ML20107M432
ML20107M432 | |
Person / Time | |
---|---|
Site: | Cooper |
Issue date: | 06/30/1984 |
From: | Pilant J NEBRASKA PUBLIC POWER DISTRICT |
To: | Jay Collins NRC OFFICE OF INSPECTION & ENFORCEMENT (IE REGION IV) |
References | |
NUDOCS 8411140150 | |
Download: ML20107M432 (150) | |
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NEBRASKA PUBLIC POWER DISTRICT' COOPER NUCLEAR STATION 4
SEMIANNUAL OPERATING REPORT
[ RADI0 ACTIVE EFFLUENTS
- January 1, 1984, through June-30, 1984 4
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USi4RC Docket 50-298 2
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Contents g- .
n Introduction Appendix A: Source Terms Appendix B: Meteorology Appendix C: Dose Calculations 6
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INTRODUCTION a
This report summarizes meteorological data and doses from radioactive effluents
- for' the Cooper Nuclear Station for the period January through June 1984.
. The data presented meet the reporting requirements of Regulatory Guide 1.21 of the U.S. Nuclear Regulatory Commission (Revision 1, June 1974).
The report is organized into three parts. Appendix A presents the effluent dDd waste disposal source term data. Appendix B presents a summary of onsite meteorological data for the report period, including atmospheric diffusion estimates 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 and doses, and a description of the dose calculation models.
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u APPENDIX A SOURCE TERMS EFFLUENT AND WASTE DISPOSAL REPORTS O
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n EFFLUENT AND: WASTE DISPOSAL (January through June 1984) a.
- Cooper Nuclear Station effluent and waste disposal data ace presented below in the format prescribed by Regulatory Guide 1,21.
Facility: Cooper Nuclear Station License: DPR-46
- 1. . Regulatory Limits
- a. Fission and activation gases Restrictions on gaseous activity release:
Maximum release rate of noble gases and tritium (except for halogens and particulates with half-lives greater than 8 days):
Os (2.5Eys + 1.25Egs) + Qv (7.3Eyv + 77Epv) 5 0.16 when averaged over a calendar quarter.
y- gama S-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 Eyv are the average gamma energies per disintegration of stack and vent effluents; Egs and Egv are the average beta energies from stack and vent effluents, b.&c. Iodines and particulates with half-lives of greater than 8 days.
The release rates of I-131 and particulates .>ith half-lives greater than 8 days released to the environs as part of airborne effluents shall not exceed:
Os + Qv s 0.08 7.7E-06 2.lE-06 when averaged over a calendar quarter.
Where Qs and Ov 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 radwaste building vents.
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- d. Liquid Effluents
- Maximum calendar cuarter release rate of radioactive liquid l effluents (excluding tritium and noble gases): 25 curies. l Al
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Maximum activity of discharged liquid radwast'e tank (sample '
tankonly): 10 curier, ,
. Maximum radioactivity release concentration of discharge channel liquid effluents shall not exceed the values specified in 10 ,
CFR 20, Appendix B, Table II, Column 2, for unrestricted areas. l
- 2. Maximum Permissible Concentrations '(MPC) I l
No MPC values are required specifically in Cooper Nuclear Station Environ-mental Technical Specifications for:
- a. Fission and activiation gases,
- b. Iodines, or
- c. Particulates with half lives of greater than 8 days.
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 relense 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.
- d. Liquid Effluents The maximum permissible concentrations (MPC) used to calculate.
permissible liquid release rates are from 10 CFR 20 Appendix ~
o B, Table II, Column 2, and applicable notes to Appendix B.
- 3. Average Energy The average energy (E) of the radionuclide mixtures of fission and acti-vation gases released is as follows:
1st Quarter 2nd quarter
~E s = 0.22 Mev/ disintegration $s = 0.24 Mev/ disintegration Eys = 0.18 Mev/ disintegration Eys = 0.20 Mev/ disintegration E v(Rx) = 0.41 Mev/ disintegration @v(Rx) = 0.45 Mev/ disintegration Eyv(Rx) = 0.78 Mev/ disintegration Eyv(Rx) = 0.83 Mev/ disintegration (TG) = 0.38 Mev/ disintegration @v(TG)=0.41Mev/ disintegration v(TG) = 0.75 Mev/ disintegration Eyv(TG) = 0.80 Mev/ disintegration v(ARW) = 0.47 Mev/ disintegration @v(ARW)=0.50Mev/ disintegration v(ARW) = 0.81 Mev/ disintegration Eyv(ARW) = 0.84 Mev/ disintegration 4
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- 4. Meesurements and Approximations of Total Radioactivity I The methods used to measure or approximate the total radioactivity in effluents and to determine radionuclide composition are as follows:
- a. Fission and activation' gases Radioactivity and radionuclide composition is determined by laboratory GeLi detector analysis in correlation with continuous gross radioactivity monitoring by a gaseous channel detector in the release pathway.
- b. Iodines Charcoal cartridges provide continuous sample collection. These cartridges are analyzed for radioactivity and radionuclide composi-tion in the laboratory by a GeLi detector gamma spectrometer.
Continuous radioactivity monitoring of the charcoal cartridge is also provided by a Nal detector in-line with the vent release pathways.
- c. Particulates Particulate filters provide continuous sample collection. These filters are analyzed 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 pathways.
.d. Liquid effluents Each batch of liquid effluent is analyzed for radioactivity and radionuclide composition in the laboratory by a GeLi detector gamma spectrometer. Each batch is also analyzed for gross radio-activity by both gross beta and gamma. In addition, each batch is monitored for gross radioactivity by a Na1 detector in-line with the release pathway.
- 5. Batch Releases The following information relates to batch releases of radioactive materials in liquid and gaseous effluents:
- a. Liquid
- 1. Number of batch releases: 88
- 2. Total time period of batch releases: 2.40 E+04 minutes
- 3. Maximum time period of batch release: 6.72 E+02 minutes
- 4. Average time period of batch releases: 2.73 E+02 minutes
- 5. Minimum time period for a batch release: 1.30 E+02 minutes
- 6. Average stream flow during periods of release of effluent into a flowing stream: 1.15 E+08 liters / minute l
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b.- Gaseous
.l. Number of batch releases: None. *
- 2. Total time period for batch relea'ses: N/A
- 3. Maximum time period for a batch release: N/A *
- 4. Average time period for batch releases: N/A
- 5. Minimum-time period for batch release: N/A
- 6. Abnormal Release
- a. Liquid
- 1. Number of releases: 0
- 2. Total activity released: None
- b. Gaseous i
- 1. Number of releases: 0
- 2. Total activity released: None i
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Table 1A. Effluent and Waste Disposal Semiannual Report
. Gaseous Effluents - Summation of All Releases i Est. Total Unit 1st/Ouarter 2nd/Ouarter Error %
Fission & activiation gases
- 1. Total release Ci 3.78 E+02 3.73 E+02 2.0 E+01
- 2. Average release rate for period gCi/sec 4.81 E+01 4.75 E+01
- 3. Percent of Technical Specification limit %
- 1. Total Iodine-131 Ci < 1.41 E-03
_ s 2.40 E-03 3,0 E+01
- 2. Average release rate for period yC1/sec s 1.80 E-04 5 3.05 E-04
- 3. Percent of Technical Specification 1imit % ** **
Particulates
- 1. Particulates with hal f-l ives 8 days Ci s 1.62 E-03 5 9.23 E-04 5.0 E+01
- 2. Average release rate for period pCi/sec 5 2.06 E-04 5 1.17 E-04
- 3. Percent of Technical Specification limit % ** **
- 4. Gross alpha radio-activity Ci s 3.01 E-06 s 3.55 E-06 Tritium
- 1. Total release Ci 9.07 E-01 1.53 E+u0 3.0 E+01 2.. Average release rate for period uCi/sec 1.15 E-01 1.95 E-01
- 3. Percent of Technical Specification lirait % * *
- The noble gases and tritium are combined in the Technical Specification discharge limit. The first quarter releases were 8.22 E-01% of the allowable limit, while the second quarter releases were 5.57 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 1.67 E-01% of the allowable limit, while the second quarter releases were 1.63 E-01%
of the allowable limit.
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i Table 18. Effluent and Waste Disposal Semiannual Report Gaseous Effluent - Elevated Release .
Continuous Mode Batch Mode * .
Nuclides Released Unit 1st Quarter 2nd Quarter Fission gases:
Krypton-85 Ci 2.64 E+00 1.80 E+00 Krypton-85m Ci 6.70 E+01 1.24 E+02 Krypton-87 C1 1.70 E-02 4.00 E-02 Krypton-88 Ci 1.70 E+01 4.79 E+07.
Xenon-133 Ci 2.02 E+01 2.66 E+01 Xenon-135 Ci --- ---
Xenon-135m Ci --- ---
Xenon-138 Ci --- ---
Krypton-89 Ci --- ---
Krypton-83m Ci 2.18 E-01 4.40 E-01 Xenon-137 Ci --- ---
Xenon-133m Ci 7.18 E-04 1.03 E-03 Xenon-131m Ci 6.81 E-01 8.30 E-01 Total for period Ci 1.08 E+02 2.02 E+02 Iodines:
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Iodine-131 Ci 1.09 E-03 1.43 E-03 .
Iodine-133 Ci 7.79 E-03 2.37 E-03 Iodine-135 Ci 1.06 E-02 2.17 E-03 Total for period C1 1.95 E-02 6.47 E-03 Particulates:
Strontium-89 Ci 2.53 E-07 9.39 E-06 Strontium-90 Ci 1.14 E-07 1.05 E-06 Cesium-134 Ci 5 5.27 E-07 s8.55 E-07
. Cesium-137 Ci s 8.08 E-07 s 1.92 E-06 Barium-lanthanum-140 Ci s 4.75 E-05 s 1.54 E-04 Iodine-131 Ci s 1.29 E-06 5 4.56 E-06 Cobalt-58 Ci ---
6.51 E-07 Cobalt-60 Ci 1.88 E-06 3.22 E-06 Manganese-54 C1 2.81 E-07 9.77 E-06 Chromium -51 Ci ---
1.08 E-06 Total for period Ci s5.27 E-05 s 1.78 E-04
- No batch discharges were made. .
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Table IC. Effluent and Waste Disposal Semiannual Report Gaseous Effluents - Building Vent Releases
,, Nuclides Released Unit 1st Quarter 2nd Quarter Fission qases:
Krypton-85 C1 1.74 E-02 3.86 E-03 Krypton-85m Ci 1.72 E+01 1.03 E+01 Krypton-87 Ci 3.81 E+01 2.61 E+01 Krypton-88 Ci 5.28 E+01 3.33 E+01 Xenon-133 Ci 2.55 E+01 1.10 E+01 Xenon-135 Ci 6.88 E+01 3.84 E+01 Xenon-135m Ci 8.60 E+00 6.82 E+00 Xenon-138 Ci 4.58 E+01 3.64 E+01 Krypton-89 Ci 1.19 E+00 6.30 E-01 Krypton-83m Ci 8.36 E+00 5.49 E+00 Xenon-137 Ci 3.00 E+00 1.75 E+00 Xenon-133m Ci 9.95 C-01 4.60 E-01 Xenon-131m Ci 4.55 E-02 2.00 E-02' Total for period Ci 2.70 E+02 1.71 E+02 Iodines:
Iodine-131 Ci s 3.22 E-04 s 9.56 E-04 Iodine-133 Ci s 1.86 E-03 6 1.95 E-03 Iodine-135 Ci 19.20 E-03 54.33 E-03 Total for period Ci 5 1.14 E-02 5 7.30 E-03 Particulates:
Strontium-89 Ci 1.16 E-05 9.90 E-06 Strontium-90 Ci 6.33 E-06 4.53 E-06 Cesium-134 Ci s 3.34 E-05 s4.12 E-05 Cesium-137 Ci 5 8.98 E-04 55.04 E-05 Barium-lanthanum-140 Ci 5 3.21 E-04 63.26 E-04 Iodine-131 Ci 5 5.72 E-05 67.69 E-05 Cobalt-58 Ci --- ---
Cobalt-60 Ci 2.32 E-04 2.18 E-04 Mangancse-54 Ci 5.70 E-07 Chromium-54 Cl 8.76 E-06 1.81 E-05 Total for period Ci s1.57 E-03 67.45 E-04 o
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J Table 2A. Effluent and Waste Disposal -Semiannual Report Liquid Effluents --Summation of All Releases .
Est. Total ~
Unit 1st Quarter 2nd Quarter Error %
Fission & activation products
- 1. Total release (not includ-ing tritium, gases, alpha) Ci $1.60 E+00 $1.14 E+00 2.0 E+01
- 2. Average diluted concentra-tion during period uCi/ml $1.19 E-07 s4.85 E-08
- 3. Percent of applicable limit % 6.40 E+00 4.56 E+00 Tritium
- 1. Total release Ci s2.40 E+00 $1.91 E+01 2.0 E+01
- 2. Average diluted concen-tration during period uCi/ml 51.79 E-07 s8.27 E-08
- 3. Percent of applicable limit % 5.97 E-03 2.76 E-03 Dissolved and entrained gases
- 1. Total release Ci 58.61 E-03 s1.12 E-02 5.0 E+01
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tration during period uCi/mi s 6.43 E-10 s4.85 E-10
- 3. Percent of applicable limit % NA NA Gross aloha radioactivity
- 1. Total release Ci 5 1.42 E-03 62.23 E-02 5.0 E+01 Volume of waste released (prior to dilution) liters 2.38 E+06 3.41 E+06 1.0 E+01 Volume of dilution water used during period liters 1.34 E+10 2.31 E+10 1.0 E+01 NA = None applicable I
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Table 28. Effluent and' Waste Disposal Semiannual Report ,
.. Liquid Effluents l
. Continuous Mode
- Batch Mode Nuclides Released Unit 1st Quarter 2nd Quarter Strontium-89 Ci 7.59 E-03 1.09 E-02 Strontium-90 Ci 2.52 E-04 5.90 E-04 Cesium-134 Ci 4.67 E-01 5 3.79 E-01 Cesium-136 Ci --- 4.03 E-03 Cesium-137 Ci 5.71 E-01 $5.01 E-01 Iodine-131 Ci 55.71 E-03 51.01 E-02 Cobalt-58 Ci s 1.75-E-02 56.22 E-03 Cobalt-60 Ci s2.84 E-01 s 9.63 E-02 Iron-59 Ci s 2.71 E-03 51.97 E-03 Zinc-65 Ci 57.79 E-03 s.4.62 E-03 Manganese-54 Ci s4.97 E-02 s1.21 E-02 Chromium-51 Ci < 1.18 E-01 53.25 E-02 Zirconium-niobium-95 Ci 26.70E-03 s4.93 E-03 Molybdenum-99 Ci s1.01 E-02 s1.21 E-02 Technetium-99m Ci s6.44 E-03 $3.50 E-03 Barium-lanthanum-140 Ci' (7.42 E-03 51.04 E-02 Cerium-141 Ci s5.55 E-03 56.36 E-03 Silver-110m Ci '52.72 E-03 s4.23 E-03 Sodium-24 Ci 7.48 E-03 s1.48 E-03 Unidentified Ci 52.48 E-02 53.17 E-02
, Neptunium-239 Ci 1.07 E-03 Total for period .
. above C1 1.60 E+00 1.12 E+00 Xenon-133 Ci s5.00 E-03 57.44 E-03 Xenon-135 Ci 53.61 E-03 5 3.72 E-03
- No continuous mode discharges made.
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Table 3. Effluent and Waste Disposal Semiannual Report Solid Waste and Irradiated Fuel Shipments Period January 1, 1984, to June 30, 1984 A. SOLID WASTE SHIPPED OFFSITE FOR BURIAL OR DISPOSAL (not irradiated fuel)-
6-Month Est. Total
- 1. Type of waste Unit- Period Error %
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- a. Spent resins, filter sludges, m 6.71 E+01 15 evaporator bottoms, etc. Ci 8.16 E+01 3
- b. Dry compressible waste, m 3.43 E+01 25 contaminated equipment, etc. Ci 1.10 E-03 3
- c. Irradiated components, m None control rods, etc. Ci 3
- d. Other m None Ci
- 2. Estimate of major nuclide composition (by type of waste), percent
- a. Chromium-51 5.27 E-01 Cabalt-60 3.81 E+01 Cobalt-58 1.04 E+00 Manganese-54 3.79 E+00
. Zinc-65 8.43 E-01 Silver-110m 2.89 E-01 Iodine-131 8.77 E-01
- Cesium-137 2.59 E+01 Cesium-134 2.18 E+01 Barium-lanthanum-140 1.08 E+00
- Carbon-14 6.26 E-04 Technetium-99 5.17 E-05 Iodine-129 1.30 E-03 Plutonium-241 2.07 E-01 Curium-242 7.77 E-03 Transuranics 1.67 E-02 Tritium-3 3.69 E-02 Nickel-63 7.61 E-01 Strontium-90 4.66 E+00 Cerium-41 3.98 E-02 a
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Table 3. Effluent and Waste Disposal- Semiannual Report -
-Solid waste and Irradiated Fuel Shipments .
Period January 1, 1984, to June 30, 1984
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- b. Cobalt-60 4.82 E+01 Manganese-54 1.04 E+00 Cesium-137 2.03 E-01 Cesium-134 1.72 E-01 Iron-55 4.32 E+01 Technetium-99 2.32 E-05 L Iodine-129 1.04 E-04 Plutonium-241 5.37 E-04 Curium-242 3.09 E-05 Transuranics 3.61 E-05 Tritium-3 2.69 E-04 Nickel-63 7.09 E+00 Strontium-90 4.15 E-05 Antimony-125 4.28 E-01
- 3. Solid waste disposition
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Number of Shipments Mode of Transcortation Destination 24 Exclusive Use Beatty, Nevada B. IRRADIATED FUEL SHIPMENTS (Disposition)
Number of Shipments Mode of Transoortation Destination None --- ---
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P-APPENDIX B METEOROLOGY 5
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CONTENTS
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' METEOROLOGICAL CATA SUMMARIES B1 MONTHLY SUPf4ARY TABLES OF HOURLY METEOROLOGICAL DATA B6 JOINT FREQUENCY DISTRIBUTION TABLES B64 ATMOSPHERIC DIFFUSION ESTIMATES B113
~ ATMOSPHERIC DIFFUSION MODEL B150
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METEOROLOGICAL DATA SUMMARIES 7 Me'teorological data collected onsite for the' period January l', 1984, through
' June 30,.1984, were reduced, validated, summarized for analysis, and included
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in appropriate dose calculations. Hourly data summaries are provided for all
- collected parameters and for the~ joint frequency distributions (JFDs) of wind speed and wind direction by atmospheric stability class.
The Cooper Nuclear Station meterological monitoring system was upgraded during the report period. Data for January 1 through April 30, 1984, were collected
, from the old system, and data for May 1 through June 30, 1984 were collected from the new system. For consistency,' references to measurement units and
- levels are based on the new system throughout. As an example,'35-foot winds from the old system are refered to as 10-meter winds since that is the measure-ment level for the new system. Table 1 provides of list of parameters from the old system and the corresponding parameter from the new system.
First Quarter (January-through March 1984)
Data Recovery: Data recovery statistics are provided in Table 2 for pertinent meteorological parameters. All 10-meter wind direction data were lost during -
the first quarter due to a faulty potentiometer. Significant data-loss also occurred for'10-meter wind speed due to a severed transmission cable from the tower to the recorder, anc unresolvable chart timing problems. Because of
- these large data losses, 100-meter wind speeds and directions were substituted -
for missing 10-meter wino speeos ano directions for the entire period. The substituted 100-meter wind speeds were adjusted to the 10-meter level according to the standard power law adjustment employed by the Nuclear Regulatory Commission (see Reference 2 under Atmospheric Diffusion Model, p. 8152). Data losses for i other parameters were due to inking and/or timing problems.
Wind: Predominant wind directions at the 100 meter level were from the north-
- - west through north sectors (36 percent) with smaller secondary peaks for winds from the southeast (8 percent) and west-southwest (7 percent). The quarterly
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i mean wind speed at 100-meters was 14.4 miles per hour with 42 percent of the i occurrences below 12.5 miles per hour. The maximum hourly average wind speed was 51 miles per hour on January 29.
L Temperature: The mean hourly average temperature for the first quarter was
-1.00C with an average daily maximum of 3.00C and an average daily mi.nimum of
-4.40C. The maximum temperature was 18.3oC on February 22, and the minimum ,
was -23.30C for January 20.
- Precipitation
- Total precipitation for this quarter was 2.82 inches. The
! maximum daily precipitation total for the first quarter was 0.52 inches, which occurred on February 15. The maximum one-hour total precipitation was 0.20
, inches on January 4. It is likely that these summarized precipitation totals j are somewhat less than actual amounts received at the site due to periods of i' missing data. In some cases, precipitation data were missing at the site, due
! mainly to inking problems, during recorded precipitation events at the Lincoln, Nebraska National Weather Service (NWS) station. Therefore, data recovery statistics for precipitation of less than 100 percent can be misleading in i drawing conclusions about the representativeness of the recovered precipitation 4
data for the site.
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Table 1 Cooper Nuclear Station Meteorological Parameters ..
for the Old and New Systems Old System New System * -
January-April 1984 May-June 1984
. 318-foot wind speed (mph) 100-meter wind speed (mph) 318-foot wind direction (deg) 10-meter wind direction (deg) 35-foot wind speed (mph) 10-meter wind speed (mph) 35-foot wind direction (deg) 10-meter wind direction-(deg) 318-foot temperature (oF) 100-meter temperature-(oC) 155-foot temperature (oF) 60-meter temperature (OC) 35-foot temperature (0F) 10-metertemperature-(oC) 318 ft-155 ft delta T(CF) 100m-60m delta T (OC) 318ft-35ft delta T (OF) 100m-10m delta T (OC)
Precipitation (inches) Precipitation (inches)
- The new system also includes measurements for 60-meter wind speed and wind direction, 60m-10m delta T, and 10-meter dew point tem-perature, which have no corresponding parameter from the old system. ,
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t Table 2. Meteorological Data Recovery n
- u Data Recovery (% of total observations)-
January- April- January-March June June 1984 1984 1984 100-m wind speed 98 92 95 100-m wind direction 98 95 96 10-m wind speed 27 61 44 10-m wind direction 0 62 31 10-m ambient temperature 94 87 90 100m-10m delta T 90 87 -88 Precipitation 87 90 89 100-m JFD* 87 84 86 10-m JFD* 87** 86** 87**
- Joint occurrence of wind speed and direction measured at the height indicated and atmcspheric stability (based on 100m-10m delta T).
- ** Data recovery for the 10-m JF0 includes substitution of 100-m wind speed and wind direction for missing 10-m data for the entire period.
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' Atmospheric Stability: Atmospheric stability is determined through the classi-fication of differential temperature data between the 100-meter and 10-meter a levels. During the quarter, unstable conditions (Classes 'A through!C)' occurred ,
approximately,12 percent of.the time, neutral' conditions (Class D) aoproximately
-50 percent of the time, and stable conditions (Classes E through G) approximately 38 percent.of the time (based on the JFD of 100-meter wind and delta T (100m - -
10m) stability data).
Second Quarter (April through June 1984)
Data Recovery: Data recovery statistics are provided in Table 2 for pertinent meteorological parameters. Larger than normal data losses occurred with the 10-meter winds due to a severed transmission cable from the tower to the recorder during April. Because of these large data losses, 100-m wind speed and direction data were substituted for missing 10-m wind speeds and directions for the entire
- period in preparing the 10-m JFD,-as. described for the first quarter data.
1 Data losses for other parameters were due mainly to-inking and/or timing problems for the old system in April, and to tape drive problems for the new system in May and June. .
l Wind: Predominant wind directions at the 10-meter' level were from the southeast-through south sectors (a total of 33 percent) and from the northwest through north (24 percent). The quarterly mean wind speed was 8.6 miles per hour with i 46 percent of the observations having wind speeds'of less than 7.5 miles per-hour. The maximum hourly average wind speed w n 27.5 miles per hour on June 7.
The predominant wind directions at the 100-meter level were also from the south-i east through south (a total' of 33 percent) and northwest through north (a total l of 23 percent). The quarterly mean wind speed was 14.5 miles per hour with-44
! percent of the observations having wind speeds of less than 12.5 miles per .
~ hour. The maximum hourly average wind speed was 43 miles per hour on June.7.
1 j Temperature: -The mean hourly average temperature for the quarter was' 16.30C, .
j with an average daily maximum of 20.20C and an average daily minimum of 11.90C.
1 The maximum temperature was'31.60C on June 25, and the minimum was 0.80C on i April 6.
Precipitation: Total precipitation for the second quarter was 9.84 inches.
3 The maximum daily precipitation was 1.93 inches on April 29. The maximum hourly i precipitation total was 0.90 inches on May 22. Refer to the discussion of
! first quarter precipitation for consnents on data recovery.
4 Atmospheric Stability: Ouring the quarter, unstable conditions (Classes A ,
through C) occurred approximately 10 percent of the time, neutral conditions i (Class D) approximately 57 percent of the time, and stable conditions (Classes E through G) approximately 33 percent of the time (based on the JF0 of 100-meter L
. wind and delta T (100m-10m) stability data).
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' First Semiannual Period (January through June 1984) i .
l Data Recovery: Data recovery statistics are provioed in Table 2 for pertinent i meteorological parameters. Due to large losses of 10-m wind data during the
! -period, 100-m wind speed and direction data were substituted for missing 10-m .
l wind speeds and directions for the entire semiannual period in preparing the
! 10-meter JFD.
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Wind: Predominant wind directions for the semiannual period were from the northwest through north (a total of 30 percent) and southeast through south (a total of 24 percent) at both the 10-meter and 100-meter levels. Mean wind speeds were 7.9 miles per hour at 10 meters and 14.8 miles per hour at 100 meters. The maximum hourly average speeds were 27.5 miles per hour and 51 miles per hour at the 10-meter and 100-meter levels, respectively.
Temperature: The mean hourly average temperature for the semiannual period was 7.30C, with an average daily maximum of 11.6oC, and an average daily minimum of 3.70C. The maximum temperature was 31.60C, and the minimum was -23.30C.
- Precipitation: The total precipitation for January through June 1984 was 12.66 inches. The maximum daily total was 1.93 inches on April 29 and the maximum hourly total was 0.90 inches on May 22. Refer to the discussion of first quarter precipitation for comments on data recovery.
Atmospheric Stability: During the semiannual period unstable conditions (Classes A through C) occurred approximately 11 percent of the time, neutral conditions ,
(Class 0) approximately 54 percent of the time, and stable conditions (Classes l E through G) approximately 36 percent of the time. These values are based on the JFD of 100-meter wind and delta T (100 m-10 m) data.
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MONTHLY
SUMMARY
TABLES OF HOURLY METEOROLOGICAL DATA The tables aresented in this section provide a summary of hourly averages of measured meteorological parameters. The tables provide summaries by month for- -
the semiannual period January through June 1984 Summaries for the first quarter, second quarter, and first semiannual period, are also provided. The parameters provided are listed below.
o 35-foot ambient temperature (note that these tabular listings also include ambient humidity, which was not measured by the Cooper Nuclear Station old system, but is provided for May and June 1984 from the new system).
o Wind direction frequencies at 10 meters and 100 meters. Due to large losses of 10-m wind data during the period no tables are provided for January, February, March, April or first quarter for this parameter.
o Precipitation.
Any missing or non-ceasured data are indicated by a field of 9's.
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.J and 10-Meter Dew Point Temperature
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NPPD-COOPER STATION 100-M WINO DIRECTION PERSISTENCE .JAN-MAR 1984 PROGRAM: WINPER VERSION: 2P HOURLY WINO ROSES 1 PERCENT)
WIND DIRECTION HR. OF DAY N NNE NE ENE E ESE SE SSE 8 SSW SW W6W W 6MW NW NNW CALM TOTAL 1 10.3 4. 6 5. 7 4. 6 5. 7 3. 4 8. 0 2. 3 5. 7 6. 9 6. 9 6. 9 4. 6 3. 4 11.5 9. 2 0. 0 100.
2 9. 2 3. 4 9. 2 0. 0 4. 6 S. 7 9. 2 1.1 5. 7 3. 4 10.3 4. 6 6. 9 4. 6 12.6 9. 2 0. 0 100.
3 6. 9 4. 6 6. 9 1.1 3. 4 6. 9 10.3 2. 3 2. 3 3. 4 11.5 3. 4 6. 9 3. 4 13.8 12.6 0. 0 100.
4 S. 0 3. 4 5. 7 2. 3 5. 7 4. 5 9.1 2. 3 3. 4 5. 7 6. 8 6. 8 S. O 3. 4 14.8 10.2 0. 0 100.
5 S. 0 S. 7 5. 7 5. 7 0. 0 S. 7 S. 0 2. 3 6. 8 2. 3 6. 8 10.2 3. 4 3. 4 13.6 12.5 0. 0 100.
6 11.4 4. 5 3. 4 S. 7 1. 1 S. 7 6. 8 5. 7 57 1. 1 6. 8 8. 0 4. 5 3. 4 13.6 12.5 0. 0 100.
7 11.4 2. 3 5. 7 2. 3 2. 3 S. 0 4. 3 6. 8 5. 7 3. 4 3. 4 10.2 3. 4 2. 3 12.5 15.9 0. 0 100.
8 13.6 2. 3 6. 8 1.1 2. 3 5. 7 8. 0 5. 7 4. 5 5. 7 3. 4 6. 8 4. 5 2. 3 15.9 11.4 0. 0 100.
9 13.6 3. 4 3. 4 4. 5 4. 5 3. 4 S. 0 5. 7 2. 3 3. 4 S. 0 3. 4 6. 8 4. 5 14.8 10.2 0. 0 100.
10 9. 0 3. 4 2. 2 6. 7 2. 2 6. 7 6. 7 4. 5 4. 3 3. 4 4. 5 9. 0 4. 5 0. 0 18.0 14.6 0. 0 100.
, 11 13.3 3. 3 0. 0 3. 3 6. 7 4. 4 7. 8 4. 4 5. 6 2. 2 6. 7 S. 6 3. 3 4. 4 15.6 13.3 0. 0 100.
12 14.4 4. 4 1.1 2. 2 2. 2 6. 7 6. 7 6. 7 6. 7 3. 3 4. 4 3. 3 5. 6 4. 4 16.7 11.1 0. 0 100.
13 13.2 4. 4 1.1 3. 3 1.1 6. 6 7. 7 2. 2 6. 6 S. 8 3. 3 3. 3 4. 4 7. 7 16.5 9. 9 0. 0 100.
an na 14 e. 9 4. 4 1.1 2. 2 4. 4 3. 3 6. 7 4. 4 7. 8 5. 6 2. 2 S. 6 6. 7 S. 9 15.6 12.2- 0. 0 100.
'4 15 7. 8 2. 2 6. 7 0. 0 4. 4 4. 7 6. 7 1.1 7. 8 4. 4 4. 4 6. 7 5. 6 5. 6 14.4 15.6 0. 0 100, 16 9. 0 2. 2 3. 4 4. 5 4. 5 6. 7 6. 7 1. 1 6. 7 4. 3 3. 4 6. 7 S. 6 S. 6 18.0 11.2 0. 0 100.
17 10.1 3. 4 3. 4 4. 5 2. 2 12.4 4. 5 2. 2 4. 5 6. 7 2. 2 6. 7 3. 4 4. 5 14.6 14.6 0. 0 100.
18 10.0 3. 3 5. 6 3. 6 3. 3 11.1 5. 6 4. 4 3. 3 4. 4 4. 4 S. 6 2. 2 3. 3 15.6 12.2 0. 0 100.
19 11. 1 2. 2 7. 8 2. 2 3. 3 10.0 3. 6 4. 4 4. 4 4. 4 3. 3 7. 8 4. 4 0. 0 11.1 16.7 1.1 100.
20 7. e 6. 7 3. 3 2. 2 4. 4 7. 8 6. 7 4. 4 3. 3 3. 3 6. 7 7. 8 3. 3 2. 2 S. 9 20.0 1.1 100.
21 12.2 3. 3 5. 6 2. 2 4. 4 3. 6 S. 9 3. 3 33 5. 6 8. 9 4. 4 3. 3 . 3. 3 11.1 14.4 0. 0 100.
22 13.3 2. 2 6. 7 2. 2 3. 3 4. 4 11.1 2. 2 5. 6 5. 6 7. 8 S. 6 3. 3 2. 2 13.3 11.1 0. 0 100.
23 14.6 3. 4 S. 6 4. 5 1. 1 4. 5 !. 2 2. 2 3. 4 6. 7 34 12.4 3. 4 4. 5 10.1 9. 0 0. 0 100.
24 12.5 2. 3 6. 8 4. 5 3. 4 6. 8 6. 8 0. 0 S. 7 6. 8 6. 0 4. 5 6. 8 3. 4 13.6 0. 0 0. 0 100.
ALL 10.8 3. 6 4. 7 3. 2 3. 4 6. 4 7. 3 3. 4 5.1 4. 6 S. 7 6. 5 4. 8 3. 8 14.0 12.4 0.1 100.
NUMSER OF OSS = 2134 l
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MONTH OF MARCH F(Nt ALL TEMPERATLNIES TOTAL NUMBER OF HOURS - 744 NUMBER OF MISSING HOURS - &S TOTAL HOURS OF PRECIPITATION - 43 TOTAL DAYS WITH PRECIPITATION - 11 i TOTAL AHOUNT OF PRECIPITATION - 1.48 INCHES
! MAXIMUM 1-HOUR PRECIPITATION - O.18 INCHES MAXIMUM DAILY PRECIPITATI8v? - O. 44 INCHES 1 HOUR PERIOD IN MONTH hs .H OREATEST AMOUNT PRECIPITATICD4 STARTS DAY 24 HOUR 9- O.88 INCE S
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. NUMBER OF M HOLNtB - 64 TOTAL HOURS . etECIPITATION - 42 TOTAL DAYS h .re PRECIPITATION - 11 -
TOTAL AMOUNT OF PRECIPITATION - 1.44 INCHES MAXIMUM 1-HOUR PRECIPITATION - O.18 INCHES MAXIMUM DAILY PRECIPITATION - O.44 INCHES
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- TOTAL NUMSER OF HOURS - 2184
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! TOTAL NUMBER OF HOURS - 720 i MUMBER OF MISSING HOLAtS - 28 l TOTAL HOURS OF PRECIPITATION - SS TOTAL DAYS WITH PRECIPITATION - 32 a
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! ! HOUR PERIOD IN MONTH WITH OREATEST ANDUNT PRECIPITATION STARTS DAY 29 HOUR 13 - 0.60 INCES
& HOUR PERIOD IN MONTH WITH GREATEST AMOUNT PRECIPITATION STARTS DAY 29 HOUR 9- I.82 INCHES I2 HOUR PERIDD IN MONTH WITH OREATEST AMOUNT PRECIPITATIGN 8 TARTS DAY 29 HOUR 9- 1.93 INCHES 1 IS HOUR PERIOD IN MONTH WITH OREATEST AMOUNT PRECIPITATION STARTS DAY 29 HOUR 9- 1.93 INCHES 24 HOUR PERIOD IN MONTH WITH OREATEST AMOUNT PRECIPITATION STARTS DAY 29 HOUR 9- 1.93 INCHES
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! FM ALL TErrERAluRES l TOTAL NUMSER OF HOURS - 744 l NUMBER OF MISSING HOURS - 157
. TOTAL HOURS OF PRECIPITATION - 36 TOTAL DAYS WITH PRECIPITATION - 9 l TOTAL AMOUNT OF PRECIPITATION - 3.33 INC ES
- MARIMUM 1-HOUR PRECIPITATION - O.90 INCHES MANIMUM DAILY PRECIPI(ATION - 1.33 INCHES 1 HOUR PERIDO IN MONTH WITH OREATEST AMOUNT PRECIPITATIEB4 STARTS DAY 22 HOUR 4- 0.90 INCES
! & HOUR PERIOD IN MONTH WITH OREATEST AMOUNT PRECIPITATIEB4 STARTS DAY 22 MIUR 2- 1.31 INCES 12 HOUR PERIDO IN MONTH WITH GREATEST AMOUNT PRECIPITATIfW STARTS DAY 22 HOUR 2- 1.34 INCES
! 18 HOUR PERIOO IN MONTH WITH GREATEST AMOUNT PRECIPITATION STARTS DAY 22 HOUR 2- 1.35 INCHES 24 HOUR PERIDO IN MONTH WITH OREATEST AMOUNT PRECIPITATION STARTS DAY 22 HOUR 2-- 1.33 INCE S to g FE3t TEMPERATURES LESS THAN OR EGUAL TO 32 DEGREES TOTAL NUNGER OF HOURS - 678
- NUMBER OF MISSING Holsts - SOS TOTAL HOURS OF PRECIPITATION - 34 TOTAL DAYS WITH PRECIPITATION - 7 TOTAL AMOUNT OF PRECIPITATION - 3.50 INCHES ttANIMUM 1-HOUR PRECIPITATION - 0.90 INCHES MAXIMUM DAILY PRECIPITATION - 1.33 INCHES l
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& HOUR PERIOD IN MONTH WITH OREATEST AMOUNT PRECIPIT ATION 5 TARTS DAY l2 HOUR 23 - O.73 INCE S 12 HOUR PER500 IN MONTH WITH GREATEST AMOUNT PRECIPITATIGN 5iARTS DAY t2 HOUR 23 - O.79 INCE S 1S HOUR PER500 IN MONTH WITH GREATEST AMOUNT PRECIPITATION STARTS DAY 12 HOUR 23 - O.78 INCM S 24 HOUR PER500 IN MONTH WITH GREATEST AMOUNT PRECIPITATION 8 TARTS DAY l2 HOUR 23 -
ve co FI3t TEMPERATURES LESS THAN OR EOUAL TO 32 DEGREES TOTAL NUMSER OF M3URS - A43 NUMSER OF MISSINS Holsts - O TOTAL HOURS OF PRECIPITATION - 4 TOTAL DAYS blTH PRECIPITATION - 3 TOTAL AMOUNT OF PRECIPITATION - O.79 INCHES MANIMUM 1-HOUR PRECIPITATION - O.49 INCHES MAulMUM DAILY PRECIPITATION - O.61 INCHES i
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FOR ALI. TEffERATURES TOTAL NUMSER OF HOURS - 2384 MUMBER OF MISSING HOLats - 216 TOTM. M3URS OF PRECIPITATION - 98 TOTAL DAYS WITH PRECIPITATION - 24 TOTAL AMOL2fT OF PRECIPITATION - 9.84 INCES MARIMUM 1-HOUR PRECIPITATION - 0.90 INCHES MAXIMUM DAILY PRECIPITATION - 1.93 INCHES j 1 HOUR PERIOD IN MONTH WITH OREATEST AMOUNT PRECIPITATION STARTS MONTH 3 DAY 22 HOUR 4- 0.90 INCES
- & HOUR PERIGO IN MONTH WITH OREATEST AMOUNT PRECIPITAfim* STARTS MONTH 4 DAY 29 HOUR 9- 1.82 INCE S 12 HOUR PERICO IN MONTH WITH OREATEST AMOUNT PRECIPITATime STARTS MONTH 4 DAY 29 HOUR 9- 1.93 INCES IS HOUR PERIOD IN MONTH WITH OREATEST AMOUNT PRECIPITATION STARTS MONTH 4 DAY 29 HOUR 9- 1.93 INCHES-24 HOUR PERIOD IN MONTH WITH OREATEST AMOUNT PRCCIPITATION STARTS MONTH 4 DAY 29 HOUR 9- 1.93 INCHES O
j FINI TEMERATURES LESS THAN OR ESUAL TO 32 DEGREES 1
TOTAL NUMSER OF MMIS - 1907 i NUMBER OF MISSING HOLMS - 136 TOTAL HOURS OF PRECIPITATION - SS TOTAL DAYS WITH PRECIPITATION - 22 TOTAL AMOUNT OF PRECIPITATION - S.93 INCES MAEIMUM 1-HOUR PRECIPITATIGN - O.90 INCHES MAXIMUM DAILY PRECIPITATION - I.93 INCHES i
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! TOTAL NUMSER OF M3URS - 4365
- NUMSER OF MISSING HotAIS - 490
- TOTAL HOURS OF PRECIPITATION - I67
, TOTAL DAYS WITH PRECIPITATION - 43 I
TOTAL AMOUNT OF PRECIPITATION - 12.66 INCHES I
MANIPWRI 1-HOUR PRECIPITATION - O.90 INCHES MANIMUM DAILY PRECIPITATION - 1.93 INCHES j I HOUR PERIOD IN MONTH WITH OREATEST AMOUNT PRECIPITATICBd STARTS MONTH 8 DAY 22 HOUR 4- 0,90 INCES I
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NUMSER OF MISSING H0 tate - 406 TOTAL HOURS OF PRECIPITATION - 149 '
TOTAL DAYS WITH PRECIPITATION - 41
! TOTAL AMOUNT OF PRECIPITAT!aN - 11.09 INCHES j MAXIMUM I-HOUR PRECIPITATION - 0.90 INCHES j MAXIMUM DAILY PRECIPITATION - 1.93 INCHES i
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JOINT FRE0VENCY 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, wind direction, and ,
stability category occurred simultaneously. On a quarterly and semi-annual basis, the JFDs were produced for wind speed and wind direction by atmospheric stability corresponding to the seven Pasquill stability classes, and for wind speed and wind direction for all stability categories combined. Atmospheric stability was classified using the 100-meter to 10-meter temperature difference (delta T) per Regulatory Guide 1.23. The 10-m JFDs reflect the substitution of 100-m wind speed and direction data for missing 10-m wind speeds and direc-tions for the entire period. The 10-m wind data were lost for January through April due to a faulty sensor and a severed transmission cable.
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PROGRAM: MD VERSION: SP NPPD-COOPER STATION 5 0: lO-M WIND V8 DELTA T t SOOM-lOMI FOR JAN-PtAR 1984 BITE IDENTIFIER: NPC81 DATA PERIDO EMAMINED: 1/ 1/84 - 3/31/84 ese JAN-l%R 1984 ese .
STABILITY BASED ON: DELTA T BETWEEN 100.0 AND 10.0 METER 8 WIND IEASURED AT: 10.O METER 8 WIND THRESHOLD AT: 1.00 MPH TOTAL NUMBER OF OSSERVATIONS: 2184 TOTAL NUMBER OF VALID OSSERVATIONS: 1908 TOTAL NUMBER OF MISSIMO OSSERVATIONS: 276 PERCENT DATA RECOVERY FOR THIS PERIOD: 87. 4 X MEAN WINO SPEED FOR THIS PERIOD: 7.1 MPH
, NUMBER OF De8ERVATIDW WITH DACMUP WIND SPEED: 1343 to y NUMBER OF De8ERVATIOPEB WITH BACMUP WINO DIRECTION: 1907 TOTAL NUNSER OF OBSERVATIONS WITH BACMUP DATA: 1907 PERCENTAGE OCCURRENCE OF STABILITY CLASSES A B C D E F G 2.88 3.98 4.98 30.21 28.25 8.18 1. 52 DISTRIBUTION OF WIND DIRECTION V8 STASILITY N ledE E EPE E ESE SE SSE 8 88W SW WSW W WNW 064 0064 CALM A IS O O O O O O O O O O O O O 15 25 0 5 16 7 1 0 1 O O O O O O O 2 1 25 23 O C 28 7 1 0 2 7 2 0 3 1 2 0 6 4 19 13 0 D 110 35 59 48 41 70 76 33 42 28 29 36 30 38 146 143 1 E 12 14 22 11 16 31 62 18 27 40 50 65 50 33 59 21 8 F 3 0 0 0 0 0 7 13 18 22 25 29 11 7 7 2 12 O 1 O O O O O O O 4 4 6 3 3 1 2 2 3 TOTAL 185 63 83 59 60 108 147 64 94 95 112 133 102 77 273 229 24
= . . . . .
JFDs of 10-Meter Wind vs. Delta T, l April-June 1984 1
i Note: See explanation on page 864.
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PROORArt: MD VERSION: SP perPD-COOPER STATION #D: 10-M WIND V8 DELTA T (100M-10M) FOR APR-JUN 1984 SITE IDENTIFIER: NPCS2 DATA PERIOD EXAMINED: 4/ 1/84 - 6/30/84 i ese APR-JUN 1984 ese STASILITY BASED ON: DELTA T BETWEEN 100. 0 AND 10.0 M TERS WIND MASURED AT: 10.O METERS WIND THRESHOLD AT: 1.00 MPH TOTAL NUMBER OF OBSERVATIONS: 2184 TOTAL NUMBER OF VALIO OBSERVATIONS: 1870 TOTAL NUMSER OF MISSING OBSERVATIONS: 314
- ERCENT DATA RECOVERY FENt THIS PERIOD: 85.6 %
MEAN Wipe SPEED FOR THIS PERIOD: 8. 6 MH NUMBER OF OOSERVATIONS WITH DACMVP WIND SPEED: 625 O NUNGER OF OB8ERVATIONS WITN BACMUP WIND DIRECTION: 625 TOTAL NUMOER OF OBSERVATIONS WITH BACMUP DATA: 625
- PERCENTAOE OCCURRENCE OF STABILITY CLASSES A B C D E F G 2.03 1.82 5.67 57,70 26.04 4.97 1.76 DISTRIBUTION OF WIND DIRECTION V8 STABILITY N NNE $8: ENE E ESE SE SSE 8 SSW SW WSW W WNW W NW CALM A 15 1 O O O O O O O O O 1 O O 9 12 O l 5 4 O O O O O O 5 5 0 0 5 0 2 6 7 0 C 1 1 5 0 6 3 29 12 31 3 1 1 0 1 1 9 0 l
D 103 56 46 50 36 98 144 76 107 65 26 9 34 33 60 86 O E 38 12 20 21 30 33 30 38 68 22 22 14 26 16 22 28 10 F T 3 4 0 4 0 1 3 13 9 7 3 3 3 13 13 5 e 2 4 1 O O O 1 2 3 2 3 1 2 2 4 3 3 TOTAL 172 77 76 71 126 133 225 156 227 101 39 34 65 57 115 138 18 e . . .
3 ,
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JFDs of 10-Meter Wind vs. Delta T*
January-June 1984 Note: See explanation on page 864.
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.I PROGRAM: JFD VERSION: SP NPPD-COOPER STATION JFD: 10-P WIND VS DELTA T (tOOM-TOM) FOR JAN-JUN 1984
, SITE IDENTIFIER: NPCS2 l DATA PERIOO EXAMINED: 1/ t/94 - 6/30/84 eee JAN-JUN 1984 eee STABILITY SASED ON: DELTA T SETWEEN 100.0 ANO 10.0 METERS
, WIND MEASURED AT: 10. O IETERS WIND THRESHOLD AT: 1.00 MPH TOTAL NUMBER OF OSSERVATIONS: 4368 TOTAL NUMBER OF VALID 088EHVATIONS: 3779 TOTAL NUMBER OF MISSING OceERVATIONS: 590 PERCENT DATA RECOVERY FOR THIS PERIOD: 86. 5 %
MEAN WIND SPEED FOR THIS PERIOD: 7.9 MPH NUMBER OF OsSERVATIONS WITH BACKUP WINO SPEED: 1968 co NUMSER OF OBSERVATIONS WITH BACKUP WIND DIRECTION: 2332 ra TOTAL NUMBER OF OSSERVATION3 WITH BACKUP DATA: 2532 i PERCENTAGE OCCURRENCE OF STABILITY CLASSES A B C D E F 0 2.46 2.91 5.32 53.92 27.t6 6. 59 1.64 i
DISTRIBUTION OF WIND DIRECTitM V8 STABILITY N 9edE DE ENE E EBE SE 88E 8 88W SW WSW W WNW DGd pedW CALM A 30 1 O O O O O O O O O 1 O O 24 37 0 8 20 7 1 O I O 0 5 5 0 0 5 2 3 31 30 0 C 29 3 6 O 8 12 31 12 34 4 3 1 6 5 20 22 O D 283 98 105 99 127 168 220 109- 149 93 55 45 64 64 206 229 1 E 50 26 42 32 46 61 112 76 95 62 72 79 76 49 81 49 18 F 12 3 4 0 4 0 8 16 31 31 32 32 14 10 20 15 17 0 3 4 1 O O O 1 2 7 6 9 4 5 3 6 5 6 TOTAL 357 140 159 130 186 241 372 220 31 196 171 167 167 134 388 387 42 l
s*
1 I
Stability Classes by Hour of Day, '
10-Meter Wind vs. Delta T, January-June 1984 O
e BS3
i
! 'I PROGRAM: JFD VERSION: SP NPPD-COuPER STATION JFD: IO-H WIND VS DELTA T (100M-10MB FOH JAN-JUN 1984 SITE IDENTIFiliR: NPCSI DATA PERIOD EKAMINED: t/ t/84 - 6/30/84 STABILITY BASED ON: DELTA T BETWEEN 100.0 AND 10. 0 #ETERS HOURLY STASILITIES HOURS YR HN DY 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 i
! 84 1 1 D D D D D E D D D D D D C D D D D E F F E E F E I 84 1 2 E E E E E E E E E D D D D D D D E E E E E E F F 84 1 3 F F - - F E E E E D D D D D D D E E E E E E E E l
84 1 4 F E E E E E F F F D D C 3 5 D D D E E E E F' E E 84 1 3 F F F E E E E E E E E D D D D E E E E E E E E E l 84 1 6 E E E E E E E E E D 5 B C D D D E E F F- F F E E
- 84 1 7 E E F F F F F F E D C C D D D D D E E E E F'F F 84 1 8 F E E E E E E E - - D D D D D D E E E E E E E E l 84 1 9 D D D C D C C C C 8 9 A B A B B D D D D D D~D D
, 84 1 to D D D D D D D C A 5 A A A D D D D D. D D- D E E E 84 1 11 E E E D D D D D D D D D D DD D D D E E E E E i
CD 84 1 12 E E E E D D D D D D D D D C C C D D D D D D D D 84 1 13 D D D D D D D D D B A A A A A 5 D D D E D.E D D l
84 1 14 D D D D D C D D D D C 3 A B 5 C D D D D D D D D 84 1 13 O D D D D D D D D D D D D D D D D E E F G 0 F F 84 1 16 E E E E E E E E D C C A A A B k D D D D D D D -
84 1 17 - F - - - - - - - E D A A - - - - C D D D D C D 84 & le D D E E E O O O F E D D C D D D D E' F E E E-E E 84 1 19 E E E E E E E E E D D C 9 A B 0 D D D D D D E E 84 1 20 E E E E E E E F E A C D D D D D E E E E F E E E 84 1 28 E E E E E E D E D D D C D D D D E E F E F F E E 84 1 22 F F F F F E E E E D D D D D D D D D D D D D D D 84 1 23 D D D D D D D E D D D D D D D D D E E E E E E E *
' 84 1 24 E E E E E E F E E E D D D D D D E E F E E E E E 84 1 25 E E F F F F F F E D D D D D - D E E E E E E E E 4
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84 1 29 F F G F F F E E E E D D D C D D D D D D D D D D.
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i 84 2 2 - - - E E E F E E D D e D C D D D D D D D E E E 84 2 3 E E F E E E L E D C 3 5 8 5 3 D D E E E E D D.D 84 2 4 D D D E E D D D D D - - - - - - - D E E E E E D .
84 2 3 0 O D D D D D C 5 A A A A A A A B D D D D D D E 84 2 6 E C E E E D D D D D C C C D D D D E E E E E E E 84 2 7 E E E E E E E D D D D D D D D D^E E E E E E C E 84 2 8 E 'E E E E F F F E D D D C D D D E E E F F F E E 84 2 9 F F F F F F F F F E E D D D D D D D D E E E E E 84 2 to E E E E - - - - - - - - - - - - - - - - - - - -
84 2 11 - - - - - - - - - - - - - - - - - - - - - F F F 84 2 12 F F E F E E E E D D D D D D D D D D E E F F E E 84 2 13 F F F E E E E D D D C C 3 5 C D D E O O O O0 0 '
84 2 14 F 0 0 0 0 0 0 0 F F F E D D D E E F F F F'F F F
. . . _ - . - - - - - - ~ _ - . - _. . - . _ . - - . - . _. - - . . ~.--- . - , _
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PROGRAM: MO VERSION: SP 8ePD-COOPER STATION XD: 10-M WIND V5 DELTA T (100M-10M9 FOR JAN-JUN 3994 SITE IDENTIFIER: NPCSt DATA PERIOD EXAMINED: 1/ t/94 - 6/30/94 STASILITY BASED CH: DELTA T DETWEEN 100.0 AND 10.O METERS l HDLMLY STABILITIES NDuRs i YR MN DY 1 2 3 4 5 6 7 s 9 to il 12 13 14 15 16 17 le 19 20 21 22 23 24 i
84 2 13 F F E E E E E E E E D D E E E D E E E E E E E E 84 2 16 E E E D D E E D D D D D D D D D D D D D D D D D 84 2 17 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 84 2 te D D D D D D D D D D D D D D E - - - - - - D D D 1
84 2 19 O O D D D D D D D D C B A 5 5 3 C D D D D D D D 84 2 20 D E D D E E E E D D D D C 5 C D D E E F E F F F 84 2 21 E E E E E F F E E D D D D C D D D E F 0 F e F F 84 2 22 F F F F F F F E E D D D D D D D E F F F F F F F 84 2 23 E E D D D D D D 3 S B 3 A 8 5 C C D D D D D D E 1 84 2 24 E E E E D E F E D D 5 3 3 8 5 D D D E E E E E F g 84 2 25 F F F F F F F F E D D D D D D D D D D D D D D D co 84 2 26 D D D D D D P D D D D D D D D D D E E E D D D D L' 84 2 27 D D D C C D D C D C C 3 3 A A B C D D D D D D D 84 2 28 D D D D D D D D 5 5 5 C C C B C D D D D D D D D j 84 2 29 D D D D D D D D D D D D C D D D D E E E F E E E 84 3 1 E E E E E E E E D D D D D D C C D D F F G G e 0 84 3 2 F E E E D - D D D D C C C C D D D D E E E E E E 84 3 3 E E E E E E E D D D D D D D D D D E E D D D D -
34 3 4 - - - D D D - - - - - - - - - - D D D D D D D D-4 84 3 3 D D D D D D D D D C A A 5 5 A A S D D D D - - -
! 84 3 6 - - - - - - - - - - - - C D D D D D D D D D D D 84 3 7 O O D D C C C C C D D - - - D D - D D E D D D D 84 3 g D D D D D D D C A A A A A A A A B 3 D D D D D E
- e4 3 9 D D D D D D D D D D D D D D D D D D D D D D D E
- 84 3 3D E D D D D E E F F D D - D D D D D D D D D E E E.
84 3 31 E E D D D D D D D C 5 C C C C D D D D D D D D D 84 3 32 D D D D D D D D D D C D C D D D D D D D D D D D e4 3 13 D D D D D D D D D D D D D D D D D D.D E E E E E i 84 3 14 E E E E E E E E E E E E D C D D D E E E E - .-
i 84 3 IS E E E E - - - - - - - - - - - - - - - - - - - -
84 3 :6 - - - - - - - - - - - - - - - - - - - - - - - -
l 84 3 17 D E E E D D D 0 0 D D D D D D - - D D D D D D D 84 3 se D D D D D D D D D D D D D D D D D D D D D D D D 84 3 19 D D D D D D D D D D D D 5 3 C C C D D D D D D D 84 3 20 D D D D D D D D C A A - - - - - C D A D D D D D i
84 3 21 D D D D D D D 0 D D D C C C C C D D D D D - - -
84 3 22 - - - - - - - - - - A A A A A 9 D D E E E E E E t 84 3 23 E E E E" E E E O D D C D C D D D D D D D D D D D f e4 3 24 D - - - - - - - - - - - - - - - - - .- - - - -
B4 3 23 E E - E E E E E D - - D D D D D D D E E E E E E 84 3 26 E D D D D D D 0 0 D D - - - - - - - - - - - - -
84 3 27 - - - - - - - - - - - - - - - - - - - - - - - -
a4 3 2e - - - - - - - - - - - - - - - - *- - - - - - -
J 84 3 29 D D D D D D D E - - - - - - - - - D D D D D D D 84 3 30 E E D D D D D 0 3 A 5 B B A B C D D E E F E E E
PROGRAM: #D VERSION: SP NPPD-COOPER STATIDN X D: 10-M WIND VS DELTA T (100M-tOMI FOR JAN-JUN 1984 SITE IDENTIFIER: NPCS1 DATA PERIOD EMAMINED: t/ t/04 - 6/30/94 STABILITY BASED ON: DELTA T BETWEEN 100.0 AND 10.0 METERS
?
HOURLY STABILITIES HOURS VR MN DY t 2 3 4 3 & 7 8 9 to 31 12 13 14 15 16 17 18 19 20 21 22 23 24 84 3 31 E E E E E E E D D D D D D D D D D D D E E E E E 84 4 1 E E E E E E E E D D D D D D D D D D E E E.D D D
- 84 4 2 D D D D D D D D D D D D D D D - - - D D D - - -
i 84 4 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 84 4 4 - - - - - - - - - - - - - - - - - - - E E E E E 84 4 3 E E E E E E E O D A A A A A A A B D E E E F F F 0 0 0 0 0 0 0 F D D D D D D D D D D E F E E E E i 84 4 6 84 4 7 E E E E E - - D D E D D D D D D D D D D D D D D 84 4 e D D D D D D D D D D D D C C D D D D D D D-O D D 4 t2 84 4 9 - O D D D D D D D D D'D D D D D D D D D D D D D
$ 84 84 4
4 to 11 D
D D
D D
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! 04 4 12 E E E D D D D D D D D D D D D D E E D D D D D D l B4 4 13 D E E E E E D D D D C D D D D D D D D D D D D D
- 84 4 14 D D D D D D - - D - D - - - - - - - - - - - - -
l 84 4 13 - - - - - - - - - - - - - - - - D D D D D D D D 4 84 4 16 D D D D D D D - - - - - - - - - - D D D E D D D i 84 4 17 0 D D F F F E D D C C A A A A A A C D E E E E E 84 4 la F G F E F F E C D 8 A A A A A A B C E E E E D D 84 4 19 E E E E E E D D D C D D D D D D D D D E E D E E 84 4 20 E E E E F D D D - - - - - - - - D D D D D D D D f 84 4 21 D L D D D D D D D D D D D D D D D D D D D D D D
! 84 4 22 D D D D D D D D D D A B C 3 C 5 3 C D D D D D D 84 4 23 - - - - - - D 5 3 A A A A A A A D D E .F 0 G G G 84 4 24 0 - - - - - - C 3 5 A A A A A A B D D F F F F F i 84 4 23 E E E E E E D D D D D D D D D D D E E E E E E E
! 84 4 26 E E E E E E D D D D D D D D D E D E E E F E E E i 84 4 27 O D E E E E D D D 3 3 A B 5 5 C D D D D D D D D
! 84 4 28 E E E E E E D D' s B A B e C C D D D D E E'E E E l 84 4 29 E D D D D D D D D C D D D D D D D 3 C D D D D D 84 4 30 D D D D D - - - - - A A A 3 5 D D D D D E E E F 84 3 1 - - - - - - - - - - - - - - - - - - - - - - - -
1 84 3 2 - - - - - - - - D D D C D D D D E E E E E E E D 84 3 3 - - - - - - - O D D D D D D D D D D D E E F E E i 84 3 4 F F E E E E E D D - D D D D D D D D D E E E E E 84 3 3 E E E E E F G E E D D C D D D D D D - - - - - -
84 5 6 - - - - - - - - - - - - - - - - - - - - - - - -
84 3 7 - - - - - - - - - - D D D D D D D D D D - - - -
i 84 3 e - - - - - - - D D D D D D D D D D D D D D D E E 84 3 9 - - - - - - - D D D D C D D C D D D D E E E - -
84 3 to - - - - - - - - D D D D D .D D D D D E E F 0 0 0 84 3'11 - - 0 F E D D D D D C C C D D D D D D E E F F G-84 3 12 - - - - - - - F E D D D D C D D D D E E E E E E 84 3 13 E E E E-F E D D D D D D D D D D D D D E E E E E 84 3 14 D D D E D E D D D C C C C C C D D D D D E E E E
. _4
. _ - . . . . ~ - _- _ - -.- . - -. - - - - - . .
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PROGRAN: JFD VERSION: SP NPPD-COOPER STATION JFD: 10-N WIND V8 DELTA T (SOOM-10M) FOR JAN-JUN 1984 SITE IDENTIFIER: NPCS2 DATA PERIOD RV. ilNED: t/ t/84 - 6/30/84 STABILITY BASED ON: DELTA T BETWEEN 100.0 AND 10. 0 PETER 8 HOURLY STABILITIES HOURS YR ted DY 1 2 3 4 5 6 7 8 9 to 11 la 13 14 13 le 17 19 19 20 21 22 23 24
! 84 3 33 D D D D D D D D C C C C D D E eE D D D E E E E E 84 3 le E E E E E E D D D D 5 8 5 3 5 C C D D E E E E E 84 3 17 E E E E E E D D D D D C D C D - - - - - - - - -
- 84 3 38 - - - - - - - - - - - - - D D D E D D D D D D E 84 3 19 9 9 - - E D D D D D D D D D D D D D D D E E E E 84 3 20 E E E E F E D E E D D D C D D D D D D E E F F E 84 3 21 E E E E E E D D D C D C C D D D D D D E F E E E 84 3 22 E E D D D D D D D D D D D D D D DD E E F F F F 84 3 23 0 F G F F E E D D D D C D D D D D D D E E E E E 84 3 24 E - - - - - D D D D D D C D D D D D D E D E E E 84 3 23 D D D D D D D D D D D D D D D D D D D E F F F F to 84 3 26 F F F F E E D D D D D D D D D D D D D D E E E E
$ 84 3 27 E E E E D D D D D - - D D D D D D D D D D D D D 84 3 28 D D D D D D D D D D D D D D D - - - - - - - - -
84 3 29 - - - - - - - - - - - - - D D D D D D E F F F F 84 3 30 F F F E F E E D D D D C C C C C C D D E E E E E 84 3 31 E E E E E E D D C C C C C C C C D D D D E E E E 84 & 3 E E E E E E E D D D D C C C D D D D E E E E D D 84 6 2 O D D D D D D D D D D D D D D D D D D F F G G G i 84 6 3 0 0 0 0 0 0 0 E D C C C C C C C D D D D E E E D 84 6 4 D D D E E D D D D C C D D C C D D D D D D D D D 84 6 3 D E E E E D D D D C B B B B B C D D D D D D D D 84 & 6 - - - - - - - D D D C C D D D D D D D E E D D D
! 84 & 7 D D D D D D D D D D D D C C D D D D E E D EE E 84 6 8 - - - - - - - E D D D D D D D D D D D E E E E D l 84 & 9 D D D D - - - - - - - - - - - - - - D D E E E E 84 & to E E F F F F E D D D D D D D D D D.D D D E E E E 84 & tt E E E D E D D D D D D C C C D D D D D E E E E E i 84 & 12 E E E E E D E E D D D C C C D D D D D E E E E D 84 6 33 - - E E E E E D D D D D D D D D D D D E E E ED.DE 84 & 14 - - - - - - - O'D C C C C D D D D DE E E D
. 84 6 33 D D D D D D D D D D D D D D D D D D D D D D D D
! 84 6 16 D D D D D D D D D D D D D D D D D D E E E E E E l 84 & 37 E E E E E E E D D D D D D D D D.D D D E E E E E 84 & 18 E E E E E E D D D D D D D D E D E E E E F F F F 84 6 39 F F F F F F E D D D D C C C D DD DD DDD DD ED DE DE D E E j 84 & 20 E E E E E E D D D D D - - - D.
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! 84 6 23 D D D D D D D D D D D C C C C C D D D D D D D D 84 & 22 D D D E D E D D D D D C D D D E E E. O E E E E E l 84 & 23 E E E E E E D E D D D D D D D D D D D D D E E E 84 & 24 F E E E F F E D D D D D C C C D D D D E F F F F 84 & 23 - - - .E E E E E D D D D D D D C D D D E E E E E B4 & 26 E E E E E E E D D D D D D D D D D D D E F 0 G E .
84 & 27 E D D E E F E D D D D D D D D D D D D E F F F F 84 & 28 F F F F F F E E D D D C D D D E E E D E E E E E
PROORAM: JFD VERSION: SP NPPD-COOPER STATION JFD; 10-H WIND VS DELTA T tlOOM-10M) FOR JAN-JUN 1984 SITE IDENTIFIER: NPCS2 DATA PERIOD EXAMINED: t/ 1/04 - 6/30/84 STABILITY BASED ON: DELTA T BETWEEN 100.0 AND 10.0 NETERS HOURLY STABILITIES HOURS YR r1H DY 1 2 3 4 5 6. 7 8 9 to 11 12 13 14 15 16 17 18 19 20 28 22 23 24 84 6 29 E E E E E E D D D - - - - - - D D D D E E E E E 04 6 30 E D E D E E D D D D C C D D D D D D D E E E F D m
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I PRODRAM: #D VERSION: SP
! MPD-COOPER STATION ED: 100-M WINO VS DELTA T (100M-10M) FOR JAN-MAR 1994
! OITE IDENTIFIER: NPCS1 i DATA PERIDO ENAMINED: 1/ 1/94 - 3/31/94
- e JAN-MAR 1994 ees l
i CTASILITY SASED ON: DELTA T BETWEEN 100.0 ANO 10.0 METERS WINO puiASURED AT: 100.O M TERS WIMO THRESHOLD AT 1.00 MPH TOTAL NUMSER OF OSSERVATIONS: 2184 ,
TOTAL NUMBER OF VALID OSSERVATIONS: 1907 1
i TOTAL *duMSER OF MISSINO OBSERVATIONS: 277 4
j PERCENT DATA RECOVERY FOR THIS PERIOD: 37.3 % ,
MEAN WINO SPEED FOR 1HIS PERIOD: 14.4 prH O a.
g TOTAL NUMBER OF OSSERVATIONS WITH BACRUP DATA:
'O 4
PERCENTAOC OCCURRENCE OF STASILITY CLASSES r ,$
A B C D E F G / *
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- 2. e6 3.99 4.9e 50,24 as. 26 e.13 1.52 i
DISTRIBUTIOEOFWINODIRECTIONVSSTABILITY DE EE E ESE SE SSE 8 geW SW WSW . W. Weed fed peel CALM N DedE 0
G O O O O O O O O O O O- 15 25 0-A 15 0 16 7 0 1 O O O O O O ' O 2 1 25 23 5 1 7 0 2 7 2 0 3 1 2 O 6- 4 19 13 O
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PROCRAM: JFD VERSION: SP NPPD-COOPER STATION JFD: SOO-M WIND VS DELTA T tIOOM-TOM) FOR APR-JUN 1984 SITE IDENTIFIER: NPCS2 DATA PERIOD EXAMINED: 4/ 1/84 - 6/30/94 ese APR-JUN 1984 ese STABILITY BASED ON: DELTA T BETWEEN SOO.O.AND 10.0 METERS WIND NEASURED AT: 100.O NETERS WIND THRESHOLD AT: 1.00 NPH TOTAL NUMBER OF OBSERVATIONS: 2184 TOTAL NUMBER OF VALID 00SERVATIONS: 1834 TOTAL NUMBER OF MISSINO OBSERVATIONS: 350 PERCENT DATA RECOVERY FOR THIS PERIOD: 84.O %
HEAN WIND SPEED FOR THIS PERIOD; 14.5 MPH TOTAL NUMBER OF OBSERVATIONS WITH BACMUP DATA: 0 tu o
O PERCENTACE OCCURRENCE OF STABILITY CLASSES A B C D E F 0 2.07 1.85 5.78 57.03 26.39 5.07 1.80 DISTRIBUTION OF WINO DIRECTION VS STABILITY N NNE NE ENE E ESE SE SSE S SSW SW WSW W WNW NW NNW CALM A 15 1 O O O O O O O O O 1 O O 9 12 0 3 4 0 0 0 0 0 0 5 5 O O 5 0 2 6 7 0 C 3 0 6 0 5 6 24 16 32 1 3 1 0 1 1 9 0 D 70 43 49 48 77 101 140 74 114 62 33 8 36 36 67 98 O E 30 12 12 13 40 43 46 54 70 28 24 16 25 11 22 35 t F G 2 7 8 9 9 6 5 4 3 11 2 1 1 8 16 O O 2 5 1 1 O O 6 5 0 0 1 2 2 3 2 3 O TOTAL 130 63 75 65 131 159 222 159 225 94 72 35 64 34 115 170 1
- JFDs of 100-Meter Wind vs. Delta T, January-June 1984 n
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PROGRAM: JFD VERSION: SP NPPD-COOPER STATION JFD: 100-M WIND VS DELTA T ISOOM-10MI FOR JAN-JUN 1984 SITE IDENTIFIER: NPCS2 DATA PERIOD EMAMINED: 1/ 1/84 - 6/30/94 ese JAN-JUN 1984 een i
STABILITV BASED ON: DELTA T BETWEEN 100.O AND 10.O METERS WIND MEASURED AT: 100.O METERS 1 WINO THRESHOLD AT: 1.00 MPH TOTAL NUNSER OF DOSERVATIONS: 4368 TOTAL NUMEER OF VALID OSSERVATIONS: 3741 TOTAL NUMSER OF MISSING OSSERVATIONS: n7 PERCENT DATA RECOVERY FOR THIS PERIDO: SS. 6 1 PEAN WIND SPEED FOR THIS PERIOD: 14.4 IPH O
3 TOTAL NUMBER OF OSSERVATIONS WITN BACMUP DATA:
3 PERCENTAGE OCCURRENCE OF STABILITY CLASSES A B C D E F G 2.49 2.94 5.37 51.37 27.35 6.63 1. &&
DISTRIBUTION OF WINO DIRECTION VS STABILITY i
N I#4E NE EDE E ESE SE 88E S SSW SW WSW W WNW M4 8964 CALM A 30 1 O O O O O O O O O 1 O O 24 37 0 i
5 20 7 1 0 1 O O 5 5 O O 5 2 3 31 30 0 29 7 7 0 7 13 26 16 33 2 5 1 6 5 20 22 O C
D 190 78 108 96 118 171 216 107 156 90 62 44 66 67 283 231 1 27 34 26 37 75 109 72 9e 68 75 31 75 44 83 36 1
', E 42 2 8 9 9 13 19 22 25 37 31 12 10 18 le 1
}- F 14 1 5 0 3 3 1 O O 6 5 4 4 9 5 3 5 4 i O 1 i
TOTAL 318 127 039 124 192 268 370 223 320 189 188 168 166 134 393 399 3 4 * ' 9 $ $
e
Stability Classes by Hour of Day, 100-Meter Wind vs. Delta T, January-June 1984 9
4-O B107
- . _ -_ ._ _ _ . _ , .._ m___ _ _ _ _ _ _ _ _ _ _ . . _ _ _ _ . , _ _ _ _ _ _ _ . . - _ , , - _ ..
PROGRAM: .JFD VERSION: SP !
! NPPD-COOPER STATION #D: LOO-M WINO VS CELTA T (100M-10M) FOR JAN-JUN 1994 SITE IDENTIFIER: NPCSt DATA PERIOD EXAMINED: t/ 1/S4 6/30/94 STABIt.ITY BASED ON: DELTA T 4 TWEEN 100.0 AND 10.0 METERS I
HOURLY STASILITIES HOURS VR 798 DY 1 2 3 4 5 6 7 8 9 to il 12 13 14 13 16 17 18 19 20 at 22 23 24
{
94 1 1 D D D D D E D D D D D D C D D D D E F F E E F E
} 94 1 2 E E E E E E E E E D D D D D D D E E E E E E F F S4 1 3 F F - - F E E E E D D D D D D D E E E E E E E E e4 1 4 F E E E E E F F F D D C 3 9 D D D E E E E F E E 84 1 3 F F F E E E E E E E E D D D D E E E E E E E E E 84 1 & E E E E E E E E E D 3 8 C D D D E E F F F F E E .
84 1 7 E E F F F F F F E D C C D D D D D E E E E F F F S4 1 3 F E E E E E E E - - D D D D D D E E E E E E E E e4 1 9 D D D C D C C C C 3 3 A 8 A B B D D D D D D D D 84 1 to D D D D D D D C A B A A A D D D D D D D D E E E
- 84 8 11 E E E D D D D D D D D D D - D D D D D E E E E E o
84 84 1
1 12 13 E
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+
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. 84 1 17 - - - - - - - - - E D A A - - - - C D D D D C D 84 1 le D D E E E O O O F E D D C D D D D E F E E E E E t 84 1 19 E E E E E E E E E D D C 5 A 5 5 D D D D D D E E 1
84 1 20 E E E E E E E F E A C D D D D D E E E E F E E E 84 1 21 E E E E E E D E D D D C D D D D E E F E F F E E t 94 1 22 F F F F F E E E E D D D D D D D D D D D D D D D
! 84 1 23 D D D D D D D E D D D D D D D D D E E E E E E E 84 1 24 E E E E E E F E E E D D D D D D E E F E E E E E 84 1 25 E E F F F F F F E D D D D D -
O E E E E E E E E i 84 1 26 E E E E E E E E E D D D D D D D D D D D D D D'D 1 84 1 27 D D D D D D D E E D D D D D D D E E E E E D E E j 84 1 2e E E E E E E E E E D D 5 s B 5 C D E E E F F F F i
84 1 29 F F G F F F E E E E D D D C D D D D D D D D D D l 84 1 30 D D D D D D D D D D C C 3 A B C D D E E E E E E 1 84 8 31 E E E E E E E E D D 5 5 A A B C D E F G G G F F l 84 2 F F F e F F E.E E E D D D D D E E F F F F E - -
84 2 2 - - - E E E E E E D D 5 D C D D D D D D D E E E S4 2 3 E E F E E E E E D C B 8 5 3 5 D D E E E E D D D 84 2 4 D D D E E D D D D D - - - - - - - D E E E E E D
! 84 2 S D D D D D D D C 3 A A A A A*A A 3 D D D D D D E 84 2 6 L E E E E D D D D D C C C D.D D D E E E E E E E l 84 2 7 E E E E E E E D D D D D D D D D E E E E E E E E i
84 2 8 E E E E E F F F E D D D C D D D E E E F F F E E
! 84 2 9 F F F F F F F F F E E D D D D D D D D E E E E E e4 2 to E E E E - - - - - - - - - - - - - - - - - - -
84 2 11 - - - - - - - - - - - - - - - - - - - - - F F F 84 2 12 F F E F E E E E D D DD D D D D D D E E F F E E i 84 2 13 F F F E E E E D D D C C 3 3 C D D E O e e e G O '
l 84 2 84 F G G G G G G G F F F E D D D E E F F F F F.F F i.
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- l PROGRAM: JFD VERSION: SP NPPD-CuGPCR STATION JFO: 100-M WIND Vs DELTA T E100M-10MI FOR JAN-JUN 1994 SITE IDENTIFIER: NPCSt DATA PERIOD EXAMINED: t/ 1/94 - 6/30/94 1
j STABILITY SAeED ON: DELTA T BETWEEN 100.0 AND 10.0 METERS l
HOURLY STAstLITIES HOURS VR MN DY $ 2 3 4 5 6 7 8 9 10 18 12 13 14 15 to 17 18 19 20 23 22 23 24 i
j S4 2 15 F F E E E E E E E E D D E.E E D E E E E E E E E
) 84 2 to E E E D D E E D D D D D D D D D D D D D D D D D ,
e4 2 17 D D D D D D D D D D D D D D D D D D D D D D D D 34 2 13 D D D D D D D D D D D D D D E - - - - - - D D D S4 2 19 D D D D D D D D D D C 5 A 5 5 5 C D D D D D D D 84 2 20 0 E D D E E E E D D D D C 5 C D D E E F E F F F e4 2 21 E E E E E F F E E D D D D C D D D E F e F G F F 84 2 22 F F F F F F F E E D D D D D D D E F F F F F F F 84 2 23 E E D D D D D D 5 5 5 5 A 5 5 C C D D D D D D E 1 e4 2 24 E E E E D E F E D D 5 5 5 5 5 D D D E E E E E F g 84 2 23 F F F F F F F.F E D D D D D D D D D D D D D D D j w 84 2 26 D D D D D D D D D D D D D D D D D E E E D D D D O S4 2 27 D D D C C D D C D C C 5 5 A A B C D D D D D D D 1
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- 84 2 29 D D D D D D D D D D D D C D D D D E E E F E E E
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! 84 3 12 D D D D D D D D D D C D C D D D D D D D D D D D
, 84 3 13 D D D D D D D D D D D D D D D D D D D E E E E E i 84 3 14 E E E E E E E E E E E E D C D D D E E E E - - -
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, S4 3 19 O D D D D D D D D D D D 5 5 C C C D D D D D D D
! 94 3 20 0 D D D D D D D C A A - - - - - C D A D D D D D I B4 3 21 D D D D D D D D D D D C C C C C D D D D D - - -
j S4 3 22 - - - - - - - - - - A A A A A 5 D D E E E E E E j 84 3 23 E E E E E E E D D D C D C D D D D D D D D D D D
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j S4 3 23 E E - E E E E E D - - D D D D D D D E E E E E E 84 3 26 E D D D D D D D D D D - - - - - - - - - - - - - ,
84 3 27 - - - - - - - - - - - - - - - - - - - - - - - -
i 94 3 2e - - - - - - - - - - - - - - - - - - - - - - - -
! 84 3 29 D D D D D D D E - - - - - - - - - D D D D D D D l 84 3 30 E E D D D D D C B A 5 5 5 A B C D D E E F E E E ii s
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I 4
PROGRAM: #D VERSION; 3P NPPD-COOPER STATION XD: 1OO-M WIND VS DELTA T i300M-1OMi FOR JAN-JUN 1984 4 SITE IDENTIFIER: MPCSt DATA PERIOD EMAMINED: t / t /S4 - 4/30/84 i STABILITY BASED ON: DELTA T DETWEEN 100.0 AND 10.0 METERS i HOURLY STABILITIES
, HouRe i YW red DV 1 2 3 4 5 6 7 8 9 10 Il 12 13 14 15 le 17 IS 19 20 21 22 23 24 1
! e4 33: E E E E E E E D D D D D D D D D D D D E _E E E E
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! 84 4 3 D D D D D D D D D D D D D D 3 O D D D D D D D D .
1 84 4 4 - - - - - - - - - - - - - - - - - - - E E E E E l 84 4 5 E E E E E E E D D A A A A A A A 3 D E E E F F F 84 4 6 e e o o e o e F D D D D D D D D D D E F E E E E
- ! e4 4 7 E E E E E - - D D E D D D D D D D D D D D D D D
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- S4 4 to D D D D D D E E E E D D D D D D D D D-D E E E D 1 84 4 11 D D D D D D D D D D D D D D E E D D D D E E E E
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- es 4 13 - - - - - - - - - - - - - - - - O D D D D D D D S4 4 16 D D D D D D D - - - - - - - - - - D D D E D D D
- e4 4 37 D D D F F F E D D C C A A A A A A C D E E E E E i 34 4 se F 0 F E F F E C D 5 A A A A A A B C E E E E D D
! 84 4 19 E E E E E E D D D C D D D D D D D D D E E D E E i e4 42o E E E E E D D D - - - - - - - - D D D D D D D D i 84 4 21 D D D D D D D D D D D D D D D D D D D D D D D D
' S4 4 22 D D D D D D D D D D A E C 3 C 3 5 C D D D D D D I
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84 4 23 E E E E E E D D D D D D D D D D D E E E E E E E e4 4 26 E E E E E E D D D D D D D D D E D E E E F E E E S4 4 27 D D E E E E D D D 8 3 A 3 3 3 C D D D D D D D D l 84 4 2e E E E E E E D D 3 3 A 3 3 C C D D D D E E E E E i 84 4 29 E D D D D D D D D C D D D D D D D 3 C D D D D D i 84 4 30 0 0 D D D - - - - - A A A B 5 D D D D D E E E F I S4 3 1 - - - - - - - - - - - - - - - - - - - - - - - -
) 84 3 2 - - - - - - - - D D D C D D D D E E E E E E E D i
84 3 3 - - - - - - - D D D D D D D D D D D D E E F E E l 84 3 4 F F E E E E E D D - D D D D D D D D D E E E E E j 84 3 3 E E E E E F G E E D D C D D D D D D - - - - - -
84 3 6 - - - - - - - - - - - - - - - - - - - - - - - -
S4 3 7 - - - - - - - - - - D D D D D D D D D D - - - -
84 3 3 - - - - - - - D D D D D D D D D D D D D D D E E S4 3 9 - - - - - - - O D D D C D D C D D D D E E E - -
84 3 to - - - - - - - - D O O D D D D D D D E F F e O O S4 3 11 - - 0 F E D D D D D C C C D D D D D D E E F F G 84 3 82 - - - - - - - F E D D D D C D D D D EE E E E E .
e4 3 13 E E E E F E D D D D D D D D D D D D D E E E E E 84 3 14 D D D E D E D D D C C C C C C D D D D D E E E E s s . , ,
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! PROGRAM: JFD VERSION: SP NPPD-COOPER STATION JFD: 100-M WIND VS DELTA T (100et-10MB FOR JAN-JUN 1984 SITE IDENittlER: NPCS2 DATA PERIOD ENAMINED. 1/ t/94 - 6/30/84 STASIL1TY BASED ON: DELTA T DETWEEN 100.0 AND 10.0 METERS l
HOURLY STABIL1 TIES HOURS YR 898 DY t 2 3 4 5 6 7 D 9 to it 12 13 to 13 !& 87 18 19 20 21 22 23 24 84 3 13 0 D D D D D D D C C C C D.D E E D D D E E E E E S4 3 16 E E E E E E D D D D 5 8 3 5 5 C C D D E E E E E I S4 3 17 E E E E E E D D D D D C D C D - - - - - - - - -
e4 3 se - - - - - - - - - - - - - O D D E D D D D D D E 84 3 IV O D - - E D D D D D D D D D D D D D D D E E E E S4 3 20 E E E E F E D E E D D D C D D D D D D E E F F E S4 3 21 E E E E E E D D D C D C C D D D D D D E F E E E S4 3 22 E E D D D D D D D D D D D D D D D D E E F F F F 84 3 23 0 F 0 F F E E D D D D C D D D D D D D E E E E E 94 3 24 E - - - - - D D D D D D C D D D D D D E D E E E S4 3 23 D D D D D D D D D D D D D D D D D D D E F F F F en 84 3 26 F F F F E E D D D D D D D D D D D D D D E E E E
- S4 3 27 E - - - - - - - - - - - - - - - - - - - - - - -
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- - - - - - - - - - - - - D D D D D D E F F F F 84 3 29
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! 84 & 10 E E F F F F E D D D D l > 0 D D D D D D D E E E E 84 & 11 E E E D E D D D D D D C C D D D D D E E E E E 84 & 32 E E E E E D E E D D D C C D D D D D E E E E D 4 84 & 33 - - E E E E E D D D D D D D D D D D E E E E E e4 & 14 - - - - - - - D D C C C C D D D D D E E E o D D i 84 6 13 D D D D D D D D D D D D D D D D D D D D D D D D S4 & le D D D D.D D D D D D D D D D D D D D E E E E E E 1 84 & 17 E E E E E E E D D D D D D D D D D D D E E EE E 84 & le E E E E E E D D D D D D D D E D E E E E F F F F i 84 & 19 F F F F F F E D D D D C C C D D D D D E E E E E 84 & 20 E E E E E E D D D D D - - - D D D D D D D D D D 84 6 21 D D D D D D D D D D D C C C C C D D D D D D D D S4 & 22 D D D E D E D D D D D C D D D E E E D E E E E E I S4 & 23 E E E E E E D E D D D D D D D D D D D D D E E E 84 & 24 F E E E F F E D D D D D C C C D D D D E F F F F 84 & 23 - - - E E E E E D D D D D D D C D D D E E E E E 84 & 2A E E E E E E E D D D D D D D D D D D D E F G e E i 84 & 27 E D D E E F E D D D D D D D D D D D D E F F F F 4 84 6 28 F F F F F F E E D D D C D D D E E E D E E E E E
i i
P900AAM: 50 VERSION: SP DePD-COOPER STATION # D: SOO-M WIND VS DELTA T 4SOCM-lOM) FOR JAN-JUN 1984 SITE IDENTIFIER: NPCS2 DATA PERIOD EMAMINED: 1/ 3/94 - 4/30/94 STASILITY BASES ON: SELTA T BETWEEN 100.0 AND 10. O IETERS
.l 04%NBLY STASILITIES hours Vit 898 Dy 1 2 3 4 5 6 7 8 9 30 11 22 13 14 131617le192028222324 De 6 29 E E E E E E D D D - - - - - - D D D D E E E E E B4 6 30 E D E D E E D D D D C C D D D D D D D E E E F D
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i ATMOSPHERIC DIFFUSION ESTIMATES l The tables of atmospheric diffusion estimates in this section were generated using the computer code X0QD0Q. Data are given for- 22 distances and 16 compass points (directions from the site) centered on the Cooper Nuclear Station. Tables are presented for the ground-level (vent) and elevated (stack) release options separately, and for the following time periods: January-March, April-June,
- and January-June, 1984. Ground-level estimates are based on the 10-m JFDs that include a substitution of 100-m wind speed and direction data for missing 10-m wind speeds and directions for the entire period. The 10-m wind data were lost for January through April due to a faulty sensor and a severed trans-mission cable.
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i B149
f > ATMOSPHERIC DIFFUSION MODEL ,
- OnsitemeteorologicaldatafortheperiodJanuary1,1984[throughJune30, 1984, were used to determine long-term (routine) diffusion. estimates for evalu-
-ating normal atmospheric releases from the Cooper Nuclear Station. Atmospheric' [.e dispersion parameters .(X/Q vdues) were determined'for the site boundary dis- )1 - .tances from each release point, the stahdard population distances, and special locations for nearest residence, cow, and garden using the methodology presented in U.S. NRC Regulatory Guide 1.111 (Ref. 1) and the computer code X0QD0Q (Ref.
j 2). Two release modes were analyzed. Releases from the 99-meter free-standing stack were considered 100 percent elevated, while releases from the reactor building, turbine-generator building,iradwaste building, and augmented radwaste building vents.were considered as-a 100-percent ground-level release (one com-bined source term was assumed to apply for these vents). Windswereobtainedfrommeasurementsatthe10-meterlevel(forground-level , releases) and 100-meter level (for elevated releases), and the stability class ! was based on the vertical temperature gradient between 100 meters and 10 meters. In accordance with Regulatory Guide 1.111, calm periods were distributed direc-tionally in proportion to the directional distribution within a stability class j of the lowest wind 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. For the purposes of these calculations, 100-m wind speed and direction data were substituted for missing 10-m wind speeds and directions for the entire period due to low 10-m data recovery. The substituted 10-m.
wind speeds were adjusted to the 10-m level by the power law relationship with a value of the exponent of 0.25 for stability classes A, B, C, and D aFe;0.50 " for stability classes E, F, and G (Ref. 2). "
- c. - ,
The Gaussian straight-line trajectory model, which assumes that the air flow l transports and diffuses effluents along a straight line through the entire region of interest in the airflow direction at the release. point, was modified - i to account for various modes of effluent releases. In the case of an elevated release, plume rise due to momenfum effects was incorporatsd into the calcula-tion. For ground-level releases, building wake effects were considered. l The mathematical equation used in the Gaussian straight-line trajectory model is: - - f
- %' ' (Eq. 1) exp 1
) (x/Q)$ = 2.032jk[xujk ~zk 'zk and l 2 + 0.5 02 j,)h SvT'zk., (Eq. 2) Izk * (#zk . I i y 8150
t
- where, _ i -. e' index identifying' downwind direction' sector; j- = index identifying wino 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; x = ' distance from the release point to a receptor; u = wind speed; 17 = vertical plume spread with a volumetric building wake correction for a release within the building wake cavity; a z
= vertical plume spread without volumetric building wake correction; D
z
= maximum adjacent building height either up or-downwir.d of the release point (44.5 m for ground-level releases);
and h e
= effective plume height.
The term I given in Equations 1 and 2 is used for ground-level release (h =0)wikhin'thebuildingwakecavity. For an elevated release, no volumetric buildingwakecorrectionneedstobeconsidered,i.e.,1 a . For all
+ buildingwakedeterminations,thereactorbuildingwasc5hs=ideFhdtobethe 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 (Ref. 3). w f de i e e wy 1 _ , 9151
c ,. - i s;
' References.
1.- U.S. Nuclear Regulatory Commission, Regulatory Guide 1.111, " Method
- for Estimating Atmospheric Transport and Dispersion of Gaseous Effi;ents in Routine Releases form Light-Water-Cooled Reactors," Rev.1,1977. ,
- 2. U.S. Nuclear Regulatory Commission, NUREG/CR-2919, "X0000Q: Computer Program for the Meteorological Evaluation of Routine Effluent i<eleases at Nuclear Power Stations," 1982.
- 3. U.S. ' Nuclear Regulatory Commi cion, Regulatory Guide 1.111, Revision 0,
. 1976. 6 B152
n - _ - . - . - 1 1 i
- APPENDIX C 3
l DOSE CALCULATIONS i e 7 e 9 e 9 e i
CONTENTS
~' , . h
~
- LIQUID EFFLUENT-DOSE. CALCULATIONS Cl l l
1 GASEOUS EFFLUENT DOSE' CALCULATIONS C4
' DOSE CALCULATION MODELS C17 ISOPLETH FIGURES' C20 i
4 i 0 4 i O a O e k 9 6
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 path-ways in the aquatic environment: potable water, aquatic foods, and recrea-
~
tional water use. Doses to both the maximum individual and 0 to 50-mile 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, for the first semiannual period.
Assumptions and data sources used for input to the LADTAP II code are described in a separate section of this appendix (see page C17). . O G C1
x ,
. n Table 1. Doses to Individual at the Site Boundary, Resulting From Exposure to Radioactivity Discharged in Liquid Effluents, January-June 1984, Cooper Nuclear Station a
Dose to Individual, mrem Period Total , and Pathway Skin Bone Liver Body Thyroid Kidney Lung GI-LLI 1st Quarter Drinking Water 1.90E-02 3.20E-02 2.40E-02 2.63E-03 1.06E-02 3'.55E-03 4.18E-03 Shoreline 1.82E 03 1.56E-03 1.56E-03 1.56E-03 1.56E-03 1.56E-03 1.56E-03 1.56E-03 Totals 1.82E-03 2.06E-02 3.36E-02 2.56E-02 4.19E-03 1.22E-02 5.11E-03 5.74E-03 m oo 2nd Quarter Eating Fish 4.88E-01 8.52E-01 6.28E-01 1.04E-03 2.82E-01 9.37E-02 2.90E-02 Drinking Water . 1.4 3E-02 2.23E-02 1.68E-02 3.83E-03 7.45E-03 .2.48E-03 1.84E-03 Shoreline 9.75E-04 8.35E-04 8.35E-04 8 35E-04 8.35E-04 8.35E-04 8.35E-04 8. 35E-04 Totals 9.75E-04 5.03E-01 8.75E-01 6.4 6E-01 5.71E-03 2.90E-01 9.70E-02 3.17E-02 Totals for 1st and 2nd Quarters 2.80E-03 5.24E-01 9.09E-01 6.72E-01 9.90E-03 3.02E-01 1.02E-01. 3.74E-02 a Calculated doses ar2 based on the following periods of exposures: l Fishing: from April through November Drinking water and shoreline: from January through December. I 4 0 ' . F G
Table 2. Doses to Population Within a 50-Mile Radius, Resulting From Exposure to Radioactivity. Discharged in Liquid Effluents, January-June 1984, Cooper Nuclear Station Dose to Population, manrema Period Total and Pathway Skin Bone Liver Body Thyroid Kidney Lung GI-LLI-1st Quarter i i Drinking Water b 1.80E-02 2.68E-02 1.48E-02' 1.97E-03 8.73E-03 3.03E-03 2.60E-03 Shoreline 1.79E-03 1.53E-03 1.53E-03 1.53E-03 1.53E-03 1.53E-03 1.53E-03 1.53E-03 Totals 1.79E-03 1.95E-02 2.83E-02 1.63E-02 3.50E-03 1.03E-02 4.56E-03 4.13E-03 2nd Quarter O Eating Fish 4.90E-04 7.93E-04 4.23E-04 2.47E-07 2.60E-04 8.93E-05 2.05E-05 Drinking Waterb 6.98E-03 9.65E-03 5.35E-03 1.48E-03 3.18E-03 1.10E-03 5.83E-04 Shoreline 4.98E-04 4.25E-04 4.25E-04 4.25E-04 4.25E-04 4.25E-04 4.25E-04 4.25E-04 i Swimming 8.33E-07 8.33E-07 8.33E-07 8.33E-07 8.33E-07 '8.33E-07 8.33E-07 Boating 9.70E-06 9.70E-06 9.70E-06 9.70E-06 9.70E-06 9.70E-06 9.70E-06 Totals 4.98E-04 7.91E-03 1.09E-02 6.21E-03 1.92E-03 3.88E-03 1.62E-03 1.04E-03 Totals for 1st and 2nd Quarter 2.29E-03 2.74E-02 3.92E-02 2.25E-02 5.42E-03 1.42E-02 6.18E-03 5.17E-03 a
- 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 Swiming: from June through September. b Exposure 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.
GASE0US 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. Four sites were selected for individual dose calculations: the site boundary, the nearest - residence, the nearest garden and the nearest cow. GASPAR implements the radio-logical dose models of Regulatory Guide 1.109 for determining the radiation exposure to man from four principal atmospheric exposure pathways: pl ume , ground, inhalation, and ingestion. The ingestion pathways considered were cow milk, meat, and vegetables. 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 maximum individual doses 'for the first and second quar-ters; population doses for the same period are given in Tables 5 and 6. Indi-vidual and population doses for the first semiannual period are contained in Tables 7 and 8, respectively. In addition, 0- to 50-mile distributions of gamma and beta air doses are presented in Tables 9,10, and 11 for the first and second quarters and for the first semiannual period, respectively. Because of differences in the amount of valid meteorological data recovered, dose contributions from the first and second quarters of 1984 cannot be summed to provide semiannual doses. Assumptions and data sources used for input to the GASPAR code are described in a separate section of this appendix (see page C17). 6 6 7 C4
. , , . .s
- l TABLE 3. DOSES 10 MAKIMM INDIVIDUAL, JANUARY-MARCil,1984 l
COOPER NUCLEAR STATION JANUARY-MARCH. 1984 SPECIAL LOCATION # 1 SITE DOUt3DARY At O.58 MIIES ElJE
, PATH;4AY T.90DY OI-TRACT BONE LIVER KIDNEY . THYROID LONO SKIN $ AD'A.T 3.74E-Ol 3.63E-OI 3.79E-On 3.79E-Ol 3.67E-Os 3.86E-Ot 3.67E-Ot 6.SIE-01 TEEN 3.73E-OI 3 60E-Ot 3 89E-Ol 3.90E-01 3 71E-OI 3.96E-OI 3.69E-01 6.StE-01 CHILD 3.72E-On 3.62E-Ot 4 23E-O! 4.IOE-01 3.77E-01 4.25E-Ot 3.71E-01 6.SIE-O!
4
~
ItJFANT 3.64E-O! 3 61E -OI 3 96E-Ol 4.OSE-OS 3 72E-OS 4 89E-01 3.69E-Ol 6.81E-01 f . O, u s l COOPER NUCLEAR STATIOl4 JANUARY-MARCH. 1984 SPECIAL t.DCATSOt4 e 2 NEAHEST RES At 0.90 MILES 14J PATH: JAY T. BODY OI-TRACT BOBJE LIVER KIDNEY THYROID LUNO SKIN ADULT 1.34E-Ot 1.29E-01 1 37E-01 1.37E-O! 1.3tE-01 1.46E-O1 1.30E-O! 2.40E-Ot TEEN 1.34E-Ol 1.29E-Ot i.42E-O! 1.42E-Ol 1,33E-OI 1.53E-01 1.3tE-01 2.40E-Ot CHILD 1.33E-Ot I . 29E -01 1.SOE-OI 1.32E-OS 1.36E-OS 1.75E-01 1.32E-01 2.40E-Ol INFANT 3.3OE-01 8. 20E -01 1.4bE-OI 1.48E-O! ! 34E-Ol 2.26E-Ol 1.3tE-01 2.40E . k 't i
~
1 TABLE 3. LX)SES TO MAXIntlN INDIVIDUAL. JANUARY-MARCH,1984, (Cont.) t COOPER NUCLEAR STATIOtt JANUARY-MARCH. 1984 SPECIAL LOCATIOf4 s 3 NEAREST C06J AT 2.30 MILES IJ PATKJAY 1. BODY OI-TRAC 1 SONE LIVER KIDNEY THYROID LUNO SKIN' ADULT 6.17E-03 5.94E-03 6.27E-03 6.26E-03 6.03E-03 7.13E-03 6. ole-03 1.09E-02 TEEr4 6.lSE-03 5.95E-03 6.47E-03 6.49E-03 6.ISE-03 7.39E-03 6.OSE-03 1.09E-02 CHILD 6.12E-03 5.93E-03 7.I4E-03 6.87E-03 6.23E-03 9.02E-03 6.09E-03 1.09E-02 l IBFANT 5.98E-03 5.91E-03 6.60E-03 6.7tE-03 6.14E-03 1.23E-02 6.OSE-03 1.09E-02 o m 4 COOPER NUCLEAR STATIDsl JANUARY-MARCH. 1984 SPECI AL L OCATIOf4 # 4 NEAREST CARDEN Af 1.00 MILES W i l I PATK4AY T.DODY OI-1RAC1 BONE LIVER KIDNEY THYROID LUNO SKIN ADULT 4.92E-02 4,75E-02 S.OOE-02 4.99E-02 4.82E-02 5.46E-02 4.80E-02 8.SSE-02 TEEN 4.91E-02 4.75E-02 S.16E-02 5.16E-02 4.88E-02 S.75E-02 4.83E-02 8.SSE-02 CHILD 4,89E-02 4.74E-02 5.6BE-02 3 47E-02 4.97E-02 6.63E 4.86E-02 8.SSE-02 4.77E-02 4.72E-02 5 26E-02 5 34E-02 4.90E-02 8.67E-02 4.83E-02 '8.8SE-02 INFANT y .
v
* * . s .
- g. ...
TABLE 4. Ex1SES TO MAXIMM INDlVIDUAL, APRIL. JUNE,1984 COOPER NOCLEAR STATIOf4 APRIL-JUNE. 1984 SPECIAL LOCATIOff a i SITE 80Ul4DARY A'I O.70 MILES 84 : SONE LIVER KIDNEY THYROID LUNO SMIN PATH; JAY T. BODY Cl-TRACT 1.97E-O1 1.95E- h 3.03E-Ot- t.97E-OI 3.67E-O1 ADULT 1.98E-O1 1.96E-O1 2 02E-Ot 1.99E-OI 1.96E-O1 2.OSE-Ot 1.99E-Ot t.96E-O1 3.46E-Ot 1.97E-O1 3.67E-On TEtti 2.03E-Ot 1.9eE-Ot 4.79E-Ol 1.97E-Ot 3.67E-Ot CHILD 2.COE-Ol 1.95E-On 2 ISE-On 2.OIE-O1 2.02E-Ot t.90E-OI 7.91E-01 1.97E-O1 3.67E-O1 INFANT I . 95E . ; I.94E-OI O N COOPER NUCLEAR STATION APRIL-JUNE. 1984 SPECIAL LOCATION e 2 NEAREST RES Al O.90 MILESIM T. BODY GI-TRACT SONE LIVER KIDNEY THYROID LUNG SMIN-PATK4AY ADULT 9.63E-02 .9.53E-02 9.85E-02 9.59E-02 9.SIE-02 1.6tE-01 9.55E-02. 1.7&E-01 TEEta 9.65E-02 9.53E-02 1 OOE-On 9.69E-02 9.56E-02 1.87E-01 9.57E-02 1.76E-On-9.87E-02 9.63E-02 2.70E-01 9.58E-02 1.76E-On CHILD 9.72E-02 9.SOE-02 i OSE-O! IBFANT 9.5tE-02 9.43E-02 9.78E-02 9.85E-02 9.64E-02 4.63E-On 9.57E-02 1.76E-01
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l . l l TABl.E 6. 00StiS IU POPul.ATION WIUilN 50 Mll.ES, APRIL-JUNE.1984 COOPER NOCLEAR STATIOl4 APRIL-JUNE. 1984 ALARA ANNUAL INTEGR ATED POPUI ATIOld DOSE
SUMMARY
(MAHREMI LIVER KIDNEY 1HYROID LONC SKIN PATHi4AY T. BODY GI-TRACT BONE -=__ .,_ _ PLtr.E I 8.99E-03 8 8 99E-03 8 8.99E-03 8 8.99E-03 ....,1 --_......,_... 8.99E-03 8 8.99E-03 I 9.tlE-03 1 1.89E-02
.....,______..... __.._____, 1
______ ........ ......... ..e.. .. ...., . _ CROUNO I 4.87E-04 8 4.87E-04 I 4.87E-04 . .... .., 1 4.87E-04
..__......... 8 4 87E-04 8 4.87E-04 ... .-,. 4 4.87E-04 ....--. ,.._- 8 5.72E-04
__._, .__... _,I
... -___._ _ __. ....... ... ._e
- INHAl. I 5.24E-06 8 6.SIE-06 3 2.43E-05 1 7.70E-06 8 9.47E-06 1 1.JtE-03 1 7.42E-05 8 0 OOE-01
_____..........e__........+._..___.............._........._,_ _ - _ _~_ l,
) ._. .__.... .
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1.27E-04.,_._ 8 1.30E-02
--__--, 8 1.94E-05 _,_ .... I O.OOE-01 8, ...... ..._____ . ..,_.. .. .._e_..
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2.94E-05 8 0.OOE - , HEAT I 1.71E-05 8 3.SIE-05 1 2.07E-05 8 1.93E-05 I 7.54E-06 8 4.43E-04 8 1.79E-06 I O.OOE-O!
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- 4. 49E--02 8 9.72E-03 1 1.95E-02 1 eTOTAle 1 9.93E-03 8 9.70E-03 1 1.04E-02 1 1.OOE-02 -----* - 8
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. , , . e .f TABLE 7. DOSES TO MAtlMUM INDIVilA1AL, JANUARY-JUNE,1984
- i
- COOPER NUCLEAR STATION JANUARY-JUNE. 1984 SPECIAL LOCATION e i SITE BOUtJDARY A's O.70 MILES #4
; PATKaAY T. BODY OI eRACT BOtJE LIVER KIDNEY THYROID LUNO SKIN ADULT 4.55E-01 4.4IE-OI 4.64E-Ot 4.60E-O! 4.46E-OI 5.47E-Ot 4.45E-Ol 8.22E-01 TEEN 4.54E-01 4.48E-Ol 4.77E-Ot 4.73E-Ol 4.SIE-O! 5.88E-Ol 4.48E-O! 8.22E-Ol CHILD 4 54E-Ot 4.40E-Ot 5.22E-OS 4.98E-Ot 4.SSE-Ot 7.20E-OI 4.SOE-On 8.22E-Ot ItFANT 4.42E-03 4.30E-OI 4 SIE-Ol 4 88E-OS 4.53E-O! 3.02E+00 4.48E-Ol S.22E-01 O
e-o 1 COOPER NUCLEAR STATIDs4 JANUARY-JUNE. 1984 SPECI AL L OCATION e 2 . NEAREST RES A I' O. 90 MILESIM t. PATetJAY T. BODY GI-TRACT BOtJE LIVER KIDNEY THYROID LUNO SKIN ADULT 2.34E-Ot 2 26E-Ol 2.39E-On 2.36E-On 2.28E-Ot 3.03E-Ot 2.28E-Ot 4.18E-OI TEtta 2.33E-03 2 260-01 2 -16E-O! 2.44E-OI 2.3tE-Ol 3 34E-Ot 2.29E-OI 4.18E-O! l CHILD 2.33E-Ol 2,25E-On 2.72E-O! 2.58E-OS 2.36E-Ol 4.3tE-On 2.30E-Ot 4.ISE-Ol lisANT 2.27E-Ol 2 24E-OI 2 40E-Ol 2 52E-OS 2.33E-Ot 6 57E-OS 2.29E-Ot. 4.18E-01
l TA81.E 7. DOSES TO MAKIMLN INDIVIIUAL, JANUARY-JUNE, 1984, (Cont.) COOPER NUCLEAR STATIOtt JANUARY-JUNE. 1984 SPECIAL LOCATION e 3 NEAREST COW AI 2.30 MILES W PATH *. JAY T.50DY OI-TRACT BONE LIVER MIDNEY THYRO!.s LUNO 'SMIN 1.53E-02 I.49E-02 1.53E-02 1.54E-02 1.SOE-02 2.OOE-02 1.50E-02 2.69E-02 ADUL.T 1.52E-02 1.49E-02 1.59E-02 1.58E-02 1.52E-02 2.20E-02 1.SIE-02 2.69E-C2 TEt N 1.48E-02 1.72E-02 1.65E-02 1.54E-02 2.82E-02 1.51E-02 2.69E-02 CHILD 1.52E-02 1.49E-02 1.48E-02 1.60E-02 1.62E-02 1.52E-02 4.25E-02 1.51E-02 2.69E-02 INFANT 4 3 to ' COGPER NUCLEAR STATION JANUARY-JUNE. 1984 SPECIAL LOCATION 8 4 NEAREST CARDEtJ i Ai 1.00 HILES tJ PATHLJAY T.30DY OI-TRACT BONE LIVER MIDNEY THYROID LU.W SKIN i ADULT 1.13E-OI 3.10E-Ot t.ISE-Ot 1.14E-Ot 1.IlE-01 1.42E-O! 1.11E-01 2.03E-01 lEEN 1.13E-Ot 1.lOE-O! 1.18E-O! ! 17E-Ot 1.12E-O! 1.SSE-Ol 1.ISE-O! 2.03E-On CHILD 1.13E-OS 1.lOE-On, 1.20E-OS 1.22E-01 1.34E-01 1.95E-Ol 1.12E-01 2.03E-01 Il!FANT 1.IOE-Ot I,09E-Ot 1.19E-01 1.20E-01 1,13E-O! 2.87E-01 1.I1E-Ol 2.03E-01 L e 7 9 1 8 e
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DOSE CALCULATION MODELS To evaluate the radiological consequences of the routine release of liquid and gaseous effluents from the Cooper Nuclear Station, two computer codes were used: LADTAP II for liquid doses and GASPAR for gaseous doses (Ref. I and ,+ 2). Both of these computer codes implemented the dose calculational method-ologies 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 factors, for liquid dose calculations, or atmospheric diffusion estimates, for gaseous dose calculations. , For liquid dose calculations, the hydrological dilution factors usad-for input to LA; TAP II, as well as other input parameters, are listed in Table 12. Other inputs not specifically listed in this table are taken from Regulatory Guide 1.109, Revision 1. l 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 GASPAR includes the following station-supplied data: o 0- to 50-mile population distribution i 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 The fraction of the daily feed intake derived from pasture for milk and meat animals (0.5). Other values used for input to GASPAR are default values from Regulatory Guide 1.109 Rev. 1. l t l l I t C17 w, - - . - - -
Table 12. Values of Parameters Used to Make Dose Estimates Resulting from Liquid Discharges January - June 1984. Cooper Nuclear Station Values Assigned Parameter Individual Population Reference Source Cooling flow rate' (cfs) 848; 1023 848; 1023 Station data ., Dilution factor 1 53.93; 104.07 Station data iloid'ing time: C Fish 24 hr' 168 hr b c, Drinking water 12 hp' 22.4 hr b 5; Shoreline exposure 0 hr c , 22.4 hr b Swimming 0 hr c 22.4 hr b Boating 0 hr 22.4 hr
*First b
and second quarters for 1984. respectively. Based on an average Missouri River water flow of 5.5 ft/sec, 84 miles down the river.
~
C Values from Regulatory Guide 1.109 Revision 1. , l I I . 4 9 ,
)
l Peferences 3
- 1. U.S. Nuclear Regulatory Commission, NUREG-0597, " User's Guide to GASPAR 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 Commission, 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.
1 l l 9 l l l l l* l l. C19
. a 1 i
l ISOPLETH FIGURES o
- Th'e average, atmospheric diffusion estimate .,isopleths presented in this section .
were generated from output of the computer code X0QD0Q. These figures present 1 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 iso-
-pleths are January through March, April through June, and January through June 1984. Separate figures are given for the ground-level (vent) and elevated (stack) release points. . Atmospheric diffusion estimates for ground-level releares are based on the 10-m JFDs, which include a substitution of 100-m w'r.J speed and direction data for missing 10-m wind speeds and directions for 'the entire period. The isopleths of gamma radiation dose were generated from output of the GASPAR computer code. The isopleths are for a combined ground-
' level (vent) and elevated (stack) release, and cover the same area and time periods given for the atmospheric diffusion estimates. These figures are pre- ) sented for purposes of displaying general data trends only. Due to the inac-curacies introduced by smoothing of the gridded data fields by the plotting routines, these plats should not be used to extract absolute values of .the parameters for given distances and directions. Exact values of these parameters. L can be obtained from the tables of atmospheric diffusion estimates provided in
! Appendix B and doses provided in Appendix C.
5 i t i I l i e C20 1
List of Figures
- No. Title
- 1. Cooper Nuclear Station and Surrounding Area from 0-5 miles O
- 2. Cooper Nuclear Station and Surrounding Area from 0-50 miles
- 3. Atmospheric Diffusion Estimate Isopleths, 0-5 Miles, 3 Ground-Level Releases, January-March 1984 (sec/m )
4 Atmospheric' Diffusion Estimate Isopleths, 0-50 Mjles, Ground-Level Releases, January-March 1984 (sec/m ) 5. Atmospheric Diffusion Elevated Releases, Estimate 1984 January-March Isopleths, (sec/m0-j) Miles,
- 6. Atmospheric Diffusion Estimate Isopleths, 0-g0 Miles, g Elevated Releases, January-March 1984 (sec/m )
4
- 7. Atmospheric Diffusion Estimate. Isopleths, 0-53 Miles, Ground-Level Releases, April-June 1984 (sec/m )
8. Atmospheric Diffusion Estimate Ground-Level Releases, April-JuneIsopleths, 1984 (sec/m 0-5g) Miles,
- 9. 0 Atmospheric Diffusion Elevated Releases, Estimate April-June 1984Isopleths,3)-5 (sec/m MHes,
- 10. 0 Atmospheric Diffusion Elevated Releases, Estimate April-June Isopleths,3)-50 1984 (sec/m MHes,
- 11. Atmospheric Diffusion Estimate Isopleths, 0-5 Mgles, Ground-Level Releases, January-June 1984 (sec/m )
1
- 12. Atmospheric Diffusion Estimate Isopleths, 0-50 giles, Ground-Level Releases, January-June 1984 (sec/m )
, 13. Atmospheric Diffusion Estimate Isopleths, 035 Miles, Elevated Releases, January-June 1984 (sec/m ) 14 Atmospheric Diffusion Estimate Isopleths, 0 50 Miles, Elevated Releases, January-June 1984 (sec/m3 )
- 15. Gamma Air Dose Isopleths, 0-S Miles, January-March 1984 (millirad)
- 16. Gamma Air Dose Isopleths, 0-50 Miles, Jane try-March
. 1984 (millirad)
- 17. Gamma Air Oose Isopleths, 0-5 Miles, April-June
. 1984 (millirad)
C21
List of Figures (Continued) No. Title .
- 18. Gama Air' 00se .Isopleths, 0-50 Miles, April-June 1984 (millirad) ,
- 19. Gama Air 00se Isopleths, 0-5 Miles, January-June 1984 (millirad)
- 20. Gama Air Oose Isopleths, 0-50 Miles, January-June
- . 1984 (millirad) 4 1
I i l I 1
- a 4
W t 4 C22 f r
" *. -- * - N >w-- +m-- 4_%.s % _ , . , , . , _ _ . , , , , ,__ __
l 6 y
, 7 x .,,, x8 n
g Es,Gan. \ U MISSOt.I ERP Mi. 2 Mi. 3 4 Mi M AR q,
)
gNemaha ___4[ i t.N f. 0 1 2 b 3 MHee
- N-
\
Figure 1. Cooper Nuclear Station and Surrounding Area from 0-5 Miles C23 !
,. W 4
h'
/ /b' ae o Council Bluffs .
10WA a t NEBRASKA Benevue e Matismouth .
. u-n L any Carinda Nebraska o "
Oty , t
,4 Rockport ,
i AuburnP # 10 Mi. 20 Mi. 30 Mi. 40lMi 50 Mi. t a
.Maryville e *'
r seatrice , t a Falls Cty e f .-. ._ _ .-._._._ l e Amazonia eSt. l Joseph j
- i. ~
Atchison e MISSOURI ) KANSAS ,
"d.
no so m % < o io
.n- j l
Leavenworth e r i i Figure 2. Cooper Nuclear Station and Surrounding Area from 0-50 Miles j C24
. - - - - - , - - - - - - - - - . - . , , . - .-,,--,_-_,..,,----.,-.-----m-r -.er-<-- .--,---a .w ?_ , , .,,-.-..n,--._--..-~-n---. --,
+
ASSOURI
)
I N i-kl-1 i . osc20s W '
oo \ - A ng_ y T op ft NE9RASKA e i a .:.4.
I , I I I N Figure 3. AtmosphericDiffusionEstimateIsopleths.0-5Mi}es, Ground-Level Releases, January-March 1984 (sec/m )
- ( g C25
~
e
# c.:v<.- e cs 79gq NESAASKA stat e. e -
b vi scar, em l . m. e .0 (/o* 0g p
$ ,e o c:w 3 ! % = .p r ,e %s s:
I *n s:ag 92 '
/
esa a:cs o ,, i U 4 o,c _ w. p f-
- sc; .
- w e v:=
S- oor og N es ass % KANSAS _ A arci:say 4 e MISSOURI O LO 23 30 Mt ss h l I l I N
.( '
Figure 4. Atmospheric Diffusion Estimate Isopleths, 0-50 Mjles, Ground-Level Releases, January-March 1984 (sec/m ) C26
osw f
\ /
m O-
. ,yv. ) ! ASSOJAI s
6 f r I
,o messocN s
e 1 +
+. e 4 "o , \ *+ @9 NESRASMA 6 , a e ~~ 25 l3 i i . I I I Figure 5. Atmospheric Diffusion Estimate Elevated Releases, January-March 1984Isopleths, (sec/m 0-j) Miles, k>
C27
\ I mn. ecu".*5 IOWA NESRASKA **# # ~
1
-l 1
Nm?fsaca7% t l een wsw ^
\ a* s. o ,, o. _ ] c: <
__3________ __ t -
.ec, 7 m
G *
%.<(1 esa =:c. ? --
g W L .
\.o.* - - s c.:- ,
en A 1, cs w KANSAS ,__ g .;csm.4 e MISSOURI o so 10 to a s % I I I I N k l Atmospheric Diffusion Estimate Isopleths, 0-j0 Miles, Figure 6. Elevated Releases, January-March 1984 (sec/m ) C28
a
~
chew
. sq yv- E-0 f .i.S OURI f N i; r I
h & e ., b m
- t. , . ~_,
I 9 oc c/ ' g NE m e
'o ,
k# 9 NESARSKA
~
t N Figure 7. Atmospheric Diffusion Estimate Isopleths, 0-5 Miles, Ground-Level Releases, April-June 1984 (sec/m3 ) C29
= _
%s - <~
m~ ew -S 'Iggq NESRASKA se Lt ais s wATTS l
< C e -m ** ?'o $ ~*e wo 8 ,.
o m
. . __. _ _ _. . ._.--y--
~ I f o
$ r %mn ~~ < l een a:cs O o . 's c:TY * ~0g e S:
esvw KANSAS _ MISSO'lRI a are,:s:s e O 10 23 23 MILES I I I N k Figure 8. Atmospheric Diffusion Estimate Ground-Level Releases, April-June Isopleths, 1984 (sec/m 0-5g) Miles, C30
o , h k
#* oi.,g, ..+",
em VI j A % dAI
~ ? \Y , l .[ '% l e3 on ' '%, )
NESAASKA
'N .
2% e ia 3 ,o I , I I I N
~
Figure 9. 0 Atmospheric Diffusion Elevated Releases, Estimate April-June 1984Isopleths,3)-5 (sec/m Miles, e C31
l l c e
* # c.:m es. s.u-*s Iggq S'- t w . e NESRASKA estiswN l w. De<
e -- l Io .og ^ esaa a e' em .--. .- -.- -- h (* v f
' . oco; -
e o,, - r
,,%j _.- =
v . sea =:cs
- s - p s-on
\ ea e:cw, s:
KANSAS - arcs:scs o MISSCdEII n +
;0 20 30 ME.ES , "4 o '9 I I 1 l 1 ! zaww e 0-Figure 10. Atmospheric Diffusion Estimate Isopleths,3) 50 Miles, Elevated Releases, April-June 1984 (sec/m .
C32
. f oMu.
l
- i SA V- OE-t,,o ASSOURI J
),
I
% ?
g 1 < e umscoes l !
. ... .. Y',
NE @ A
'%"o>
k# 9 NESRASKR O o i a : es ! I . I I i N I l Figure 11. AtmosphericDiffusionEstimateIsopleths,0-5Mjles, Ground-Level Releases, January-June 1984 (sec/m ) C33
^ ,.',_'..g*
'"_. .- ( :is : . .-Q_ R ,., (f' _- l _ _' . .:f; _k_?_ ,' ' _ , ' + - { * '- \ _: _-_' . _ V ' y ._ . ' . . '. _ _ ) ? . 6- Y _' (
%. - _.? _ , [ .
3+ f,.*[; b . O LOLNCIw !b.U " s {ggq NESRASKA et ute. e _ DJ'S .
'I D, i %g 9
e .. p o. s . n o @ o 148 D m' sea e
- c: -
e _ . . _ _ ___ _ . _ _
..y.
f !
~ ] #1 / *n * ' ?
e ,
~
g. 8 m)a esa =::.- - C - o a l
. - . - - - - - - - - - . - . " 5W~.:4--.- /
- w m :=
e s: T. og, .csw U9 KANSAS _ f MISSO'JEI a are,:res e 9 o no 20 20 MT sS Q t I I 1 's sawm e Figure 12. Atmospheric Diffusion Estimate Isopleths, 0-50 giles, Ground-Level Releases, January-June 1984 (sec/m ) C34
~ \ .,P
F-8>p oew
\
e i f so. N l r \ 3ssO A-
\
i s, ' 5 \ .- o, N c
. ooP* ?* f 4'
e I MO c:* > \
*e 49 seeanska g
o , , , - \ i . j i i y
. Figure 13. Atmospheric Diffusion Estimate Isopleths, 0 5 Miles, Elevated Releases, January-June 1984 (sec/m )
C35
^
- m . e s -s e-asvu .
- _
~
v sww i sus o=, e -. ; c v:Noa
, C -09 c TY ?
f - g gxo: a
.I e
o u' c tJ e}; e o o \ rsa s % ?
- s c::v , \
0 4 430s 4 e s:
. css =%
MISSC#I n =T x sos e 9 0 as 23 so ML ss e
! I I I N %
_ .x? Figure 14. Atmospheric Diffusion Estimate Isopleths, 03 50 tiiles, . Elevated Releases, January-June 1984 (sec/m ) C36
l I
~
f I
/
- 0. 0
\
0, o
~~ %go, O
g ea n , * ,550d* y \ 3 r )
/D . co" . . \
01 o Oog g8 x j oc D* ggs3pASKA o 2 - " -' " l ; \ N Figure 15. Gama Air Dose Isopleths, 0-5 Milo, January-March 1984 (millirad) C37 ___-l-_______._ - -
I
- t. .
L ' m s.ea~s Iowq - NEBRASKA N T/A
\ 'N e
e en - ' l
.00E-o-If A 9 * ** **
c._. . ocV l
\
r Y a N o W ed AT
'o- s e
e.= =::e , e e O 1 i
'0 R 0g 3 ~ # -% 9W % m :a e st mse, KANSAS _
a a c., sw e MISSOURI o i to l ao l I to*as k9 eawn, e Figure 16. Gamma Air Oose Isopleths, 0-50 Miles, January-March 1984 (millirad)
- C38
1 f i
, o DhEL.
O 00 So. NV~ 8 1 & p
- ( \ l ._
o,
~% ' )
o s "E o
.cos o 4.-
NEeoqsM9 c, . 3 ,:.n i,I I I N Figure 17. Gamma Air Dose Isopleths, 0-5 Miles, April-June 1984 (millirad) C39
\hl 5 wee an. m.u--s rogg ._
NESRASKA mee e - h
.a vrwoJN I o ; o k e- -
i sc 9 g 0 T~o" c mm.
- ,e t 8 c:n 3 _ _ _ __ . . __.__ __ --
f s - -
~.
L, u 8 ,y .- e'O, i l e
- esala:ce ,
o ?
. r o te .
Sc.
~
i . c
-I . .wm =
s 'o, e s-JO5 M KANSAS -
, , _ , , MISSOURI O 10 23 30 M M S $
i i i I $ sesmen e l Figure 18. Gamma Air Dose Isopleths, 0-50 Miles, - April-June 1984 (millirad) l C40
, ;* e m
" 05 o_
4 (o. o .oo ect v-
~
A SOURA 9 l O , LS i o e + ) o e hO O 5
/
NEBRASKR 0 1 2 2 %1.T1 tN 1 , I I I Figure 19. Gama Air Dose Isopleths, 0-5 Miles,
. January-June 1984 (millirad) e C41
b% l
- ?,. __ s .s ,,
NESRASKA eh.tm k i I e Na r:sw~,u m t C s.oc -os op e w. Oc . * ?' J '*s N ag:sca y . -s , . c::< g . .. . _ _ _ _ _ _ _ _ . - f i .- .o = ,., M i& o
)
be %e 1 8 e o,
,, - q.- e N
e esa - ,,- a f .
'o, -
sBW< , E oce,
# wae::y:n / 5, >:s*= ,
KANSAS _ ars :s:s . MISSNE E o to :o so sr s. l %, i I I I u %
.sanwm e Figure 20. Gama Air Dose Isopleths, 0-50 Miles, January-June 1984 (millirad) ,
C42 l
GENERAL OFFICE Nebraska Public Power District " "htA"o"!c"<*4's^M^ "" z h"* - - - _ . - . - - - - - - i October 1, 1984 Mr. John T. Collins }2@20W2 Regional Administrator OCT - 9 884 U. S. Nuclear Regulatory Commission Region IV - I 611 Ryan Plaza Drive Suite 1000 Arlington, Texas 76011
Subject:
Semi-Annual Operating Report - Radioactive Effluents Cooper Nuclear Scation January 1, 1984 through June 30, 1984 . NRC Docket No. 50-298, DPR-46
Dear Mr. Collins:
In accordance with Paragraph 5.4.1.b of the Cooper Nuclear Stacion
- Environmental Technical Specifications, the Nebraska Public Power District submits the Cooper Nuclear Station Semi-Annual Operating Report - Radioactive Effluents for the period January 1, 1984 through June 30, 1984.
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 my office. Sincerely, M Jay . P11 ant Technical Staff Manager Nuclear Power Group o. WRL/cl u Enclosure N cc: Document Control Desk w/1 copy ] i U.S. Nuclear Regulatory Commission , g Washington, DC 20555}}