A830021, Semiannual Operating Rept, Radioactive Effluents,Jan-June 1983

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Semiannual Operating Rept, Radioactive Effluents,Jan-June 1983
ML20092N780
Person / Time
Site: Cooper Entergy icon.png
Issue date: 06/30/1983
From: Pilant J
NEBRASKA PUBLIC POWER DISTRICT
To: Jay Collins
NRC OFFICE OF INSPECTION & ENFORCEMENT (IE REGION IV)
References
LQA8300212, NUDOCS 8407050045
Download: ML20092N780 (200)


Text

Dms NEBRASKA PUBLIC POWER DISTRICT COOPER NUCLEAR STATION SEMI-ANNUAL OPERATING REPORT RADIOACTIVE EFFLUENTS DOCKET NUMBER 50-298 January 1,1983 through June 30,1983

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'LQA8300212 September 6, 1983 Mr. John T. Collins Regional Administrator U.S. Nuclear Regulatory Commission Region IV 611 Ryan Plaza Drive Suite 1000 Arlington, Texas 76011 Subj ect : Semi-Annual Operating Report - Radioactive Effluents Cooper Nuclear Station January 1, 1983 through June 30, 1983 NPO Docket No. 50-298, DPR-46

Dear Mr. Collins:

In accordance with Paragraph 5.4.1.b of the Cooper Nuclear Station Environ-mental Technical Specifications, the Nebraska Public Power District submits the Cooper Nuclear Station Semi-Annual Operating Report - Radioactive Effluents for the period January 1,1983 through June 30, 1983.

In accordance with Reg Guide 10.1, Revision 4, we are enclosing one signed original of the report for your use and one copy to the Document Control Desk.

Should you have any questions or comments regarding this report, please contact me.

Sincerely, db

,~L Jay M. Pilant Technical Staff Manager Nuclear Power Group KMK:cmk Enclosure cc:

Do.cument Control Desk w/ enc.

U.S. Nuclear Regulatory Commission Washington, DC 20555 J

1 NEBRASKA PUBLIC POWER DISTRICT COOPER NUCLEAR STATION f

SEMIANNUAL OPERATING REPORT RADI0 ACTIVE EFFLUENTS January 1, 1983, through June 30, 1983 USNRC Docket 50-298 i

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Contents Introduction Appendix A: Source Terms Appendix B: Meteorology Appendix C: Dose Calculations I

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INTRODUCTION This report sununarizes meteorological data and doses from radioactive effluents fcr the Cooper Nuclear Station for the period January through June 1983.

' Th2 data presented meet the reporting requirements of Regulatory Guide 1.21 of the U.S. Nuclear Regulatory Conunission (Revision 1, June 1974).

Th2 report is organized into three parts. Appendix A presents the effluent cnd waste disposal source term data.

Appendix B presents a sununary of onsite meteorological data for the report period, including atmospheric diffusion catimates and a description of the atmospheric diffusion model.

Appendix C presents the doses from liquid and gaseous radioactive effluents. Also included in Appendix C are isopleth figures for atmospheric diffusion estimates cnd doses, and a description of the dose calculation models.

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APPENDIX A I

i SOURCE TERMS 3

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CONTENTS a

EFFLUENT AND WASTE DISPOSAL REPORTS 9

m.

EFFLUENI AND WASTE DISPOSAL (January through June 1983)

Cooper Nuclear Station effluent and waste disposal data are presented below in the format prescribed by Ragulatory Guide 1.21.

Fccility:

Cooper Nuclear Station License ~: DPR-46 1.

Regulatory Limits Fission and activation gases a.

Restrictions on gaseous activity release:

Maximum release rate of noble gases and tritium (except for halogens and particulates with half-lives greater than 8 days):

Qs (2.5Eys + 1.255' s) + Qv (7.3Eyv + 77K3v) $ 0.16 g

when averaged over a calendar quarter.

Y gamma g-beta Where Qs and Qv are the quarterly release rates in curies /second of radioisotopes from the stack, reactor building, turbine building, and augmented radwaste building vents; Eys and fyv are the average jamma energies per disintegration of stack and vent effluents; Egs and $3v are the average beta energies from stack and vent e f fluents.

b.&c.

Iodines and particulates with half-lives of greater than 8 da'ys.

The release rates of I-131 and particulates with half-lives greater than 8 days released to the environs as part of airborne effluents shall not exceed:

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+

Ov

< 0.08 7.7E-06 2.1E-06 when averaged over a calendar quarter.

Where Qs and Qv are the quarterly release rates in curies per second of I-131 and particulates with half-lives greater than 8 days from the stack, reactor building, turbine, and augmented radweste building vents.

d.

Liquid Effluents Maximum calendar quarter release rate of radioactive liquid effluents (excluding tritium and noble gases): 25 curies.

Maximum activity of discharged liquid radwsste tank (sample tank only):

10 curists.

A1

Maximum radioactivity release concen'tration of discharge channel liquid effluents shall not exceed the values specified in 10 CFR 20,- Appendix B, Table II, Column 2, for unrestricted areas.

2.

- Maximum Permis... le Concentrations No MFC values are required specifically in Cooper Nuclear Station Environ-mental Technical Specifications fort Fission and activiation gases, a.

b.

Iodines, or Particulates with half lives of greater than 8 days.

c.

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

The equation presented in Ib. and Ic. under Regulatory Limits provides a method to be used in summing airborne halogens and particulates with half-lives greater than 8 days released from the stack and vents to assure that the release rate does not exceed 10 CFR Part 20, Appendix B, Table II, Column 1, for unrestricted areas.

5 d.

Liquid Effluents The maximum permissible concentrations (MPC) used to calculate I

permissible liquid release rates are from 10 CFR 20 Appendix B, Table II, Column 2, and applicable notes to Appendix 8.

3.

Average Energy The average energy (E) of the radionuclide mixtures of fission and acti-vation gases released is as follower let Quarter 2nd Quarter i

EJe = 0.215 Mev/disintegratien E#s = 0.215 Mev/ disintegration Eye = 0.18 Mev/ disintegration lys = 0.18 Mev/ disintegration pv(Rx) = 0.41 Mev/ disintegration pf(Rx) = 0.405 Hev/ disintegration Eyv(Rx) = 0.78 Mev/ disintegration Zyv(Rx) = 0.78 Mev/ disintegration lJy(TC) = 0.38 Phv/ disintegration YJv(TG) = 0.38 Mev/ disintegration,

j Eyv(TC) = 0.75 Mev/ disintegration

~yv(TC) = 0.75 Mev/ disintegration Z

Ipv(ARW) = 0.47 Mev/ disintegration p v(ARW) = 0.38 Mev/ disintegration Eyv(ARW) = 0.81 Mev/ disintegration Eyv(ARW) = 0.75 Mev/ disintegration i

4.

Measurements and Approximations of Total Radioactivity i

l The methodo used to measure or approximate the total radioactivity in effluents and to determine radionuclide composition are as follows i

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Fission and activation gases a.

Radioactivity and radionuclide composition is determined by laboratory Celi detector analysis in correlation with continuous gross radioactivity monitoring by a gaseous channel detector in the release pathway.

b.

Iodines Charcoal cartridges provide continuous sample collection. These cartridges are analysed for radioactivity and radionuclide composi-tion in the laboratory by a Cell detector gamma spectrometer.

Continuous radioactivity monitoring of the charcoal cartridge is also provided by a NaI detector in-line with the vent release pathways.

c.

Particulates i

Particulate filters provide continuous sample collection.

These filters are analysed for radioactivity and radionuclide composi-tion in the laboratory by a GeLi detector gamma spectrometer.

Continuous gross radioactivity monitoring the particulate filter is also provided by a NaI detector in-line with the vent release i

pathways.

d.

Liquid effluents Each batch of liquid effluent is analysed for radioactivity and radionuclide composition in the laboratory by a GeLi detector gamma spectrometer. Each batch is also analysed for gross radio-activity by both gross beta and gasmia.

In addition, each batch is monitored for gross radioactivity by a NaI detector in-line with the release pathway.

j So Batch Releases The following information relates to batch releases of Eadioactive materials in liquid and gaseous effluents:

a.

Liquid 1.

Number of batch releases:

115 2.

Total time period of batch releases: 2.86 E+04 minutes 3.

Maximum time period of batch release 7.87 E+02 minutes 4.

Average time period of batch releases 2.48 E+02 minutes 5.

Minimum time period for a batch release: 2.80 E+01 minutse 6.

Average stream flow during periods of release of effluent into a flowing stream 5.94 E+07 liters / minute b.

Caseous 1.

Number of batch releases None I

2.

Total time period for batch releases: N/A 3.

Maximum time period for a batch release N/A

.____.__,-___.37-

- - ~ - - -

4.

Average time period for batch releases: N/A 5.

Minimum time period for batch release N/A i

6.

Abnormal Release a.

Liquid 1.

Number of releases: 0 2.

Total activity released:

None b.

Gaseous 1.

Number of releases 0

2.

Total activity released: None A4

Table 1A.

Effluent and Waste Disposal Semiannual Report Gaseous Effluents - Summation of All Releases Est. Total Unit let Quarter 2nd Quarter Error %

Fission & activistion meses 1.

Total release ci 6.59 E+02 7.61 E+01 2.0 E+01 2.

Average release rate for period pC1/sec 8.47 E+01 9.68 E+00 3.

Percent of Technical Specification limit Iodines 1.

Total Iodine-131 Ci

$ 2.43 E-03

$1.27 E-02 3.0 E+01 2.

Average release rate for period pCi/see

$ 3.12 E-04

$1.62 E-03 3.

Percent of Technical Specification limit Particulates 1.

Particulates with half-lives > 8 days Ci

$ 8.24 E-04

$2.64E-03 5.0 E+01 2.

Average release rate for period pci/sec

< 1.06 E-04

$ 3.36 E-04 3.

Percent of Technical Specification 1 fait 4

Gross alpha radio-activity Ci

$ 4.93 E-06 1E1.09E-05 Tritius 1.

Total release ci 1.38 E+00 2.92 E-01 3.0 E+01 2.

Average release rate for period uCi/sec 1.77 E-01 3.71 E-02 3.

Percent of Technical Specification limit

  • The noble gases and tritium are combined in the Technical Specification discharge limit. The first quarter releases were 5.12 E-01% of the allowable lixit, while the second quarter releases were 2.19 E-01% of the allowable limit.
    • The Iodine-131 and particulates with half-lives longer than 8 days are combined into one Technical Specification.

The first quarter releases were 9.11 E-02% of the allowable limit, while the second quarter releases were 8.60 E-01%

cf the allowable limit.

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i Table IB.

Effluent and Waste Disposal Semiannual Report Gaseous Effluent - Elevated Release Continuaus Mode Batch Mode

  • Nuclides Released Unit let Quarter 2nd Quarter Fission asaest Krypton-85 C1 1.23 E+01 9.92 E-04 Krypton-85m C1 3.13 E+02 2.52 E-02 Krypton-87 Ci 7.96 E-02 6.40 E-06 Krypton-88 Ci 7.96 E+01 6.40 E-03 Xenon-133 Ci 9.48 E+01 7.61 E-03 Xenon-135 Ci Xenon-135m Ci Xenon-138 Ci Krypton-89 Ci Krypton-83m C1 1.02 E+00 8.18 E-05 Xenon-137 Ci Xenon-133m Ci 3.36 E-03 2.70 E-07 Xenon-131m Ci 3.19 E+00 2.56 E-04 Total for period CL 5.04 E+02 4.05 E-02 Iodine s Iodine-131 C1 2.22 E-03 3.52 E-03 Iodine-133 Ci 3.51 E-03 117.82 E-04 Iodine-135 C1 3.33 E-03 5E7.74 E-04 Tota'l for period Ci 9.06 E-03

$15.08 E-03 Particulatest Strontium-89 Ci 1.45 E-05 5.44 E-06 Strontium-90 Ci 1.50 E-06 2.70 E-06 Cesium-134 Ci ts1.44 E 1;2.31 E-06 Ce sium-137 Ci 5;7.79 E-05 511.01 E-05 Barium-lanthanum-140 C1

$E3.54 E-04 5;1.63 E-03 Iodine-131 Ci

< 5.05 E-06 f 3.55 E-05 Cobalt-58 Ci 6.00 E-07 Cobalt-60 Ci 1.61 E-05 6.87 E-06 Manganese-54 C1 6.80 E-07 Total for period Ci

< 4.70 E-04

< 1.69 E-03

  • No batch discharges were made.

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Table IC.

Effluent and Waste Disposal Semiannual Report Gaseous Effluents - Building Vent Kaleases Nuclides Released Unit 1st Quarter 2nd Quarter

, Fission meses

  • Erypton-85 Ci 9.55 E-03 5.31 E-03 Erypton-85m Ci 9.56 E+00 5.22 E+00

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Erypton-87 C1 2.17 E+01 1.13 E+01 Erypton-88 Ci 2.96 E+01 1.60 E+01 Xenon-133 Ci 1.40 E+01 7.79 E+00 Xenon-135 Ci 3.80 E+01 2.10 E+01

' Xenon-135m Ci 5.44 E+00 1.97 E+00 Xenon-138 Ci 3.11 E+01 9.91 E+00 Erypton-89 Cl 7.75 E-01 1.31 E-02 Erypton-83m Ci 4.72 E+00 2.51 E+00 Eenon-137 Ci 1.95 E+00 6.73 E-02 Xenon-133m Ci 5.48 E-01 3.04 E-01 Xenon-131m C1 2.49 E-02 1.39 E-02 T;tal for period C1 1.55 E+02 7.61 E+01 Iodimes:

Iodine-131 Ci f 2.07 E-04

$9.22 E-03 Iodine-133 C1 g 7.29 E-04

< 1.05 E-03 Iodine-135 Ci

$ 4.34 E-03 33.68E-03 T:tal for period Ci

$ 5.28 E-03 fl.40 E-02

-Particulates 8trontium-89' C1 3.31 E-05 7.40 E-06 Strontium-90 Ci 7.65 E-06

~

3.65 E-05 i'

Cesium-134 Ci fl.90 E-05

$3.39 E-05 Cesium-137 Ci 52.21 E-05

$ 3.79 E-05 Barium-lanthanum-140 Ci fl.96 E-04 6 2.44 E-04 Iodine-131 Ci

$2.88 E-05

$ 5.82 E-05 Cobalt-58 C1 2.59 E-05 Cobalt-60 C1 4.71 E-05 4.09 E-04 Manganese-54 Ci 7.40 E-07 5.49 E-05 Chromium-51 Cl 4.10 E-05 Eine-65 Ci 4.15 E-06 T;t31 fir period C1

$ 3.54 E-04

$ 9.53 E-04 i

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7 Table 2A.

Effluent and Waste Disposal Semiannual Report Liquid Effluents - Summation of All Releases Est. Total Unit let Quarter 2nd Quarter Error %

Fission & activation products 1.

Total release (not includ-ing tritium, gases, alpha)

Ci (1.91 E+00

$ 5.38 E+00 2.0 E+01 2.

Average diluted concentra-tion during period pCi/mi

$ 1.11 E-07

$3.30 E-07 e

3.

Percent of applicable limit 7.64 E+00 2.15 E+01 Tritium 1.

Total release Ci

< 2.50 E+00

< 2.56 E+00 2.0 E+01

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2.

Average diluted concen-

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tration during period pCi/ml

$1.45 E-07 9(1.57 E-07 3.

Percent of applicable limit 4.83 E-03 5.23 E-03 Dissolved and entrained gases 1.

Total release ci

$7.65 E-03

$E4.19 E-02 5.0 E+01 2.

Average diluted concen-tration during period gci/mi

< 4.45 E-10 3.

Percent of applicabl6

$ 2.74 E-09 limit Gross aloha radioactivity 1.

Total release ci

$ 2.06 E-03

$3.37 E-03 5.0 E+01 Volume of waste released (prior to dilution) liters 2.78 E+06 4.90 E+06 1.0 E+01 Volume of dilution water used during period liters 1.72 E+10 1.63 E+10 1.0 E+01

  • None applicable A8

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Table 25.

Effluent and Waste Disposal Semiannual Report Liquid Effluents Continuous Mode

  • Batch Mode Nuclides Released Unft let Quarter 2nd Quarter Strontium-89 C1 1.18 E-01 3.21 E-03 Strontium-90 Ci 1.39 E-03 1.81 E-03 Strontium-92 C1 2.98 E-05 Ceslum-134 Ci 2.05 E-01

$ 8.45 E-01 Cesium-135 C1 1.19 E-02 Cesium-137 Ci 3.66 E-01

$ 9.77 E-01 Iodine-131 C1 C1.04 E-02

$ 2.63 E-01 Cobalt-58 Ci

$ 1.42 E-02

$ 3.65 E-01 Cobalt-60 Cl 5.63 E-01 f 1.71 E+00 Iron-59 Ci

$ 3.88 E-03 g 9.75 E-03 Zine-65 Ci

$1.62 E-02

$ 2.81 E-02 Manganese-54 Ci 5.58 E-02

$ 5.63 E-01 Chromium-51 Ci 1.06 E-01

< 8.00 E-02 Ant imony-124 Ci 53.73E-02 Zirconium-niobium-95 Ci f 9.25 E-03 C 2.31 E-02 Molybdenum-99 Ci f 1.01 E-02

$ 6.00 E-02 Tmhneeium-99a ci G4.33 E-03

< 8.54 E-03 Barium-lanthanua-140 Ci

$ 1.08 E-02 53.53E-02 Cerium-141 Ci

$ 5.05 E-03

$ 1.34 E-02 Silver-110m Ci 3.37 E-02 1.62 E-02 Sodium-24 C1 3.62 E-02 9.86 E-04 Unidentified Ci

$ 3.42 E-01

< 3. 27 E-01 T;tal for period chove Ci

$ 1.91 E+00

< 5.38 E+00 Xenon-133 C1

$ 4.87 E-03

< 3.38 E-02 Xenon-135 Ci f2.78 E-03

{8.12E-03

  • No continuous mode discharges made.

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Table 3.

Effluent and Wste Disposal Semiannual Report Solid Wate and Irradiated Fuel Shipments Period January 1, 1983, to June 30, 1983 A.

SOLID WASTE SHIPPED OFFSITE FOR BURIAL OR DISPOSAL (not irradiated fuel) l 6-Month Est. Total 1.

Type of waste Unit Period Error %

3 a.

Spent resins, filter sludges, m

1.17 E+02 15 evaporator bottoms, etc.

Ci 4.52 E+02 b.

Dry compressible waste, a

1.70 E+02 25 contaminated equipment, etc.

Ci 4.45 E-01 c.

Irradiated components, a

None control rods, etc.

Ci d.

Other a

None Ci 2.

Estimate of major nuclide composition (by type of waste), percent a.

Chromium-51 2.24 E+01 Cobalt-60 3.39 E+01 Cobalt-58 4.89 E+00 knganese-54 1.06 E+01 Zinc-65 1.54 E+00 Silver-110m 1.36 E+00 Iodine-131 9.97 E-01 Cesium-137 1.32 E+01 Cesium-134 1.02 E+01 Zirconium-niobium-95 6.60 E-02 Barium-lanthanum-140 7.95 E-01 Cerium-141 2.24 E-02 Cesium-136 1.64 E-02 b.

Chromium-51 2.64 E+00 Cobalt-60 4.96 E+01 Cobalt-58 4.67 E+00 k nsanese-54 1.45 E+01 Zine-65 1.10 E+00 Stiver-110m 1.69 E+00 Iodine-131 1.20 E+00 Cesium-137 1.39 E+01 Cesium-134 9.88 E+00 Zirconium nlobium-95 1.60 E-01 Barium-lanthanum-140 6.50 E-01 A10

i-Table 3.

Effluent and Waste Disposal Semiannual Report Solid Waste and Irradiated Fuel Shipment's Period January 1, 1983, to June 30, 1983 (Continued)

I 3.

Solid waste disposition Number of Shionents Mode of Transoortation Destination 50 Sole-use vehicle Beatty, Nevada B.

IRAADIATED FUEL SHIPMENTS (Disposition)

Number of Shloments Mode of Transportation Destination None k

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APPENDIX B METEOROLOGY

CONTENTS METEOROLOGICAL DATA SUMMARIES MONTHLY

SUMMARY

TABLES OF HOURLY METEOROLOGICAL DATA JOINT FREQUENCY DISTRIBUTION TABLES ATMOSPRERIC DIFFUSION ESTIMATES ATMOSPHERIC DIFFUSION HODEL t

4 4

t METEOROLOGICAL DATA SUMMARIES Nbteorological data collected onsite for the period January 1,1983, through J:ne 30, 1983, were reduced, validated, summarized for analysis, and included is appropriate dose calculations.

Hourly data summaries are provided for c11 collected parameters and for the joint frequency distributions (JFDs) t of wind speed by wind direction by atmospheric stability class.

'4 First Quarter (January throuah March 1983)

Data Recovery: Data recovery statistics are provided in Table 1 for pertinent meteorological parameters. Major data losses occurred with the 35-foot ambient tcuperature during the first quarter due to irregular variability in the r: corder trace, which could not be quantified.

Data were, therefore, assumed i; valid.

Data losses for other parameters were due to itking or timing problems.

Wind Predominaat wind directions at the 35-foot level were from the north and north-northeast (14 and 10 percent, respectively) and south (11 percent).

Tha quarterly mean wind speed was 8.7 miles per hour with 45 percent of the cccurrences below 7.5 miles per hour.

The maximum hourly average wind speed i

was 30 miles per hour on January 11.

Th3 predominant wind directions at the 318-foot level were from the north (12 percent), north-northwest (10 percent), and south (12 percent).

The qu rterly mean wind speed was 13.7 miles per hour with 46 percent of the spreds less than 12.5 miles per hour.

The maximum hourly average wind speed cas 39 miles per hour on January 11.

Teuneratures Due to problems with the ambient temperature monitoring system, no data were recovered for this quarter.

Precipitation: Total precipitation for this quarter was 1.89 inches.

The maximum daily precipitation total for the first quarter was 0.67 laches, which occurred on February 1.

The maximum one-hour total precipitation was 0.17 inches on March 15.

Atmospheric Stability: Atmospheric stability is determined through the classi-fication of differential temperature data between the 318-foot and 35-foot levels.

During the quarter, unstable stability conditions (Classes A through C) occurred approximately 22 percent of the time, neutral conditions (Class D) approximately 54 percent of the time, and stable conditions (Classes E through C) approximately 24 percent of the time (based on the JFD of 318-foot wind and delta T (318 f t - 35 f t) stability data).

Second Quarter ( April throuah June 1983)

Data Recovery: Data recovery statistics are provided in Table 1 for perti-next meteorological parameters.

Larger than normal data losses occurred eith the 35-foot wind direction and precipitation due to various recorder prcblems.

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Meteorological Data Recovery Data Recovery (% of total observations)

Pareapter January-March 1983 April-June 1983 January-June 1983 318-ft wind speed 96 98 97 318-ft wind direction 96 97 96 35-f: wind speed 94 96 95 35-fc wind direction 97 88 92 35-ft ambient temperature 0

99 50 318-thru 35-ft delta T 99 98 99 Precipitation 99 89 94 318-ft JFD*

94 95 95 35-ft JFD*

90 85 88

  • Joint occurrence of wind speed and direction measured at the height indicated and atmospheric stability (based on 318-to 35-ft delta T).

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l Windt Predominant wind directions at the 35-foot level were from the north (12 percent) and from the southeast through south (a total of 35 percent).

The quarterly mean wind speed was 9.5 miles per hour with 44 percent of the observations having vind speeds of less than 7.5 miles per hour. The maximum hourly average wind speed was 33 miles per hour on April 2.

The predominant wind directions at the 318-foot level were from the northwest through north (a total of 30 percent) and southeast through south (a total cf 33 percent). The quarterly mean wind speed was 13.9 miles per hour with 45 percent of the observations having wind speeds of less than 12.5 miles p:r hour. The maximum hourly average wind speed was 44 miles per hour on April 2.

Temperatures The mean Cith a maximum of 89.5, hourly average temperature for the, quarter was 59"F F on June 30 gnd a minimum of 28.5 F on April 18.

The quarter averaged approximatgly 5 F below the expected nop1 for the cres with April apprgximately 8 F lower, May approximately 5 F lower, and June approximately 2 F lower.

Precipitation: Total precipitation for the second quarter was 5.27 inches.

The maximum daily precipitation was 0.76 inches on June 17.

The maximum hourly 3,recipit o lon total was 0.37 inches, also on June 17.

Atmospheric Stahllity: Atmospheric stability is determined by the classifi-cation of dif ferential temperature data between the 318-foot and 35-foot livels.

During the quarter, unstable stability conditions (Classes A through C) occurred approximately 23 percent of the time, neutral conditions (Class D) approximately 47 percent of the tiae, and stable conditions approximately 30 percent of the time (based on the JFD of 318-foot wind and delta T (318 ft - 35 ft) stability data).

1.3 First Sevilennual Period (January through June 1983)

Data Recovery:

Data recovery was greater than 90 percent for all individual parameters for the semiannual period except 35-foot ambient tempergture (no data recovered during the first quarter).

Due to recorder problems during the second quarter with 35-foot wind direction, the joint occurrence of 35-foot wind speed, wind direction, and atmospheric stability was 88 percent.

Windt Predominant wind directions for the samlannual period were from the southeast through south (32 percent) and north and north-northeast (22 percent) ce the 35-foot level and southeast through south (30 percent) and northwest through north (30 percent) at the 318-foot level.

Mean wind speeds were 9.1 miles per hour at 35 feet and 13.8 miles per hour at 318 feet.

The maximum hourly average speeds were 33 miles per hour and 44 miles per hour at the 35-foot and 318-foot levels, respectively.

Teacarature: Due to the large data losses during the first quarter, terpara-t:re statistics for the semiannual period w!!! not be discussed.

Precipitstion: The total precipitation for January through June 1983 was 7.16 inches. The maximum daily total was 0.76 inches and the maximum hourly t:tal was 0.37 inches, both occurring on June 17.

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Atmoseherie Stability:

Based on 318-foot to 35-foot delta T to classify atmospheric stability, neutral conditions (Class D) predominated, occurring approximately 50 percent of the time during the seelannual period.

Stable conditions (Classes E through C) and unstable conditions (Classes A through l

C) occurred approximately 27 percent and 23 percent of the time, respectively.

These values are based on the JFD of 318-foot wind and delta T (318 f t -35 ft) data.

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i NONTMLY 81401ARY TABLES OF NOURLY MTIOROLOCICAL DATA The tables presented in this section provide a summary of hourly averages cf measured meteorological parameters.

The tables provide summaries by month for the sealannual period January through June 1943.

Yhe parameters provided cre listed below.

35-feet ambient tesperature (note that tabular listings are also o

provided for averages of ambient humidity, which is not measured at the Cooper Nuclear Station).

Ne valid data were recorded for January, pobruary, or Merch and therefore, no tables are provided for these months or for the seelannual period.

e Wind direction frequencies at 35 feet and 318 feet o

precipitation.

Any missing er. non seasured data are indicated by a field of 9's.

85

35-Foot Ambient Temperature 9

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No valid 35-foot ambient temperature data were recovered for the months of January, February, and March 1983.

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l NPP 9-CO OPER STATICN 35FT W140 OIRECTION PERS1STENCt J ANU 4RV-J UN! e 19 8 3 HOURLV WINO ROSES 1FERC4NT8 SEMI-ANNUAL WING 01 RECT 101 M9 Of OAV N hhE ME ENE E

ESE SE S SE S

SSW SW WSW W

WWW NW NNW CALM T078L 1

15.1 96 5.4 3.6 24

3. 6 9.6 12.7
9. 6 7.2 3.6 06 12 42 6.6 3.6 12 100.

2 17.3

8. 3 5.4 2.4 18 6.0 11.9 18 1 11.3 6.3
3. 6 0.6 18 4.2 7.1 2.4 0.8 100.

C[

3 13.8 11 4 5.4 1.2 4.2 4.2 11 4 10.2 18.2 42 4.8 1.2 12 3.8 6.6 6.0

1. 2 100.

oo 4

14.6

8. 5 5.5 2.4 1.2
4. 9 11.0 10.4 12.8
7. 3
2. 4 0.6 1.8 3.0 7.3 4.3 12 100.

5 13.5 10.4 3.7 1.8 8.6 3.1 11.0 16.0 11 8 3.1 3.1 3.1 0.6 4.3

7. 4 6.1
1. 2 100.

6 11.7 12.3 4.3 31 31 31 11.7 12.3 13.8 5.6 25 1.9 1.2 3.1 62 4.3 0.6 100.

7 13.7 11.9 J.1 1.9 1.9

4. 4 11.2 11.2 11 9
6. 3 2.5 1.9 19 2.5 5.6 6.9 12 100.

8 I4.7 11.0 3.1 2.5 3.1 12 12.2 10.4 11.8 8.6

3. 7 18 12 0.6 7.4 6.1
1. 2 100.

I S

15.4

6. 2 1.9 12 3.1
3. 7 8.8 12.5 11 7 6.8 4.9 3.1 31 19 8.6 6.2 1.9 100.

to 15.8

7. 0 3.2 1.3 1.9 5.1 6.2 10.8 13.9 8.9 7.8 8.6 13 2.5 7.0 7.8 0.6 100.

l 11 13.7 8.5 26 8.7 0.0 6.5 8.5 7.8 14.4 8.3

7. 2 2.6 20 07 5.9 10.5 0.0 100.

t 12 13.5 43 19 2.6 13 51 8.3

7. 7 14.1 9.6 5.1 3.8 1.9 13 5.8 9.6 0.0 100.

i 13 13.5

7. 7 4.5 2.6 0.6
4. 5 7.1 7.1 15.5 9.3 4.5 3.9 1.3 2.6 7.1 7.7 0.8 100.

L 14 15.4

4. 6
3. 3 13 0.7 72 5.9 59 14.5 18.5
3. 9 3.3 33 13 9.2 6.6 0.0 100.

15 15.4 5.1 3.8 8.6

4. 5 26 10.3 5.1 11.5 18.9 4.5 2.6 19 1.9 18.9 8.3 0.0 100.

16 13.2

7. 5 3.8 13
6. 3 31 9.4 4.4 13.3 8.9 5.7 19 0.6 1.9 10.7 6.9 0.6 100.

17 14.3

7. 5 4.3 25 2.5
5. 6 6.0 7.5 11 2 9.9
5. 0 1.9 1.2 3.1 8.1 8.1 0.6 100.

18 12.5 75 2."

3.1 2.5 5.6 6.9 81 11 2 8.7 3.1 4.4 19 12 6.9 13.1 0.6 100.

4 19 10.4 11.6 4.3 4.3 0.0 61 9.8 9.1 12.8 4.3

3. 0 3.0 24 1.2 5.5 11.0 0.6 100.

f 26 11.0 10.4 4.9 4.9 3.1

6. 7 18.4 10.4 14 1 1.2 2.5 0.6 37 1.8 7.4 61 0.6 100.

21 13.6 11.2 7.5 1.9 2.5

5. 6 13.7 9.3
9. 3 5.6 3.1 0.6 31 1.2 6.8 7.5 0.6 100.

22 9.3

9. 9 6.8 4.3 2.5
4. 3 15.5 8.7
8. 7 4.5 5.0 12 25 19 6.2 8.1 0.6 100.

21 11 7 8.6 6.7 3.7 3.7 2.5 11.7 8.6 12.3 6.7 3.1 1.2 18 1.8 9.2 4.3 2.5 180.

I 24 11.3 12.6 3.8 5.0 5.8 0.6 12.6 10 1 11.3 65 2.5 0.6 1.3 3.8 6.3 5.0

1. 3 100.

ALL 13.5 3.1 4.3 2.5

2. 4 44 10 1 9.5 12.1 7.3 4.0 19 1.8 2.3 7.3 69 0.8 100.

MU.iHE4 0F 385 : 2456 i

i

i 1

6 1

Wind Direction Frequencies, 318-Foot Level B1D

i

~

hPP C-CJ 0FE R Sf4 TION 31SFT WIND 314ECT104 P(ISISTCkti JA:4UAR F-JUNE,1983 M0ueLY Wlhn ROSTS iPEACENil JA NUA R Y j

WI4D DIRECTION i

H9 CF 047 1 84E ME E9E E

ESE Si SSE S

SSW SW WSJ W

WNW NW NNW CALM TOTAL l

1

3. 2 12.9 0.0 6.5
3. 2 0.0 6.*

3.2

6. 5
3. 2 12 9 32 6.5 97 65 32 12.9 100.

2 12.9

d. 5 3.0 3.2 3.2
3. 2 6.*

3.2

6. 5 9.F
6. 5 6.5 3.2 3.2 9.7 3.2 12.9 ISS.

3 6.5

9. F 0.0 3.2 3.2
3. 2 6.*

32

3. 2 12.9 9.1
6. 5 3.2 9.7 6.5 6.5 6.5 100.

4 6.5 6.5 6.5 Oct 3.2

3. 2 6.5 32
6. 5 16.1 37 6.5 3.2 6.5 12.9
6. 5
3. 2 100.

5 9.F

3. 2 9.7 8.8 6.5 0.0 9.7 3.2 12.9 9.7 e.5 00 6.5 3.2

?2.9 3.2 32 103.

6.7

d. F 67 0.0 67 0.8 6.7 67
6. 7 13.3 10 0 8.0
3. 3 67 13 3 67 0.0 100.

F 6.F

3. 5 6.F 8.3 3.3
3. 3 6.7 10.8 0.0 10.3 13.3
3. 3 0.8 3.3 13.3 13.3
3. 3 100.

a3 eJ 8

10.0 13.3 08 8.0 33

3. 3 10 0 6.7
3. 3 6.T 67 6.7 3.3 3.3 18.8 18.8
3. 3 180.

C' 9

10.0

6. F 6.7 0.0 8.0
6. 7 6.7 10.0
3. 3 l e.0
3. 3 3.3
3. 3 10.0 10.0 67
3. 3 100.

10 14.0 10.3 0.0 3.3 0.0

3. 3 13.3
3. 3 18.0 4.7 6.7 0.0 0.0 3.3 18.0 16.7
3. 3 198.

11 16.7 10.0 8.8 0.0

3. 3
0. 8 16.7 3.3 10.0 6.7 6.7 8.8 8.0 3.3
3. 3 13.3
6. 7 100.

12 13.3

6. 7 3.3 0.8 0.0 0.8 16.7 3.3 13 3 6.F
6. 7 0.0 0.0 0.8 6.7 16.7 6.7 100.

13 10.0

0. 4 6.7 0.0 0.8
3. 3 18 0 10.0 6.7 6.7
3. 3
3. 3 S.S 8.8
6. 7 20.0 13.3 108.

14 6.F 13.0 8.0 8.0

3. 3 0.0 13.3 0.0 10.0 10.0
3. 3
3. 3 0.0 0.e 6.7 16.7 16.7 100.

1) 3.3 10.0 3.3 8.8

3. 3 33 10.0 0.0 13.3 6.F
3. 3 3.3 0.0 3.3 3.3 16 7 16.7 100.

14

3. 3 15.0 10.8 8.0
3. 3
3. 3 1E.0 S.3 18.0 10.3 3.3 6.7 8.8 3.3 18.0 16.7 8.8 100.

IF 13.3

6. F 3.3 3.3
3. 3
3. 3 6.7 6.7 10.0 6.7
3. 3 3.3 0.0 3.3 6.7 16.7
3. 3 100.

I la 10.0

6. F 3.3 31 4.7 8.0 6.7
3. 3 13.3
3. 5
3. 3 6.7 0.8 3.3 3.3 20.8
6. 7 108.

19 16.1 0.0 12.9 3.2

3. 2 0.8 6.*

3.2 12 9 0.3

3. 2 3.2 9.7 88 3.2 16.1 6.5 100.

23 12.9 32 6.5 6.5 0.0

3. 2 97 6.5
9. 7 0.0 32 0.8 12.9 S.!
3. 2 19.4
3. 2 100.

21 1.F 6.5 9.7 3.2 6.5 0.8 12.9 0.0

9. 7 3.2 32 0.0 3.2 12.9 9.7 6.5
3. 2 100.

22 32 6.3 9.7 6.5 6.5

3. 2 6.*

3.2 9.7 0.0 6.5 0.0 3.2 12.9 9.7 6.5 6.5 100.

23 3.2

6. 5 6.5 9.F
6. 5 0.0 9.7 3.2
6. 5 6.5 6.5 0.0 32 12 9 9.7 65
3. 2 100.

24 3.?

12.9 3.2 3.2 9.7 0.0 6.*

3.2

6. 5 3.7 9.7 0.0 9.1 3.2 9.7 3.2 12.9 100.

t CLL 8.6

7. 3 4.0 2.3 37 19 31 41 03 7.3 6.8 27 *31 4.9 8.2 11 2
6. 6 100.
JU1RER CF 08S =

F31 i

I

4

't

'4PP O-Co C P E M S t 4 T 10?: 519FT WI'a0 DIRECTIc% PE;SilfrbCr JANutt V-JUtsE 1983 HOURLY WIf.J POSES (PERCI4TB 1

}

rEnnuaPv l

I WINO DIRECTION HR. Of 04Y N hhi NC ENE E

ESC SE

$ $E SSW SW WSW W

WNW NW NNW CALM TSTAL 1

16.8

4. 0 8.8 8.8 40 0.0 33 8.8 26.8 12.s 4.8 8.8 0.0 00 12 0 00 40 180.

2 15.4

7. 7 3.8 0.8 8.8 3.8 0.8
7. F 11.5 19.2
3. 8 0.8 3.8 8.8 3.8 11 5
7. 7 100.

5 F. F 1*.4 5.8 See 0.8 0.0

3. 8 3.8 1 *. 4 11 5
3. 8 0.0 4.0 3.4 3.0 7.7 15.4 108.

l 4

15.4

3. 8 11.5 3.8 8.0 0.0 3.8 11.5 11 5 19.2 8.8 3.8 8.0
3. 8 -

8.0 3.8 77 100.

5 11.5 15.4 3.4 0.0 8.8 0.8 3.8 11.5 19.2

7. F
7. 7 0.0 0.0 3.8 3.4 3.8
7. 7 100.

5 8.0 12.0 4.8 4.8 0.8 0.0 4.8 12.0 20.6 8.0 40 4.8 8.0 0.8 0.8 40 8.8 ISS.

F 4.0 36.0 8.8 0.8 4.0 4.8 4.8 s.0, 24.8 4.0 12.8 4.8 0.8 0.8 0.0 8.8 8.0 100.

to 8

80 0.0 8.0 0.8 8.9 80 00 8.0 28.8 0.0 12.8 4.0 0.8 8.0 0.0 8.0 16.0 188.

i 9

7.F F. F

3. 8 3.8 0.0
3. 4 38 7.7 19.2
7. F 15.4 30 0.8 0.0 3.8 3.0
7. 7 ISS.

l 10 11.5 C.0 F. 7 0.0 3.4 3.4 3.8 7.7 15.4 11.5 15.4 8.8 8.8 8.0-00 7.7 11.5 104.

11 7.F

3. 3 38 0.0 0.8 77 3.8 38 23.1 19.7 3.8 3.8 S.S 0.0 8.8 11.5
7. 7 1C0.

12 f.F

3. S 3.4 0.0 0.0
3. 8 F. 7
3. 8 23.1 15.4 3.8 7.7 8.8 0.9 88 11 5
7. 7 108.

15 15.4

0. 0 3.8 0.0 0.0
3. 8 7.7 3.8 23.1 15.4 3.8 3.8

.e.8 0.8 0.0 F. 7 11 5 100.

l le 11.5

3. 8 0.0 0.0 3.8 38 3.8 7.7 11.5 11.2 38 0.0 3.8 3.8 3.8 77 11 5 108.

I 15 3.4 F. F 9.0 4.0 3.8

3. 4 3.8 3.8 19.2 1*.4 3.4 0.0 9.8 3.8 15.4 7.7
7. 7 188.

16 5.4 11.5 S.0 0.0

3. 8
3. 8 7.7 3.8 26.9 3.8
7. 7 0.8 8.8 0.0 19.2 3.8 3.8 148.

1r F. F

3. 8 3.8 8.0
3. S 8.0 11.*

3.8 19.2 15.4 4.8 0.8 0.0 3.8 11 5 77 77 108.

18 F.7

7. 7 8.0 8.0 F. 7 8.4 32 1*.4
7. 7 19.2 0.0 8.8 00 3.8 11 5 31.5
3. 0 188.

l 13 8.0 8.8 8.8 0.0 4.0 4.4 12.0 40 20.0 12.0 0.6 8.8 80 4.0 16.0 8.9 8.0 100.

1 20 4.3 12.0 0.0 8.0 9.8

4. 0 8.8 12.0 20.0 8.8 8.8 8.0 0.0 4.0 12.0 12.0 0.0 100.

l 21 12.0

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JOINT FREQUENCY DISTRIBUTION TABLES The tables presented in this section are results obtained from processing of the hourly meteorological data collected at the_ Cooper Nuclear Station.

The joint frequency distribution (JFD) tables represent the frequency of occurrence, in number of observations, that a particular wind speed and wind direction occurred simultaneously.

On a quarterly and semi-annual basis, the JFDs were produced fort wind speed and wind direction for all stability categories; wind speed and wind direction by atmospheric stability corresponding

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  • ene FRI. AUG 19 1983 PAGE 9

TIME OF DAY:

11:13:34 PROGRAM: SD VERSION: SP NPPD-COOPER STATION MD: 35FT WIND VS DELTA T (310*-35') FOR APRIL-JUNE 1983 SITE IDENTIFIER: NPCS1 DATA PERIOD EXAMINED: 4/ 1/83 - 6/30/83 een GUARTER 2 wee STABILITY BASED DN: DELTA T BETWEEN 318.0 AND 35.0 FEET WIND MEASURED AT:

35.0 FEET WIND THRESHDLD AT:

1.00 NPH TOTAL NUNDER OF OBSERVATIONS: 2184 TOTAL NUMBER DF VALID OBSERVATIONS:

1850 TOTAL NUMBER OF MISSING OBSERVATIONS:

334 PERCENT DATA RECOVERY FDR THIS PERIOD:

84.7 %

MEAN WIND SPEED FDR THIS PERIOD:

9.5 MPH TOTAL NUMBER OF OBSERVATIONS WITH BACKUP DATA:

0 PERCENTAGE DCCURRENCE OF STABILITY CLASSES A

B C

D E

F G

8.43 5.30 8.92 46.65 22.59 6.11 2.00 DISTRIBUTION OF WIND DIRECTION VS STABILITY N

NNE NE ENE E

ESE SE SSE S

SSW SW WSW W

WNW NW NNW CALM A

50 12 1

5 3

4 0

1 15 3

3 1

2 6

26 24 0

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0 1

1 6

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7 5

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14 10 0

C 29 3

6 6

4 5

5 15 27 8

12 2

3 3

17 20 0

D 87 90 43 29 26 46 113 89 114 43 28 22 15 23 63 32 O

E 41 26 11 13 14 21 69 69 55 17 19 7

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5 8

8 5

2 9

14 15 14 11 1

4 10 0

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1 2

3 6

11 5

1 1

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eso e NUS CORPORATIDN - ENVIRDNNENTAL SERVICES e een FR I. AUG 19.1983 PAGE 11 TINE OF DAY:

10:23:50 PROCIAM; JFD VERSION: SP NPPD-COOPER STATION JFD: 35FT WIND VS DELTA T 1318*-35'1 FOR JANUARY-JUNE 1983 SITE IDENTIFIER: NPCS1 i

DATA PERIOD EXAMINED:

1/ 1/83 - 6/30/03 een JAN-JUN een STABILITY BASED DN: DELTA T BETWEEN 318.0 AND 35.0 FEET WIND NEASURED AT:

35.0 FEET WIND THRESFKX.D AT:

1.00 NPH TOTAL NUMBER OF OBSERVATIDNS: 4344 TOTAL NUMBER OF VALID OBSERVATIONS: 3000 TOTAL NUMBER OF NISSING OBSERVATIONS:

544 PERCENT DATA RECOVERY FDR THIS PERIOD:

87.5 %

MEAN WIND SPEED FOR THIS PERIOD:

9.1 NPH TOTAL NUNBER DF OBSERVATIDNS WITH BACMUP DATA:

O PERCEN' TACE DCCURRENCE OF STABILITY CLASSES A

B C

D E

F G

6.84 5.71 9.50 50.71 19.37 5.68 2.18 DISTRIBUTIDN OF WIND DIRECTION VS STABILITY N

NNE NE ENE E

ESE SE SSE S

SSW SW WSW W

WNW NW NNW CALN A

90 24 1

5 3

4 1

2 17 4

3 1

3 6

39 57 0

B 66 18 3

1 2

9 0

2 21 19 8

6 5

6 24 27 0

C 96 41 10 6

4 14 13 20 35 15 20 5

3 4

36 39 0

D 183 198 113 56 57 103 242 166 211 142 77 44 30 36 150 110 9

E 57 46 26 19 20 28 95 114 128 63 33 13 18 22 31 19 4

F 7

7 8

8 6

7 26 41 34 23 12 2

10 12 0

4 9

C 2

8

.3 2

2 4

11 19 20 3

1 O

O O

O O

8 TOTAL 501 342 164 97 94 169 388 364 466 269 154 71 69 86 200 256 30

Stability Classes by Hour of Day, 35-Foot Wind vs. Delta T, January-June 1983 i

B73

ese e NUS CORPORf4T10N - ENVIRONNENTAL SERVICES e ese FT!!, AUG 19 1983 PACE 2

TINE OF DAY: 10:23:50 l

PROGRAPI: ED VERSION: SP l

MPPD-COOPER STATION XD:'3SFT WIND VS DELTA T 1318'-35' t FOR JANUARY-JUNE 1983 i

CITE IDENTIFIER: MPCSI DATA PERIOD EMAMINED:

1/ 1/83 - 6/30/83 l

STABILITY BASED ON: DELTA T BETWEEN 318.O AND 35.O FEET-HOURLY STABILITIES HOURS l

YR MN DY 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 le 19 20 21 22 23 24 C3 1 1 E E E E E E F F F E D D 5 D C D D D E E E E D D C3 1 2 O D D D D D C C 5 A A A A A B D D D E E - 0 0 0 C3 1 3 0 0 0 F F F E E D D D D D D D D D E E E F E E D C3 1 4 D D D D D D D D D D D D D D D D D E E E E D D D l

83 1 S D D D D E D D D D D D D D D D D D D D D E E E E

(

C3 1 6 E E E E F E E E E E D' D D D D D D D D D E E E E C2 1 7 E E E E E E F F F E E D D D D E D D D D D D D D l

C3 1 8 D D D D D D D D D D D D D D D D - E E E E E E E 33 1 9 E E E D E D D D D D D D D D D D D D D D D D D D 03 1 10 D D D D D D D D D C A A A A D C D E E E F E E F C3 1 11 E E E E D D D D D'B A A A A A B C D D D D D D D l

C3 1 12 E E E E E E D D D D C C C D D D E E F F F F F F C3 1 13 F G - O w 0 0 0 0 F - D D D D E E - F F E E E E C3 1 14 E E E E E D D D D D D - B A - C D D D D D D D D C3 1 IS O O C D C C D C A - - A - - D - D D D E - - E E C3 1 16 E E E E E E E E E - A A A A A 'A D D E E D D D D C3 1 17 D - D D D - - D C B A - B 5 C D D - E E E E D D os C3 1 18 D D D - - D D D D C C C - - - D D D D D D D D D

}

'8 C3 1 19

- D D D D D D D D - - - - - - - - - - - D D D D C3 1 20 D D D D D D D - D - - - - O D D D - - - - - - -

C3 1 21

- - - E E D D D D B A A - - - 3 C D D D D D D C C3 1 22 C C C - - - - - - - - - - - - - - - C C D D D D C3 1 23 D D D D D D D D D D - D D D D - - - - - - - - -

l C3 1 24

- - - - - - - C - - - - - - - - - - - - - - --

C3 1 25

- D D D D D D D D D D D D D D D D D D D D D D D C3 1 24 D D C C 3 C 3 C 5 A A A A A B A C D C C C D D D C3 1 27 D D D D D D D D D D - D D - - D D D D D D D D D l

C3 1 28 D D D D D D D D D D D D D - - - - - D D D - - D C3 1 29 D D - - - - - - - - - - - - - - - - - - - - - -

l 1

03 1 30

- - - - - - - - - - - - D D D D D D D - - D D D C3 1 31 D D D D D D D D D

'C C 3 C 5 D D D D E E D D D D C3 2 1 D D D D D D D D D D D D D C C D D D D D D C C C 1

C3 2 2 8 C C C C D D D D C 8 5 A C 5 C D D D D D D D D E

C3 2 3 D D D - - - D D C A A A A A A A - - - - - - - -

83 2 4 C 0 0 0 0 F F 0 F E E D D D D - E E E D E.

D D D C3 2 3 D D D D D D D D D D D D D D D D D D D D D D D D C3 2 6 D - - - - - - - C A A A A A C D D E E F G 0 0 0 i

C3 2 7 O F F F F F F E E D A A D D D D E E E F E E - -

63 2 8 D D D E - - - D E D D D D D D C D D D D D D D D l

83 2 9 D D D D D D D D D D D D D D D D D D D D D D D D 83 2 10 D D D E E E E D D D D D D D D D D D D D D D D D 03 2 11 D D D D D D D D D D D D D D D D D D D D D D D D OJ 2 12 D D D D D D D D D D D D D D D D D D D D D D D D 03 2 13 D D D D D D E E D D D D E D E E E E E E E E E E 83 2 14 E E E F E F E E E E D D D D D D D E E G G C O C

eos o NUS CORPORATION - ENVIRONMENTAL SERVIC C o coo F7' I. AUG 17 1983 PACE 3

YIME OF DAY:

13:23:50 PROGRAM. #@

VCIION: SP NPPFCOC*E3 CTATIDN #D: 3SFT WIND VS DELTA T (313'-35') FOR JANUARY-JUNE 1983 SITE IDENTIFIER: MPCSI DATA PERIOD EM AMINED:

t/ 1/83 - 6/30/83 STAstLITY BASED ON: DELTA T BETWEEN 318 O AND 35.0 FEET HOURLY STASILITIES HDURS YR MN DY I 2 3 4 5 6 7 8 9 IO 18 12 13 14 15 16 17 18 19 20 28 22 23 24 83 2 IS F E E D D D D D D D D D D C C C D D D D D D D D 83 2 16 0 D D D D D D - - D D E E E D 5 5 D E C C F 0 0 83 2 17 0 0 0 0 F F E E E D C D D C D D D D D D D D D E d3 2 le E F E F F F F F E E D C C C D D D E E E F'E E F 83 2 19 F E E E E E E E D D C C C D D D E E E F F F F F 83 2 20 F F F F E E F E E D C 5 C C C D 5 C C C D'D D D 83 2 21 D D D D D D D D D D E D D D D D D D D D D D D D 83 2 22 D D D D D D D D D D D D D C A A A D D D D D D D 83 2 23 D D D D D D D D D D D D D C D D D D E E F E F E 83 2 24 E D D D D D D D - - - - - ' - A B C D D D D D D D 83 2 23 D D D D D D D D D D D C D C C D D D E E-E E E E 83 2 26 D D D D D D D D D D D 3 5 C C D D E E E E E E D 83 2 27 D D D E D E - D D D D C 5 5 C D C E E E E E F F 83 2 28 F F E E F F E E D D C 3 5 9 C'D D E E F F F F F 83 3 1 E E F F F F F F D C 5 A 5 5 5 D D D E E E F F F 83 3 2 0 0 0 0 0 0 0 F E D C 5 5 5 C C D E E F F F E E 83 3 3 F F F F G O F F E C C 5 A 5 5 D D D E E E E D E l

C3 83 3 4 E E E E E E E D D D D D D D D D D D D D D D D 5 l

cn 83 3 5 D D D D D D D D D D D D C D D D D D D D E E D E 83 3 6 E E E D E E E D D D C 3 3 A A A C C D D C D D D i

83 3 7 D D C C C C C C 5 5 A A B A 3 ' IB C C C C C C C C 83 3 8 C C C 5 C C C 5 A A A A A A A A A 5 9 9 3 5 5 5 83 3 9 C 5 C 3 5 5 9 A - - - - - - - - ' - - - - - - - -

B3 3 10

- - - - - - - - A A A A A A A A 5 D D D D D D D 7

83 3 11 D D D D D D D D D D D D C 3 5 C D D D D D D D D B3 3 12 E E E E E E E D D C 5 A B A 5 D D D E E F F F F 83 3 13 F F F F F F F E D D D A A A A A C D D E E E E E 83 3 14 E E E E F E E D D C 5 C B D D D D D E E D D D E 03 3 IS E D D D D D D D D D D D D C C C C C 5 C 3 5 5 5 83 3 16 5 C C C 5 C C 3 C 3 C D C 3 5 5 C C C C C C C C 83 3 17 C W 5 5 C 3 5 C D D C C C C A B 3 C C C C 3 C 5 03 3 IS 5 5 5 9 3 5 5 5 5 A A B A 5 5 5 5 5 5 C C D D D 1

83 3 19 D D D D D C D D - - - C C C D C D D D D D D C C B3 3 20 0 D D D D D D C 5 A A A A A A A.

5 5 C C C C C D B3 3 23 D D D D D D D C A A A A A A A A A C D E D D D D 83 3 22 D E E E E E E D D D 5 5 C B C C D D D E E E E E 83 3 23 E D D D E E D D D D D C C D C D D D E E E E E D 03 3 24 D D D D D D D D C C C D C D D D D D D D D D D D B3 3 25 D D D D D D D D D D D D D D D D D D D D E D D D 83 3 26 D D D D D D D D D D D D D D D D E E E D D D D D 83 3 27 D D D D D D D D D C C C C D D C D D D D D D D D 83 3 28 D D D D D D D -D D D D C D C B C C D D D D D D D 03 3 29 D D D D D D D D D D D D D D D D D D D D D D D D 83 3 30 D D D E E E E E E E D D D D C D D D D E E D D D 03 3 31 D D D D D E E D D D D C 5 D D D D D E E E E E E i

4 I

ces e NUS CORPORATION - ENVIRONMENTAL SERVICE 3 e ese F2 I. AUG 19 1993 :

PACE-4 TIME OF DAY:

10;23.50 PROGRAM. JF9 VERSION..SP NPPD-COOPER STATION JFD: 3SFT WIND VS DELTA T-(318'-35*3 FOR JANUARY-JUNE 1983 CITE IDENTIFIER: IFCS!

DATA PERIOD EXAMISED:

t/ 1/83 - 6/30/S3 STASILITY BASED ON: DELTA T BETWEEN 339.O AND 35.0 FEET-HOURLY STABILITIES l

HOURS j

YR MN DY I 2 3 4 5 6 7 8 9 10 11 12 13 14 IS le 17 IS 19 20 21 22 23 24 Q 4 1 E E E D D D 5 A C C C C D D D D D D D D D D D D 1

C3 4 2 D D D D D D D D D 5 5 C C 3 C C C D - - - - - -

l C3 4 3

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C3 4 12 D E E D D D

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'4 C3 4 19 E E E E D D D D D D D D D D D D D D D D E E E E i

C3 4 20 E E E E E E E D D D D C D D D D.D D D E D E E E C3 4 21 E E E E E E D D D D D D C D D D D D D D D D D D C3 4 22 D D D D D D D D D D D D D D C D D D D E E E E E C3 4 23 D D D D E D C A A A A.A A A A B C D D D D E E D

{

C3 4 24 E E E E E E D - - A - - - - - - - D E F r O F F G3 4 23 F F F F F F E D C B A A A A A B D D E E E E E E I

C3 4 26 E E E E E E E D C A A A A A A A A D D D - - - -

i C3 4 27

- - - - - - - D D D D D D D D D D D D D D D D D i

C3 4 28 D D D D E E E D D D D D D D DD D D D E E F E E i

C3 4 29 E D D D D D D DD D C C C C C D D D D D D-D D D C3 4 30 D D D D D D D D C C C,C 9 C D D D D D E E E Ef D C3 3 1 D D D D D D D D D D D A D E D D D D D D D D D D G3 5 2 O D D D D D D D C B A A A A B B B C D D D D D D C3 5 3 D D D D D D D D 5 C A A - - - - - - - - - - - -

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83 3 9 E E E D E E D D C 9 A A A A 8 8 D D D E E E E E l

03 3 10 E E E E E E D D C A B A B D D C D D D E E E E E B3 3 11 E E E E E E E E D D D C D D D D D D D E E E D D D3 5 12 E E D D D D D D D D C C 5 A C C D D D D D D D -

83 5 13 D D D D D D - - - - - - - - - - - - - - - - D D j

03 5 14 D D D C C B C C D D C C C e C D D D D E E F F E j

83 3 IS E E D D D D D D A B A A A A A A A C E E F 0 G -

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FR I. AUC 19 1983 PACE 5

YINE OF DAY:

10:23:50 PZOCRAM: JFD VERSION; SP NPPD-COOPE3 CTATION JFJ: 35FT WIND VS DELTA T (319'-35') FOR JANUARY-JUNE 1993 S11E IDENTIFIER: NPC21 DATA,PERIQD EXAMINED:

t/ t/03 - 6/30/93 STABILITY BASED DN: DELTA T BETWEEN 318.0 AND 35.0 FEET-HOURLY STABILITIES HOURS YR NN DY I 2 3 4 5 6 7 8 9 to 11 12 13 14 15 16 17 18 19 20 21 22 23 24 C3 5 16 C 0 0 0 0 0 F E D D D D C C D D D D D E E E E E C3 5 17 E E E E E D D D D D D D D D D D-D D E E E E E E C3 5 10 E D D D D D D D D D D D D D D D D E E D E E E D C3 5 19 D D D D D D D D D, C D C A A A.8 C D D E F F F. G' C3 5 20 F F G G G G F E D D D D D D D D D D D D D E D E C3 5 21 D C D E E D D D D D - - - - - - - - D D D E E -

C3 5 22 E E F F E - 3 A - - - - - - - - - - - - - -

C3 5 23

- F F E F F D D D - - A B A A B D D E F F F F F C3 5 24 F F F F ~ F E E D D - - - - C C C D E F E E E E D G3 5 25 D D D D D D C 5 A A A A A A A A A C D.E E F F -

C3 5 26

'O O O F F E D D D D D C C 8 8 C D D D E E 83 5 27 D E E E E E D D D D C C B B C C D D E F F F F E 03 5 28 E E F F F E D C.A A A A A A A A D D E E E E E E C3 5 29 0 F F F E E D - A A A A A A A A B C D D D E E E C3 5 30 E E E E E E D B A A A A A A A A C D D D E E E E 03 5 31 E E E E E D D 9 - A A A A A A B B C D - - - - -

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  • NUS CORPORATION - ENVIRONMENTAL SERVICES * ***

FRI. AUG 19 1983 PAGE

-6 TINE OF DAY:

10:23:50 -

Pr.OCRAM: #D VERSION: SP NPP3-COOPER STATION MD: 35FT WIND VS DELTA T (318'-35') FOR JANUARY-JUNE 1983 SITE IDENTIFIER: NPCS1 DATA PERIOD EXAMINED:

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1/ 1/93 - 3/31/83 aos QUARTER 1 ese STABILITY BASED DN: DELTA T BETWEEN 318.0 AND 35.0 FEET WIND NEASURED AT: 318.0 FEET i

WIND THRESHOLD AT:

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TOTAL NUMBER OF OBSERVATIONS: 2160 TOTAL NUMBER OF VALID OBSERVATIONS: 2039 TOTAL NUMBER OF HISSING OBSERVATIONS:

121 PERCENT DATA RECOVERY FOR THIS PERIOD:

94.4 %

HEAN WIND SPEED FOR THIS PERIOD:

13.7 NPH i

TOTAL NUMDER DF OBSERVATIONS WITH BACKUP DATA:

0 PERCENTACE OCCURRENCE DF STABILITY CLASSES oo*

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C D

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4.95 6.38 10.59 53.85 16.82 5.10 2.31 i

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FRI. AUG 19 1983 PAGE 9

TIME OF DAY:

11:05:54 PROGR AM:. JFD VERSION: SP NPPD-COOPER STATION JFD:' 318FT WINO VS DELTA T (318'-35'1 FOR APRIL-JUNE 1983 i

SITE IDENTIFIER: NPCS1

[

DATA PERIOD EXAMINED: 4/ 1/83 - 6/30/83 i

ese GUARTER 2 ***

WIND NEASURED ~ AT: 318. O FEET _. BETWEEN 318. O AND'. : 35 O TFt:T '

f STABILITV-BASED,0N: DELTA T'.

WIND THRESir0LD AT:

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TOTAL NUMBER OF OBSERVATIONS: 2184 s'

f, 4

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TOTAL NUM8ER OF VALID CGSERVATIONS:

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117

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PERCENT DATA RECOVERY FOR 'THIS PERIOD:

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NEAN WIND Sf'EED FOR.THIS PERIOD:

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TOTAL NUNDER OF OBSERVATIONS WilW RACMUP DM A; O

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8 PERCENTAGE OCCURRENCE OF STABILITY CLASSES

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C D

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1 N

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FRI. AUG 19 1983 PACE 11 TIME OF DAY:

10:18;50 1

PROCRAM: JFD VERSION: SP NPPD-COOFER STATION JFD: 318FT WIND VS DELTA T (318'-35') FOR JANUARY-JUNE 1983 CITE IDENTIFIER: NPCS1 DATA PERIOD EXAMINED:

1/ 1/83 - 6/30/83 I

see JAN-JUN ese STABILITY BASED ON: DFLTA T BETWEEN 318.O AND 35.O FEET WINO MEASURED AT: 318.O FEET WIND THRESHOLD AT: 3 00 MPH TOTAL NUMBER OF DOSERVATIONS: 4344 TOTAL NUMBER OF VALID OSSERVATIONS: 4106 TOTAL NUMBER OF MISSING OSSERVATIONS:

238 i

1 PECCENT DATA RECOVERY FOR THIS PERIOD:

94.5 %

MEAN WIND SPEED FOR THIS PERIOD:

13.8 MPH TOTAL NUMBER OF 08SERVATIONS WITH BACMUP DATA:

O l

l E

PERCENTACE OCCURRENCE OF SITABILITY CLASSES A

B C

D E

F 0

7.23 5.92 9.33 50.34 19.41 5.53 2.24 DISTRIBUTION OF WIND DIRECTION VS STABILITY N

NNE NE ENE E

ESE SE SSE S

BSW SW WSW W

WNW NW NNW CALM i

A 73 13 2

4 1

O O

10 15 1

3 2

7 17 46 103 0

8 62 12 2

2 6

1 2

10 27 10 8

5 8

10 22 53 3

C 100 26 9

6 11 6

24 23 23 15 29 5

2 3

53 49 9

D 182 145 108 SO 91 133 257 182 221 108 68 33 24 38 181 144 102 E

34 32 27 19 21 34 108 123 110 62 37 14 30 35 46 34 31 F

9 3

3 1

2 5

15 36 43 36 18 6

15 16 8

6 5

0 11 1

O O

O O

5 2

6 5

6 10 12 8

1 4

21 TOTAL 471 232 151 82 132 179 411 386 445 237 159 75 98 127 357 393 171 I

i

Stability Classes by Hour of Day, 318-Foot Wind vs. Delta T, January-June 1983 B97

000 e NUS CDRPDRATIDN - ENVIRDNMENTAL SERVICES e ees

'FRI. AUG 19 1983 PACE 2

TIME DF DAY:

10:18:50 PRDCRAM: JFD VERSIDN; SP NPPD-CDDPER STATIDN JFD: 388FT WIND VS DELTA T 1318*-35') FDR JAPAW!Y-JUNE 1983 CITE IDENTIFIER: NPCS1 DATA PERIDO EN AMINED:

t/ 1/83 - 6/30/83 CTABILITY BASED DN; DELTA T BETWEEN 318.0 AND 35.0 FEET e

HDURLY STA5ILITIES HDURS VR MN DY t 2 3 4 5 6 7 8 9 to It 12 13 14 15 16 17 18 19 20 21 22 23 24 B3 1 1 E E E E E E F F F E D D 3 D C D D D E E E E'D D

83 1 2 O D D D D D C C 3 A A A A A-5 D D D E.E F G C G 83 1 3 0 0 0 F F F E E D D D D D D D D D E E E F E E D 83 1 4 D D D D D D D D D D D D D D D D D E E E E D D D B3 1 5 D D D D E D D D D D D D D D D D D D D D E E E E 83 1 6 E E E E F E E E E E D D D D D D D D D D E E E E 83 1 7 E E E E E E F F F E E D D D D E D'D D D D D D D 83 1 8 D D D D D D D D D D D D D D D D E E E E E E E E 83 1 9 E E E D E D D D D D D D D D D D.D D D D D D D D i

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$$ 83 1 36 E E E E E E E E E C A A A A A A D D E E D D D D r

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83 1 18 D D D D D D D D D C C C C C C D D D D D D D D D 83 1 19 D D D D D D D D D D D D D D D D D D D D D D D D 83 1 20 D D D D D D D - D D D D D D D D D D D D E D E E 03 3 21 E E E E E D D D D E A A C 3 5 3 C D D D D D D C 83 1 22 C C C -C B C C C D D C C C 3 A A C D C C D D D D 83 1 23 D D D D D D D D D D D D D D D D D E E E E E D D 83 1 24 D D D D C D D C 3 C C A A A B B C D D D D D D D B3 1 23 D D D D D D D D D D D D D D D D D D D D D D D D 83 1 26 D D C C 3 C 3 C 5 A A A A A B A C D C C C D D D 83 1 27 D D D D D D D D D D D D D D D D D D D D D D D D 83 1 28 D D D D D D D D D D D D D D D D D E D D D D D D I

83 1 29 D D D D D D E D D D D C C 5 8 C C C C C D E E E l

83 1 30 E E E E E D D E D C 3 D D D D D D D D D D D D D 2

83 1 31 D D D D D D D D D C C 3 C 8 D D D D E E D D D D 83 2 1 D D D D D D D D D D D D D C C D D D D D D C C C 83 2 2 B C C C C D D D D C 8 8 A C 8 C D D D D D D D D 83 2 3 D D D D D - - - - - - - - - - - - - - - - - - -

l 83 2 4 C'

O C O F F G F E E D D D D D E E E D E D D D i

83 2 3 D D D D D D D D D D D D D D D D D D D D D D D D i

83 2 6 D C B B C D D D C A A A A A C D D E E F G C C G 83 2 7 C F F F.F F F E E D A A D D D D E E E F E E D D l

83 2 8 D D D E D D D D E D D D D D D C D D D D D D D D 83 2 9 D D D D D D D D D D D D D D D D D D D D D D D D 1

81 2 to D D D E E E E D D D D D D D D D D D D D

-D D D D 83 2 It D D D D D D D D D D D D D D D D D D D D D D D D 83 2 12 D D D D D D D D D D D D D D D D D D D D D D D D l

83 2 13 D D D D D D E E D D D D E D E E E E E E E E E E 83 2 14 E E E F E F E E E E D D D P O D D E E C C C C C I

. ~.

ese o NUS CORPORATION - ENVIRONMENTAL. SERVICE 3 e ovo FO I. AUS l'# -1983 :

PAGE 3

TIME DF DAY:

19:13:50-PRDCRAM: JF3 VERSIDN. SP NPPD-CDDPE2 STATION JF3: 318FT WIND VS DELTA T-(312'-35') FDR JANUARY-JUNE 1983 SITE IDENTIFIER: MPCSI DATA PERIDD EXAJtINED:

t/ 1/83 - 6/3D/83 STABILITY BASED ON: DELTA T BETbEEN 318. O AND 35.D FEET HDURLY STABILITIES HDURS YR MN DV 1 23 4 5 6 7 8 9 ID 18 12 13 14 15 16 17 18 19 20 21 22 23 24 f

83 2 15

-F EE D DD D D D D D D D C C C D D D D D D D D 83 2 16 0 D D D D D D D D D D E E E

.D 5 5 D E O C F G S 83 2 17 C

C.O Q F F E E E D C D D C D D D D D D D D D E 03 2 18 E F EF F F F F (.E D-C C C D D D E E E F E E F l

83 2 19 F E E E E E E E D D C C C D D D E E E F F F F F

~

B3-2 20 F F F F E E F E E D C B C C C D 3 C - - - - - -

83 2 at i

83 2 22 D D D D D C C A A A D D D D D DD l

83 2 23 D D D D D D D D D D.D D D C D D D D E E F E F E 83 2 24 E D D D D D D - D D D C B B A 5 'C D D D D D D D 83 22S D D D D D'D D D D'D D C D C C D'D D E E E E E E 83 2 26 D D D D D D D D D-D D 3 5 C C D D E E E E E E D 83 2 27 D D D E D E E D D D D C 3 3 C D C E E E EE F F 83 2 28 F F E E.F F E E D D C 3 3 -3 C

D'D E E F F F F F 83 3 1 E E F F F F F F 0 C 5 A 5 8 3 D D D E E E F F F i

i 83 3 2 O O G G O O O F E D C 3 3 5 C C D E E F F F E E 0$ 83 3 3 F F F F G G F F E C C-BA -5 5 D D D E E E E D E u) 83 3 4 E E E E E E E D D D D D D D D D D D D D D D D 3 83 3 3 D D D DD D D D D D D D C D D D D D D D E E D E l

83 3 6 E E E D E E E D D D C 3 3 A A A C C D D C D D D l

83 3 7 D D C C C C C C 55 A A B A-B B C C C C C C C C 1

83 3 8 C C C 5 C C C 5 A A A A.A A AA A B 3 3 5 8 5 3 83 3 9 C 3 C B B B B A - - - - - - - - - - - - - - -

83 3 10

- - - - - - - - A - A A A - A - - - - - - - - -

)

83 3 11

- D D D D D D D D D D D C 3 3 C D D D D D D D D i

83 3 12 E E E E E E E D D C B A B A 5 D D D E E F F F F 83 3 13 F F F F F F F E D D D A A.A A 'A C D D E E E E E j

B3 3 14 E E E E F E E D D C S C 3 D D D D D E E D D D E 1

83 3 I5 E D D D D D D D D D D D D C C C C C 3 C B B B B i

83 3 16 3 C C C B C C B C S C D C S S B C C C C C C C C i

83 3 17 C 8 8 8 C 3 8 C D D C C C C A.3 B C C C C 3 C 5 83 3 18 e a e a a e a a 3 A A a A s e e s 3 s C C D D D 83 3 19 D D D D D C D D - - - C C'C D C D D D D D D C C

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83 3 20 D D -D D D D D C 8 A A A A A A A B B C C C C C D 83 3 21 D D D D D D D C A A A A A A A A A C D E D D D D 83 3 22 D E E E E E E D D D B 8 C 8 C C D D D E E E E E i

83 3 23 E D D D E E D D D D D C C D C D D'

D E E E E E D l

83 3 24 D D D D D D D D C C C D C D D D D D D D D D D D 03 3 25 D D D D D D D D D D D D D D D D D D D D E D D D l

83 3 26 D D D D D D D D D D D D D D D -D E E E D D D D D j

83 3 27 D D D D D - - - - - - - - - - C D D D D D D D D j

83 3 28 D D D D D D D D D D D C D C B C C D D D D D D D 83 3 29 0 D D D D D D D D D D D D D D D D D D D D D D D 83 3 30 D D D E E E E E E E D D D D C D D D D E E D D D 03 3 31 D D D D D E E D D D D C B D D D D D E E E E E E

000 e NUS CORPORATION ~ENVIROD81 ENTAL SERVICES o-oes Fa l. AUC 19 1983 PACE 4

4 I

TIME OF DAY:

10; ID: 50 PROCaAM: JD VERSION: SP t

NPPD-COOPER STATION JFD:' 3teFT WIND VS DELTA T (318'-35't FOR JANUARY-JUNE ; t983 SITE IDENTIFIER: MPCSI

{

DATA PERIOD EXAMINED: -t/ t/83 - 6/30/83 STAsILITY BASED ON: DELTA T BETWEEN 318.O AND 35.O FEET i

HOURLY STASILITIES HOURS YR MN DY t 2 3 4 5 6 7 8 9 to 11 12 13 14 15 16 17 18 19 20 21 22 23 24' i

C3 4 1 E EE D D D 3 A C C C C D D D D D D D D D D D D

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C3 4 2 D D D D D D D D D 3 3 C C 8 C C C D D

'D D D D D C3 4 3 D D D D D D C C A A A A A A A B 3 D D D D E E E l

C3 4 4 D D D D D D D D D D D D D D D D D D D D D D D D C3 4 5 D D D D D D D D D D D D D D D D D D D D D D D D C3 4 6 D D D D D D D D 8 5 8 C A B C 3 C D D D D D E E C3 4 7 E E E D E.E E D D D A A A A A C C D D E E E D D C3 4 8 D D D D D D D D D D D D D D D D D C D D D D D D C3 4 9 D D C D D D C 5 C C B 3 C C C 3 C 3 C D D D D C C3 4 10 C D D D C D D C C 3 3 A 8 A A A A D D E E E E F

{

C3 4 11 F

F.F F F F F E E D D D D D D D D D E E - - - -

C3 4 12

- - - - - - - - - - D D D 5 D D - D D D D D D D

[

C3 4 13 D D D D D D D D C C 3 3 9 B C C C D D D D D D D i

C3 4 14 D D D D D D D D - - D 5 A A A A A C D D D D E E C3 4 13 E E E E E E D D C A A A B A A B D D D E E E E E l

C3 4 16 E E E E E E D D A A A A A A A A A B D E E E F E W C3 4 17 E E D D D D D D D D D D D D D C C D D D D D D D E C3 4 18 D D D D D E D D D C C C - C C C D D D E E E E E O C3 4 19 E E E E D D D D D D D D D D D D DD D D E E E E

}

C3 4 20 E E E E E E E D D D D C D D D D D D D E D E E E C3 4 23 E E E E E E D D D D D D C D D D D D D D D D D D l

C3 4 22 D D D D D D D D D D D D D D C D D D D E E E E E 83 4 23 D D D D E D C A A A A A A A A B C D D D D E E D j

C3 4 24 E E E E E E D 5 A A A A A A B A D D E F F G F F C3 4 23 F F F F F F E D C 5 A A A A A B D D E E E E E E j

C3 4 26 E E E E E E E D C A A A A A A A A D D D - - - -

j C3 4 27

- - - - - - - O D D D D D D D D D D D D D D D D C3 4 28 0 D D D E E E D D D D D D D D D - - - - - - - -

83 4 29

- - - - - D D D D D C C C C C D D D D D D D D D C3 4 30 D D D D D D D D C C C C 3 C D D D D D E E E E D

+

C3 3 1 D D D D D D D D D D D A D E D D D D D D D D D D 63 5 2 0 D D D D D D D C 3 A A A A 5 B B C D D D D D D C3 5 3 D D D D D D D D 3 C A A A A A A B D E F G Q G G C3 3 4 F F F E E D DC 5 A A A A A A A B D D E F F F F C3 S S F F F F F E E D D D D B A B D D D D E E E E E E I

C3 5 6 E E E E E E D D C B AA B B B D D E D E D D D D j

C3 3 7 D D D D D D D D D D C C B A C 3 D D D D E E E E i

C3 3 8 F E E E E F E D D C e a a C C D D D D E E E E E j

C3 5 9 E E E D E E D D C B A A A A S B' D D D E E E E E j

C3 3 IO E E E E E E D D C A B A B DD C D D D E E E E E l

83 3 11 E E E E E E E E D D D C D D D D D D D E E E D D C3 3 12 E E D D D D D D D D C C M A C C D D D D D D D D C3 5 13 D D D D D D D D D D A D D D D C D D D D E D D D

)

33 5 14 D D D C C B C C D D C C C B C D D D D E E F F E i

83 5 IS E E D D D D D D A B A A A A A A A C E E F - - -

I f

050 o NUS CDRPDRATIDN - ENVIROpetENTAt. SERVICE 3 0 000 -

'F;]I, AUC IQ 1983 PACE.

-O TIME DF DAY: 1D: 12: 50 -

PROGRAM:.57 0 VERSIDN: SP NPPD-CDDPE3 ST.^.itDN JF3: 318FT WIND VS DELTA T ( 31') *-35 ' ) FDR JANUARY-JUNE 1983

^

StiE IDENTIFIER: NPCSI DATA PERIOD EXAMINED:-

t/ t/83 - 6/30/83 STABILITY SASED DN: DELTA T BETWEEN 318.0 AND 35.0 FEET HOURLY STASILITIES HOURS YR MN DY 1 2 3 4 5 6 7 8 9 to 11 12 13 14 15 16 17 18 19 20 21 22 23 24 83 5 16 C G G O O O F E D D D D C C D D D D D E E E E E 83 5 17 E E E E E D D D D D D D D -D D D D D E E E E E E i

l 83 5 19 D D D D D ~ D D D D D D D D D D D D E E D E E E D 83 5 IB E D D D D D D D D C D C A A A B C D D E F F-F G 83 5 20 F F 0 0 0 C F E D D D D D D D D D D D D D E D E I

83 5 21 D D D E E D D D D D J D D D D D D D D D D E E E 83 5 22 E F E E F F E D 5 A A A A A A 8 5 O D E E E E E l

83 5 23 E F F E F F D D D C 5 A B A A 5 D D E F F F F F 83 5 24 F F F F F E E D D C 3 p C C C C D E F E E E E D 83 5 25 D D D D D D C 3 A A A A A A A A A C D E E F F 0 I

83 5 26 O C 0 F F E D D D D D C C 3 3 C D D D E E E E D 83 5 27 D E E E E E D D D D C C 3 3 C C D D E F F F F E i

83 5 28 E E F F F E D C A A A A A A A A D D E E E E E E 83 5 29 0 F F F E E D C A A A A A A A A B C D D D E E E 83 3 30 E E E E E E D 8 A A A A A A A A C D D D E E E E I

83 5 31 E E E E E D D 5 A A A A A A A 5 3 C D E E E E F B3 6 1 F G C F. 0 0 E D D C C D D D - - D D E E E E E E cu** 83 6 2 D E E E E E DD D D D D D D D D D D D D D D D D

[3 83 6 3 D D D D D D D B A A A A A A A A A D D E F F F G 83 6 4 C C O C 0 - - - - 3 C D E D D D D E E E E E D D 83 6 5 E E D D C D D D D D D D E D C C A D D D E E E E 83 6 6 E E E E E E D D C B A A A A A B A D D E F 0 G 0 B3 6 7 G G G G G G F E D C C A A A A B C D E F F F F F 83 6 8 F E E E E E D D C 3 3 A A A A B B D E E F F F F i

83 6 9 F F E E E E D D C C B B B C C C D D D E E E E E l

83 6 to E E E E E D D D D D D 3 C D D D D D D E E E E E 83 6 11 E E E E E D D D D D D D 8 A D D D D D D D D D D i

83 6 12 D D D D D D D D D D 3 A A B B B D D D D D D D D 83 6 13 D D D D D D D D D C 5 C C 3 D D D D D D D - - -

l 83 6 I4

- - - - - - - - - - - - - - - A A C E F G G G F B3 6 15 0 F F F F G E D D C A A A A A A A D D E E E E E 83 6 16 E E -- D D D D D D D D D D D D D D C D D D E E D D 83 6 17 D E E E E E E D D D D D D D D D D D E E E E D D 83 6 IB D D D D D D D - - - - - - - - - - - - - - - - -

83 6 19

- - - - - - - - - - - - - D D D D D D D D D - -

03 6 20

- - - - - - - - - - - - - - - D D D D E E E E E 83 6 21 E E E E E E D D D D C C C C D D D D E E E E E E B3 6 22 E E E E E E D D D C C C C C D D D D E E F F F F 83 6 23 F F F F F E E D D D C 8 C D B C D D E E - F F F 83 6 24 F F F F F E E D D D C C C 8 C D D D E E F F F E 83 6 25 E E E E E E D D D C C 8 C C C D D D E E E E E E 83 6 26 E E E E D D b D D 5 D D D D D D A D D D D D D D 83 6 27 E E E E E E D E D A B A B B B D D D D D D D D D 83 6 28 D D D D D D D D D D C 8 8 B C C D D D'D D'

D D D B3 6 29 D D D E D D D D C D D D b A C C D D D E E F F E 1

' 000 e MUS CORPORATION - ENVIRONMENTAL SERVICES * ***

. FR I. AUG 19 1983 PAGE 6

TIME OF DAY:

10:18:50 PROGRAM: JFD VERSION: SP NPPD-COOPER STATION JFD: 318FT WIND VS DELTA T (318'-35') FOR JANUARY-JUNE 1983 CITE IDENTIFIER: W S1 DATA PERIOD EXAMIIED:

1/ t/83 - 6/30/83 CTASILITY BASED ON: DELTA T DET6EEN 318. 0 AND 35.0 FEET HOURLY STASILITIES HOURS V3 MN DY I 2 3 4 5 6 7 8 9 to 11 12 13 14 15 16 17 18 19 20 21 22 23 24 Q 6M E E E E E E D D D D D D D D D D D E E E E E E E i

i t

1 1

geo 94 r

3 l

1 4

1 I

1 i

ATHOSPHERIC DIFFUSION ESTIMATES The tables of atmospheric diffusion estimates in this section were generated using the computer code XOQD0Q. Data are given for 22 distances and 16 compass points centered on the Cooper Nuclear Station. Tables are presented for the ground-level (vent stack) and elevated release options separately, and for the following time periods: January-March, April-June, and January-June 1983.

I B103

Atmospheric Diffusion Estimates Ground-Level Releases January-March 1983 6

B104

-. ~ _.

I EECTS Copwee LtttL CttraSES 20 DECeTo Me9EPLETE9 1

ConDECTED rSQ ePE3 ff 88833 KECl2 Cut a7tet

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6 224E-.e 4.966r-e.

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4.ee6r-95 2.556[-05 3.337t-05 6.643t-86 2.753C-06 8.5 t FC-86 9.74tE-0 7 6.4 72C-07 5 163r-37 4.eSaE-e7 3.29er-97 l

9et 3 153t-85 1 097E-95 5.935r-86 2.*F2t-06 1 174r-06 6 285E-07 3.*40E-97 2.735c-07 2 024E-e7 3.573r =e7 1.26?E-87 9E 9.199E -96 3.346[-86 5.me5r-e6 e.95Pf-97 3.447r-9 7 1.4 05E-87 1.3 36t-9 7 7.63eE-e4 5 585t-ce 4.2 aft-Pe 3.454[-en E 9C e.312f-06 3.829E-e4 3 63e[-06 a.en3t-e7 3.194[-87 1 626[-e7 1 934r-07 6.eSat-08 5.el3t-ce 3.e46t-94 3.8600-04 i

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r$E 6.46 5E -96 2.346t-06 3.274E-06 6.349t-e7 2.45eE-e7

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4W 2 115E-97 1 099E-97 7 176F-98 4.16?E-04 2 94IC-se 2 197E-Da 1 667[-4A 3 363E-te 1 1460-88 9.03AF-e9 0.5p?E-e9 cm 94W 2.76 7t-07 1.46et-07 9.634f-en 5.66mt-ce 3.*e4E-SP 2.*3ef-se 2 32e[-8A I.9e6E-04 1 6s9E= e4 1.346E-t e 1.213E=ep i

4 2.752r-07 t.45aE-P7 9 649E-en 5.7e2E=es 3.941E-es 2.966E-en 2 354E-04 1.*3st-ce 1.63et-ce 1.4330-e4 1.239E=en

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Atmospheric Diffusion Estimates Ground-Level Releases April-June 1983 4

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W4W 3.455[-96 p.44 7E-e 7 2 459E-PT l.tA9E-C7 7.830E-en 2 969E-14 9.275E-e9 3.*77[-49 2 266E-c9 3 476f

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7.487E-44 1 674E-06 4.919f-07 2.497E-87 3.45tE 37 6.078E-up 1 927E-On A.3%3E-89 4.793E-O*

3.136E-89 h4E 2.74tE-96 6.l p5E-4 7 1.pl5E-a7 9.al4E 3n 5.29mf-P.

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1.36er-e6 3.97ef -8 7 9.el2F es 4.37mE-#A 2.653E-4p 1.e**E-en 3.477E-e9 3.5b6E-39 A.646E-18 5.669f-10 t

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4.7SFC-ee 1.609E-ee 8.26SE-09 3 927E-89 1.418E-09 6.995E-t e 4 19 9E-t e 2.697[-19 1. A9er-t e 1 4 06E-t e 1.sett-l e t

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SE 3 790,E.07 4.48at-9.,3. lent-88 1 47st-Se 5.30st-09 1 84,st-89 1.elSE-997. 24E-10.7.141E-13 5 293Cate 4.879E-te 1 3, E-9 7 6.SS4 E=ce 2 632E-89 1.55 SSE

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WSW 3.4 3eE-t e 6.353E-S t 3. stet-33 3 94SE-st 1.177E-nl 7.a94E-12 5.656E-12 4.247E-82 3 3e2E-82 2 63eE-12 2 353E-32 W

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mJ 4.Seet-le 2.83SE-te 3.232E-t e 6.229C-Il 3.77eE-11 2.52st-ll I.stlE-Il 1.36et-11 l.&SSE-Il s.49et-12 6.095E-12 1

co umJ 4.536E-t e 2.elSE-t e 1.223E-t e 6.lf et-il 3.734E-!! 2 584E-Il 1.794E-11 1.347E-11 1.e47E-il s.367E-82 6.43ef-82

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3.436E-te S.SSSE-Il 4.94 eE-11 2.49 7E -I I 1. Silt-11 3.el3E-Il 7.260E-82 5.452E-82 4.239E-12 3 384E-82 2.764E-12 I

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7.477E-Il 3.322E-Il 2.882E-18 1.087[-11 6.tSSE-12 4.127E-12 2.957E-12 2.228E-If 1.727E-12 1.379E-12 1 126r-12 ESE 8.24 7E-t e 5.539E-18 3.3SSE-l t 1.696E-I t 1.026E-S t 6.ae2E-12 4.938 E-3 2 3.783E-3 2 2.8 79E-12 2 300E-12 1.8 77E-12 ~

SE 3.24 0E-8 0 3 439E-te o.73 9C-Il 4.487E-S t 2.667E-Il 1.70et-11 1.288E-Il 9.625E-12 7.482E-12 S.97FE-12 4.Afer-12 SS!

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j SE6mC47 seUkeARIES IN MILES O la EE C I DW

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i Feem SITE l

l S

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3 17 st-ce 2.397E-89 6.257[-18 2.elet-le I.594E-le 6.ll3E-la 3 769f-ll 7.ee9E-12 3 743E-12 2.387E-12 I

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1. lese-It 5 915E-12 3 66tE-12 j

j mv 4.2 94 E -te

8. 796 E-0 9
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[

f NC 1.72 E E-te 3.526 E-09 9.284E-te 4.834E-te 2.33SE-te n.993E-Il 2.682E-Il 1.e3t[-11 5 5J6r-12 3.4GhE-12 q

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6. leet-il 1.767f-II 7.So4E-IP 3 740E-12 2.315E-12 l

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t. SAFE-Is 4.592E-18 1.42PE-Il 9 739f-12 6 016f-12 l

l SST 2.257E-44 4.654E-09 8.299f-e9 5.4e9E-19 3.seef-14 1 177E-IP

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vfCTS CCenne LEvtL Rft[CSCS CeterCffP F04 SPf1 fTsett] #[Cl2CULCTiet

$*ECIF I C 0030T5 8F 13ffetST stLts5E TTPE OF Ol#ECTION DISTahCE M/4 R/G E15 0/0 SD L OC ATI ON GRILTSD (MCTFAS3 45tC/CUf.mFT[83 I SC C /C U P. *E T E R D GSEC/CUS.*Cital iP[a St.nETER) 20 3fCav 2 268 Pav DFCAT 4.000 Day OtCav MEQLELLILQ MEDLLLL1LO QLtLL1LD a

SITE 9004Daar S

e.49 1434.

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SITE 80pg0aa t SSW O.92 14A8.

4.827f-06 4.all[-16 S.54tC-66 1.a35t-34 a

SITE 90040aa?

Sw 3.89 3758.

1 754f-36 3 744f-96 1.524f-a6 5.*f3E=1=

a S ITE 8 0U4044 7 WSW 3.94 I5te.

2 296t-16 2 285E-36 2 315E-16 7.6450-89 a'

SITE S0040a#7 W

0.9S 1580.

7.176t-96 2 166C-36 3.*llE-06 6.a23E 8*

a Slft gepaseasy want S.96 154P.

2 443E-96 2 43tf-86 2.142f-96 1.teft-tm a

SITE 80UeDaar av 9.72 1869.

9.692C-06 9 666E-96 S.649E-86 4.696t-88 a

SIT [ 0 0UseO sa y new g.62 ISte.

1 441[-15 1 43fE-05 1.2*6C-85 5.969[-04 a

SITE 50043aeY W

t.65 1958.

1 064[-85 3.962E-35 9.55PC-e6 6.436t=818 a

Slff 800 eda #T Ret 0.63 lett.

4 117E-06

4. lent-06 3.702C-06 2.75ft=0R a

SITE BOU40may at 3 64 1938.

3 2tT[-06 3 211[-06 2.890E-06 2 2900-18 a

SITE 50040as?

E NE C.62 1998.

1 068[-86 1.863C-96 9.551[-87 3 135t-05 a

S IT E B 0090 am t C

0 61 99C.

l.149E-06 1 14TE-06 1 5360-06 1.312t-se a

Slit 30090aP Y ESE 5 61 980.

2.131E-86 2.12a[=86 1.92tE-86 3.6 ATE-08 a

SITE ROU90sey St 3.e6 1733.

9.eger-87 8.9Att-07 7.444[-47 1.243t-ce a

slit 90UeDat t SSE 5.91 1968.

l.451E-06 3.44T[-86 1.27TE-96 3.4090-04 4

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l Atmospheric Diffusion Estimates

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Cround-Level Releases January-June 1983 l

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B116

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

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S 3.49M-05 3 8838-ee b27M-86 3.S eM-e6 3.2est-e6 6.36M-e7 3.468t-et 2.726E-07 2.0865-07 3 949t-et 3.24eE-er

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Maese6 S.eee 7.See So.see 39.000 20.000 29.ees 34.000 35.08e 44.000 45.000 St.ees S

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-CORRE*7ED roR OPEN TEPRAIN RECIRCULATION ANNUAL AVERAGr CHI /O (SEC/ METER CUREDI

. DISTANCE IN MILES.

SEC70m 3 259 P.508 8.758 1.000 1.5?O 2 001

2. Sat' 3.000 3.500 4.000 4 500 5

3.48Ar-05 1.1 par =05 6.249E-06 3.0REE-P6 1.194[-06 6 296E-07 3.939E-n? 2.6R2[-07 1.*69E-07 1.516f-97 1.PleE-87 SSW 4.043E-05 1.370E-95 7.229E-06 3.5P l f-06 1.414r-06 7.555[-07 4.737E-07 3 276E-37 2 419E-97 1.R72E-07 1.50ll-07 SW 2.78tE-05 9.5750-06 5.122r-06 2.552E-06 1.pntr-06 5.318F-07 3.319E-87 2 245E-07 3.6AIE-07 1.297r-17 1.337E-07' WSW l.935F-35 6.533E-06 3 512E-06 1.76er-96 6.9%4r-07 3.7150-07 2.327F-07 1 60NEac7 1.166E-07 9.169E-08 7.342E-OR W

l.7a7E-25 6.095f-06 3.P A3r-06 1.64 4E-06 6.502E-87 3.4 76[-e 7 2 179E-9 7 1.%e6E-07 1 132E-07 8.60PE-0A 6.A93r-9A W9W 2.4 9t E-05 a.37 70-06 4.450r-0 6 2 21%E-96 p.74pE-07 4.6 76?aJ 7 2.932E-0 7 2.02 7E-07 1.4 97E-ST 3 15mE-0 7 9 2plE-en 4W 5.5 mat-85 1. pint-05 9.937E-06 4.9A2C-96 1.996E-06 1.0 77E-06 6.p 03E-0 7 4.73 t t-07

  • 3.5L D E-07 2 727E-07 2.l?4E-0 7 N1W 6.983E -05 2.250E-05 1.20PE-05 6.03aE-06 2.455E-96 1.3390-06 8 521[*07 5 962E-07 4.4460-97 3.469[-07f7.Melf-87 N

6.1590-05 2.e06E-05 1.064r=05 5.32mE-06 2 155r-06 1.171E-06 7.4 33E-0 7 5 192r-31 *3.46f t-87 3.515r-07 2.432E-0 7 N4E 2 435E-85 A.326E-86 4.520E-06 2.271E-06 a.966E-8 7 4.798 [-07-3.9 94 E-07 2 8 74E=e7 7.535E-9 7 1.l ARC-Gl'9 52nt-On 9E I.16 8E-95 4.85 t E-06 2.199E-06 1.189E-96 4.287E-07 2.2 71[-07 1 4 84 E-0 7 9 729f-09 7.155E-SA 5. Stat-OR 4.411E-On ENE 6.065r-06 2.180E-06 1.173E-56 5.A33C-97 2.23tE-87 1.169E-0 7 7.P inE-0 8 '4.921E-0R _3.5e3g-0R 2.754E-BM 2 1M9E-en E

7.169E-06 2.452E-96 1.339E-06 6.7410-07 2 6470-87 1 409E-07 a.893r-em 6 071E-04 4.473[-88 3.455E-08 2.765E-On FSC 7.836E-96 2.652E-06 3.443E-06 7.263E-F7 2.n5?[-07 1 51PE-07 9.493E-08 6 547E-68 4 826E-08 3.729E-98 2 945E-DA SE 1.3 76E-05 4.846E-96 2.551E-06 1.249E-06 4 726E-97 2.4 53 E-07 1.5 02[-07 1 019E-07 7.4 09E-te 5.65nt-on 4 4 83r-e8 SSE 1.383r-05 4.455E-06 2.3650-06 1.16mE-06 4.4 n5E-0 7 2.35t E-0 7 1.4 53E-8 7 9.93 PE-08 7.263E-De 5 5 76t=0 m 4.*3pE-On

(

ANNUAL AVERAGE CHI /O (SEC/ METER Cube 05 Ol%7 ANCE IN MILES 45.90t/

59.000 r'

[

l SEA 1ING 5.000 7.500 10.000 I5. Spa 20.009 25.089 30.008 35.000 40.000 S

9.93 20-08 4.94 4 0-04 3 122E-98 1 717[-08 1.126E-SA 8.086E-09 6.156E-09 4.A77E-09 3.979C-09 3 3200-p4~2.820E-09 SSW 1.256E-07 6.215E-04 3.945E-en 2.177E-08 3 422E-04 1 017E-OP 7.69nE-09 6.063E-89 4.917E-09s4.077E-n9s3.440E-09 SW R.5350-0A 4.230E-08 2.661[-08 1.44RE-08 9.354:-09 6.624E-09 4.977E-09 3 093C-09 3 138F-89't.588E-99 2 173E-09 WSW 6.041E-08 3.01AE-38 1.906E-08 1.041E-08 6.73HE-09 4.779E-0913.592[-09 2.811E-89 2 265E-09 1.868E-09 1.56pt-E9 W

5.672E-08 2.440E-88 1 797E-04 9.844E-09'6.382[-89 4.534 E-0913.413r-09 2.674E-09 2.157E-09 1 7 Aer-09 1.495E-E9 W4W 7.645E -en 3.ntit-08 2.43 70-Op l.342E-04 8.753E-09 6 2 49E-0 9 4.725F-0 9 3.717E-0

  • 3.01 t E-0 9 2.4 9)C-09 2 182[-09 4W l.812E-47 9.204r-04 5.P82E-08 3.272r-06 2.146E-08 1.5 39 E-0 8 1.1680-88 9.216E=99 7.4A4E-49 6.213C-09:5 24Ar-09 C

a3 N4W 2.322[-87 1 193C-0 7 7.682E-08 9.314 E-0A 2.844E-08 2.046t-08 1.9560-04 1 230E-GP,9.993[-e9 8.300E-09.7.ct2r-09

-a 3$

N 2.015r-07 1.034E-07 6 65mE-08 3.746E-08 2.477E-08 1.7RRE-OR I.364E-CA 1 082E-3A R.824E-09 7.355E-04 6 237E-09, NME 7.853r-SA 3.961E-de 2.525E-08 3.4C6E-8A 9 265E-09 6 689E-09 5.Il5E-01 4.070E-09 3 333E-09 2.791E-09 2 37AE-f9 1E 3.62SE-SA 1.pler-98 1.1460-08 6.333E-89 4.163E-r9 3.0020-09 2 296E-09 1.82pt-89 F.4 9 Ar-39 1 256E-19 1 0 72 r-09 EME 1.798E-08 8.755r-09 5.456E-09 2.948t-09 1.89er-09 1.343E-0* 1.0 8 2E-0* 7.952E-l O 6.443f-lO 5 34 4E-10 9.5150-13 E

2 275E-AR 1 139E-08 7.221E-09 3.946E-09 2.610r-09 1.R74r-99 1.427r-99 1.13tE-09 9.23r0-le 7 747E-10 6 551r-RO ISE 2.4 5 7r-en 1.233E-en 7.n31E-e9 4.339E-09 2. A52C-09 2.955E-89 1 110E-09 1.248E-09 1.02f t-09 A.554E-19 7 290E-10 SE 3.65 7E-88 1.777E-te 1.194E=e r 5 959E-09 3.n68[-09 2.765E-09 2.lFPE-09 1.666E-19.1 361E-09 1 139E-89 9 7Plf-19 SSE 3.6350-08 1.792E-04 1.125E-08 6.147E-n9 4.016E-09 2.883C-09 2.195r-09 1 74tt-99 1 423E-99 1.190E-09 1 013C-89 EHI/O (SEC/ METER CD8ED) FOR FACH SEGMENT 4

SEGMENT ROUNOARIES IN MILES DIRECTION

.5-1 1-2 2-3 3-4 4-5 5-10 10-20 20-30,

39-40 40-Sa FROM SI TE S

6.077Ey06 1.364[-06 4.0550-87 2.800E-07 1 220E-07 5.243E-sA 1.76&E-08 8.159E-09 4.9010-89 3.330E-09 S$W 7.446E-06 1 603E-06 4.9 F. 4 E -9 7 2.455E-07 1.383E-07 6.572C-r8 2 234E-08 1.026F-PR 6.293E-09 4.090E-99 SW 4.9A9E-06 1.137E-06 3.4

  • SE-0 7 8.7DPE-DF 1.045E-97 4.4R5E-f8 3.490E-04 6.692E-09 3.915E-09 2.5*7E-19 WSW 3.495E-06 7.ASAE-97 2 410E-07 1.204E-97 7.401E-r8 3 1960-08 1 07tt-08 4.R27E-09 2 826F-89 1.874r-89 W

3 140r-06 7.366E-07 2.256E 1.129E-07 6.9450-fA 3.00AE-PA 1.011[-08 4.57AE-09 2 688E -g*

1 7n6r-09 W4W 4.329F-06 9.916E -8 7 1.835E-07 1.519E-07 9 357f-98 4.062r-08 1.378r-08 6.3070-09 3.756E-09 2.501E-09 '

NW

9. 656 E -0 6 2.25tE-06 7.032F-07 3.563E-07 2 2tlE-37 9 710E-08 3.352r-38 1 552r-en 9.260F-59 6.?32C-09 N1W I.168E-95 2.755r-06 4.795r-c7 4.5170-97 2.R22[=07 1.255E-c7 4.439E-9A 2.?63E-On 1.235E-On 4.325E-09 N

l.0570-e5 2.422[-06 7.677F-97 3.a23r-c7 2.453r-17 1.3 PAC-07 3.A29r-G8 3.APPE-1A 1.087E-9A 7.3760-c4 N1C 4.367F-06 1.0lfr-n6 3.ll0E-07 1.55PE a7 9 6050-CH 4.lRRE-08 1.441r-6R 6.7470-09 4.ORar-49 2.799E-99 4E 2 1??r-06 4.882f-07 1.466r-07 7.267E-HA 4.4481-88 1 9tAE-03 6.507E-n9 3.029E-0*

1.836E-09 1.2600-39 ENE I.134r-06 2.555I-07 7.4enf-9A 3.653E-OR 2.2090-3M 9 37tE-n9 3.035r-n9

1. 35 p t - v9 7.997[-IP 5.362E-10 E

I.218E-06 3.396E-p?

9.189E-0p 4.5420-0p 2.7H8E-PA I.2G6r-na 4.C94E-99 1.nalf-r9 1.l?6E-09 7.730E-10 FSE 1.393F-06 3.239F n7 9.P3t[-op 4.900E-04 3.el0E-08 1.30%E-9R 4.454E-19 2.974E-09 I.254E "9

p.579E-ID SC 2.442r-06 5.440f-07 1.562E-07 7.537F-04 4.5?5r-PM l.p96E-Om 6.1590-0*

2.194C-19 1.6740-?9 1.142E-J" S4r 2.298r-96 5.13 6f -0 7 00599U-09.

Og3QyQ-DQ OnaPOR-90 Rn9maa-@Q.

8n2907-29 SnaROE-OO DnD5@R-30 RnR*32-@*

9fMTS 820040 t[vt[ CitraSr5 A.EOS 087 DECA 7e DIPLFTED C0%%rti t D F03 CPEQ ItR2AIN C[Cl2CULAfl03 ANNUAL AVERAGE CHl/0 f$[C/MritR CUBE 01 DISTANCE IN Mit[5 SECrnm 8.250 0.500 4.750 1.000 1.500 2.031 2.509 3.900 3.51n 4.000 4.500 S

3.3040-05 1.87*t-95 5.584E-06 2.7310-06 1 02et-n6 5.253E-07 3.197t-07 2.155t-07 1.557f-07 1.la2r-37 9.3090-On Stu 3.831[-05 1 254[-05 6.465r-06 3 34*r-06 1 20*r-06 6.317E-07 3 885[-37 2.641[-07 1.923r-07 1.467E-07 1.161[-97 SW 2.635t-05 n.767r-r6 4.5p3[-06 2.246I-06 A.569C-07 4.4 52E-C 7 2.776E-0 7 8.4 4 6E-8 7 1.3 3 R[-2 7 1.S t at-3 7 p.G 3 RE-0 8 WSW l.4340-05 5.984E-06 3.144r-06 1.590[-06 5 9600-07 3.114E-07 1 914[-07 1.3nt[-07 9.456r-0A 7.2tSE-OR 5.707[-08 W

1.693t=05 5.5Al[-06 2.938f-06 1.448[-06 5.569r-37 2.918E-97 1 79tt-07 1.237E-07 8.953[-0A 6.757F-38 5 34Ar-08 W1W 2.36t[-95 7.669E-06 3.ea0E-06 1.94PE-06 7.4 ASE-07 3.9 t I E-0 7 2.4 c6[-e 7 1.635[-07 1.In9[-87 9.cne -08 7.tnft-On 9W 5.2960-85 1.701E-05 p.apa[-06 4.3m2t-f6 1.75pr-06 9.Ollf-07 5.582r=07 3.8170-07 2.790[-07 2 119E-07 1.699E-07 N4W 6.619t-05 2.061[-05 1.074f-05 5.31%f-06 2.104E-06 1. 8 220-06 7.0 05[-0 7 4.R2 8 E-0 7 3.54 3[-0 7 2.72 AE-0 7 2.176t-0 7 N

5.R3 7F-05 8.8 3 6[-05 9.516 t-0 6 4.686t-06 1.m44[-06 9.7*30-07 6.lSet-07 4.189t-07 3.073[-07 2.364r-07 1.RR3E-07 NME 2.3060-95 7.615E-96 4.037[-06 1.994t=06 7.650E-07 4.99PF-07 2.4520-P7 1.666[-07 1.211E-07 9.236E-08 7.307[-OR SE 1.a99[-05 3.704E-06 1.963t-06 9.659t-07 3.654[-07 1.R90F-07 1 1530-0 7 7.746E-O A 5.632t-0A 4.279[-08 3.373C-08 r1C 5.746r=06 3.995[-06 1.048E-06 5 108E-07 1.906E-07 9.751[=0A 5.n97[-0A 3.954[-0A 2.842[-08 2 147E-08 1.6m4E-0R E

6.798t-06 2.243t-06 1.196r-06 5.924r-07 2.261[-07 1.176r-07 7.20![-0R 4.R79E-OR 3.53RE-SA 2.6*4[-08 2.12MC-0R ES[

7.423r-P6 2.426F-86 1 2890-P6 6.379[-07 2 4350-07 1.266[-97 7.755E-98 5.255[-08 3.8110-08 2.9830-08 2 2*3t-OR St 1.303f-05 4.429E-06 2.277[-06 1. east-P6 4.n26E-07 2.038t-07 1.222E-07 8.143[-34 5.82SE-on 4.377t-On 3.439[=en SSE 1.2 3 4 r-05 4.0 74[-06 2.ll2r-06 1 0 25t-36 3.a26E-0 7 1.953E-0 7 1.196[-87 7.959[-08 5.72ar-08 4.333C=On 3.4e2[-08 A9NUAL Av[nast CHI /O ISEC/MfitR CUPtol DISTANCC IN MILFS PE AtlNG 5.000 7.500 10.008 15 000 20.090 25 000 30.000 35 100 40.00u 45.000 Sn.000 5

7.55t[-08 3.59tE-OR 2.183t-08 1.134[-OR 7.ller.09 4.92pE-0* 3.63nt-09 2.806E-09 2.234[-09 1.A23f-99 1.516[-09 SSW 9.456t-On 4.556[-04 2.794f-08 1.4650-38 9.214t-0* 6.3*6[-09 4.725E-09 3.644[-9* 2.90lE-09 2.365E-09 1.965t-09 SW 6.528F-08 3.llit-OR I.A91[-08 9.789[-09 6.0940-09 4.l?5E-09 3.t780-09 2.360E-e9 1.8680-09 1 516[-09 1.254[-09 WSW 4 6 4 4 E-08 2.229[-3R 1 361[-0R 7.097[-09 4.434r-09 3.068[-09 2.253E-09 8.729[=0* 1.371[=09 1.1140-09 9.226[-10 W

4.353[-OR 2.092t-08 1.2800-04 6.677E 89 4.378[-0* 2.nnnt-09 2.1250-09 1 633[-09 1.296[-09 1 054[=09 A.731E-10 WNW 5.853t-08 2.820E-3A 1.728[-08 9.053E-09 5.689r-09 3.946[-49 2.913[-09 2.245[-09 1.7850-09 1 454[-09 1.20AE-09 oo 4W l.3 8 8F -0 7 6.756 0-C A 4.173C=0A 2.236[-99 1 394t=04 9.710E-09 7.l o2t-0 9 5.55mt-C 9 4.431 E-0 9 3.617E-09 3.90 9E-09 N4V 1.7840-07 A.803E-08 5.485[-08 2.937E-08 1.8730-04 1.3 tit-0A 9 754[-09 7.565E-09 6.049[-09 4.9%c[-09 4.177E-09

[$

N 1.542[-97 7.549t-98 4.721E-08 2 523E-08 1 607[ n8 3.126t-08 8.383[-0* 6.505E-09 5.205[-09 4.263[-09 3 557[-09

  • 11 5.947t-08 2.860f-08 1.75tE-08 9.167[-09 5.76rt-09 3.994t-09 2.955[-09 2.282[-09 1. RISE-09 1.9*5[-99 1.236E-01 si 2.736t-08 le300F-08 7. A92[-99 4 086[-99 2.552r-09 1. 763 E-0 9 1.259[-0 9 1.0 0 n[-09 7.957E-10 6.4 R8[-10 5.394 E-10 (M

1.360E-04 6.347E-09 3.m03[-09 1.929E-09 1.1R6[-09 A.D ATE-10 5.m92E-10 4.494E-10 3.54 4[-10 2.867E-t e 2.367t-19 E

1.7290-08 8.267[-09 *.039t-09 2.620[-n9 1.638f-09 1.332E-09 8.343r-80 6.4200-10 5.103r-10 4.1570-10 3.4531-10 ESE 1.A64E-PA 8.91RE-09 5.44tE-09 2.435[-09 1.776f-39 1 23p[-09 9.076t-10 6.997E-li 5 5700-10 4.544E-10 3 7800 *0 SF 2.752E-CA 1 27PE-06 7.557t-09 3.R38[-09 2.3400-09 1.59AE-09 1 166[-09 A.913E-10 7.046E-10 5.716E-10 4.732E-10 SSE 2.752E-CA 1.293r-0A 7.792[-09 3.999[-0? 2.4n9[-09 f.715[-S9 1.261[-09 9.694t-18 7.700[-10 6.271[-10 5.208t-IS CHl/0 (SEC/Mr7CR CUREDI FOR FACH SEGMENT SEGMENT ROUNDARifS IN MILES DIRECll0N

.5-1 1-2 2-3 3-4 4-5 5-10 10-20 20-30 30-40 40-51 F40M Sl1T S

5.4650-06 1.176t-06 3.3280-07 1.5A5[-07 9.402[-0R 3.n4St-08 1.179[-04 4.994[-09 2.826E-09 1.83t[-ng SSW 6.342E-16 1 384[-c6 4.P36F-07 1.*54F-07 3.177t-97 4.862[-08 1.53*E-08 6.479t-09 3.6 74[-C 9 2.3 76 t -0 9 SW 4.4 74 E a6 9.R26E-07 2.R34E-37 1.36tt-07 n.Iltr-18 1.32r[ an 1.017[-08 4.255[=09 2.37et-49 1.524E-3a WSW 3.n67F-06 6.PISt-07 1.999t-07 9.617[-08 5.763r-08 2.3nor-PR 7.36ct-09 3.103[-09 1.742[-19 1.1890-19 W

2.n63r *6 6.367t-07 1.p60E-07 9.0P4t-0A 5.397t-PA 2.233t-On 6.926t-09 2.927[-09 1 545t-n9 3.n5"f

-9 W1W 3.997F-06 8.5630-07 2.499[-07 1.280[-07 7.254[-08 3.00*r-en 9.3n6E-09 3.997[-09 2.26?t-39 1.46tr-0?

Nu R.693[-16 1.944E-06 5.79tf=07 2.R3%E-97 1.714f a7 7 199f-PA 2 2n2[-08 9.83tE-f9 5 5950-39 3.633E-09 N1W 3.952t-05 2.3 Alt-n6 7.255t-07 3.59ar-07 2.1941-07 9.357t-04 3.h30t-On 1.3260-PA 7.6130-09 4.978t-19 N

9.*15r-16 2.693C-06 6.320t

  • 7 3.122r-07 1.h99F-47 m.055r-09 2 644[-9A 3.139[ p8 6.5460-r9 4.241E-?9 N1[

3.924f-06 4.7560-17 2 54*(-07 1.231[-07 7.37%F-98 3.053r-3R

  • .5eff-39 4.05tr-09 2.2*mt-09 1.492C-0*

NF 1.936r-06 4.20 2r-0 7 1.?a9F-57 5.732[-9A 3.406I-0P l.1920-CR 4.2%DF-0*

1.78Rt-09 1.0080-09 6.% Int-30

[NE 1.323r-16 23234f-07 6 34PT-en 2.n95r-Dn 1.793r-PA 6.H27[-09 2 035E 19 A.214T-SP 4.5'l[-19 2.AA2t-10

[

1.16tt-96 2.%*3[-97 7.4 n f r -08 3.6P3r-9A 2.14RE-PP R.R3R[-09 2.729[-49 1.leNE-09

6. a 6 7[ - 10 4.lT7f-la FSE I.2%2E-96 2.7*2F-07 P.963[-08 3.MTRE-SA 2.314[-0R 9.532[-0*

2.9440-09 I.?*7I-09 7.P47F-In 4.%65r-In SF 2.210[-06 4.8 9 2r-0 7 3.??7F-07 5.934I-04 3.456r-ap

3. A7 3r-r9 3. ** m p f - 1
  • 1.6230-99 R.9Pmt-l*
5. 74 6F -I f 53r 2.GA%r-P6 4.425r-07 l.236f-17

%.H34r-OR 3.437F-fm I.iR9t -8 n 4.173r-ng 1.740t-h*

  • .7 API-10 6.3nif-le

vtNTS GROUNO LEVEL RELT ASES C04AE"TED FOR OPF9 TEAAAIN EECIRCULATION

..............eeee...

AttaTIWF DEPOSIIl0N PI A UNIT Apfe 84..-2)

AT FINID P0lNIS FY 00WNWIND SECicas

.e.e.e.e.e..se......

DIAFCil0N DISTANCIS IN MILES FA0M SITF S.25 e.Se 0.75 3.te 1.%e 2.00 2.50 3.00 3.50 4.88 4.50 1

3.063t-e7 1 036[-s7 5.3 t A[-se 2.5280-Je 9.9 Af f-69 4.564[~e9 2.652f-09 1.737E-09 1 222E-09 9.856C-10 6.97AE-10 SSJ 2.10lt-077.104E-0Af.64PE-08 1.734E-en 6.229t=09 3.0A9E=0? l.Angf-09 1 19tE-09 A.3 Alt-la 6.281[-10 4.786E-30 SJ I.8 8 7E-0 7 3.439E-en 8.766E-08 8.394f-09 3.015t=09 3.495f-09 8.P 05f-10 5.765[-Id 4.e57E-t e 3.8 06[-3 0 2.317[-18 WSW 6.958E-94 2.84&E-te 1.C50f-de 4.994f-99 3.794t-09 4.996f-lo 5.23PE-10 3.430E-19 2.433f-It 1.789E-13 1.37AF-le W

5.83 3f -en 1 973f =98 3.083F-SA 4.A15[-09 3. 75 00-89 A.Siet-19 5.651 f-l a 3.307E-10 2.327E-10 1.725[-8 0 1 3?oE-10 kNJ 3.043f=e7 3.520E-08 9.808E-08 8.594f-09 3.387E-P9 8.53 3 [-0 9 9.014[-l e 5.902 E-8 9 4 3 5 5 t -10 3.0 7mE-10 2.3 72 E-10 NJ 2.389f-87 8.079f=0s 4.14AE-04 8.972E-be 7.8A3[*09 3.513E-09 2.064[-09 1.354E-49 9.533E-18 7.863F-10 5.443f-10 NNW 2.252f-87 7.616E-08 3.91t[-0A 1.A59E-es 6.67pf=09 3.382E-09 1.950f=09 1 277E-09 8.9ASE-10 6.65AF-10 5.13tf-te 9

2.865[-07 9.684[-38 4.9 74E-te 2.365E-08 8.495[-09 4.213E-09 2.4Al[-09 1.624[-69 1.143E-09 a.4 78E-t e 6 527L-10 NNE I.64 5f-8 7 5.562[-se 2.856f-s e 1.358[-se 4. A 76[-09 2.41R E-09 1.424E-89 9.324E-10 6.561F-18 4.862[-13 3.747[-10 N!

9.406F-SA 3 181t-04 1.633[-04 7.764E-09 2.789f-89 3.383C-89 8.14 3E-!S 5.332E-13 3 752E-IS 2.781E-10 2 143t-10 fNC 4.357E-08 1.474[-08 7.566E-99 3.597t=89 1.292E-89 6.497f-10 3.773f-10 2.479E-18 1.73er-te 1 28AE-88 9.927[-11

[

4.23 AE-te 3.433E-te 7 357[-09 3.498E-89 3.256F-89 6.23t[-18 3.669E-te 2.482E-te 1.690E-10 1 253F-!O 9.654E-Il ISE 5.269f-Se 1.782f-se 9 149[-09 4.350E-09 1.562[-09 7.74R[-15 4.562[-19 2 987[-10 2.le2E-te 1.55pt-10 3.200E-10 SE 1.789E-0 7 5.77 AE-ee 2 967t-ce 1 416[-08 5.566f-89 2.512[-89 1.479E-09 9.6A7[-14 6.816f-te 5.05tf-10 3.893[-10 SSC 1.56 3E -S T 5.2 A TE-te 2.714[-s e 1.2 90f-te 4.635E-49 2.299[-09 8.354E-09 8.e63E-10 6.237E-It 4.622E-18 3.562f-19 DIRECTION DISTANCES IN MILES FA0n Slif 5.00 7.58 10.00 15.00 28.80 25.es 30.00 35.00 40.P0 45.00 50.00 S

5.544f-la 2.463t=10 1.492[-10 7.543[-11 4.564E-11 3.06eE-St 2 193F-Il 1 646[-11 3.280[-11 1.023[-18 8.347[-12 SSJ 3.882E 10 1.689E-38 1.023[-10 5.172[-31 3.130f=11 2 099[-11 1.584E-It 1.129E-Il 4.780E-12 7.814E-12 5.725E-12 SJ 1.Attf-19 8.476E-Il 4.953E-18 2.583[-18 1.515f-Bl 1.0 3 6[-11 7.28 tf-12 5.466[-12 4.254[-12 3.395t-12 2.7 7 t E-8 2 WSW l.895[-10 4.864[-11 2.947[-11 1.489t-il 9.214f-12 6.044[-12 4.33tf-12 3.252E-12 2.528f-12 2 02s[-12 1.649E-12 W

l.856E-10 4.690E-11 2.041[-11 1 436E-Il 8.692E-12 5.82a[-12 4.176[-12 3.136E-12 2.43er-12 1.947E-12 1.590E-12 WNJ 1 884E-88 e.378E-11 5.078C-Il 2.563E-Il 1 553E-11 1.e4st-il 7.45 [-12 5.596E-12 4.353E-12 3.47&E-12 2.837E-12 Nd 4.324[-10 1.92t[-10 1.164[-18 5. Rett-il 3.568[-11 2.387[-11 8 710E-Il 3.284[-11 9.984[-12 7 976[-12 6. Stet-12 US NNW 4 076E-10 1.811E-18 1.097E-10 5.544[-13 3.356f-Sl 2.250E-Il I.612E-Il 1.281[-15 9.413[-12 7.519[-12 6.137[-12 l3 9

5.la5E-te 2.303E-18 1.395E-10 7.85?E-18 4.269E-Il 2.862E-Il 2.053[-11 1.548[-81 1.897E-11 9.564E-12 7.R07E-12 C)

NNE 2.977E-RO 1 322[=18 S.010E-11 4 049E-11 2.450E-11 1 643[-11 1.177[-11 8.840E-12 6.474E-12 5.491E-12 4.482f-12 N!

1.7420-10 7v562[-Il 4.5elt-11 2.315f-Il 1.4 elt-11 9.3 96E-12 6.733[-12 5.056E-12 3 93t[-12 3 140E-12 2.563E-12 EN!

7.88 7E -11 3.583[-11 2.122[-11 1.0 7 3 E-18 6. 492[-12 4.353[-12 3. I l9f-12 2.34 2[-12 1.821[-12 1.455[-12 1 1 A 7[-3 2 E

7.669f-11 3.407[=11 2.064f-11 1 043[-11 6.314[-12 4.233E-12 3.333[-12 2 27AC-12 1 771[-12 1.415f-12 1 155[-12 ESE 9.5 3 f f -11 4 23 7[-11 2.566[-11 1.297[-11 7.R5t[-12 5.264[-12 3.772[-12 2.b3PE-12 2 202[-12 8.759[-12 1.436t-12 SC 3.892E-18 te374C-10 S.322E-Il 4 206E-l! 2.546[-18 l.707E-fl 1 223f-ll 9.184E-12 7.141[-12 5.784[-12 4.656[-12 SSE 2.830f-lO 1.257[-18 7.614E-Il 3.849[-11 2.329f-ll I.562E-11 1.189f-ll 8.403[-12 6.534E-12 5.289t-12 4 260[-12 e........eee....e.een...

RELATIVE DEPOSill04 PER UNIT AREA IMe.-29 SV DOWNWIND SEtiOAS e.......eeeeee.....e...e SEGMENT SOUNDAAl[$ IN MIL [S dip [CTION

.5-1 1-2 2-3 3-4 4-5 5-10 18-20 20-3D 30-40 40-50 F40M Sil[

S 5.198[-08 1.065E-88 2.780E-89 1.2440-89 7.063E-te 2.716E-te 7.A57E-Il 3.114[-11 1 663E-11 1.0290-11 S$W 3.565[-88 7.303[-49 1 906[-09 8.562E-88 4.844[-13 3.863E-10 5.389f-11 2.136[-11 1 143f-11 7.060[-12 SW 3.726[-08 3.535[-09 9.229E-18 4.145[-18 2 345E-10 9.087[-11 2.609E-Il 5.034[-11 5.521[-12 3.487E-12 WSW I.027E-00 2.185t=09 5.490E-10 2.466[-10 1.395E-te 5.364[-18 1.552E-Il 6.153r-12 3 2R4f-12 2 033[-12 W

9.900E-69 2.02AE-09 5.294E-10 2.378f-1t 1 345E-Is 5.372[-18 1.496[-Il 5.93t[-12 3.167f=12 1 960E-12 WNW l.767[-88 3.619E-09 9.448[-10 4.243r-10 2.400E-10 9.23t[-11 2.670F-11 1.05Ar-Il 5.65?[-12 3.49k[-12 NW 4.054E-04 A.305E-09 2 168[-09 9.737E-18 5 50RE-la 2.llRF-18 6 12ef-ll 2.429[-11 1 297f-11 8.0280-12 NNW 3.822E-08 7.829f-89 2.044E-09 9.latt-10 9.193f-10 1.997E-30 5.7770-11 2 290E-Il 1.223[-13 7.56hE-12 N

4.862f=08 9.959[-89 2.600[-09 1.lsaf-09 6.606[-80 2.540f-IO 7.?49[-II 2 913E-St 1.555[-11 9.627[-12 NNE 2.795t-08 5.787E-09 1.493[-09 6.703[-18 3.792[-10 1.45RE-10 4.2890-11 3.672t-18 4.929E-12 5.527E-12 NF l.596f-08 3.270[-39 A.535F-le 3.833f-10 2.169f-lo 8.340E-il 2.413[-11 9.56?I-12 5.106E-12 3.161r-12 TN[

7.395E-09 1.515E-99 3.954E-10 f.776f-lb I.be5F-10 3.R64E-Il 1.Ilmf-il 4.430[-12 2.366[-12 9.464E-12 E

7.19tf-09 1 473E-09 3 845f-10 1.727E-lo 9.770E-Il 3.757E-Il 1.087f-II 4.30eE-12 2.30l[-12 1 424[-12

[$[

A.9 41[ = 09 1.R32f-09 4.7n2E-t e 2.148[-10 8.235E-lJ 4.672[-11 3 352f-Il 5.357f-12 2.861E-12 1.77tt-12 SE 2.9 0 0E -09 5.940E-09 1.551[-09 6.964[-10 3.940[-10 1.515E-88 4.3R3[-Il I.737E-Il 9.276F-12 5.742[-12

$$r 2.653I-09 5.435E-09 1.489E-09 6.372E-10 3.635f-lo 1.386E-10 4.010[-11 1.5R9[-ll R.48AE-12 5.253r-82

YFETS GROUNO LEVEL Cf LtatFS '

CEOCC0ffn FC7 opt 9 TERRAl2 CECIECUL4fl04

$*f CIFIC Pof %f t or icirEEST RFLEASE TYPE OF OlpECTION DISTANC[

I/O N/4 N/4 D/0 ID LOCAfl04 iMilrSS EMETERSS (SEC/CUU.PEftpl ISEC/ CUP.M[ffR3 (SEC/CUS.MffCRS (PER SG.MFTER) 90 DICAY 2.260 DAT DECAY 8.000 DAV Dftav UNDLELLIIR

_UNDLELLILD

___DLELLILQ A

SIT [ SOUNDARY S

4.R9 1930.

4 836F-06 4.Ilir-06 3 6440-C6 3.432[-pH A

SITE 90UN3ARY SSW 0 92 14n0.

4.4080-06 4.3RIC-06 3.aT3t-06 2.155E-?R A

SITE 80UNDAR' SW t.09 1750.

2.llti-96 2.3*4t-06 3.n33r-06 6.7670-ce A

S IT E P00ND AR Y WSW 0.94 1%IO.

2.163r-e6 2.147f-06 1 449E-P6 5.nn4E-n9 A

SITE BOUND AR Y W

0.93 150c.

1 95Rr-a6 1.=44C-06 1.7 tat-06 5.773[-39 A

SITE 30040ARV WWW R.96 194n.

2 474f-16 2.45PC-96 2.16e[a96 9.623E-99 A

SITE 900NDA4Y WW 9.72 1960.

1.063[-05 1.055F-05 9.459E-06 4.434E-03 4

SITE BOUNDARY NNW 0.62 IP00.

3 6060-15 1.598r-P5 1 444E-05 5.365t-e8 A

SITE HOUNDARV N

9.65 1850.

1.325[-9%

1.319E-05 1.lant-05 6.2R6E-!4 4

SlfE BOU904pV NNC 0.63 1050.

5 922r-16 5.907t-06 5.329[-06 3.851E=en A

SifE 8094DARY NC 0.64 3C34.

2.n000-26 2.794[-06 2 515r-06 2.131E=0m 4

S IT E POUND AR Y ENE 0.62 1000.

3.572[-06 1.567E-06 1.414t-06 1.038C-08.

A SITE BOUND AR Y E

0.63 9n9.

l.82MI-06 3.P22[-06 1 64 7[-C6 1.S390-08 A

SITE ROUNDARY

[SE 0.61 980.

1 972F-06 1.966E-06 1.777E-n6 1.291[=0A A

SITC 9004044Y SE 1.06 1700.

1 094[-86 1.19tt-06 9.536t-07 1.224E-PR A

S ITE SOUND AR Y SSE 0.93 1460.

1 4A6E-96 1.4plE-56 1 394E-06 1.669C-08 tr>

w t

Atmospheric Diffusion Estimates Elevated Releases January-March 1983 B122

IDP [LEVAi[3 STAC4 Ar[ RASE KO DfCAV, U20CPECTED

[03:ECTfD FOR OPCM TFrRAID RECIECULATION ANNUAL AVERAGE CHl/O R$[C/M[7EP CUS[Cl DISTARCE IN Mi(($

SICTOR 0.259 0.500 0 759 3.900 1.500 2.000 2.500 3.000 3.5 30 4.000 4 500 5

3.124[-97 3.*58[-07 3.4 4 Pf-0 7 2.26 4 r-0 7 I.2 45r-n7 m.0 4 7[-0 8 5.68 4[-08 4 2 5 4[-0p 3.3 28[-08 3.? 45f-04 3.113[-04 SSW 7.2 41[-0 A 1.134[-07 1 194[-07 1.033f-27 7.7450-Cp 5 954[-04 4.647[-08 4.53O[-BM 4.227[-04 3.534C=J4 3.0050-0R SW 3.21Rf-09 1.485[-18 4.325r-07 A.c71[-CA 1.c45[-07 6.*67f-08 4.836r-04 3.565[~3A 2.7507-98 2 196[-08 3.8040-0R WSW 2.493r-16 3.482[-10 1.7 tit-04 4.R40[-04 7.a320-0A 4.R95[-08 3.325[-en 2.41n[-On 1.A4ef-18 1.464[-08 1.200[-0P W

1.199[-08 1 148[-07 2 5120-07 2 553[-07 1.450[-07 1 0 76[-07 7.0 44 r-0 8 4.992[-08 3.742f-08 2.924[-08 2.359[-08 W4W 4.668[-09 3.713[-04 1.604t-07 2.440[-97 2.367f-07 1.362[-07 A.H61[-08 6.411[-0p 4 874[-08 3.7R4[-08 3.n37f-0R 9W 4.n95[-li 3.P0l[-06 1. A94[-0 7 3.5 0l[-0 7 3.949[-0 7 2.2 f 3[-0 7 1.411[-07 9.996[-08 7.507[-08 5.824[-08 4.675[-08 N4W 4.766[-09 3 120f-04 5.342[-0A P.P97[-en 1.225[-07 1.129[-07 9.786[-08 8.217C-On 6.*I9[-08 5.409[-d8 4.35e[-04 N

3.6430-08 5.303[-08 7.489[-08 8 256[-08 4.129[-0R 7.100[-OR 5.970[-08 4.929[-04 4.832[-04 3.519E-1R 3.04t[-0R NNE A.942[-09 3 492[-08 4.R14[-SR 5 391[-08 5 427f-0R 4.661[-08 3.P69[-08 3.21*[-08 2.782[-08 2 31P[-08 2.609[-98 NE 2.084f-10 1.235[-0A 2.882[-04 3.578[-98 3.694[-04 3.8 7AE-OR 2.63R[-04 2 194[-0R 1 448[-08 1.579[-04 1.369[-0A

[9[

3 52*[-09 9.759[-09 1.5390-08 1.61t[-08 1.MIPC-88 1.286[-08 1.n 65[-0 8 8.85 A[-0 9 7.4 65[-09 6.3 Rl[=0* 5 53 0 E-09

[

1.473C-04 1.925[-08 1.330[-0A 9.041[-09 7.0lPC-09 6.064[-09 5.261[-09 4.580E-39 4.014f-09 3.557[=09 3.181[-09

[1[

6.9 R l f-09 2.116[-08 2.lR6[-08 2 839[-04 2.1270-08 1 881[-08 1.600[-08 1.356[-08 1.159F-08 1.002[-OR A.769[-09 SE 7.059E-88 1 025[-07 1.2730-07 1.134[-07 p.pn5[-en 6.750E-08 5.190[-08 4.086[=0A 3.297[-S8 2.720E-08 2 286[-08 SSE 2 878[-97 2.271[-07 1.807[-07 1.291[-07 8.539f-08 6.107[-0R 4.570[-0n 3.549[-0A 2.843[-0R 3.156C-04 3.379[-0a ANNUAL AVERAGE CHl/0 ISIC/p[7[R CURED)

DISTANCE IN MILES BEAtlNC 5.000 7.5G0 10.n00 15 100 20.300 25.000 30.000 35.000 40.000 45.000 50.000 S

2.71R[-08 1.892[-OR 1.238[-08 7.235[-09 5.30C[-09 4 140[-09 3.273[-09 2.692[-09 2.294[-09 1.995[-n? 1.746F-09

$$W 2.63ar-08 1 550E-04 9.749f-09 5.363[-C9 3.574[-04 2.5*3[-09 1.994[-n9 1 598[-09 1 32t[-09 1.117[-09 9.617f-10 SW 3 58 0[-c8 9.397f-09 5 963r-09 3.305F-99 2.205[-09 1.60RE-09 1.242[-09 9.939[-10 A.20l[-le 6.925C-10 5.955[-10 WSW l.030[-0A 5.R29[-09 3.P 3 8 [-0 9 2.17 4 [-09 1.433r-0* 1.040E-0* 8.005[-10 6.422[-10 5.310[-10 4.491[-10 3.868[-10 W

l.953[-0R 9 912[-09 6.446r-09 3.652[-n9 2.435[-G* l.756[-9* 1 346[-09 1 075[-09 8.859C-10 7.471[-10 6.436r-te WNW 2.515[-0 A 1.279[-08 8.133[-09 4.506[-19 2.955[-09 2.13t[-09 1.634[-09 1.305[-09 1.073[-09 9.037[-19 7.753[-10 9W 3.R77[-en 1.993[-08 1.286[-08 7.2R9[-09 4.Pr6[-09 3.487[-09 2.711[-09 2 180[-09 3 943[-09 1.526[-09 1.315[-09 N4W 3.656[-08 1.947[-04 1.246[-04 7.012[-09 4.643[-09 3.431[-09 2.673[-09 2.16ME-09 1.813[-09 1.543[-09 1.335[-09

[3 N

2.667[-08 1.636[=38 1.308f*08 4.794[-09 7.690r-09 6 9 70E-09 4.738[-09 3.834[-09 3.193f-09 2.71R[-09 2.355C-09 J

NNE 2.132[-08 2.274[-04 1.455[-On P.20f[-09 5 483[-09 4.072[-09 3.126[-09 2.528[-09 2.105[-09 1.792[-09 1.552[-09 O'

4[

1.447[-0A 1.725[-98 1.11t[-08 6.326[-09 4 263[-09 3.346[-09 2.4R8[-09 2.035[-09 1.704[-09 1.455[-09 1.263[-09

[ME 5.6R2[-09 A.009[-19 5.343[-09 3.lR0[-09 2.2060-09 3.663[-09 1.409[-09 1 202[-09 1 013[-09 8.75Ar-10 7.633[-10

[

3.644[-09 6. Pelt-09 4 625f-09 2.775r-n9 1.932r-09 1.461[-09 1.163r-09 9 639[-10 n.45tf-10 7.482[-10 6.549[-13 ISE 9.10l[-09 1.05t[-08 6.972I-09 4.103f-09 2.PIAC-09 2.107[-09 1.662[-19 1.36t[-09 1.144[-09 9.82RE-10 A.578[-10 SE I.9550-44 1.090[-PA 7.574[-09 4.627[-09 3.153[-09 2.33t[-0* 1 42t[-09 1.475[-09 1 219[-09 1 031[-09 8 474[-10 S$[

2.863[-08 1 60l[-OR 1.022I-DA 5.767r-09 3.P84[-0* 2.A66[-09 2.241[-09 1.822[-09 1.525[-39 1.304[-09 1.134[-09 CHl/0 E S[C /ME T[R CUREDI FOR [ ACH SECPENT SIGMENT POUNDApl[S IN MIEES nt R F[7 8 0N

.5-1 1-2 2-3 3-4 4-5 5-10 10-20 20-30 30-40 40-51 FROM SIT [

S 3.135f=17 1.276f=07 5.7440-98 3.547[-DA 2.994[-DA 1.785[-68 7.518[-09 4 103[-09 2.70m[-09 1.993r-14 SSW l.095[-07 7.45p[-08 4.9500-08 4.049[-08 3.025[-04 1.536F-0A 5.541[-09 2.614f-09 1.606[-e9 1 120[-ia SW 5.359f-08 A.505f-08 4.846F-08 2 772[-08 1 937r-C8 9.293[ 19 3.406r-09 1 621[-09 9.985[-13 6.944f-la WSW 2.729[-18 5.895[-08 3.3pl[=0A 1.R67[-08 l Slff-na 5.*35f-r9 2.213f=09 1 949[-99 6.450[-10 4.533[-10 W

2.227[-17 1 662[-07 7.214[-08 3.788r-38

..?76[-OR I.053r-wP 3.732r-09 1 773[-09 1 980[-09 7.498t-10 W4W l.7030-07 1.937[-07 9.15PE-CA 4.R9P[-08 3.065F-18 1.347[-09 4.6230-09 2.152[-09 1.310E-0*

9.163r-13 9W 2 2720-07 3.073[-07 1.45Ar-07 7.577[-J8 4.720[-08 2.04RE-04 7 424[-09 3.52R[-09 2.188[-09 3.530[-09 N1W 6.42RE-08 1.10Pf-07 9.%5*[-08 6.713r-0A 4.406F-PR 2.015f-OR 7.187[-19 3.462[-09 2.1770-P9 1 546[-09 N

7.944f-OR 7.700E-OR 5.H55E-PR 4 126F-08 3.?440-08 1.719t-OR 9.5 PRE-09 5.469[=09 3.R4AE-99 2 724[-09 h4[

4.777f-19 5 079[-UP 3.P700-08 2.fc7[-38 2 346[-08 1.47PE-1R p.494[ a9 4.053[-09 2 53RE-C9 1.796[-19 1[

2.825[-34 9.439[-08 2.6058-04 1.R450-0R I.*60[-OP 1.391[-38 6.473[-69 3.lAl[-01 2.J3RE-09 1.45R[-d9 F1[

1 446[-38 1.436r-06 1 152I-08 7.45PE-09 5.H3RI-09 6.3p7[-9*

3.??Rf=r9 1.7p6[-09 1.189[-0*

8.722[-10

[

1.273[-iR 7.nelf-09 5.20i[-09 4.003[-94 3.464r-n9 5.159[-09 2.Rl2[-J9 1 467[-09 9.754[-10 7.424[-10 ES[

?.1490-08 2.C30f*0P 1.577[-PP 3 156F-On 9.963[-t9 8.625[-Pa 4.169[-09 2.199f=39 1.364[-09

  • .#44[-IP S[

1.156f-17 P.4Rlr-SM 5.36%C-9n 3.333[-1R 2.29?[-up 1.134f-0P 4.625[-19 2

44"f-1*

1.476[-09 3 3310-39 SSI 1.693f-17 R.4 2*f -E R 4.573F-0R 3.16*f-08 9.l??r-OR l.h?*[-0R 5.920r-09 2.R R 7[ -09 1.82pF=09 3.ipi[*f*

EAP ELE vaf EL ST ACE AtttASE 2.260 OAV DrCaf, UPJDEPLtfED C0ARECTED rnA OPEN TEAAAIN RECI ACUL Afl0N ANNUAL AVERAGE CHI /O ISEC/MriEA CU8Eri DISTANCE IN PILES SECTOA 9 25C 0.500 0.750 1.000 3.500 2.000 2.50u 3.000 3.500 4.C00 4.5eG s

.3.124r-07 3.956E-07 3.446E-07 2 262E-07 1.243E-07 A.02PE-0A 5.667F-e4 4.24st-ce 3.383[-OA 3 18AE.On 3.093E-0A SSW 7.239f-08 1.333r-07 1.193r-0 7 1.00 l E-17 7.729t-o n 5.94 3E-0R 4.63tE-04 4 530[-CA 4 2CSE-0A 3.513t-CA 2.984E-rA SW 3.2 8 7[-09 1 484 E-08 4.320f-PA 8.059E-18 1.rp2E-07 6.*45E-08 4.Al7E-0A 3.54AE-0A 2.73?C-08 2.IA3E-en 1.79tr-08 WiW 2.4 9 2 E -16 3 410E-IU I.709t-08 4.832[-0A 7.*12C-CA 4.87*[-08 3.33t[-04 2.496E=0A 1.834r-0A 1.458E-9A 1.19tE-9A W

l.19Pr-08 1 14 7E-07 2.509E-0 7 2.548E -0 7 1.e 45E-97 1.0 720-0 7 7.013r-08 4.965E-08 3.719E-08 2.904E-04 2.341[-0A WNW 4.658E-09 3 710E-na 1.602E-07 2.4 39E-0 7 2.362[-97 1.35A E-37 8.P 2PE-08 6 382E-08 4.848[-08 3.76ff-98 3 017E-08 MW 4.943t-10 3.79*[-OR I.892E-07 3.497r-07 3.942r-07 2.39AE-07 1.407F-07 9.962E-CA 7.477E-08 5.7970-P8 4.651E-08 N1W 4.764E-08 3.ll A E-Da 5.33 7E-0 A A. A8 7E-9A 1.222E-07 1 126E-17 9.756E-C8 A.38AE-04 6.A9CF-08 5 374E-08 4 334E-06 N

1.643r-09 5 300E-08 7.483E-0A A.247E-0A A.115E-08 7.OR3E-08 5.953E-98 4.912C-0A 4 1150-04 3.503[-14 3.0260-0A NME 8.*400-09 3.490E-0A 4.nler-0A 5.385E-DA 5.4tFE-OA 4.650E-SA 3.P57E-98 3.207E-08 2.700r-08 2.306E-08 1.998L-On 40 2 084E-10 1.235E-0A 2.P79E-FA 3.573E-PR 3.FA6r-OP 3.17a[-0A 2.629E-CA 2.lA5E-0A 1.839E-08 1 573[-08 4.36cE-os ENE 1.52Ar-09 9.752E-09 1.537E-0A 1 6P90-9A 1.%34E-04 1.281E-08 1.060E-08 8.AllE-09 7.4190-09 6.336E-99 5.486t-09

[

3.473t-0A 1 924E-DA 1.32AE-04 9 930E-09 6.997E-09 6.0 4 A E-09 5.2 4 4 0-0 9 4.56 2E-09 3.999E-09 3.5 38E-0 9 3.161E-0

  • ESE 6.079E-09 2.114[-08 2.lA4E-0A 2.135[-0R 2.32tE-0A 1.874E-0A 1.593E-fA 1.349E-08 1.152E-Oh 9 952[-09 8 701E-09 SE 7.05pf-04 1.024E-07 1.272[-07 3.333E-07 A.R62[-08 6.731E-0A 5.171E-0A 4 06AE-08 3.280E-08 2 703E-08 2.271t-OP SSE 2.A77[-p? 2.270E-07 1.8060-07 1.290[-07 A.524E-08 6.092E-0A 4.556[-08 3.536[-0A 2.A33[-08 3 140E-38 3.357E-0A ANNUAL AVFAAGE CHI /O ISEC/MITEA CURFD)

DISTANCE IN MILES BEAtlNG 5.000 7.5CO 10.000 15.000 20.One 25.000 30 000 35.000 40.000 45.000 50.000 2.699E-88 1.R70E-08 1.21A[-08 7.06tE-39 5 12p[-09 3.972C-09 3.114r-09 2.540E-09 2.150E-09 1.853r-09 5.606E-09 SSW 2 61AE-0A 1.532E-08 9 599E-09 5.239E-09 3.463[-09 2.494E-09 1.904[-09 1.514 E-0 9 1.2 4 2E-09 1.0 4 2E-09 8.9 0 7E-10 SW 1.5680-0A 9.287E-09 5.A6AE-09 3 229E-09 2.137F=09 1.5e4E-09 1. LASE-t9 9.410E-10 7.704t-10 6.455E-10 5.508E-10 WSW 3.021E-08 5.754E-09 3.764E-09 2.!!7E-04 1.3R4E-09 9.948E-10 7.593E-15 6.03ME-10 4.949E-10 4 199E-10 3.542E-10 W

1.936E-05 9.782[-09 6.333E-09 3.556E-09 2.35SE-09 1.680E-09 1.276E-09 1 01tE-09 8.252C-te 6 897E-10 5.872t-10 W4W 2.496E-08 1.264E-0A A.0 tit-09 4.405E-89 2.866E-99 2.052E-09 1.561E-09 1.237E-09 1.010E-09 8 4 39E-l O 7.184[-10 MW 3.A55[-08 1.*76E-#A 1.27tE-08 7 15?C-09 4.692E-09 3.343E-09 2 615E-09 2.ep9E-09 1 717E-09 1 444E-09 1.237[-09 N1W 3.634E-SA 1.929E-0A 1.233r-08 6.A8AE-09 4.573E-09 3.330E-09 2.5ADE-09 2.079E-09 1.729E-09 1 463[

a*

1.258E-09 N

2 652E-04 1.622[-08 1.293E-08 9.62SE-09 7 533t-09 5.897E-09 4.576E-09 3.682[-09 3.04Ar-09 2.580E-09 2.222E-09 go

>4 NME 2.119[-08 2.253[-08 1.437E-08 8 04AE-09 5.34pC-09 3.89AE-09 3.0llE-09 2.42tt-09 2.003[-09 1.695E-09 1.459[-0*

g[

MC I.437E-08 1.705[=0p I.0 94E-p A 6 182E=09 4 134E-09 3.028E-09 2.375E-09 8.928E-09 1.602[-09 1 356E-09 1.169E-09 F4E 5.632r-09 7.893t-09 5 240E-09 3.0A7E-09 2.120E-09 1.5A2E-09 1.327E-09 1.120E-09 9 33RE-10 7.949E-10 6.A78[-10 E

3.619E-39 6.795E-09 4.548t-09 2.705C-09 1.86AE-09 1.399t-09 1.10 4[-0 9 9.0 75E-I n 7.8 A 3t -10 6.916E-l O 6.0 0lt-10 ESE 9 024E-09 1.03AE-0A 6.A5t[-09 3 996E-09 2 720E-S? 2.086E-09 1.576E-09 3.279E-09 1.066E-09 9.077F-10 7.853E-10 SE 3.940E-08 3.078E-08 7.45AE-09 4.520E-09 3.c52E-0* 2.24tE-09 1.737[-09 1.396E-99 1 145E-09 a.605E-10 4.206t-19 S$[

2.843E-08 1.583E-08 1.907E-08 5.634E=09 3.764E-09 2 755E-c9 2 137E-09 1.724E-09 1.433r-09 1 214E-09 1 048t-09 CHI /O ISEC/ METE A CURrni r0A F ACH SEGMTNT SEGMENT ROUNDAAIES IN MILES DIAECfl0N

.5-1 1-2 2-3 3-4 4-5 5-10 10-20 20-30 30-41 40-54 FROM SITE S

3.013r-07 1.274E-07 5.726E-en 3.530r-0A 2.975E-PA 1.764[-38 7.34SE-09 3.937E-09 2.5550-09 1.A49E-ng SSW l.095E-37 7.443F-08 4.a32[-08 4.02AE-08 3.005E-08 1.5190-0A 5.41AE-09 2.516r-09 1.322[-09 1 045E-09 SW 5 353E-08 M.485E-Op 4.A77[=08 2 757E-08 1.824[-06 9.388[-c9 3.330E-09 1.5590-39 9.456E-13 6.475E-IP WSW 2.724E-08 5 879E-04 3.367E-0A 1.856E-0A 1.207E-08 5.86tE-09 2.157E-99 1.004[-19 6.9670-10 4 161E-80 W

2.224r-07 I.658F-07 7.183t-0A 3.7650-0A 2.35Ar-98 3.9 3 AE-f. A 3.637E-09 1.697E-19 1.016t-99 6 919F-10 W4W 3.70l[=07 1.933E-07 9.ll7E-SM 4.R720-08 3.04?E-en 1.332r-0A 4.522C-09 2.073E-09 1.243C-09 A.466F-14 NW 2 269E-17 3.C 6 FE-0 7 1 4540-07 7.547E-tm 4.696C-1A 2.0 ROC-08 7.296E-09 3 425E-09 2.098[-09 1 44AE-99 NNW 6.422[=)A 1.195E-07 9.%30E-GA 6.6m3[-on 4.3n3r na 1.99Ar-eg 7.0 6 3 F-19 3.361[-t*

2.rA9r-09 1 466E

'9 N

7.43RE-08 7.6A6t-9A 5.838[-0A 4.IIPE-09 3.029F-JN 1.7D4E-DA 9.420E-09 5.799E-G9 3.696t a9 2 5R6E-09 NME 4 772E-19 5 069r-AA 1.P3nr-DR 2.645F "A

2.1340-GR 1.P60r-08 8 253E=99 3.910E-19 2.4390-0*

1 699E-ma ME 2.A22E-1A 3.433r-08 2.596E-CA 1.A36E-0P 1.451E-GA 1.474C-0A 6 330E-09 3.062E-09 1.931E-09 1.3%0E-f9 F1E I.444r-OS 1.4321-3R 1.9e7F-CA 7.4045-39 5.792E-09 6.232r-n9 3.136[-(9 1.6230-09 1.10AC-09 7 9640-10 E

I.272E-48 7.n27F-09

5. LASE-04 3.9R4[-fa 3.442E=(9 5 090E-09 2.742E
  • 9 1.4360

'9 9.In3E-10 6.A64E-IP ESE 2 147E-1A 2.615F-na 1 57pr-se 1.349r-SP 9.19tt a9 A.599E 19 4. g,63 r - 0 9 2.92mr-19 1.2A3r-e9 9.194E-If i

SE I.1550-17 P.463r.-0P 5.146r-Op 3.2PSE-CA 2.2 76r-0 A 1.122E-Pm 4.520t-r9

?.T56E-C9 1.398[-69 9.633r-19 l

SST DoMM -p U DnO M -QO OcS&Qft-JEL S A9 m eFn 4X$nnno

ERP [1 Eve 7En STAC4 RFLEASE R.003 DST OFC4Ye Df f'L EIE D CO2EE!7ED FC3,0Fl4 Tr:G4IO CECl2CULATICO 84404L AWrRAGE CHl/0 ISEC/ PETER CUBEDI

' D is 74 NC E IN MILES SEtt04 0.255 0.500 0.758 3.888 1.500 2.000 2.500 3.000 3.503 4.000 4 500

's 3.12 4 E-0 7 3.*22 f - 0 7 3.36 A r-8 7 2.19 4 E -4 7 1.195r-0 7 7.6 71 E-0 A 5.3 4 0r-48 4.013 C-98 3.le5E-en 2.985E-0A 2.*00r-un SSW 7.2 4 0E -S A 1 124E-07 1.170E-0 7 9. Al l E-DF 7.556E-OP 5. 7 79E-O n 4.4 75 L-08 4.3410-94 4.032E-SA 3.34*E-04 2.83tE-On SW 3.21 P[ -0 9 1.4 72 F-8 4 4.287E-GA 8.033C-OA l.069E-0 7 6.7 Par 0 4 4.667F-08 3.412E-08 2.613E-08 2 874[-OA 1.693E-04 WIW 2.493E-16 3.482E-10 1.716[-04 4.83?E-08 7.p3tE-04 4 7P*E-SA 3.229t-04 2.334E-64 1.775[-89 1.492C-09 1.141E-BA W

l.l*90-99 1.13tE=07 2.4 7 7E-0 7 2.502[-87 1.793r-07 1.0 29F-0 7 6.66er-88 4.6A3E-04 3.442[-tm 2.70tE-8A 2.165r-88 W4W 4.66 91 -09 3.68 7E-04 3.%94E-07 2.414E-47 2.3Per-07 1.318E-pF p.43tt-88 6.843E-tm 4.556F-08 3.5C7E-CB 2 792E-08 MW 4.4440-10 3 76Ar-rA 1.A76F-07 3.465[-07 3.P600-07 2.123[-07 3.343E-07 9.423[-0A 7.038[-88 5.49e[-r4 4.300E-98 41W 4.765r-0A 3.992E-04 5.2*lr-84 p.n5?E-0A 1.21eE-07 1.tr7E-87 9.554[-94 7.989E-on 6.786E-08 5 264E-On-4 174E-rA 9

1.64 3E -OR 5.256E-98 7.376T-94 R.15&E-88 8.OR3E-08 6.94AE-er 5.407E-ce 4.766[-On 3 974E-en 3.36AE-04 2 89mE-04.

NME 4.*42[-09 3.461E-P8 4.743E-r8 5.33SE-08 5.347E-On 4.563E-08 3.763E-08 3.Il2E-0A 2.feir-se 2.217E-08 1.9tet-04 NC 2.084E-18 1.22%E-Dn 2.A42E-en 3.536E-Oh 3.636[-On 3.109E-04 2.563[-04 2.119[-08 t.775E-BA 1.50*E-84 1.30lf-en E4[

I.529r-89 9.67tE-09 1.532C-08 3.5ASE-68 I.4p9E-08 1.254E-08 1.032[-08 8.54 3[-09 7.8 63[-89 6.093E-09 5.257F-09 E

I.473E-OP 1.987E-04 1.30lf-04 8.P33E-e9 6.461E-0* 5.935 E-09 5.1360-0 9 4.462[-09 3.907[-09 3.4 54E-09 3.a A4r-e9 FSC 6.54 00 -09 2.996E-08 2.147L-04 2.187E-08 2.093E-in 1.e41E-08 1.558E-n8 1.314E-e8 1.llAE-es 9.621E-09 4.387E-09 SE 7 059E-0A 1.016E-87 3.24pt-07 1.110E-07 8.659E-P8 6.537E-OS 4.9860-08 3.894f-08 3.!!6[-08 2.55tE-nR 2.12AE-On SSE 2 47AE-47 2.25tt-87 1.76PE-07 1.258[-07 8 279E-08 5.884[-08 4.375t-08 3.369E-04 2.679E-08 2.969E-On 3.lA5[-03 ANNUAL AvrR4GE CHl/9 ISEC/RETER CUBEPS DISTANCE IN MILES PLA41NG 5.000 7.500 18.808 15.008 2C.900 25.ee0 31.000 35.000 48.000 45.000 58.308 l

S 2.523[-04 1.73pE-04 1.103E-88 6.062E-09 4 154E-09 3 95*[=09 2.304E-09 1.A13E-09 1.494E-49 1.257[-0* 1.069r-n9 1

SSW

?.4 7 3E -0 8 1.415 E-0 A A.62 0E-8 9 4.4 74 0-0? 2.816[-09 1.96tE-09 1.454E-n9 1 12 7E-89 9.0 30E-10 7.423 E-10 6 220E-l o SW l.47PE-04 A.575E-89 5.26PE-89 2.753E-n9 3.725E-09 1.194E-09 8 443r-IS 6 872E-10 5.496E-lO 4 50pE-10 3.772r-10 Wiw 9.762C-09 5.376E-09 3.420L-09 1.83AC-0* 1.156r-89 8.060E-10 5 992[-18 4.657E-10 3.740E-18 3.078E-10 2.584E-10 W

l.7pFE-SA 8.793[-99 5 506E-09 2.997E-09 1.P97[-09 3.333[-09 9.697F-10 7.495E-10 5.988E-la 4 90AE-In 4.lger-lo W4W 2 294E-99 1.125E-94 6.929E-99 3.620E-09 2 243r-09 1.543E-09 1 13p[-09 4.78DE-10 6 986E-10 5.739r.=tc 4.771E-10 03 MW 3 54PF-04 1.760E-18 1 131 E-0 8 5.90 l t-09 3.696E-09 2.566E-09 1.923E-09 3 496E-49 1 20e[-09 9.A69E-10 A.2ADE-10

'J N1W 3.4 R er -04 1.7?4r-04 1.310E-08 5.A40E-09 3 620E-09 2.490E-09 1.R4tE-09 1.4340-09 1.160E-09 9.5A'[-10 8 054E-10 N

2 532E-04 1.529t-n4 1.237E-08 9.043[-09 6 9690-09 5.26tE-09 3.943r-g9 3.136E-09 2.546E-09 2.118[-09 1.795L-0*

NME 2 931E-08 2.157E-08 1 334E-08 7.094E-n9 4 512C-09 3.37tE-0* 2.374[-P9 1.857E-0* 1 50P[-09 1 241E=39 3.846E-09 ME 1.577r-94 1.641E-SA 1 023r-0P %.470E-09 3.478[-09 2.443C-09 1.45AE-09 1.472E-89 1.196E-09 9 935E-te A.ecAt-lo f4E 5 400E-09 7.6 Alt-09 4.95AC-09 2.753E-09 1 764t-09 1.243E-19 9 932E-18 p.059[-IP 6.570r-te 5.4 Alt-19 4 656E-11 E

3.543r-99 6.7t&E-49 4 35AE-99 2.427E-09 1.558E-09 3.p P9E-09 8 3 35[-10 6.370E-10 5 29 At-t e 4.4 77E-1C 3 769E-10 ESE p.785E-09 1 009E-r4 6.4 72E-09 3.559E-r9 2.262E-09 1 584[-99 1 188[-09 9 167E-In 7 353r-19 6.539E-10 5.057E-10

$[

1. A t it -49 9.77 7 f-09 6 636[-09 3.933r-09 2.582f-P9 1.P63E-09 1 425[-09 1.12 AE-09 9.096[-10 7.519E-10 6 333E-10 SSE 2 682E-08 1 454 E-on a.953E-09 4.733E-09 2.*90E-09 2.0 89[-09 1 556F-09 1.218E-89 9.7250-19 8.007E-10 6 723[-11 EHl/O ISEC/ METER CUSE05 FOR EACH SESMfNT S EGME NT POUND AN IE S IN MILES DIREETION

.%-1 1-2 2-3 3-4 4-5 5-10 10-20 29-30 38-40 to-5n FROM Siff S

2.9690-07 1.22 7F-0 7 5.439[-DA 3.3150-04 2.786E-C8 1.630E-OR

-6.318E-09 3.049F-99 1.832E-09 1.257E-04 S5W 1.0 76 E -17 7 267E-OR 4.7691-08 3.860F-08 2.A52r-r8 1.404E-08 4.65pt-09 1.986F-C9 1.135[-09 7.453E-10 i

SW 5.3?6t-08 m.364r-88 4 73tE-09 2.636E-08 3.726t-Sp n.4A3[-f9 2.mS4[-09 1.253E-09 6.921[-10 4.52P[-10 W*W 2.725t-98 5.pl3E-04 3.287E-08 3.793r-08 1.157t-PR 5.4Al[-p*

1. Raft-99 A.167E-10 4.689[-10 3.098[-10 W

2 189[-37 1.610E-07 6.p40E-08 3.528t-98 2.lARE-OP 9.3690-0*

3.0A40-09 1.332E-09 7.550E-18 4.931r-to W1W I.6960-07 1.pA*r-07 A.722E-94 4 5mif-06 2.Al9E-08 1.193[-94 3.742[-89 1.567E-99 8.844E-la 5.746E-10 MW 2.2 49 F -17 3.009F=07 1.391E-97 7.0A9r-PR 4 344r-08 1.862r-OP 6.C56E-P9 2.610E-09 I.50SE-nq 9.931E-10 N1W 6.395[-38 1.n pr-07 9.33tE-en 6.500f-08 4.222E-OP 1.865E-04 6.f22E-09 2.532E-09 1.446E-09 9.634[-10 M

7.2%2[-OP 7.56PE-08 5.69bt-en 3.969r-08 2.902[-CM 1.615E-GA A.m2at-39 5.2c5[-99 3.1%3E-C9 2.129E-09 NNE 4.Fl9E-GA 4.995E-0A 3.716[=0A 2.693t-an 2.047[-18 1.763E-08 7.333E-09 3.250E-09 1.86*E-09 1.245t-n9 ME 2 793E-94 3.3M0E-04 2.5180-04 3.772[-04 I.19tt-08

1. 3 D 7E-0 A 5.63*E-99 2.4mSE-99 1.4 7 7E-09 9.97tE-10 EME l.425[=99 1.406t-08 1.PPCI-08 7 150E-09 5.558t-n9 5.9640-n9 2.803[-89 1 2Alr-09 A.92tE-10 5.49ME-10

[

1.254r-OR 6.986t-99 5.079[=P9 3.P93E-19 3.364I-19 4.964r-0*

2.466t-19 1.In2r-f*

6.466E-10 9.45ME-te ESE 2 11Rf-9m 1.97 4F =p A 1 336[*DP l.Il4f=08 A.A79E-09 A.173E-39 3.630E-no 1.613[-99 9.??6E-l?

6.P64r-13 SE 1.115E-17 A.259f-en 4.9630-0A 3.123r-0p 2.134F-9A 1.n221

'N 3 9260-19 1.MMer-09 1 13 0E-0 *'

F.54FL-ID Sit 1.6411-97 P.1701-04 4.373f-On 2.9R6t-CA 2.945f-1P 1.47ar-PR 4.Magg-p9 2.1160

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DIDFETION DISTANCTS IN MIL ($

f409 SITE S.25 0.50 0.75 1 80 1.%3 2.J3 2.%L 1.00 3.5e 4.A8 4.58 '

S 4.392f-04 3.3341-0A 2 122f-SA 1 154r-04 4.569r-a9 2.3560-04 1.478[-09 1.0lat-09 7 454E-10 5 87eE-t e 4.997f-It MSW l.222f-08 9.355f-09 7 085f-99 4.395r-[9 l.44*f-39 1 142E-09 7.5 38r-5 0 5 346E-lp 4.752r-t? 3.598t-10 2.812F-lO SW 3.364E-09 3.37tE-69 1.326f-99 l.106f-69 1.146F-09 6.2 0 B E -I I-3.929F-13 2.594E-11 1.A72E-19 1.415E-19 1.107E-Ik vtJ 2.69%t-11 1.687f-13 3.443F-10 7.55Al-lo 4.416t-10 2. 4 6 3 E -10 1.4ser-l* 1.00pE-10 7.275[-18 5.49PE-il 4.39t f-Il J

2.2700-49 6.08A0-09 4. Al p t-0 9 2 913t -19 3.35tE-09 7.22tf-10 4.429[-13 2.9n6E-10 2.147E-18 1.6ter-IO l.26'[-13 WNJ 1.2 3 3E -64 1.46pr=09 5.673f-09 4 137E-49 2.527E-09 1.270E-49 7.*90r-10 4.906E-19 3.5 3 t E -10 2.616F -10 2. 0 3 t f -13 NJ 4.347[-09 3.932E-09 4.2 Ant-09 7.72pt-09 4.86FE-09 2.412E-09 8 481E-09 9.172f-10 6.425t-10 4.762[-16 3 697E-St NNd 2.852 E -89 2.57 4 E-99 2.56 3f-0 9 1.90e[-09 3 903[-09 3.s27E-09 6.3 35r-13 5.89 7E-13 3 6650-10 2 813E-14 2 279E-Id 9

5.49er-89 4.788[-09 4.63&E-t9 3.535E-89 1.c60E-h9 1.3 7 7[-49 A.0 47E-10 5.058E-10 4.406E-13 3 4 t er-18' 2.70EE-13 NNI 3.83st-09 2.839E-89 2.A36r-89 2.201E-99 1.175E-09 7.473E-10 5.847E-10 3.733[-I9 2 809[-10 2 175F-te 1.722r-10 NE 1.996f-89 1 762E-09 l.789f-89 1 392[-09 6.857E-l b 4.34tE-te 2.9A2E-18 2.160E-18 1.625E-10 1.25Af-tp 9.957F-ll thE A.452f-18 7.200E-10 6.367E-10 4.5eit-le 2.3taE-10 1.445E-lo 9.847E-Il 7.103E-11 5.338T-il 4 122E-Il 3.264[-91 E

3.Il8E-A9 A.474E-19 6.375E-10 3.927f-10 1.724E-t e 1 9 09t-R O 6.651E-11 4.712[-11 3.563E-11 2.699E-81 2.136E-11 ISE I.127E-09 9.495r-Is A.549E-10 6.l?9E-10 3.15tr-10 1.953E-10 1.331t=10 9.6t&E-11 7.21t[-11 5 576[-11 4.4150-31 i

SE 1.349E-te 1 066E-se s.123r-09 5.06er-a9 2.255r-09 8.329E-s9 a.Ta6E-10 6 236E-t e 4.642E-t o 3.577t-8 3 2.s32r-t 3

$5E 2.792[-P8 2.067E-08 1.454f-98 8.306f-09 3.349E-09 1 875E-09 1 2 0 3r-49 A.399E-10 6.197I-10 5.4 4 0E-10 4.4 3t f -10 DIPECTION DISTANCES IN MILES i

F ADM SI TE 5.98 7.50 10.00 55.00 20.00 25.00 38.00 35.98 40.00 45.00 50.60 4.031F-10 2.029C-10 1.279E-10 7.1stF-It 4.701E-Il 3.567t-il 2.55e[-11 1.922C-Il 1.5eAE-It 1.204E-11 9.23t[-12 SSW 2 265E-10 1.lT6E-10 7.379E-Il 4.00&E-fl 2.982E-Il 2.802E-fl 3.586E-38 1.13tE-11 A.792[-12 7.823[-12 5.733E-12 l

SW A.982E-fl 5.302E-Il 3.449E-11 1.983E-Il 3.199E-Il 9.8 75E-12 6.9 5 t t-12 5 8 90[-12 4.0 35 f -12 3.2 2 3E-12 2.6 3 t E-12 W%d 3.626E-Il 2.579E-Il I.742E-11 1.142f-St'6.912f-12 4.634E-12 3.328E-12 2.493[-12 1 939t-12 1 549E-12 1.264F-12 J

5.015E-IS 4,557f=11 3.437E-Il 1.86tE-11 1.467E-11 9. 8 35 E -12 7.84 8E-12 5.2 92E-12 4.ll5 f-12 3.2 87t-12 2.683 E-12 WNJ 1 652E -18 A.82SE-11 5.063E-11 2.724I-11 1.897E-11 1.390E-11 1.044E-Il 7.836E-12 6.093E-12 4.967E-12 3.972E-12 00 NW 3.SS4E-ID 1 453E-It 9 556E-Il 6.388E-11 3 829t-11 2.57tE-la 1.868E-11 1 397E-11 1 906F-Il 8.678[-12 7.083f-12

[]

NNW l.9 38f-10 1,813[-10 7.760E=ll 4.582E-18 2.98 7E-Il 1.95t[-11 1.398E-11 1.075[-11 8.417E-12 6.723[-12 5.4AAE-12 os 9

2.178E-10 1 036E-te 6.345E-11 3.373E-11 5.992E-81 3.962E-Il 2.839E-11 2.137t-!! 8 65st-sl 1.324r-Il 1.opit-il NNE 1 389E-lO l.78FC-19 1.091[-19 5.575E-11 3.385C-11 2.26SC-11 1 623E=ll 1.287[-11 9.456E-12 7.548E-12 6 15AE-12 NE 8 033E-18 1.026E-19 '6.3 7 7F-11 3.323t-11 2.0 3 0E-Il I.358[-11 9.649E-12 7.245E-12 5.633f=12 4.598[-12 3.673[-12 ENE 2.6 3 4 E -18 2.726[-18 1.956E-11 1.183[-13 7.585f -12 5.8 73E-12 3.599E-12 2.4 4 3E-12 1.9 35 t-12 1.552C-12 1.2 72t-12 I

1.72 AE -11 2.74 3 E-I l 2.315[-18 1.352E-11 A. 700E-12 5.360E-12 4 130E-12 3 04 eE-12 2.3280-12 1.64 8t =12 1.336E-12 (SE 3.5630-11 4.72SE-18 3.532[-11 2.20SE-Il I.420E-Il 9.452C-12 6.662E-12 4.902E-12 3.744E-12 2.950E-12 2.379E-12 SE 2.290E-10 1 897E-te 6.766E-Il 3.670E-Il 2.324[-11 3 643r-ll 1.242E-11 1.11EE-11 8.943f-12 7.376E-12 6.190r-12 55E 3.5 7 6 E -19 2.206E-10 1.348E-18 6.899E-Il 4.203E-11 2.825E-11 2.028E-11 1.525E-it 1.187E-Il 9.5b1E-12 7 766E-12 ee....eeeeee..eeeeeeee.e RELATIVE DEPOSITION PER UNIT AREA 4Mee=29 BY 00WNWIND SECT 0AS

              • ee**ee*****e**.

SEGMENT B0UNDARIES IN MILES DIRECTION

.5-1 1-2 2-3 3-4 4-5 5-le 30-20 20-36 30-40 40-51 F409 $ITE 5

3.917E - 00 5.06AC-89 1.52AE-09 7.630E-te 4.899E-30 2.140I-te 7.300[-18 3.467E-Il 1 946E-11 1 212r-ll SSW 6.394[-09 2 132E-89 7.696E-10 4.479f-10 2.840E-10 1.223f-le 4.301[-11 2.098[-18 1 142E-11 7.069[-12 SW l.194E-09 9.033E-10 3.967E-10 1.904t-lO I.IIRE-10 5.278E-Il 1 937E-Il 8.988E-12 5 242E-82 3.244[-12 WSW 4.866E-10 4.2200-18 1.539E-38 7.3980-11 4.4e6E-Il 2.457E-Il 3.tA4E-Il 4.716E-12

2. Stat-12 1.559E-12 W

4.2 3 AE -09 3.439E-89 4.597E-10 2 185E-10 8.277E-10 5.393E-Il 2.036E-Il 5 001E-Il 5 345E-12 3.30AE-12 WNW 4.054f-09 2.326E-89 7.845I-18 3.575t-le 2.064E-lu 8.594E-18 2.p76[-31 1.387E-Il 7 915E-12 4.899E-92 NW 5.7 3 AE -09 4.435E-09 1.480E-09 6.576f-10 3.756E-10 9.559E-14 5.839E-11 2.622E-Il 1 4 TIE-Il 8.7350-12 NNW 2 509E-99 1.532E-09 6.A90E-10 3.750f-10 2.3tlE-lp 3.147E-10 4.548E-11 1 984E-11 3 076E-11 6.7670-12 N

4.177E-09 3.928E-09 9 3780-10 9.44tE-10 2.717f-la 1 111E-10 5.197f-Il 4.d54E-fl 2.lb3F-11 1.333[-18 NNF 2.554E-09 1.283E-09 5.28l[-tr 2.A35E-10 1.715E-10 1.3A9E-16 5.7AAE-Il 2.3SHf=ll 3 23pr*ll 7.59AE-12 Nr 3.54W-09 7 19AE-30 3.016f-10 1 63AE-10 1.002[-10 8.040(-11 3.427E-13 1 3PUE-Il 7.3tAf-12 4.52*[-12 INE 5.719f-lo 2.43%E-10 9.9 76 E -I l 5.377E-Il 3.2ASF-il 2.3641-11 3 166f-Il 5 353E-12 2 592E-12 1 567t-12 E

5.753E-10 1 8960-19 6.793E-Il 3.542f-Il 2.852E-Il 2.239E-Il 1.351[-18 5.95Jr-12 3.0h%E-12 1.734E-12 ISE 7.736[-10 3.2 RS E-19 8.349E-te 7.272r-11 4.444E-Il 3.93%E-Il 2 15tf-II 9.63?E-12 4.964E-12 2 973E-12 SF 7.130E-09 2.468E-09 A.966[-14 4.692F-la 2.852E-lh 1.175E-10 3.7600-11 1.664f-ll 1 06HI-il 7.40lf-12 5$f 1.3 31E -09 1 795f-09 1 297f-09 6.53RE-10 4.413E-10 2.129I-In 7.163f-Il 2.h74I-Il 1.54tt-il 9.56Pr-l?

FOP FLEvaf E3 ST ACE CELEATE C00CE:fE0 F@Q E7EN TEDCAID CECIICULATION SPECI'IC POICTS OF INTETEST RELEASE TYPT OF Dlartfl04 DISTANCF N/0 210 N/0 D/0 In LOCATION

  1. RILESI IMrTTRSS ESEC/ CUP.arTERI ISEC/ CUP.PETE45 ftEC/ CUB. METERS IPER 50.METERI NO DECAY 2.260 DAV OECAT 8.000 DAT DECAY

_U5DLELLIED

_DBDLELLIED

___DLELLIED

.a SI E souMDAnv 5

0.84 li5e.

2 934E-07 2.as2C-s7

2. n56r.- 0 7 1.6=3t-3n A

S ITE MnUgD AR Y

$$W O.85 1370.

1.100E-07 1 099E-07 1.877E-07 5.422E-09 A

SITE ROUNDARv SW 3 01 1620.

A.157E-SP A.145[=58 8 323E-08 1.156E-0?

A SITE SOUND AR Y W5W l.04 1613.

4.R47E-On 4.n1*E-0R 4.439C-05 7.551E-10 A

t!TE DOUNDARY W

0.99 1540.

2.563E-17 2."59E-07 2.513C-d7 2.977E-39 A-SITE 90UND AR Y WNW 1.01 1620.

2.455E-07 2.45tt-07 2.425E-C7 4.488E-09 A

SITE ROU1DARY NW 0.80 1290.

2.2 78E-0 7 2 276E-07 2.25*C-07 4.172E-0*

a Sitt n0UNDAPy NNW 0.70 1830.

4.493E-0A 4.4n9E-pa 4.4440-84 2.54tt-09 A

SITE 800NDARY N

O.70 1834 6.*4fE-SA 6.93&E-OR 6.837E-08 4 61AE-39 A

SITE POUNDARY NNr e.65 1G50.

4.140E-OH 4 137[-08 4.08pt-tB 2.794E-09 A

SIT E SOUND AR Y NE 0.64 1930.

2.11PE-5A 2.117E-08 2.090E-08 1.704E-09 A

SITE ROUND A4 9 ENE 0 58 930.

1.160E-04 1 159E-SA 1.144E-08 6.763E-18 4

SITE POUNDARY E

S.54 A74.

1.A05E-38 1.804E-n4 1.784E-08 8.0*6E-14 A

SITE 500NOanV CSE 0 55 888 2.802E-OA 2 130E-0A 2.P77E-88 9.214E-10 A

SITE 80UNDARY SE 1.03 1660.

3.119E-07 1 197E-07 1.095E-07 4.768E-49 A

SITE 80UND An v SSE O.85 1370.

1.539E-0 7 1.537E-07 1.5C2[-07 1.150E-18 i

3 M

I

O l

Atmospheric Diffusion Estimates i

Elevated Releases A ril-June 1983 P

4 s

B128

IRP FLEV47IO 97 AC3 EELEast C0 DC:Afe UNOEPLETED CO2EC:7FD F02 OPEN TIC 2812 REC ISCUL ATIO3 ANNUAL AVERAGE CHl/O (SEC/MFIER CUPEDI DISTANCE IN MIL ES SFC70A 0.250 0.500 0.750 3.Opr 1.503 2.90C.

2.5PP 3.000 3.500 4.000 4.500 S

3.137E-07 f.957f-47 1.5 A4E-0 7 1.2 4 70- A 7 9.393E-0 A 7.145E-0A 5.543C-0 A 4.410E-S A 3.597E-Sm 3.7mit-P8 3.811[-04 SSW 6.13 9C -S A 2.294E-08 2.663t-08 3.704E-0A 4.192E-08 3.63tt-00 2.99tE-SA 3.0*1E-08 2.*820-0A 2.526E-ep ?.lfl[-en SW 2.4A7E-SA 2.592[-0A 7.173r-08 1 181r-07 1.45tE-07 *.163[-08 6.2*3f-SA 4 5*RE-AA 3.524[-PA 2.799E-88 2.2RAF-08 l

WSW 6.6230-0A 4.4361-9A 6.247t=08 9.34tE-0A 1.137[ 97 6.749[ 08 4.473C-08 3 192E-0A 2.407E-08 1.AA9E-98 1.530E-0A W

4.754[-RA'I.177f=07 2.337f=07 2.314[-37 1 705E-P7 9.9PII-04 6.564E-08 4.668[-08 3.510r-00 2 750E-00 2.2240-04 W4W 3.088E-10 1.R75E-04 9.927f-0A 1.55t[-07 1 628f-07 9 573E-08 6.329E-SA 4.678[-08 3.6210-Se 2.p34[-04 2.291[-08 NW 5.355t-99 4.776E-OA 1.8 4 2[= 3 7 3.788F -0 7 5.594 E-07 3.215 E-0 7 2.0 9 7F-0 7 1.513[-07 1.152E-07 9 02st-08 7.296E-SA N4W 3.475[-98 A.703E-On 1.544E-07 1.9610-07 2.423r-07 2.22AE-07 1.93 A r-0 7 1 63 3E-0 7 1.3 7 t I-0 7 1.0 6*E-0 7 8.622[-08 N

R.665f-SA I.046E-07 1.0 02[-0 7 A.72 7E -9A 7.3070-08 6.015E-GA 4.9021-08 3.971E-0A 3.2A3t-0A 2.766E

  • 4 2 369E-08 NME 2.161E=0A 4.223E-08 4.930E-SA 4.123E-08 3.135E-08 2.443E-SA 1.947E-08 1.592[-0A 1.3310-0A 1 136E-0A 9.R6er-09 wE 2.995[-08 6.56AE-en 6.19Ar-04 4.465t-0A 2.937E-08 2.154[-0A 1.659[-0A 1.323E-08 1.0A5r-Se 9.192C-09 7.78tt-09 E9[

2.091[-39 3.636E-08 3.120[-OR 2.255[-08 1.542E-SA 1.150E-08 8.92?E-09 7.14t[-09 5.869E-09 4.931[-09 4 222[-09 E

6.4 9 9[-8 A 5.690 E-S A 4.265E-08 2 912E-08 2.031[-08 1 633E-SA 1.364[-0A 1.16tE-SA 1 004r-08 A.79AE-09 7.802t=09 ItE 1.922r-07 1 075E-47 6.171E-04 3.683r-04 2 223E-08 1.580E-08 1 2r3E-08 9.579E-09 7.804E-09 6.65&L-09 5.738t-09 9E 2 4 92[-0 7 1. A32[=0 7 1.4 5lf-0 7 1.0 5 0f-0 7 7.24 r-8 A 5.424E-04 4.223[-0R 3.391[-GA 2.794E-Os 2.352[-08 2.pl4F-08 Sl[

4.48tF-07 2.532E-07 1 581E-07 9.014r-SA 5.974E-04 4.243[-08 3.221[-0A 2.549E-08 2.043[-SM 2.606E-9A 2 936E-0A I

ANNUAL AVFAAGE CHl/4 ISEC/ PETER CUSEDI DISTANCE IN MILES B0 AT I NG 5.000 7.500 10.000 15 080 21 030 25.000 30.000 35.000 40.080 45 000 50.000 5

3.32tE=0A 2.07tr-08 1.333r-00 7.5A3r-09 5.27pt-09 3.969E-09 3.093t-09 2.59n[-09 2. lear-09 1. A 0p t-89 1.569[-09 SSW l.92AE-08 1.223f-PA 7.785[-09 4.343E-A9 2.954[-09 2.167[-09 1.673r=09 1.343C-09 1.112[-09 9.41A[-10 A.122[-10 SW I.984f-9A I.132E-0A 7.13 2E-0 9 4.92 3 [=o9 2.597E-09 f.A84E-C9 1.449[-09 I.15pt-09 9 543E-te A.04RE-10 6.913E-10 WSW I.292f-68 6.9 tat-09 4.440E-89 2.466[-09 1.619E-09 1.171[-09 A.995 E-10 7.2 05E-10 5.94 9f-10 5.0 2 7E-10 9.325[-13 W

3.A45E-00 9.46AE-09 6.216f-09 3.564I-99 2.392[-09 1.734E-09 1.333E-09 1.069[=09 8 82pt-18 7.464[-10 6.425E-10 W4W l.913E-08 1.003f-00 6.5070-09 3.701E-09 2.465[-09 1.7*9E-09 1.393f-09 1.120E-09 9.274E-10 7.854E-10 6.770E-RO as M

MW 6.102[-08 3 236E-08 2.131[-08 1.239f=0R 8.265E-09 6.050E-09 4.7330-09 3.A3mE-09 3.195E-09 2.716E-09 2.350E-0*

($

N4W 7.222[-00 3.819E-OR 2.440E-08 3.373E-PR 9.165[-9* 6.786E-09 5.224 E-99 4.22 AE-99 3.5 2 3 [-09 3.013E-09 2.606E-09 4

2.063f-08 1.236E-0A 9.5 89[-0 9 6.915E-09 5.34 t E-09 4.19 AE-09 3 271[-09 2.649E-09 2.206[-09 1.8770-09 1.626[-09 NME 1.s85E-9A 1.548E-34 1.302E-OR 5.744E-09 3.A96E-0* 2.AA9t-09 2.266[-09 1.84 7E-0* 1.54 9[-89 1.3 26[-09 1 155[-09 10 8.030F-O? A.523E-89 5.463f-09 3.093E-09 2.084[-09 1.53A[-69 1.207E-09 9.A44[-10 A.246F-10 7.053E-10 6 127[-10 fM[

4.290E-89 6.669E-09 4.45AE-09 2.66tE-09 3.850E-09 1.39AE-89 1 155E-09 9.793E-10 A.446E-18 7.28AE-10 6.37AE-19

[

A.69Af-09 1.5ARE-08 1.068E-08 6.4160-09 4.477[-99 3.3n9E-09 2.70lE-A9 2.230E-01 1.P90E-09 1.749E-09 1.532E-09 ESE 5.04tE-09 J.972f-09 6.153[-09 3.787F-09 2.6a3[-09 2.053E-09 1 650[-99 1.372E-09 1.169E-09 1.015C-09 8.952[-13 SE 1 753r-SA 1.053E-SA 7.9010-09 5.400[-09 3.876E-09 2.993E-09 2.399E-09 1.991[-09 1.694r-09 1.452E-09 1.263E-0*

SSC 2.4 Alt-0A 1.350E-Sp A.669[-99 4.93t[-09 3.334E-09 2.469[-99 1.934E-09 1.576E-09 1.32tE-09 1.33tE-09 9.A54T-10 EHl/0 ISEC/ METER CUME05 FDA [ ACH SEGMrNT SrGn[NT A0UND4AIES IN MILES CIAIE7804

.5-1 1-2 2-3 3-4 4-5 5-10 10-20 20-30 30-48 40-5J F909 SI TE S

3 537E-07 9.078E-00 5.537E-DA 3.A99E-0A 3.6230-na 2.021[-0A 7.832r-09 3.965[-09 2.523E-09 1.Re9L-39 SSW 3.943E-90 3.A34E-08 3.202E-08 2.840r-08 2.lP6[-08 1.142E-9A 4.499f-39 2.17AE-09 1.349E-49 9 442E-10 SW R.216t-0A 1.153E-F7 6.379[-0A 3.555E-0p 2.327t-ce 1.135 0-0 A.

4.946r-P9 1 900[-09 1.164E-09 P.37tr-14 WSW 7.220E-08 8.866E-00 4.567F-DA 2 434E-0A 1.54A[-08 7.151E-09 2 52pt.-99 1.182[-09 7.238E-te 5.04 0r-19 W

2.ll3E-07 1 576C-07 6.737E-r8 3 552F-CA 2.24pr-na 1.un2E-JR 3.631[-09 1.74*[-09 1 073r-ng 7.4n3r-IO W4W 3.062[-07 1.313E-67 6.534t-0A 3.624F-08 2.332t-P8 1.048[-98 3.776E-09 1.A14E-39 3.824[-n9 7.873[-10 MW 2.494t-17 4 134F-07 2.161[-27 1.16PE-07

7. 3 65E -0 8 3.382E-CA 1 254[-9R 6.184[-09 3.849[-09 2.722r-h*

N4W l.914F-97 2.234f-07 1.A93r-07 3.35t[=07 A.716F-op 3.*62[-h9 1.4P7E-0A 6.772[-99 4.243E-99 3.plir-P9 4

9.5920-0A 7.049[-08 4.827F-08 3 2A3f-SA 2.3730-0P 1.297[-08 6.Alor-09 4.132E-09 2.65At

  • 9 1.pA2r-09 NME 4.414t-GR 3.34fr-08 1.937I-9P 1.3310-08 1.P6AI-?8 1.202r-UA 5 872[-09 2.9P90-09
1. p 5 3[-0 9 1.329f-d*

Mr 5.51nt-1A 2.9291-DR 1 657E-SA 1.DA71-0A A.265E-99 7.053E a9 3.17tE-?9 1 551r-09 9.n73t-10 7 164r-lo tv[

2.A%1[-ce 1.52st-no n.pq73-c9 5.A75t-J9 4.457f-09 5 157t-09 2.7P4[-19 1 423E-39 9.7A3C-It 7.2*er-19 f

3.'8ao r -0 A 2.050r-R8 3.3550-Op 1.002r-0p p.429r-39 1.l*7t-cA 6.502f-19 3.404t 99 2.2350-09

1. 7 t l F - #
  • FSE 6.3A9F-1A 2.?6tI-08 1 295f an 7.9 art-19 6.94f,r-n?

7.023r-09 3.p22E-09 2.060t-C9 3.374r-99 1 016t-no SE I.35p[-07 7.563f-PA 4.2 tit-PR 2.796t am 2 3170 np I.093r-1P 5.278t-19 2.**lI

  • 9 1.*94r-49 1 454f
  • 9

%SF l.5?6f-97 6.05pf-9h 3.225t-0A 2.415r-gA 2.6per-op I.3nTF-on 5.0%2f-99 2.486E n9 1 5ptr-t9

1. l? 4 r -p9

m Cor rt[vorro Sv4[u o[trast 2.260 04y prCAfe UNO(PLFTED

[0RRECT[p FOR OPEN TE#AAIN RECIRCULATION ANNU4L AWrRAGE CHl/8 ISEC/REFFA CUAEDI DISTANCE IN MIE ES

$[ Cine A.250 9.580

. 0 750 1 000 1.510~

2.090 2.503 3.900 3.5no -

4.400 4.500 5

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4.11t[-09 3.158t-89 2.4 8 7E - 0 9 1.504t-09 6. 6 9 7E -18 3.947E-10 2.68tt-70 1.854r-10 1.383E-10 1 063E-10 A.417r-Il NE 6.2 7 4 E -09 9 662E-89 3.3 8 A E -9 9 1.9 0$ f-09 7 786E-10 4.3pp[-18 2 82R[-jG 1.97AE-10 1.463[-18 1.123E-18 8.P85[-11 INE 2.469f-89 1 988E-09 1.4 73E-0 9 9.3 8 7E-10 4 203f-le 2.492[-10 1.654I-10 1.176E-10 8.766E-Il 6.759f-Il 5 3500-11 3.552f-89 2.668E.n9 1.94 8 E-89 1.8 52r-09 4.t&3t -10 2 790E-10 1.8174-18 1 279[-10 9.479E-11 7.292E-f l 5.7 73 f-S t ESE 7.983E-09 5.231E-09 3.6140-09 2.027F-89 7.992E-18 4.487E-te 2.Al3E-te 1.955[-10 1.439E-10 1.1G4t-30 8.733E-Il SC 1 939f-88 1 45t[-90 1.e46F-08 6 849f-09 2 565[-09 1.463[-09 9.476f-18 6.678[-19 4.938f-10 3.797[-10 3.005F-10 SSE 2.0 3 0E -00 2.065 E-08 1.404[-88 7.6A3f=09 2.95tE-09 1.58AE-89 9.'93[-10 6.893f=10 5.054[-10 4.337[-1B 3 667E-19 DIRECfl0N DISTANCIS IN MILf5 FROM SI TE 5.88 7.50 18.00 15.80 24.00 25.06 10.00 35.00 40.80 45.08 50.00 5

3.366f-10 1.823E-10 3.165E-it 6.45tE-Il 4.158f-ll 3.246E-13 2.327[-11 1.748f-Il 1.37tt-11 1.895f-Il 8.9390-12 1

$5W l.293E-14 7.448I-11 4.789E-11 2.633[-11 8.938E-Il I.34tE-11 9.607E-12 7.214E-32 5.609[-12 4.480E-32 3.657r-12 SW l.28 7E-18 7.te2E-11 4.4 93E-11 2.4 3aE-Il 1.526[=ll 1.270E-Il 9.2390-12 6.938[-12 5.394t-12 4.309E-12 3.587E-32 WSJ 7.60 AE-Il 4.122f-11 2 620f-Il 1.79 8I-11 1.084[-18 7.2 70[-12 5.2 09E-12 3.912r-12 3.041f-12 2.429F-12 1 943f-12 J

9.l e f t -il 4.t e n t-il 3.397[-18 1.e88[-!! 1 418E-13 9.452E-12 6.773E-12 5.086[-12 3.954E-12 3.159t=12 2.5780-12 WNW l.199f -18 6.286E-Il 4.165[-11 2.3 4 8 E-11 1.64 3E-18 1.122E-Il 8.148E-12 6.llRE-12 4.757E-12 3 800E-12 3.182[-12 as NW 3.14 3E-10 1.853E-t e 1.5 0s t-l e 8.154 E-11 4.969E-Il 3.337[-11 2.405E-Il I.886E-Il 1.404E-11 1.122E-11 9.154E-12 kNJ 3 462E-18 2.042I*le 1 444E-10 8.648[-11 5.548E-Il 3.729E-11 2.647E-11 1.962t=11 1.507[-11 1 225[-11 9.995t-12 I$

9 2.2 4 0E-18 1.8 7 t t-19 6.606E-I t 3.567E-Il

4. 717[-18 3.2 8 70-11 2.355E-11 1 76AE-11 1.375[-11 1.098[-18 8.965t-12 NNE 6.808t-il 9.324E-Il 5.888E-11 3.039[-11 1.063r-11 1.249[-11 8.934E-12 6.694[-12 5.194[-12 4.145E-12 3.380E-12 NE 7.20 st-il 7.699E-Il 4.696E-11 2.39 7E-I t 1.45?[-11 9.781[-12 6.926f-12 5.336[-12 4.188f-82 3.345E-12 2 73eE-12 ENE 4.326E-ll 3.Salf-Il 2.467E-11 1.452E-11 9.33eE-12 6.340f-12 4.573E-12 3.68tt-12 2.67er-12 2.120E-12 8.734t-12 E

4.673[-11 5.54&E-11 4.125t-11 2.576[-11 1 674[-11 1.12RE-11 8.042[-12 5.98st-12 4.6130-12 3.474E-12 2.817E-12 ESE 7.es3E-Il 5.978[-11 4.286E-Il 2.535E-Il 1.658E-11 1.14 0E-Il 8.3 8 t t-12 6.3 2 AE-12 4.95 7f-12 4.013I-12 3.3 t it-12 SE 2.4 3 4f -18 1.169f-10 7.24 4 f-11 3.968E-Il 2.54 7E-I l 1.825E-11 8.484E-81 1.325[-11 1 224E-13 1.099[-18 9 144f-12 SSC 3.917E-te 2.845E-10 1.244E-te 6.328[-18 3.845E-Il 2.583E-!! 1.854E-11 1.395E-11 1.e86E-11 8.687E-12 7.1000-12

..........ee..

ee....e afEATIVE DEPOSlfl0N PER UNIT AREA IMee-23 BV UOWNWIND SECTORS

    • ....see...eeeeee..e..e St& MENT BDUND ARIFS IN MIEf5 OIRECil0N

.5-1 1-2 2-3 3-4 4-5 5-18 18-20 20-30 30-40 40-50 F409 SifE S

1.8 76E- 08 3.375E-09 1.16AE-09 6.182E-18 4.852[-10 1.873E-10 6.586t-il 3 122[-13 1.770r-11 1 102[-31 SSW l.824E-89 9.188E-It 4.02t[-20 2.537E-10 1.624L-18 7.483E-11 2.303[-11 8.348[-11 7.286[-12 4.StGE-12 SW 2.035t-09 1.341E-89 5.739[-18 2 752[-10 1.636E-te 7.217E-11 2.490E-ll 3.200E-11 7.001E-12 4.337[-12 WSW 2.162[-09 1.888[-09 3.398E-10 1.624E-18 9.54#E-Il 4.229[-11 1.661E-11 7.398E-12 3.95t[-12 2 445f-12 W

4.004f-09 1.240E-09 4.500E-IS 3.954f-It 1.344E-10 4.90lt-il 2.OllE-11 9.619E-12 5.337[-12 3.179E-12 WNW 2.85t[-09 1.596E-89 5.409E-18 2.478[-10 1 46RE-te 6.61t[-18 2.439[-11 1.13AE-fl 6.380E-12 3.825t-12 NW 4.871[-09 3.757E-09 1 277E-09 5.957E-10 3.789[-10 1 8978-10 7.A33f-11 3.3990-11 3 824E-Il 3.12*[-13 NNW 5.537[-09 2.844E-09 1.199E-09 6.536E-te 4.090E-10 2 092E-IS 4.557I-11 3.782[-13 1.9440-11 I.225r-II 4

6. A 2 4[-09 2.362E-09 A.724E-10 4.5 R5E -10 2.790f-10 9.848E-te 4.754E-11 3.296f-ll 1.786f-Il 3 306E-11 NNE 2.172E-09 7.32pt-18 2.664E-10 l.39%i-24 8.478[-18 7.204E-Il 3 132E-11 8.2700-11 6.763r-12 4.172E-12 Nr 2.986[-09 A.7ASE-10 2.904f-49 1.48at-30 8.955f-ll 6 255E-!!

2 490[-11 9.987[-12 5.369F-12 3.3670-12 (NE I.329t-09 4.579E-te 3 687t-le n.RSAE-Il 5.3AAF-Il 3.2520-18 1 447[-11 6.433E-12 3.55tf-12 2.140E-12

[

4 75?[-09

%.4220-30 1.86tt-lo 9.5520-11 5.hl5C-Il 4.720(-11 2 589f-la 1.144E-Il 6.n5tE-12 3.560E-12 ISE 1.264E-09 9.132[-19 2.897E-40 3.45At-18 M.804f-!!

5.4360-11 2.517t-11 1.15%[-11 6.372E-12 4.033E-12 SE 9.444E-09 2.R72[-09

9. 715 E - 10 4.99nE-10 3.02Af-10 3.253[-10 4.065I-11 1 849[-15 1 247E-Il 1 068E-11

$$E I.2690-98 3.390E-89 1 452f=09 S.306F-10 3.625E-10 1.945[-18 6.5H2t-il 2.62RE-Il 1 40AF-11 A.742f-12

ERP tttva7ES StAC3 CELI 45[

CsRIE:ftp FCQ OPf3 7EpWAID CCCl*CULAfl04 SFECIFIC POICTS OF ICTEEFST attrast 7VPt OF OtetCTION DISTANCr ato sto are ore in LOCATION iMitts8 (MCifast (SEC/Ceo.nrital ISEC/ CUD.MrTERI (SEC/CU#. MITER) IPTR 50.NETER8 40 OtCar 2.26s 04v ettav n.ase nov OtCAv

_W9MELLIL9 - _ _H KELLIER

_ _K ELLILO A._ SITE 300NDARY S

D.P4 1359.

1 439[-17 1.4 tat-17 1 3 Rat-07 9.873[-89 A

Sli[ 5 0040 AR Y SSW s.85 1370.

3.898t-OP 3.096E-GR 3 077E-6A I.984C-e9 A

SIfC MOU40ARY SW l.83 1620.

1.I*tt-17 1.180C-s7 1.1A3t-07 3.729E-0*

A SIT E 8004044 Y WSW 1.09 1619.

'9.348t-en 9.334E-0e 9 2590-On 2.eI7C-0*

A SITE 800N0 A8 7 W

e.99 3590.

2.323t-rF 2.389C-87 2 277t-07 2.72&E-09 A

SITE 50040ARY WNW 1.s1 1620 3.560t-?7 1.554E-07 1 541t-07 2 772C-ee a

SITE 80Uw04R Y kW 0.se 1290.

2 23tr-07 2.2290-07 2.212E-07 3 541E-09 A

SlT[ ROU90at y NNW e.78 1935.

1.3n7F-07 1.345C-07 1 365f-37 6 293E-99 A

Stit BOUNDAay N

s.70 1833.

9.9?70-n#

9.92tt-9A 9 74mt=0A 7.n7st-09 A

SIf f POUND AR T NME 0.65 1950.

4.739f-GA 4.7350-05 4 656E-68 2 646E-09 A

SITE 80U4044Y NC e f. 4 1330.

6 4620-1R 6.45AE-14 6.349E-98 3.4370 99 A

SITE 8004DARY

[NE 0.5R 930.

3 47AC-30 3.475t-04 3.429t-98 3.742t-09 4

S IT E potpt0 AR Y E

0.54 A70.

5.394F-On 5.390E-08 5.330E-88 2.523C-f9

'A SITC ROU40 Aav ESE 0.55 PRC.

9.5850-on 9.4960-0a 9.3nnE-te 4.astE-e9 A

StfE SOUNDART' SF 1.83 1669 1.328t-07 1.819t-07 9.94RE-Og 5.759E-99 4

SITE 800N3ARV SSF e.A5 1370 1 2500-07 1.249E-07 1.217t-P7 1.eA90-08 i

l N

uu

)

i

Atmospheric Diffusion Estimates Elevated Releases January-June 1983 l

l I

i B134 i

[~P ILEWSTED 57AC2 KELEA$r N3 Df C A f e UNDfPLETFD CCGCECitD FOR (PEG TFCO Al2 CCCIRCUL A? loa Annual AUFAAGE CHl/0 ($ft/MrTER CUPEDS DISTANCE IN Mit[S SECTOR 0.250 0.5PO 2.750 1 000 1.580 2.000 2.501 3.000 3.SeG 4.400 4 540 5

3.3 3 5 E -0 7 2.95 t E -97 2.5 t or-0 7 1.752F-o f 3.n91t=07 7.593E-Ja 5.633r-en 4.334[-08 3.463f-en 3.495[-on 3.464t-em SSW 6.6 8 6r -P A 6.7P6[-D A 7.26*r-OP 6.R43E-18 5.956E-CA 4.7p7[-18 3.214[-n8 3.P05F-OR 3.6301-08 3.027[-08 2 585E-0A SW 1 412[-08 2.P4?E-Op 5.758[-08 a.954[-OR 1 269[-07 p.S72E-08 5.5680-0A 4.O p5[-D a 3.13 9 f-O n 2.5 c Pt-on 2.9 4 7t-0 8 WSW 3.334[-08 2 250r-na 3.994E -0 A 7.lO6E-0P 9.664E-08 5.828r-0A 3.90lE-OS 2.8080-08 2.1300-08 1.680f-GR 1.366E-08 W

2.9 ant-0A 1.264[-07 2.4 2 4 r-0 7 2.4 3 2[-0 7 1.7770-07 1.037E-07 6.8020-08 4.829[-0R 3.6250-04 2.n37F-Op 2 2*IF-08 W4W 2.4 6 7f-09 2 788I-On 1.?96r-0 7 1.994[-r7 1.995r-c 7 1.158E-07 7.586[-CR 5.539[-08 4.243E-08 3 306E=SR 2.662[-08 9W 2.785E-09 4 292E-OP l.86 7E-0 7 3.64 5E-n 7 4. 77 7t-P7 2.713 0-0 7 1. 756E -0 7 1.25et-07 9.52 9E-08 7.4 33[-me 5.985t-0 4 N4W 4.3tTF-88 5.*32f-08 1.043F-07 1.439t-07 1.P27E-07 1.67PE-07 1.462[-07 1.230E-97 1.034[-07 A.063E-04 6.504[-On N

5.17Af-08 7.P99[-08 8.76tr-08 8.493E-On 7 715r-08 6.554[-Sm 5.432r-08 4.447E-94 3.7e5[-88 3.140E-04 2 703E-OR NNE 1.532f-0A 3.R60E-04 4.872[-08 4.753E-en 4.273E-CA 3.545t-on 2.90lf-On 2.400[-0P 2.017E as 1.723E-0R 1.4?SE-04 N[

1.53RF-0A 3.*20E-08 4.551[-f8 4 024E-#A 3.333[-08 2.663t-88 2.341 -PA 1.756[-08 1.464r-0A 1.242[-08 1.971E-3m

[4C 1.82PE-PA 2 355E-OR 2.335[-08 1.9360-08 1 530E-0R I.2 t p C-O n 9.7 74 t-0 9 7.994 E-09 6.662E -09 5.651 E-09 4 871[-9 9 E

3.999E-04 3.R20E-OR 2.807r-en 1.915r-08 1.370E-08 1.123E-08 9.47ar-09 A.120E-09 7.050[-09 6.l*6E-09 5.507E-09 ISF 9.976r-en 6.463E-04 4 192E-0R 2.*l5[-98 2 175E-r8 3.72*[-08 1.40c[-08 1.156[-08 9.725r-09 8 327E-09 7.239E-09 SE 1.6850-07 1.43tE-07 1.36 3E -0 7 1.092 f -0 7 A.05 9[-0 8 6.0 83[-68 4.7 0 3[-0 A 3.736E-08 3.044E-08 2.5340-0A 2.149E-0A SSE 3.650E-07 2.402[-07 1.693t-07 1 135[-07 7.24PE-08 5.169t-GA 3.89t t-c e 3.0 46 E-0 A 2.4 6 0[-4 8 2.8 7*E-as 3.156 E-0 8 ANNUAL AVERA6r CHl/0 4$rC/MrifR CUREDI DISTANCr IN MILES pfA4ING

5. OPS 7.500 10.000 15.100 2a.P00 25.003 30.000 35 000 40.091 45.000 50.000 5

3.122E-08 3 992E-OP I.?n60-08 7.46*[-09 5.2m5r-19 4.054[-P9 3.IA2[-69 2.60l[-09 2 203r-09 1.993r-09 1 6570-09

$$W 2 2800-08 3 386F-GA 8.760[-On 4.m49[-09 3 2600-09 2.37PE-09 1 83t[-09 1.470E-09 1.216[-89 1.029r=09 8.n65E-10 SW l.784r-08 1.097E-08 6.550E-09 3.685E-09 2 4020-09 1.747E-09 1.146E-09 1 077E-09 8.e770-10 7 491[-10 6.43mr-19 WSW l.162E-08 6.577f-89 4.137[-09 2.321E-09 1 527[-09 1.106E-1* 8.503[-10 6.886E-10 5.6310-30 4.761E-IP 4.098E-10 W

1.A9Af-08 9 6MBE-09 6.330I-09 3.6PAE-09 2.434f-09 1.745E-09 1.33*[-09 1 077t-99 n.n43E-10 7.467E-IC 6 421f-10 W1W 2.212E -O m 1 14 0[-PR 7.314 f-O? 4.l ear-c9 2 70aE-0, i.*64c-09 1.Si7E-0,1 2 2E-09,.999c-i0 8.44 c-i0 7.257E-i0 l

og 4W 4.997E-On 2 619E-0R I.71t[-08 9.857E-09 6 54 7E-t* 4 7 77[-09 3.73 7[-0 9 3.O lnE-09 2.5 04[-09 2.125E-0 9 1.836f-09 N4W 5.453r-9A 2.PA9[=08 1.R 4 7[-0 8 1 0 39E-08 6.939F-09 5.085E=e9 3.960E-Oe 3.210E-09 2.682[-09 2 2R3E-09 1 9750-09 Oj N

2.163E-08 1 435E-CA 1.1320-On n.344t-n9 6 507f-09 5.12AE-99 4 0610-09 3 23MF-09 2.6960-09 2 295E-09 1.*8ME-09 l

NME 1 6050-08 1.9pAE-08 1.22 7f-0 8 6.963F-09 4 684r-09 3.45?[-09 2.693[-09 2 186[-09 1.R250-09 1.55sE-09 1 352E-09 Mt 1.123E-Oe 1 245[-08 A.2670-09 4.6?8E-09 3 166E-09 2.337[-09 1.P45r-09 1 50pt-09 1 262[-09 1 077E-99 9 357E-13 E4[

4.9ml[-09 7.334E-09 4.R97E-09 2.93PE-09 2 927C-99 1.529[-09 1 294E-09 1 102[-09 9.289E-lO 7.993E-10 6 993r-Ic

[

6.lenE-0* 1 14tE-PR 7.672r-09 4.608t-09 3 284[-09 2.432E-09 1 937F-09 1 6Ser-59 1.432r-09 1.252E-09 1.097r-09 ES[

7.460E-09 9.737r-09 6.560r-09 3.944F-09 2.759f-P9 2.DP3C-09 1.656F-09 1.366E-09 1.157F-09 9.*??r-IP 8.7660-10 SE 1.453t-8p 1.0 71 E-On 7.73 9E-0 9 5.036E-09 3 515E-09 2.664[-09 2.176E-09 1.752[-09 1.459E-09 1.243[-09 1.r77E-09 SSE 2 673[-on 1 475[-08 9.441E-09 5.3460-19 3 607F-09 2.666E-09 2.087E-09 1.698C-09 1 4220-09 1.217E-09 1 059E-09 CHl/G ( SEC /M r 7[ R CUREDI FOR [ ACH MEGMENT SIGMENT POUNDapl[S IN MILES DIRECTION

.5-1 1-2 2-3 3-4 4-5 5-30 10-20 20-30 30-40 40-59 rROM Sil[

S 2 273r-07 1.091E-07 5.6300-00 3.724r-08 3.309[-0A 1.904[-r4 7.676[-09 4.034[-09 2.615t-09 1.900E-09 SSW 6 972r-08 5.634r-OR 4.P70[-08 3.440r-f8 2.663[-18 1.35AE-r4 5 012E-09

2. 3 9 5E -09 1.476[-89 1.03tf-09 SW 6.797F-1A 1.003E-07 5.642E-On 3.166[-0A

?.pnet-aR 1.033E-ca 3.72R[-09 1.761[-r9 1.PN2[-09 7.511[-10 WSW 4.9P9E-18 7.39tf-PR 3.97RF-0R 2 152C-08 1 184[-08 6.547F-f9 2.3720-09 1.ll6E-99 6.847E-10 4.773E-80 W

?.870E-J7 1.594f-07 6.964E-op 3.669[-1P

2. 317 E - e n 1 0?fE-tm 3.6R2E-P9 1.761E-99 1 077[-09 7.4R7[-10 W4W l. 3 m or -9 7 1 6?3E-PT 7.P33r-08 4.?56F-08 2.6A6r-0A 1.l*7F-08 4.196[-09 1.*RPE-09 1.217[-09 8.464E-10 j

NW 2 34RE-07 3.607[-07 1.R12T-07 a.6020-08 6.m5tf-PR

?.7440-08 9.99Ar-39 4.833C-39 3.02PC-09 7.330E-09 N1W l.ligr a7 1.675E-17 1 477E-07 1.953r-97 6.576F-7A 2.995E-rm 1.965r-68 5.129r-19 3.223[-39 2.?R70-19 N

R.450F-98 7.97PF-DA 5.337E-or.

3.712t-16 2.7G6t-up 1.506r-tm P.191E-69 5.n45E-09 3.250L-e*

2 30cE

  • 9 NME 4.%94r-GR 4.056F-On 2.p72r-en 2.nl4E-1A 1.6n3E-18 1.538E-98 7.129r=19 3.477[-39 2.la3r-09 1.563r-P9 1[

4.tF7f mP 3.lp?f pA 2.1?pr-?R I.4630-b8 1.143r a8 1.345r.PR 4.Rl0I-0*

2.368[-09 1.510t-09 1 040E-09 FNE

?.15Sr-PR I.entr-1P 9.7h3E-09 6.657E-09 5.343E-19 5.7?st-t*

?.a6?C-99 1.568E-?9 f.P93[-0*

8.0060-80 E

2 616E-98 1.5mtl-OR

  • .4P3E-09 7.038.E-09 5.96?E-99 R.5RRf-99 4.669[-09 2 44?r-09 3.627f-09 1.242E-09 ISI 4 129r aR

?.14?r-na 1.39er an 9.716[-?*

7.641E aq 7.Hl9r-r*

3.995F **

2." Rat-J9

1. 3 6 9E -P 9 1.400r-99 Sr I.?S9F-07 7.RI6r-08 4.6Aer-OR 3.94MF-4R 2.lS4f=0m 1.Il3[-n>

4.954E a9 2.6760-29 1.747E-69 1.?45E-04 Stf I.Alif-47 7.?i6I-iR 3.994f-9R 2.7*71-PR

?.P94F-PH 3 505r-CR

%.4 P if -( 9

?.6PSE-09 1.794r=09 1 214r-09

IRP [LE9af[D STACM R[t[AS[

2 250 DAT DECAY, U4DEPLE7[D COR4FCTID FOR OPEN TERR 414 RECIR[ULA710N ANNUAL AVfRAGE CHl/4 ($[C/MffER [USEDI DISTANCE IN MILES SftiOA 9.750 0.900 0.750 1.000 3 500 2.000 2.560 3.000 3.500 4.000 4.504 5

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9 9.0 5&E-89 7.291 E-09 6.3 89[-89 4.16Pf -89 2.J t 6E-09 1.233E-39 8.324[-3 0 5.974[-t 3 4.* 72E-10 3.4 55E-13 2.7 35E-10 WWE 3.62 AE -99 2.999E-09 2.620E-09 1 858[-39 9.205E-10 5.690E-te 3.470E-10 2.7s7[-16 2.490t-le 3.61%C-te 1.279E-10 NT 4 147f-89 3.22SE-09 2 584E-99 1.607f=09 7 325E-1p 4.364E-te 2.9G5f-13 2.869E-16 1.543E-10 1.lget-13 9.418F-Il EN!

3 665t-99 1.383E=e9 1.05mE-09 6.969C-t e 3.26at-l e 1.9 72[-18 1.322r-10 9.45 8[-11 7.06ef-Bl 5.449[-18 4.314E-11 2.139E-89 1.764E-59 1.294E-09 7.752[-10 3.105t-10 1.986E-10 1.245t-10 e.779C-11 6.512f-11 5.088[-11 3.966[-11 j

ISE 4 12SE-09 3.895E-89 2.244E-89 1.327C-C9 5.578E-te 3.193[-10 2.C77C-lO l.4&l[-14 3.882r-18 A.32SE-Il 6.Sh9E-Il

$[

1.666E-08 1.26 Sr-te 9.3 00f-09 5.612[-09 2.4 3 8 t-04 I.396f-09 9.343E-10 6.455E-10 4.79tf-10 3.Enst-la 2.919E-14 SSE

2. Allt-08 2.866E-te 1.4 29f-0 8 7.992[-09 3 138E-89 5.7 3 t E-8 9 1 3 0l f-09 7.6'4 t E-18 5.622E-10 9.885E-19 4.34 6E-10 I'

D In[Ci l 04 EISTaWCES IN MILES

)

ra0M SITE 5.e3 7.Se le.se 15.00 20.00 25.06 3e.ee 35.es 4e.no 45.ee Se.as l

3.696F-10 1.925E-18 1 228[-18 6.774E-11 4.43tf-Il 3.405[-18 2.442[-11 1.e35E-Il 1.439E-Il 1.849E-Il 9.3A2r-12 L

j SSW 1.776E-te 9.505E-fl 6.075E-Il 3.314E-11 2.457E-Il 3.719[-15 3.231E-Il 9.247E-12 7.19ef-12 5.743C-12 4.6PsE-12 F

l SJ 1 09efale 6.190E-81 3.975E-11 2.179E-48 1 364E-11 1.0 90E-Il 0.00 3E-12 6.069E-12 4.719E-12 3.7 78E-12 3.07FE-12 I

WSW 5.6 3 9f-il 3.356E-18 2.294[-11 1.469E-s l 8.89 t t-12 5.96t E-12 4.2 7t E-12 3.2 0 7E-12 2.494E-12 1.992E-12 1.626C-12 l

W 9.626E-Il 4.32eE-11 3.417E-11 1. A74f-Il I.43st-il 9.642E-12 6.989C-12 5.184E-12 4.934C-12 3.222E-12 2 63e[-12 WWW 3.424E-te 7 147E-Il 4.611E-11 2.535E-11 1.769[-81 1.255C-Il 9.203E-12 6.973 E-12 5.420E-12 4.329E-12 3.534[-12 NJ 3.974f-le 1.654E-10 3.113I-10 7.237E-11 4.4830-81 2 957E-Il 3.134E-it I.683E-11 1 246[-11 9.955E-12 8 12S[-32 f

g, r.

NNd 2.745E-10 1.58tE-10 1.112E-lO 6.629E-Il 4.245C-Il 2.846E-11 2.012[-11 1.513E-11 1.190E-Il 9.595E-82 7.75p[-12 i

be g

2.2 99C-10 1.054E-14 6.4 76f-B l 3.4 7 3 E-Il 5.35ef-11 3.622E-11 2.596Eall 1.949[-11 1.515[-11 1.218E-11 9.80er-12 l

kNr 5.032E-te 1.357E-le A.345E-Il 4.299E-Il 2.639E-Il

1. 755E-18 1.256E-11 9.4 85E-12 7.31t E-12 5. A35E-12 4.759E-12

[

l NE 7.614F-Il S.972E-Il 5.538[-11 2 057E-11 8.742f-11 8.167E-11 8.400E-12 6.300E-12 4.904r-12 3 9tA[-12 3.198E-12 l

(NE 3.4 0 6E -il 3.156E-Il 2 2 8 3f-Il 5.3tet-il s.467E-12 5.7tlE-12 4.847C-12 2.946E-12 2.297E-12 8 840E-12 1.506f-12 l

3.2 81[-11 4.15 4 E-11 3.3 27E-11 1.968f-81 1.279C-Il s.586E-12 6.3 83f-12 4.52eE-12 3.4 7mE-12 2.566E-12 2.telf-12 ISE 5.3 35[-11 5.353E-11 3. A 71[-ll 2.3 7 8 E-11 1.54 0E-11 1 043[-11 7.492E-12 5.629E-12 4 355E-12 3.485E-12 2 848F-12

[

1 SC 2.363E-10 1.133E-te 7.987E-11 3.02SE-Il 2.436E-Il 3.734E-11 1.324E-11 1.395E-11 1.leef-ll 9.998[-12 7 593E-12 t

l SSE 3.295E-30 2.325E-18 1 295E-10 6.688[-11 4 023E-Il 2.783[-11 1.941[-11 1 460[-11 1.836E-11 9 09tE-12 7.433r-12 i

i 1

.ee.....e..

afLAilWE DtPOSI7504 P[a UNIT ARfA SM.e-25 87 DOWNWING SEC7Das e...ee.e...eeee.e..e.e.e l

l Sf6pCNt 80UNDAAlts IN MILES t

DIRECT 104

.5-1 1-2 2-3 3-4 4-5 5-18 10-28 28-3a 30-40 40-50 l

FROM SITE l

l.493C-SS 4.284E-89 1 347'E-99 6.865C-10 4.473t-18 2.S$6f-le 6.94tE-11 3.293E-11 1.ASFE-Il 3 157E-nl

[

i SSW 4.093C-99 3 52tE-09 5.846E-10 3.498F-It 2.228f-IS 9.ettr-11 3.547[-15 1.72t[-11 9.340E-12 5.Tal[-12

+

SW 3 617E-09 1.224E-09 4.e5?E-89 2 331[-10 1.36eE-te 6.254E-11 2.215r-11 1.e50[-11 6 135E-12 3.794E-12 l

WSW l.334E-09 7.2 8 9E-8 0 2.475f-10 3.185[-18 6.99er-Il 3.349C-Il 1 374E-Il 6.066[-12 3.239E-12 2.005E-12 W

4.823[-89 3.349E-89 4.346E-te 2.t&9E-10 1 250[-1a 5.30st-il 2.8230-11 9.933[-12 5.243C-12 3.243f-12 I

WNW 3.448E-09 1.959C-09 6.688E-te 3.823f-10 1.764E-18 7.596f-31 2.656E-Il 3 2610-11 7.043[-12 4.35ht-82

[

NW 5.30?[-09 4.902E-89 1 37pt-89 6.264f-10 3.737f-18 1.729E-It 6.8430-11 3.013E-11 8.619f-lt 1.002[-11

[

NNW 3.934E-09 2.192[-09 9.457E-IP 5.842[-10 3.247F-14 1.623E-te 6.566[-11 2.8s5[-18 1 532f-11 9.56PE-IP N

%.5b'E-09 2.146E-09 A.453E-10 9.534f-Is 2.754f-la 1.130E-10 4.974E-11 3.6720-15 1.969E=ll 1.21er-fl NNF 2.36?E-e9 9.782[=le 3.924[=le 2.lePL-19 1 28 7E -19 1 853E-la 4.453E-Il 3.786[-18 9.582E-12 5.p 74 [-12 j

Nr 2.264E-09 7.952[-10 2.959f-10 1.55st-le 9.484[-15 7.341E-13 2.955f-11 8.tn9C-11 6.371[-12 3.*45f-12 TNE 9.541[-18 3.554[-20 1 344E-10 7.129f-13 4.344f-Il 2.889E-18 1.ient-St 5.82PI-12 3 042r-12 1 852r-12 f

1 16AE-99 3.673E-80 1.274E-30 6.5e AE -Il 3.996E-Il 3.4A4[-11 1.919E-11 M.784[-12 4.574E-12 2.657E-12 l

[SE 2.e26[-49 6.22mF-10 2.12pE-10 1 095f-le 6.639f-ll 4.691[-11 2.335[-11 3.65MF-Il 5.671E-12 3.307E-12 SE n.194[-89 2.671E-89 9.355[-le 4.846E-te 2.941E-14 1 234E-te 3.955[-11 1.7%7t-il 1 265E-11 9.127[-12 SSF l.29tE-08 3.59tE-09 3 134 E -89 5.93ef-le 4.nl6f-19 2.el6[-10 6.ATIE-11

2. 7SCE -I l 1 474E-11 9.349E-82 i

(20 ELEv41[3 STAEK CEttCSC CORIf 7f@ FOR OPf3 TrRRAIJ EECI?CULATION SP(C)#!C POf07S OF IOffGEST 9ttf4%f T YP E OF DIRECTION DISTANCE 4/0 3/4 110 D/0 30 LOCAtl0M (RILESB TATTERS) IKEC/CUH.Mt1ERS (StC/ CUB.RETERS (SEC/ CUR.P[tERS (PER $0.ME1FRS i

=0 nrCAv 2.26r CAv orCAr R.aos oar Orcar

_ENDffLLLLD 25DLELLILS DLELLILD A

Sitt enugoar v s

e.R4 tise.

2.177t-27 a.tict-e7 2.in7t-e7 a.33RE-se a

s trE eDumo AR v

$$v s.es 1370.

7.o24t-ne

7. stat 'n 6.R97E-es 3.aSoE-e9 A

ss:E sougoAR r Sv t.el 162s.

s.onsr-R7 1.sR3r-07 9.aR6E-on 1.444E-a*

A Si1E souno ARv vsv t.no iste.

7. l l 3t -Ra 7.te2E-1s 7.064E-Os 3.195r-09 A

SITE 800gDARY W

t.99 159t.

2.442E-07 2.45RC-97 2.394t-07 2.851E-C9 A

SITE BDUNDARY W NW 3 33 1620.

2.P350-07 2.407t-07 1.9895 97 3.425E-39 A

SITE 90040ARY WW S.80 12*:.

2.255E-07 2.257E-97 2.235E-07 3.RS4E-e9 A

Sl1E BDU4D AR T NhW 9.7P 1830.

9.282t-08 9.2e4t-SE 9.016E-88 4.430E-09 A

Sitt BOUNDARY M

t.78 ItSt.

R.444t-08 8.43*t-08 R.3R2E-Os 6.259f-09 A

SifE 90040ARY NNC 0.65 1950.

4.441E-GR 4.43RI-OR 4.378E-SR 2.719E-C5 A

SIf[ 90040ARY NE 0.64 1030.

4.345t-08 4.307E-08 4.234E-00 2.769E-*?

A SITE SOUND AR T t hE 0.58

939, 2.327t=0R 2.32%f=?8 2.294E-OR 1.213E-09 A

SITE BOUND AR Y E

S.54 A70 3.6120-10 3.60*f-9P 3.569E-98 1.679t-49 A

SITE 80040ARY ESE 0.5%

ARO.

5.R2*E-98 5.R24E-0R 5.757E-9A 2.909E-89 A

S!fE SOUNDARf St 1.03 1665.'

1 069E-17 1.D6RE-07 1.045E-97 5.267E-09 i

A SffE 80U1DARY

$$C S. R. 5 13.70..

1. 39 3r-0. 7 1.3*2E-e7 1.35AC-07 3.II*E-08 LA e

l

ATMOSPHERIC DIFFUSION MODEL Onsite meteorological data for the period January 1,1983, through June 30, 1983, were used to determine long-term (routine) diffusion estimates for evaluating normal atmospheric releases from the Cooper Nuclear Station.

1 Atmospheric dispersion parameters (X/Q values) were determined for the site boundary distances from each release point and the standard population dis-tances using the methodology presented in U.S. NRC Regulatory Guide 1.111 (Ref.1) and the computer code XOQD0Q (Ref. 2).

Two release modes were analyzed.

2 Releases from the 99 meter freestanding stack were considered 100 percent elevated, while releases from the reactor building, turbine generator building, radwaste building, and augmented radwaste building vents were considered as a 100 percent ground-level release (one combined source term was assumed to apply for these vents).

Winds were obtained from measurements at the 35-foot level (for ground-level releases) and 318-foot level (for elevated releases), and the stability class was based on the vertical temperature gradient between 318 feet and 35 feet.

In accordance with Regulatory Guide 1.111, calm periods were distributed directionally in proportion to the directional distribution within a stability class of the lowest vind speed group. For the calculations, calm periods

were assigned a speed of one-half the threshold wind speed of the wind vane or anemometer, whichever is higher.

The Gaussian straight-line trajectory model, which assumes that the air flow transports and diffuses effluents along a straight line through the entire region of interest in the airflow direction at the release point, is modified to account for various modes of effluent releases.

In the case of an elevated release, plume rise due to momentum effects is incorporated into the calculation.

]

For ground-level releases, building wake effects were considered.

The mathematical equation used in the Gaussian straight-line trajectory model is:

1 f

4h I

^*

(X/Q). = 2.032 exp (Eq. 1) jk "jk *zk

  1. zk and' 1
  • (8:k2 + 0.5 D /r) f V3 a (Eq. 2) k zk B140

where i

index identifying downwind direction sector;

=

j index identifying wind speed class;

=

k index identifying atmospheric stability class;

=

X g

average effluent concentration normalized by source strength

=

at the specific downwind distance; f

joint frequency distribution of wind direction, wind

=

speed class, and atmospheric stability class; distance from the release point to a receptor; x

=

wind speed; u

=

I*

vertical plume spread with a volumetric building wake

=

correction for a release within the building wake cavity; o,

vertical plume spread without volumetric building wake

=

correction;-

D maximum adjacent building height either up or downwind

=

of the release point (44.5 m for ground-level releases);

and h,

effec tive' plume height.

=

Theterm1,Ihinthebuildingwakecavity.

given in Equations 1 and 2 is used for ground-level release (h = 0) wt For an elevated release, no volumetric building wake correction needs to be considered, i.e., l

=0 For all building wake determinations, the reactor building was conside,y. red to be the g

dominating structure in the modification of air flows within the building complex.

Since this model does not directly consider the effects of spatial and temporal variation in airflow due to terrain, appropriate adjustments were made to the calculated X/Q values. using.the default values of Regulatory Guide 1.111, Rev. 0 (Re f. 3).

B141

(

1

I 1

4 APPENDIX C DOSE CALCULATIONS

-k

44 122 a

--_s

--_2-.

CONTENIS LIQUID EFFLUENT DOSE CALCULATIONS GASEOUS EFFLUENT DOSE CALCULATIONS DOSE CALCULATION MODELS ISOPLETHS OF ATMOSPHERIC DIFFUSION ESTIMATES AND CAMMA AIR DOSE i

i

.. n.

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

LIQUID EFFLUENT DOSE CALCULATIONS Doses.to the maximum individual and 0- to 50-mile population resulting from the release of radioactive material in liquid effluents from Cooper Nuclear Station were calculated using the LADTAP II computer program. The LADTAP II program implements the radiological dose models of Regulatory Guide 1.109 for determining the radiation exposure to man from three principal exposure pathways in the aquatic environment-potable water, aquatic foods, and recrea-tional water use.

Doses to both the maximum individual and the general popu-lation are calculated as a function of age group and pathway for significant body organs, and -are presented in Tables 1 and 2, respectively.

Assumptions and data sources used for input to the LADTAP II code are described in a -separate sec tion of this appendix.

/

m O'

I l.

5

-+

G

%)

l I

I C1

-. ~..

Table 1.

Doses to Individual at the Site Boundary, Resulting From Exposure to Radioactivity Discharged in Liquid Effluents, January-June 1983, Cooper Nuclear Station Dose to Individual, ures*

Period Total and Pathway Skin Bone Liver Body Thyroid Kidney Lung CI-LLI let Quarter Drinking water 9.40E-02 7.65E-02 6.10E-02 2.08E-02 2.55E-02 8.52E-03 3.75E-02 Shoreline 2.43E-04 2.07E-04 2.07E-04 2.07E-04 2.07E-04 2.07E-04 2.07E-04 2.07E-04 Totals 2.43E-04 9.42E-02 7.67E-02 6.1E-02 2.10E-02 2.57E-02 8.73E-03 3.77E-02 2nd Quarter O

Eating fish 1.20E-01 2.13E-01 1.58E-01 3.22E-03 7.08E-02 2.33E-02 7.38E-03 Drinking water 1.72E-01 2.80E 2.17E-01 5.72E-01 9.48E-02 3.02E-02 1.14E-01 Shoreline 4.22E-04 3.60E-04 3.60E-04 3.60E-04 3.60E-04 3.60E-04 3.60E-04 3.60E-04 Totals 4.22E-04 2.92E-01 4.93E-01 3.75E-01 5.75E-01 1.66E-01 5.39E-02 1.22E-01 Totals for ist and 2nd Quarters 6.65E-04 3.86E-01 5.70E-01 4.36E-01 5.96E-01 1.92E-01 6.26E-02 1.60E-01

  • Calculated doses are based on the following periods of exposures:

Fishing and boating: from April through November Drinking water and shoreline: from January through December Swimming: from June through September.

. Table 2.

Doses to Population Within a.50-Mile. Radius, Resulting ' From Exposure. to Radioactivity Discharged in. Liquid Effluents, January-June 1983, Cooper Nuclear Station

' Dose to Popula tion, manrem" Period Total,-

,i

.f f

_ uf and Pathway Skin Bone.,

. Liver Body' Thyroid Kidney,

Lung, CI-LLI f f

-1nt Quarter

?

^

s i

Drinking water 3.58E-Ol' 2.60E-01

.l.,5 8E-01 6.32E-02' 8.50E-02 2.95E-02 9.52E-02,_

" Shoreline 3.65E-02 3.10E-02 3.10E-02.:3.10E-02 3.10E-02 3.10E-02 3.10E-02 3.10E-02 Totals

/

3.65E-d2 3.892-01/ 2.91E-02l.89E-01 9.42 C-02 1.16E-01 6.05E-02 l'.26E-OL

^

7 9

g ynd Quarter

/

r Eating fish 5.63E-03 9.98E-03. 7.4d603 3.63E-05 3.30E-03 1.09E-03 3.40E-04

,b Drinking / water 3.35E-01 4.88E-G11 2.85 601 8.92E 01' l.62E-01 5.38E-02 1.48E-01 l

'Shbreline 6.35E-02 5.00E 02 5.40E '5.40E-021 5.40E-02 5.40E-02 5.40E-02 5.40E-02 7

Swinsning 0.00E+00f 3.80E-04$ 3.80E-04 f

3.80E 04' 3.80E,-04 3.80E-04 3.80E-04 3.80E-04

Boating,
0.00E+00 1.40E-03 "1.40E-03 1.40E-03 1.40E-03 1.4'OE-03 1.40E-03 1.40E-03

-Totals' 6.35E-02 3.96E-01 5.54E-01 '3.49E-01 9.48E-01 2.21E-01 1.llE-01 2.04E-01

/

Totals for l a t.

i and 2nd Quarters 1.00E-01 7.88P-01 5.83E-01 5.'37E-01. 1.04E+00 3.37E-01 1.71E-01 3.30E-01

, i

" Calculated doses are based on clie following periods of exposures )

Fishing and boating: from April through November Drinking water and shoreline: from : January through December Swimming: froin June through September.

b Exposury from drinking water is calculated for the city of St. Joseph, Missouri, nearest public water intake from the Missouri River, 84 river miles down the river.

i

k GASEOUS EFFLUENT DOSE CALCULATIONS Doses to the maximum individual and 0- to 50 mile population resulting from the release of radioactive material in gaseous effluents from the Cooper Nuclear Station were calculated using the GASPAR computer program. The site

.selec ted for maximum individual dose calculation is the site boundary.

GASPAR implements the radiological dose models of Regulatory Guide 1.109 for determin-ing the radiation exposure to man from four principal atmospheric exposure pathways: plume, ground, inhalation, and ingestion. Doses to the maximum individual and the population are calculated as a function of age group and pathway for significant body organs. Tables 3 and 4 present, respectively, the maximum individual and population dose summaries for the first and second quarters. Table 5 summarizes maximum individual and population doses for the semiannual period. Because of differences in the amount of valid meteoro-logical data recovered in the first and second quarters, dose contributions from each quarter cannot be summed to provide the semiannual doses.

Assumptions and data sources used for input to the GASPAR code are described in a separate section of this appendix.

C4

Table'3.

Doses,to N ximum Individual at the Site Boundary Resulting from the Release of ' Radioactivity in Caseous Ef fluents, January-March and April-June 1983; Cooper' Nuclear Station COOPER NUCLEAR STATION JANUARY-MARCH. 1983 SPECIAL LOCAT!ON # 1 SITE BOUNDARY AT O.62 MILESNNW ANNUAL BETA AIR DOSE = 2.27E-01 MILL! RADS ANNUAL CAMMA AIR DOSE = 3 68E-01 MILLIRADS PATHWAY T. BODY QI-TRACT BONE LIVER KIDNEY THYROID LUNC SKIN

.+

- - +

_+-----

+-

- - - - - - - +

+

-+

+

+

PLUME I 2.47E-Ot ! 2,47E-01 1 2.47E-01 1 2.47E-01 1 2.47E-01 1 2.47E-01 8 2.SOE-Of f 4.75E-01 1

- - - - + - - - - - - - - - - +

_+


+

+--__.

+

- - +

+_

+

CROUND 1 2.17E-03 1 2.17E-03 8 2.17E-03 1 2.17E-03 8 2.17E-03 1 2.17E-03 8 2.17E-03 1 2.55E-03 8

+_.

--+

+

+

+

+---

-+_

-+

+

VECET I 5.26E-03 8 1.31E-03 I 1.89E-02 8 2.54E-03 1 1.40E-03 8 8.06E-03 1 1.03E-03 I S.39E-04 I

_-+--

--+

_+

+

- - +

+

+

+.

+

MEAT

! 8.78E-05 1 7.07E-05 8 1.36E-04 8 1.07E-04 8 7.06E-05 8 7.44E-04 8 5.65E-05 s 5.06E-05 8

__+

.+

+..

= - - + - -

. _ _ +

_ _ +

_+

-+

COW MILK I 8.60E-04 ! J.98E-04 8 2.17E-03 8 1.77E-03 8 1.02E-03 ! 5.51E-02 8 4.83E-04 8 3.39E-04 I

+_

--+

+ _-

.+

_+

+

+ -.

+

+

b INHAL 1 4.76E-04 8 4.39E-04 3 4.40E-04 I 4.73E-04 8 4.69E-04 8 4.04E-03 1 8 80E-04 1 4.40E-04 8

+

COUPER NUCLEAR STATION APRIL-JUNE. 1983 SPECIAL LOCATION # 1 SITE BOUNDARY AT O.62 MILESNNW ANNUAL BETA AIR DOSE = 1.ItE-01 MILLIRADS ANNUAL CAMMA AIR DOSE = 1.80E-01 MILLIRADS PATHWAY T. BODY CI-TRACT SONE LIVER KIDNEY THYROID LONO SKIN

+-

+---

+-

+-

+

+

+-

+

+

PLUME I 1.21E-01 8 1.21E-01 1 1.21E-01 8 1.21E-01 1 1.21E-01 1 1.21E-01 8 1.22E-01 8 2.33E-01 8

+-

_+

+

+

--+----

.+

+

+

CROUND I 1.82E-02 8 1.82E-02 1 1.82E-02 8 1.02E-02 I 1.82E-02 8 1.82E-02 8 1.82E-02 I 2.15E-02 1

_,----------+

_ _ _ +

+

+--

+-

+

._+

+

VECET I 2.57E-02 1 3.22E-03 8 9.73E-02 3 4.54E-03 I 2.40E-03 l 2.36E-01 1 5.23E-04 8 1.45E-04 8

+.

---+---

.+

_+

_+-

+.

+

+.

+

MEAT I 2.67E-04 8 1.95E-04 5 6.03E-04 8 2.19E-04 8 1.62E-04 3 2.35E-02 8 2.07E-05 I 8.71E-06 8

-+---

+

+ ---

+

-+

+

+

+-

+

COW MILK ! 4.00E-03 I 7.62E-04 8 1.22E-02 8 8.16E-03 3 9.93E-03 8 1.82E+00 3 3 40E-04 8 5.84E-05 t

--+--------.+---

+-----__

+

+

+

-+

+

INHAL 8 2.96E-04 1 1.24E-04 1 1.75E-03 1 3.10E-04 8 4.19E-04 ! 6.74E-02 1 1.73E-03 3 7.57E-05 1


+----------+

--+

+---

+

+

+

+----

+

Table 4.

Doses to Population Within a 50-Mile Radius Resulting frosi the Release of

. Radioactivity in Caseous Effluents, January-March and April-June 1983; Cooper Nuclear Station

(

COOPER NUCLEAR STATION JANUARY-MARCP. 1983 ALARA ANNUAL INTEGRATED POPULATION DC,JE SUNNARY (NANREN) l PATHWAY T. BODY GI-TRACT BONE LIVER KIDNEY THYRO 1D LUNO SKIN l

+ - -

-+

-+

. + -

- - +

+

-+

-+

+

PLUME I 1.2SE-02 8 1.25E-02 8 1.25E-02 8 1.25E-02 8 1.25E-02 8 1.25E-02 ! 1.27E-02 1 2.75E-02 8 t

+

+

+

-+

+

+

+


+

+

5 CROUND

! 1.88E-04 1 1.88E-04 8 1.88E-04 8 1.08E-04 3 1.88E-04 8 1.88E-04 8 1,88E-04 8 2.21E-04 I l

+

+

- - +

+

-+

+-

- - + -

-+

-+

I INHAL 1 8.75E-05 3 8.73E-05 1 4.33E-05 1 8.78E-05 1 8.07E-05 I 9.44E-04 1 1.24E-04 8 8.22E-05 I l

+

+

+

-+

+

+-

_ - +

-+

. - +

VEGET I 3.86E-04 8 1.58E-04 8 1.256-03 1 2.37E-04 8 1.61E-04 1 1.09E-02 8 7.32E-05 8 5.64E-05 I l

- - - +

+

+

---+

+

+

- - + -

-+

+

COW NILK I 1.74E-04 8 3.73E-05 8 3.02E-04 1 2.91E-04 8 1,84E-04 1 1.SOE-02 1 6.25E-05 8 3.87E-05 I i

+

+-

-+

-+

+-

+-

+

+

-+

t HEAT I 2.24E-05 1 2.OOE-05 8 2.54E-05 1 2.43E-05 8 1.62E-05 8 3.40E-04 8 1.17E-05 8 1.03E-05 1

+

+--

+-

-+-

-_+

+

+

-+

+

t n

  • TOTALe 1 1.34E-02 8 1.30E-02 8 1.43E-02 8 1.33E-02 1 1.32E-02 8 3.99E-02 8 1.32E-02 ! 2.79E-02 8 l

+

+

- - +

-+

-+

-+

+

+

+

COOPER NUCLEAR STAT!DN APRIL-JUNE. 1983 ALARA ANNUAL INTEGRATED POPULATION DOSE SUNNARY (MANREN)

{

PATHWAY T. BODY GI-TRACT BONE LIVER KIDNEY THYR 0!D LUNG SKIN i

--+-

-+

+

+

+

+

+

-+

+

PLUME I 3.26E-03 1 3.26E-03 8 3.26E-03 1 3.26E-03 1 3.26E-03 8 3.26E-03 8 3.31E-03 1 7.26E-03 I i

l

+=

+

+

--+

- - +

+

-+

+

+

l GROUND

! 8.97E-04 8 8.97E-04 I 8.97E-04 I 8.97E-04 8 8.97E-04 8 8.97E-04 8 8.97E-04 1 1.05E-03 1

+

+

+

- + -

+ - -

+

+

- - +

+

t INHAL f 3.58E-05 1 2.97E-05 1 1.54E-04 8 3.73E-05 t 4.96E-05 1 6.56E-03 1 1.81E-04 8 1.45E-05 l l

_-+-

+

+

+

+

+

+

VEGET I 1.32E-03 f 4.50E-04 8 4.65E-03 3 4.30E-04 8 C.11E-04 8 8.69E-02 1 2.65E-05 t 1.02E-05 8

+

-+

+

-+

+

+

-+

+

+

COW NILK I 4.36E-04 3 1.17E-04 8 8.97E-04 8 6.29E-04 I 7.56E-04 8 1.30E-01 8 3.14E-C5 8 6.93E-C6 I l

+-

-+

_+-

+

-+

+

+

+

+

NEAT 1 3.92E-05 1 7.23E-05 1 7.88E-05 1 2.86E-05 1 2.20E-05 1 2.94E-03 8 3.33E-06 1 1.04E-06 !

+-

--+

-+

+

+

+ - -

-+

+

+

  • TOTAL
  • I 5.99E-03 8 4.83E-03 8 9.94E-03 8 5.29E-03 8 5.50E-03 I 2.31E-01 3 4.45E-03 8 8.34E-03 8

+

-+

+

+

+

+

+

--+

--+

Table 5.

Summary of Maximum Individual and Population Doses Resulting from the Release of Radioactivity in Caseous Effluents, January-March and April-June 1983; Cooper Nuclear Station COOPER NUCLEAR STATION JAMJAR Y-JUNE, 1983 SPECIAL LOCATION #

1 SITE BOUNDARY AT 0,62 MILESNNW ANNUAL BETA AIR DOSE = 3.36E-01 MILLIRADS ANNUAL CAMMA AIR DOSE = 5.44E-01 MILLIRADS PATHWAY T. BODY GI-TRACT BONE LIVER KIDNEY THYROID LUNO SKIN

+

+

+

+

+

+

+--- -

-+

+

PLUME I 3.66E-01 8 3.66E-01 8 3.66E-01 8 3,66E-01 1 3.66E-01 1 3.66E-01 1 3.69E-01 1 7.04E-01 I

+

+

+

+

+

-+

+-

-+

-+

GROUND 1 3.86E-03 3 3.86E-03 1 3.86E-03 3 3.86E-03 I 3.86E-03 3 3.86E-03 8 3.86E-03 1 4.53E-03 i

+--

+

+

+

+

+

+

+

+

VECET I 2.81E-02 8 2.80E-03 1 1.09E-01 8 6.60E-03 3 3.60E-03 8 2.2tE-01 8 1.48E-03 1 9.19E-04 8

+-

-+

+

+

-+

+

+

+

+

MEAT I 2.52E-04 8 9.93E-05 8 6.96E-04 8 2.84E-04 1 2.16E-04 8 2.19E-02 8 7.31E-05 4 5.54E-05 1

+-

+

+

-+

+

+

+

-+

+

n COW MILK I 5.24E-03 8 9.78E-04 8 1.34E-02 8 9.29E-03 8 1.00E-02 8 1.69E+00 8 8.OOE-04 8 3.71E-04 1

'3 4

+

+

-+

+

+

+

+

+

+

INHAL I 7.35E-04 8 5.34E-04 1 2.35E-03 1 7.70E-04 1 8.90E-04 3 7.87E-02 8 1.39E-CJ l 4.81E-04 8

+--

+

+

+

+

+

+

+

+

COOPER NUCLEAR STA, TION JANUARY-JUNE. 1983 ALARA ANNUAL INTEORATED POPULATION DOSE SUrmARY (MANREMI PATHWAY T. BODY GI-TRACT BONE LIVER KIDNEY THYROID LUNG SKIN

+

-+

+

+

- -+

+

+ -

+

+

PLUME I 1.63E-02 1 1.63E-02 1 1.63E-02 8 1.63E-02 1 1.63E-02 1 1.63E-02 1 1.66E-02 1 3.59E-02 1

+

+

-+

+-

-+

- - +

+

-+

+

OROUND I 3.17E-04 8 3.17E-04 1 3.17E-04 8 3.17E-04 1 3.17E-04 1 3.17E-04 1 3.17E-04 8 3.72E-04 I

+

+

-+

+

-+

+-

+

+

+

INHAL i 1.20E-04 1 1.08E-04 1 2.15E-04 1 1.22E-04 5 1.37E-04 8 8.22E-03 1 2.05E-04 I 9.10E-05 1 +- -

+

-+-

+

- - +

+

+

VE9ET I 1.68E-03 I 4.45E-04 1 5.92E-03 1 6.60E-04 1 6.68E-04 I 9.76E-02 I 9.66E-05 1 6.34E-05 1

+

+

+

+

-+

+

+

+

+

COW MILK I 6.04E-04 8 1.54E-04 8 1.20E-03 1 9.17E-04 1 9.37E-04 8 1.45E-01 I 9.18E-05 I 4.34E-05 I

+-

+

+

+

-+

+

--+

+

+

MEAT I 5.24E-05 1 3.29E-05 8 1.04E-04 1 4.87E-05 1 3.76E-05 1 3,27E-03 8 1.45E-05 8 1.15E-05 8

+-

+

+

+

+

+

+

+

+

+TOTALe i 1.91E-02 1 1.74E-02 8 2.41E-02 8 1.84E-02 1 1.84E-02 1 2.71E-01 1 1.73E-02 1 3.65E-02 1

-+

-+

+

-+

+

+

+

+

-+

COOPER NUCLEAR STATION JANUARY-MARCH, 1983 INDIVIDUAL ANNUAL GAMMA AIR DOSE (MILL 1 RADS)

DISTANCE IN MILES DIR O. O-1,

1. -2.

2.-3.

3.-4.

4. -5.
5. - 10.

10.-20, 20.-30.

30.-40.

40.-50.

N 5.799E-C1 4.812E-02 1.329E-02 7.320E-03 4.270E-03 1.463E-03 4.798E-04 2.151E-04 1. 092E-04 6. 330E -05 NNE 2.795E-01 2.591E-02 8.394E-03 4.229E-03 2.561E-03 1.496E-03 3.980E-04 1.442E-04 7.126E-05 4.049E-05 NE 9.316E-02 9.630E-03 3.534E-03 1.870E-03 1.189E-03 9.149E-04 2.632E-04 9.797E-05 4.795E-05 2.610E-05 ENE 7.167E-02 6.075E-03 1.937E-03 9.541E-04 5.706E-04.4.089E-04 1.129E-04 4.026E-OS 2.044E-05 1.073E-05 E 8.537E-02 7.022E-03 2.093E-03 9.790E-O4 5.64IE-04 3.990E-04 1.100E-04 4.023E-05 1.970E-05 1.133E-05 ESE 5.953E-02 5.745E-03 2.065E-03 1.116E-03 7.154E-04 5.361E-04 1.541E-04 5.670E-05 2.694E-05 1.469E-05 SE 1.600E-01 1.655E-02 5.815E-03 3.024E-03 1.863E-03 7.237E-04 2.159E-04 7.799E-05 3.697E-05 1.976E-05 SSE 1.317E-01 1.352E-02 4.763E-03 2.464E-03 2.164E-03 8.629E-04 2.342E-04 8.462E-05 4.062E-05 2.222E-05 S 3.538E-01 2.997E-02 9.187E-03 4,340E-03 2.876E-03 1.187E-03 3.047E-04 1.193E-04 5.759E-05 3,235E-05 i

SSW 3.509E-01 2.956E-02 9.215E-03 4.982E-03 2.935E-03 1.062E-03 2.430E-04 8.154E-05 3.800E-05 2.051E-05 SW 2.592E-01 2.382E-02 7.258E-03 3.380E-03 1.929E-03 6.810E-04 1.554E-04 5.132E-05 2.367E-05 1,267E-05 WSW 1.164E-01 1.239E-02 't.827E-03 1.792E-03 1.022E-03 3.600E-04 8.699E-05 2.867E-05 1.308E-05 6,889E-06 W

1.142E-01 1.737E-02 5.576E-03 2.682E-03 1.364E-03 5.394E-04 1.391E-04 4.716E-05 2.147E-05 1.108E-05 j

WNW 1.882E-01 2.611E-02 8.180E-03 3.972E-03 2.267E-03 7.642E-04 1.893E-04 6.474E-05 3.OOOE-05 1.623E-05 NW 4.664E-01 5.555E-02 1.674E-02 7.780E-03 4.378E-03 1.439E-03 3.315E-04 1.239E-04 6.106E-05 3.441E-05 NNW 5.540E-01 4.871E-02 1.666E-02 8.361E-03 4.668E-03 1.516E-03 3.566E-04 1.265E-04 6.294E-05 3.661E-05 l

h INDIVIDUAL ANNUA 4. GETA AIR DOSE (MILLIRADS)

DISTANCE Ir4 MILES DIR O. O-1.

1. -2.

2.-3.

3.-4.

4. - 5.

5.-10.

10.-20.

20.-30.

30.-40.

40.-50.

N J.500E-01 2.939E-02 9.197E-03 4.408E-03 2.596E-03 9.523E-04 3.509E-04 1.665E-04 8.939E-05 5.507E-05 NNE 1.723E-01 1.398E-02 5.137E-03 2.372E-03 1.352E-03 9.252E-04 2.650E-04 1.059E-04 5.664E-05 3.463E-05 NE 5.752E-02 5.925E-03 2.174E-03 1.150E-03 7.324E-04 5.746E-04 1.730E-04 7.035E-05 3.775E-05 2.268E-05 l

ENE 4.421E-02 3.728E-03 1.177E-03 5.779E-04 3.474E-04 2.615E-04 7.986E-05 3.218E-05 1.836E-05 1.088E-05 l

E 5.268E-02 4.301E-03 1.263E-03 5.879E-04 3.409E-04 2.548E-04 7.817E-05 3.194E-05 1.718E-05 1.093E-05 ESE 3.668E-02 3.538E-03 1.264E-03 6.824E-04 4.384E-04 3.379E-04 1.050E-04 4.298E-05 2.271E-05 1.374E-05 SE 9.913E-02 1.017E-02 3.573E-03 1.858E-03 1.146E-03 4.494E-04 1.4ISE-04 5.623E-05 2.937E-05 1.733E-05 SSE 8.100E-02 8.302E-03 2.917E-03 1.503E-03 1.331E-03 5.402E-04 1.572E-04 6.282E-05 3.320E-05 2.OOOE-05

}

S 2.178E-01 1.838E-02 5.574E-03 2.622E-03 1.749E-03 7.312E-04 2.159E-04 9.42SE-05 4.998E-05 3.083E-05 i

SSW 2.14.4E-01 1.813E-02 5.575E-03 3.013E-03 1.788E-03 6.792E-04 1.781E-04 6.704E-05 3.402E-05 2.OO3E-05 SW 1.399E-01 1.459E-02 4.397E-03 2.044E-03 1.172E-03 4.332E-04 1.127E-04 4.2OOE-05 2.117E-05 1.236E-05 WSW 7.192E-02 7.555E-03 2.315E-03 1.088E-03 6.274E-04 2.337E-04 6.430E-05 2.374E-05 1.190E-05 6.922E-06 W 7.037E-02 1.061E-02 3.396E-03 1.638E-03 9.613E-04 3.442E-04 9.846E-05 3.733E-05 1.874E-05 1.077E-05 WNW 1.161E-01 1.593E-02 4.963E-03 2.414E-03 1.388E-03 4.893E-04 1.355E-04 5.120E-05 2.587E-05 1.522E-05 l

NW 2.880E-01 3.383E-02 1.010E-02 4.700E-03 2.671E-03 9.286E-04 2.576E-04 9.876E-05 5.173E-05 3.114E-05 NNW 3.422E-01 2.965E-02 1.OO2E-02 5.053E-03 2.862E-03 9.993E-04 2.716E-04 1.046E-04 5.SOGE.-05 3.391E-05 i

l i

6667666666666666 6667766666666666 0000000000000000 0000000000000000 0-0-

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- 9424462144633597 1511820510843747

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.487870479238O290 06737443799644914 0762994369830O512 4................

4................

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3EEEEEEEEEEEEEEEE 3EEEEEEEEEEEEEEEE 8951780358463401 4165454994486562

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2761235511998122 1431123381653611 E E E E W W W W E E E E W W W W RNNENESESSSWSWNWN RhNENESESSSWSWNWN NNE ESS SSW WNN I

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COOPER NUCLEAR STATION JANUARY-JUNE, 1983 INDIVIDUAL ANNUAL GAMMA AIR DOSE (MILLIRADS)

DISTANCE IN MILES DIR O. O-1.

1. -2.

2.-3.

3.-4.

4. - 5.
5. -10, 10.-20.

20.-30.

30.-40.

40.-50.

N 7.333E-01 6.415E-02 1.983E-02 9.463E-03 5.470E-03 1.856E-03 5.198E-04 2.050E-04 9.999E-05 5.703E-05 NNF 3.290E-01 3.057E-02 9.641E-03 4.769E-03 2.816E-03 1.516E-03 3.946E-04 1.374E-04 6.464E-05 3.580E-05 NE 1.657E-01 1.603E-02 5.12SE-03 2.388E-03 1.566E-03 9.153E-04 2.480E-04 8.897E-05 4.277E-05 2.356E-05 ENE 8.378E-02 7.338E-03 2.318E-03 1.133E-03 6.738E-04 4.432E-04 1.242E-04 4.559E-05 2.357E-05 1.276E-05 E 9.657E-02 8.535E-03 2.696E-03 1.339E-03 8.118E-04 6.452E-04 1.838E-04 6.692E-05 3.197E-05 1.839E-05 ESE 1.068E-01 9.824E-03 3.192E-03 1.602E-03 9.706E-04 6.118E-04 1.747E-04 6.401E-05 3.057E-05 1.678E-05 SE 2.099E-01 2.057E-02 7.028E-03 3.564E-03 2.193E-03 8.628E-04 2.757E-04 1.054E-04 5.195E-05 2.857E-05 SSE 1.889E-01 1.798E-02 5.957E-03 2.984E-03 2.468E-03 9.487E-04 2.561E-04 9.268E-05 4.472E-05 2.488E-05 S 4,678E-01 4.184E-02 1.283E-02 6.160E-03 4.077E-03 1.385E-03 3.928E-04 1.407E-04 6.550E-05 3.601E-05 SSW 4.973E-01 4.289E-02 1.296E-02 6.395E-03 3.852E-03 1.337E-03 2.889E-04 9.082C-05 4.046E-05 2.147E-05 SW 3.442E-01 3.368E-02 1.016E-02 4.718E-03 2.693E-03 9.161E-04 2.OO2E-04 6.346E-05 2.855E-05 1.52SE-05 WSW 2.291E-01 2.293E-02 6.879E-03 3.177E-03 1.779E-03 5.761E-04 1.231E-04 3.719E-05 1.649E-05 8.55GE-06 W 2.228E-01 2.614E-02 8.100E-03 3.795E-03 2.160E-03 7.084E-04 1.658E-04 5.288E-05 2.332E-05 1.215E-05 WNW 3.064E-01 3.421E-02 1.049E-02 4.993E-03 2.835E-03 9.418E-04 2.163E-04 7.046E-05 3.242E-05 1.736E-05 NW 6.678E-01 7.923E-02 2.436E-02 1.194E-02 6.396E-03 2.228E-03 5.375E-04 1.801E-04 8.32OE-05 4.723E-05 NNW 7.995E-01 7.411E-02 2.580E-02 1.318E-02 7.496E-03 2.508E-03 5.726E-04 1.922E-04 9.169E-05 5.143E-05 n

C INDIVIDUAL ANNUAL BETA AIR DOSE IMILLIRADS)

DISTANCE IN MILES DIR O.O-1.

1. -2.

2.-3.

3.-4.

4. -5.
5. - 10.

10.-20.

20.-30.

30.-40.

40.-50.

N 4.530E-01 3.949E-02 1.203E-02 5.696E-03 3.291E-03 1.156E-03 3.711E-04 1.636E-04 8.614E-05 5.240E-05 NNE 2.031E-01 1.888E-02 5.924E-03 2.914E-03 1.711E-03 9.321E-04 2.390E-04 1.OO9E-04 5.275E-05 3.199" v5 NE 1.023E-01 9.894E-03 3.155E-03 1.589E-03 9.394E-04 5.657E-04 1.611E-04 6.345E-05 3.370E-05 2.043E-05 ENE 5.172E-02 4.524E-03 1.419E-03 6.891E-04 4.092E-04 2.772E-04 8.407E-05 3.448E-05 1.985E-05 1.196E-05 E

5.959E-02 5.265E-03 1.650E-03 8.141E-04 4.926E-04 4.057E-04 1.258E-04 5.162E-05 2.763E-05 1.772E-05 ESE 6.389E-02 6.062E-03 1.959E-03 9.778E-04 5.900E-04 3.817E-04 1.175E-04 4.824E-05 2.374E-05 1.370E-05 SE 1.296E-01 1.266E-02 4.326E-03 2.194E-03 1.351E-03 5 338E-04 1.771E-04 7.303E-05 3.928E-05 2.363E-05 SSE 1.164E-01 1.107E-02 3.657E-03 !.823E-03 1.512E-03 5.800E-04 1.688E-04 6.741E-05 3.578E-05 2.180E-05 S 2.886E-01 2.500E-02 7.849E-03 3.744E-03 2.475E-03 9.799E-04 2.671E-04 1.092E-04 5.679E-05 3.447E-05 SSW 3.072E-01 2.641E-02 7.878E-03 3.982E-03 2.327E-03 8.360E-04 2.095E-04 7.707E-05 3.834E-05 2.234E-05 l

SW 2.127E-ut 2.068E-02 6.163E-03 2.848E-03 1.629E-03 5.773E-04 1.460E-04 5.345E-05 2.660E-03 1.350E-05 WSW 1.416E-01 1.404E-02 4.163E-03 1.919E-03 1.080E-03 3.680E-04 9.324E-C5 3.314E-05 1.636E-05 T.413E-06 W

1.376E-01 1.600E-02 4.923E-03 2.303E-03 1.318E-03 4.505E-04 1.213E-04 4.462E-05 2.201E-05 1,271E-05 WNW 1.893E-01 2.097E-02 6.379E-03 3.023E-03 1.720E-03 5.901E-04 1.550E-04 5.770E-05 2.917E-05 1.705E-05 NW 4.126E-01 4.855E-02 1.479E-02 6.975E-03 3.994E-03 1.392E-03 3.816E-04 1.449E-04 7.48GE-05 4.475E-05 NNW 4.941E-01 4.543E-02 1.362E-02 7.956E-03 4.545E-03 1.388E-03 4.212E-04 1.603E-04 8.297E-05 4.998E-05

4 DOSE CALCULATION MODELS To evaluate the radiological consequences of the routine release of liquid cad gaseous effluents from the Cooper Nuclear Station, two computer codes

)

were used: LADTAP II for liquid doses and CASPAR for gassous doses (Ref.

.I and 2).

Both of these computer codes implemented the dose calculational methodologies of U.S. NRC Regulatory Guide 1.109, Revision 1 (Ref.1).

Source terms for each quarter and for the semiannual period are combined with station-specific demographic data and either hydrological dilution fac-

't tors, for liquid dose calculations, or atmospheric diffusion estimates, for gaseous dose calculations.

Fce liquid dose calculations, the hydrological dilution factors used for input to LADTAP II, as well as other input parameters, are listed in Table 6.

Other inputs not specifically listed in this table are taken from Regulatory Guide _1.109, Revision 1.

For gaseous dose calculations, atmospheric diffusion estimates are obtained from the reduction and processing of onsite meteorological data, as described in ' Appendix B.

Additional input to CASPAR includes the following station-

. cupplied data 2 -

0- to 50 mile population distribution

-o 0- to 50-mile meat, milk, and vegetable production distributions o

Absolute humidity at the Cooper Nuclear Station (14.61 g/m )

o The fraction of the year that vegetables are grown (0.5) o 4

The fraction of the daily feed intake derived from pasture for o

milk and meat animals (0.5).

F Other values used for input to CASPAR are default values from Regulatory Guide 1.109, Rev. 1.

r l

l l

C11

Table 6.

Values of Parameters Used to Make Dose Estimates Resulting from Liquid Discharges January - June 1983, cooper Nuclear Station I

3 i

Values Assigned Parame te r Individual Population Reference Source Cooling flow rate (cfs) 773; 700*

773; 700*

Station data -

Dilution fac tor 1

37.64; 73.35' Station data Holding time:

c b

Drinking water 12 hg 22.4 hg Station data Shoreline exposure 0 hr 22.4 hr Station data b

Swinani ng 0 hr 22.4 hr Station data n

3 g

Boating 0 hr 22.4 hr Station data "First and second quarters for 1983, respectively.

Based on an average Missouri River water flow of 5.5 ft/see, 84 miles down the river.

Values from Regulatory Guide 1.109, Revision 1.

e I

i

Re ferenc e s 1.

U.S.' Nuclear Regulatory Commission, NUREG-0597, " User's Guide to CASPAR Code," June 1980.

2.

U.S. Nuclear Regulatory Commission, NUREG/CR-1276, " User's Manual for LADTAP II: A Computer Code for Calculating Radiation Exposure to Man from Routine Release of Nuclear Reactor Liquid Effluents," 1980.

3.

U.S. Nuclear Regulatory Conunission, Regulatory Guide 1.109, " Calculation of Annual Doses to Man from Routine Release of Reactor Effluents for the Purpose of Evaluating Compliance with 10 CFR 50, Appendix I," Revision 1,:1977.

v C13

ISOPLETH FIGURES The average atmospheric diffusion estimate isopleths presented in this section were generated from output of the computer code XOQD0Q. These figures present relative concentrations for undepleted and undecayed atmospheric releases.

Isopleth fields are presented for both a 0- to 5 mile area and a 0- to 50-mile area centered on the Cooper Nuclear Station. The periods covered by the isopleths are January through March, April through June, and January through June 1983. Separate figures are given for the ground-level (vent stack) and elevated release points. The isopleths of gamma radiation dose were generated from output of the GASPAR computer code. The isopleths are for a combined ground-level (vent stack) and elevated release, and cover the same area and time periods given for the atmospheric diffusion estimates.

These figures are presented for purposes of displaying general data trends only. Due to the inaccuracies introduced by smoothing of the gridded data fields by the plotting routines, these plots should not be used to extract absolute values of the parameters for given distances and directions. Exact values of these parameters can be obtained from the tables of atmospheric diffusion estimates provided in Appendix B and doses provided in Appendix C.

f t

C14

~,

List of Figures No.

Title 1.

Cooper Nuclear Station and Surrounding Area from 0-5' miles 2.

Cooper Nuclear Station and Surrounding Area from 0-50 miles 3.

Atmospheric Diffusion Estimate Isopleths, 0-5 Mijes, Ground-Level Releases, January-brch 1983 (sec/m )

4.

Atmospheric Diffusion Estimate Isopleths, 0-50 Hj)les, Ground-Level Releases, January-brch 1983 (sec/m

-5.

Atmospheric Diffusion Esti=ste Isopleths, 0-j) Miles, Elevated Releases, January-brch 1983 (sec/m 6.

Atmospheric Diffusion Estimate Isopleths, 0-j0 Miles, Elevated Releases, January-brch 1983 (sec/m )

7.

Atmospheric Diffusion Estimate Isopleths, 0-5 Mues, 3

Ground-Level Releases, April-June 1983 (sec/m )

8.

Atmospheric Diffusion Estimate Isopleths, 0-5g) Miles, Ground-Level Releases, April-June 1983 (sec/m 9.

Atmospheric Diffusion Estimate Isopleths,3) 5 Miles, 0-Elevated Releases, April-June 1983 (sec/m 10.

Atmospheric Diffusion Estimate Isopleths,3) 50 Miles, 0-Elevated Releases, April-June 1983 (sec/m 11.

Atmospheric Diffusion Estimate Isopleths, 0-5 Hj)les, Ground-Level Releases, January-June 1983 (sec/m 12.

Atmospheric Diffusion Estimate Isopleths, 0-50 g)iles, Ground-Level Releases, January-June 1983 (sec/m 13.

Atmospheric Diffusion Estimate Isopleths, 0 5 Miles, 3

Elevated Releases, January-June 1983 (sec/m )

14. Atmospheric Diffusion Estimate Isopleths, 0 50 Miles, 3

Elevated Releases, Janu. y-June 1983 (sec/m )

15. Casana Air Dose Isopleths, 0-5 Miles, January-brch 1983 (millirad)
16. Germa Air Dose Isopleths, 0-50 Miles, January-brch 1983 (alllirad) i l

C15

. ~.

List of Figures (Continued)

No.

Title

17. Gesuna Air Dose Isopleths, 0-5 Miles, April-June 1983 (millirad) 18.

Gamma Air Dose Isoplethe, 0-50 Miles, April-June 1983 (alllirad) 19.

Gauuna Air Dose Isopleths, 0-5 Miles, January-June 1983 (millirad) 20.

Gammaa Air Dose Isopleths, 0-50 Miles, January-June 1983 (millirad)

C16

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Atmospheric Diffusion Estimate Isopleths, 0-5g) Miles Figure 8 Ground-Level Releases April-June 1983 (sec/m C24

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C29

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.C31

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C33

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C34

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C35

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C36