e i e i e I e I e i ei e li ee e

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- Mp 'S- 1 1 4 1 6- 1 I

- 2O Te e. : '+===+==+-4==+==+===-+===v**+*

mW- I t -l- 0 l 0 6 4

> S t" Mig !@ 1. - @ l@8@ I M ib i A 4 OIC001 m * - -

U40tO4 OIO4OI EA et 4 6 et 8 4 4 ei6 e i e i e I i e CW'  : - K 4WeW 6 W6W IW. W' W4We t NW 'WW ~- M ig SO4 ' Olmi M'

  • M ISt 1

&SM?MM I OM4Mt- SIM; 5 W St@t

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e 0 t

a a + - - ---

~ .

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(# )-

+-+-+--+-+-+=4 3 4 I t i 6 4 8 9 G ol b 6h tb t @ l 1 01 00 04040101 Z4 4 4 I l I t i l l a e e m 6 W 6 WI W 6wI wtwg X S T i b 6 @ th SM i@ l h t Mi@ eMa

1.
  • t *I 04NI M. i 1 $ e e t I N4 N 1 g 4 @ tel e 4 8 8 4 6 t i e 9-+-+= =+-+=4=+

6 4 6 4 1 1 I 1 4 t @ l N tb I Ct@ t 40401 Os00 0 100 Ot 4 1 i 6 e 1 4 I l 8 6 4 2 0WlWe W 4W4W lW4 UlM4M1 4 4M iet ot Ji

  • lot 6
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=1 e t . tt v, ti 6" GNt @ t@ te tnt i 6 6 4 4 6 1

+-+-+--+-4=+-+

0 t I t 6 i  ?

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- 404 08 Ol ssosOs 04 I I ee e I a e4 i s t

& 4 WlW8 W 4 W l W 4W4 N > t @ lmi h qttg l e i e 4 . l 6M. il .t 100000 e W

l W t at e t Ji@ 3 l* lNS " l*4Mlet

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+-+-+--g-+-+-+

i

  • 4 6 1 N

g 1 4 8 I I t i N

  • 49 5@ t WIWi@ tot I

> > 4 0604 000tolot w W e 8 0

  • I I 6 e t I t s I w i

,T 4W6W4 WI W 8W t Wt y .;

W 04Ol m4 wBW i elh i a =60808 m E t e l e l @e t@a l

  • 0Nig l@ l ll N. et e. tI 4 It' lNI 4 0 t i 1 4 6
  • +-+-+--+-+-+-+ I t

@ 0- 4 1 4 6 i 14 t@ l @ l@ l @ t@ 8 E 10104 OtOIOlot O E l 8 e t I e i e i e i t i

  1. W IWlWe WE W I W 6W4 ID > t@ 4 59 4
  • 6mi@ lM4 O

MM w 60401 J1 + 4 1

@ ee l@e t0@.tg.II 6 00 te 4W1 Ntg lb te i M 44 0 $ 'e 4 4 i t GE -+-+-+

E O JJ +-+-4-.+

e e t 9 4 4

> JJ t# 4@ l @ l@ t@ t@ l U "M 8 0001 00 0001 06 W 32 W t t l i t - 8 1 e e i e e M Z t W I W e WI W 6W lWe TT C 4 G i mi N e@ th te l J CO G5 0000 -* 6plet e. l6 J 4 4 4 4 + 4 I + 4 e t 4 WW B e 4N6 e le 8 4 t b B E* 4 1 4 4 i e t 2 @m +=4-+--+-+-+-+

M *

  • 0 I e t 6 8 i Te b eW t@ 4 h eb th i @ l M U 8 Ot OI C8 04 04On E h p 4 8 s 4 e e e e 6 8 a 1 s I C5 E l W 4W S W9W IWlW I l* C -WW et elme wBOeWtot 4 t w ab ett AUM MM i e Ot ot es a t e l W C0 m l e l e t e t U OO Ol a lNI Webl@ le l a f I 8 4 f

TABLE VII-A-18 RECEPTORS IN ALL SECTOR 3 08-09-91 FORT CALHOUN 1 SPECIAL LOCATION

  • 2 RES AT 0.63 CILES SSW TA AIR 00?E = 1.01E-02 MILLRADS 04MMA AIR DOSE = 4.63E-03 MILLRADS SMIN K10NEY THYROID LUNG GI-TRACT BONE LIVER . ______.

PATHWAY T.80DY PLUSE 1 2.83E-03

__ ___-_..____.. l 2.83E-03 1 2.83E-03 l 2.83E-03 l 2.83E-03

___.__________.__.--__.__.._________._____.____.__________.._________.____ l 2.83E-03 l 2.93E-03 l 7.13E-03 l i 2.50E 06 l 2.50E 06 l 2.50E 06 l 2.53E 06 l 2.5DE 06 j 2.50E-06 l 2.50E-06 l 2.92E-06 l cR0uNo l l l l l l l INHAL l l l 1.83E-05 l 5.22E-04 l 1.51E-05 l 1.39E-05 I ADULT l 1.67E-05 l 1.49E 05 1 2.61E 06 1 1.84E-_-05_...-_..______._

TEEN l 1.67E-05 l 1.51E-05 l 3.60E-06 l 2.00E-05 l 2.01E-05 l 6.58E-04 l 1.60E-05 l 1.40E-05 I

. _cHrto

_ - - _1_ 1.44E-05

. . . _ _ _ _ .l-1.29E-05

_ _ _ . _ _ _l _4.84E-06

- - . _ - _ _l_1.81E-05

_ _ _ . - _ _lI 8.44E-06

_1.80E-05

. _ _ _l _7.13E-06 - .l .7.72E-04

.I i.04E-04.. __-__-_.___-__-___.-____--__-.

_ _l _ - _ . - 1 __1.41E-05

. _ _ - - _ _l _

1.24E-05

- I INFANT l 8.34E-06 l 7.34E-06 l 3.31E-06 1 1.17E-05 l 1.08E-05 VII_23

- - -. ~ a - r - .u--..- . + .e + s --

'(

h

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

4 4 4 4 1 I iM4 @ 4 to e in 6 in 4 40tO# DI O6O4 24 t i I i e a 4 1 e i M iW 4W I WI W t W 4 W 4@ l GD 1 g i Ob QN t eniE9W I 4 66 0M i f =4 *4

  • t ea e i e@ 4 N 6 N0 ft 4 4 4 9 I 6 8 I e 4 == 4 - 4 == == 4 == 4 == 4 4 6 0 L t i M6@ 6 in 6 til 4 in iO8Ot O4OI O OI t 4 a 1 1 4 e a6 1 2 0 taJ l W I W 4W IW I DeM i in 8 m e e i 40 i

.J eetg e wIe6g 6 4 *1

  • I . 4 e6 e l I N O Ni N8 N O 4i i I t t 4 6 9 == 9 == 4 ==== 4 === 4 = 4 0 t i e I a O $ M e LD 1 ei@ q T 4
    • I OIO4 OiO OI OI 6 4 e 0 6 9 4 1 Elt iW6 W 6 W i tu ' W8

> f f*3 4 in i N I P= IN 1 O 166 4 W I Ot h t vi

'"4 >= 6 *4- *1 - 4

  • I + t 1 iN 4 N6 *= i O 4 ** I a:t 6 e i e 6 6 4 + = = +==+==-+-*==4 **

,,,,4 4 6 1 4 0 1 N

  • - 4M i 4D e en a to 0 in 6 i

> > tO4O6 O4 Oa OI p.

W* 4 e e t ' see i a ,,

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(

p-lN4N 8 i e 6 NO 49 0 W 4 0 0 0 s= 9==.e==4.+==+=.+

@ l 6 4 0 0 i t i M i ID t en i en i e s tl0 IO4O4 O60 804 0- a4 I e 6 6 4 e 4 4 I I tu 4 W t asJ e saa 4 taJ t tu $

E > l (*3 8 in 4 6 4N 4M4 O ** IM 44 4 W 6 4 iMi MM .J l *4

  • t e t = 0 ee 00 4Ni N I N t M i in 4 M 44 i t 1 4 1 6

& KK 4 == 4 === 9 == == 4 === + == 4 0 .A .J t t t . e t

>* .J =l iM iWD . GD 4 4D 5 4D 6 U M*=- 40t O4 O6 O4O4 W 33 W 4 4 6 6 6 0 6 s ea e en 2 I W GW $ W 8 lu 4 tu 1 MM O6M i In 6 4 I h 4N 4

.J OO *= 4 J e t Et 1-eb 4T<

t t4 ee **. Ig N. 43 4 WW 6N 0 N9 N 0 69 4 b 4 h6 1 6 6 I ( l Z bW 9==+==4=====9-4==+

M *

  • 6 1 4 4 0 i Ob g b 6M i 4D e en 4 en i en g M UeO4O4 OsOaO6 E 4 e e 4 e e s e s 6 e oO3- 9 46 ' a a tu a W e W e tu 4 lu H W in W taJ >= 0 M 0 to I GD t N I 4

&>M en en 4 46 444 4 4 e. i M '

l tu QQ o= 6 e f I e e NtN eT t 0 e i V QO OIN $N9 40 M M I i e e 6

. = . _ _ o - . ~. . - .

m 4-+_._,==._.

I i e 1 i t i4 4@ 4 5%b 6k 4 eoeOe OeOIOI Ef 8 0 1 4 I I e t e 4

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t G 1 1 I l

+*=+==4====4==++

t I l 6 6 4 8 9 iO4 4% 0> 1 5 4 IOIO4 OeOtOs i d0 4 4 4 i e i e 1 . t i Z t tu 8 lu e tu 4 tu e tu 6 4 I

D4O 8 en i N 4 ED 4 N I

=J l @ t b e @ $@ t is) 4 i

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+**+==+====+==+==.+

- 0 $ 1 4 e Oawa@ t en 4 @ set

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> 0M 1 Id1 4 10 i e e eg 4 O 14S65 i Ol @ $ *= 4 N H 4 i l

  • 1
  • e *4 *4 g

ta lN 6 w tb te e 4 i 4 e i 1 0 LO g ~ ~ "" *" '

M m

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> 1OI Ot 5

O40tOI 5 4 5 6 M

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    • 6 E4b I b IN 4m4 I

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  • 4 *e *4 *4 *6 te 6NI T OMIM4 l

b i 4 6 6 4 6

' ** +=*=+==+.=*==++.=.+

@ t t t 4 4 6 6 4 9 1@ t @ 45 4@ 0 tD 6O3 Ol OI OIOI O E I 4 4 e a e I e I a e a tu 9 W 3 tu $ W 8 au e W t ID > 0 M1 In I @ I *tg i O M i W9 5 i Ot OeOe MM .46

  • 4 *4 e f *4 *t OQ t e iN4 == 4 e t -a M ee i e e t 6 E GE G +==+*=+====+==+-+

0 JJ t e e 4 e e l r =J J swt@ t .5 45 05 t U *=*= 4O9OI O6Oeoa w 33 tu e 6 e4 e ee a ea tu 8 tsJ q tu 4 M Z tW I tu i 44 00 M i en i @.8O4N t J CD @ tel b i etMi@ t

( J e I i

  • 8 *t * $
  • t
  • I

@ q en t @ t t

4 W tu I *= 0 N4 i

en M I e I e 4 e 2

m MC a a bM. >

+==+-+-+-+==+4 4 4 I 6g I @ l . N qb 45 t I I M UI O6O4 00O4Oi E tk at t eI e 3 6 8 4 I e 6 e 1 OWR a e tu e its e isJ l au o eu s b su M WW eeM e en 4 g iN eOt ik G H MM i 6 ED I b i @ $@ 05 t au OO *= e

  • 1 *4
  • e
  • i e U 00 0 0 ** tNl i 40NIN 0 i 4 4 e i

o >m >

( ud

. TABLE VIIJA-21 i FORT CALHOUN 1 RECEPTORS ]N ALL SECTORS 08-09-91 l

SPECIAL LOCATION # 5 RES AT 0.72 MILES SW BET A AIR DOSE = 6.15E-03 MILLRADS GAMMA AIR DOSE = 2.77E-03 MILLRADS SONE LIVER KIDNEY TiiVROID LUNG SMIN PATHWAY T. BODY GI-TRACT PLUME I 1.69E-03 l 7.69E-03 l 1.69E-03 l 1.69E-03 l 1.69E-03 l 1.69E-03 l 1.75E-03 l 4.29E-03 l GR0uNo 1 5.01E-06 l 5.01E-06 1 5.01E-06 l 5.01E-06 l 5.85E-06 I i 5.01E-06 l 5.01E-06.1 5.01E _.-_.._-____....._...._

____--___. ..__-- __.--_- . __. _-- _-06 _..________-_...______ ..____-_____.

l l l INHAL l l l l ADULT l 1.02E-05 l 9.12E-06 l 1.59E-06 ll 1.12E-05 l'1.12E-05l 3.18E-04 l l 9.25E-06 l 8.54E-06 l TEEN l 1.02E-05 l 9.24E-06 l 2.19E-06 l 1.23E-05 l 1.23E-05 1 4.01E-04 I 9.79E-06 l 8.60E-06 1

__ _--__-.___--_____. ___.--___._---____-_.______ -_-._____ ____.._______-_.-______-__.___-- _-__.I I 8.65E-06 l 7.60E-06 CHILD l 8.83E-06 l 7.93E-06 l 2.94E-06 l 1.11E-05 l 1.10E-05 --4.70E-04

_..._--_ +__._._.--....._.......- ------..__----_ _._ --._-- _.I _--_.--+----.__-__.___-- -___.

INFANT l'5.11E-06 l 4.50E-06 ! 2.02E-06 1 7.16E-06 l 6.58E-06 l 4.29E-04 l 5.17E-06 1 4.37E-06 I

.-_.- ._-.__.----_-_.._-_---___.--__ -_-_-._.-_--____._-_.-_-_ -+----_--_--.__---_---_ _-__-___-_.

1 VII-26

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l 0 t t I t i e i l 4 9 t @ t @ 4@ ( Os @ t@ t@ 8 @ t-9 01 0t 010004 OtolO904 8 I e t i e 4 4 6 I t t a 6 4 4 6 I I 4W t k I W eWIWe WtWIW tw4 dew 4* I @ th tN a N tM i k tot Jib ab I Ol@ tot

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+ 1 + 1 e l e l Meg 4@ tti e t e l e t 4 IMe@ a mista l

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  • a a e f 4 0 $ 4 I W *@ F i g t@ t @ 0 6 lca @ t@ 4Wi @ l M> U405 00 Otolot C 0401 00' E
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  • I e t e t + 1 e n e t U QQ OtMe@ t T 844@t NIN4* u* 4 WNM i e i I I e a t t i

m r

TABLE VII-A-29 FORT CALHOUN 1 . RECEPTOR $ IN ALL SECTORS 09-08-91 SPECIAL *.OCATION

  • 13 PORK AT 2.74 MILES wNW I BETA AIR DOSE = 7.48E-04 WILLRA05 GAMMA AIR DOSE = 3.14E-04 MILLRADS PATHWAY .T. BODY GI-TRACT BONE LIVER u!DNEY THvROIO LUNC $ MIN PLUME l 1.90E-04 1 1.90E-04 l 1.90E-04 l 1.90E-04 l 1.90E-04 l 1.90E-04 l 1.97E-04 ! 4.99E-04 1 GnouMO l 3.42E-06 1 3.42E-06 1 3.42E-06 l 3.42E-06 l 3.42E-06 1 3.42E-06 l 3.42E-06 I 3.99E-06 l WEAT l l l l l l A0uti l 8.48E-07 Il 5.14E-07 Il 8.14E-07 ll 1.26E-06 l 5.25E-07 l 1.31E-C5 l 5.48E-07 l 2.76E-07 1 TEEN l 4.61E-07 l 3.13E-07 l 6.58E-07 I 9.57E-07 ) 3.60E-07 ! 9.42E-06 I 4.19E-07 I t.6aE-07 1 CHILD l 4.79E-07 l 2.90E-07 l 1.23E-06 l 1.24E-06 1 4.37E-07 l 1.42E-05 I 5.16E-07 I 1.99E-07 I b

L L

I L

L I

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'T E EE +=+=+--+-+-+--+-+-+-+ t C JJ t i 4 1 I 4 8 8 1 #

W JJ IT I@ O h th th 4 @t@ l@ O@ 6 I W == 10 0 00 De0 00 6 080 10408 W az W l 28 W t W 8-I e e t W$W8W4 i 0 WIW9WtW 6 i l l i . ,

M mig ( N IM t i W TW C6M ON t wtetot r JW C0 @ sT IMt Olvant N IN INe@ t r JW 6 I I

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Ma U408 04 040409 060404 00 E

  • RW d 4 e i e i e 1 4 8 4 4 e e i 4 0 t t t W tW IWI W4WlW IWI i-O3 E IW IW 6

~8NeceN I HOB WW HIM t N o- eO@ lmI AW2 MM a tW IMt etMINI @* lotNeme F W 00 wa

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i TABLE VII-A-32 FORT CALHOUN 1 RECEPTORS IN ALL SECTORS 08-08-91 SPECIAL LOCAT10N s 16 RES AT 2.02 MILES NNW BETA AIR DOSE = 3.35E-03 MILLRADS GAMMA AIR DO5E = 5.89E-04 MILLRADS GI-TRACT BONE liver MIDNEY THvROID LONG $ KIN PATHWAY T. BODY .

PLUME l 3.58E-04 I 3.58E-04 l 3.58E-04 l 3.58E-04 1 3.58E-04 l 3.71E-04 1 9.22E-04 l

__ ______.I 3.58E-04._______ ..______-_-_.__________.______-___. ___.-____.--.___-___.__________... -_.. .-.

GROUND l 1.16E-05 l i.16E-05 l 1.16E-05 l 1.16E-05 l 1.16E-05 l 1.16E-05 l 1.16E-05 l 1.35E-05 l l l l l l l INHAL l ADULT l 2.24E-06 l 2.01E-06 l13.33E-07 l 2.46E-06 l 2.46E-06 1 6.T9E-05 l 2.04E-06 l 1.89E-06 l TEEN 1 2.24E-06 4.60E-07 1 2.67E-06 l 2.68E-06 l 8.56E-05 l 2.15E-06 l 1.90E-06 l l 2.04E-06 ..--______.

_-_ .____.-____ ...._______-_-.1 -__-___ .____-_-__-.---_-__-_..----_-_-_-.-_-__-____.

cs Lo l 1.94E-06 l 1.75E-06 6.18E-07 l 2.41E-06 l 2.41E-06 l 4 00E-04 l 1.90E-06 l 1.68E-06 l

--_-__-__.____ --._-.-___--_--_.1 ____.--__...--_.--___. -_-__----.-------_-_._-__-_-__- __-_-__--.

INFANT l 1.12E-06 l 9.95E-07 l 4.24E-07 l 1.56E-06 l 1.44E-06 l 9.14E-05 l 1.13E-06 l 9.68E-07 I t

VII-37

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+-+-+--+-+-+ f t 0 4 4 I t I t @ I@ 4 5 th t h e

  • 8 08 08 O901 00 +

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+==+==+====+==+==+

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0 =J =# a 1 4 0  :

M .=3 =J t 40 t C5 C 6 4D 4 4D 4 U = = = 4 OI Oe OaOt O4 W 22 W 4 4 6 9 I a ee 4 s t M Z l W4 W 4 W 5W 4 W 6 99 OI @ l 40 4 W eN I wI

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    • *
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% ** 44 1 OI @ t 4D 8 40 1 @ l 3 l OI O1 OsO 1 O8 7 44 > 1 1 6 8 4 e i 1 0 0 1 0@ H2 04W I W I W 4 1s3 4 isJ 4

- ** O esJ E Ot@ t 40 0 40 t r* I C 6

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O TABLE VII-B-1 ,

FORT CALHOUN 1

~ DOSE CONTRIBUTIONS FROM GASEQUS EFFLUENTS

' UNRESTRICTED AREA BOUNDARY REQUIRED BY TECHNICAL SPECIFICATION 5.9.4.a.

SEMIANNUAL FOR JAN TO JUL 91 MAXIMUM SITE BOUNDARv GAMMA AIR DOSE = 3.66E-03 MILLIRAD MAXIMUM SITE BOUNDARY BETA AIR DOSE = 7.55E-03 F?LLIRAD i

b 4

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c g TABLE VII-D-2

  • *
  • AS LOW AS REASONABLY ACHIEVABLE * *
  • A DU L'T D0SES DOSE (MREM PER .5VR INTAME)

PATHwAV SKIN B0Hs LIVER TOTAL BODY THYROID MIDNEY LUNG 'GI-LLI FISH 7.10E-02 5.20E-02 3.96E-02 - 8.64E-03 2.32E-02 1.37E-02 1.05E-02 DRINKING 2.40E-04 4.47E-04 4.02E-04 2.65E-04 3.22E-04 2.89E-04 3.44E-04 SHORELINE 4.41E-05 3.81E-05 3.81E-05 3.81E-05 3.81E-05 3.81E-05 3.81E-05 3.81E-05 SWIMMING O.00E+00 4.59E-07 4.59E-07 4.59E-07 4.59E-07 4.59E-07 4.59E-07 4.59E-07 BOATING 0.00E+00 2.30E-07 2.30E-07 2.30E-07 2.30E-07 2.30E-07 2.30E-07 2.30E-07 TOTAL 4.41E-05 7.13E-02 5.25E-02 4.00E-02 9.15E-03 2.36E-02 1.40E-02 1.09E-02 USAGE (MG/YR.HR/YR) DILUTION TIME (HR) SHOREw!DTH FACTOR =0.2 i r!SH 21.0 7.3 24.00 DRINK!NG 730.0 30.8 18.60 SHORELINE '2.0 7.3 0.00 SWIMMING 12.0 7.3 0.00 i BOATING 12.0 7.3 0.00

  • *
  • ISOTOPE CONTRIBUTION * *
  • 4 PATHwAV SKIN BONE LIVER TOTAL BODY THvROID MIDNEY LUNG GI-LLI FISH CS 137 28% CS 137 53% CS 137, 45% C 14 99% CS 137 40% CS 137 22% CS 137 5%

CS 134 9% CS 134 29% CS 134 31% CS 134 21% CS 134 12% NB 95 6%

  • C 14 62% C 14 1Cs C 14 22% C 14 37% C 14 64% CS 134 2%

C 14 83%

DRINKING SR 90 15% CS 137 25% SR 90 2% H 3 92% CS 137 12% CS 137 4% CO 58 3%

CS 137 34% CS 134 14% CS ~37 18% C 14 5% CS 134 6% CS 134 2% CD 60 1%

CS 134 11% H 3 55% CS 134 12% H 3 76% SB 125 1% 58 124 . 2%

SB 125 1% C 14 3% H 3 61% C 14 4% H 3 e5% SB 125 12%

C 14 32% FE 55 1% C 14 3% C 14 5% H 3 71%

FE 55 4% FE 55 1% C 14 4%

FE 55 1%

SHORELINE CS 137 50%' CS 137 50%

CS 134 13% CS 134 13%

i CO 58 1% CO 58 1%

CO 60 9% CO 60 9%

SB 125 23% SB 125 23%

i f SWIMMING CS 137 15%

j CS 134 19%

CO 58 21%

! CO 60 6%

LA 140 2%

SB 124 5%

Se 125 25%

l AG 110M 3%

i l

VII-45 I .

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O TABLE VII-D-3

  • AS LOW AS REASONABLY ACHIEVABLE * *
  • TEENA GER D0SES DOSE (MREM DER .5VR INTAME)

PATHWAV SMIN BONE LIVER TOTAL BODY THYROID MIDNEY LUNG GI-LLI i CISH 7.65E-02 5.41E-02 2.69E-02 9.62E-03 2.44E-02 1.54E-02 1.09E-02 DRINMING 2.24E-04 3.63E-04 2.65E-04 1.92E-04 2.45E-04 2.16E-04 2.45E-04 SHORELINE 2.46E-04 2.13E-04 2.13E-04 2.13E-04 2.1?E-04 2.13E-04 2.13E-04 2.13E-04 i Sw!MMING 0.00E+00 2.56E-06 2.56E-06 2.56E-06 2.56E-06 2.56E-06 2.56E-06 2.56E-06 BOATING 0.00E+00 1.28E-06 1.28E-06 1.28E-06 1.28E-06 1.28E-06 1.28E-06 1.28E-06 TOTAL 2.46E-04 7.69E-02 5.47E-02 2.74E-02 1.00E-02 2.48E-02 1.58E-02 1.13E-02 USAGE (MG/YR.HR/VR) OILUTION TIhE(HR) SHOREWIDTH FACTOR =0.2 FISH 16.0 7.3 24.00 DRINKING 510.0 30.8 18.60 SHORELINE 67.0 7.3 0.00 ,

Sw!MMING 67.0 7.3 0.00 BOATING 67.0 7.3 'O.00

  • *
  • ISOTOPE CONTRIBUTION * *
  • E*ATHWAV SMIN BONE LIVER TOTAL BODY THyn01D MIDNEY 1 UNG GI-LLI I i

FISH CS 137- 28% CS 137 53% r.3 137 37% C 14 99% CS 137 40% CS 137 24% CS 137 3% l CS 134 8% CS 134 28% CS 134 26% CS 134 20% CS 134 12% NB 95 4%

C- '14 62% C 14 17% C 14 35% C 14 39% C 14 62% CS 134 1%

C 14 88%

DRINKING SR 90 12% CS 137 30%. SR 90 2% I 131 1% CS 137 15% CS 137 6% CO 58 2% t CS 137 36% CS 134 16% ES 137 14% H 3 90% CS 134 7% CS 134 3% SB 124 2%

  • CS 134 11% H 3 47% CS 134 10% C 14 8% H 3 70% H 3 80% $8 125 12%
SB 125 1% C 14 4% H 3 65% C 14 6% C 14 7% H 3 7P%

C 14 35% FE 55 1% C 14 5% FE 55 1%' C 14 6%

FE 55 3% FE 55 1%

SHORELINE CS 137 50% CS 137 50%

CS 134 13% CS 134 13% [

CO $8 1% CO 58 1%

CO 60 9% CO 60 9%

SB 125 23% SB 125 23% t Sw!# MING CS 137 .5% .

CS 134 18%

  • CO 58 21%

CO 60 6% ,

LA 140 2%

SB 124 5%

SB 125 25%

AG 110M 3%' i VII-46 .

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1 TAB:.E VII-D-4

  • AS LOW AS REASONABLY ACHIEVABLE * *
  • CH I LD D05E$

DOSE (MREM PER .5VR INTAKE)

PATHWAY SKIN BONE LIVER 70TAL BODY THYROID MIDNEY LUNG GT-LLI FISH 9.71E-02 5.16E-02 1.90E-02 1.24E-02 1.49E-02 1.69E-02 1.28E-02 I ORINMING 6.12E-04 7.30E-04 4.5BE-04 3.85E-04 4.90E-04 4.25E-04 SHORELINE 4.33E-04  ;

5.15E-05 4.45E-05 4.45E-05 4.45E-05 4.45E-05 4.45E-05 4.45E-05 4.45E-05 i SWIMMING 0.00E+00 5.36E-07 5.36E-07 5.36E-07 5.36E-07 5.36E-07 5.36E-07 BOATING 5.36E-07 0.00E+00 2.68E-07 2.68E-07 2.68E-07 2.68E-07 2.6BE-07 2.68E-07 2.68E-07 TOTAL 5.15E-05 9.78E-02 5.24E-02 1.95E-02 1.28E-02 2.55E-02 1.74E-02 1.33E-02 USAGE (kG/YR.HR/YR) DILUTION TIME (HR) SHOREw!DTH FACTOR *0.2  !

FISH 6.9 7.3 24.00 ,

DRINKING 510.0 30.8 18.60 l SHORELINE 14.0 7.3 0.00 '

SWIMMING 14.0 7.3 0.00 BOATING 14.0 7.3 0.00 I

  • ISOTOPE CONTRIBUTION
  • i pathway SKIN BONE i LIVER TOTAL BODV THYROID KIDNEY LUNG GI-LLI t FISH CS 137 28% CS 137 50% CS 137 2L'A C 14 99% CS 137 34% CS 137 10% CS 137 1%  !

CS 134 8% CS 134 25% CS 134 14% CS 134 16% CS 134 8% NB 95 1% t C 14 63% C 14 23% C 14 64% C 14 49% C 14 73% C 14 9E%

DRINKING SR 90 9% CS 137 31% SR 90 3% I 131 1% CS 137 15% CS 137 6% CO 58 1% }

CS 137 39% CS 134 15% CS 137 7% H 3 86% C5 134 7% CS 134 2% SB 124 1% j

.CS 134 11% H 3 45% CS 134 5% C 14 12% H 3 67% H '3 78% 58 125 7%" '

C 14 38% C 14 6% H 3 72% C to 9% C 14 11% H 3 76%

FE 55 1% C 14 10% C 14 1 016 4 SHORELINE CS 137 50% C5 137 50%

CS 134 13% CS 134 13%

CO 58 1% CO 58 1% >

CO 60 9% CO 60 9% t SB 125 23% SB 125 23% I SWIMMING CS 137 15%

CS 134 18%

CO 58 21%

CO 60 6%

LA 140 2%

SB 124 5%

.SB 125 25%

AG 110M 3%

l l

r VII-47 3

w.,

[ . .

TABLE VII-D-5

  • AS LOW AS'REASONABLV ACHIEVABLE * *
  • I N F A N T D0SES DOSE (MREW PER .SYR.INTAME)

DATHWAY SKIN BONE LIVER TOTAL BODY THVROID KIDNEV LUNG GI-LLI SISH 0.00E+00 0.00E+00 0.00E+00 0.00E+00 0.00E+00 0.00E+00 0.OCE+00 DRINMING 6.6ME-04 8.20E-04 4.40E-04 3.99E-04 5.03E-04 4.39E-04 4.24E-04 SHORELINE 0.00E+00 0.00E+00 0.00E+00 0.00E+00 0.00E+00 0. ODE +00 0.00E+00 0.00E+00  :

TOTAL 0.00E+00 6.65E-04 8.20E-04 4.40E-04 3.99E-04 '5.03E-04 4.39E-04 4.24E-04 i USAGE-(KG/VR.HR/YR) DILUTION TIME (HR) SHOREw!DTH FACTOR =0.2 L FISH 0.0 7.3 24.00' DRINKING 330.0 30.8 18.60

  • *
  • ISOTORE CONTRIBUTION * *
  • DATHwAY SKIN '

BONE LIVER TOTAL BODY THYROID KIDNEY LUNG GI-LLI DRINK!NG SR 90 6% CS 137 35% SR 90 2% I 131 2% CS ?37 15% CS 137 7% SB 125. 4%

, CS 137 .37% CS 134 16% CS 137 4% H 3 8t% CS 134 6% CS 134 3% H 3 77%

! CS 134 10% H 3 39% CS 134 3% C 14 15% H 3 64% H 3 74% C 14 14%

C 14 44% C 14 7% H 3 74% C 14 12% C 14 14% +

C 14 14%

t F

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O O TABLE VII-D-6'

  • *
  • SELECTED LOCATION
  • LOCATION IS SITE DISCHG.

A DULT D0SES DOSE (MREM PER'.5VR INTAKE)

TOTAL BODY THYROID KIDNEY LONG GI-LLI PATHWAV SKIN BONE LIVER 7.68E 3.79E-01 2.89E-01 6.45E-02 1.69E-01 9.97E-02 FISH 5.18E-01 8.91E-03 1.06E-02 7.39E-03 1.38E-02 1.24E-02 8.'18E-03 9.91E-03 DRINKING ,2.78E-04 2.78E-04 2.78E-04 2.78E-04.

SHORELINE 3.22E-04 2.76E-04 2.78E-04 2.78E-04 3.35E-06 3.35E-06 3.35E-06 3.35E-06 3.35E-06 Sw1MMING 0.00E+00 3.35E-06 3.35E-06 1.68E-06 1.68E-06 1.68E-06 1.68E-06 1.68E-06 1.68E-06 BOATING 0.00E+00 1.68E-06 1.09E-Ot 8.77E-02 5.26E-01 3.93E-01 3.02E-01 7.30E-02 1.80E-01 TOTAL 3.22E-04 USAGE ( KG / Y R , HP./ V R ) DILUTION TIME (HR) SHOREw!DTH FACT 0n=0.2 FISH 21.0 1.0 24.00 DRINKING 730.0 1.0 12.00 ,

SHORELINE 12.0 1.0 0.00 SWIMMING 12.0 1.0 0.00 BOATING 12.0 1.0 0.00

  • *
  • ISOTOPE CONTRIBUTION THvROID K!DNEY LUNG GI-LLI SKIN BONE LIVER TOTAL BODY PATHWAY CS 137 45% C 14 99% CS 137 40% CS 137 22% CS 137 $%- l FISH CS 137 28% CS 137 53% CS 134 12% NB 95 6%  !

CS 134 9% CS 134 29% CS 134 31% CS 134 21%

14 22% C 14 37% C 14 64% CS 134 2%

C 14 62% C 14 16% C 14 83%

C 2% H 3 92% CS 137 12% -CS 137 4% CO 58 3%

SR 90 15% CS 137 25% SR 90 DRINKING CS 137 18% C 14 5% CS 134 6% CS 13a 2% CO 60 1%

CS 137 34% CS 134 '14% H 3 76% SB 125 1% SB 124 2%

CS 134 11% H .3 55% CS 134 12% SB 125- 12%

1% 14 3% H 3 61% C to 4% H 3 85%

SB 125 C 14 5% H 3 71%

FE 55 1% C 14 3% C C 14 .32% FE 55 1% C 14 4%

FE 55 4% FE 55 1%

SHORELINE CS 137 50% CS 137 50%

CS 134 13% CS 134 13%

CO 58 1% CO 58 1%

CO 60 9% CO 60 9%

$8 125 23% SB 125 23%

SWIMMING CS 137' 15%

CS 134 18%

CO 58 21%

CO 60 6%

LA 140 2%

SB 124 5%

SB 125 25%

AG 110M 3%

VII-49

  • m TABLE VII-D-7
  • *
  • SELECTED LOCATION LOCATION IS SITE OISCHG.

T EEN A GER 00SES DOSE (MREM PER .5VR INTAKE)

LIVER TOTAL BODY THvROID KIONEY LUNG GI-LLI.

PATHwAV SKIN BONE 7.92E-02 3.95E-01 1.97E-01 7.02E-02 1.78E-01 1.12E-01 FISH 5.58E-01 6.66E-03 7.56E-03 6.90E-C3 1.1'E-02 4 8.17E-03 5.92E-03 7.56E-03 DRINVING 1.55E-03 1.55E-03 1.55E-03 1.55E-03 SHORELINE 1.80E-03 1.55E-03 1.55E-03 1.55E-03 1.87E-05 1.87E-05 1.87E-05 1.87E-05 1.87E-05 1.87E-05 Sw!Mw!NG O.00E+00 1.87E-CS 9.36E-06 9.36E-06 9.36E-06 9.36E-06 BOATING O.OOE+00 9.36E-06 9.36E-06 9.36E-06 4.08E-01 2.P6E-01 7.77E-02 1.87E-01 1.20E-01 8.83E-02 TOTAL 1.80E-03 5.67E-07 USAGE (MG/YR,HR/vR) OILUTION TIME (HR) SHOREw!OTH FACTOR =0.2 FISH 16.0 1.0 24.00 DRINMING 510.0 1.0 12.00 SHORELINE 67.0 1.0 0.00 Sw!MMING 67.0 1.0 0.00 BOATING 67.0 1.0 0.00

  • *
  • ISOTORE CONTRIBUTION TOTAL BDDy THvROYD MIDNEY LUNG GI-LLI
'ATHwAV SKIN BONE LIVER CS 137 3%

CS 137 53% CS 137 37% C 14 99% C5 137 40% C5 137 24%

FISH CS 137 28% C5 134 20% CS 134 12% NB 95 4%

CS 134 8% CS 134 28% CS 134 76% 1%

14 17% C 14 35% C 14 39% C 14 62% C$ 134 C 14 62% C C to 88%

SR 90 2% 131 1% CS 137 15% CS 137 6% CO 58 2%

ORINKING SR 90 12% CS 137 30%  !

7% CS 134 3% SB 124 2%

CS 137 36% CS 134 16% CS 137 14% H 3 90% CS 134 11% H 3 47% CS 134 10% C 14 8% H 3 70% H 3 80% SB 125 12%

CS 134 C 14 6% C to 7% H 3 70%

SB 125 1% C 14 4% H 3 65%

14 5% FE 55 1% C to 6%

C 14 35% FE 55 1% C FE 55 1%

FE 55 3%

SHORELINE CS 137 50% CS 137 50%

CS 134 13% CS 134 13%

CO 58 1% CO 58 1%

CO 60 9% CO 60 9%

SB 125 23% SB 125 23%

! SWIMMING CS 137 15%

CS 134 18%

CO 58 21%

CO 60 6%

LA 140 2%

SB 124 5%

SB 125 25%

AG 110M 3%

VII-50

k ..

TABLE VII-D-8

  • SELECTED LOCATION- * * *

. LOCATION IS SITE DISCHG.

CH IL0 005ES DOSE (MREM PER .5vR INTAKE)

PATHW4V SKIN BONE. LIVER TOTAL BODY THvROID KIDNdV LUNG GI-LLI FISH 7.09E-01 3.77E-01 1.39E-01 9.02E-02 1.82E-01 1.23E-01 9.35E-02 DRINHING 1.89E-02 ~2.25E-02 1.41E-02 1.19E-02 1.51E-02 1.31E-02 1.33E-02.

SHORELINE 3.76E-04 .3.2SE-04 3.25E-04 3.25E-04 3.25E-04 3.25E-04 3.2SE-04 3.75E-04 SW]MMING 0.00E+00 3.91E-06 3.91E-06 3.91E-06 3.91E-06 3.91E-06 3.91E-06 3.91E-06 BOATING 0.00E+00 '1.96E-06 't.96E-06 1.96E-06 1.96E-06 1.96E-06 1.96E-06 1.96E-06 TOTAL 3.76E-04 7.2BE-01 4.00E-01 1.53E-01 1.02E-01 1.97E-01 f.37E-01 1.07E-01' USAGE (MG/YR.HR/YR) D1LUT10N TIME (HR) SHOREWIOTH F# .f0R=0.2 FISH 6.9 1.0 24.00 DRINFING 510.0 1.0 12.00' SHORELINE 14.0 1.0 0.00 SWIMMING 14.0 1.0 0.00 BOATING 14.0 1.0 0.00

  • *
  • ISOTOPE CONTRIBUTICN * *
  • 1 PATHwAv SKIN BONE LIVER TOTAL B00v THVROID KIDNEY LUNG GI-LLI-FISH CS 137 28% CS 137 50% CS 137 20% C 14 99% CS 137 34% CS 137 18% CS 137 1%

CS 134 8% CS 134 25% CS 134 14% CS 134 16% CS 134 8% NB 95 1%

C 14 63% C 14 23% C 14 64% C 14 49% C 14 73% C 14 96%

DRINK]NG SR 90 9% CS 137 31% SR 90 3% I 131 1% CS 137 15% CS 137 6% CO 58 1%

CS 137 39% CS 134 15% CS 137 7% H 3 86% CS 134 7% CS 134 2% Se 124 1%

CS 134 11% H 3 45% CS 134 5% C 14 12% H 3 67% H 3 78% Se 125 7%

C 14 38% i 14 '6% H 3 72%- C 14 9% C 14 11% H 3 76%

FE 55 1% C 14 10% C 14 10%

SHORELINE CS 137 50% CS 137 50%

CS 134 13% CS 134 13%

CO SB 1% CD 58 1%

CO 60 9% CO 60 9%

SB 125 23% SB 125 23%

Sw!MMING CS 137 15%

CS 134 18%

CO 58 21%

CO 60 6%

LA 140 2%

SB 124 5%

SB 125 25%

AG 110M 3%

VII-51

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

TABLE VII-D-9 ,

.

  • SELECTED LOCATION * *
  • LOCATION 15 SITE DISCHG.

.I N F,A N T 005ES OOSE (WREM PER .5VR INTAME)

PATHWAY SKIN '

BONE LIVER TOTAL BODY THYROID MIDNEY LUNG GI-LLI FISH O.00E+00 -0.00E+00 0.00E+00 0.00E+00 0.00E+00 0.00E+00 0. ODE +00 DRINMING 2.05E-02 2.53E-02 1.36E-02 1.23E-02 1.55E-02 1.35E-02 -1.31E-02 SHORELINE 0.00E+00 0.00E+00 0.00E+00 0.00E+00 0.00E+00 0.00E*00 0.00E+00 0.00E+00 TOTAL 0.00E+00 2.05E-02 2.53E-02 1.36E-02 1.23E-02 1.55E-02 1.35E-02 1.31E-02 -

USAGt..(MG/YR,HR/YR) DILUTION TIME (HR) SHOREw1DTH FACTOR =0.2 FISH 0.0 1.0 24.00 -

DRINKING 330.0 1.0 12.00

  • *
  • ISOTOPE CONTRIBUTION * *
  • i PATHWAY SMIN BONt LIVER TOTAL BODY THVROID MIDNEY LONG GI-LLI DRINKING SR 90 6% CS 137 35% SR -90 2% i 131 2% CS 137 15% CS 137 7% SB 125 4%
  • CS 137 37% CS 134 16%' CS 137 4% H 3 81% CS 134 6% CS 134 . 3% H 3 77%'

CS 134 10% N 3 39% CS 134 3% C 14 15% H '3 64% H 3 74% C 14 14%

C 14 44% C 14 7% H 3 74% C 14 12% C 14 14% i C 14 14%

  • i

[

't 1

i i a

.t

[

t j

VII-S2 r

..... ,.-_,# .,, ,, . , , , . , _ , _ . . . . . . . . . , . , , , . , . . , _ . . . . . ..._..._,,...,,.,,,,_,..,..,,_.,._,.-,_........_-_,_~.,m,,,__....._._m...,.-_.._,, _ _ . , . - _ . _ , _ _ , . . ,

i TABLE VII-E-1 >

  • *
  • FISH CONSUMPTION POPULATION DOSES * *
  • MAN-REM SPORTFJSH HARVEST

DOSE (MAN-REM)------------------= - - -

PATHWAY AGE GROUP USAGE BONE LIVER TOTAL BODY THvROID KIDNEY LUNG GI-LLI FISH ADULT 5.81E+04 1.93E-01 1.41E-01 1.07E-01 2.40E-02 6.30E-02' 3.71E-02 2.84E-02 rISH TEENAGER ~9.29E+03 4.36E-02 3.08E-02 1.53E-02 5.49E-03 1.39E-02 8.75E-03 6.15E-03 rISH CHILO- 5.61E+03 7.76E-02 4.12E-02 1.52E-02 9.8BE-03 1.99E-02 1.35E-02 1.02E-02 FISH TOTAL 7.30E+04 3.14E-01 2.13E-01 1.38E-01 3.94E-02 9.68E-02 5.94E-02 4.47E-02 O1LUTION CATCH TIME (HR)-INCLUDES FOOD PROCESSING TIME OF't.68E+02 HR POPULATION =1.28E+04 7.30E+00 7.30E+04 1.69E+02 I

AVERAGE INDIVIDUAL CONSUMPTION (MG/YR) ADULT =6.90E+00 TEEN =5.20E+00 CHILD =2.20E+00 i

  • ISOTOPE CONTRIBUTION * *
  • AGE GROUP BONE LIVER YOTAL BODY THYROID MIONEY LONG GI-LLI ADULT CS 137 28% CS 137 53% CS 137 45% C 14 99% CS 137 40% CS 137 22% CS 137 5%

CS 134 9% CS 134 29% CS 134 31% CS 134 21% CS 134 ft% NB 95 6%

C 14 62% C- 14 16% C 14 22% C 14 38% C 14 64% CS 134 2%

C 14 84%

TEENAGER I CS 137 28% CS 137 53% CS 137 37% C 14 99% CS 137 40% CS 137 24% CS 137 3%

CS 134 8% CS 134 28% CS 134 26% CS 134 20% CS 134 12% NB 95 4%

C 14 62% C 14 17% C 14 35% C 14 39% C 14 62% CS 134 1%

C to 89% l CHILD CS 137 28% CS 137 50% C5 137 20% C 14 99% CS 137 34% CS 137 18% CS 137 1%

CS 134 8% CS 134 25% CS 134 14% CS 134 16% CS 134 8% NS 95 1%

C 14 63% C 14 23% C 14 64% C 14 49% C 14 73% C 14 96%

i l-VII-53 i

w TABLE VII-E * *

  • FISH CONSUMPTION POPULATION DOSES * *
  • MAN-REM COMMERCIAL HARVEST

DOSE (MAN-REM)----------------------------

PATHWAY AGE GROUP USAGE BONE LIVER TOTAL BODY THvROID MIDNEY LUNG GI-LLI FISH ADULT 3.35E+06 1.84E-02 1.35E-02 1.C3E-02 2.30E-03 6.02E-03 3.54E-03 2.70E-03 ,

FISH TEENAGER 5.35E+05 4.17E-03 2.94E-03 1.46E-03 5.24E-04 1.33E-03 8.36E-04 5.86E-04 FISH CHILO 3.23E+05 7.41E-03 3.93E-03 1.45E-03 9.44E-D4 1.90E-03 1.29E-03 9.76E-04

  • ISH TOTAL 4.20E+06 3.00E-02 2.03E-02 1.32E-02 3,76E-03 9.25E-03 5.67E-03 4.26E-03  ;

O!LUTION CATCH TIME (HR)-INCLUDES FOOD PROCESSING TIME OF 2.40E+02 HR POPULATION =7.35E+05 l 7.30E+00 7.30E+04 2.41E+02 AVERAGE INDIVIOUAL CONSUMPTION (MG/YR) ADULT =6.90E+00 TEEN =5.20E+00 CHILD =2.20E*00 l

  • *
  • ISOTOPE CONT 918UTION * *
  • AGE GROUP BONE LIVER TOTAL BODY THYROID MIDNEY LUNG GI-LLI  !

ADULT CS 137 28% CS 137 53% CS 137 46% C 14 99% CS 137 40% CS 137 22% CS 137 5%

CS 134 .8% CS 134 29% CS 134 31% CS 134 21% CS 134 11% MB 95 5%

C 14 62% C 14 16% C 14 22% C 14 38% C to 64% CS IJ4 2%

C 14 84%

TEENAGER CS 137 28% CS 137 53% CS 137 37% C 14 994 CS 107 40% CS 137 24% CS 137 3% [

CS 134 8% CS 134 28% C1 134 26% CS 134 20% CS 134 12% h3 95 3%

C 14 62% C 14 17% C 14 35% C 14 39% C 14 62% CS 134 1% i C 14 89%

?

CHILD [

CS 137 28% CS 137 50% CS 137 20t C 14 99% CS 137 34% CS 137 18% CS 137 1%

CS 834 8% CS 134 25% CS 134 14% CS 134 16% CS 134 8% NB 95 1%

C 14 63% C 14 23% C 14 64% C 14 49% C 14 .73% C 14 96%

NEPA DOSES NOTE--TOTAL NEPA DOSE MUST INCLUDE SPORT CATCH, DOSES BELOW ARE FOR COMMERCIAL CATCH ONLY


---- - - ------- ----- - DO S E (MAN-REM)---------------------------- ,

t DATHwAV AGE GROUP USAGE BONE LIVER TOTAL BODY THVPOID RIDNEY LUNG GI-LLI >

SISH ADULT 5.81E+04 1.93E-01 1.41E-01 1.07E-01 2.40E 6.30E-02 3.71E-02 2.83E-02 FISH TEENAGER 9.29E+03 4.36E-02 3.08E-02 1.53E-02 5.49E-03 1.39E-02 8.75E-03 6.13E-03 FISH CHILD 5.61E+03 7.76E-02 4.12E-02 1.52E-02 9.88E-03 1.99E-02 1..SSE-02 1.02E-02 1 r:SH TOTAL 7.30E+04 2.14E-01 2.13E-01 1.3SE-01 3.94E-02 9 68E-02 5.LOE-02 4.*6E-02 VII-54 ,

e y y9 yy-=- y g y w+ g awr- - .-. - v - a - - - - '- - - - - - - - - - - - - - - - - - - - -

m b-4 ls U TABLE VII-E-3

  • *
  • PODULATION WATER COMSL*PTIOM DOSES * *
  • 1 4

-- --DOSE ( W AM-R EM) - -- - - -

4 pathway AGE GROUP USAGE BONE LIVER TOTAL BODv THVROID FIDNEW LUNG GI-LLI DRINKING ADULT 1.29E+08 4.25E-02 7.92E-02 7.12E-02 4.69E-02 5.69E-02 5.12E -0 2 6.0 7E-02 DRINx!NG T E E84 AGER 1.93E*07 8.45E-03 1.37E-O2 1.OCE-02 7.25E-03 9 27E-03 8.16E-03 9.24E-03 DRINMING CHILD 2.75E*D7 3.30E-02 3.94E-02 2.47E *2 2.08E-02 2.64E-02 2.29E-02 2.33E-02 DRIMnING TOTAL 1.76E*C8' 8.39E-02 1.32E-01 1.06E-U' 7.50E-02 9.2SE-02 8.22E-02 9.33E-02 PODULATIOM=5.29E+C5 DILUTION =3.08E+01 TRANSIT T!st=3.06E+01 Ho (!>CLUDING 24 MR FOR TDEATWENT FACILITV)

AVERAGE INDIVIDUAL CONSudPTIOM (L/vR) ADULT =3.7CE*0? *EEM=2.60E*02 CH7LD*2.6CE*02 i

ISOTOPE COMTRIBUTION * *

  • AGE Gt400P BOME LIVER TOTAL SODY TMVROID MIDNEY LUNG GI-LLI i ADULT

. SR 90 15% CS 137 25% SR 90 2% H 3 42% CS 137 12% CS 4% CO 58 3%

, CS 137 34% CS 134 14% CS 137 18% C 14 5% C5 134 6% CS 13a 2% CO 60 1%

CS 134 11% H 3 55% CS 134 12% H 3 76% SS 125 's SS 124 Is 58 125 1% C 14 3% H 3 61% C ~14 4%

  • Se 125 12%

C 14 32% FE 55 1% C 14 ' 3% C 14 s H 3 71%

FE 55 4% FE 55 1% C to 4%

FE 55 t%

TEENAGER SR 90 12% CS 137 30% SR 90 2% I 131 1% CS 137 15% CS 137 6% CO SB 2%

CS 137 36% CS 134 16% CS 137 14% H 3 90% CS 134 7% C3 134 3% Se 124 2%

CS 134 11% H 3 47% CS 134 10% C 14 8% H 3 70%

  • 3 80% SB 125 12%

SB 125 1% C 14 4% H 3 65% C 14 6% C 14 7% H 3 71%

C 14 35% FE 55 1% C 14 5% FE 55 1% C ta 6%

FE 55 3% FE 55 1%

(

CHILD s SR 90 9% CS 137 31% Sn 90 3%  ! 131 1% CS 137 15% CS 137 E% CO 58 ts CS 137 39). CS 134 15% CS 137 7% H 3 86% CS 134 7% CS 134 2% $9 124 1%

CS 134 11% H 3 45% CS 134 5% C 14 12% H 3 67% M 3 78% SB 125 7%

C 14 39% C 14 6% H 3 72% C 14 9% C 14 11% H 3 77%

i FE 55 1% C 14 10% C 14 10%

1 4

i i

VII-55 l

i

i Q

g TABLE VII-E-4

  • * * *OPULATION WATER CONSUwpTION DOSES * * *

--DOSE (MAN-REw)- - - - - -=

PATHwav AGE GROUP USAGE BONE LIVER TOTAL 80DY THv20!D MIDNEY LUNG GI-LLI DRINM]NG ADULT 2.12E+07 6.87E-03 1.28E-02 1.15E-02 7.60E-03 9.21E-03 8.2BE-03 9.82E-03 DRINAING TEENAGER 3.17E+06 1.37E-03 2.22E-03 1.62E-03 1.17E-03 1.5?E-03 1.32E-03 1.50E-03 D*1Nu!NG CHILD 4.52E+06 5.34E-O' 6.37E-03 4.00E-03 3.36E-03 4.28E-03 3.71E-03 3.77E-03 DN.dKING TOTAL 2.89E+07 1.36E-04 2.14E-02 1471E-02 1.21E-02 1.50E-02 1.33E-02 1.51E-02 PODULATION=B.70E+04 DILUTION =3.13E+01 TRANSIT T!wE=3.10E+31 HR (INCLUDING 24 HR FOR TREATwENT FACIL1TV)

AVERAGE INDIVIDUAL CONSUwpTION (L/YR) ADULT =3.7CE*02 TEEN =2.6CE*02 CHILD =2.60E+02

  • *
  • ISOTOPE CONTRIBUTION * *
  • AGE GROUf' BONE LIVER TOTAL 80DY THVROID m!DNEY LUwG G'-LLI ADULT SR 90 15% CS 137 25% SR 90 2% H 3 92% CS 137 t2% CS 137 4% CO 58 3%

CS 137 34% CS 134 14% CS 137 18% C 14 5% CS 134 6% CS 134 2% CO 60 1%

i CS 134 11% H 3 5*a CS 134 12% H 3 76% 58 125 1% 58 124 2%

i 58 125 1% C 14 J% H 3 61% C 14 4%

  • 3 85% $8 125 12%

C 14 32% FC ** 1% C 14 3% C to 5% H 3 71%

FE $5 4% FE 55 ts C 14 4%

j FE 55 1%

TEENAGER SR 90 12% CS 137 30% SR 90 2% 1 131 t% CS 137 15% CS 137 6% CO 58 2%

j CS 137 36% CS 134 16% CS 137 14% H 3 90% CS 134 7% CS 134 3% 58 124 2%

i CS 134 11% H 3 47% CS 134 10% C 14 8% H 3 70% H 3 80% SB 125 12%

I SS 125 1% C 14 4% H 3 65% C 14 6% C 14 7% H 3 71%

C 14 35% FE 55 1% C 14 5% FE 55 1% C 14 E%

FE 55 3% FE 55 1%

CHILD 1

SR 90 9% CS 137 31% SR 90 3% I 131 1% CS 137 15% CS 137 E% CO SS 1%

, CS 137 39% CS 134 15% CS 137 7% H 3 86% CS 134 7% CS 134 2% SS 124 1%

l CS 134 11% H 3 45% CS 134 5% C 14 12% H 3 67% H 3 78% SB 125 7%

C 14 38% C to 6% H 3 72% C 14 9% C 14 11% H 3 77%

{ FE 55 1% C 14 10% C 14 10%


CUMULATIVE. TOTAL-cATHway AGE GROUP USAGE BONE LIVER TOTAL 80DV THvROID MIDNEY LUNG GI-LLI DRIMEING CUwuL TOTAL 2.05E*06 9.75E-02 1.54E-01 1.23E-01 8,71E-02 1.08E-01 9.55E-02 1.08E-01 HVDROSPHERE TRITIUw DOSE PATHWAv AGE GROUP USAGE BONE LIVER TOTAL BODV THYROID MIDNEY LU% GT-LLI 1 WATER TOTAL 2.20E+00 2.C3E-10 2.03E-10 2.03E-10 2.03E-10 2.03E-10 2.C3E-10 2.03E-10 1

i VII-56 1

+

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  • *
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. M T M M o o m m t0 0 * ** ,

4 e O uuuvM e O uuuu.JMM4 W M  ;

  • DOSE TO BIOTA
  • mRADS DE9 .5v4 DILUTION = 1.~Due*00 TAANSIT f!JEm 0.00E+00 H4 I NTEftNAL EXTERNAL TOTat
  • ISH l 5.71E+00 1.02E*00 6.73E+00 '

INVERTEBRATE 1.02E*01 2.03E+00 1.22E*0' ALGAE 5.72E*00 2.4SE-03 5.73E+00 TABLE VII-E-6 ,

wuSupAT 1.22E*01 6.79E-01 1.29E+01  !

sacCDON 2.83E+00 5.08E-01 3.34E+00 l wtRON. 3.19E+01 6.78E-01 3.26E+01 t DUCR 1.17E+01 1.02E+00 1.29E+01

  • *
  • ISOTOPE CONTRIBUTION * *
  • l DATNAV BODY
  • ISH CS 137 '7% I CS 134 3%

C 14 ess l INVERTEBa4TE C 14 98%

ALGAE CS 137 1%

LA 140 1% , j SS 124 1%  ;

SB 125 5% '

C to 881 wUs#4AT SR 90 3%  :

CS 137 19% l CS 134 9%

C 14 64% I FE SS 1%

i QACCOON CS 137 3%' i CS 134 1%

C 14 91%

FE 55 3%~

  • l wEROM CS 137 43% '

CS 134 23%  ;

C 14 31% i DUCu SR 90 4%

CS 137 19% '

CS 134 es i C 14 6E%  !'

FE 55 1%

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