ML19323A367

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Offsite Dose Calculation Manual,Revision 1
ML19323A367
Person / Time
Site: Prairie Island  Xcel Energy icon.png
Issue date: 04/30/1980
From:
NORTHERN STATES POWER CO.
To:
Shared Package
ML19323A368 List:
References
NUDOCS 8004180342
Download: ML19323A367 (150)


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l RECORD OF~ REVISIONS Revision No. Date Reason for Revision l l Original June 7, 1979 - i i 1 April 15, 1980 Incorporation of NRC Staff ) comments and correction of ' miscellaneous errors  ! i i I i i l I 4 i I i  ! a i I

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I LIST OF EFFECTIVE PAGES - I Page No Revision No Page No Revision No , t Cover

  • 1 3-19 0  ;

i 1 3-20 0 i ii 1 3-21 0 iii 0 3-22 0 iv 0 3-23 0 v 1 3-24 0 vi 1 3-25 0 l 1-1 1 3-26 0 l 2-1 1 3-27 0 l 2-2 1 3-28 0 2-3 1 3-29 0  ! 2-4 1 3-30 '0  ! 2-5 1 3-31 0

2-6 1 3-32 0 l 2-7 1 3-33 0 2-7a 1 3-34 0 2-8 1 3-35 0 ,

2-9 0 3-36 0 2-10 1 3-37 0 2-11 1 3-38 0 2-12 1 4-1 1 e 2-13 1 4-2 0 I , 2-14 0 4-3 0  !

3-1 1 5-1 1 3-2 1 5-2 1 ,

3-3 1 5-3 1 i' 3-4 1 5-4 1  ! 3-5 1 5-5 1- i 3-6 1 5-6 1 l i 3-7 1 5-7 1  ; 3-7a 1 5-8 1  : 3-8 ' 1 A A-39 0 3-9 0 B B-8 0 l 3-10 1 3-11 1  ! 3-12 0 ' 3-13 0  ! 3-14 0 3-15 1 > , 3-16 1  ! 3-17 0  ; 3-18 -1 3 O . F Rev. 1

1.0 INTRODUCTION

This Offsite Dose Calculation Manual (ODCM) provides the information and meth-odologies to be used by the Prairie Island Nuclear Generating Plant (PNGP) to j assure compliance with certain portions of PNG P's Operating Technical Specification. These portions are those related to liquid and gaseous radiological effluents. They are intended to show compliance with 10 CFR 20,10 CFR 50.36A,  ! 10 CFR 50, Appendix A (GDC 60 & 64) and Appendix I, and 40.CFR 190. This ODCM is based on " Radiological Effluent Technical Specifications for PWR's (NUREG-0472, October,1978)," " Preparation of Radiological Effluent Technical  ! Specifications for Nuclear Power Plants (NUREG-0133, October 1978)," and other inputs from the Nuclear Regulatory Commission (USNRC). Specific plant pro- 4 cedures for implementation of this manual are provided elsewhere. These pro-cedures will be utilized by the operating staff of the PNGP to assure comnliance , l with the Technical Specifications.  : l l Also included in this manual is information related to the Radiological Environ-mental Monitoring Program (REMP)in the form of Figures 3.1-1, 5.1 ' , 5.1-3 and I Table 5.!-1. These figures and table designate specific sample types nd locations i currently used to satisfy the technical specification requirements for the REMP. I They are subject to change based on the results of the periodic land use census. Although the ODCM has been prepared as generically as possible in order to min-imize the need for future revisions, some changes to the ODCM may be required in the future. Any such changes will be properly reviewed and approved as required by the PNGP Technical Specifications.  ! i I D ('d 1-1 Rev.1

i 2.0 LIQUID EFFLUENTS i 4 2.1 Monitor Alarm Setpoint Determination  ! k h This procedure determines the monitor a3 arm setpoint that indi-cates if the concentration of radionuclides in the liquid. effluent released at the site boundary exceeds the concentrations specified in 10CFR20, Appendix B, Table II. Column 2 for rationuclides other . than dissolved or entrained noble gases or exceeds a concentration of 2 x 10-4 gCi/ml for dissolved or entrained noble gases. f Monitor alarm setpoints will be calculated monthly. The calcu-  ; lation will be based on isotopes detected in effluent from the release point during the previous month. If there are no detect-able isotopes during the previous month, the PWR GALE Code source terms (Table 2.1-1) will be used. If the calculated setpoint.is less than the existing monitor setpoint, the setpoint will be reduced to the new value. If the calculated setpoint is greater () than the existing monitor setpoint, the setpoint may remain at the lower value or increased to the new value. The methodology described in Section 2.1.2 provides an alternate means to determine the monitor ! solation setpoints that'may be used when sample analyses are performed prior to release. 2.1.1 Liquid Effluent Ponitor Setpoints t The following method applies when determining the isolation set-points for the Waste Effluent Liquid Monitor (R-18), Steam Genera-tor Blowdown Liquid Monitor - Unit 1 (lR-19), and Steam Generator Blowdown Liquid Monitor - Unit 2 (2R-19) during all operational conditions when the radwaste discharge flow rate is maintained constant at the maximum design flow rate. i 2-1 Rev. 1

i 2.1.1.1 Determine the " mix" (radionuclides and composition) of () the liquid effluent.

a. Determine the liquid source terms that are representative l of the " mix" of the liquid effluent. Liquid source terms l are the total curies of each isotope released during the previous month. Table 2.1-1 source terms may be used if  ;

there have been no liquid releases. ,

b. Determine Si (the fraction of.the total radioactivity in the liquid effluent comprised by radionuclide "i") for l each individual radionuclide in the liquid effluent. l t

l S Ai l i=)[A i (2.1-1) i Ai = The radioactivity of radionucl!de "i" in the liquid () effluent from Table 2.1-1.

                                                                              )

2.1.1.2 Determine Ct (the maximum acceptable total radioactivity I concentration of all radionuclides in the liquid effluent prior to dilution (pCi/ml)). 1 Ct" f Si (2.1-2) MPCi i F = Dilution water flow rate (gpm)

                   = 4.52E5 gpm from cooling tower blowdown and water entering the discharge canal from Sturgeon Lake (l)      j f = The maximum attainable discharge flow rate prior

() to dilution (gpm) 2-2 Rev. 1 l

               =.60 gpm from the ADT tank pump (2)
               = 100 gpm from the CVCS tank pump (2)
               = 60 gpm from the SGBD tank pump (2)
               = 60 gpm from the SGBD discharge pump MPCi = Tne liquid effluent radioactivity concentration limit for radionuclide "i" (pCi/ml) from Table 2.1-1 or if not listed in Table 2.1-1, obtained from Reterence 3.

2.1.1.3 Determine Cm (the maximum acceptable total radioactivity concentration of the radionuclides (minus tritium) in the liquid discharge prior to dilution (pCi/ml)).  : Cm=Ct- (CtHS ) (2.1-3) SH = The fraction of the total radioactivity in the liquid effluent contributed by tritium and other - > i radionuclides that do not emit gamma or X-ray radiation. 2.1.1.4 Determine C.R. (the calculated monitor count rate above background attributed to the radionuclides (ncpm)). , C.R. is obtained by using the applicable Effluent Monitor Effic-iency Curve located in the Radiation Monitor Calibration file. C.R. is the count rate that corresponds to the " adjusted" total l radioactivity concentration (Cm)- C 2-3 Rev. 1

2.1.1.5 Determine HSP (the monitor high alarm setpoint above O background (nepm)). i i HSP = TmC.R. (2.1-4) l t

                                                              ~

Tm = Fraction of the. radioactivity from the site that may be released via each release point to ensure that  ! the site boundary dose rate limit is not exceeded > due to simultaneous releases from several release points. i

                = 0.90 for the Waste Effluent Liquid Monitor (R-18)
                = 0.05 for the Steam Generator Blowdown Liquid            i Monitor - Unit 1 (lR-19) l
                = 0.05 for the Steam Generator Blowdown Liquid            l Monitor - Unit 2 (2R-19)                                ;

l Tm values may be revised-from the values given above. l The summation of all the Tm values shall not be { greater than unity.  ! 2.1.1.6 The monitor high alarm setpoint above background (ncpm), shall be set at or below the HSP value. l 2.1.2 Setpoint Based on Analysis of Liquid Prior to Discharge i (Optional) i i This method may be used in~1ieu of the method in Section 2.1.1 to , determine the setpoints for the maximum acceptable discharge flow rate prior to dilution and to determine the associated high alarm  ; setpoint based on this flow rate for the Waste Effluent Liquid Monitor (R-18), Steam Generator Blowdown Liquid Monitor - Unit 1 (lR-19), and Steam Generator Blowdown Liquid Monitor - Unit 2 (2R-19), during all operational conditions. I 2-4 Rev. l'

i l 2.1.2.1 Determine f (the maximum acceptable discharge flow rate s_ prior to dilution (gpm)). f ,0.8 F Tm mci j 1 l F = Dilution water flow rate (gpm)

                     = 4.52E5 gpm from cooling tower blowdown and water                    l entering the discharge canal from Sturgeon Lake.(1)                 !

i Ci = Concentration of radionuclide "i" in the liquid l effluent prior to dilution (#Ci/ml) from analysis [ of the liquid effluent to be released. MPCi = The liquid effluent radioactivity concentration ( limit for radionuclide "1" (NCi/ml) from Table - 2.1-1 or if not listed in Table 2.1-1 from Refer-ence 3.  : Tm = Fraction of the radioactivity from the site that may be released via each release point to ensure that the site boundary limit is not exceeded due to simultaneous releases from several release points. Refer to Section 2.1.1.5. i I 2.1.2.2 Determine the monitor setpoint based on the radionuclide mix of the liquid effluent. i

a. Determine C.R. (the calculated monitor count rate above' background attributed to the radionuclides '(nepm)) .

P C.R. is obtained by using the applicable Effluent Moni-() tor Efficiency Curve located.in the Rr.diation Monitor 2-5 Rev. 1

I () Calibration file. C.R. is the count rate- point that corresponds to the " adjusted" total radioactivity con-centration (Cm)- f I Cm = The total radioactivity concentration of the radio- j nuclides (minus tritium and other radionuclides that j are only beta emitters) in the liquid discharge prior i to dilution (mci /ml) as determined using Equation  ! 2.1-3. (Ct and SH being determined by analysis of I undiluted liquid effluents.) C

b. Determine HSP (the monitor high alarm setpoint above l

background (ncpm)). ESP = C.R. (2.1-6) l 0.8  : () 0.8 = A correction factor to increase the monitor set-point to prevent spurious alarms caused by devia-  ; tions in the mixture of radionuclides that affects monitor response. l

c. The monitor high alarm setpoint above background shall be j set at or below this HSP value when this optional method i is selected. The maximum discharge flow shall not exceed j i

the value of f as determined in Section 2.1.2.1 when this l optional method is selected. l I  ! l 2-6 Rev. l'

() TABLE 2.1-1 LIQUID SOURCE TERMS i (2) WASTE EFFLUENT SCBD RADIONUCLIDE MPC (gCi/ml) ( Ag ) (Ci/Yr) (A1)(Ci/Yr) Mo-99 4E-5 6.42E-3 1.415E-2 , I-131 3E-7 3.061E-2 4.11E-2 Te-132 2E-5 2.12E-3 3.61E-3 > I-132 8E-6 2.83E-3 1.88E-2  ; 1-133 1E-6 2.365E-2 4.856E-2 l Cs-134 9E-6 1.464E-1 4.047E-2  ! I-135 4E-6 4.84E-3 1.792E-2 Cs-136 6E-5 5.743E-2 1.862E-2 i Cs-137 2E-5 8.214E-2 2.69E-2 A?.1 Others 1E-7 0 2E-5  ! 11 - 3 3E-3 1.89E2 1.41E2 l Total 1.894E2 1.412E2 i i i i O i t i i O 2-7 Rev. 1 l l i'

2.2 Compliance With 10 CFR 20 In order to comply with 10 CFR 20, the concentrations of radionuclides in liquid effluents will not exceed the maximum permissable concentrations (MPC) as de-fined in Appendix B, Table 11 of 10 CFR 20. For continuous releases, the alarm trip setpoints discussed in Section 2.1 will assure that these concentrations are not exceeded. For batch releases, concentrations of radioactivity in effluents prior to  ! dilution will be determined, providing protection in addition to the alarm trip setpoint discussed in Section 2.1. Concentration in diluted effluents will be calculated using these results. 2.2.1 Continuous Releases i Continuous liquid releases can occur from PNGP through steam generator blow-  ! down. The alarm trip set points discussed in Section 2.1 will assure that releases from this pathway will not exceed 5% of MPC from either unit. Other minor releases of a continuous nature have occurred at PNGP through the , turbine building sump system. These releases were minor and are not expected to occur in the future. However, a continuous composite sampler will be maintained I at the discharge from the turbine building sump with samples being taken and i analyzed weekly. If these samples indicate detectable levels of radionuclides, the methodologies given in Section 2.2.2 will be applied to the turbine sump releases. The limit in Equation 2.2-2 will then be lowered to account for the contribution of the turbine building sump. 2.2.2 Batch Releases . l To further show compliance with 10 CFR 20, the radioactivity content of each batch release will be determined prior to release. The concentration of the various radionuclides in the batch release prior to dilution, is divided by the minimum dilution flow to obtain the concentration at the site boundary. This calculation is l shown in the following equation: ' C R Concg = 2.2-1) MDF O 2-7a Rev.I

where > Conc; = concentration of radionuclide i at the site boundary, l , pCi/ml; C; = concentration of radionuclide i in the potential batch release,  ; pCi/ml; R = release rate of the batch, gpm (= 100 gpm); MDF = minimum dilution flow, gpm (= 67,300 gpm). The projected concentration at the site boundary is compared to the MPCs in l Appendix B, Table II of 10 CFR 20 which are given in Table 2.1-1. Before a release l l may occur, Equation 2.2-2 must be met for all isotopes. t 5 Conc. ,

                                           $         0.9                     (2.2-2)

MP MPC; = Maximum permissible concentration of radionuclide i from Appendix B, Table , 11 of 10 CFR 20, pCi/ml  ! i The summation has been reduced from 1.0 to 0.9 to account for simultaneous continuous releases from steam generator blowdown as given in Section 2.1.1.5. '! 1 l l ~2-8 Rev.1- -l l

L i l

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2.3 Liquid Effluent Doses - Compliance with 10 CFR 50 Doses resulting from liquid effluents will be calculated monthly to show compliance with 10 CFR 50. A cumulative summation of total body and organ doses for each [ calendar quarter and calendar year will be maintained as well as projected doses  ! fer the next month. i The limits of 10 CFR 50 are on a per reactor unit basis. The liquid radwaste.  : system at PNGP is shared by both reactor units making it impossible to separate l the releases of the two units. The releases that can be separated by unit, steam '! generator blowdown and turbine building sump releases, contribute a very small { portion of the total liquid releases from PNGP. Therefore, for compliance with 10  ; CFR 50 the releases from both units will be summed and the limits of Appendix ! r will be doubled. - , 2.3.1 Determination of Liquid Effluent Dilution  ! To determine doses from liquid effluents the near field average dilution factor for l t the period of release must be calculated. This dilution factor must be calculated i j for each batch release and each continuous release mode. The dilution factor is e determined by:  ! Rk F

  • k X ADF k
  • f where f

R = release rate of the batch or continuous releases during k the period, k, gal;  ; i i ADF k = actual dilution flow during the time period of release k, gal. 1 . l !O ' 2-9

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2

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The value of X is th'e site specific factor for the mixing effect of the PNGP dis-charge structure. This value is 10 for PNGP while operating in the closed cycle cooling mode. Although not expected to occur, if radioactive material is discharged while operating in the once-through mode, this value is reduced to 1.0. The product of X and ADF will be limited to 4.5 x 10' gpm (1000 cis). k , 2.3.2 Dose Calculations The dose contribution from the release of liquid effluents will be calculated monthly. The dose contribution will be calculated using the following equation: Dr 11 A ir *k C ik F k (2.k2) l ki l where: Dr = the dose commitment to the total body or any organ r , from the liquid effluents for the  : period of release, mrem; i C = the average concentration of rad:anuclide,1, in ik undiluted liquid effluent for liquid release k, pCi/ml; A = the site related ingestion dose commitment factor ir to the total body or any organ r for each identified l , principal gamma and be't a emitter, mrem /hr per pCi/ml,  ; 1 F the near field average dilution factor for C ik during j = k liquid effluent release k, i t k

                       =    the duration of release k, hours.                                                                                    l I

l 2 Rev.I

4 The dose factor A ir was calculated for an adult for each isotope using the fol-lowing equation: A = 1.14x10' 21BF DF;, (2.3-3) ir 3 where 6 1.14x105 = 10 pCi x 10 m_Il x 3 1 yr , pCi 1 8760 hr '  ; 21 = adult fish consumption, Kg/yr; . BF - bioaccumulation factor for radionuclide i in fish from Table A-1 of Regulatory Guide 1.109 Rev.l(5) pCi/Kg per pCi/1; i DF = dose conversion factor for radionuclide i for adults for ir a particular organ r from Table E-Il of Regulatory l Guide 1.109 Rev.1, mrem /pCi. . A table of A ir values for an adult at the PNGP are presented in Table 2.3-1. Mississippi River water is not used as a potable water supply within 300 miles downstream of the PNGP. 2.3.3 Cumulation of Doses Doses calculated monthly will be summed for comparison with quarterly and annual limits. The monthly results should be added to the doses cumulated from the other months in the quarter of interest and in the year of interest for the combined releases of both reactor units. The following relationships should hold: For the quarter, Dr < 3.0 mrem total body (2.3-4) O D. r < 10 mrem any organ (2.3-5)

                                              ~2-11                                Rev.1-

f For the calendar year, , Dr < 6.0 mrem total body (2.3-6) D, < 20 mrem any organ (2.3-7) The quarterly limits given above represent one half of the annual design objective. If these quarterly or annual limits are exceeded, a special report should be sub-mitted to the USNRC identifying the cause and corrective action to be taken. If twice the quarterly or annual limits are exceeded, a special report shall .be submitted showing compliance with 40 CFR 190. 2.3.4 Projection of Doses , Anticipated doses resulting from the release of liquid effluents will be projected monthly. If the sum of the accumulated doses to date for the quarter and the projected doses for the remainder of the quarter exceed 6 percent of Equation 2.3- l 6 or 2.3-7, additional liquid radwaste treatment will be provided. The projected doses will be calculated using Equation 2.3-2. The dilution factor, F k, will be , calculated by replacing the term ADF9 in Equation 2.3-1 with the term MDF from , Equation 2.2-1. The total source term utilized for the most recent dose calculation  ; should be used for the projections unless information exists indicating that actual releases could differ significantly in the next month. In this case, the source term should be adjusted to reflect this information and the justification for the adjustment noted. , 1 1

                                                                                                                         -1 l

l l l l l O 2-12 Rev.1 l l l l

REFERENCES I (1) " Prairie Island Final Environmental Statement," USAEC, May,1973, p. V-26. l (2) "NSP - Prairie Island Nuclear Generating Plant, Appendix 1 Analysis - ' Supplement No.1 - Docket No. 50-282 and 50-306," Table 2.1-1. I (3) "10CFR20," Appendix B, Table 11, Column 2. (4) "NSP - Prairie Island Nuclear Generating Plant, Appendix I Analysis - Supplement No.1 - Docket 50-282 and 50-306," July 21,1976, Table 2.1-2. (5) U. S. Nuclear Regulatory Commission, " Regulatory Guide 1.109 - { Calculation of Annual Doses to Man from Routine Releases of Reactor  ; Effluents for the Purpose of Compliance with 10CFR50, Appendix 1," Rev.1, ' 1977.  ! f , i I l i a t

                                                                                       ?

i i i i i l l i I O 2->> Re 1-  ! l' i l l i

TABLE 2.3-l Au VALUES FOR THE ' PRAIRIE ISLAND NUCLEAR OENERATINO PLANT O BnNE LIVER (MREM /HR PER gGI/ML) T.800( THYRIDO KIDNEY LUNG OI-LLI NUCLIOE 2.26E-01 -2.26E-01 2.26E-01 lH 3 0. 00 E-01 2.26 E-01 2.26 E-01 2.26E-01 i 6C 14 3.13E 04 6.26E 03 6.26E 03 6.265 03 6.26E 03 6.26E 03 6.26E 03 l ! IINA 24 4.07E 02 4.07E 02 4.07E 02 4.07E 02 4.07E 02 4.07E 02 4.07E'02  :

15P 32 4.62E 07 2.87E 06 1.79E 06 0.00E-01 0. 00 E-01 0.00E-01 5.19E 06 4 24CR 51 0.00E-01 0.00E-01 1.27 E 00 7.61E-01 2.81E-01 1. 69 E 00 3.20E 02 i 25MN 54 0.00E-01 4.38E 03 8.35E 02 0.00E-01 1.30E 03 0.00E-01 1.34E 04 1 25MJ 56 0. 00 E-01 1.10E 02 1.95E 01 0. 00 E-01 1.40E 02 0.00E-01 3.51E 03

! 26FE 55 6.58E 02 4.55E 02 1.06E 02 0.00E-01 0.00E-01 2.54E 02 2.'61E 02  ; 26FE 59 1.0.4E 03 2.44E 03 9.36E 02 0.00E-01 0.00E-01 6.825 02 8.14E 03 27C0 58 0. 00 E-01 8.92E 01 2.00E 02 0.00E-01 0.00E-01 0.00E-01 1.81E 03 t 27CO 60 0.00E-01 2.56E 02 5.65E 02 0.00E-01 0. 00E-01 0.00E-01 4.81E 03 j 28MI 63 3.IIE 04 2.16E 03 1.04E 03 0.00E-01 0. 00 E-01 0.00E-Ol' 4.50E 02  ! i 28NI 65 1.26E 02 1.64E 01 7.49E 00 0.00E-01 0.00E-01 0.00E-01 4.17E 02 i 20C0 64 0.00E-01 0.97E 00 4.68E 00 -0.00E-01 2.51E 01 0.00E-01 8.50E 02 r 30ZN 65 2.32E 04 7.37E 04 3.33E 04 0.00E-01 4.93E 04 0.00E-01 4.64: 04'  ; 30ZN 69 4./3E 01 9.43E 01 6.56E 00 0.00E-01 6.13E 01 0.00E-01 1.42E 01  ! 35BR 83 0. 00 E-01 0.00 E-O I 4.04E 01 0.00E-01 0.00E-01 0.00E-01 5.82E 01 t

35BN 84 0.COE-01 0.00E-Oi 5.24E 01 0.005-01 0.00E-01 0.00E-01 4.llE-04 ,

35BR 85 0.00E-01 0.00E-01 2.15E 00 0. 00 E-01 0.00 E-01 0.00 E-01 1.0lE-15'  ! 37R8 86 0.00E-01 1.0IE 05 '4.IIE 94 0.00E-01 0.00E-01 0.00E-01 1.<>9E 04 ' 37HS 88 0.00E-01 2.90E 02 I.54E 4 0.00 E-01 0.00,E-01 0. 00 E-01 4.00E-09 l 37R3 89 0.00E-01 1.92E 02 1.35E G7. 0.00E-01 0.00E-01 0.00E-01 1.12 E-I l i 385R 89 2.2iE 04 0.00E-01 6.35E C2 0.00E-01 0.00E-01 0.00E-01 3.55E 03 l 038SR90 5.44E 05 0.00E-01 1.34E 05 0.00E-01 0.00E-01 0.00E-01 1.57E 04 j' 385R 91 4.07E 02 0.00 E-O l I .64E 01 0.00 E-01 0.00 E-01 0.00E-01 1.94E 03 ' , 38SR 92 1.54E 02 0.00E-01 6.68E 00 0. 00E-01 0.00E-01 0.00E-01 3.06E 03 ' 39Y 90 5. 76 E-01 0.00E-01 1.54E-02 0.00E-01 0.00E-01 0.00E-01 6.10E 03 ! 39Y 91M 5.44E-03 0.00E-01 2.llE-04 0.00E-01 O.00E-01 0.00E-01 1.60E-02 '! 8.44E 00 0.00E-01 2.26E-01 0.00E-01 0.00E-Ol 4.64E:03 39Y 91 ') . 00 E-01 39Y 92 5.06E-02 0.00E-01 1.48E-03 0.00E-01 0.00E-01 0.00E 8.86E 02 ! 39Y 93 1.60E-01 0.00E-01 4.43E-03 ~ 0.00E-01 0.00 E-01 0.00E-01 5.09E 03 j 40ZR 95 2.40E-01 7.70E-02 5 2iE-02 0.00E-01 1.21E-01 0.005-01 2. 44E 02 : 40ZR 97 1.33E-02 2.68E-03 1.22E-03 0.00E-01 4.04E-03 0.00E-01 8.30E 02  ! 41NB 95 4.47E 02 2.48E 02 1.34E 02 0.00E-O' 2.46E 02 0.00E-01 1.51E 06-  ! ', 4240 >> 0.00E-OI 1.03E 02 1.96E 01 0.00E-0. 2.34E 02 0.00E-01 2.39E 02  ! ! 43TC 19M 8.87E-03 2.51E-02 3.19E-01 0.00E-01 3.81E-01 1.23E-02 1.48E 01  ! 43TC101 9.12E-03 1.3lE-02 1.29E-01 0.00E-01 2.37 E-01 6.72E-03 3. 95 E-14 '! 44RU103 4.43E 00 0.00E-01 1.9tE 00 0.00E-01 1.69E 01 0.00E-01 5.17E 02 ! ' ! 44Rul05 3.69E-01 0.00E-01 1.46E-01 0.00E-01 4.76E 00 0.00E-01 2.26E 02. 44RUIO6 6.58E 01 0.00E-01 8.33E 00 0.00E-01 1.27E 02 0.00E-01 4.26E 03' - ' 47AGilO4 8. 81 E-0.1 8.15E 4.84E-01 0.00E-01 1.60E 00 0.00E-01 3.33E~02

       $2TE125M          2.57E 03       9.30E 02 3.44E 02 7.72E 02                 1.04E 04         0.00E-01            1.02E 04 52TEl274         6.48E 03        2.32E 03 7.90E 02 1.66E 03                 2.63E 04 0. 00 E-01                 2.17E 04     i 52TE127            1.05E 02      3.78E-01 2.28E 01 7.80E 01                 4.29E 02 0.00E-01                   8.31E 03     i 52TEl294           1.10E 04      4. LI E 03 L.74E 03 3.78E 03               4.60E 04 0.00E-01                   5.54E 04
  • 52TE129 3.01E 01- 1.13E 01 7.33E 00 2.31E 01 1.26E 02 0.00E-01 2.27E 01 i 52TE131M 1.66E 03 8.10E 02: 6.75E 02 1.28E 03 8.2i E 03 0.005 8.04E 04 1 52TEl31 1.89E 01 7.88E 00 5.96E 00 1.55E 01 8.26E 01 0.00E-01 2.61E'00  !
       $2TEl32           2.41E 03        1.56E 03 l.47E 03 1.72E 03                1.50E 04 0.00E-01                    7.38E 04 53I 130           2.71E 01       8.0IE 01 3.16E 01 6.79E 03                  1.25E 02 0.00E-01                  6.89E 01     i 053I131               1.49E 02      2.14E 02 1.225 02 ' 7.00E 04               3. 66 E 02 ~ H0.00 E-01             5.64E 01 2 -14                                                                     !

! .. .. _, _ _ _ _ .2

l

3.0 GASEOUS EFFLUENTS 3.1 Monitor Alarm Setpoint Determination- f This procedure determines the moni. tor alarm setpoint that indi-cates if the dose rate at or beyond the site boundary due to noble

! gas radionuclides in the gaseous effluent released from the site , exceeds 500 mrem / year to the whole body or exceeds 3000 mrem / year to the skin. , i Monitor alarm setpoints will be calculated for the monitors listed

in Table 3.1-1 once per month. If more.than one source applies- .

to a single release point, calculate the setpoint for each source' l and use the lowest setpoint obtained. These calculations will  ;

be based on the noble gas isotopes in releases made during.the  ;

previous month. In addition, prior to each containment purge j the associated monitors setpoints will be recalculated based on j

the sample taken prior to purging. If no detectable noble gas  !

activity is found in the purge sample, Table 3.1-2 values may i be used. If any calculated setpoint is less than the existing l monitor setpoint, the setpoint will be reduced to the new value. If the calculated setpoint is greater than the existing monitor I setpoint, the setpoint may remain at the lower value or increased-to the new value. During purging, the associated monitor alarm j setpoint may not be increased above the setpoint determined for continuous releases. , 3.1.1 Effluent Monitors  ; I The following method applies when determining the isol'ation or -' high alarm'setpoint for'the monitors _ listed in Table 3.1-1. - ! l i () l 3-1 Rev. 1 l l

e i i Determine the " mix" (noble gas radionuclides and compo- l () 3.1.1.1 sition) of the gaseous effluent.

a. Determine the gaseous source terms that are representa-tive of the gaseous effluent. Gaseous source terms are the total curies of each noble gas ;eleased durin'g the l

previous month or a representative analysis of the gas-eous effluent. Table 3.1-2 eaurce terms may be used if  ! I the releases for the previous month were below the lower limits of detection (LLD).

b. Determine Si (the fraction of the total radioactivity in the gaseous effluent comprised by noble gas radionu- l clide "i') for each individual noble gas radionuclide j in the gaseous effluent.  ;

t 1 l Si=}A4{Ai (3.1-1) () i  ! Ai = The radioactivity of noble gas radionuclide "i" in the gaseous effluent from Table 3.1-2. 3.1.1.2 Determine Qt (the maximum acceptable total release rate l of all noble gas radionuclides in the gaseous effluent (pci/sec)) q based upon the whole body exposure limit. l 500  : t" (X/Q)} KSII (3.1-2) i  ; (X/Q) = The highest, calculated annual average relative l concentration of effluents released via the plant vents for any area at or beyond the site boundary  ! for all sectors (sec/m )3 from the "X/Q" column . ( in Table 3.1-1. 3-2 Rev. 1

Ki = The total whole body dose factor due to gamma j emissions from noble gas radionuclide "i" (mrem / year /pci/m3 ) from Table 3.1-3. j 3.1.1.3 Determine Qt based upon the skin exposure limit. 3000 Qt * (X/Q) [ (Li + 1.1 M ) Si i (3.1-3) , i Li + 1.1 Mi = The total skin dose factor due to emissions from noble gas radionuclide "i" (mrem / year / i pCi/m 3 ) from Table 3.1-3. 3.1.1.4 Determine Ct (the maximum acceptable total radioactivity concentration of all noble gas radionuclides in the gaseous efflu-  ! ent (pci/cc)).

                   .1      3 Qt                                    (3.1-4 )

Ct* t NOTE: Use the lower of the Qt values obtained in Sec-tions 3.1.1.2 and 3.1.1.3. F = The maximum effluent flow rate at the point of release (cfm) from the " Effluent Flow Rate" column in Table 3.1-1.

                              ~

2.12 E-3 = Unit conversion constant to convert pCi/sec/ cfm to PCi/cc. l l 3.1.1.5 Determine C.R. (the calculated monitor _ count rate above l background attributed to.the noble gas radionuclides (nepm)). j C.R. is obtained by using the applicable Effluent Monitor Effic-iency Curve located in the Radiation Monitor Calibration file. 3-3 Rev. 1

i ( C.R. is the count rate point that corresponds to_the total radio-activity concentration (C t)*

                                                                     ,         j 3.1.1.6  Determine HSP (the monitor high alarm setpoint above          '

background (nepm) ) . f HSP = Tm C.R. (3.1-5) i Tm = Fraction of the total radioactivity from the site that may be released via each release point to en-sure that the site boundary limit is not exceeded due to simultaneous releases from several release points > from the " Release Fraction" column in Table 3.1-1. 3.1.1.7 The isolation or high alarm setpoints above background (ncpm) for the monitors should be set at or below the HSP values. s. b F I r t 3-4 Rev. 1

N l TABLE 3.1-1 MONITOR ALARM SETPOINT DETERMINATION FOR PNCP SOURCE SOURCE EFFLUENT RELEASE RELEASE OF TERMS (A1) 3 FIDd RATE FRACTION

                                                 'HONITOR.            POINT                         RE1 EASE                    (TABLE 3.1-2)                  X/Q(sec/m )                  (F) (cfe)          (Tm) 1R-30
                                                   . a nd -          Aux. Bldg.                  Aux. Bldg. -

IR-37 Vent - Unit 1 Unit 1 Exhaust Aux. Bld R. 3.38E-5 2.9E+4 0.2 2R-30 Aux. Bldg. Aux. Ridg. - Vent - Unit 2 Unit 2 Exhaust Aux. Bldg. 3.38E-5 4.lE+4 0.2 and 2R-37 Cas Decay Tanks -Xe-133 (100%) 1.32E-4 4.lE+4 1R-12 Shield Bldg. Cont. - Units 162 Shield Ridg. 1.32E-4 3.2E+4 0.3 and . Vent - Unit 1 Purge, Unit I (Note 2) 1R-22' Inrervice Purge - 2R-12 Shield Bldg. Cont. - Unit 2 Shield Ridg. 1.32E-4 4.6E+3 0.3 and Vent - Unit 2 Inservice Purge

                                                  '2R-22 g                                    R-35            Radwaste                 Radwaste Ridg.                      Aux. Bldg.                      3.38E-5           ,

6.lE+3 0.1

g. . , _

Bldg. Vent Exhaust

         - W:                                       1R-15'         Air Ejector              Air Ejector                         Air Ejector                     3.38E-5                     1.5E+1                          0.05 Vent - Unit 1                    Unit 1 2R-15           Air Ejector.             Air Ejector                         Air Ejector                     3.38E-5                     1.5E+1                          0.05 vent - Unit 2                   Unit 2 R-25            Spent Fuel               Spent Fuel Pool                     Aux. Bldg.                      3.38E-5                     1.8E+4                          0.1
                                                  'and             ' Pool                   Air Exhaust R-31            Air Vent NOTES:

1... Values listed for To are nominal values only. They may be adjusted as necessary to allow a reasonable margin to the monitor setpoint. Duplicate values of Tu are assigned to both Shield Building vents since only one

                                                         -containment will be purged at any one time. The assigned Te values of all active release points shall not be greater than unity.
2. ' When purging the Unit I containment via the inservice purge system, the monitor setpoints may betbased on 4.6E+3 cfm for the duration of the release. .
                                               ~

30 w

          '4-                                                           ,

W r


:-----------------u____---___-um-ah____- - - - - - - " - ---.m--my-.- ------iee~ w-- w.- w-a -g e -- ^'wg.

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

i o  ; TABLE 3.1-2 CASEOUS SOURCE TERMS , AUX. BLDG. SHIELD BLDC. AIR EJECTOR RADIONUCLIDE (A1 ) (Ci/Yr) (Ag) (Ci/Yr) (Ag) (Ci/Yr) Kr-85m 3E0 - 2E0 Kr-85 2EO. 2.2E1 - Kr-87 1E0 - - l Kr-88 SEO 1EO 3E0 Xe-131m 2E0 2.1El IE0 Xe-133m SEO 2E1 3E0 Xe-133 3.7E2 2.7E3 2.3E2- l Xe-135 8E0 6E0 SEO 4 Xe-138 IE0 - - Total 3.97E2 2.77E3 2.44E2

              "- " indicates that the release is less than 1 Ci/yr.

4 O  ! i l e i i , O 3-6 Rev.l1-l j.,

TABLE 3.1-3 i -l DOSE FACTORS AND CONSTANTS  : , l i SKIN l TOTAL WHOLE BODY DOSE FACTOR DOSE FAC10R 3 (L1 + 1+1MI ) 3  ! RADIONUCLIDE (Kg) (arem/yr/pCi/m ) (arem/yr/pCi/m )  ! j Kr-8 a 7.56E-2 2.12El

!         Kr-85m                            1.17E3                               2.81E3 j          Kr-85                             1.61El                               1.36E3

! Kr-87 5.92E3 1.65E4 Kr-88 1.47E4 1.91E4  ! i Kr-89 1.66E4 2.91E4 i Kr-90 1.56E4 2.52E4 i

Xe-131m 9.15El 6.48E2 l
 ;        Xe-133e                           2.51E2                               1.35E3
  • I Xe-133 2.94E2 6.94E2

. Xe-135m 3.12E3 4.41E3 4 Xe-135 1.81E3 3.97E3  ! Xe-137 1.42E3 1.39E4  ! Xe-138 O Ar-41 8.83E3 8.84E3 1.43E4 1.29E4 i l P i h 1  ! f 4 l I

                                  +

3-7 Rev. 1

   .                                                                                            +
       .~  . _ _ , -          .                                          . .               .i ,

f l 3.2 Gaseous Effluent Dose Rate - Compliance with 10 CFR 20 l Dose rates resulting from the release of noble gases, and and radioiodines and  ; particulates must be calculated to show comp!!ance with 10 CFR 20. The limits of f

i. 10 CFR 20 must be met on an instantaneous basis at the hypothe:tical worst case i 3

! location, and apply on a per site oasis. , r

                                                                                      ~

t 3.2.1 Noble Gases , i The dose rate at the site boundary resulting from noble gas effluents is limited by l 10 CFR 20 to 500 mrem /yr to the total body and 3000 mrem /yr to the skin. The set i point determinations discussed in the previous section are based on the dose - calculational method presented in NUREG-0133.(2) They represent a backward { solution to the limiting dose equations in NUREG-0133. Setting alarm set trip l

                                                                                                ~

points in this manner will assure that the limits of 10 CFR 20 are met for noble gas releases. Therefore, no routine dose calculations for noble gases will be needed to , show compliance with this part. Routine calcula+ ions will be made for doses from '

noble gas releases to show compliance with 10 CFR 50, Appendix I as discussed in ,
Section 3.3.1. l t

3.2.2 Radiciodine, Radioactive Particulates, and Other Radionuclides j The dose rate at the site boundary resulting from the release of radioiodines and particulates with half lives greater than 8 days is limited by 10 CFR 20 to 1500 I mrem /yr to any organ. Calculations showing compliance with this dose rate limit t will be performed for batch releases prior to the release and weekly for all re-leases. The calculations will be based on the results of sample analyses obtained 1 pursuant to the PNGP Technical Specifications. The following general equation is [ used to show compliance with 10 CFR 20: j y, y, P;; W y ky < 1500 mrem /yr (3.2-1) 3 1 1. i i O-

                                                 '3-7a                        Rev.1

where O P;;

                           = infant critical organ dose parameter for radioiodines and particulates with half lives greater than 8 days, for radionuclide i and pathway j (if pathway j exists        ;

at the point of interest)-  :

                           = mrem /yr per pCi/m3 for inhalation pathways; 1

2

                           = m mrem /yr per pCl/sec for food and ground                   ,

plane pathways; l h;y = the total release rate of radionuclide i in gaseous effluent from all vent releases, pCi/sec; r Wy = the calculated annual average dispersion parameter for estimating the dose to an individual at the con-trolling location due to all vent releases: W y = sec/m3for the inhalation pathway and for tritium in the food pathway; Wy -2

                                   = meters     for the food and ground plane pathways; Radioiedines and particulates will be released from up to 9 individual vents all wit'Jn 300 feet of each other. Fr.r showing compliance with 10 CFR 20, all re-Jeasi are considered long term. To show compliance, calculations will assume a.

hypothetical receptor- at the site boundary with the inhalation, ground plane - exposure and milk consumption pathways existing at this location. Equation 3.2.2 will be used to show compliance with 10 CFR 20 for all radiciodine and particulate releases. O 38 Rev.I

   %i _._ m.                                                  -. _

1 Pg ( X/Qy ) q + IP g (D/Q)y Qg +  : [ I - v. i G _ v. P i (D/Q)y ky < 1500 mrem /yr (3.2-2) where i Pg ,

                                            =        infant critical organ dose parameter for radionuclide                        ;

I i for the inhalation pathway, mrem /yr per pCl/m ; P; = infant critical organ dose parameter for radionuclide i for the ground plane pathway, m mrem /yr per pCi/sec I 1 P; = infant critical organ dose parameter for radionuclide i for either the cow milk or goat milk pathway, m2 , mrem /yr per pCi/sec; (X4)y = annual average relative concentration for long-term release at the critical location, sec/m (Appendix 2 A, Table A-4);  ! (D/Q)y = annual average relative deposition for long-term re-lease at the critical location,1/m2 (Appendix A, Table

  • A-5);
                               .                                                                                                 l Q iy         =

the total release rate of radionuclide i from all vents from both units for the batch or week of interest, pCi/sec, The values of P are given in Table 3.2-1. For the food pathway (milk) the Pg value 3 for tritium is in terms of mrem /yr per pCi/m . Therefore, the dispersion factor in the milk portion of equation 3.2.2 will be X/Q for tritium. Dispersion parameters ' ( X/Q, D/Q) have been calculated using the USNRC computer code "XOQDOQ" and i are given in Appendix A. Calculations based on Equation 3.2.2 will be made once O  : 3-9

l per week. The source' terms (ky ) will be determined from the results of analysis of weekly continuous vent particulate filters and charcoal canisters and vent flow rate. These source terms include all gaseous releases from PNGP. Short-term batch releases will occur as a result of containment purging and gas decay tank releases. Calculations will be made for these releases separately to further assure compliance with 10 CFR 20 prior to release. These calculations will be used only to determine whether or not the purge release will be allowed to occur. Source terms will be determined from the results of isotopic analyses of samples from containment and gas decay tanks prior to release. Equation 3.2.2 will be used in conjunction with the following relationship to demonstrate that the batch release does not exceed the dose rate limit. BL = 1500 - D y + Dp (3.2-3) , where O V BL = limiting dose rate for the batch, mrem /yr; I Dy = previous week's doses from all vent releases, mrem /yr; Dp = previous week's doses from all purge and decay tank releases mrem /yr. 3.2.3 Critical Receptor Identification The atmospheric dispersion parameters given in Appendix A will be used to identify the critical receptor. Compliance with Part 20 will always be shown at the site boundary location with the highest D/Q. As discussed previously, weekly and batch dose calculations will be performed at this location. The critical site boundary location, based upon long term ground level releases D/Q (Table A-3), is 0.36 miles in the WNW sector. O w 3-10 Rev.I

i TABLE 3.2-1 ' P VALUES FOR AN INFANT FOR THE PNGP 3 , Isotope Inhalation Ground Plane Cow Milk Goat Milk  ! H-3 6.47(2) 0 2.38(3) 4.86(3) P-32 2.03(6) 0 1.60(11) 1.93(11) Cr-51 3.57(2) 6.67(6) 4.79(6)- 5.65(5) Mn-54 2.53(4) 1.09(9) 3.89(7) 4.68(6) Fe-59 2.35(4) 3.92(8) 3.93(8) 5.11(6) Co-58 1.11(4) 5.29(8) 6.06(7) 7.28(6) Co-60 3.19(4) 4.40(9) 2.10(8) 2.52(7) Zn-65 6.25(4) 6.89(8) 1.90(10) 2.29(9) Rb-86 1.90(3) 1.28(7) 2.22(10) 2.67(9) Sr-89 3.97(5) 3.16(4) 1.27(10) 2.66(10) Sr-90 4.09(7) - 1.21(11) 2.55(11) Y-91 7.00(4) 1.52(6) 5.26(6) 6.32(3) Zr-95 2.17(4) 3.48(8) 8.28(5) 9.95(4)  ! Nb-95 1.30(4) 1.95(8) 2.06(8) 2.48(7) Ru-103 1.60(4) 1.55(8) 1.05(5) 1.27(4) Ru-106 1.60(5) 2.99(8) 1.44(6) 1.73(5) Ag-110m 3.30(4) 3.14(9) 1.46(10) 1.75(9) Te- 127m 3.80(4) 1.18(5) 1.04(9) 1.24(8)  : Te-129m 3.20(4) 2.86(7) 1.40(9) 1.68(8)  ; Cs-134 7.02(5) 2.81(9) 6.79(10) 2.04(11) Cs-136 1.35(3) 2.13(8) 5.76(9) 1.73(10) Cs-137 6.12(5) 1.15(9) 6.02(10) 1.81(11) < Ba-140 5.59(4) 2.94(7) 2.41(8) 2.89(7) Ce-141 2.15(4) 1.98(7) 1.37(7) 1.65(6) Ce-144 1.50(5) 5.84(7) 1.33(8) l-131 1.60(7) l 1.48(7) 2.46(7) 1.06(12) 1.27(12) l l-133 3.56(6) 3.54(6) 9.80(9) 1.18(10) l l { Units of P3are described in Section 3.2.2 l l LO 3-11 Rev. I l

i O 3.3 Gaseous Effluents - Compliance with 10 CFR 50 l Doses resulting from the release of noble gases, and radiciodines and particulates  ; must be calculated to show compliance with Appendix I of 10 CFR 50. The cal-culations will be performed monthly for all gaseous effluents. t The limits of 10 CFR .50 are on a per reactor unit basis. The gaseous radwaste treatment system and the auxiliary building at PNGP is shared by both reactor units making it impossible to separate the releases of the two units. The releases that can be separated by unit contribute a very small portion of the . total gaseous releases from PNGP. Therefore, for compliance with 10 CFR 50 the releases from both units will be summed and the limits of Appendix I will be doubled. 3.3.1 Noble Gas 3.3.1.1 Dose Equations O The air dose at the critical receptor due to noble gases released in gaseous ef-fluents is determined by Equations 3.3-1 and 3.3-2. The critical receptor will be identified as described in Section 3.3.4. For gamma radiation: i 3.17 x 10~8 M; (X/Q), Q;y + ( X/q)yqiy

                          < 10 mrad for any calendar quarter
                          < 20 mrad for any ca19ndar year                 (3.3-1)

For beta radiation:

                       -                             -                                         1 3.17 x 10-8           ( X/Q)yQ     +

N; y ( X/q)yq ;y l < 20 mrad for any calendar quarter l

                             < 40 mrad for any calendar year             (3.3-2)               j 3-12                                            l a

l where: 1 I M; = The air dose factor due to gamma emission for each identified noble gas radionuclide 1, mrad /yr per pCi /m3; Ng = the air dose factor due to beta emissions for each iden-  ! tified noble gas radionuclide i, mrad /yr per pCi/m ; ( X/Q)y = the annual average relative concentration for areas  ; at or beyond the restricted area boundary for long-3 term vent releases (greater than 500 hr/ year), sec/m  ! (Appendix A, Table A-4);  ! lX/a)y = the relative concentration for areas at or beyond the restricted area boundary for short-term vent releases (equal to or less than 500 hrs / year), sec/m3 (Appendix A, Table A-7);  ; q;y = the total release of noble gas radionuclide i in gaseous effluents for short-term vent releases from both units (equal to or less than 500 hrs / year), pCl;  ! Q;y = the total release of noble gas radionuclide i in gaseous effluents for long-term vent releases from both units . (greater than 500 hrs /yr), pCi; 3.17 x 10-8 = the inverse of the number of seconds in a year. Noble gases will be released from PNGP from up to nine vents. Long-term X/Q's were given in Appendix A. Short-term X/q's were calculated I using the USNRC computer code "XOQDOQ" assuming 100 hours per year short term releases and are given in Appendix A (Table A-7). Values of M and N were calculated using the methodology presented in NUREG-0133 and are given in Table 3.3-1. O . 3-13 l (' - - -

3.3.1.2 Cumulation of Doses Doses calculated monthly will be summed for comparison with quarterly and annual limits. The monthly results will be added to the doses cumulated from the other months in the quarter of interest and in the year of interest and compared to the limits given in Equations 3.3-1 and 3.3-2. If these limits are exceeded, a special report will be submitted to the USNRC in accordance with the PNGP Technical  : Specifications. If ,twice the limits are exceeded, a special report showing  ; compliance with 40 CFR 190 will be submitted. " 3.3.2 Radioiodine, Radioactive Particulates and Other Radionuclides 3.3.2.1 Dose Equations The dose to an individual from radiciodines, radioactive particulates and radio- ' nuclides other than noble gases with half-lives greater than 8 days in gaseous , effluents released to unrestricted areas is determined by the following expressions: During any calendar quarter or year- r

                              -                -                                            i 8

3.17 x 10 I, I, R j 1 ijak v91v + *v 91v

                             < 15 mrem (per quarter)
                             < 30 mrem (per calendar year)

(3.3-3) where: Q;y = release of radionuclide i for long-term vent releases , from both units (greater than 500 hrs /yr), pCi; L q;y = release of radionuclide i for short-term vent releases from both units (equal to or less than 500 hrs /yr); pCi; O V 3-14

1 i I Wy = the dispersion parameter for estimating the dose to j f , an individual at the controlling location for long-term vent releases (greater than 500 hrs /yr); l . wy = the dispersion parameter for estimating the dose to ' an individual at the controlling location for short-term l vent releases (equal to or less than 500 hrs /yr); f 3.17 x 10-8 = the inverse of the number of seconds in a year; i l R ijak

                                        =   the dose factor for each identified radionuclide 1, 2

pathway j, age group a, and organ k, m mrem /yr per  ; pCl/sec or mrem /yr per pCi/m3 . l The above equation will be applied to each combination of age group and organ. 5 l For all monthly dose calculations, a value of q;y for C-14 of 6.7x10 will be assumed in lieu of analyses for this isotope. Values of R ijak have been calculated j using the methodology given in NUREG-0133 and are given in Tables 3.3-2 through 3.3-20. The equation will be applied to a controlling location which will have one or more of the following: residence, vegetable garden, meat animal, and milk animal. The selection of the actual receptor is discussed in Section 3.3.4.. The j source terms and dispersion parameters in Equation 3.3-3 are obtained in the same ' manner as in Section 3.2. The W values are in terms of ' X/Q (sec/m3 ) for the  ! inhalation pathways and for tritium and are given in Tables A-4 and A-5. They are , 2 in terms of D/Q (1/m ) for all other pathways excluding tritium and are given in Tables A-7 and A-8. ' 3.3.2.2 Cumulation of Doses i 4 Doses calculated monthly will be summed for comparison with quarterly and annual limits. The monthly results should be added to the doses cumulated from the other - months in th' e quarter of interest and in the year of interest and compared with the limits in Equation 3.3-3. If these limits are exceeded, a special report will_be submitted in accordance with the PNGP Technical Specifications. If twice the. i limits are exceeded, a special report showing compliance with 40 CFR 190 will be sc' mitted.

    -G\ .

3-15 e t Rev.1 w ,~.. r* *

  • 3.3.3 Projection of Doses Doses resulting from the release of gaseous effluents will be projected monthly.

The doses calculated for the present month will be used as the projected doses unless information exists indicating that actual releases could differ significantly in the next month. In this case the source term should be adjusted to reflect this information and the justification for the adjustment noted. If the sum of the accumulated doses to date for the quarter and the projected doses for the remainder of the quarter exceed 6 percent of the annual limits in Equation 3.3-1 or l 3.3-2 the waste gas treatment system will be operated to reduce releases. 3.3.4 Critical Receptor Identification The critical receptors for compliance with 10 CFR 50, Appendix I will be iden-tified. For the noble gas specification the critical location will be based on the beta and gamma air doses only. This location will be the offsite location with the highest long term vent X/Q and will be selected using the X/Q values given li. l Appendix A, Table A-3. This location will remain the same unless meteorological data is reevaluated or the site boundary changes.  : The critical location for the radiciodine and particulate pathway will be selected once per year. This selection will follow the annual land use census performed  ! within 5 miles of the PNGP. Each of the following locations will be evaluated as potential critical receptors prior to implementation of the Effluent Technical Specifications: i

1. Residence in each sector
2. Vegetable garden producing leafy green vegetables
3. All identified milk animal locations Following the annual survey, doses will be calculated using Equation 3.3-3 for all new identified receptors and those receptors whose characteristics have changed significantly. The calculation will include appropriate information about each O

3-16 Rev.I

i i ! i i f j- receptor location. The dispersion parameters given in this manual should be j employed. The total releases reported for the previous calendar year should be j l used as the source terms. l l l l  ! Y

                                                                   .                                                                                               l l

h t i a

i i

i - _ r 4 I l i i l 1 i l s i d l l 1 .. 3-17 i i i {- I

                                                                               ._  . .              ~ .__..,._._____.   .             ._ _ , _ _ _        ..

I REFERENCES r (1) "NSP - Prairie Island Nuclear Generating Plant, Appendix I Analysis - Supplement No.1 - Docket No. 50-282 and 50-306", Table 2.1-4. I I i i O  ! i t i i 1 3-18 Rev. 1

O O O s l

  ~

TABLE 3.3-1 DOSE FACTORS FOR N0BLE GASES AND DAUGHTERS

  • Total Body Gamma Air Beta Air Dose Factor Skin Dose Factor Dose Factor Dose Factor K L M N Radionuclide (mrem /yrI per pC1/m3 ) (mrem /yrpkrpCi/m) 3 (mrad /yrI per pC1/m3 ) (mrad /yr per pC1/m3)

Kr-83m - 7. 56E- 02* * --- 1.93E+01 - 2.88E+02 Kr-85m 1.17E403 1.46E+03 1.23E*03 1.97E+03 Kr-85 1.61E401 1.34E+03 1.72E+0) 1.95E+03 Kr-87 5.92E+03 9.73E+03 6.17E+03 1.03E+04 Kr-88 1.47E+04 2.37E+03 1.52E+04 2.93E+03 w Kr-89 1.66E+04 1.01E+04 1.73E+04 1.06E+04 (; Kr-90 1.56E+04 7.29E+03 1.63E+04 7.83E+03 Xe-131m 9.15E+01 4.76E+02 1.56E+02 1.11E+03 Xe-133m 2.51E+02 9.94E+02 3.27E+02 1.48E+03 Xe-133 2.94E402 3.06E+02 3.53E+02 1.05E403 Xe-135m 3.12EiO3 7.llE+02 3.36E+03 7.39E+02 Xe-135 1.81E+03 1.86E+03 1.92E+03 2.46E403 Xe-137 1.42E+03 1.22E+04 1.51E+03 1.27E+04 Xe-138 8.83E403 4.13E403 9.21E+03 4.75E+03 Ar-41 8.84E+03 2.69E+03 9.30E+03 3.28E+03

        *The listed dose factors are for. radionuclides that may be detected in gaseous effluents. All others are 0.
,      **7.56E-02 = 7.56 x 10 2,
                     . + -                   --.        . - -                 - , . - , ,   -   ,        ,   . - - - , - -   , - , - - , . - ,         --   - - - - . - - _. -

TABLE 3.3-2 R VALUES FOR THE PRAIRIE ISLAND NUCLEAR GENER ATING PLANT

  • PATHvfAY = OROUND

, NUCLIDE T.80Dy O!-TRACT BONE LIVER KIDNEY TilYROID LUNG SKIN _ _ _ _ _ _ s ___ _ _ _ o _ . _ __ p _ _ _ _ _ __ o _ _ _ _ _ e _ _ _ _ _ ___ w _ __  % _ _ ___ o __ __ ___ + MN 54 I l.34E 09 I l.34E 09 s 1.34E 09 I l .34E 09 s 1.34E 09 I l.34E 09 s 1.34E 09 I,.57E 09 : ________ p_____ _ p ___ ___e_ _ __ e___ _____e_____ __ w ____ ___% _____ w _ __ ___ + FE 59 Le 2,75E 08 I 2,75E 08 s 2.75E 08 s 2.75E 08 ; 2.75E 08 s 2.75E 08 s 2.75E 08 s 3.23E 08 : _______ s_ ____w __ _o________+_ ____e________+_________s________w___ ___+ CO 58 I 3.79E 08 3 3.79E 08 s 3.79E 08 s 3.79E 08 s 3.79E 08 I 3.79E 08 s 3.79E 08 I 4.44E 08 _____ p_ _ _ _ p _ _ _ , __ p _ _ _ __ p _ __ _ _ _ p _ _ . _ p _ _ __._ _ o _ _ __ o _ _ __ _ + CO 60 s 2.15E 10 3 2.15E 10 s 2,15E 10 g 2.15E 10 1 2.15E 10 s 2.15E 10 1 2.15E 10 s 2.52E 10 :

                                          . ___.__._ e____ . _ p________ e_________ s _ __                                                               _ p_________ e _______ e ______ +__________+

SR 89 s 2.23E 04 1 2.23E 04 s 2.23E 04 s 2.23E 04 s 2,23E 04 s 2.23E 04 8 2.23E 04 s 2.58E 04 s _ _ _ t _ _ __ p __ _ _ __ w __ _ ___. p _ _ _ _ _ :._ o _ _ _ __ __ .p _____ _ s____ __ _+_ . __+ I 131 I l.72E 07 g i,72E 07 s 1,72E 07 I l 72E 07 s 1.72E 07 s 1.72E 07 s 1.72E 07 s 2.09E 07 I _ __ p __ . g __ __ p_ . . . o _ _ _ _ __ p _ __. __ s _ _____ s__. _ o_____.__+ I 133 s 2.47E 06 s 2,47E 06 s 2.47E 06 s 2.47E 06 s.2.47E 06 s 2.47E 06 s 2.47E 06 s 3.00E 06 s _ _ __ _ __ e _ _ _ __ _ e _ _ _ _ .,_ _ e_ _ _ _ __ w _ _ _ s ._ _ __ w __.____ +_ _ __ __w ____ + CSl34 s 6.82E 09 s 6.82E 09 s 4 82E 09 a 6.82E 09 s 6.82E 09 I 6.82E 09 s 6.82E 09 s 7.96E 09 : p____

                                                                            +__.t-----------h-------t--------+-----                                                                                       ------+----------h-----                                       +

hCSl37 s 1.03E 10 g 1.03E 10 s 1.03E lo : 1.03E 10 g 1.03E 10 s 1.03E 10 s 1.03E 10 s 1.20E 10 s ca. __ ___ ,___ __ _+_________+__________,____ __ + _______ +____ + ______+______ -+ 3

                                          *R 2VALUES IN UNITS OF MREN/YR PER pCI/M                                             FOR INHAI.ATiON AND TRITIUM, AND IN UNITS OF M -MilEM/YR PER pCI/SEC FOR ALL OTHERS 1

I 1 )

 - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _                                       __           _________-._____m_m               ._.._w
                                                                                                                                             ..-,._m _ _   ., _ _ ._.          .   .  .,,,_,,,,,,..,,_.-.-,-s                       , , , - , _ , . , , , , , .       . _ .   ,,x , . _ .

TABLE 3.3-3 R VALUES FOR THE PR AIRIE ISLAND NUCLEAR GENERATING PLANT

  • PATHWAY = VEGET AGE OROUP EQUALS ADULT-NUCLIDE T.80DY OI-TRACT SONE LIVER KIDNEY THYROID LUNO SKIN

________+_ _ . +____ _____+_____ _ _ + ___ ____+ ______ +_________+__________+_______ + H 3 s 2.28E 03 s 2.28E 03 1 0.00E-01 s 2.28E 03 s 2.28E 03 s 2.28E 03 s 2.28E 03 s 2.28E 03 s

              . ___                +___                           4_                  _

____+________+______#__________#_.____+________#_____ + C -14 8 1.8lE 05 s 1.8lE 05 s 9.04E 05 s 1.81E 05 s 1.8lE 05 s 1.81E 05 s 1.81E 05 s 1.8lE 05 s __ +____ t_____ ___+ _ ____ +_ _____+_ _____+__ ___ __+ __ ______+__ ___ ___+ MN 54 6 5,83E 07 I 9,36E 08 s 0.00E-01 s 3.05E 08 s 9.09E 07 s 0.00E-01 s 0.00E-01 0.00E-01 s _ _ _ _ + _ _ __g_+_____+___ ~

                                                                                                                                   +_____                                                +_ . ___                        + _ _ _ _ _ ~ _ _ _                    +

FE 59 s I.I2E 08 s 9.75E 08 I.24E 08 p 2,93E 08 s 0.00E-01 s 0.00E-Ol s 8.I7E 07 s 0.00E-01 __ _ _ +___ -- + ___ ___ + ____ . 4_ _____+__ ___+____ _'+_____ _ + . .___+ CO 68 I 6,7lE 07 I 6.07E 0'8 I 0,00E-01 s 2.99E 07 s 0.00E-01 s 0.00E-01 0.00E-01 s 0.00E-01 s ,

                                   +- _ _ __+-__ _                                            +______+_                  ____+________+_________+_________+_______+

CO 60 g 3.67E 08 .I~3,12E 09 g 0.00E-01 ; i.66E 08 s 0,00E-01 s 0.00E-01 s 0.00E-01 0.00E-01 s _____+ _ _ _+_______+__ ___+_._ _+ __ ___ +_ _______+- ____+-_ ____+ SR 89 s 2.87E 08 g 1,60E 09 e 1.00E 10 g 0,00E-01 g 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 s _ __+ . +_ __ __+ _ ___ __ +__ . _ _+ ____._ __+ +____ +_____ + w SR 90 1.64E li s 1.93E 10 I 6.70E .11 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 ,

         .A

_________+s _________,______- + _ _ _ _ _._ _ _ _ _ + _ _ _ _ _ _ _ _ _ + _ _ _ _ _ _ _ _ + _ _ _ _ _ _ _ + _ _ _ _ _ _ _ _ _ + _ _ _ _ - +

                 'I         131    s ' 6,6lE 07 s 3,04E 07 s 8.07E 07 s 1,15E 08 s I.98E 08. I 3.78E 10 i O.00E-01                                                                                                                            0.00E-01
                        . ___ _ +_               -
                                                                     +            _______+--                -
                                                                                                                  +___ _____+ ____ __ + _ __ _ _ _ +_____                                                                            -
                                                                                                                                                                                                                                           +______+

I 1 33 s 1,12E 06 s 3.30E 06 s 2.llE 06 s 3.67E 06 s 6.40E 06 s 5.39E 08 s 0.00E-01 s 0.00E-01

            .___+_________+______+_______+______+________+____.__#______.                                                                                                                                                                  +____           ___,

CSl34 s 8.83E 09 s I,89E 08 s 4.54E 09 e 1.08E 10 s 3.49E 09 0.00E-01 1.16E 09 s 0.00E-01 s __ _ _ +_ . --+ ______+______+_ . _ _ + _ ___

                                                                                                                                                                                        + _                      __    _ +__ ___._ _+ __ ___ +

CSl37 8 5.94E 09 e 1,76E 08 s 6.63E 09 s 9.07E 09 s 3,08E 09 s 0.00E-01 1.02E 09 s 0.00E-01 : _ _ + _ _ _ , _ - +______+.___ + _ _ _ + ____._+___ ______, _ . + 3

            *R 2VALUES IN UNITS OF MREM /YR PER pCI/M                                                          FOR INHALATION AND TRITIUM, AND IN UNITS OF M -MREN/YR PER g I/SEC FOR ALL OTHERS j

O O TABLE 3.3-4 R VALUES FOR THE PRAIRIE ISLAND NUCLEAR OENERATING PLANT

  • PATHWAY
  • VEGET AGE OROUP EQUALS TEEN NUCLIDE T,80DY OI-TRACT BONE LIVER KIDNEY THYHOID LUNG SKIN

________+__.-------+---------+---------+-----.----+---------+---------+--------+---------+ . H 3 s 2.61E 03 s 2,61E 03 s 0.00E-01 s 2.6lE 03 s 2.61E 03 3 2.61E 03 s 2.61E 03 s 2.61E 03 s ____ + _ _ _+__ __ -+ _ _ _ _ + ___ ____ _ +__ ___ _ _ +___._ ___ _ +__ _ _ _ ___.+_ ______ _ + C 14  : '2,93E 05 s 2,93; 05 s . l .47E 06 s 2.93E 05.I 2.93E 05 s 2.93E 05 s 2.93E 05 s 2.93E 05 ___.--t------------+-------------t----------+---------+------- + - - - - - - - - - - - +- - - - - - - +--------+ MN 54 s 8.79E 07 s 9.09E 08 s 0.00E-01. 4,43E 08 s 1.32E 08 0.00E-Og s 0.00E-01 0.00E-01 s _____+ _

                                                                       +__         _t _ __ _ _ + _ _ __                +       ___
                                                                                                                                                              -+__                 ___+              _____+________+

FE 59  : I,60E 08 s 9,78E 08 s l.77E 08 s 4,l4E 08 I 0.00E-01 s 0.00E-Ol's I.30E 08 8 0.00E-01 : __ _+ ___. _.__+__ __ + _ ___._ + _ __ _+- _ +________+ ______+ ______+ CO 58 9,79E 07 s 5.85E 08 s 0.00E-0l 4.25E 07 s 0.00E-01 s 0.00E-01 0.00E-01 : 0.00E-01 : t - -- -- - t---------t---------+----------+----------+-----------+-----------+------------+ CO 60 s 5.57E 08 s 3.22E 09 s 0.00E-01 s 2.47E 08 s 0.00E-01 0.00E-01 s 0.00E-01 s 0.00E-01 s

                                                +           __ _+ _ ____ _+              _______+ ___ ____+__                               ___
                                                                                                                                                              +     _ _ _ _ _             +._____+_____%

w SR 89 5 4.36E 08 s 1,81E 09 s 1.52E 10 s 0.00E-01 s 0.00E-01 s 0,00E-01 s 0.00E-01 : 0.00E-01 s ________+_________,_________+_________+__________,__________#___________________+______ .. g_SR N 90 s 2.05E ll s 2,33E 10 s 8.32E ll s 0,00E-01 s 0.00E-01 s 0.00E-01.: 0.00E-01 : 0.00E-01 : ________+_.___+____--t---------+------ + - - - - - - - - - -+- - - - - - - - - + - - - - - - - - - - - + - - - - - - - - + I 131 s 5.7.7E 07 s 2.13E 07. I 7.68E 07 s 1.07E 08 s 1.85E 08 s 3.14E 10 s 0.00E-01 0.00E-01 _____ __ + ______.__+_ ___ ___+.__ _____+_________+___ ___ +_ _____ + _ _ _ + ___ _ -+ I 133 s 1,0lE 06 s 2.5lE 06 s 1.96E 06 s 3.32E 06 s 5.83E 06 s 4.64E 08 0.00E-01 : 0.00E-01 :

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

CSl34 s 7,54E 09 s 2.02E 08 s 6.90E 09 s 1.62E 10 s 5.16E 09 s 0.00E-01 : 1.97E 09 1 0.00E-01 :

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

CS137 s 1.90E 09 .s 2,00E 08 s 1.06E 10 s 1.4l E 10 s 4.78E 09 s 0.00E-01 1.86E 09 0.00E-01 ______+-______+______+_______+__.------t-------- +---------- +- - - - . - - _ - . - . _ - . + - - - - - - - . - - - +

                     *R VALUES IN UNITS OF MREM /YR PER pCI/M 3 FOR INHALATION AND TRITIUM, AND IN UNITS OF 2

M.-MREM /YR PER pCI/SEC FOR ALL OTHERS rr sw- = -- - --,-w ---- --,---w e.----,, ----.i , --- e w. . , - -.%-- m er - - - - - - - - . - -

O

         . TABLE 3.3-5       R VALUES FOR THE PR AIRIE ISLAND NUCLEAR GENER ATI NG PLANT
  • PATHWAY = VEGET AGE GHOUP EQUALS CHILD NUCLIDE T. BODY 01-TRACT. BONE LIVER KIDNEY THYROID LUNG SKIN

________+________+_______ -+_________+__________+__________+__________#______ +________+ H 3 s 4,04E 03 s 4 04E 03 s 0,00E-OI s 4.04E 03 s 4.04E 03 s 4.04E 03 4.04E 03 s 4.04E 03 : ______-__+-_________+__________+__________# _________+-______ +_________+-_________+_______ + C 14 s 7.06E 05 I 7.06E 05 s 3.53E 06 : 7.06E 05 s 7.06E 05 s 7.06E 05 s 7.06E 05-+__________+ s 7.06E 05 : _________+__________+__________+__________+__________+__________#_______ -+_______ MN 54 s 1.73E 08 I 5.44E 08 s 0.00E-01 4 6,49E 08 s 1.82E 08 s 0.00E-01 s 0.00E-01 a 0.00E-01 : _____-_-_+__________+__________+__________+__________+__________+-_________+__________+____ + FE 59 s 3.17E 08 s 6.62E 08 s 3.93E 08 4 6.36E 08 s 0.00E-01 s 0.00E-01's 1.84E 08 0.00E-01  : _________+______ _+__________+_______ +_______. +__________#__________+-_________+-_________+ CO 58 s 1.92E 08 s 3.66E 08 s-0.00E-01 s 6.27E 07 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 : _________+__________+__________+._________+__________+-_________t__________+__________+ , + CO 60 s 1. llE 09 s 2,08E 09 s 0,00E-01 s 3,76E 08 I 0.00E-01 s 0.00E-01 0.00E-01 0.00E-01  :

  .--------+--------+-------t_-__-----+----------+----------+---------+---------+--------+

SR 89 I,03E 09 I l.40E 09 I 3,62E 10 s 0.00E-01 s 0.00E-01 s 0.00E-01 : 0.00E-01 0.00E-01 : y,________+I __________+__________+__________+__________+__________+__________+__________+__________+ O Sil 90 I 3.49E il I l.86E 10 s 1.38E 12 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 0.00E-01 _________+__________+__________+__________+______-___+__________+____--__-_+____-_____+___----_-_+ I 131 I 8,16E 07 s 1.28E 07 s 1.43E 08 s 1.44E 08 s 2.36E 08 s 4.75E 10 s 0.00E-01 0.00E-01 _________+__________+__________+__________+______-__-+--__------+___--___--+____--___-+__--_---_-+ I 133 I l .67E 06 8 1,78E 06 s 3.57E 06 s 4.42E 06 7.36E 06 8.2iE 08 s 0.00E-01 1 0.00E-OI : _________+__________t----------+----------t----------+----------+----------+------- -+------- + CS134. I 5.40E 09 s 1,38E '08 1.56E 10 s 2.56E 10 s 7.93E 09 s 0.00E-01 8 2.84E 09 0.00E-01 _________+__________+__________+__________+__________+__________+__-_______+______, +__________+ CS137 s 3.52E 09 s 1.50E 08 s 2.49E 10 s 2.39E 10 s 7.78E 09 : 0.00E-01 2.80E 09 n.00E-01 s _________+__________+-_________+_________ ,+__________+_______ -+-_________+__________+____ + 3

  *H 2VALUES IN UNITS OF MREM /YR PER pCI/M                                              FOR INHALATION AND TRITIUM, AND IN UNITS OF M -MREM /YR PER pCI/SEC FOR ALL OTHERS

, . _ , - . . , . - - - - , , . . - , - . _ - - - - v.,, -n , , . , . . . . , . , , - . . , , . - , . , , , - . . . , _ . . - . . . - . . , . , . , - - , - . , - , - - - -

( TABLE 3,3-6 R VALUES FOR THE PRAIRIE ISLAND NUCLEAR GENERATINO PLANT

  • PATHNAY = MEAT AGE GROUP EQUALS ADULT NUCLIDE T. BODY GI-TRACT 80NE LIVER KIDNEY THYROID LUNG SKIN

________s_______p________s_______s________%_______+________%_______%______+ H 3 5 3.27E 02 s 3.27E 02 s 0.00E-01 s 3.27E 02 -+---------+----------h---------h----------+ . 3.27E 02 s 3.27E 02 s 3.27E 02 s 3.27E 02 ________s_._ s _ _ __ __ __ s _ _ __. -t-----.-- C 14 s 6.71E 04 5 6.7tE 04 s 3.36E 05 I 6,71E 04 s 6.71E 04 s 6.7lE 04 s 6.71E 04 s 6.71E 04 _ _ __ s _ ______w_ __ s_ __ _ __ o_ _ _ _ ___ p _ _ __ _ -- o __ __ _ +---__ ___+___ __ + MN 54 5 8,98E 05 s 1.44E 07 s 0.00E-Gi I 4.7tE 06 s 1.40E 06 5 0.00E-01 s 0.00E-Ol : 0.00E-01 s __ ___ +__ :___ ____ s_ ___ _ s_ ____ __w ___.____.o ___ _+ ____ -+____ + FE 59 s 1.12E 08 s 9.73E 08 8 1.24E 08 s 2.92E 08 s 0.00E-01 s 0.00E-01's 8.16E 07 s 0.00E-01 __w_______+_______w______+ __ _ ___+_ _ _ - 1 s_ _ _____ s ___ _ s __ _____ o_ CO 58  : I.95E 07 I,.76E 08 *: 0,00E-01 I 8.68E 06 : 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-OI  : __ ____+ . +__ ___ w___ ___+________w_______+ _ ____+--__ __+-____ _+ CO 60 8 8.87E 07 s 7.55E 08 s 0.00E-01 s 4.02E'07 s 0.00E-01 : 0.00E-01 s 0.00E-01 s 0.00E-01 ____.__s_____ s _ __ _ __ s __ _____._ o _ _____ s . _ _ __ s __ __ _ _ + _ _ _ _ _ w __ _ _ + SR 89 s 4.12E 06 s 2.30E 07 s 1.43E 08 s 0.00E-01 s 0.00E-01 s 0.00E-01 s+-_________+____.______+ 0.00E-01 : 0.00E-01 y________+_____ __,_________+_____ ____+____ ___+_______ _ +-_____ pH 90 s 1.76E 09 s 2.07E 08 s 7,17E 09 s 0.00E_01 s 0.00E_01 s 0.00E-01 s 0.00E-01 s 0.00E-Ol's

                        .________+_____                                     _+____._____ ,__________+__________+__________+_________ ______                                                                               +__________.

I 131 s. 4. 33E 06 s 1.99E 06 s 5.28E 06 s 7.55E 06 s 1.29E 07 s 2.48E 09 s%0.00E-01 0.00E-01 _ _ _ . _ s . __ s _ __ ___ w _ _ _ __ % __ __ __ s _ _ _ _. s_ _ __ _ __ ___ w _ __ +

                          ! 133        s 1,13E-04 s 3.34E-01 : 2.14 E-01 s 3.72E-01 s 6.49E_01 s 5.46E 01 s 0.00E-01 : 0.00E-01 :

__ __+__ _ __p___ _ p________s_ ___+___ __ w __ __ _ % ___ ___+__ _______+ CSl34 s 6.68E 08 s 1.43E 07 s 3.43E 08 8 8.17E 08 s 2.64E 08 s 0.00E-01 8.78E 07 0.00E-01 : ______w__ w _ _ _ __+ _ _ _. ___ w _ __ w__ __ s_ _ ___ __ % ___ __ __%_ _ _ + CSl37 4.33E 08 s 1,28E 07 I 4.83E ou a 6.61E 08 s 2.24E 08 s 0.00E-01 7.46E 07 s 0.00E-01  : _ _ ~ _ _ _ - +__ -- n________+________+________+__________+________+________+___,._____+ 3

                      *R 2VALUES IN UNITS OF MREM /YR PER pCI/M                                                          FOR INHALATinN AND TRITIUM, AND IN UNITS OF M -MREM /YR PER pCI/SEC FOR ALL 07HERS

k TABLE 3.3-7 R VALUES FOR THE PRAIRIE ISLAND NUCLEAR GENERATING PLANT

  • PATHWAY = MEAT 4

A0E OROUP EQUALS TEEN NUCLIDE T. BODY GI-TRACT Bord LIVER KIDNEY THYROID LUNG SKIN p_ _ ___ w___ ____w_________w__ ______% _____- %_____- + _ _ _ _ w____ + '

4. H 3 -a I.95E 02 e l.95E,02 5 0.00E-01 s I.95E 02 s I.95E 02 s I.95E 02 s I.95E 02 -% s I.95E 02 s

______ - -s _____ _+ _________ p___ _ -s_______w_______s________+-____ -_______+ C 14 I 5.67E 04 s 5.67E 04 s 2.83E 05 s 5.67E 04 s 5.67E 04 s 5.67E 04 s 5.67E 04 8 5.67E 04 s ________w ______ -w_________o______.__s_____s_______+________o_______w______+ MN 54 s.7.42E 05 I 7.37E 06 s 0,00E-01 s 3.59E 06 s 1.0'IE 06 s 0.00E-01 s 0.00E-01 s 0.00E.-ol s _ _ . o __ __ p____ ___o ____ w___ -

                                                                                                                                                                                                           %             _____p_______+______s_______+

FE 59 s 8.95E 07 I 5.48E 08 s 9.93E 07 I 2,32E 08 s 0.00E-01 s 0.00E-01. I 7.3l E 07 s 0.00E.-01 ___ ___ p___ ___w_ __ - w_ _____ %_ ______ o___ _____p ___ +_ ____ __ %_________+ CO 58 s 1,54E 07 I 9,22E 07 I 0.00E-Gi I 6.69E 06 s 0.00E-01 s 0.00E-01 s 0.00E-01 s-0.00E-01 : ________p_______g________p_______p______p_________p_____+________s________+ CO 60 I 7,03E 07 I 4,06E 08 8 0.00E-01. I 3.'l2E 07 s 0.00E-01_e________w_ s 0.00E-01 s 0.00E-01_w s 0.00E-01 __+ : ______- -p____ __ e __ __ _ p__ _____p______ -w_____ _ _ SR 89 s 3.47E 06 e 1,44E 07 I l.2iE 08.s 0.00E-OI s 0.00E-01 a 0.00E-01 s 0.00E-01 s 0.00E-01 e _____w______+ ca___ _ s __ __,._ _ ___ s ______s ______._+ _______.w________% _ k SR 90 s I,15E 09 .s 1.30E 08 s 4.64E 09 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 6

     &' _ _ __                      p _._                                         ___ w                         _         _ s _ _ ___ _ + _ _                            _ _                               w____                 o___ _ _ __w                                  ____        __%_                            __ +

l I-131 s 3.30E 06 e 1.22E 06 8 4.39E 06 s 6.14E 06 +s _1.06E ____ 07 so_1.79E __ __ 09 __ os _.0.00E-01 _ _ __s o__ 0.00E-01 _ ___ __ +  : ______ w . _ w _____w_ -+____ I I33 s 9.25E-02 s 2.30E-01 e i.79E-01 s 3.03E-01 s 5.32E-Ol s 4.23E 01 s 0.00E-01 s 0.00E-01 ____ +  : _ ____w _ _ _. _ _ w _ _ _ _ o _ . _ __ %__ _ _ _ __ w _ _ _ _ __ o _ _ _ _ ___ o __ __ _ ___ w CSl34 s 2.98E 08 s 7.99E 06 s 2.73E Oa I 6.42E 08 s 2.04E 08 s 0.00E-01 s 7.79E 07 s 0.00E,01 s ___ _ w __ _ _ s __ w______._r,________s____ s______ +_________ % ___.___+ CSl31 I l.86E 08 _p____p________s______.__s__,______o___.___+__________s_ s 7.59E 06 s 4. ole 08 I 5.34E 08 s 1.82E 08 s 0.00E-01 s 7.06E 07 s 0.00E-01 s+ _ _ . . p ___ i 3

        *R 2VALUES IN UNITS OF MREN/YR PER pCI/M                                                                                                          FOR INHALATION. AND TRITIUM, AND IN UNITS OF j

M -NREN/YR PER pCI/SEC FOR ALL OTHERS 1- . 4 4 4

                                                                                                                                                -----4.--._4..---            _ - _

_.....m...~.,__,,,,,.-m.-mm.... -

O l TABLE 3.3-d R VALUES FOR THE PRAIRIE ISLAND NUCLEAR OENERATING PL ANT

  • PATHvfAY = MEAT AGE GROUP EQUALS CHILD NUCLIDE T,80DY GI-TRACT BONE LIVER KIDNEY THYROID LUNG SKIN
               ---------+----------t---------t---------t------                                                                                    t-------    +  -      - - - -   - -  -  -  +      - -  -  -  -         +-     - -  -----+

i

        ~

H 3 s 2.36E 02 8 2.36E 02 s 0.00E-01 s 2,36E 02 : ~2.36E 02 s 2.36E 02 s 2.36E 02 2.36E 02 t

               ---------+----------+---------t----------t----------+-------                                                                                   + - - - - - - - - - + - - - - - - - - + - - - - - - - -+

C 14 s 1.07E 05 s 1.07E 05 8 5.33E OS : 1.07E 05 s 1.07E 05 s 1.07E 05 s 1.07E 05 s 1.0/E 05 s

               --------+--------+---------t-------                                                                                   t-------    -+----------+----------+---------+---------+

NN 54 s 1.09E 06 s 3.45E 06 s 0.00E-01 s 4. l l E 06 s 1.15E 06 s 0.00E-01 : 0.00E-01 s 0.00E-01 s t -------- t - ----- t--------+----------t------- +---------+--------+------- + FE 59 s I,42E 08 s 2,97E 08 I I.76E Od I 2.85E 08 s 0.00E-01 s 0,00E-01 8.26E 07 s 0.00E-Ol

               --------+---------+---------t----------+---------+-------                                                                                      +------                     4---------+---------+

CD 58 s 2,39E 07 s 4.56E 07 s 0.00E-01 s 7.8aE 06 s 0.00E-Ol 0.00E-01 i 0.00E-01 s 0.00E-01 s

               ---------t----------t----------+----------+----------+--------+---------+--------+---------+
               -CO 60             s I,09E 08 s 2,05E 08 s 0.006-01 s 3.70E 07 s 0,00E-01 : 0.00E-01 s 0.00E-01                                                                                                                 0.00E-01 s
               --------t--------                            t.                                              t---------t----------t-------                     +  -      - - - -   -  - -   - +      -  -  -  -   - - - - +    -   -------+

SR 89  : 6.55E 06 s 8,87E 06 s 2.29E 08 s 0.00E-01 : 0.00E-01 s 0.00E-01 0.00E-01 : 0.00E-01 _______t______ __t______ - _t_______ t_______- -t_________+______ _+______ +_________+ yw _SR 90 I .52E 09 s 8.0dE 0/ s 6.00E 09 s 0.00E-01 0.00E-01 s 0.00E-01 0.00E-01  : 0.00E-01 s

               --------+-------                             t-------                              .

t------- t---------+---------t---------+------ + - - - - - -+

                  ! 13I           I 4.65E 06 s 7.29E 05 s 8.14E 06 I 8.19E 06 s 1.34E 07                                                                        .2.7tE 09 : 0.00E-01                                           0.00E-01 s
               ---------+---------+----------t----------+----------+----------+---------+-----                                                                                                                           +----------+

I 133 s 1.55E-01 : I.66E-01 s 3.32E-Ol : 4.llE-01 s 6.85 E-Ol : 7.63E 01 : 0.00E-01 0.00E-01 : ________+__________+_________+_________+__________+__________t_______ +______ + _____ + CS134 s 1.67E 08 s 4.26E 06 s 4.81E 08 s 7.90E 08 s 2.45E 08 s 0.00E-01 : 8.78E 07 s 0.00E-01 : . _________+_________t________+_________+ . +______ +

                                                                                                                                                                                            + ________+______                                               _+

CSl3/ s 1.04E 08 I 4.43E 06 s 1.39E 08 8 7.07E 08 s 2.30E 08 s 0.00E-01 s 8.29E 07 s 0.00E-Ol : _________+_______ _ _+-_______ _ +____ _ __ _ ,__________+ -_________+________ _ +________ _ +________ _ + i 3

               *R 2VALUES IN UNil's OF MREM /YR.PER pCI/M                                                                           FOR INHALATION AND TRITIUM, AND IN UNITS OF M -MREN/YR PER pCI/SEC FOR ALL OTHERS 4
0 e

e

                  ..        -,.       ----- .,- ,-.... . -         -,...r..,-,-.,,-._,_,.--,,.----,-,-.---,_--...,-,,.__,_-w -
                                                                                                                                                                   -_,w         .            -, +              e             .v       _ _ - - - _ _ - - - -
                                  . TABLE 3.3-9                          R VALUES FOR THE PRAIRIE ISLAND NUCLEAR OENERATING PLANT * .

l t PATHWAY = COW MILK i

                    ~ AGE OROUP EQUALS                                   ADULT NUCLIDE                       T. BODY                              OI-TRACT                                    BONE         LIVER                   KIDNEY                                                    THYROID       LUNG                    SKIN s_______+______ +_                                                                               _ p______            p _ __ __.__ o __ __ ___ o _ _ ____ o _ __                                                                                                                +

H. 3 s 7.69E 02 s 7.69E 02 s 0.00E_01 s 7.69E 02 I 7.69E 02 s 7.69E 02 s 7.69E O2 p______+ I 7.69E 02 s _____p_____o___+_________p____p___.____o______e_____ 14 .g.7.32E 04 I 7.32E 04 s 3.66E 05 s 7.32E 04.s 7.32E 04.s 7.32E 04.s 7.32E 04.s 7.32E 04 s _C _____p_______p______.- _____p_________p________.p_____.___p______o_____+ MN 54 s 8.25E 05 I 1.32E 07 s 0.00E-01 s 4.32E 06 s 1.29E 06 s 0.00E-01 g 0.005-01 s 0.00E-01 e i _____ - s _ __ _ _ p _ _ __ e _ __ _ _ p_ _ _ _ __ o_ _ _ _ p_ _ _ _ ___p__ _ ___ _ o _______ _ + FE 59. 's 1.25E 07 g 1.09E 08 s 1,39E 07 s 3.26E 07 s 0.00E-01 a 0.00E-01 s 9.10E 06 s 0.00E-Oi,s __ _____p_ ___ ___g _ ____ __p______ -p____._p______+. _ _ o_'_ ____ w _ _ _ _ +

CO 58 s 5.03E 06 I 4,55E 07 s 0.00E-01 1 2.24E 06 s 0.00E-01 s 0.00E-01 s 0.00E_01 s 0.00E_01 s
_ _____ p__ __ p ___ p_ . __ __ e___ __ __ p _ __ __ e ___ _. __ e _ _ ____ o___ _ _ +

CO 60 g I,93E 07 g 1,65E 08 g 0.00E-01 s 8,77E 06 I 0,00E-01 s 0.00E-0I e 0.00E-01 s 0.00E-01 s - ____ _ - p_ _ _ e_ _ __ __ p__ _ __ __ w . _ ___ p __ __ ____ o _ _ __ __ e______ _ o _ _ _ _ _ _ + I l.97E 07 8 1.10E 08 s 6.85E 08 s 0.00E-01 0.00E-04 s 0.00E-01 s 0.00E-01 s 0.00E-01 s J,_SR 89__ . p _ _ _ __ __ p_ _ _ __ _ _ e_ ___. __ e_ _ __ __ e _ __ _ _ _ _ w __ _ _ _ _ o__ __ - w _ _ _ __ + tjSR 90 g 6.62E 09 I 7,80E 08 s -2.70E 10 s 0.00E-01 s 0.00E-01 s 0.00E-Ol 0.00E-01's 0.00E-01 : . ._________,__________e_________p________+__________+_________+______ +____ _ + _ __ + l 131 s .l .19E 08 p_ I 5.49E 07 sp___+_.__+_ 1.45E 08 s 2.08E 08 I 3.57E 08 s 6.82E 10 sw___- 0.00E-01 s+_ 0.00E-01 _'___.___w__ -

                                                                                                                                                                                                          - p_                   _                                                                                         +

i I 133 s 1.05E 06 s 3,09E 06 s 1.98E 06 s 3.44E 06 s 6.0IE 06 s 5.06E 08 s 0.00E-01 s 0.00E-01 s _ _ _ _ s_ ___ s _ ____+ __ __ _+ ______+________w_____ _ w_ _ -+ + CSl34 g 5.74E '09 a 1.23E 08 s 2.95E 09 s 7.02E 09 s 2.27E 09 s 0.00E-01 s 7.54E 08 s 0.00E-01 s ___ __ p _____ __+ - p_______+-______+____ s___ _ w______+_ + CS137 s 3.66E 09 8 1.08E 08 p__ s 4.09E 09 s 5.59E 09 s 1.90E 09w_____ s 0.00E-01w_- s 6.3lE 08 ;: 0.00E-01 -+: __ _w ___ _+_ _ _ __ p _ +_ _ _ -- 3 FOR INHALATION AND TRITIUM, AND IN UNITS OF cR2VALUES IN UNITS OF MREWYR PER pCI/M M -MdEWYR PER pCI/SEC FOR ALL UTHERS e

                      --        .    ,      -.-+---,w.              ---e.-.......-.---...,-e..,-.-..--.--.~,---.-~.,---e....-         -                  -
                                                                                                                                                                          --.,--,.--.----._.---------,.-,------.,---.w-.----.-c                             - - . - . - - - - - - - - - - _ _ _ - - _ _ _ . - - . - - - - - - ,

l l

                                 \~

l

                              . TABLE 3.3-10                R VALUES FOR THE PR AIRIE ISLAND NUCLEAR GENER ATING PL ANT
  • l l PATHWAY = CON MILK AGE GROUP EQUALS TEEN l NUCLIDE T. BODY GI-TRACT BONE LIVER KIONEY THYHOID LUNG SKIN

_________+-_________+__________+-_________+__________#__________+_______ -+__________+_______ + H 3 s 1.00E 03 s 1,00E 03 s 0.00E_01 I l.00E 03 I l.00E 03 1.00E 03 s 1.00E 03 1.00E 03 : ______ +_______ +-______ +________ +__________+__________+__________+__________+__________+ C 14 s 1.35E 05 s 1,35E 05 s 6,75E 05 s 1,35E 05 s 1.35E 05

                                                  ~

1.35E 05 8 1.35E 05 1.35E 05 : _______+________+____ #__________+_________+_________#__________+_________+__________+ MN 54 s 1.43E 06 4 1.4SE 07 s 0,00E-01 s 7.20E 06 s 2.15E 06 s 0.00E-01 s 0.00E-01 + _0.00E-01 - e ________+-______+_______+_______+________+________+________+ FE 59 s 2.18E 07 1.1. 34E 08 s 2,42E 07 s 5.65E 07 s 0.00E-01 s 0.00E-01 s 1.78E 07 0.00E-01  : ______+________+________+-________+ ,+_______#_________+________+_________+ CO 58 s 8.70E 06 s 5.2iE 07 s 0.00E-01 s 3.78E 06 1 0.00E-01 0.00E-01 s 0.00E-01 0.00E-01

                    -______+-_____                          ,_____  _ _ _ #____   _ __ _ +_____     _ ___+_           _ _____._+-_______       _ +_     _       _____   _    +_        _ __ _ _ _ +

CO 60 s 3,35E 07 I l.94E 08 s 0,00E-01 s 1.49E 07 s 0.00E-04 s 0.00E-01 : 0.00E-01 0.00E-01 : ________e_________ _____+ SR 89 I 3,62E 07 s+________+_________+-____ 1.50E 08 s 1.26E 09 s 0.00E-01 ___+-________+_____ s 0.00E-Ol : 0.00E-01 __+_ _____ _ +_____E-01 s 0.00E-01 0.00 __..______+________ _ +__ _ ______+ __________+ __________+_ _ _____ _ + . + ________+__ _ __+ w SR 90 s 9.42E 09 s 1.07E 09 s 3.81E 10 s 0.00E-01 0.00E-01 s.0.00E-01 : 0.00E-01 : 0.00E-01 ___+__________+__________+__________+ _________+-_________+__________+-_________+ g_________+_______08 mi 131 1.98E s 7.31E 07 s 2.64E 08 s 3.69E 08 6.36E 08 s 1.08E il I 0.00E-01 : 0.00E-01 4 ________+_________+________+-_________#__________+__________, ________+_________+__________# I 133 s 1.87E 06 s 4.64E 06 s 3.61E 06 I 6.13E 06 s 1.08E 07 s 8.56E 08 I O.00E-01 : 0.00E-OI _________e__________+ +__________+-_____-___+_____-____+__________+__________+__________+ CSl34 s 5,60E 09 s 1.50E 08 s 5.12E 09 s 1.21E 10 s 3.83E 09 s 0.00E-01 1.46E 09 : 0.00E-01 _ _ _ _ _ +________+________+________#________+_________#______ _ +_________+__________+ CSl37 I 3.44E 09 .I 1.40E 08 s 7.42E 09 9.87E 09 s 3.36E 09 s 0.00E-01 s 1.30E 09 +______ 0.00E-01 _________+__________+__________+__________+__________+__________+__________+_______ +

                    *R2VALUES IN UNITS OF MREM /YR PER pCI/M                            FOR INHALATION AND TRITIUM, AND IN UNITS OF M -MREN/YR PER pCI/SEC FOR ALL OTHERS
                                      . - . . - ,   - ._                       -.         _,.v.        _,   . - - - -       _ _ -  ______m        _.4. _ . - . . _ _ _  _ _ _ _ . _ .       . . _ _ . _ _ . . _ _ _

TABLE 3.3-11 R VALUES FOR THE PRAIRIE ISLAND NUCLEAR GENERATING PLAMI'* PATHNAY = CON MILK AGE GROUP E00ALS. CHII.D NUCLIDE T.80DY GI-TRACT BONE LIVER KIDNEY THYROID LUNG SKIN ________+ __ ______p_ ______ e _______ w _____ p_ _ .%____ ___o______ %_______+ g H 3 s.l.58E 03 g 1,58E 03 s 0.00E-01 1 1.'58E 03 s 1.58E 03 s 1.58E 03 s 1.58E 03 e 1.58E 03 : _ __ _ _ w ___ _ p___.. __ o_ ___ _ p__ _ _ o__ __ ___ w ____ - p__ ___o______+ C ' .14 I 3.32E 05 s 3,32E 05 s 1.66E 06 s 3.32E 05 s 3.32E 05 I 3.32E 05 s 3.32E 05 s 3.32E 05 s p ___ _ w_ ___ , .. __ __o __ . ___+_--___ _w_ o______%-__-__+ MN 54 s 2.87E 06 s 9.04E 06 s 0,00E-01 : I,08E 07 3.02E 06 s 0.00E-01 s 0.00E_01 : 0.00E-01 s 3 _ p __ __ p_ _____w_ __ _ p _ -- t -- --- --+------- h--------- h- + FE 59 s 4.52E 07 l 9.45E 07 s 5.61E 07 s 9,08E 07 g 0.00E-0.1 s 0.00E-01.I 2.~63E 07 s 0.00E-01.s

           .__ __                                . _ o_ _ _ . .            w ______ p__                              ____ w ______ p___                                                                                                            _ e__ ____ w__ _____w__                                  ___   +

,' 'C0 58 s.l.77E 07 s 3,37E 07 s 0.00E-01 s 5.77E 06 g 0,00E-01 s 0.00E-01's 0.00E-01 s 0.00E-01 s ________w_ .,.p _ _ _ _ p_ _ _ _ __ e _ _ _ _ _ p __ _ __ _ e _ o _ __ w __ _ _ + CO 60 I 6.81E 07 s 1,28E 08 s 0,00E-01 2.31E 07 g 0.00E-01 s 0.00E-DI e 0.00E-01 s 0.00E-01 s

                            -_ _ _ w _ _                         __ p _ _ __ _ p                                    . _ _ _ e                                                  __ _ _ e                                    ___ _ _ _ e __ _ ___ o __ ___ _ w ___ _ ___ _ +

SR 89 I 8.93E 07 s 1.21E 08 s 3.J3E 09 s 0.00E-01 s 0.00E-01 s 0.00E_01 s 0.00E_01 s 0.00E-01

    ,                  _                           _w__       __ _+___                         __           p _          ___ + _                                               _-__ o_                                              _                       w_ _                 _ s      ___       +________+

4 SR.90_ __ wI _l.63E 10 e 8,68E 08 s 6.44E 10 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 0.00E-01 ,

  , ap _ _ _                                            _ _ ___ p _ __                              _       p_      _ _ _ _ ,                                   ,

p _ _ _ _ -_ e . . __ w _ _ __ _ w _ -- _ _ + 1 13l . I 3.66E 08 I 5,73E 07 3 4.40E 08 8 6.44E 08 s 1.06E 09 s 2.13E 11 s O'00E-01 . s 0.00E-01 s i _ _ _ _ __ p _ _ _ _ _ _ _ p _ _ _ _ _ ___ e . _ _ _ _ e _ _ _ _ _ _ _ e __ _ _ __ _ w _ _ __ _ w _ _ _ _ _ _ w _ _ ___ _ _ +

                ~I 133                              8 4.llE 06 s 4.38E 06 s 8.78E 06                                                                       1.09E 07 i 1.81E                                                                                  s 2.02E 09 s 0.00E-01 s 0.00E-01 s
             -____. --- e :__ _ _ o____.__ _ e ____ _ o __ _ _ e_                                                                                                                                                               __-07 r _ ____ o ______ % ____ _ +                                                    ';
             'CSl34                                 I 4.09E 09 s 1.05E 08 l' l.18E                                           10 s 1.94E 10 4 6.0IE 09 s 0.00E-01 s 2.16E 09 : 0.00E-01
________e_____ _e_______w .__ w__ ___w __ __+_ ____w ______.s_ +

CS137 s - 2.52E 09 s 1.07E 08 s 1.79E 10 I I.7tE 10 s 5.57E 09 s 0.00E-01 s 2.00E 09 : 0.00E-01 s ___. ___ o_ ______ e _ . ____+ ___ __w _ _ __w _____ _+____ __ +_ __ o ___ + 3

            *R 2VALUES IN UNITS OF-NREM/YR PER pCI/M                                                                                        FOR INHALATION AND TRITIUM, AND,IN UNITS OF M -MHEN/YR PER pCI/SEC FOR AI.L OTIERS i

e i

                                                                                                                                                                                                                                                                 . x TABLE 3.3-12                 R VALUES FOR THE PH AIRIE ISLAND 14UCLEAR GENERATING PLANT
  • PATHWAY = COW MILK AGE GROUP EQUALS INFANT NUCLIDE T.80DY OI-TRACT BONE LIVEH KIDNEY THYROID LUNG SKIN

_i.____ ____+________+ ______ _4.___ -___+ -_-______1._ ______+ __ _ _i.____ -___4 H 3 s 2,40E 03 s 2.40E 03 s 0.00E-01. I 2.40E 03 s 2.40E 03 s 2.40E 03 s 2.40E 03 a 2.40E 03 : ___._i.__ ______#_ _____.__+__ _____ ,_ _- _ 4.__._ ___

                                                                                                                                                                                               -+-______.4.____.__4._                                                        4 C i4                             s 6.94E 05 s 6.94E 05 4 3.25E 06 s 6.94E 05 4 6.94E 05 I 6.94E 05 s 6.94E 05 8 6.94E 05

____-__i.___ 1._______+_____ __1.-____ _

                                                                                                                                                               +_____ __1.                                __ _     1.__ _ - - - 4. _ _                                       +

MN 54 s 4.54E 06 3 7.36E 06 s 0.00E-01 s 2.00E 07 s 4.44E 06 0.00E-01 s 0.00E-01 s 0.00E-01 s

     --__i.____-_+_____4.__-___4.___._                                                                                                                        t---------1------------+---------+--                                                                           1-FE 59                            s 7.2iE 07 s 8.74E 07 s 1,05E 08 s 1.83E 08 s 0.00E-01                                                                                                      0.00E-01 I S~.4tE 07 s 0.00E-01                                      s 4_                      -1._    ___                           i. ___                  4.______+____._4.____+-___                                                                                -+        __       __4 CO 58                            s 2.88E 07 s 2.88E 07 s 0.00E-01 s 1.15E 07 s 0.00E-01 s 0.00E-01                                                                                                            0.00E-01 s 0.00E-01 :

____4_ __ _4.__ __ _4. _ __ +_ _4._____ _4... __+_-- __4.______4 CO 60 s 1.IIE 08 s 1.12E 08 s 0.00E-01.s 4.7lE 07 I 0.00E-01 s 0.00E-01 s 0.00E-01 : 0.00E-01 : _____. _ 4.____.___. _ # _-- _ __ 1. __ . -_ _ 4.____ _ _ _.4.______.__ _ 4. __ ____ _ 4 ----__ _ _ i.________ _ 4 w SR 89 s 1.70E 08 s 1,22E 08 I 5.94E 09 s 0.00E-01 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 : g, _ _ __ _ __ 4. _ __ _ _ 4__-_____+___. #_____ _ ___#__________+__________+____ _ ____4.________ _ + o SR 90  : I.79E 10 : 8,75E 08 7. ole 10 s 0.00E-01 0.00E-01 s 0.00E-01 : 0.00E-01 : 0.00E-01 : _____1.__ +____1._______4.____._ 4. _ ___ 1. _ _ _ _ _ _ _ 4. _ _ _ _ _ 4. _ --___1 I 131 I 6.92E 08 5.62E 07 s 1.34E 09 s 1.57E 09 I 1.84E.09 s 5.17E 11 : 0.00E-01 0.00E-01 __ a.-_ _ _ __ 4.__ _ __ _1._ _ _ _ _4. _ __

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

1 133 I 7.91E 06 s 4.57E 06 s 1.85E 07 I 2.70E 07 i 3.17E 07 : 4.91E 09 0.00E-01 : 0.00E-OI : ___. ___+_________+_ __ ___.4. . __ _1._____ -4.______+__-___.___.4._____- 4._ _ _ _ 1 CSl34 s 3.59E 09 s 9.65E 07 I.90E 10 s 3.55E 10 I 9.14E 09 s 0.00E-01 s 3.75E 09 s 0.00E-01 : _____4.____4._____+____4._______4._______i.____-__4.___..___i.____._i. CS137 s 2.37E 09 s 1.04E 08 s 2.85E 10 s 3.34E 10 8 8.96E 09 s 0.00E-01 s 3.63E 09 s 0.00E-01 : __i.____._ +____4.___ ..i._ _ ____4.___. __+ , 4.____ i. ___ 4 3 CR2 VALUES IN UNITS OF MREM /YR PER pCI/M FOR INHALATION AND TRITIUM, AND IN UNITS OF M -MREM /YR PER pCI/SEC FOR ALL OTHERS 5 %, . . . , , - _, + - - . - . . . - . . _ . - - - , - - - . . . - - - - - - - - - - _ , - - . , _ . . _ . _ -. . -- -. ----- -- - - - - -

O

                      . TABLE 3.3-13 R VALUES FOR THE PRAIRIE. ISLAND NUCLEAR GENERATING PLANT *
            ~ PATHWAY = 00ATMILK AGE OROUP EQUALS                                                     ADULT OI-TRACT                BONE                   LIVER                             KIDNEY                               THYROID                          LUNG                       SKIN NUCLIDE                            T. BODY                                                                                                                                                                                                  o________+

_ _ _ _ _ +__ _ _+_____ p_ ____% __ . ___o____ ___o_________+_______ H 3 s I.57E 03 : I.57E 03 s 0.00E-01 e i.57E 03 sp I.57E ______ 03 s I.57E 03 I.57E 03 : I.57E 03 :

                                                                                                                                                                                                        %________+_________o________+

_______w____ w___ __ + _ __.___ _ s _____ _ C 14 s 7.32E 04 s 7.32E 04 3 3,66E 05 s 7.32E 04 3 7,32E 04 I 7.32E 04 s 7.32E 04 s 7.32E 04 s ___ -p _ __ e_ __ _ _ __ w _ __ _ -p _ _ _ __. p _ ___ %___.___#__________o_______+

           .MN 54

________ p______ s 9.89E 04 _ se 1.59E __ - 06 s 0.00E-01 _ s_ ______ wI 5.19E ___._05 _ sp 1.54E __ __05 -%_ s 0.00E-01 __ ___ s 0.00E-01 w__ _ __+: 0.00E-01-+ _ _ _ _ _ s FE 59 s I.62E 05 s 1.41E 06 s 1.80E 05_p_______e______e_____.__w______+_______+ s 4.23E 05 s 0,00E-01 0.00E-01 e 1.18E 05 s 0.00E-01 s , _ _ __w ___w _____p ____ CO 58 s 6.03E 05 s.5.46E 06 s 0,00E-01 g 2.69E 05 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 s ______e_____-p_______p______p_______p______w_______w_______o_______+ CO 60

                   . ____p_
                                        .I 2.32E 06 s 1.98E 07 s 0.00E-01 s 1.05E 06 s 0.00E-01 s 0.00E-01 .t 0.00E-01--p__

__ ___ p ______ p___ __ _ o_ ___ _ _%_ _ _ +___ - -%_ s 0.00E-01 :

                                                                                                                                                                                                                                                                                            -+

SR 89 I 4.13E 07 3 2,3lE 08 s 1.44E 09 s 0.00E-Ol 0.00E-01 a 0.00E-01 s 0.00E 01_%___ s 0.00E-01 -+: __ _ __ _ _ _ e _ _ _ p . _ _ _ _ % _ __ _ s __ _ _w __ _ _ w . __ _+ _

         'Y SR 90                       s                                                                                                                           s 0.00E_01 s 0.00E-01 s 0.00E-01 s 0.00E-01 a-+
                                                                                                                                                                                                        +__________+_________#______-

3________+_' l .39E 10 s 1.64E 09 s 5.67E 10 s 0.00E-01 ________w________+_________+_________+______-- 0.00E-01  : I 131 s 1.43E 08 s 6.59E 07 s 1.74E 08 e 2.50E 08 s 4.28E 08 s 8.lBE 10 8 0.00E-01 _ __ _ + __ ___ _ s ____ _ _ p ___ _ _ w _ ____ _ s __ _ _ o _ _ _ __ -o_ _ __ __ o_ __ _ %_ I 1 33 s 1.26E 06 s 3.71E 06 s 2.37E 06 w I 4.13E ___.__ 06. p 7.2iE __ ___ 06 s 6.07E 08 s 0.00E-01 s 0.00E-01 : e ______ w_ ____ _+____ _____+ ___ _____w_____ p_ ___ w ____ CSl34 s 1.72E 10 s 3.69E 08 s 8.85E 09 s 2.llE 10 g 6.82E 09 s 0.00E-01 s 2.26E 09 s 0.00E-01  :

               .__                     _w____p_____.__+_______w_____+_______p________w______w__                                                                                                                                                                                            _#

CSl37 s 1.10E 10 s 3.25E 08 s 1.23E 10 s 1.68E 10 I 5.70E 09 : 0.00E-01--o_______ ________o____ ____p__ _____o_ s 1.89E 09  %-_: 0.00E-01 :+ __ _____o____. p__ _ _ + ____ 3 cR2VALUES IN UNITS OF MREM /YR PER pCI/M FOR INHALATION AND TRITIUM, AND IN UNITS OF M -NREN/YR PER PCI/SEC FOR ALL OTHERS I t i t 4 e

 ----                  - . - - - - -      __.__________m___----_________--w                              ----_--__a           _4e.          m .i. m-m-        %..-w,%    e-_  - - - - -,-ee.m---              ,_m,%_,me-e .e e            %.r-w.m   ,e   >w----,ea--      w'    ww--         --v-y     w         - - --
  • w --
                                 . TABLE 3.3-14     R VALUES FOR THE PRAIRIE ISLAND NUCLEAR OENER ATING PLANT
  • PATilWAY = 00ATMILK AGE OHOUP EQUALS TEEN NUCLIDE T. BODY GI-TRACT BONE LIVER KIDNEY THYROID LUNO SKIN
                                      +____       __+     ____._+______+__                               _
                                                                                                                  +___-___+_________+________+_______+

H 3 ___- as 2.04E 03 +s -2.04E 03 s 0.00E-01 s 2.04E 03 s 2.04E 03 s 2.04E 03 s 2.04E 03 s 2.04E 03 : __+ ____ _+____.__ _+ _ _ -__+--- ___ _ +____ _ __+--_- - _ _ + C 14 s 1.35E 05 s 1.35E 05 I 6.75E 05 s 1.35E 05 s 1.35E 05 s 1.35E 05 s 1.35E 05 s 1.35E 05 s

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

MN 54 s 1.71E 05 s 1.77E 06 s 0.00E-01 s 8.64E 05 s 2.58E 05 0.00E-01 s 0.00E-01 s 0.00E-01 : _____+__.__+______t_ __+ _____+___.____+____ ___+__-__+-______+ FE 59 s 2.83E 05 s 1.74E 06 I 3.14E 05 s 7.34E 05 s 0.00E-01 s 0.00E-Ol : 2.3lE 05 s 0.00E-01.s ________+__ ___+____ ___+. _____+________+________,_______+_____+____ +, CO 58 s l.04E 06 s 6.25E 06 s 0.00E-01 s 4.53E 05 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 _ ___ _+ _ ___ _+ ___ _+___ +_____.___4_ _ _

                                                                                                                              +__      _ _ _ + _ _ .       +____           +

CO 60 s 4.02E 06 s 2.32E 07 0.00E-01 : I.78E 06 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 _ ____ -+_____._ +- __

                                                                           + _- ____ _+ ______ 4__                    .       +   _ ___ #_         __ _+_ _____            +

w SR 89. s 7.59E 07 s 3,16E 08 s 2.65E 09 s 0.00E-01 0.00E-01  : 0.00E-01 s 0.00E-01 s 0.00E-Ol i- __+_____ -+_ ___ __+_ _ ____ + __ __+ ______ +_ _ ______4____ _ ___+ ___.__ + U SR 90 s I.98E lo 2.'25E 09 s 8. ole 10 s 0.00E-01 s 0.00E-Os 1 0.00E-01  : 0.00E-0_I  : 0.00E-01  : _________+__________+-_________+-____ ___+_____ __+________+___-__-_+_________+___ +

                         ! 131

_ _ _ _ _ _ _ +s 2.38E 08 s 8.77E 07_+ _-___+___.__ a ____ 3.17E__08 s 4.43E 08 I 7.63E 08 s 1.29E 11 s 0.00E-01 : 0.00E-01 :

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

I i33 s 2.24E 06 I 5.57E 06 s 4.34E 06.I 7.36E 06 : I.29E 07 s I.03E 09 : 0.00E-01 0.00E-01 : _ _ _ - - +-______+-___ _+ ______+____._ 4-____.__+_______+_______.+ __+ CS134 s 1.68E lo_ s+ 4.50E 08 s 1.54E 10 s 3.62E 10 s 1.15E 10 s 0.00E-01 s 4.39  :

                            .-       +_                 _ _ _ __ + ____ ___ g. _ __ _                         _ + _ __ __ __ + __ _______ + _      _E  0 9 s 0 . 00E-01

_____4 ___ _ - + , CSi37 s 1.03E 10 s 4.2iE 08 s 2.22E lo 2.96E 10 1. ole 10 s 0.00E-01 s 3.91E 09 s 0.00E-01 :

_____+--______+_______+_- _+___ + _ _ + __ ___+ _ + +

cih VALUES IN UNITS OF MREM /YR PER pCI/M FOR INHALATION Ato TRITIUM, AND IN UNITS OF M -MREN/YR PER pCI/SEC FOR ALL OTHERS 1 1

s s TABLE 3.3-15 H VALUES FOR THE PRAIRIE ISLAND NUCLEAR GENERATING PLANT

  • PATHWAY = GOATMILK  :

AGE GHOUP EQUALS CHILD NUCLIDE T. BODY GI-TRACT BONE LIVER KIDNEY THYROID LUNG SKIH ________+__-______+_________-+-_______+______ +--- -- --+_______+-____--__+____- + H 3 3.23E 03 s 3.23E 03 s 0.00E-01 s 3.23E 03 s 3.23E 03 3.23E 03 s 3.23E 03 __+-__---_ 3.23E 03 : ________+--_____--+____ _ _+_ _____+__-___ +_______+-______+ _ + C I4 .: 3.32E 05 s 3.32E 05 I.66E 06 s 3.32E 05 s 3.32E 05 3.32E 05 s 3.32E 05 s 3.32E 05 s _______+_____ +__-___ +_ ____+______ +_____---__+_______ +_________+_____ + MN 54 s 3.44E 05 s 1.08E 06 s 0.00E-01 1.29E 06 I 3.62E 05 s 0.00E-01 0.00E-01 s 0.00E-01 : _________+______ _ +______ + -_____ +_-____ +______ +______-__+__________+___-__ + FE 59 I 5.88E 05 s 1.23E 06 I l.29E 05 g 1.18E 06 s 0.00E-01 s 0.00E-01 s 3.42E 05 0.00E-01 : ________+_________+_________ ,________+-___ - _ _ + _ _ _ _ _ _ _ + _ _ _ _ _ + _ _ - _ _ _ +______ + CO 58 l.2.12E 06 s 4,04E 06 3 0.00E-01 s 6.92E 05 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 : _______+--_______+_________+-______+_________+--_____ +_________+_________+____ _ _+ CO 60 s 8.17E 06 s 1.53E 07 s 0.00E-01 s 2.77E 06 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 :+ ________t________+_________+_______ _+____ +__-___ +________+--__-__-+_-____ , SR 89 s 1.87E 08 8 2.54E 08 s 6.56E 09 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 s.0.00E-01 : _________+_________+________--+________+-__---__+---___-+-_-----+-------_-+--_----_+ SR 90 s 3.43E 10 s 1.82E 09 s 1.35E ll 0.00E-01 s 0.00E-01 0.00E-01 s 0.00E-01 0.00E-01 s u-_______+______-__+________+________+_______ +-______ _ +____-____+________+ --______+ 4I 131 8 4.39E 08 5 6.88E 07 s 7.68E 08 s 7.72E 08 s I.27E 09 s+2.55E 11 0.00E-01  : 0.00E-01 s u________+_______ +________+_________+_________+______ -_________+____ _ + - _ _ + I'133  : 4.93E 06 I 5.25E 06 s 1.05E 07 s 1.30E 07 s+_______ 2.17E 07 s+ 2.42E 09 -+________ s 0.00E-01_ s+_____-. 0.00E-01 +: _________+_________+_________+_________+-______ CSl34  : 1.23E 10 s 3.14E 08 s 3.55E 10 s 5.82E 10 s 1.80E 10 s 0.00E-01 s 6.47E 09 s 0.00E_01 : ________+_________+____-____ +_____ +_________+_______+________#__________+__________+ CSl37 s 7.57E 09 s 3.21E 08 s 5.36E lo 5.13E 10 s 1.67E 10 s 0.00E-01 6. ole 09 s 0.00E-01 : __ ,-_____ + ________+_________+_________#.:.________+________+__________+___ +_______-

 *02VALUES IN UNITS OF MREN/YR PER pCI/M                    FOR INHALATION AND TRITIUM, AND IN UNITS OF M -MREN/YR PER pCI/SEC FOR ALL OTHERS 9
        -    ._        __     _.w , . . ,    _                      ,- . , - - - , -            -      - _               ,-             -        . - - . -                          _ _ - _ _ _ - _ _ _

TABLE 3.3-16 R VALUES FOR THE PRAllt!E ISLAND NUCLEAR GENER ATING PLANT

  • PATHWAY = GOATMILK
        . AGE OROUP EQUALS                                     INFANT NUCLIDE             T.80DY                                 01-TRACT                      80NE                   LIVER                                  KIDNEY                     THYROID                                     LUNG               SKIN
       --____-__+--__-___-_t__________+____--____+_-________+__________+______---_+__________+__________+

H .3 s 4.90E 03 s 4,90E 03 s 0.00E-01 s 4.90E 03 s 4.90E 03 8 4.90E 03 s 4.90E 03 s 4.90E 03 s

       ---______+----__                                         + - _ _ _ _ ------+__________+__________g-______                                                                  +-_________+__________+.___-_____ ,

C- 14 s 6.94E 05 s 6.94E 05 8 3.2SE 06 I 6.94E 05 s 6.94E 05 s 6.94E 05 s 6.94E 05 4 6.94E 05 s ________+---_____+_______+_________+____-____-+_-______+________+_________+____--_-_+ MN'54 s 5.45E 05 s 8.83E 05.8 0.00E-01 s 2.40E 06 5.33E 05 s 0.00E-01 s 0.00E-01 s 0.00E-01 s q _________+___-______+__________+__________+__________+-_________+______-___.-_________._-_-______. FE 59 ' s' 9.37E 05 s 1.14E 06 s . l .36E 06 s 2.38E 06 s 0.00E-01 s 0.00E-01 t 7.03E 05 s 0.00E-01.s _________+-__- ___+--________,-____-____+__________+___-___ +__________+______--__+__________+ 100 Sa s 3.45E 06 s 3.45E 06 s 0.00E-01 _________+_---______,_-________,-________-,s 1.38E 06 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 s __________+__________+______-___+_________-+-_________+ CO 60 s 1.34E 07 I l.35E 07 s 0.00E-01 s 5.65E 06 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 s __+__________+__________+.~________,__________+__________+__________+__________+ ___--_-_-+_____ y SR 89 s 3.58E 08 s 2.57E 08 - s 1.25E 10 s 0,00E-01 s 0.00E-0! s 0.00E-01 s 0.00E-01 s 0.00E-01 : w__-______+_________-,__---_____#-______-__+._____---_+__________+-_________+________-_+_____--___+

  • SR 90 s .3.75E lo s 1.84E 09 s 1.47E II .: 0,00E-Ol' s 0.00E-01 s 0.00E-01 s 0.00E-01 s 0.00E-01 s

__-_-____+--__-_____+____--___+-----_____+-_________+________.._+_-________+-_-_______+________--+ I 8.31E 08.I 6.74E 07 I l.60E 09 s 1.89E 09 I 2.21E 09 s 6.2iE ll s 0.00E-01 s+-______ 0.00E-Oi :+ I 131

       -__---__-+__-__--__-+-_________+____-__                                                             +-_---__                                 +__________+__----____+_-_----

I 133 9.49E 06 s 5.48E 06 s 2.23E 07 3.24E 07 s 3.81 E 07 s 5.89E 09 s 0.00E-01 s 0.00E-01 s ___-- _+__-____---+__________+______-___t--________+---__-____+-_________+_______-__+___----___+ CS134 s 1.08E 10 s~ 2.89E 08 s 5.71 E 10 s 1.07E ll 8 2.74E 10 s 0.00E-08 s 1.12E 10 1 0.00E-01 s

       -----____+____---                                        +__---_____+__________+__________+__________+__________+__________+__________+

CSl37 s 7.10E 09 s 3.13E 08 s 8.55E 10 s 1.00E ll s 2.69E 10 s 0.00E-01.s 1.09E.10 s 0.00E-01 : ___-_____+__________+_________-+___--_____+ _________+-_________+__________+__________+__________+

       *R VALUES IN UNITS OF MREM /YR PER pCI/M 3 FOR INHALATION AND TRITIUM, AND IN UNITS OF M -MREM /YR;PER pCI/SEC Full ALL OTHERS e
                        .,.v    v i-.- - --- , - . - = - - . .                   .---.-vw.r.--rve    - - -  <-,-----,-*,v.--  . . - - . - . , - - . . - - , .-
                                                                                                                                                                                    .-----------,-..-,.-------,...--,---r. _                =_ -,            .-r., - ... . _-_

r r f N N \ TABLE 3.3-17 R VALUES FOR THE PRAIRIE ISLAND NUCLEAR GENERATING PLANT

  • PATHNAY = INHAL A0E GROUP EQUALS ADULT NUCLIDE T. BODY GI-TRACT BONE LIVER KIDNEY THYROID LUNG SKIN
         . _ ___    _#______                _+ ________ +-_________,__________+ _________+____ __                                                +-________+_______+

H 3 s 1.26E 03 I 1.26E 03 s 0,00E-01 : 1.26E 03 s 1.26E 03 8 1.26E 03 s 1.26E 03 s 1.26E 03 ________ + _____ _+ ____ _+____...____+___._ ___+_.t ____ + __,. __.+ __ ______+____ -+ MN 54 0.00E-01 : __ ___ s _____

                         +  6.29E _03       - +s_7.72E

_ _ _04_ _ s'.O.00E-01

                                                               +. _ _ _ _ _ _ +s_3.95E _       _ _04+ _8 _ _9.83E

_ _ _ _ _03_ +s_ 0.00E-01 _ _ _ _ _ _ _ _s+1.40E _ _ _ _ _06 ____+______+ FE 59 s 1.05E 04 -s 1,88E 05 s 1.17E 04 s 2.77E 04 1 0.00E-01 s 0.00E-01 s I. ole 06 s 0.00E-01 : _____.___+___ _____+_ _____-+ _ __ __+ _ _____+- __ ___+______.___+ __ ______+________+ CO 58 . 2.07E 03 s I.06E. 05 s 0.00E-01 : I.58E 03 I 0.00E-01 0.00E-01 e.9.27E 05 s 0.00E-01 ____._+_______+_ _ , _ _ _ _ _ _ _ + _ _ _ _ _ . __+______+-________+ _____+________+ CO 60 .s 1.48E 04-I 2.84E 05 s 0.00E-01 s 1.15E 04 s 0.00E-01 s 0.00E-01 s 5.96E 06 s 0.00E-01 s ___. __+ ______+_____ ___+ _________+ __+____ ___+_ ___ -+-______ + ______ _+ SR 89 I 8.71E 03 s 3.49E 05 s 3.04E 05 s 0.00E-01 s 0.00E-01 s 0.00E-01 : .l.40E 06 0.00E-01 : _____+-_______+ ______ +-- ____+ _______+ ____-_+-_____ .+- .___+_______+ . SR 90 6.09E 06 s 7.2iE 05 s 9.91E 07 s 0.00E-01 s 0.00E-01 s 0.00E-01 s 9.59E 06 s 0.00E-01 : y -______ _+_____ +________+______ +__________+__________+__________+____ ___+-_________. g I 131 s 2.05E 04 s 6.27E 03 8 2.52E 04 ,__________+_______ s 3.57E 04 s 6.12E 04 s 1.19E 07+__________+____ s 0.00E-01 : 0.00r ol _________+-________,_ _____ -+____._ +____.___ I 133 s 4.5lE 03 5 8.87E 03 5 8.63E 03 s.l.48E 04 s 2.58E 04 s 2.15E 06 s 0.00E-01 0.00E-01 s ___+ ,+_ _ +-___ _ __+ ___ _+ _ . __ + _ ___ _+ _ ____ +_______ __+ CS134 s 7.27E 05 s 1.04E 04 s.3.72E 05 I 8.47E 05 s 2.87E 05 s 0.00E-01 8 9.75E 04 3 0.00E-01 : _______+________+_________+ _____+___.__ + _ __ _ _+____ ____+___ _____+______.____, CSl37 s 4.27E 05 s 8.39E 03 s 4.78E 05 6.20E 05 3 2.22E 05 s 0.00E-01 s 7.5lE 04 s 0.00E-01 : _____#___- +_____._ +__ _ ____.+ __ __ _+-- __ __ + .,.___+______ _ _+_____ ___+ 3 cR2VALUES IN UNITS OF MREN/YR PER pCI/M FOR INHALATION AND TRITIUM, AND IN UNITS OF M -MREM /YR PER pCI/SEC FOR ALL UTHERS -

J

O .
                                                                                                          . TABLE 3.3-18 . R VALUES FOR THE PRAIRIE ISLAND NUCLEAR OENERATING PLANT
  • PATHrfAY = INHAL 2 AGE GROUP EQUALS TEEN NUCLIDE T. BODY . OI-TRACT BONE LIVER KIDNEY THYROID LUNO SKIN

_ _ _ _ _ _ _ + _ _ _ _ _ _ _+ ____. ___+_________+_ --___+-_____- +__________+_________+________+ H 3 s 1.27E 03 s 1,27E 03 s 0.00E-01 I 1.27E 03 s 1.27E 03 1.27E 03 s 1.27E 03 s 1.21E 03 ________+____._ +_______ +________+.._________+__ -___ +__________+_____-__<_________+ MN 54 I 8.39E 03 s 6.67E 04 s 0.00E-01 I 5.10E 04 I 1.27E 04 I 0.00E-01 s 1.98E 06 s 0.00E-01 _______-+____-- -+ ______+_________+_.-_____-_+_________+__________+_________+___--____+ FE.59 s 1.43E 04 s.l 78E 05 s l'.59E 04 s 3.59E 04 s 0.00E-01 0.00E 01 8 1.53E 06 s 0.00E 01 : (____ _ _ + - -_-____+ --_---_ +_ __--___+____-- ___+________--+- _ - __ +__-____ -+ CO 58 s 2. 77E 03 s 9.5lE 04 s 0.00E-01 e 2.072 03 ; 0.00E-04 s 0.00E-01 6 1.34E 06 s 0.00E-Ol;I _____ __#_ . _ _+ _ _+___-- __+ . ___.__+-________-+-_ ____ -+__ _--__+ _- ____+ CO 60 s 1.98E 04 s 2,59E OS's 0.00E-08 I l.53E 04 s 0.00E-01 I 0.00E-01 I 8.71E 06 s 0.00E-01 : _ _ -_- +----- --_+_- _ _ + _ --___--+_-_ -- + _ -_ _ + - _ ____+__- __ --+_-__ ___u +

                                                      .SR 89                                                    s 1.25E 04 s 3.71E                        05 3 4.34E 05 s 0.00E-01 s 0.00E-01 s 0.00E-01_+____-___+                                                      s 2.41E 06 s 0.00E-01          _______+

s

                               ,_______--+_____ ___+--____ __+__                                                                                                                   __--+ ___-_                        -+- ____                      +___

4 SR 90 s 6.67E 06~I 7.64E 05.s 1.08E 08 s 0,00E-01 s 0.00E-01 s 0,00E-01 s 1.65E 07 s 0.00E-01 m______-+_--__+__-___+___-__-+_____+-______-+_________+___ - +. ______+ I 131 s 2.64E 04 I 6,48E 03 s 3.54E 04 s 4.90E 04 I 8.39E 04 s 1.46E 07 0.00E-01 s 0.00E-01 : __ ____+ _ __ -_+ __ -____+ _____ _#___-__ __#___._ ___+__ ______+__--_ _ __+ _______ -+ I< 133 s 6.2iE 03 I l.03E 04 s 1.21E 04 s 2.05E 04 s 3.59E 04 s 2.92E 06 s 0.00E-01 s 0.00E-01 s

                                                    -_______+-_____--- +__                                                                             __-_+________+_ _ _-__ +__                                                         _

__+__ -_ __+__________#__________+ CS134 I 5.48E 05 I 9.75E 03 s-5.02E 05 s 1.13E 06 s 3.75E 05 s 0.00E-Ol 1.46E 05 s 0.00E-01 : __ _____+-_________+__ ___ __+__ ___ . _+- _____ + - - - - _ _ +__ _____ _+_____ __ _+ ___-- ___+

                                                    .CSl37                                                      I ~3.IIE 05               8.47E 03 s 6.69E 05 s 8.47E 05 I 3.04E 05 s 0.00E-Ol s 1.2tE 05 s 0.00E-01 :

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

                                                 *R2VALUES IN UNITS OF MREN/YR PER pCI/M                                                                                                      FOR INHALATION AND TRITIUM. AND IN UNITS OF M -MREN/YR PER pCI/SEC FOR ALL .0THERS
. _ _ _ _ _ _ _ _ _ _ . _ _ _ _ _ _ _ . _ _ _ _ . . _ _ _ . _ _ _ _ _ _ _ _ . _ _ _ _ _ . _ _ _ _ _ _ _ _                                  _ _ _ _ _                     _____________m_                   . m___.____,_____,_._e,,.          --     _     --    .  ,r sw. --.m.-.-w..     ,,-.. . m.  - - _ . . ,-
                                                                                                                                                                                                                                                                                                                         .- - - - - - - + + - , - ,

O O O TABLE 3.3-19 R VALUES FOR THE PRAIRIE ISLAND NUCLEAR GENERATING PLANT

  • i PATHNAY = INHAL '

A0E OROUP EQUALS CHILD LUNG SKIN GI-TRACT BONE LIVER KIDNEY THYROID NUCLIDE T. BODY _______e_________e________p_____.____s_________p_______+__________%____ --p __._ _____+ H 3 s 1.12E 03 I l.12E 03 s 0,00E-01 s 1.12E 03 : 1.12E 03 s 1.12E 03 s 1.12E 03 s 1.12E 03 s+ _r_____p_______+-_____ w _ _ __ _ o ___ _ _ _w _ _ _____ w _ _ __ ____ o __ _ __ ____ % _ _ _ __. 1.57E 06 0.00E-01 s ps _____ 9.50E _+____ 03 I 2.29E ____04w s_________ 0.00E-01 % s 4.29E 04 s %1.00E 04 s w 0.00E-01 MN 54 ____ _ ____;;.___ ___ ____ ___ ____.w __._______ o _________+ FE 59 s 1.67E 04 3 7.06E 04 s 2.07E 04-1 3.34E 04 w______w________w_________%_______+  : 0.00E-01 s 0.00E-01 s 1.27E 06 3 0.00E-01 : ________p______ _ w____ s ________ w_ ___ CO 58 s 3.16E 03 3 3.43E 04 s 0.00E-01 I 1.77E 03 s 0.00E-01 s 0.00E-01 : I.10E 06 s 0.00E-01 s _w_______p_______e________o________e________o______+ ___ _____e____ ___ e ___ CO 60 3 2.26E 04 s 9,6lE 04 3 0.00E-01 8 1.31E 04 I 0.00E-01 : 0.00E-01 s 7.06E 06 s% 0.00E-01 I _______e_______e_______p________o_______w________p___ o __ _ . - _________+ SR 89 s 1.72E 04 s 1.67E 05 s 5,99E 05 s 0.00E-01 s 0.00E-01 s __ 0.00E-01 s 2.15E 06 3 0.00E-01 __ ____+__ w __ _____ w __._._ ___+ __ ____+ ______ __ __ __o _ _ __ o_ _ ___ __ + s 6.43E 06 s 3,43E 05 I 1.0IE 08 s 0.00E-01 s 0.00E-01 0.00E-01 I l.47E 07 0.00E-01 s

                  , SR 90                                                                        _ __  p_ _ _    __ __                w            _         _   __  __ o  _ __  _ ____   s     _ __ _                    o _ __ __ _ _ _ o __ _ __ _ _ _ s _ _ _ _ _ +
                     .________w
                . . I 131                                                                 s 2.72E 04 s 2.84E 03 3 4.80E 04 8 4.80E 04 I 7.87E 04 s I.62E 07 3 0.00E-01 s 0.00E-01 s

_________e_____ +__________+_____._____+ _________+-________ +__________+-________ +____ _ ____+ 1 133 s 7.68E 03 I 5.47E 03 : 1,66E 04.I 2.03E 04 i 3.37E 04 I 3.84E 06 s 0.00E-Ol : 0.00E-01 : _______ _ e ____ ___ s _ _ _ _ _ _ _ s_________ w _ _____w______  %- _ _ __ __ o _ _ _____w _ __ __ _ + CSl34 s 2.24E 05 s 3.84E 03 I 6.50E 05 p_ s 1.0IE 06 s+___ 3.30E __ 05 ___+_s 0.00E-08 __ ____ Iwl.21E ______05 ws 0.00E-01 ______ s+ ________e_______+ w __ __ - -- CSl37 1.28E 05 8 3,61E 03 s 9.05E 05 s 8.24E 05 s 2.02E 05 0.00E-Ol i 1.04E 05 s 0.00E-01 -+ _____w__.- t----------h-------h----- 6- --------h--------h--------h------- , 3 elLVALUES IN UNITS OF MREM /YR PER pCUM FOR INHALATION AND TRITIUM, AND IN UNITS OF M'-MREM /YR PER pCI/SEC FOR ALL OTHERS I l

4 TABLE-3.3-20 R VALUES FOR THE PRAIRIE ISLAND NUCLEAR OENERATING PLANT *

               . PATHWAY = INHAL AGE GROUP-E00ALS                                 INFANT NUCLIDE                                  T.800Y            OI-TRACT             BONE                  LIVER                   KIDNEY                              THYROID                         LUNO         SKIN

_______+-__------+-_---_--__+-________+ __-__+__________#-___----__+_________+----_-___+ H -3 I 6. 46 E . 02 I 6.46E 02 s 0,00E-01 s 6.46E 02 s 6,46E 02 8 6.46E 02 s 6.46E 02 s 6.46E 02 s

               --_--                        -+-__-___               +--_____             +--_-____--+----_____-+_______                                                         +__________+_________-+-______-__+

MN 54 s 4.98E 03 I 7,05E.03 s 0.00E-01 g 2.53E 04 s 4.98E 03 s.0.00E-01 s 9.98E 05 0.00E-01 s

               --______+_________+-----____+-________+---______+-_______+_-_______+-_-_-___+-___-__                                                                                                                                             +

F E . 59 s 9.46E 03 +-___,_____+__-______-+--__-- _'_______+--____. I 2.47E 04 s 1.35E 04 i 2.35E 04 s 0.00E-01 s 0.00E-01 s 1. ole 06 s 0.00E-01 s

                                                                                                                                        --+_________+-----_--__+-_-__--_ _+--__ -                                                               +

CO 58 s'I.82E 03 I I.IIE 04 g 0.00E-01.I I.22E 03 s 0,00E-01 s 0.00E-01 s 7,76E 05 s 0.00E-01 s. J _____---_+________+-________+-________-+----____+_________+________+--_-_---_+_______+- CO 60 s;l.18E-04 s s 0.00E-01 s 8.0IE 03 g 0.00E-01 s 0.00E-01 s 4.50E 06 s 0.00E-01 s _ _ _ __ ___ + ----___________--_+----_-_-_ + _3 . 1 9 E 0 4 +_____ _ __+___--____+-__ _____+_ _______+__ _ _____ + SR 89 s 1.14E 04 I 6,39E 04 s 3.97E 05 s 0.00E-01 s 0.00E-Ol s 0.00E-01 s 2.03E 06 s 0.00E-OI s _______+--_ _--__+__----___+ ---___ -+-____----+---___ ___+_________ +--______ _+________ _ + SR 90- I-2.59E 06 I l.3lE 05.I-4.08E 07 0.00E-01 1 0.00E_01 s 0.00E-01 s_l.12E 07 : 0.00E-01 s-y__I ______ +__ ______ +_________ +-_--_____ +-_____ __+------- + _ ___-___ +-_-______+-_-_____ + g 131 I l.96E 04 s 1,06E 03 I 3.79E 04 s 4.43E 04 s 5.17E 04 s 1.48E 07 s 0.00E-01 : 0.00E-Ol's _______+______ +--______-_+--_______-+__________+_______ _ + - _ _ _ _ _ _ _ _ + - - - _ _ _ _ _ _ + - _ _ _ _ _ _ _ _ _ + I 133 8 5.59E 03 g 2.15E 03. s 1.32E 04 I l.92E 04 s 2.24E 04 I 3.55E 06 s 0.00E-01 0.00E-01 s

               ---____-_+----__-__+_--____-__+__________+______                                                                            -+-------__+_--____                                 +----__                     +________+

CS134~ s 7.44E 04 I l .33E 03 s 3.96E 05 s 7.02E 05 .s 1.90E 05 1 0.00E-01 : 7.95E 04 s 0.00E-01 s ______---+---__--__+---______+-----____+__________+-___-____+-________+________+---___ + , CSl31 . s '.4.5 4E g I,33E 03 s - 5.48E 05 s 6. ll E 05 s 1.72E 05 s 0.00E-01 s 7.12E 04 s 0.00E-01 :

              ._________+-____-_'04                             -_+____---              -+-_______--+__________+---______+__--______+__________+__---_____+

cR2VALUES IN UNITS OF MREM /YR PER pCI/M FOR -INHALATION AND TRITIUM, AND IN UNITS OF M -NREN/YR PER pCI/SEC FOR ALL- O_rNERS 4 l _-__ _ _ - - _ _ _ . _ _ _ _ _ ___ - - _ _ - - _ _ - - - ~ - - - - _ , - - _ _ _ - - _ . - - - - - _ - -

                                                                                                                                                                                             -    ,--------,-----+-e--             -~,--n.v-~       ---

4.0 INFORM ATION RELATED TO 40 CFR 190 AND 40 CFR 141 The PNGP Technical Specifications indicate that if twice the per unit limits of 10 i l CFR 50, Appendix I are exceeded, a special report is required. Therefore, if twice - l l the annual limits of Equations 2.3-6, 2.3-7, 3.3-1, 3.3-2 or 3.3-3 are exceeded, the i

licensee shall prepare and submit a Special Report to the Commission and limit l subsequent releases such that the dose or dose commitment to a real individual i
! from all uranium fuel cycle sources is limited to <25 mrem ~to the total body or any organ (except the thyroid, which is limited to < 75 mrem) over 12 consecutive

! months. This special Report is to include an analysis which demonstrates that radiation exposures to all real individuals from all uranium fuel cycle sources  ; (including all liquid and gaseous effluent pathways and direct radiation) are less l than the standards in 40 CFR Part 190, Environmental Radiation Protection Standards for Nuclear Power Operations, if analysis indicates that releases re-sulting in doses that exceed the 40 CFR 190 Standard may have occured, then a  ; variance from the Commission to permit such releases will be obtained.' The l Standard Technical Specifications 3.11.1.2, 3.11.2.2 and 3.11.2.3 consider doses to a

                                                                                      ~

real individual and apply to each reactor but do not include any other portion of the uranium fuel cycle or direct shine from the reactor.  ! The " Uranium fuel cycle"is defined in 40 CFR Part 190.02(b) as:

         " Uranium fuel cycle means the operations of milling of uranium ore, chemical conversion of uranium, isotopic enrichment of uranium,                                      l fabrication of uranium fuel, generation of electricity by a light-                                   ,

water-cooled nuclear power plant using uranium fuel, and repro-  ! cessing of spent uranium fuel, to the extent that these directly 1 support the production of electrical power for public use utilizing i nuclear energy, but excludes mining operations, operations at waste  : disposal sites, transportation of any radioactive materialin support of  ! these operations, and the reuse of recovered non-uranium special 1 nuclear and by-product materials from the cycle." , r I , l 1 l 4-1 Rev.1 l [ + 3

1 s

The Special Report uill contain: A determination of which uranium fuel cycle facilities or operations,

1) ,

in addition to the nuclear power reactor units at the site, contribute to the annual dose to the maximum exposed member of the public. Only those other fuel cycle facilities within 5 miles of PNGP need be considered. No such facilities exist or are planned at present.  ;

2) A determination of the maximum exposed member of the public as ,

given for determining compliance with 10 CFR 50, Appendix 1. 1

3) A determination of the total annual dose to this person from all existing pathways 'and sources of radioactive effluents using the methodologies described for compliance with 10 CFR 50, Appendix 1 in this ODCM. Where additional information on pathways and '  ;

nuclides is needed, the best available information will be used and documented. ,

4) A determination of the dose resulting from direct radiation from the plant and storage facilities. .

The various organ doses resulting from liquid effluents from the PNGP will be summed with the organ doses resulting from releases of noble gases, radiciodines and particulates. These doses will be based upon releases from the PNGP during , the past 3 quarters and from the quarter in which twice the specification was exceeded. The doses from the PNGP will be summed with the doses to the max-imum exposed individual contributed from other operations of the. uranium fuel'- cycle.

                                                                                                                              )

The direct dose components will be determined by either calc 21ation or actual 4 measurement. The N-16 component of direct radiation.may be' calculated using SKYSHINE, A Computer Procedure for Evaluating Effects of Structure Design on_ N-16 Gamma-Ray Dose Rates, Radiation Research Associates,' Inc. Report RRA-T7209, November 1972. (Available in the NSP-NSS 1.ibrary). The calculation or actual measurement will be documented in this Special Report. O ' 4

                                            .4-2 e

If the quarterly or annual doses due to liquid releases exceed the values listed in Section 2.3.3, a special report shall be submitted to the USNRC and shall include 2 information related to 40 CFR 141 such as analysis of Mississippi River water and [ an analysis of possible impacts through the drinking water pathway, f 9 F I r l; I I I O t r l-n i i i i l i i f . l l f 4-3  : i i

5.0 - RADIATION ENVIRONMENTAL MONITORING PROGRAM O 5.1 Sampling i Table 5.1-1 and Figures 3.1-1 5.1-2, and 5.1-3 specify the current sampling  ! locations based on the latest land use census. l If it is learned from an annual census that milk animals or gardens are present at a location which yields a calculated thyroid dose greater than those previously sampled, the new milk animal or garden locations resulting in higher ' calculated doses shall be added to the surveillance program as soon as practicable. Sample  : locations (except the control) having lower calculated doses may be dropped from the program at the end of the grazing <>r growing season (October 31) to keep the total number of sample locatioris cons . ant. 5.2 Interlaboratory Comparison Program Analyses shall be performed on radioactive samples supplied by the EPA crosscheck  ; program. This program involves the analyses of samples provided by a control laboratory and comparison of results with those of the controllaboratory as well as  ; with other laboratories which receive portions of the same samples. Media used in this program (air, milk, water, etc.) shall be limited to those found in the radiation . environmental monitoring program. The results of analyses performed as a part of the crosscheck program shall be included in the Annual Radiation Environmental Monitoring Report. t O 5-1 Rev.1

b l l TABLE 5.1-1 f r PRAIRIE ISLAND NUCLEAR GENERATING PLANT RADIATION ENVIRONMENTAL MONITORING PROGRAM  ; SAMPLING LOCATIONS t Type of ,  ! Sample Code Collection Site Location c River Water P-5 Upstream of Plant 0.6 mi @ 60 /ENE River Water P-6 Lock & Dam #3 1.6 mi @ 129 /SE ' Drinking Water P-il City of Red Wing 7.1 mi @.135 /SE c Well Water P-25 Kinneman Farm 11.1 mi @ 331 /NN_W l Well Water P-6 Lock & Dam #3 1.6 mi @ 129 /SE ( Well Water P-8 Kinney Store 2.0 mi @ 280 /W  ! Well Water P-9 Plant Well #2 0.3 mi @ 306 /NW c l Sediment-River P-S Upstream of Plant 0.6 mi @ 60 /ENE [ Sediment-River P-6 Lock & Dam #3 1.6 mi @ 129 /SE ' l Sediment-Shoreline P-12 Recreation Area 3.4 mi @ 116 /ESE  ; Periphyton or c P-S Upstream of Plant Macroinvertebrates P-6 Lock & Dam #3 0.6 mi @ 60 fENE 1.6 mi @ 129 /SE c Vegetation- Aquatic P-S Upstream of Plant 0.6 mi @ 60 /ENE + Vegetation-Aquatic P-6 Lock & Dam #3 1.6 mi @ 129 /SE Fish C P-3 Upstream of Plant 0.6 mi @ 60 /ENE i Fish P-6 Lock & Dam #3 f 1.6 mi @ 129 /SE Milk C P-23 Kinneman Farm 11.1 mi @ 331 /NNW . Milk P-14 Gustafson Farm 2.2 mi @ 168 /SSE . Milk P-16 A Dosdahl Farm 2.5 mi @ 39 /NE , Milk P-17 Place Farm ' 3.5 mi @ 25 /NNE. Milk P-18 Birk Farm 3.5 mi @ 181 /S c Topsoil P-I Air Station P-1 16.5 mi' @ 348 /NNW t Topsoil c , P-2 Air Station P-2 10.9 mi @ 47 /NE i J I 5-2 Rev. I

  • h

TABLE 5.1-1 (continued) PRAIRIE ISLAND NUCLEAR GENERATING PLANT RADIATION ENVIRONMENTAL MONITORING PROGRAM  ; SAMPLING LOCATIONS Type of . Sample Code Collection Site Location , Topsoil P-3 Air Station P-3 0.8 mi @ 313 /NW Topsoil P-4 Air Station P-4 1.6 mi @ 129 /SE Topsoil P-14 Gustafson Farm 2.2 mi @ 168 /SSE Topsoil P-15 Downwind Field 0.6 mi @ 162 /SSE Topsoil P-19 Commissory Point Park 1.0 mi @ 156 /SSE Topsoil P-20' Meteorology Station 0.4 mi @' 296 /WNW i Topsoil P-24 H Larson Residence 1.6 ml @ 287 /WNW c Vegetation-Natural P-25 Kinneman Farm 11.1 mi @ 331 /NNW Vegetation-Natural P-14 Gustafson Farm 2.2 mi @ 168 /SSE Vegetation-Natural P-15 Downwind Field 0.6 mi @ 162 /SSE Cultivated Crops c (Leafy Green Veg) P-25 Kinneman Farm 11.1 mi @ 331 /NNW P-24 H Larson Residence 1.6 mi @ 287 /WNW c , (Corn) P-25 Kinneman Farm 11.1 mi @ 331 /NNW P-24 Gustafson Farm 2.2 mi @ 168 /SSE > Particulates and P-I c Air Station P-1 16.5 mi @ 348 /NNW  ! Radioiodine (air) i Particulates and c P-2 Air Station P-2 10.9 mi @ 47 /NE Radiciodine (air) Particulates and P-3 Air Station P-3 0.8 mi @ 313 /NW l Radiciodine (air) { Particualtes and P-4 Air Station P-4 1.6 mi @ 129 /SE ' Radiciodine (air) Direct Radiation (TLD) P01A Property Line 0.4 mi @ 359 /N , Direct Radiation (TLD) P02A Property Line 0.3 mi @ 19 /NNE Direct Radiation (TLD) P03A Property Line 0.5 mi @ 183 /5 Direct Radiation (TLD) PO4A Property Line 0.4'mi @ 204 /SSW Direct Radiation (TLD) POSA Property Line 0.4 ml @ 225 /SW 5-3 Rev. I

TABLE 5.1-1 (continued) PRAIRIE ISLAND NUCLEAR GENERATING PLANT RADIATION ENVIRONMENTAL MONITORING PROGRAM ' SAMPLING LOCATIONS i Type of , Sample Code Collection Site Location - . Direct Radiation (TLD) P06A Property Line 0.4 mi @ 249 /WSW Direct Radiation (TLD) P07A Property Line 0.4 mi @ 268 /W Direct Radiation (TLD) P08A Property Line 0.4 ml @ 291 /WNW Direct Radiation (TLD) P09A Property Line 0.7 mi @ 317 /NW  ; Direct Radiation (TLD) P10A Property Line 0.5 ml @ 333 /NNW Direct Radiation (TLD) P01B Tom Killian Res. 4.7 mi @ 355 /N l Direct Radiation (TLD) P02B Roy Kinneman Farm 4.8 mi @ 17 /NNE Direct Radiation (TLD) P03B Wayne Anderson Farm 4.9 mi @ 46 /NE  ;

Direct Radiation (TLD) PO4B Nelson Drive. (Road) 4.2 mi @ 61 /ENE l Direct Radiation (TLD) P05B County Rd E & Coulee 4.1 mi @ 97 /E I Direct Radiation (TLD) P06B William Houschildt Res. 4.4 mi @ 112 /ESE {
;     Direct Radiation (TLD) P07B        Red Wing Service Center 4.7 mi @ 140 /SE                    ;

Direct Radiation (TLD) P08B David Wnuk Res. 4.1 mi @ 165 /SSE l Direct Radiation (TLD) P09B Hwy 19 South 4.2 mi @ 187 /S-Direct Radiation (TLD) P10B Cannondale Farm 4.9 mi @ 200 /SSW Direct Radiation (TLD) PilB Wallace Weberg Farm 4.5 mi @ 221 /SW  ! Direct Radiation (TLD) P12B Roy Gergen Farm 4.5 mi @ 247 /WSW j Direct Radiation (TLD) P13B Thomas O'Rourke Farm 4.4 mi @ 270 /W i Direct Radiation (TLD) P14B David Anderson Farm 4.9 mi @ 306 /NW  ! Direct Radiation (TLD) P15B Hols: Farms 4.2 ml @ 347 /NNW i Direct Radiation (TLD) POIS Federal Lock .& Dam 3 1.6 mi @ 129 /SE Direct Radiation (TLD) P02S Charles Suter Res. 0.5 -mi @ 155 /SSE- j Direct Radiation (TLD) P035 . Carl Gustafson Farm 2.2 ml @ 168 /SSE  ; Direct Radiation (TLD) PO45 0 Richard Burt Res.- 2.0 mi @ 228 j37 Direct Radiation (TLD) PO5S Kenney Store 2.0 ml @ 270 /W ] i i O ' 5-4 Rev. - 1 I i l

i TABLE 5.1-1 (continued) PRAIRIE ISLAND NUCLEAP, GENERATING PLANT RADIATION ENVIRONMENTAL MONITORING PROGRAM SAMPLING LOCATIONS Type of . Sample Code Collection Site Location

  • Direct Radiation (TLD) P06S Earl Flynn Farm 2.5 mi @ 299 /WNW Direct Radiation (TLD) POIC Robert Kinneman Farm 11.1 mi @ 331 /NNW 1
                                                                                       -)
           "c" denotes control location. All other locations are indicators.

The letters after numbered TLD's are as follows:

        "A" denotes locations in the general area of the site boundary
        'B" denotes locations about 4 to 5 miles distance from the plant "S" denotes special interest locations.                                          .
                                                                                         )

l l l l O I 5-5 Rev. 1 '

     .                                          FIG URE 5.1-1 PRAIRIE ISLAND NUCLEAR GENERATING PLANT RADIATION. ENVIRON MENTAL MONITORING PROGRAM                                               NORTH i
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Figure 5.1-3 NORTHERN STATES POWER COMPANY PRAIRIE ISIAND NUCLEAR GENERATING PIANT O - (/ 4 - 5 Mile Ring, Control, and Special

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Appendix A - Meteorological Analyses a Table A-1 Release Conditions Table A-2 Unrestricted Area Boundaries Table i-3 Long Term - Ground Level - Unrestricted Area Boundary - X/Q and D/Q  : Table A-s i.ong Term - Ground Level - Standard Distances - X/Q Table A-5 Long Term - Ground Level - Standard Distances - D/Q  ; Table f.- G Short Term - Ground Level - Unrestricted Area Boundary - X/q and D/q  ! Table A-7 Short Term - Ground Level - Standard Distances -X/q  ! Table A-8 Short Term - Ground Level - Standard Distances - D/q i O  ; l l l l . l l l l l

O A-1 l

l I l APPENDIX - A - Summary of Dispersion Calculational Procedures Undepleted, undecayed dispersion parameters were computed using the computer program XOQDOQ (Sagendorf and Goll,1977). Specifically , { sector average X/Q and D/Q values were obtained for a sector width of 22.5 degrees. Building wake corrections were used to adjust calculations for ground-level releases. Standard open terrain recirculation correction factors were also applied as available as default values in XOQDOQ. Dispersion calculations were based on ground level releases for the shield buildings, turbine building, and auxiliary building (hereafter referred to as the plant complex). A summary of release conditions used as input to XOQDCQ is presented in Table A-1 and controlling unrestricted boundary distances are defined in Table A-2. ComputedX/Q and D/Q values for , unrestricted area boundary locations (relative to release points) and for standard distances (to five miles from the source in 0.1 mile increments) are presented in Tables A-3 through A-8. i Onsite meteorological data for the period April 1,1977 through March 31, 1978 (as presented in Appendix B) were used as input to XOQDOQ. Data were collected and 6T stability classes were defined in conformance j with NRC Regulatory Guide 1.23. Disp'ersion calculations for the plant complex were based on6T 42.7-12.2m and 12.2 meter wind data (joint data recovery of 96 percent). l l ( A-2

I l t References

1. Sagendorf, J.F. and Goll, J.T. , XOODOO Procram for the Evaluation  !
of Routine Effluent Releases at Nuclear Power Stations, N.UREG-0324,-  ;

U. S. Nuclear Regulatory Commission, September 1977. [ i i [

                                                                                -t.

t t

                                                                                  )
                                                                                  ?

f f s , A-3 i i l- - . . ._ . . . . -_ ..

Ol O O TABLE A-1 Prairie Island Release Conditions Shield Buildings Auxiliary Building Turbine Building Type Release Ground Level Ground Level Ground Level (Long Term and Short Term) (Long Term) (Long Term) Release Point Height (m) 56.4 24.4 33.6, 12.2 Adjacent Building Height 62.2 62.2* 62.2* Relative Location to Adjacent to Adjacent to Adjacent to

p. Adjacent Structures - Auxiliary Building Shield Buildings Auxiliary Building L .

Exit Velocity (m/sec) N.A. N.A. N.A. Internal Stack Diameter (m) N.A. N.A. N.A. Building Cross-Sectional Area (m2) 2,170 2,170** 2,170** Purge Frequency ***(times / yr. ) 20 N.A. N.A. Purge Duration ***(hours / release) 5 N.A. 'N.A. s

  • Height of Shield Buildings
                                  **    Shield Building cross-sectional area
                                  *** Applied to short-term calculations only.

TABLE A-2 O Distances (Miles) To i Controlling Unrestricted Area' Boundary Locations  ! l As Measured from Edce of Plant Complex  ;

  • i Sector Distance I
N 0.28 r NNE 0.26 -l NE 0.84* 1 i

ENE 0.62* !i E 0.59* -! ESE 0.61* i i SE 0.67 j SSE .0.43 ' S 0.43  ! SSW 0.40 SW 0.40 r WSW 0.37 l

W 0.36  ;
                                                                                                                       .t WNW                               0.36                                                              l NW                                0.43                                                               l f
NNW 0.48 l i
  • Over-water distances A-5 '

t

O O O TABLE A-3 Prairie Island Dispersion Parameters for Long Term Ground Level Releases >500 Hrs /Yr or >150 Hrs /QTR for Unrestricted Area Boundary Locations (identified in Table A-2) Unrestricted Area Loundary Sector y/,9 (seo/m ) D/Q (1/m ) N 1.82E=05 1.18F=07 flNE 1,S2E*05 . 8.5SF=08 IIE 1,8 5E=o6 7.74E=09 kNE 3.25E=06 f,84E=08 E 1.05E=05 4.23Fa06 ESE 1,86t=05 7.30F=08 SE 1,67E=05 6.80F=08 SSE 1.95E=05 6.81F=08 S 8,12E=06 3.19E=08 SSW 7.08E=06 2.55F=do SH 7,66Ea06 2.77F=08

> WSW igilE=05 3.S3F=08 1 W 2,66t=05 7.63E=08 WNH 3,38E-05 1.42F=07 tid 2.13E=05 9.02E=08 .

NNW 1.11E=05 5.43F=08 _ Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-4 Prairie Island Dispersion Parameters ( X/Q),sec/m , For Long Term Ground Level Releases >500 lirs/Yr or >150 Hrs /Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 0.1 0.2 0.3 0.4 0.5 - 0.6 0.7 l ~20E=04 1;66E=05 5,29E=06 4 ',13 E = 0 6 ri i,44E*05 1,02E=05 7.04E=06 NNE 8,53E=05 2.44E=05 1,18E=05 4,93E=06 5,67E=06 2,63E=06 7.20E=06 2,69E*06 tE 8,18E=05 2,35E=05 1.14E=05 6,87E=06 4.69E=06 3,49E=06 ENE 7,88E=05 2.26E=05 1.10E-05 6.70E=06 #s62E=06 3,46E=06 2.69E=06 , E 2.40E=04 6. 8 9 E =.0 5 3,34E*05 2,02E=05 1.38E=05 1.02E=05 7.88E=06 ESE 4,52E=04 1,30E=04 6,28Ewo5 3,80E*05 2,59E=05 1,92E=05 1,48E-05 SE 4.85E*04 1,39E=04 6,74E=05 4,07t=05 2.77E*05 2,04E*05 1.56E*05-SSL 2,59E=04 7,44E=05 3.60E=05 2,17E=05 1s48E=05 1,10E=05 8.44E=06 3 4,62E=06 3,58E-06 a 3 1.08E=04 3.09E=05 1,49E=05 9.06E=06 6:20E-06

                     "                                                                                                                   3,66E=06        2,83E=06 SSd      8,60E=05        2,46t=05              1,19E,05         7.19E*06               4a9tE=06                                              ,

Sn 9,19E=05 d,62E=05 1326E=05 7.72E=06 5,31E=06 3,98E=06 3.09E=06 HSH 1,17Es04 3,35E*05 la61E=05 9,80E=06 6,70E=06 4,97E=06 3.83E=06 h 2,64E=04 7,56E-05 3,66E*05 2,22E=05 1.SIE=05 1,12E=05 8,6tE=06 WHh 3:42E=04 9,80E=05 4,75E=05 2,88E=05 1s98E=05 1.47E=05 1.14E=05

                               -HW    2,91F=04        8,35E=05               4,05E=05         2,46E=05               1.68E=05            1,25E=05        9.67E=06 Hlld     1.76E=04       5.04E=05               2.45E=05          1,50E=05              1.03E=05            7.70E=06        S.99E=06 Period of Record: 4/1/77 - 3/31/78

_ _ _ _ _ _ . -- _ _ . - . _ . _ . _ _ . . .. ___ [

O O O TABLE A-4 (Cont.) Prairie Island Dispersion Parameters ( X/Q),sec/m , 7 For Long Term Ground Level Releases >S00 lirs/Yr or >150 Hrs /Qtr l l For Standard Distances (As Measured from Edge of Plant Complex) l Miles l l 0,9 1.0 1.1 1.2 1.3 1.4 Sector -0.3 N

                                                                   ~

5,18E=06 2,39E=06  !!B7E=06 1,SIE=06 1,24E=06 1,04E-06 8.80E*07 HHE 2.17E=06 1,62E=06 1,27E = 0 6

  • 1.,0 2 E = 0 6 8,53E=07 6.950 07 5.90E=07 HE- 2,06E=06 1,54E=06 1,20E=06 9,60E=07 7,86E*07 6,S6t=07 5.56E=07 EHE 2,07E*06 1:5SE=06 1,21E=06 9,72E=07 7,98Ee07 4 66E=07 5.bSE=07 E 6,02E=06 4,5fE=06 3,52Ep06 2,82E=06 2,31E=06 1.931-=06 1,6 tlE = 0 6 ESE- 1,13E=0S 8,44E=06 ba58E=06 5,28E=06 4,33E=06 3.02E=06 3.07E=06 SE 1,19E=0S H,92E=06 6,96E=06 S,58E=06 4,58E=06 3,820=06 3.2SE*06 pSSE 6,4SE=06 4,82E=06 3,76E=06 3,0lE=06 2.47E=06 2,06E=06 1.75E*06 cu 8 2,06E=06 1,61E=06 1,29E=06 1,06E=06 8,88E=07 7.59E*07 2.74E=06 ba99E"87 S,93E=07 SSN 2,17E=06 1,03E=06 1,27E=06 1,02E=06 8,36E=07 SH 2.38E=06; 1.18E=06 1,39E*06 la12E"06 9,17E=07 7,66E-07 6.50E=07 HSh 2a95E=06 ~ 2.19E=06 1,7tE=06 1.47E=06 1,12Ee06 9.35E=07 7.93E=07
  • b,57E=06 4,9tE=06 3,83E=06 3.,07E=06 2,SIE*06 2.inE=06 1,78E=06 WHN 8,77E=06 6 S8E=06 S,14E=06 4 13E=06 3,39E=06 2.83Ee06 2.41E=06 Hal 7,40E=06 5,56E=06 4,3SE=06 3,50E=06 2,88E*06 2.41E-06 2.0SE=06 HHd 4.60E=06 3.46E=06 2.llE=06 2,18E=06 1.79f=06 1,50E=06 1.28E=06 Period of Record: 4/1/77 - 3/31/78 ,

O O O TABLE A-4 (Cont.) Prairie Island Dispersion Parameters ( X/Q),sec/m , For Long Term Ground Level Releases >500 Ilrs/Yr or > 150 Hrs /Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 1.5 1.6 1.7 1.8 1.9 2.0 2.1

s 7,57Ea07 6.S9E=07 S.79E=07 S.13E=07 4,59E=07 4.14E*07 3.76E=07 Niih S,07E=07 4,41E=07 3,87E=07 3,43E=07 3,07E=07 2,77E=07 2,52E=07 HE 4.17E=07 4,1SE=07 3,64E=07 3 23E=07' 2.89E=07 2,61E=07 2,38E=07 ENE 4.86E=07 4,23E=07 3,71E=07 3.29E*07 2,94E=07 2.6SE*07 2.4th=07 E 1,41E=06 1.23E=06 1,08E=06 9,SSE=07 8.S6t=07 7, '/ 5 E = 0 7 7.05t=07 ESE 2,64E=06 2,30E=06 2.02E=06 1,79E=06 1, ole =06 1. ti6 E- 0 6 1,52t=06 SE 2.79E=06 2,43E=06 2,14E=06 1,90E=06 1,70E=06 1 S4E=06 1,40E=06
p SSE 1,50E=06 1.31E=06 1.15E=06 1,02E-06 9.12E*07 8,2SE-07 7,S1E-07 1 5 6.49E=07 S,6SE=07 4.97E=07 4.41E-07 3.95E=07 3.56E-07 3. d tit = 0 7 SSH S.10E=07 4,44E=07 3.90E=07 3,46E=07 3,10E=07 2.80E-07 2.54E*07 S ri 5.59E=07 4,87E=07 4,27E=07 3,79E=07 3.39E=07 3,06Ewo7 2.' '/ 8 E - 0 7 hSW b.82E=07 S,93E=07 S,21E=07 4,61Ea07 4,13E-07 3,74E=07 3,40E=07.

H 1,53E=06 1,43E-06 1,17E=06 1,04E=06 9,29E=07 8.40Ea07 7.64E=07 Wild 2,u?E=06 1,80E=06 1,S9E-06 1,4tE=06 1,26Ee06 1.14E=06 1.03E=o6

        'I d  1,76E=06       1.S4E=06          1,3SE-06          1,20E=06                            1.08E=06         9.12Ea07          8.83E-07 intin   1.10E=06      9.59E=07           4,43E=07          7.47E=07                            6,69E=07         6.04F-07          S.49E-07 Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-4 (Cont.) Prairie Island Dispersion Parameters ( X/Q),sec/m , For Long Term Ground Level Releases >500 lirs/Yr or >l50 Hrs /Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 2.2 2.3 2.4 2.S 2.6 - 2.7 2.8 u 3,42E=07 la 14E=07 2 '. 89 E = 0 7 2,67E*07 2,47E*07 2,30Ea07 2,15E HNE 2:30E=07 2,1tE=07 1,94E=07 1,80E-07 1,67E*07 1,56E*07 1,4SE*07. HE 2 17E=07 1 99E=07 1,84E=07 1370E=07 1,58E = 0 7 - 1.47E=07 1,38E=07 tHL 2 20E=07 2,,0 l E = 0 7 1s85E=07 1.71E=07 1,S9E*07 1.48E-07 1.38Ea07 E 6.44E=07 Sg42E=07 5.46E=07 S,05t=07 4,70E=07 4,38E=07 4,09Ea07 ESE 1,21E*06 1.11E=06 1,0h=06 9.blE=07 8,84E=07 8.25E-07 7,71E-07 SE 1,28E=06 1,18E=06 Is 09E*06 1,01E=06 9,37Ee07 8,74E=07 5,82E-07 Ss39E=07 8.17E=07 SSt 6.86E=07 6.31Ee07 5,01Ee07 4,67E=07 4,37E-07 Ys 2,96E-07 2,' 71 E= 0 7 2,50La07 2.31E=07 1,82E=07 2,15E-07 2.00E=07 1,87E=07

                                            @Sn      2.32E=07       2,13E=07               Ie96E-07                                        1,69E*07        lab 7E-07   1.47E-07 S ,;  2.h3E=07       2,32E=07               2,14E*07               1.98Ea07                 1,83F-07        1,7tE-07    1,59E-07 wSit   3.11E=07       2.8SE=07               2463E=07               2e43E*07                 2,26E=07        2,11E=07    1.97E*07 g   6,99F=07       6,42E*07               Ss93E*07               5'4'E*07                 5.10E-07        4,76t:= 0 7 4,45E-07
                                            ' gun    9.44E=07       8,67E=07               7,99E=07               7,39E-07                 6,86E-07        6,39Ea07    S,97E-07 99    8,07Ea07       7,4tt 07               6.85E=07               6,32E.07                 5.87E-07        5,47E-07    S,12E-07 tHn     5.0 lea 07     4.59E=07               4,21E=07               3,9 tea 07               3.b3E-07        3.38E-07    3.s5E-07 Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-4 (Cont.) Prairie Island Dispersion Parameters ( X/Q),sec/m , '

                                       . For Long Term Ground Level Releases >500 Ilrs/Yr or > 150 lir's/Qtr For Standard Distances (As Measured from Edge of Plant Complex)

Miles Sector 2.9 3.0 3.1 3.2 3.3 3.4 3.5 -

                #4     2,01E=07       1,88E=07           1,77E=07              167Eao7            1,58E 07            1,49E*07   1,42E-07 ilHL       1,36E*07       1,28E*07           1,20E=0               le14E*07           1,07E=07            1.02E-of   9,65E*08 NE       1,29E=07       1,21E=07           1,14E=07             b408E=07            1,02E=07            9,69E*08   9,20E=0S E'IE      '1,29E=07       1321E=07           1,14E=07             Is07E*07            130lE=07            9.60E=08   9,1tE=08 E      3,84E=07       3,6tE=07           3,40E=07               ,21E=07           3.04E=07            2,88E*07   2 374E=07 ESE        7,23Ea07       6,80E=07           6,41E*07             6:05E*07            5,75E=07            5,43E=07   5,16Ee07 7.67E=07                          6,30E=07             6,42E=07            6,08E.07            S,77t=07   5,48Een7
p. SE 7:21E-07 343Ee07 3,24E=07 2,92E*07
       ,8   SSE        4,10E*07       3,85E=07           3,63E=07                                                     3.08E*07
       "        S      1,75E=07                          1,S5E=07             Is46E*07            1,38E=07            1,31E=07   1 24E=07-1sb4E*07                                                    1,09E=07            1,03g.07   9,77E=08 SSN        1.38E*07       1,29E*07           1.22Ee07             1:15E=07 SH       1,49E*07       1,40E=07           1,32E=07             1.24E=07            1,17E*07            1.11Ea07   1,05E-07 WSH        1.8SE-07       1,74Ea07           1.64E=07             14 54f=07           1,46E-07            1,39E=07   1,32t=07 w      4,17E=07       3,92E=07           3,70E=07             3:49f=07            3,30E=07            3,13E=07   2,98E=07 H H rf     5,60E*07       5,26Ea07           4.95E=07            4tb7E*07             4,42E=07            4,19t=07   3,98E.07 Nd       4.79E*07       4,50E=07           4,24E*07            4400E-07             3,79E,07            3,59E=07   3 ,4 3g . o 7.

NHn 2 ,95'l= 0 7 2.77E=07 2.61E-07 ds46E*07 2,52E=07 2.20E-07 2.09E-07 Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-4 (Cont.) Prairie Island Dispersion Parameters ( X/Q),sec/m ,.. For Long Term Ground Level Releases >500 lirs/Yr or > 150 Ifrs/Qtr For Standard Distancas (As Measured from Edge of Plant Complex) Miles Sector 3.6 3.7 3.8 3.9 4.0 4.1 4,2 N 1,3SE=07 1,28E=07 la22E=07 1 16E=07 hHE 9,18E=08 8,74E=08 8 34E=08 7,97E=08 1,1tE=07 1.07E=07 1302E=07 HE 8.75E=08 a 7,62E=08 T,30E=08 7,00E=08 8,34E=08 7,96E=08 7,61E=0a 7,28E=08 6 s98E=08 ENE 8,66E=08 8,24E=08 6.70E=08 E 2,60E=.07 7.86E=06 7sSOE=08 7,17E=0p b,86E=08 6,S8E=G8 2,48E=07 2 37t=07 2,26E=07 2,17E=07 2,08E=07 ESE q,91E=07 4368E=07 1,99 t=07 SE 5,22E=07 4:47E=07 4:27E=07 4,09E=07 3.92E=07 3,76E=07 4,97E=07 4,75E=07 4:54t=07 4,3SE=07 ySSE 2,78E=07 2,6SE=07 2,S3E=07 4:17E=07 4,00E=07 2,42E=07 2.32E=07 2.22E=07 2,13E=07

 ~     3    1,18E=07         1.12E=07             1,07E=07 "SSH       9,29E=08                                                   la02E=07            9,79E=08            9,38E=08           8,99E*08

, 8,8SE=08 8 44E=08 8,07E=08 7,72E=08 (.39E=08 SH 1,00E=07 -9,S4E=08 9210E=08 7,09E=08 HSH 8,69E=08 8.31E=06 7,95E=08 7,62E=08 1.2SE=07 1,19E=07 1,14E=07 1,09E=07 1,04E=07 9,98E=08 W 2483E=07 2,70E=07 2,S8E=07 2,47E=07 9 sS7E=08 NHN 3,18g=07 3,60E=07 2,36E=07 2.26E=07 2,17E=07 NH 3344E=07 3,28E=07 3,14E=07 3.0lE=07 2,89E=07 3,24E=07 3,09E=07 2,95E=07 2,82E=07 NHd 1,99E=07 2,70E=07 2.b8E=G7 2,48E=07 1.89E=07 1.80E=07 1.72E=07 1,6SE=07 1.58E=07 1.51E=07 Period of Record: 4/1/77 - 3/31/78 '

O O O TABLE A-4 (Cont.) Prairie Island Dirpersion Parameters ( X/Q),sec/m , For Long Term Ground Level Releases >500 IIrs/Yr or >l50 Hrs /Qtr For Standard Distancer, (As Measured from Edge of Plant Complex) Miles Sector 4.3 4.4 4.5 4.6 4.7 . 4.8 4.9 N 9.79E=08 9,4tE=08 9.04E=08 6,7tE-08 '8.39E-08 8,09E=08 7.81E=08 uke 6,72E=08 6,46E-08 6,22E=08 5.99E-08 S.77E=08 5,57E=08 S 38E*08 hE 6,43E=08 6,18t=08 5.95E=08 5,74E=08 5,STE-08 5.34Ea08 5.16E-08 Ei lE 6,3tE=08 6,06E=04 5,83E=08 S,62E-08 5,41E*08 5,22E=08 5,04E=0A E 1,91E=07 1,84E=07 1,77E=07 1.71E=07 1,65E=07 1,59E=07 1sS4E*07 ESE 3.62E*07 3.48E=07 3,55Ea07 3.23E-07 3.11E=07 3,01E-07 2, VIE-07 SE 3e8Sk"07 3,70E=07 3,S6E=07 3,44E-07 3.31E-07 3,20E*07 3.t9E=07

                                       > SSE                            2,0SE-07                                  1.97E=07           1,90E=07                                  1.83E=e7          1,76E=07          1,70E=07      1,65E=07 e'.      S                       8.63E*08                                  8,30E*08           7.98E=08                                  7.69E=08          7,41E-08          7,15E-08      6.91E*08 hSw                          6.81E=08                                  e.SSE=08       -

e,30E=08 6.07E-08 5.uSE-08 5,65E-08 5,46E-08 Sw 7,32E=0s 7,03E=0a 6.76E=08 6.51E=0a 6,28F=0A 6,06Ee08 5.8SE-08 WSW 9.19t*08 8.84E=08 8,51E=08 8,20E=08 7, Vita 08 7.64E=0A 7,38E=08 H 2,09k=07 2:01E=07 1,93E=07 1,86E*07 1.80E=07 1,73E=07 1,68E=07 HHH 2.77E=07 2,66E.07 2,56E-07 2.47E=07 2,38E=07 2.30E-07 2 g22E*07 tiw 2,38F=07 2,29E=07 2,20Ea07 2,12E=07 2.05E=07 1,97E 07 ,9tE-07 t4NW 1.45E-07 1.39E*07 1.34E=07 1.29E-07 1.24E=07 1.20E-07 1.16E=07 Period of Record: 4/1/77 - 3/31/78

O O . O TABLE A-4 (Cont.) Prairie Island Dispersion Parameters ( X/Q),sec/m , ~ For Long Term Ground Level Releases >500 lirs/Yr or > 150 Hrs /Qtr For Standard Distances (As Measured from F49 e of Plant Complex) Miles Sector 5.0 . N 7.54E-08 NHL b,20E*08 HE e,99E.08 LNL 4.87ke08 E 1,49E*07 ESE 2,8th=07 SC 2,99k-07 p SSE 1,59E*07

                            ,8                                                                 S                                6,68E=08 A                                                        SSW                                        5.27Ea08 SW                                    S,65E*08 hSW                                        7,14E,08 W                                1,62L=07 WNW                                        2. I'lt
  • 0 7 NW 1,84t*07 HHM 1.12h=07 Period of Record: 4/1/77 - 3/31/78 -

O O O TABLE A-5 Prairie Island Dispersion Parameters (D/Q),1/m , ' For Long Term Ground Level Releases >500 lirs/Yr or >150 lirs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) l Miles Sector 0.1 0.2 0.3 0.4 0.5 0.6 0.7 N 5.38F=01 2.01F=07 1.09E=07 6.97F=08 '4.87E=08 3.62E=08 2.81E=no hHE 3.19E=07 1.27F=01 6.87E=08 4.39E=08 3.07E=o8 2.28F=08 1.77F=08 HE 2.21E=07 8.28F=08 4.49F=08 2.87F=08 2.olt=08 1.49F=08 1.16F=08 ENE 2.88E=07 1.08F=07 5.8hE=08 3.73F=08 2.61F=08 1.94E=08 1.51E=08 E 6. l SE=~0 7 2.30E=07 1.2SE=07 7,97E=08 5.57F=08 4.14Fn08 1.22F=nB ESE 1.12E=06 4.19F=07 2.27 Fan 7 1.45E=07 1.42F=07 7.54F=no 5.86F=08 SE 1.22F=06 4.SSE=07 2.47E=07 1'S8F=07 1.10E=07 8.19E=08 6.36F=08

 >   SSE         5.81F=07         2.17F=07          1.18E=n7                    7.53E=08             5.27E=08                  3.91 Fan 8                3.04E=08
 ,s.       S     2.72E=07         1.02E=07          5.53E=08                    3.53 Fan 8           2.47F=08                   1.83F=08                 1.42Fano

, un SSW 2.00E=07 7.47E=08 4.06 Fan 8 2.59E=no 1.81F=08 1.34F=no 1.04F=08 SH 2.16E=07 8.06E=na 4.38Fon8 2.79F=08 1.95F=08 1.4SF=08 1.13F=08 HSH 2.19F=07 8.93F=no 4.85F=08 1.09F=08 2.16E=08 1.6tFan8 1.25E=08 H 5.00E=67 1.87F=07 1.0lF=01 6.47E=08 4.53Fana 1.36E=08 2.61E=08 NHW 9.50F=07 3.%E=07 1.93F=01 1.23F=07 8.60F=08 6.39F=08 4.96F=n8' HH 7.95E=07 2.97F=07 1.61F=al 1.03E=07 7.20Fano S.%F=n8 4.lSF=n3 huW S.54F=07 2.07E=07 1.12F=01 7.17F=08 'i.02E=08 3.72 Fan 8 2.89F=08 Period of Record: 4/1/77 - 3/31/78 _ _ - _ _ - , . - - - - . - - - , . , . ---..,-,,,n-- - . - - --

O O O TABLE A-5 (Cont.) Prairie Island Dispersion Parameters (D/Q),1/m , For Long Term Ground Level Releases >500 Hrs /Yr or >150 Hrs /Qtr for Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 0.8 0.9 1.0 1.1 1.2 .. 1.3 1.4 al 2.13E=08 1.56F=08 l.19E=08 9.32F=09 7.47F=09 6.10F=09 S.07Fah9 848 8E l.34E=08 9.84E=09 7t49E=09 5.87E=09 4.70F=09 3.84F=09 3.19E=09 HE 8.76E=09 6.43E=09 4.90E=09 3.83E=09 3.07E=09 2.51E=09 2.09E=09 Ult 1.14E=08 8.37E=09 6.37F=09 4.99F=09 4.00r=09 3.27F=09 2.72E=09 E 2.43E=08 1.79E=08 1.36E=08 1.07F=08 8.54F=09 6.98F=09 S.80E=09 tSE 4.43E=08 3.26E=08 2.48E=08 1.94F=0B 1.56F=68 1.27F=08 1.06F=08

 >       SE      4.81F=08         3.54E=08           2.69F=08         2.llE=08                1.69E=08              1.38F=08                   1.15E=08
 .'  h80         2.30E=08         1.69E=08           1.29E=08         1.0lE=68               8.01F=09               6.59F=09                   S.48F=09
  • 3 l.08E=08 7.92E=09 6.0$E=09 4.72F=09 3.78E=09 5.09E=09 2.57F=09 SSW 7,91E=09 S.81E=09 4.42F=09 1.46E=09 2.77E=09 2.27Ea09 1.88F=09 SW 8.53E=09 6.26E=09 4.77F=09 3.73E=09 2.99F=09 2.45E=09 2.03E=09 H S ri 9.45F=09 6.94E=09 5.28E=09 4.14E=09 3.32F=09 2.71F=09 2.2SE=09 d 1.98E=68 1.45E=08 1.10E=08 8.6SE=09 6.93E=09 S.6FE=09 4.7tE=09 58Hd 3.76E=08 2.76E=08 2.10E=08 1.64E=08 1.32F=08 1.08F=08 8.95E=09 NN 3.14E=08 2.31E=08 1.76E=08 1.38F=08 1.10F=08 9.02F=09 7.49F=09 88 H "

2.19F=08 1.6tE=08 1.22F=08 9.59F=0V 7.68F=09 6.28E=09 S.22F=09 i Period of Record: 4/1/77 - 3/31/78

      --     -      + - . .   - -       --                  , .. y  - ._ _-_.     - _ _ _ _ _ _ _ _            -     m- _ _ -_ __ . -__ _.-     _ _ . _ _ _ _ _ _ _ _ _ _ _ _ _

O O O TABLE A-5 (Cont.) Prairie Island Dispersion Parameters (D/Q),1/m , For Long Term Ground Level Releases >500 lirs/Yr or >150 Ifrs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 1.5 1.6 1.7 1.8 1.9 2.0 2.1 4.27F=09 3.65F=09 3.14F=09 2.73F,09 2.40F.09 2.12E*09 1,89F=09 ran g 2.69E=09 2.30F=09 1.98E=09 1.72F,09 1.51F=09 1.33F-09 1.50E=09 1.19E=09 tq 1.76F=09 1.29F=09 1.13E=09 9.87F*10 8.72F=10 7.76E=10 EllE 2.29E=09 1.9SE=09 1.68E=09 1.4bF=09 1.28F=09 1.14Fa09 1.01F 09 y 4.88F=09 4.17F=09 3.13E=09

> E S g 8.90F=09 7.59F=09 3.59E=09 2. 7 tlF = 0 9 2.42Fa09 2.let=09 6.54F=09 5.69E=09 4.99F=09 4.41Fe09 3.93Fe09 L

st 9.66E=09 8.2SF*09 7.llF*09 6.18F=09 5.43F=09 4.79F=0V 4.27F=09 35t 4.61F 09 3.94E=09 3.19E=09 2.95F=09 2.59F=09 2.29Fa09 2.04F=09 S 2.16F=09 1.8bF=09 1.59E=09 1.38F-09 1.21E=09 1.07E*09 9.55E-10 SSH 1.59E=09 1.3SE=09 1,17g=09 1.02Fa09 8.91F=10 7.87F-10 7.00FaIO Sn 1.71E=09 1e46Fe09 1.26E*09 1.10F=09 9.61Eal0 8.49E=10 7.56F=10 wss 1.90Fw09 1.62Fa09 1.40F=09 1.21E=09 1.06F=09 9.4tF=10 8.37Fal0 h 3.97F=09 3.39E=09 2.92E-09 2.54F-09 2.23F-09 1.97F-09 1.7bE-09 HHH 7.54E=09 6.44Fa09 5.5SE=09 4.83F*09 4.23Fe09 3.74F.09 3,33F,09 Hrs 6.31Fe09 5.39F=09 4.64F*09 4.04F=09 3.54F=09 3.13F=09 2.79F.09 otsw 4.40E=09 3.7bF=09 3.23F=09 2.8tF=09 2.47E-09 2.16F=09 1.94F 09 Period of Record: 4/1/77 - 3/31/78

O O TABLE A-5 (Cont.) O Prairie Island Dispersion Parameters (D/Q),1/m . For Long Term Ground Level Releases >500 Ifrs/Yr or >l50 Ifrs/Qtr for Standard Distances (As Measured from Edge of Plant Complex) Miles S ctor 2.2 2.3 2.4 2.5 2.6 . 2.7 2.8 ll 1.69F=09 1.52F=09 I.37r=09 1.2SF=09 1.14F=09 1.04E=09 9.56F-10 NNE 1.06F=09 9.56F=10 8.6bfalo 7.86E=10 7.17E=10 6.57F=10 6.03F=10 NE 6.9SE=10 6.25F=10 5.6bE=10 5.13F=10 4.69F=10 4.29F=10 3.94F=10 131t 9.04E=10 8.14Falo 7*36F"10 6.6bF=10 6.10F=10 5.59E 10 5.13F=10 l- 1.93E=09 1.74F=09 1.57E=09 1.43E=09 1.30F=09 1.19F=09 1.10E=09 ESE 3.51E=09 2.86E=09 2.6uE=09 2.37F=09 2.17 F.,0 9 2.00F=09 3.16F=09 p SE 3.82F=09 3.44E=09 3.llF=09 2.82F=09 2.58F=09 2.36F=09 2.17F-09 USE 1.82F=09 1.64F=09 1.48E=09 1.35F=09 1.23F=09 1,33F=09 1.04E=09 5 3 8.55F=10 7.69F=10 6.95E=10 6.32Falc 5.77F-10 5.28F=to 4.8SF-10 35,1 6.27F=10 5.64F=10 5.10F=10 4.63E=10 4.23F=10 3.8/F=10 3.56F=10 SH 6.76F=10 6.09F=10 5.50Fato 5.00F=10 4. 836 F= 10 4.18E-10 3.84F-10 r# S ti 7.49E=10 6.74F=10 6.10F=10 5.54E=10 5.0bF=10 4.63Falo 4.26E=10 W l.57F=09 1,41F=09 1.28F=09 1.16E=09 1.06F=09 9.66F=10 8.90E=10 HHH 2.98F=09 2.68E,09 2.42r=09 2.20F=09 2.01E=09 1.84F=09 1.69F-09 HH 2.49Fa09 2.24r=09 2.03F=09 1.84F=09 1.68Fa09 1.42F,09 1.54F=09 N'l ed 1.74F=09 1.56E=09 1.41F=09 1.28F=09 1.17F*09 1.07F-09 9.86F-lo Period of Record: 4/1/77 - 3/31/78

O O TABLE A-5 (Cont.) O Prairie Island Dispersion Parameters (D/Q),1/m , For Long Term Ground Level Releases >500 firs /Yr or >l50 lirs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 2.9 3.0 3.1 3.2 3.3 3.4 3.5 h 8.84F=10 8.17F=10 7.58F 10 7.05F-10 6.57F=10 6.14F=10 5.75E=10 nht 5.5at=10 S.15F=10 4.77E=10 4.44F=10 4.14F=10 1.87E=10 1.62F=10 HL 3.64E=10 '3.26E=10 "2.90F=10 EHL 3.12E=10 2.70F 10 2.S3E=to 2.17E*10 4.73E=10 4.38Fot0 4.06FalC 1.78F*lo 1.52F=10 1.29F=10 1.08F=10 E 1.01F=09 9.14E=10 8.67F=10 8.06F=10 7.5tF=10 7.02E=10 6.57F=10 gSt 1.84E=09 1.70F=09 1.58F=09 1.47F=09 1.31E=09 1.28F=09 1.20F=09 y SE 2.00E=09 1.85F=09 1,71F=09 1.59F=09 1.49F=09 1.39F=09 1.10E=09 g SSE 9.5SF=10 8. 83f- L0 8.19F=10 7.61F=10 7.10E=10 6.63F=10 6.21F=10 S 4.47E=10 4.14F=10 3.A4 Fat 0 3.SiF=10 3.33E=10 1.llE=10 2.91F=10 sSd 1.28F=10 1.04E=to SH 2.82F-10 2.62E 10 2.44E=10 2.28F=10 2.14F=10 3.54E=10 1.27E=10 3.04F 10 2.82E=10 2.63E.10 2.46F=10 2.10F=10 WSW 3,92E=to 1.63F=10 W 3.17E=10 1.13F=10 2.92F=10 2.73F=10 2.5SE=10 8.20F=10 7.59F=10 7.04F=10 6.54F=10 6.10F=10 S.70F=10 S.34F=10 NHis 1.56F=09 1.44F=09 1.14E=09 1.24F=09 1.16F=09 1.08F=09 1.01E=09 N 1.31F=09 1.21E=09 1.12F=09 1.04F=09 HHb 9.71F=10 9.07F=10 8.49E=10 9.09F=10 8.41F=10 7.80E=10 7.25F=10 6.76F=10 6.32F=10 S.92E=10 Period of Record: 4/1/77 - 3/31/78

                    , _ .               ,,        . ... --     .-  - - , , . . . - - - . --m   - . ~ - - - _ _ - - .          _ m__ m--_ __ m_--_                    _ _ _ _ _

O O O TABLE A-5 (Cont.) Prairie Island Dispersion Parameters (D/Q),1/m , For Long Term Ground Level Releases >500 Hrs /Yr or >150 Hrs /Qtr For Standard Distances (As Measured from Edge of Plant Complex) . Miles

.ector 3.6 3.7 3.8 3.9 4.0 . 4.1 4.2 N *i.40E=10 5.0/E=10 4.78E=10 4.51F=10 4.26E 10 4.03E=to 3.82F=10 HNE 3.40F=10 3.19E=10 3.01E=10 2.84E=10 2.6eF=to 2.54F=to 2.41E=10 HE 2.22F=10 2.09E=10 1.97E=10 1.86F=10 1.75F=10 1.66E=to 1.57F=10 EHE 2.89E=10 2.72E=10 2.56E=10 2.42E=10 2.28F=10 2.16F=10 2.nSE=10 L 6.17E=10 5.80E=10 5.46F=10 5.16F=10 4.87F=10 4,6tE 10 4.17F=10 t S E, 1.12E=09 1.06F=09 9.95E=10 9.39F=10 8.87F=10 a.40F=10 7.96E=t0 SL 1.22F=n9 1.lSF=09 1.08E=n9 1.02E=09 9.64E=10 9.12F=10 8.65E=10
> S SE 5.83F=10 5.48F=10 5.lbF=10 4.87E 10 4.60E=10 4.16F=10 4.13Fato
                                  ,!3      G   2.73E=10        2.57E=10                 2.42E=10            2.28F=10              2.16F=10                         2.64E=10   1,94F=10 o SSh         2.00E=10         1.88f=10                1.78E=10            1.61F=10              1.58F=10                         1.50F=10   1.a2F=10 Sa   2.16F=10        2.03F=10                 1.92F=10            1.81F=10              1.71F=10                         1.62E=10   1.53F=10 wSH     2.40E=10        2.25F=10                 2.12F=to            2.00E=10              1.89E=10                         1.79E=10   1.70F=10 h   5.olF=10        4.71F=10                 4.44E=10            4.19F=10              3,96F=10                         3*75F=10   3.55F=10 68 H d
9. 'i 3 E= 10 8.96F=10 8.44E=10 7.96F=10 7.52F=10 7.12F=10 6.7SF 10 HH 7.97E=10 7.50F=10 7.06E=10 6.66F=10 6.29E 10 5.96F=10 5.6SF=10 h"d 5.55F=10 5.22F=10' 4.92E=10 4.64F-10 4.38F=10 4.lSE=10 3.93F=10 t

Period of Record: 4/1/77 - 3/31/78

O O TABLE A-5 (Cont.) O Prairie Island Dispersion Parameters (D/Q),1/m , For Long Term Ground Level Releases >500 lirs/Yr or >l50 lirs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 4.3 4.4 4.5 4.6 4.7 -4.8 4.9 se 3.63E=10 3.4SE=10 3.28E=10 3.13F=10 2.99F=10 2.H5F=10 2.73F=10 r.N t 2.29E=10 2.17E=10 2.01E=10 1.97F=10 1.88F-10 1.80E=10- 1.72F-10 tit. 1.49E=10 1.42E=10 1.3SE=10 1.29F=10 1.P3F=10 1.17F=10 1.12F-10 L til 1.94E=10 1.8SE=10 1.76E=10 1.68F-10 1.60F-10 1.53F=10 1.46E=10

t. 4.lSE=10 1.94F=10 1.75E=10 3.58E=10 3.41F=10 3.26F-10 3.12E=10 ESE 7.56E=10 7.18F=10 6.84F=10 6.52E=10 6.22E=10 5.94F=10 5.6sE=10
   > SL           8.21E=10             7.80F=10                           7.43E=10              7.08E=10       6.7SE=10                              6 nSF=10            6.l?f=10 4 SSt.         3.92Fet0             1.73E=10                           3. %E= 10             3.38E*10       3.23F=10                              5.08F=10            2.94F=10
   -              1.84E=10             1.7SF=10                                                 1.58F=10       1.51F=10                              1.44F=10            1.38E=10 S                                                            1.66F=10 SSW       l.3SF=10             1.2eF=10                           1.22E=10              1.16F=10       1.llE=10                              1.n6E=10            1.01E=10 SW     l.4SF=10             1.38F=10                           1.32E=10              1.25F=10       1.?0F=10                              1.14E=10            1.09E=10 wSw       1.61F=10             1.53F=10                           1.46E=10              1.39F-10       1.33F=10                              1.27F=10            1.21E=10 W    3.37F=10             3.20F=10                           3.0SE=10              2.91F=10       2.7?f=10.                             2.65E=10            2.53F=10 hun       6.41F=10             6.09E=10                           5.80E=10              5.52F=10       5.27E=10                              5.03F-10            4.81E=10 Nd     S.36E=10             5.10F=10                           4.8SE=10              4.62E=10       4.4tF=10                              4.?tF-10            4.03F=10 tiH r8    3.73F=10             3.SSE=10                            3.38E=10             3.22E=10       3.0/Feto                              2.93F-10            2.80F=10
Period of Record
4/1/77 - 3/31/78

O TABLE A-5 (Cont.) O Prairie Island Dispersion Parameters (D/Q),1/m , For Long Term Ground Level Releases >500 Hrs /Yr or >l50 Ilrs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles

                                                                                                                  . Sector           5.0                   .

N 2.61F=10 NNE l.64E.10 NL i.07Fe10 ENE 1.40E=10 E 2.96Fel0 ESE 5.43Fet0 SE 5.90F=10 SSE 2.82E=10

                             >                                                                                           S       1.32F=10 4

to SSH 9.69Fw11 Sh 1.ogr.go hSh 1.16F=10 W 2,427 10 HilH 4.61E=10 llH 3.8SF=10 t1H W 2. h tlF - 10 Period of Record: 4/1/77 - 3/31/78

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

O O O TABLE A-6 Prairie Island Dispersion Parameters For Short Term Ground Level Releases $ 500 Hrs /Yr or $150 Hrs /Qtr For Unrestricted Area Boundary Locations (Identified in Table A-2) Unrestricted Area Boundary Sector y/g (sec/m ) D/q (1/m ) N 1.09 E-05 4.00E-07 kNE 7.32E-05 4.11 E-0 7 NE 1.60E-05 6.7 7 E-08 ENE 1.9 7 E-05 1.11E-07 E 4.92E-05 1.99E-07 ES E 4. 40E- 05 2. 52 E-0 7 SE 5.98E-05 2.43E-07 p SSE E.79E-05 3.0 8 E- 0 7 5.18 E-05 2.04E-07 4 w SSh S 5.26E-05 1.89E-07 SW 5.25E-05 1.90 E-0 7 WSw 7.83 E-05 2.44 E-07 h 1.32E-04 3. 78 E-07 WNW l.10E-04 4.61E-07 Hb 7.67E-05 342SE-07 NNb 4.79E-05 2.54L-07 Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-7 Prattle Island Dispersion Parameters ( X/q), sec'm , For Short Term Ground Level Releases 5500 lirs/Yr or$150 lirs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 0.1 0.2 0.3 0.4 0.5 .0.6 0.7 . N 3. 76E- 04 1 13E-04 6.59E-05 4.39E-05 3. f 5E-05 2 47E-05 1 90E-05 NNE 3.35E-04 1.05E-04 5.94E-05 3.93E-05 2. 7 7E- 05 2.19 E-05 1.65E-05 NE 4 38E-04 1 33E- 04 7. 71 E- 05 4.94E-05 3 39E-05 2 66E-05 2 12E-05 ENE 3.27E-04 1.02E- 04 5.9 3E-0 5 4.01E-05 2.80E-05 2.19E-05 1.69E-05 E 8 12E-04 2 43E-04 1 39E-04 6.80E-05 6 16 E-05 4.84E-05 3 78E-05 ES E 1.17E-03 3.52E-04 .1. S 8E- 04 1.27E-04 E.80E-05 6.84E-05 5.32E-05 p SE 1 27E-03 3 85E-04 2 06E-04 1.31E-04 S. 3 2 E- 05 1 34E-05 5 67E-05 , 4 SSE S.30E-04 2.82E-04 1.57E-04 S.85E-05 6.75E-05 5.39 E-05 4.30 E-05 A S 5 01E-04 1 57E-04 8 75E-05 5.74E-05 3.STE-05 3 11E-05 2 51E-05 SSk 4.54E-04 1 43E-04 8.26E-05 5.34 E- 05 3.40E-Oh 2. 85 E-0 5 2.31E-05 SW 4 46E-04 1 44E-04 6 25E-05 5.30E-05 3 58E-05 2 85E-05 2 35E-05 WSW e.10 E-04 1.95 E-04 1.08E-04 6. 7 8E- 05 4. 59 E- 0 5 3.67E-05 3.05E-05 k 1 00E-03 3 10E-04 1 74E-04 1 10E-04 7 59E-05 4 07E-05 4 89E-05 WNW E. 7 0E- 04 2.65E-04 1. 50E- 04 S.70E-05 6.86E-05 5.33E-05 4.17E-05 Nb 8 41E-04 2 50E-04 1 38E-04 E. 89E- 05 6 37E-05 4 97E-05 3 84E-05 NNh 5.69E-04 1. 71 E- 04 S.73E-05 6.28E-Oh 4.54E-05 3.55E-05 2.7sE-05 Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-7 (Cont.) Prairie Island Dispersion Parameters ( X /q), sec/m . For Short Term Ground Level Releases $500 Ilts/Yr ors 150 lirs/Qtr for Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 0.8 0.9 1.0 1.1 1. .: 1.3 1.'4

                                                                                                             ~

1 26E-05 1 06E-05 E.97E-06 7 73E-Co c.76E-06 5.51E-06 N 1 57E-05 1.11E-05 6. 81E- 06 5.96 E- 06 5.27E-06 NNE 1.35E-05 S.26E-06 7.87E-06 6.63E-06 1 74E-05 1 44E-05 1 21E-05 1 02E-05 8 57E-06 7 50E-06 NE 5.97E-Oc 5.27E-Oc 1.39E-05 1.14E-05 S.46E-06 t.04E-06 4.83E-06 ENE 1.18E-05 E 3 11E-05 2 51E-05 2 11E-05 1 80E-05 1 53 E-05 1 33E-05 4.35E-05 3.58E-05 2.98E-05 2.54E-05 2.19E-05 1.91E-05 1.71E-05 ESE 2.03E-05 1. 81E- 05 4 65E-05 3 7sE-05 3 18E-05 2 11E-05 2 32E-05 p SE 1.51E-05 1.35E-05

SSE 3.53E-05 2.87E-05 2.41E-05 2.05E-05 1.72E-05 1 66E-05 1 38E-05 1 17E-05 1 01E-05 E.83E-06 7.81E-06
                         $    5       2 05E-05 S .05 E-O n              7.9 3 E-06      7.02E-Oc SSh        1. 89 E- 05                                1.5 4 E-05          1.29 h- 05        1.10E- 05 1 54 E-05           1 30E-05          1 12E-05               9 19 E-06                 8.0$E-06        7.21E-06 SW        l.95E-05 2.0$E-05            1.72E-05           3.47E-05                1. 21E-05               1.0tE-05        5.41E-06 WSW        2. 51 E- 05 4 01E-05                                   3 24E-05            2 70E-05          2 30E-05                 1 89E-05                1.65E-05        1.46E-05 W

3.44E-05 2.75E-05 2.31E-05 1.S6E-05 1 68E-05 1.48E-05 1.31E-05 WNb 1.4 0E-0 5 NW 3 15E-05 2.5 7 E- 0 5 2 17E-05 1 85E-05 1 60E-05 1.24E-05 1.86E-05 1.54E-05 1.31E-05 1.12E 5. 8 5 E-06 e.82E-06 NNb 2.28E-05 Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-7(Cont.) 1 Prairie Island Dispersion Parameters ( X/q), sec/m' , For Short Term Ground Level Releases $500 lirs/Yr or$ 150 lirs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles sector 1.5 1.6 1.7 1.8 1.9 '.0 2 2.1 t1 5.27E-06 4.74E-06 (.30E-06 3.51E-06 3.59E-06 3. 32 E-06 3.07E-06 hhE 4.70E-06 4.22E-06 3.82E-06 3.47E-06 3.18E-06 2.97E-06 2.75E-06 NE 5.89E-06 5.30E-06 4.80E-06 4.37E-06 4.01E-06 3.69E-06 3.42E-06 ENE 4.67E-06 4.21E-06 3.80E-06 3.45E-06 3.16E-06 2.91E-06 2.70E-06 E 1.06E-05 S.52E-06 8.66E-06 7.90E-06 7.25E-06 6.74E-06 6.25E-06 ESE 1.52E-05 1.38E-05 1.25E-Ob 1.13E-05 1.04E-05 S.72E-06 S.03E-06 SE 1.6 2E- 0 5 1. 46E- 0 5 1.33E-05 1.21E-05 1.11E- 05 1.03 E- 05 5. 59 E- 06 Y SSE 1.20E-05 1.09E-05 S.d4E-06 8.96E-06 b.23E-06 7.58E-06 7.04 E-06

                     $                     S     4. 97E-06            6.27E-06            5.68E-06      5.18E-06      4.75E-06         4.36E-06    4.04E-06 SSW       6.2 8 E-06           5.66 E-06           5.14 E-06     4.69E-06      4. 31 E-06       3.9 2 E- 06 3.64 E- 06 Sh       6.4 3 E-06           5.78E-06            5. 24 E-06    4.77 E-06     4.37E-06         3.90 E-06   3.62E-06 WSW       E . 41E-06           1.5bE-06            6.87E-06      6.27E-06      5.77E-06         5.17E-06    4.80E-06 h    1.30E-05             1.17E-05            1.06E-05      S.62E-06      6.83E-06         E.33E-06    7. 73 E-06 kNb       1.17E-C'             1.05E-05            f.65E-06      E.80E-06      E.08E-06         7.42E-06    6.89E-On NW       3.11E-05             1.00E-05            5.09E-06      E.30E-06      7.63E-06         1.13 E-06   6.62E-06 NNb       7.89E-06             7.11E-06           6.47E-06       5.89E-06      5.41E-06         5.01E-06    4.64E-06 Period of Record: 4/1/77 - 3/31/78                                                                   .

O O O TABLE A-7 (Cont.) Prairie Island Dispersion Parameters ( X /q), sec /m . For Short Term Ground Level Releases $500 lirs/Yr or5150 IIrs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 2.2 2.3 2.4 2.5 2.6 2.7 2.8 2.50E-06 2.32E-06 2 27E-06 1.94E-06 1. 84 E- 06 N 2.87E-06 2.67E-06 1. 76E-06 1.66E-06 hhE 2. 56 E- 06 2.39E-06 2.24E-06 2.09E-06 2.03E-06 2.63E-06 2.57E-06 2.24E-06 2.11E-06 NE 3.19E-06 2 98E-06 2 79E-06 1.74E-06 1.64E-06 ENE 2. 51E- 0 6 2.34E-06 2.19E-06 2.05E-06 1.97E-06 4.89E-06 4.75E-06 4.14E-06 3.92E-06 E 5.82E-06 5.44E-06 5 10E-06 6.11E-06 5.78E-06 ESE E.41E-06 7.87E-06 7.38E-06 7.16E-06 7.09E-06 7.82E-06 7.70E-06 7.60E-06 6.62E-06 6. 2 6E-06

> SE E .9 3 E-06 8.35E-06 4.47E-06 5.76E-06 5.55E-06 5.36E-06 4.73E-06 h SSE 6 56E-06 6.14E-06 2.73E-06 2. 59 E-06
 'i     S       3.74E-06        3.51E-06          3.29E-06         3.18E-06                         3.06E-06 2.96E-06          2.89E-06                         2.75E-06  2. 42 E- 04                                 2.28E-06 SSm        3 39E-06        3.16E-06                                                                      2.44E-06                                    2.30E-06 Sm       3.37E-06        3 15E-06         2.95E-06          2.84E-06                         2.70E-06
3. 9 2E- 06 3.85E-06 3.67E-06 3.28E-06 3.10E-06 WSW 4.41E-06 4.18E-06 5.30E-06 5.02E-06 h 7.21E-06 6.74E-06 6.32E-06 6.45E-06 6.03E-06 6.42E-06 6.00E-06 5.65E-06 5.32E-06 5.23E-06 4.5 5 E-06 4.30E-06 WNw 4. 3 7E-06 4.13E-06 hw 6 16E-06 5.76E-06 5.40E-06 5.16E-06 5. 03E-06 l 4.31E-06 4.02E-06 3.76E-06 3.57E-06 3.46E-06 3.00E-06 2.83E-06 NNb Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-7 (Cont.) Prairie Island Dispersion Parameters ( X/q), sec /m , For Short Term Ground Level Releases 5500 lirs/Yr or$150 Ifrs/Qtr For Standard Distances (As Measured from 1:dge of Plant Complex) Miles Sector 2.9 3.0 3.1 3.2 3.3 ' 3.4 3.5-N 1.74E-06 1.66E-06 1.58E-06 1. 5 0E-06 1.43E-06 1. 3 7E-06 1.31E-06 NNE 1.57E-06 1.50E-G6 1.43E-06 1. 3 6E-06' 1.30E-06 1.24E-06 1.19E-06 NE 2.00E-06 1.90E-06 1.81E-06 1. 73 E-06 1.65E-06 1.58E-06 1.51E-06 ENE 1. 5 5E-06 1.48E-06 1.40E-06 1. 3 3E-06 1.27E-06 1.21E-06 1.16E-06 E 3.71E-06 3.51E-06 3.34E-06 3 19E-06 3.04E-06 2.91E-06 2.79E-06 ESE 5.48E-06 5.18E-06 4.93E-06 4.70E-06 4.49E-06 4.29E-06 4.11E-06 SE 5. 9 3E-06 5.63E-06 5. 3 6E-06 5.11E-06 4.87E-06 4.66E-06 4.46E-06 y SSE 4.24E-06 3.97E-06 3.78E-06 3.60E-06 3.44E-06 3.29E-06 3.15E-06 N S 2.4 5 E-06 2.25E-06 2.14E-06 2.04E-06 1.94E-06 1.85E-06 1.77E-06 SSW 2.16E-06 1.96E-06 1.87E-06 1. 78 E-06 1.70E-06 1.63E-06 1.56E-06 SW 2.18E-06 2.03E-06 1.93E-06 1.84E-06 1.75E-06 1.67E-06 1.60E-06 WSW 2.94E-06 2.70E-06 2.57E-06 2.45E-06 2.34E-06 2.24E-06 2 14E-06 W 4.76E-06 4.34E-06 4.13E-06 3.95E-06 3.77E-06 3.61E-06 3.47E-06 WNW 4.07E-06 3.8 6E-06 3.67E-06 3.50E-06 3.34E 3.20E-06 3.06E-06 NW 3.92E-06 3.69E-06 3.51E-06 3.35E-06 3.20E-06 3.0LE-06 2.94E-06

                            'NNW        2.68E-06      2.53E-06                        2.40E-06     2.28E-06                        2.18E-06              2.08E-06               1.99 E-06 Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-7 (Cont.) Prairie Island Dispersion Parameters ( X/q), sec/m , For Short Term Ground Level Releases 5500 lirs/Yr or5150 Ifrs/Qtr For Standard Distances (As Measured from Edge of Plant Comnh.x) Miles Sector 3.6 3.7 3.8 3.9 4.0 - 4.1 4.2 N 1.25E-06 1.20E-06 1.15E-06 1.10E-06 1.06E-06 1. 02E- 06 s. gut-og NNE 1.14E-06 1.09E-06 1.05E-06 1.01E-06 9.73E-07 9.37E-07 S .0 4 E-0 7 NE 1.45E 06 1.39E-06 1.34E-06 1.29E-06 1.24E-06 1.20E-06 1.16E-06 ENE 1.11E-06 1.07E-06 1 02E-06 9.83E-07 9.46E-C7 9.11E-07 E. 79t-0 7 E 2.67E-06 2.57E-06 2.47E-06 2.38E-06 2.29E-06 2.21E-06 2.13E-Oc ESE 3.94E-06 3.78E-06 3.64E-06 3.50E-06 3.38E-06 3.26E-06 3.15 E-06 y SE 4.27E-06 4.10E-06 3. 94 E-06 3.79E-06 3.65E-06 3.52E-06 2. 39 E- 06 N SSE 3.02E-06 2.90E-06 2.79E-06 2.68E-06 2 59E-06 2.50E-06 2. 41 E-06 S 1. 70E-06 1. 63E-06 1. 5 7E-06 1.51E-06 1.4SE-06 1.4OE-06 1.3SE-06 SSW 1.50E-06 1.44E-06 1 38E-06 1.33E-06 1.29E-06 1.24E-06 1. 20 E-Ob SW 1.53E-06 1.47E-06 1.41E-06 1.36E-06 1.29E-06 1.25E-06 1.20E-06 WSW 2.06E-06 1 98E-06 1.90E-06 1.83E-06 1.76E-06 1.70E-06 1.64t-06 W 3.33E-06 3.20E-06 3.08E-06 2.97E-06 2.87E-06 2.77E-06 2.68E-06 WNW 2.93E-06 2.81E-06 2. 7 0E-06 2.60E-06 2.51E-06 2.42E-06 2.33E-06 NW 2.82E-06 2.71E-06 2.60E-06 2.50E-06 2.41E-06 2.32E-Oc  ;.24E-06 NNW 1 91E-06 1.83E-06 1.76E-06 1 69E-06 1.63E-06 1.57E-06 1.52E-06 1 Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-7 (Cont.) 3 Prairie Island Dispersion Parameters ( X /q), see'm' . For Short Term Ground Level Releases $500 lirs/Yr or5150 ifrs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles 4.4 Sector 4.3 4.5 4.6 4.7 4.8 4.9 N 5.59E-07 S.27E-07 8.97E-07 8.68E-O'7 6.41E-07 E. t oE-0 7 7.92E-07 NNE 8.73E-07 8.44E-07 8.16E-07 7.90E-07 7.65 E-0 7 7.4 2E-0 7 7. 20E-0 7 NE 1.12E-06 1.0aE-06 1.05E-06 1.01E-06 9.81E-07 9.51E-07 S.23E-07 ENE E. 4 7E-0 7 E.18E-07 7.91E-07 7.66E-07 7.416-07 1.18E-07 t . 9 7t-07 E 2.06E-06 2.00E-06 1.93E-06 1.87E-06 ~ 1.82E-Oo 1.76E-06 1.71E-06 ESE 3.04E-Co 2.S4E-06 2.85E-06 2.76E-06 2.67E-Oc 2.60E-06 2.52E-06 3 SE 3.27E-06' 3.16E-06 3. 06E-06 2. 5 7E- 06 2. 8 8 E- 06 2.79E-06 2. 70E-Oc

                                     &   SSE      2.34E-06        2.20E-06           2.19 E-06       2.12E-06                 2.07E-06                 2.01E-06             1.95E-06 c)    S       1.30E-06       1.20E-06           1.22E-06        1.18E-06                 1.15E-06                 1.11E-Ob            .1.08E-06 SSW       ! .16 E- 06    1.12E-06           1.09fr06        1. 0 5 E- 06             1.02E-On                 S .94 E-07           S.66E-07 SW       !.16E-06       1.12E-06           1.09E-06        1.0$E-06                 1. 02 E-06               9.91E-07.           9.62E-07 WSW       !.59h-06       1.546-06           1.49E-06        1.44E-06                 1. 39 t- 06              1. 35E-06            1.3th-06 W      2.59E-Oo        2.51E-00           2.43E-06       2.30E-Oo                  2.29E-06                 2. 23 E-06           2.17E-06         '

WNW 2.25E-06 2.18E-06 2.11E-06 2.04E-Ob 1.98E-Oo 1.92E-06 1.8cE-06 NW 2.166-06 2. 09 E- 06 2.01 E- 06 1.95t-Oo 1.d9E-06 1.d4E-06 1.79E-06 NNW 1.46E-06 1.41E-06 1.36E-06 1.32E-06 1.2sE-06 1.24E-06 1.20E-Oc Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-7 (Cont.) Prairie Island Dispersion Parameters ( X/q), sec/m , For Short Term Ground Level Releases 5500 lirs/Yr or$150 lirs/QL; For Standard Distances (As Measured from F4ge of Plant Complex) Miles Sector 5.0 . N 7.67E-01 NNE t . 9 ',E- 0 7 NE 8.97E-07 ENE e.76E-07 E 1.67E-06 ESE 2.45E-06

p SE 2. 62t:-06 O SSE 1.89E-06
      "                                                                              S           1.0SE-06 SSW             S. 3 9 E- 0 7 SW          9.35E-07 WSW              !.27E-06 W           2.11 ti- Oc WNW              1.81E-06 NW           1.74E-06 NNW             1.17E-06 4

Period of Record: 4/1/77 - 3/31/78 .

O O TABLE A-8 O Prairie Island Dispersion Parameters (D/q),1/m , For Short Term Ground Level Releases 5500 firs /Yr or $150 lirs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles 0.5 0.6 0.7 Sector 0.1 0.2 0.3 0.4 N 1.68 E-06 6.63 E-0 7 4.32 E-0 7 3.00 E-0 7 2.18 E-0 7 1.69 E-0 7 1.29 E-0 7 NNE 1.33E-06 5. 43 E-0 7 3.46E-07 2.40E-07 1.72E-07 1.36E-07 1.03E-07 NE 1.19 E-06 4.68 E-0 7 3.05 E-07 2.06 E-0 7 1.45 E-0 7 1.14E-07 9.10E-0 8 ENE 1.20E-06 4.86E-07 3.17E-07 2.23E-07 1.58E-07 1.23E-07 9.49E-08 E 2.08E-06 8. 09 E-0 7 5.21E-07 3.46E-07 2.49E-07 1. 96 E-0 7 1.54E-07 ESE 2.90 E-06 1.14E-06 7.17 E-0 7 4. 85 E-0 7 3.4 5 E-0 7 2.69 E-0 7 2.11E-07

       > SE          3.20E-06                1.26E-06                    7.54E-07              5.08E-07                3.71 E-07          2.94 E-0 7       2.31E-07 O SSE         2.09 E-06               8.24 E-0 7                  5.16 E-0 7            3.41E-07                2.40E-07           1.92E-07         1.55E-Of
       "     S       1.27E-06                5.18 E-0 7                  3.24 E-07             2.23E-07                1.58E-07           1.23 E-0 7       1.00E-07 SSk        1.06E-06                4.33E-07                    2.82E-07              1.92 E-0 7              1.330-07           1.05E-07         8.51 E-08 SW        1.05 E-06               4.42 E-0 7                  2.85 E-0 7            1.91E-07                1.31E-07           1.04E-07         8.55E-08 WSW        1.24E-06                5.19E-07                    3.24E-07             2.14E-07                 1.48E-07           1.19E-07         9.94 E-0 8 W       1.90E-06                7.65E-07                    4.83E-07             3.22E-07                 2.2TE-07           1.82E-07         1.48E-07 WNW        2.42E-06                9.62 E-0 7                  6.10E-07             4.14E-07                 2.99E-07           2.31 E-0 7       1. u 1 E-0 7 Nh        2.30E-06                8.91E-07                    5.49E-07             3.72E-07                 2.73E-07           2.12L-07         1.65E-u7 NNW        1. 79 E-06              T.01E-07                    4.46 E-0 7           3.01E-07                 2.21E-07           1. 72 E-0 7      1.34E-07 Period of Record: 4/1/77 - 3/31/78                                                        ,

O O ~ O TABLE A-8 (Cont.) Prairie Island Dispersion Parameters (D/q),1/m , For Short Term Ground Level Releases 1500 Hrs /Yr or $150 Hrs /Qtr For Standard Distances (As Measuredfrom Edge of Plant Complex) Miles

                                                                                                                                         ~

Sector 0.8 0.9 1.0 1.1 1.2 1.3 1.4 N 1.05E-07 s.25E-08 6. 73 E-0 8 5.55E-08 4.66E-08 3.99 E-0 8 3.416-08 NhE 8.35E-08 6. 76 E-0 8 5.48E-08 4.55E-08 3.85E-08 3.29E-08 2.85E-08 NE 7.39E-08 5.99E-08 4.95E-08 4. 08 E- 0 8 3. 3 5 E-0 8 2. 8 7 E-0 8 2.49E-08 ENE 7.67E-04 6.15E-08 4.97E-08 4.13 E-0 8 3.42E-Oh 2.93E-08 2.53E-08 E 1.25E-07 9.96E-08 8.17E-08 6.79E-08 5.63E-08 4. 82 E- 0 8 4.18E-08 ESE 1.71E-07 1.38E-07 1.12E-07 9. 32 E-0 8 7.8 7 k-0 8 6. 71 E- 0 8 5. 8 6 E-- 0 8 SE 1.88E-07 1.50 E-u 7 1.23 E-0 7 1.02 E-0 7 8.55 E-08 7.34E-08 6.38E-08 p 4.83E-C6 4.22E-un 1.26E-07 1. 01 E-07 8.26E-08 6.86E-08 5.63E-08 4 SSE 5.16 E-0 8 4.29 E-0 8 3.60E-08 3.0 7 E-0 8 2.66E-08 w S 8.06E-08 6. 40 E-0 8 SSh 6.87E-08 5.49E-08 4.50E-08 3.73E-08 3.00E-08 2.57E-08 '2.23E-08 Sb 7.00E-08 5.41E-08 4.47E-08 3.73E-08 3.00E-08 2.57E-08 2.25E-06 WSb 8.11E-08 6.49 E-08 5.32E-08 4.44 E-0 8 3.59E-08 3.08 E-0 8 2.67E-08 h 1.21E-07 9.57E-08 7.80E-08 6.48E-08 5 22E-08 4.46E-08 3.86E-08 WNh 1.4 7 E-0 7 1.15E-01 9.45E-08 7.80E-08 6. 54 E-08 5.61 t:-0 8 4.8 b E-0 6 NW 1.34E-07 1.07 E-u7 8.78E-08 7.30 E-u s 6.13 E-0 8 5.23E-08 4.33E-08 NNb 1.08E-07 8.62E-08 6.96E-Ch 5.34E-08 4.82E-08 4.12E-08 3.60E-08 Period of Record: 4/1/77 - 3/31/78

O O O TABLE A-8 (Cont.) Prairie Island Dispersion Parameters (D/q),1/m , For Short Term Ground Level Releases 1500 lirs/Yr or $150 Hrs /Qtr For Standard Distances (As Measuredfrom Edge of Plant Complex) Miles . Sector 1.5 1.6 1.7 1.8 1.9 2.0 2.1 N 2.98 E-0 8 2.62 E-0 8 2.33E-08 2.08E-08 1.87E-08 1. TOE-08 1.54 E-08

1. 30 E-08
                                                                                                                                   ~

hhE 2.49E-08 2.20E-08 1.95E-08 1.74E-08 1.56 E-0 8 1.43E-08 NE 2.17E-08 1.92E-08 1.70E-08 1.52E-08 1.37E-08 1.23E-08 1.12E-08 ENE 2.20E-08 1.94E-08 1.72E-08 1 54E-08 1.38E-08 1.25 E-0 8 1.13 E-0 8 E 3.66E-08 3.24E-08 2.89E-08 2.58E-08 2.32E-08 2.11 E-0 8 1.91E-08 ESE 5.12 E-0 8 4.53 E- 08 4.03 E-0 8 3.60E-08 3.23E-08 2.95E-08 2.68 E-0 8

      >    SE       5.61E-08        4.96 E-08                4.41E-08                                             3.95E-08                    3.55E-08                 3.21E-08                                      2.92 E-0 8 1
      ^

SSE 3.70E-08 3.27E-08 2.91E-08 2.60E-08 2.34E-08 2.10E-08 1.91E-08 S 2.3 2 E-0 8 2.05E-08 1.82E-08 1.63 E-0 8 1.46 E-0 8 1.31E-08 1.19 E-0 8 SSh 1.95E-08 1.73E-08 1.54 E-08 1.38E-08 1.24 E-08 1.10 E-0 8 't.00E-08 Sh 1.97E-03 1.74E-08 1.S4E-08 1.38E-08 1.24E-08 1.08E-08 9.86E-09 WSW' 2. 34 E-08 2.07E-08 1.84E-08 1.65E-08 1.49E-08 1.30 E-08 1.18E-08 i h 3.37E-08 2.97E-08 2.64E-08 2.36E-08 2 12E-08 1.95E-08 1.77E-08 WNW 4.26 E-0 8 3.16 k- 0 8 3.38 E-08 3.02 E-0 8 2.12E-08 2.44 E-0 8 2.22E-08

NW 3.97E-08 3.51E-08 3.12E-08 2.80E-08 2.52E-08 2.30E-ou 2.09E-08 .

NNb 3.15E-08 2.78E-08 2. 4 6 E-0 8 2.22E-06 1.59 E-C 6 1.h1E-08 1.64 E-0 8 Period of Record: 4/1/77 - 3/31/78

                             ..        .--     - - - - -         - - - - , - . - - _ _ _ _ _ . - - - - - - - .           _..,--.e.4
                                                                                                                                      ,,_-,--_,,..---.--..-=,.,e          nw - - - ,                         . _ , ,       ~v    ,--y

TABLE A-8 (Cont.) Prairie Island Dispersion Parameters (D/q),1/m , For Short Term Ground Level Releases 5500 Ilts/Yr or $150 lirs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles

                                                                                                      ~

Sector 2.2 2.3 2.4 2.5 2.6 2.7 2.8 N 1.41E-08 1.29E-08 1.19E-08 1.09E-08 1.05E-08 8.80E-09 d.23E-09 hhE 1.18E-Od 1.08E-08 9.96h-09 9.12E-09 8.70E-09 7.42E-09 6.90E-09 NE 1.02E-08 9.34E-09 8.3aE-09 7.92E-09 7.61E-09 6.51E-09 6.05E-09 . ENE 1.03E-08 9.45E-09 8.69E-09 7.99E-09 7.58E-09 6.56E-09 6.10E-09 E 1.74E-08 1.60E-08 1.47E-08 1.3sE-08 1.32E-08 1.13E-Od 1.05E-06 ESE 2.44 E-0 8 2.24E-Om 2.05E-08 1.96E-08 1.90E-Od 1.61E-08 1.50E-Od SE 2.o6E-08 2.43E-08 2.24E-08 2.lbE-Od 2.09E-08 1.79E-08 1.06E-Ge p SSE 1.74E-08 1.60E-08 1.47E-08 1.39E-08 1.32E-08 1.14E-08 1.06E-08

    &     S        1.09E-08         9.97E-09              9.17E-09         8.70E-09          8.23E-09       7.22E-09     6.73E-09 ui SSk         9.14 E-09        8.37E-09              7.70E-09         7.37E-09          6.91E-09       5.96E-09     3.54E-09 i

Sh 9.00E-09 8.25E-09 7.60E-09 7.18E-09 6.72E-09 5.98E-09 5.56E-09 WSW 1.08E-08 9.89E-09 9.09E-09 d.77E-09 a.4th-09 7.20h-09 6.09E-09 h 1.62E-08 1.48E-08 1.36E-Od 1.3bE-08 1.25E-Od 1.08E-08 1.00E-08 kNW 2.02E-08 1.86E-Ou 1.71E-08 1.59E-Od 1.53E-08 1.31E-Od 1.22E-08 NW 1.90E-08 1.74E-08 1.60E-08 1.51E-Od 1.44E-Od 1.23E-08 1.14E-08 Nhh 1 50E-Od 1.37E-08 1.26E-Od 1.17E-08 1.12h-08 9.53E-09 8. doe-09 Period of Record: 4/1/77 - 3/31/78

I O O O TABLE A-8 (Cont.) i 2 Prairie Island Dispersion Parameters (D/q),1/m , For Short Term Ground Level Releases <_500 lirs/Yr or il50 IIrs/Qtr

                                                                      ~

For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 2.9 3.0 3.1 3.2 3.3 3.4 3.5 7.68E-09 7.22E-09 6.76E-09 6.35E-09 5.97E-09 5.03E-09 5.31E-09 N 5.00E-09 4.72E-09 4.46E-09 NNE o.44E-09 6.04E-09 5. 06 E-0 9 5.32E-09 5.64E-09 5.27E-09 4.94E-09 4.64E-09 4. 3 6E-09 4.11E-09 3.89E-09 NE 4.16E-09 3.92E-09 5.69E-09 5.33E-09 5.00E-09 4.69E-09 4.41E-09 ENE 6.69E-09 E 9.78E-09 9.10E-09 8.52E-09 8.00E-09 7. 32 E-09 7.09E-09 ' 1.39E-08 1.30E-08 1.21E-08 1.14E-08 1.07E-08 1.01E-08 9.53E-09 ESE 1.12E-08 1.06E-08 1.55E-08 1.44E-08 1.35E-08 1.27E-08 1.19E-08 SE 9.88E-09 9.11E-09 8.52E-09 8.00E-09 7.52E-09 7.08E-09 6.69E-09

           > SSE        6.27E-09                       5.67E-09                             5.31E-09          4.98E-09                                                 4.68E-09       4.41E-09             4.16E-09
           &    S 5.16E-09                       4.61E-09                             4.32E-09          4.06E-09                                                 3.82E-09       3.61E-09             3.41E-09 m SSW                                                                                                                                                                      3.70E-09             3.50E-09 5.18E-09                       4.74E-09                             4.45E-09          4.17E-09                                                  3.93E-09 SW                                                                                                                                                                     4.40E-09             4.16E-09 WSW       6.24E-09                      '5.04E-09                             5.2nE-09         4.96E-09                                                  4.o7E-09 9.36E-09                       8.39E-09                             7.87E-09          7.40E-09                                                 6.97E-09       6.58E-09             6.22E-09 W

WNW 1.13E-08 1.06E-08 9.92E-09 9.31E-09 8.76E-09 8.27E-09 7.81E-09 1.01E-08 9.88E-09 9.26E-09 8.10E-09 8.19E-09 7.72E-09 7.31E-09 Nw 5.97E-09 5.63E-09 8.26E-09 7.66E-09 7.17E-09 6.73E-09 6.33E-09 NNW 1 Period of Record: 4/1/77 - 3/31/78 4 4

O O O TABLE A-8 (Cont.) Prairie Island Dispersion Parameters (D/q),1/m , For Short Term Ground Level Releases 5500 lirs/Yr or$150 lirs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles

                                                                                                                                                                          ^

Sector 2.9 3.0 3.1 3.2 3.3 3.4 3.5 7.68E-09 7.22E-09 6.76E-09 6.35E-09 5.97E-09 5.63E-09 5.31E-09 N 4.72E-09 4.4aE-09 o.44E-09 6.04E-09 b.coE-09 5.32E-09 5.00E-09 NNE 4.11E-09 3.89E-09 5.64E-09 5.27E-09 4.94E-09 4.64E-09 4.36E-09 ,

                                   .NE                                                                                                                                                               4.16E-09 3.92E-09 5.69E-09                    5.33E-09                   5.00E-09             4.69E-09                        4.41E-09 ENE 9.78E-09                    9.10E-09                   8.52E-09             8.00E-09                        7. 32 E-09                            7.09E-09 6.69E-09 E

1.39E-08 1.30E-08 1.21E-08 1.14E-08 1.07E-us 1.01E-08 9.53E-09 ESE 1.55E-08 1.44E-08 1.35E-08 1.27E-08 1.19E-08 1.12E-08 1.06E-08 SE 9.88E-09 9.1LE-09 8.52E-09 8.00E-09 7.52E-09 7.08E-09 6.69E-09

  > SSE                                            6.27E-09                    5.67E-09                   5.31E-09             4.98E-09                        4.68E-09                              4.4LE-09 4.16E-09 5

5.16E-09 4.61E-09 4.32E-09 4.06E-09 3.82E-09 3.61E-09 3.41E-09

  $ SSW                                                                                                                                                                                              3.70E-09 3.50E-09
                                   .SW             b.18E-09                    4 74E-09                   4.45E-09             4.17E-09                        3.93E-09 6.24E-09                    5.n4E-09                   5.28E-09            4.96E-09                        4.o7E-09                               4.40E-09 4.loE-09 kSW                                                                                                                                                                     6.58E-09 6.22E-09 W       9.36E-09                    8.39E-09                   7.87E-09             7.40E-09                       6.97E-09 1.13E-08                    1.06E-08                   9.92E-09            9.31E-09                          8.76E-09                             8.27E-09 7.81E-09 WNW                                                                                                                                                                    7.72E-09 1.0lE-08                    9.88E-09                   9.26E-09            8.10E-09                         8.19E-09                                       7.31E-09 NW                                                                                                                                                           5.97E-09 5.63E-09 NNW'                  8.26E-09                    7.66E-09                   7.17E-G9            6.73E-09                         6.33E-09 Period of Record: 4/1/77 - 3/31/78

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

O O - O TABLE A-8 (Gnt.) Prairie Island Dispersion Parameters (D/q),1/m . For Short Term Ground Level Releases 5500 lirs/Yr or1150 lirs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 3.6 3.7 3.8 3.9 4.0 4.1 4.2 N 5.01E-09 4.75E-09 4.50E-09 4.28E-09 4.07E-09 '3.88E-09 3.10E-09 NNE 4.22E-09 4.00E-09 3.79E-09 3.60E-09 3.42E-09 3.26E-09 3.11E-09 NE 3.68E-09 3.49E-09 3.31E-09 3.15E-09 3.00E-09 2.85E-09 2. 72 E-09 ENE 3.71E-09 3.51E-09 3.33E-09 3.17E-09 3.01E-09 2.87E-09 2.74E-09 E 6.33E-09 6. 00E-09 5.69E-09 5.41E-09 5.15E-09 4.91E-09 4.68E-09 ESE 9.02E-09 8.54E-09 8.10E-09 7.70E-09 7.32E-09 6.98E-09 6. 06 E- 09

                >                        SE                                    9.99E-09  9.4aE-09           8.96E-09               8.51E-09                            8.09E-09                                      7.70E-09         7. 33 E-09 SSE                                      _6.33E-09   5.99E-09           5.6BE-09               5.40E-09                            5.14E-09                                      4.90E-09         4.67E-09
                &                                                                                                                  3.36E-09                            3.20E-09                                       3.05 E- 09      2 . 91 E-09 N                             S                                3.94E-09  3.73E-09           3.54E-09 SSW                                         3.23E-09 3.06E-09           2.91E-09               2.77E-09                            2.64E-09                                       2.51E-09       2. 40 E-09 SW                                     3.31E-09 3.14E-09           2.98E-09               2.e3E-09                            2.66E-09                                       2. 53 E-09      2.42E-09 WSW                                         3.94E-09 3.73E-09           3.54E-09               3.37E-09                            3.21E-09                                       3 06 E-09       2.92E-09 W                                 5.89E-09 5.59E-09           5.31E-09               5.05E-09                            4.81E-09                                        4.59E-09       4.38E-09 WNW                                         7.39E-09  7.00E-09          6.64E-09               6.31E-09                            6.00E-09                                         5. 72 E- 0 9  5.45 E-09 NW                                     6.93E-09 a.5sE-09           6.23E-09               5.92E-09                            5.63E-09                                        5.360-09      5.11 E-09 NNW                                         5.33E-09  5.05E-09          4.79E-09               4.boE-09                             4 34E-09                                        4.13E-09      3.94E-09 Period of Record: 4/1/77 - 3/31/78
                                                                                                                           \

O O O TABLE A-8 (Cont.) Prairie Island Dispersion Parameters (D/q),1/ m , For Short Term Ground Level Releases 5500 lirs/Yr or 5150 lirs/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 4.3 4.4 4.5 4.6 4.7 4.8 4;9 N 3.SSE-09 3.40 E-09 3.260-09 3.14E .09 2.99 E- 09 2.d 7 E-09 2. 76 t- 69 NNE 2.9TE-09 2.84E-09 2.71E-09 2.o0E-09 2.49E-09 2.39E-09 2.30E-09 NE 2. 60 E-09 2.48E-09 2.37E-09 2.27E-09 2.18E-09 2.09E-09 2.01E-G9 ENE 2. 61 E-09 2.49 E-09 2.39E-09 2.29E-09 2.19 E-09 2.10 E-09 2.02E-09 E 4.4dE-09 4.28E-09 4.10E-09 3.93E-09 3.77E-09 3.62E-09 3.47E-09 ESE 6.35E-09 6. 07 E-09 5.81t-09 5.57t-09 5. 34 t-09 5.13E-09 4.92E-09 SE 6.99 E-09 6.6 8 E-09 6.38E-09 a.12 E-09 5. 86 E-09 5.62E-09 5.38E-09 > SSE 4.48E-09 4.28E-09 4.10E-09 3.93E-09 3.78E-09 3.63E-09 3.48E-09 di S 2.78E-09 2.65E-09 2.54E-09 2. 4 3 E-09 2.346-09 2.24 E-09 2.15L-09

  • SSW 2.30E-09 2. 20 E-09 2.11E-09 2.02E-09 1.94E-09 1.86E-09 1.79E-u9 SW 2. 31 E- 09 2.21E-09 2.12E-09 2.03E-09 1.95E-09 1.87E-09 1.80t-09 WSW 2.19E-09 2.67 E-09 2.55 E-09 2.45E-09 2.33 E-09 2. 24 E-09 2.15E-09 -

W 4.19E-09 4.01E-09 3.84E-09 3.69E-09 3.54E-09 3.40E-09 3.27E-09 WNW 5. 20 E-09 4 . 98 E-09 4. 76 E- 09 4.57t-09 4. 3 8 E- 09 4.21E-09 4. 04 E- 09 NW 4.8 B E-09 4.66E-09 4.44E-09 4.25E-09 4.08E-ov 3.92 E-09 3.77E-09 NNW 3.76E-09 3.60E-09 3.43E-09 3.29E-09 3.16E-09 3. 03 E-09 2.91E-09 Period of Record: 4/1/77 - 3/31/78

  ~.                               _                                    . _ . . _ _ _ _ _ _ . _ _ . _ _ _ . _ . _                 _ _ _ . _ _ _            _ _ _ . _     _ _ _

O O O TABLE A-8 (Cont.) Prairie Island Dispersion Parameters (D/q),1/m . For Short Term Ground Level Releases 5500 Ilts/Yr or $150 Ilts/Qtr For Standard Distances (As Measured from Edge of Plant Complex) Miles Sector 5.0 - N 2 . o S E- 09 NNE 2.21 E-09 NE 1.93E-09 ENE 1.94t-09 E 3.34E-09 ESE 4.73E-09 SE b.17E-09 f w SSE 3.35E-09

  • S 2.0 T E-05 SSW 1.731-09 SW L.73E-09 WSW 2.uTE-09 W 3.LbE-09 WNW 3. 89 E- 09 NW 3.63E-09 NNW 2. DOE-0%

Period of Record: 4/1/77 - 3/31/78 4 l _ ,, . . . _ , . _ , . _ .,,.,,,,._,..,n.. , ,,_,.,.n,, ..n.-- .. .,_ . _ , , . , , . _

l l l O ) f i l APPENDIX - B Prairie Island 12.2m Wind and 6T 42. 7 -12 .2 m Stability Joint Frequency Distributions (4/1/77 - 3/31/78) O l s O B-1 l i

s. s PAGE 177 .. .. . - .-

NO2THERN STATES POWER OOMPANY - PR ISLAND NUCLEAR CENERATING PLANT 31TE t1E T E OR OL OGY - FREQUENCY DISTRIBUTION TABLES HOURS AT EACH WIND SPEED'AND DIRECTION i PERIOD: 4/ 1/77 THROUGH 3/31/78

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

STASILITY CLASS A ELEVATION 40 FT ,

           . - . . - -.                         . . ._ W 1 ND . SR E E D LISEM I . A1. 4 8_E T                                                              LEVEL.. - -_.._                                              -.-.---.                                            _ - - - - - - . . - . . . . . - _ - - - . . . - - . . -                                                                     - - .

DIRECTION 1 TO 3 4 TO 7 4 TO 12 13 TO IS 19 TO 24 ABOVE 24 TOTAL N 7 CO 29 11 0 0 49

             ..NNE_                 ....                13 . .                       1.9                    . 04. ... . .           ..6.                    ..         4        ...._.._O_...                                 .. 56... _. . _..._ _                                    -
                                                                                                                                                                                                                                                                                                                                                        ._._..3..

NE  !! 35 to 1 0 0 43 ENE 11 ;33 ,

                                                                                                             .2e                               9                       e                        -4                                  44                                                #       '

E 14 37 E4 9 8 0 75 . . ESE'._ ~ A A t i .. A 1_' 7.- _.. .2., ... 84 ._-.107_._. . . _ . . . . _ _ _ . . SE 4 10 02 13 1 0 50

                  ~SSE                                     1                           7                         19                        12                          0                          0                                 41 S                                    O                          23                          45                        07                          0                          0                                 97
          .. SSW                                           1. . _ _ __. 2 0. ._ . . . . 3 9 . _                                          . 14 _                        O.              . . . 0                           . _ . 76 . _ . - . . . _                             _ . . .             .          _ .                      . _ . .                                  .       . _ . .

SW 2 37 30 3 8 9 50 WSW G h 21 . 25 11 0-0 37 , H 1 2 9 , " ~ ,, . 44 14 2 0 . 96 "* =

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       -. _.WNW.                 .. . _ _ 4                                          *i               '
                                                                                                                 && ...               .wS4..                ...28........                         1....L lS'                                '

2..__.. . . . . . .. . . . . _ . . ' . . _ NW 10 42 72 53 00 0 199 E NNW 11 43 49 00 0 0 125 1 p2 VAR 0 0 0 0 0 0 0 TCTAL Houns THIS CLASS 1408 H"URS OF CALM THIS CLASS . e PE3 CENT OF ALL. DATA.THIS CLAS8 ^ ' . . - . . ... . .34.41 . .. . . -. . . . . . . . - .. . .. ._. . .. I e

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                                                                                                                                                                                                                                                                                                                                                                           ,. .. l. . . .
 --'  ....s                 . _ . . . . _ - -                      . - . . . - . . . . . . . .                                    ..         .                 .             .              _ _.__ -. . . . . . . . . . _                                                    . . . . . . . . .                                         ..                       .

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P AGE- 170 -- -.. - NOQTHERN STATES POWER COMPANY - PR ISLAND NUCLEAR GENERATING PLANT (SITE NETEOROLOGY - FREQUENCY DISTRISUTION TASLES HOURS AT EACH WIND SPEED AND DIRECTION PERICO: '4/ 1/77 THROUGH 3/31/74 . . . . . . STASILITY CLASS S ' ELEVATION 40 FT _ e t -

        ...._.--...___...___.......-.3.                                                            . ...........___-.__........__._.........--                                                                                                                                                                                                                                '
        - - - - .                                         - -d&NO.SEESSMSM1 AT 4 4-.E.T.-                                                                     LEVEL.                                                          -..J__                                                             -           -----4                                . . ~.- - --                                       . . - - _ - . -

4 TO 7 4 TO 12 13 TO to 19 TO 24 ASOVE 24 TOTAL DIRECTION 1 TO 3

        .._______ ..__.._. _....__. _. _.... __.__... __..__.. ___.___. _______.                                                                                                                                                                                                                                                                                                                                       j N                                           O                           3                         5                              1                              0                         0                            9
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        --- .ESE                                     .. i                                 e                       2a                        _A                                    1.                        0 _ .. _. e s                             .._.-                                                     - -. . -                                      ..-

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        ....- WNW.                               -- _1
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PAGE 103 - . . . . NO2THERN STATES POWER COMPANY - PR ISLAND NUCLEAR GENERATING PLANT 3ITE F1ETEOROLOGY - FREQUENCY DISTRIBUTION TABLES HOURS AT EACH WIND SPEED AND DIRECTION PERIOD: 4/ 1,"77 THROUCH J/31/78 37A3ILITY CLASS D ELEVATION 40 FT

                                           . . . . .. . . _ _ .. .. M I ND.S E EE D 1212.H 1. A T A A ..E T. _ .                                                                                                                       LEVEL.__....__                                                -.. .                   _..               . - - - _ _ . . . . . ..... _                                                  . ..                           -.

DIRECTION 1 TO 3 4 TO 7 8 TO 10 13 TO 18 19 TO 04 ABOVE 04 TOTAL N 9 04 11 4 0 0 50

                                                     ,NNE.                                                         .             .6                  _f.2                .__ 9 . _ _.                                         0          .. .. e                    ..         ..O_.                             37. . . _ . . . . . ._ . . . . . . . _ . _ . _ . .                                                    , .

NE- 16 26 4 0 0 0 46 ENE 11 41 4 0 0 0 56 E 11 95 07 0 0 0 133

                            .-               ..ESE.                                                                              ' A.                   EZ _ . 15 L . ._ . . . 13 . . .. ..                                                           .0.           . . .             0                         238_..._                                       ._                              .. . .. _ .                  .4..-...                                    . . .

SE 10 30 90 38 5 0 173 SSE 8 40 59 51 10 0 tes S 1 51 70 17 4 0 145

                                                       .5S4                                                                          5...          . . f. 9 . . .._30..                                     ._.12                  -_.                  0 . .                      .0.            ..            .76.                   . . . . _ . .                                       . . . ..                                                    .

SW 4 15 17 4 0 0 40 WSW 5 23 - 31 01 3 4 ' 47 H & 53 41 , ; 04, 6' 1'> .355 , , m

                                    . uMW . . . .. 14                                                                                             _ str '                            2A ._ ..                            75.._..._ 21                                     -- 6                    ..... 24 3 . .. -

NW 14 44 70 110' 41 0 081 NNW 16 20 41 05 13 0 117 f, e VAR .0 0 . 0 0 . 0 TOTAL HOURS THIS CLASS 2051 HIURS OF CALM THIS CLASS , 4 P EZCEMT. OF. ALL . D AT A. .TH15. CLASR' . - . . . 24.49 . . . . . _ . . . . . . ~ . . . - - . .2 _.;.-____ _ .. ' -s

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        "N32THERN STATES POWER COMPANY - PR ISLAND NUCLEAR GENERATING PLANT                                                                                                                                                                                                                                                                         .

3ITE NETEOROLOGY - FREQUENCY DISTRISUTION TABLES

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

HOURS AT EACH WIND SPEED AND DIRECTION PECIOD: 4/ 1/77 THROUGH 3/31/78 1 3TADILITY CLASS F

     .!                                  40 FT
     . l--__.._____.__.

ELEVATION .... ..................__._______.._...............__... . b_ ._ J _._. MIND _.SErrn i tsaML.A T._4 0 F.T _... LEVE L ._ . . . _ . . . -

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

DIRECTION 1 TO 3 4 TO 7 8 TO 12 13 TO 18 19 TO 04 ABOVE 24 TOTAL N 18 8 3 0 0 0 29

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SE 38 49 36 3 0 0 144 SSE 07 30 17 2 1 0 79 S- 10 14 01 7 0 0 56

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NW && 71 14 3 0 0 156 9 NNW 09 19 4 0 0 0 56 VAR 0 0 0 0 0 0 0

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TOTAL HOURE THIS CLASS , 1953 s MEURS OF CALM THIS CLASS .. 7 CE.R CE N T . O F ALL DATA..Ild!S. CLASS - . _ . . .12.SZ . . . . . . . _ . . . . . . . . . _ _ _ .. . ... ... .. __

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i o !l f PRAIRIE ISLAND NUCLEAR GENERATING PLANT  ! I OFFSITE DOSE CALCULATION MANUAL l (ODCM) l l l I i l i i i I i

DOCKET NO. 50-282 and 50-306 f

1

)                                                                                                                                           ';
i f

i l 1 1 NORTHERN STATES POWER COMPANY I

MINNEAPOLIS, MINNESOTA -

i I  ! REVISION 1

                                                                                                                                            .I APRIL, 1980 O

i I.

l I O- TABLE OF CONTENTS l Section Title Page Table of Contents i i List of Figures li List of Tables 111 Record of Revisions v List of Effective Pages vi

1.0 INTRODUCTION

1-1 2.0 LIQUID EFFLUENTS 2-1 2.1 Monitor Alarm Setpoint Determination 2-1 ,

2.2 Liquid Effluent Concentration - Compliance 2-7 '

With 10 CFR 20 2.3 Liquid Effluent Doses - Compliance 2-9 With 10 CFR 50 l References 2-13 , O 3.0 GASEOUS EFFLUENTS 3-1 3.1 Monitor Alarm Setpoint Determination 3-1 Gaseous Effluent Dose Rate - Compliance 3-7

                                                                       ~

3.2  ! With 10 CFR 20 - 3.3 Gaseous Effluent Doses - Compliance 3-12 l with 10 CFR .50  ;

                                                                                                      .l

. References 3-18 i 4.0 INFORMATION RELATED TO 40 CFR 190 4- 1 ~ AND 40 CFR 141  : i 5.0 RADIATION ENVIRONMENTAL MONITORING 5-1  : PROGRAM  : APPENDIX A - Meteorological Dispersion A-1  ! Parameters  ! APPENDIX B - Joint Frequency Distribution B-1 i Tables i 1 i Rev. 1

B 1 i I LIST OF FIGURES l i Figure Page j j ' l 5.1-1 Prairie Island Nuclear Generating 5-6 i Plant Radiation Environmental , Monitoring Program ..  ! l t 5.1-2 Site Boundary TLD Locations .5-7  ! i  ! t 5.1-3 4-5 Mile Ring, Control, and Special Interest TLD Locations 5-8 l !

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LIST OF TABLES Tables Page 2.1-1 Liquid Source Terms For PNGP 2-6 2.3- 1 AgValues for the PNGP 2-14 3.1-1 Monitor Alarm Setpoint Determination For PNGP 3-4  ! 3.1-2 Gaseous Source Terms For PNGP 3-5 3.1-3 Dose Factors and Constants 3-6 ' i 3.2-1 Pg Values for the PNGP 3-11 ,

3. 3-1 Dose Factors for Noble Gases and Daughters 3-19
  • 3.3-2 R; Values for the PNGP - Ground, All Ages 3-20 3.3-3 R; Values for the PNGP- Vegetable, Adult 3-21  !

3.3-4 R; Values for the PNGP - Vegetable, Teen 3-22 3.3-5 R; Values for the PNGP - Vegetable, Child 3-23 3.3-6 R; Values for the PNGP - Meat, Adult 3-24 O 3.3-7 R; Values for the PNGP - Meat, Teen 3-25 i 3.3-8 R; Values for the PNGP - Meat, Child 3-26 f 3.3-9 Rg Values for the PNGP- Cow Milk, Adult 3-27 3.3-10 Rg Values for the PNGP- Cow Milk, Teen 3-28 3.3-11 Rg Values for the PNGP- Cow Milk, Child 3-29 i 3.3-12 R; Values for the PNGP - Cow Milk, Infant 3-30 f 3.3-13 R; Values for the PNGP - Goat Milk, Adult 3-31 3.3-14 RgValues for the PNGP - Goat Milk, Teen 3-32  ; 3.3-15 R; Values for the PNGP - Goat Milk, Child 3-33 3.3-16 R; Values for the PNGP - Goat Milk, Infant 3-34 3.3-17 Rg Values for the PNGP-Inhalation, Adult 3-35 + 3.3-18 R; Values for the PNGP - Inhalation, Teen 3-36 O lii

!                                                                                       i LIST OF TABLES (Continued)

Tables Py ' i 3.3-19 R; Values for the PNGP - Inhalation, Child 3-37 3.3-20 R3 Values for the PNGP - Inhalation, Infant 3-38 j 5.1-1 PNGP - Radiation Environmental Monitoring 5-3 l Program Sampling Locations  ; i O ,

                                                                                        ?

I P 1 O 9 IV

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