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{{Adams
#REDIRECT [[U-603851, Annual Radioactive Effluent Release Report for the Period of January 1, 2007 Through December 31, 2007]]
| number = ML081140196
| issue date = 04/12/2008
| title = Annual Radioactive Effluent Release Report for the Period of January 1, 2007 Through December 31, 2007
| author name = Kanavos M
| author affiliation = AmerGen Energy Co, LLC, Exelon Nuclear
| addressee name =
| addressee affiliation = NRC/Document Control Desk, NRC/NRR
| docket = 05000461
| license number = NPF-062
| contact person =
| case reference number = FOIA/PA-2010-0209, U-603851
| document type = Annual Report, Letter
| page count = 79
}}
 
=Text=
{{#Wiki_filter:AmerG .An Exelon Company Clinton Power Station R. R. 3, Box 228 Clinton, IL 61727 1 OCFR50.36a U-603851 April 12, 2008 Document Control Desk Nuclear Regulatory Commission Washington, D.C. 20555 Clinton Power Station Facility Operating License No. NPF-62 NRC Docket No. 50-461
 
==Subject:==
Clinton Power Station 2007 Annual Radioactive Effluent Release Report Attached is the Annual Radioactive Effluent Release Report for Clinton Power Station (CPS)for the period of January 1, 2007, through December 31, 2007.This submittal is provided in accordance with the requirements of section 5.6.3 of the CPS Technical Specifications and section 7.1 of the Offsite Dose Calculation Manual.Respcfly M. E. Kanavos Plant Manager Clinton Power Station EET/RJC/blf Attachment cc: Regional Administrator, Region III NRC Senior Resident Inspector
-Clinton Power Station Office of Nuclear Facility Safety -Illinois Emergency Management Agency U I a I I I I I I I~1 I'I I I I£I I U Exeltn..Nuclear 01 January 2007 -31 December 2007 ANNUAL RADIOACTIVE EFFLUENT RELEASE REPORT CLINTON POWER STATION -DOCKET NUMBER 50-461 Prepared by: Clinton Power Station-- page 1 of 80 --
TABLE OF CONTENTS SECTION 1 2 3 4 5 6 7 8 9 10 11 12 TITLE Executive Summary Introduction Supplemental Information Radioactive Effluent Data Solid Waste Disposal Information Dose Measurements and Assessments Meteorological Data and Dispersion Estimates ODCM Operational Remedial Requirement Reports Changes to Radioactive Waste Treatment Systems New Locations for Dose Calculation and / or Environmental Monitoring Corrections to Data Reported in Previous Reports Changes to the Offsite Dose Calculation Manual PAGE 5 6 12 16 27 30 41 73 74 75 78 79-- page 2 of 80 --
LIST OF TABLES TABLETIL AE NUMBER TTEPG Gaseous Effluents
-Summation of All Releases 16 1 0 1lA Air Doses Due to Gaseous Releases 17 0 1lB Doses to a Member of the Public Due to Radioiodines, 17 Tritium and Particulates in Gaseous Releases 2 Gaseous Effluents
-Nuclides Released 18 3 Radioactive Gaseous Waste LLD Values 19 4 Waterborne Effluents
-Summation of All Releases 21 5 Waterborne Effluents
-Nuclides Released 22 6 Radioactive Liquid Waste LLD Values 23 7 Solid Waste and Irradiated Fuel Shipments 28 8 Maximum Offsite Doses and Dose Commitments to Members of the 31 Public In Each Sector Calculated Doses to.Members of the Public During Use of the 9 Department of Natural Resources Recreation Area in the East- 34 Southeast Sector within the CPS Site Boundary 10 Calculated Doses to Members of the Public During Use of the Road in 3 the Southeast Sector within the CPS Site Boundary S Calculated Doses for the Residents in the South-Southeast Sector 36 within the CPS Site Boundary 12 Calculated Doses for the Residents in the Southwest Sector within the 3 CPS Site Boundary Calculated Doses to Members of the Public During Use of the 13 Agricultural Acreage in the South-Southwest Sector within the CPS 38 Site Boundary 14 Calculated Doses for the Residents in the West-Southwest Sector 39 within the CPS Site Boundary 15 Calculated Doses to Members of the Public During Use of Clinton 4 15 ~Lake in the Northwest Sector within the CPS Site Boundary 4 16 Meteorological Data Availability 42 17 Classification of Atmospheric Stability 43 18 Joint Wind Frequency Distribution by Stability Class 44-- page 3of 80 --
LIST OF FIGURES FIGURE TITLE PAGE NUMBER 1 CPS Airborne Effluent Release Points 7 2 CPS Waterborne Effluents Release Pathway 8 3 Effluent Exposure Pathways 11 4 Areas Within the CPS Site Boundary Open to Members of the Public 33-- page 4 of 80 --
Figure 1 CPS AIRBORNE EFFLUENT RELEASE POINTS'Release Point Height (feet)Building Height (feet)Release Point Geometry Release Point Area (ft 2)Release Point Diameter (feet)Annual Average Flow Rate (ft 3/sec)Vertical Exit Velocity (feet/sec)
HVAC Exhaust Vent SGTS Exhaust Vent 200 200 190 190 Duct Pipe 120 2 12* 1 2,738 73 33 41* Effective 2(A/T)2 diameter-- page 7 of 80 --
Figure 2 CPS WATERBORNE EFFLUENTS RELEASE PATHWAY PLANT SWCE WATER I LIQUID RADWASTE DISCHARGE LINE (10-60 OR 50-30 GMP RADIAN.I MONITOR IJ.AR/lmnwP
$ESOPOQ(1 C.L.1cmAm BAs, ONI EAW 8~rCH ISOTP10 M W AM(oWJJON FMOW M-4 ISOLATION VALVE WRA.,ORLOW O~t.JI1OH PLOW Mt (AT LEAST 5000 GPM)" COMPOSITE SAMPLER COLLE,.t PPR0AMPZEIY 20 (l eVERY GL CAM1lE8 FROM MIE OISCI4,RGE FUME FOR ILOM4ThIY AHIYSIS LAKE CLINTON U I I I I I I 1 ISEALWEU.P LANT CIRCULATING WATER (0-567.000 GPM)I I I I I a-4 I.DISCHARGE FLUME j 3.4 MILES I-- page 8 of 80 --
Exposure Pathways A radiological exposure pathway is the vehicle by which the public may become exposed to radioactivity released from nuclear facilities.
The major pathways of concern are those that could cause the highest calculated radiation dose. These pathways are determined from the type and amount of radioactivity released, the environmental transport mechanism,.,and-,how the plant environs are used (i.e., residence, gardens, etc.). The environmental transport mechanism includes the historical meteorological characteristics of the area that are defined by wind speed and wind direction.
This information is 'used to evaluate how the radionuclides will be distributed within the surrounding area. The most important factor in evaluating the exposure pathway is the use of the environment by the public living around CPS.Factors such as location of homes in the area, use of cattle for milk, and the growing of gardens for vegetable consumption are important considerations when evaluating exposure pathways.
Figure 3 illustrates the effluent exposure pathways that were considered.
The radioactive gaseous effluent exposure pathways include direct radiation, deposition on plants and soil, and inhalation by animals and humans. The radioactive liquid effluent exposure pathways include fish consumption and direct exposure from Lake Clinton.Dose Assessment Whole body radiation involves the exposure of all organs in the human body to ionizing radiation.
Most naturally occurring background radiation exposures consist of whole body exposure although specific organs can receive radiation exposure from distinct radionuclides., These radionuclides ehter the body;' through Inhalation and ingestion and seek different organs depending on the nuclide.-
For example, radioactive iodine' selectively concentrates ,in the thyroid, radioactive cesium collects in muscle and liver tissue,,, and radioactive s trontium in mineralized bone.The total dose to organs from a given radionuclide also depends on the amount of activity in the organ and the amount 6f time that the radionuclide remains in the body. Some radionuclides remain for very short periods of time due to their rapid radioactive decay and / or elimination xrate from the body, while others may remain longer.Radiation dose to the public in the-area surrounding CPS is calculated for each release using historical weather conditions coupled with the concentrations of radioactive material present. The dose is calculated for all sixteen geographical sectors surrounding CPS and includes the location of-the nearest residents, vegetable gardens producing broad leaf vegetables and dairy animals in all sectors. The calculated dose also uses the scientific concept of a "maximum exposed individual" and"standard man", and the maximum use factors for the environment, such as how much milk an average person consumes and how much air a person breathes in a year.Section 6 contains more detailed information on dose to the public.-- page 9 of 80 --
I I Gaseous Effluents Gaseous effluent radioactivity released from CPS is classified into two (2)categories.
The first category is noble gases. The second category consists of 113 1133, H 3 , and all radionuclides in particulate form with radioactive half-lives greater than eight (8) days. Noble gases -such as xenon and krypton -are biologically and chemically non-reactive.
As such, these radionuclides
-specifically Kr 8 5 M  , Xe133 and Xe135 -are the major contributors to external doses. Halogens 1131 and 1133 , H 3 and radionuclides in particulate form with radioactive half-lives greater than eight (8) days are the major contributors to internal doses.Liquid Effluents Liquid effluents may originate from two (2) sources at CPS. The first is effluent from the Radioactive Waste Treatment System. This water is demineralized prior to release. Samples are taken after the tank has been allowed to adequately recirculate.
The second is from heat exchanger leaks found in closed cooling water systems that service radioactively contaminated systems. This would be considered an abnormal release. As a matter of station management commitment, CPS strives to be a zero (0)radioactive liquid release plant. The last liquid release occurred in September of 1992.Solid Waste Shipments To reduce the radiation exposure to personnel and maintain the federally required ALARA concept, the NRC and the Department of Transportation
[DOT] have established limits on the types of radioactive waste and the amount of radioactivity that may be'.packaged and shipped offsite for burial 'Yor disposal.
To ensure that CPS is complying with these regulations,:
the types of waste and the radioactivity present are reported to the NRC.--page 10 of 80--I I*I!I I i I I'I I I ,I I U FIGURE 3 EFFLUENT EXPOSURE PATHWAYS ANIMALS (MILK, M'EAl~1 j~,RELEASES DILUTED-BY ATMOSOI-Et~g....
lA 4ýAIRBORNE RELEASES, PLUME EXPOSURE-AND INHALATION CONSUMED rni ~ l CLINTON POWER STATION I IMED CONSUMEDýBY PEOPLE LIQUID RELEASES PEOPLE.RELEASES DILUTED.BY LAKE-- page 11 of 80 --
I SECTION 3 3 SUPPLEMENTAL INFORMATION I. REGULATORY LIMITS The NRC requires nuclear power facilities to be designed, constructed and operated in such a way that the radioactivity in effluent releases to unrestricted areas are kept ALARA. To ensure these criteria are met, each license authorizing nuclear reactor operation includes the Offsite Dose Calculation Manual [ODCM] governing the release of radioactive effluents.
The ODCM designates the limits for release of 'I effluents, as well as the limits for doses to the general public from the release of radioactive liquids and gases. These limits are taken from Title 10 of the Code of Federal Regulations, Part 50, Appendix I (10CFR50 Appendix I), Title 10 of the Code ofI Federal Regulations, Part 20.1301 (10CFR20.1301) and Section 5.5.1 of our Station's Technical Specifications.
Maintaining effluent releases within these operating limitations demonstrates compliance with ALARA principles.
These limits are just a fraction of the dose limits established by the Environmental Protection Agency [EPA]found within Environmental Dose Standard Title 40, Code of Federal Regulations, Part 190 [40CFR190].
The EPA has established dose limits for members of the public in the , vicinity of a nuclear power plant. These dose limits are: Less than or equal to 25 mRem per year to the total body.Less than or equal to 75 mRem per year to the thyroid.Less than or equal to 25 mRem per year to any other organ. I Specific limit information is given below. 5 A. Gaseous Effluents 1. The maximum permissible concentrations for gaseous effluents shall not exceed the values provided within Section 5.5.4.g of Station Technical Specifications.
To ensure these concentrations are not exceeded, dose rates due to radioactive materials released in gaseous effluents from the site to areas at and beyond thecsite area boundary shall be limited to the follow ing: .i#a. Noble gases b Less than or equal to 500 mRem/year to the total body. 'U Less than or equal to 3,000 mRem/year to the skin. 3 b. 1131, 1133, H 3 , and all radionuclides in particulate form with radioactive half-lives greater than eight (8) days: 3 Less than or equal to 1,500 mRem/year to any organ. £-- page 12 of 80--0
: 2. In accordance with Title 10 of the Code of Federal Regulations, Part 50, Appendix I, (10CFR50 Appendix I) air dose due to noble gases released in gaseous effluents to areas at and beyond the site boundary shall be limited to the following:
: a. Less than or equal to 5 mRad for gamma radiation and less than or equal to 10 mRad for beta radiation during any calendar quarter.b. Less than or equal to 10 mRad for gamma radiation and less than or equal to 20 mRad for beta radiation during any calendar year.3. In accordance with Title 10 of the Code of Federal Regulations, Part 50, Appendix I, (10CFR50 Appendix I), dose to a member of the public (from 1131, 1133, H 3 , and all radionuclides in particulate form with radioactive half-lives greater than eight (8) days) in gaseous effluents released to areas at and beyond the site boundary shall be limited to the following values: a. Less than or equal to 7.5 mRem to any organ, during any calendar quarter.b. Less than or equal to 15 mRem to any organ, during any calendar year.B. Liquid Effluents 1. The concentration of. radioactive material released in liquid effluents to unrestricted areas shall be limited to the values provided within Section 5.5.4.b of Station Technical Specifications for radionuclides other than dissolved or entrained noble gases. For dissolved or entrained noble gases, the concentration shall be limited to 2.OE-04 pCi/mI total activity.2. The dose or dose commitment to a member of the public from radioactive materials in liquid effluents released to unrestricted areas shall be limited to: a. Less than or equal to 1.5 mRem to the total body and less than or equal to 5 mRem to any organ during any calendar quarter.b. Less than or equal to 3 mRem to the total body and less than or equal .to 10 mRem to any organ during any calendar year.II. AVERAGE ENERGY The CPS ODCM limits the dose equivalent rates due to the release of fission and activation gases to less than or equal to 500 mRem per year to the total body and less than or equal to 3,000 mRem per year to the skin. These limits are based on dose calculations using actual isotopic concentrations from our effluent release streams and not based upon the gross count rate from our monitoring systems. Therefore, the average beta and gamma energies [E] for gaseous effluents as described in Regulatory Guide 1.21, "Measuring, Evaluating, and Reporting Radioactivity in Solid Wastes and-- page 13 of 80 --
Releases of Radioactive Materials in Liquid and Gaseous Effluents from Light-Water-Cooled Nuclear Power Plants", are not applicable.
I I I I I I I-- page 14 of 80 --U Ill. MEASUREMENT AND APPROXIMATIONS OF TOTAL RADIOACTIVITY A. Fission and Activation Gases 1. Gas samples are collected weekly and are counted on a high purity germanium detector (HPGe) for principal gamma emitters.The HVAC and SGTS release points are continuously monitored and the average release flow rates for each release point are used to calculate the total activity released during a given time period.2. Tritium is also collected by passing a known volume of the sample stream through a gas washer containing a known quantity of demineralized water. The collected samples are distilled and analyzed by liquid scintillation.
The tritium released was calculated for each release point from the measured tritium concentration, the volume of the sample, the tritium collection efficiency, and the respective stack exhaust flow rates.B. lodines Iodine is continuously collected on a silver zeolite cartridge filter via an isokinetic sampling assembly from each release point. Filters are normally exchanged once per week and then analyzed on an HPGe system. The average flow rates for each release point are averaged over the duration of the sampling period and these results -along with specific isotopic concentrations
-are then used to determine the total activity released during the time period in question.C. Particulates Particulates are continuously collected on a filter paper via an isokinetic sampling assembly on each release point. Filters are normally exchanged once per week and then analyzed on an HPGe system. The average flow rates for each release point are averaged over the duration of the sampling period and these results -along with specific isotopic concentrations
-are then used to determine the total activity released during the time period in question.D. Liquid Effluents Each tank of liquid radwaste is recirculated for at least two (2) tank volumes, sampled, and analyzed for principal gamma emitters prior to release. Each sample tank is recirculated for a sufficient amount of time prior to sampling ensuring that a representative sample is obtained.
Samples are then analyzed on an HPGe system and liquid release permits are generated based upon the values obtained from the isotopic analysis and the most recent values for H , gross alpha, Fe 5 5 , Sr 8 9 and Sr 9°.An aliquot based on release volume is saved and added to composite containers.
The concentrations of composited isotopes and the volumes of the releases associated with these composites establish the proportional relationships that are then utilized for calculating the total activity released for these isotopes.-- page 15 of 80 --
IV. DESCRIPTION OF ERROR ESTIMATES Estimates of measurement and analytical error for gaseous and liquid effluents are calculated as follows: ET = /[(E 1 )2 + (E2 )2 +...(En )2]where: ET = total percent error, and El...EN = percent error due to calibration standards, laboratory analysis, instruments, sample flow, etc.-- page 16 of 80 --
SECTION 4 RADIOACTIVE EFFLUENT DATA TABLE 1 GASEOUS EFFLUENTS
-Summation Of All Releases Data Period: 01 January 2007 -31 December 2007 Continuous Mixed Mode Units Quarter Quarter Quarter Quarter Est.Total 1 2 3 4 Error,%A. Fission & Activation Gases 1. Total Release Ci O.OOE+01 O.OOE+01 O.OOE+01 O.OOE+01 30 2. Average release rate for period pCi/sec 0.00E+01 0.00E+01 0.00E+01 0.00E+01 3. Percent of ODCM Limit B. Iodines 1. Total Iodine-131 Ci 1.59E-06 9.27E-06 2.18E-05 9.32E-06 31 2. Average release rCi/sec 2.04E-07 1.18E-06 2.75E-06 1.17E-06 rate for period__ _ _ __ _ _ _ ____ __ _ _ _ _ _3. Percent of ODCM Limit C. Particulates
: 1. Particulates with Ci O.OOE+01 1.28E-06 1.88E-05 9.23 E-07 24 half-lives
>8 days 2. Average release rCi/sec 0.OOE+01 1.63E-07 2.37E-06 1.16E-07 rate for period ___________
: 3. Percent of %ODCM Limit 4. Gross alpha Ci 5.21 E-07 1.02E-06 7.46E-07 6.38E-07 radioactivity D. Tritium 1. Total Release Ci 9.84E+00 8.90E+00 9.02E+00 9.78E+00 21 2. Average release rate for D)eriod ltCi/sec 1.27E+00 1.13E+00 1.1 4E+00 1.23E+00 3. Percent of ODCM Limit %*** Applicable limits are expressed in terms of dose. See Tables 1A and 1B of this report.-- page 17 of 80 --
TABLE 1 A Air Doses Due to Gaseous Releases Doses per Quarter Type of ODCM 1st % of 2nd % of 3 rd % of 4th % of Radiation Limit Quarter Limit Quarter Limit Quarter Limit Quarter Limit Gamma 5 mRad 0.OOE+01 O.00E+01 O.00E+01 0.OOE+01 O.OOE+01 0.OOE+01 0.OOE+01 O.00E+01 Beta 10 mRad 0.OOE+01 0.OOE+01 0.OOE÷01 0.00E+01 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Doses per Year Type of ODCM Radton Limit Year % of Limit Radiation Limit Gamma 10 mRad 0.OOE+01 0.OOE+01 Beta 20 mRad 0.OOE+01 0.OOE+01 TABLE 1 B Doses to a Member of the Public Due to Radioiodines, Tritium, and Particulates in Gaseous Releases Doses per Quarter Type of ODCM Quarter % of Quarter % of Quarter % of Quarter % of Organ Limit 1 Limit 2 Limit 3 Limit 4 Limit Bone 7.5 1.11E-08 1.48E-07 6.47E-08 8.63E-07 7.39E-06 9.85E-05 6.79E-08 9.06E-07 Liver 7.5 1.77E-04 2.37E-03 1.61E-04 2.14E-03 1.63E-04 2.17E-03 1.76E-04 2.35E-03 TBody 7.5 1.78E-04 2.37E-03 1.63E-04_.
2.18E-03 1.80E-04 2.40E-03 1.78E-04 2.38E-03 Thyroid 7.5 1.83E-04 2.44E-03 1.91 E-04 2.55E-03 2.35E-04 3.14E-03 2.08E-04 2.77E-03 Kidney 7.5 1.78E-04 2.37E-03 1.61 E-04 2.14E-03 1.63E-04 2.18E-03 1.77E-04 2.36E-03 Lung 7.5 1.78E-04 2.37E-03 1.61 E-04 2.14E-03 1.63E-04 2.18E-03 1.77E-04 2.35E-03 GI LLI 7.5 1.78E-04 2.37E-03 1.61 E-04, 2.15E-03 1.67E-04 2.23E-03 1.77E-04 2.36E-03 I I I a I I I I I I I I I I I I I I Doses per Year Type of ODCM Year % of Organ Limit Limit Bone 15 7.53E-06 5.02E-05 Liver 15 6.78E-04 4.52E-03 TBody 15 6.99E-04 4.66E-03 Thyroid 15 8.17E-04 5.45E-03 Kidney 15 6.78E-04 4.52E-03 Lung 15 6.78E-04 4.52E-03 GI LLI 15 6.83E-04 4.55E-03-- page 18 of 80--a U TABLE 2 CLINTON POWER STATION GASEOUS EFFLUENTS
-Nuclides Released YEAR: 2007 Mixed Mode Release X Elevated Release Ground-Level Release I Continuous Mode I xI Batch Mode I , .= i, U 1131 I Ci 1.59E-06 I 9.26E-06 I 2.18E-05 I 9.32E-06 1133 I Ci I O.OOE+01 I O.OOE+01 I 2.15E-05 I 1.43E-05 I Total for Period Ci 1.59E-06 9.26E-06 4.33E-05 2.36E-05 C. Particulates
[1]C06° Ci 0.OOE+01 1.24E-06 9.46E-06 9.23E-07 Srs9 Ci 0.00E+01 0.OOE+01 9.37E-06 0.OOE+01 y91 Ci O.OOE+01 O.OOE+01 4.OOE-03 0.OOE+01 Cs138 Ci O.OOE+01 0.OOE+01 1.36E-02 O.OOE+01 Ce141 Ci O.OOE+01 3.75E-08 O.OOE+01 0.OOE+01 Gross Alpha Ci 5.21E-07 1.02E-06 7.46E-07 6.38E-07 Total for Period. Ci 5.21 E-07 2.30E-06 1.76E-02 1.56E-06 D. Tritium[1]
I I Total for Period I Ci I 9.84E+00 I 8.90E+00 I 9.02E+00 I 9.78E+00 I[1] Ten (10) times the values found: in 1OCFR20 Appendix B, Table 2, Column 1 are used for all Effluent Concentration Limit [ECL] calculations.
For dissolved and entrained noble gases, the concentration is limited to 2.OOE-04 pCi/cc total activity.[2] The lower the value of the actual sample activity -with respect to background activity -the greater the counting error. :Proportionally, large errors are reported for the various components of CPS gaseous effluents because of their consistent low sample activity.An entry of 0.OOE+01 indicates that the Minimum Detectable Activity (MDA)concentration of the radionuclide was below the LLD value listed in Table 6.-- page 19 of 80 --
TABLE 3 RADIOACTIVE GASEOUS WASTE LLD VALUES TYPE OF ACTIVITY Lower Limit of Detection ANALYSIS (LLD) a (p.Ci/cc)Principal Gamma Emitters,[Noble Gases] b,c <1.O0E-04 H3 c<1.OOE-06 1131 d <1.00E- 12 1133 d <1.00E-10 Principal Gamma Emitters,[Particulates]
b,e <1.00E-11 Sr 8 9 , Sr9g <1 .OOE-1 1 Gross Alpha f'<1.00E-1 1 U S I I I I I I I I&#xa3;I I I I Table 3 Notations a The Lower Limit of Detection (LLD) as defined for purposes of these specifications, as an "a priori" determination of the smallest concentration of radioactive material in a sample that will yield a net count -above system background
-that will be detected with a 95% probability and with a low (5%) probability of incorrectly concluding that a blank observation represents a "real" signal.For a particular measurement system, which may include radiochemical separation:
LLD =4.66 sb E B V *2.22 x 106 .Y -e- AA I I I U-- page 20 of 80 --
Table 3 Notations (continued)
Where: LLD is the "a priori" lower limit of detection as defined above, as pCi per unit mass or volume, Sb is the standard deviation of the background counting rate or of the counting rate of a blank sample as appropriate, in counts per minute (cpm), E is the counting efficiency, in counts per disintegration, V is the sample size in units of mass or volume, 2.22E+06 is the number of disintegrations per minute (dpm) per microcurie, Y is the fractional radiochemical yield, when applicable, k is the radioactive decay constant for the particular radionuclide (sec-1)and At for plant effluents is the elapsed time between the midpoint of sample collection and the time of counting (sec).Typical values of: E,,V, Y, and At should be used. in the calculation.
The LLD is defined as an a priori (before the fact) limit representing the capability of a measurement system and not as an a posteriori (after the fact) limit for a particular measurement.
bThe principal gamma emitters for.which .the LLD specification applies include 87 88 133 133m 13513 the following radionuclides:
Kr. , Kr 8 8 ,. 'Xe , Xel , Xe , and Xe'3 8 in noble gas releases and Mn , Fe, c CON, Zn 6 5 , M 9 9., 1131, Cs1'4, cs'3, Ce 1 4 1 , and Ce'4  in iodine and particulate releases.
This list does not mean that only these nuclides are to be considered.
Other gamma peaks that areidentifiable
-together with those of the above nuclides -shall also be analyzed and reported in the Radioactive Effluent Release Report.C Weekly grab sample and analysis dContinuous charcoal sample analyzed weekly e Continuous particulate sample analyzed weekly fComposite particulate sample analyzed monthly g Composite particulate sample analyzed quarterly-- page 21 of 80 --
TABLE 4 WATERBORNE EFFLUENTS
-Summation Of All Releases Data Period: 01 January 2007 through 31 December 2007 There were zero (0) liquid radwaste releases from CPS in 2007.I I I'I I IiI IEst.Units Quarter Quarter Quarter Quarter Total Unitsuarer1 2 3 4 Error, %A. Fission & Activation Products 1. Total Release Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 N/A Average diluted 2. concentration during pCi/ml 0.00E+01 0.OOE+01 0.OOE+01 0.OOE+01 period 3. Percent of ODCM % N/A N/A N/A N/A Limit B. Tritium 1. Total Release Ci 0.OOE+01 0.OOE+01 0.00E+01 0.OOE+01 N/A Average diluted 2. concentration during pCi/ml 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 period 3. Percent of ODCM % N/A N/A N/A N/A Limit C. Dissolved and Entrained Gases 1. Total Release Ci 0.OOE+01 0.00E+01 0.OOE+01 0.OOE+01 N/A Average diluted 2. concentration during pCi/ml 0.00E+01 0.900E+01 0.00E+01, 0.OOE+01 period 3. Percent of ODCM N/A N/A N/A N/A Limit %D. Gross Alpha Radioactivity
__Gross alpha GrssalhaCi 0.OOE+01'
[.OOE+01 J .OOE+01_]_.OOE+01j N/A radioactivity
_ ci 1000__ 0__ 10 _0 Iooo__o _____I E. Volume of Waste Released (prior to Liters 0.OOE+01 0.0OE+01 0.OOE+01 0.OOE+01 N/A Dilution)F. Volume of dilution 0.0 0E .'1 water used during period Liters I0.0E+01 I i I I,!t1 I I I I I I I i-- page 22 of 80 --i TABLE 5 WATERBORNE EFFLUENTS
-Nuclides Released Ell Data Period: 01 January 2007,- 31 December 2007 All Modes There were zero (0) liquid radwaste releases from CPS in 2007.I Continuous Mode I &#xfd; I I Batch Mode I X Nuclide Units Quarter 1 Quarter 2 Quarter 3 Quarter4 A. Tritium H3 Ci O.OOE+o1 O.OOE+01 O.OOE+01 0.00E+01 B. Fission and Activation Products Sr89 Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Sr 9&deg; Ci 0.00E+01 0.OOE+01 0.OOE+01 0.OOE+01 Cs1 3 4  Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Cs137 Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 IT3 Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Cos 8  Ci 0.OOE+01 0.OOE+01 0.00E+01 0.OOE+01 Co 6&deg; Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Fe 5 9  Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Zn 6 5  Ci 0.00E+01 0.OOE+01 0.OOE+01 0.OOE+01 Mn 5" Ci -P0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Cr 5 l Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Zr/Nb 9 5  -Ci 0.OOE+01 0.OOE+01 0;00E+01 0.OOE+01 Mo 9 9  Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Tc-99m Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Ba/La 1 4 U Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Ce 1 4 1 Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Ce1 4 4  Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Total Ci O.OOE+01 O.OOE+01 O.OOE+01 O.OOE+01 C. Dissolved and Entrained Noble Gases Xe'3 3  Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Xe135 Ci 0.OOE+01 0.OOE+01 0.OOE+01 0.OOE+01 Total Ci O.OOE+01 O.OOE+01 O.OOE+01 O.OOE+01[1] A value corresponding to ten times the values found in 10CFR20 Appendix B, Table 2, Column 2 are used for all Effluent Concentration Limit (ECL) calculations.
For dissolved and entrained noble gases, the concentration is limited to 2.OOE-04 pCi/ml total activity.-- page 23 of 80 --
TABLE 6 RADIOACTIVE LIQUID WASTE LLD VALUES TYPE OF ACTIVITY ANALYSIS Lower Limit of Detection (LLD) a(IiCi/ml)
Principal Gamma Emitters b <5.OOE-07 1131 _<1.00E-06 Dissolved and Entrained Gases (Gamma <1.OOE-05 Emitters)H 3  _1.00E-05 Gross Alpha <1.00E-07 Sr 8 9 , Sr 9&deg; _5.00E-08 Fe 5 5  <_1.00E-06 Table 6 Notations aThe Lower Limit of Detection (LLD) as defined for purposes of these specifications, as an "a priori" determination of the smallest concentration of radioactive material in a sample that will yield a net count -above system background
-that will be detected with a 95% probability and. with only a 5% probability of falsely concluding that a blank observation represents a "real" signal.For a particular measurement system, which may include radiochemical separation:
I I I I I I I I I I I I I I I LLD =4.66 *sb E
* V *2.22 x 106 -Y
* e-At Where: LLD is the "a priori" lower limit of detection as defined above, as pCi per unit mass or volume, Sb is the standard deviation of the background counting rate or of the counting rate of a blank sample as appropriate, in counts per minute (cpm), I U I I U-- page 24 of 80 --
Table 6 Notations (continued)
E is the counting efficiency, as counts per disintegration, V is the sample size in units of mass or volume, 2.22E+06 is the number of disintegrations per minute (dpm) per microcurie, Y is the fractional radiochemical yield, when applicable, kL is the radioactive decay constant for the particular radionuclide (sec" 1)and At for plant effluents is the elapsed time between the midpoint of sample collection and the time of counting (sec).Typical values of E, V, Y, and ?kt should be used in the calculation.
The LLD is defined as an a priori (before the fact) limit representing the capability of a measurement system and not as an a posteriori (after the fact, MDA)limit for a particular measurement.
b The principal gamma emitters for which the LLD requirement applies include the following radionuclides:
Mn 5 4 , Fe 5 9 5800CO, 6&deg; Zn6, Mo 9 9 , Cs134, CS 1 3 7 , Ce 1 4 1 , and Ce 1 4 4 shall also be measured, but with an LLD of 5.OE-06. This list does not mean that only these nuclides are detected and reported.
Other gamma peaks that are measurable
-together with those of the above nuclides -shall also be analyzed and reported in the Radioactive Effluent Release Report.133 135 138 85m 88 cDissolved and entrained gases are: Xe 1 3 , Xe , Xe ,Kr ,Kr 8 7 and Kr-- page 25 of 80 --
BATCH RELEASES There were zero (0) liquid radwaste releases from CPS in 2007.A. Batch Liquid Releases:
2007 1. Number of batch releases:
0 2. Total time period for batch releases:
N/A 3. Maximum time period for batch release: N/A 4. Average time period for batch release: N/A 5. Minimum time period for batch release: N/A 6. Average stream flow during periods of release: N/A 7. Total waste volume: N/A 8. Total dilution volume: N/A B. Batch Gaseous Releases:
2007 1. Number of batch releases:
0 2. Total time period for batch releases:
N/A 3. Maximum time period for batch release: N/A 4. Average time period for batch release N/A 5. Minimum time period for batch release: N/A-- page 26 of 80 --
ABNORMAL RELEASES Information concerning abnormal radioactive liquid and gaseous releases is presented below for the year 2007. There were no abnormal or unplanned liquid or gaseous releases from CPS in 2007.Liquid Releases: Number of Abnormal Liquid Releases: 0 Activity Released [Ci]Nuclides Activity [Ci]N/A 0 N/A 0 N/A 0 N/A 0 N/A 0 N/A 0 Total 0 Gaseous Releases: Number of Abnormal Gaseous Releases:
0 Activity Released [Ci]Nuclides Activity [Ci]N/A 0 N/A 0 N/A 0 N/A 0 N/A 0 N/A 0 Total 0-- page 27 of 80--
SECTION 5 SOLID WASTE DISPOSAL INFORMATION During this reporting period -01 January 2007 through 31 December 2007 -there were fifteen (15) radioactive waste shipments and zero (0) irradiated fuel shipments from CPS. In addition, the CPS ODCM requires reporting of the following information for solid waste shipped offsite during the above reporting period: 1. Container volume: Class A Waste: 11,386* ft 3 / Class B Waste: 0 ft 3 / Class C Waste: 14.7 ft 3* This total includes Dry Active Waste (DAW), resins, filter sludges and evaporator bottoms.I I I I I I 2. Total curie quantity: curies (determined estimates) and Class Class A Waste was 606.8 curies and Class B Waste was 0 3 by dose-to-curie and sample concentration methodology C Waste was 1.31 curies in 2007.3. Principal radionuclides:
See A.2 for listing of measured radionuclides.
: 4. Source of waste and processing employed:
Resins, filter sludges and evaporator bottoms dewatered or solidified in cement and non-compacted dry active waste.5. Type of container:
Type A and Strong Tight Container.
: 6. Solidification agent or absorbent:
None.U I I I I I I I I I I I-- page 28 of 80 --U Table 7 SOLID WASTE AND IRRADIATED FUEL SHIPMENTS A. Solid Waste Shipped Offsite for Burial or Disposal:
[NOT irradiated fuel]A.1 Type of waste Units January -June July -December Est. Total" 2007 2007 Error, %Spent resins, filter ft 1,710 288 a. sludges, evaporator
_ 25 bottoms, etc. Ci 199 408 Dry compactable ft3 4,600 4,600 b. waste, contaminated
.... _ _ .... 25 equipment, etc. Ci 0.377 0.442 Irradiated ft 3  (0) (0)c. components, control 25 rods, etc. Ci (0) (0)f t= (0) .198 d. Other Wastes 25 Ci (0) 2.39E-03 Total curie quantity and principal radionuclides were determined by measurements.
A.2. Estimate of major nuclide composition (by type of waste)1. Spent resins, filters, evaporator bottoms, etc.Waste Nuclide % Percent Class Name Abundance A Mn 4.553 27.7 Fess 64.181 390 Co6&deg; 22.820 139_ J Ni63 0.699 4.24 I Other 7.745 47.1 Waste Nuclide % Percent Class Name Abundance B Mn54 0 0 Fe Fe5 0 0 Co 0 0_ Other 0 0 2. Dry compactable waste, contaminated equipment, etc.Waste Nuclide % Percent Class Name Abundance A Mn54 4.891 0.040 Fe 79.006 0.647 Co 13.843 0.113 Other 2.259 0.019-- page 29 of 80 --
Table 7 SOLID WASTE AND IRRADIATED FUEL SHIPMENTS
[continued]
A.3. Solid Waste Disposition January -June 2007 Number of Shipments Mode of Transportation Destination Barnwell Waste Management 1 Hittman Transport Facility 4 Hittman Transport Duratek / Bear Creek 1 Hittman Transport Energy Solutions Barnwell Energy Solutions, LLC.4, Hittman Transport (Containerized)
July -December 2007 Number of Shipments Mode of Transportation Destination 4 Hittman Transport Duratek / Bear Creek 1 Hittman Transport Studsvik Processing Facility, LLC I I I I I I I U B. Irradiated Fuel Shipments (Disposition)
I Number of Shipments Mode of Transportation, Destination Zero (0) N/A N/A I 3 I U I I I I I-- page 30 of 80 --I U SECTION 6 DOSE MEASUREMENTS AND ASSESSMENTS This section of the Annual Effluent Release Report provides the dose received by receptors around CPS from gaseous and liquid effluents.
The dose to the receptor that would have received the highest dose in each sector (defined as the Critical Receptor for that sector) is listed within this report. This section also provides the dose to individuals who were inside the Site Boundary.
This section also summarizes CPS's compliance with the requirements found within 49CFR190.The assumptions used in determining dose values are as follows:* All receptors within a five (5) mile radius are included in the Annual Land Use Census. This Annual Census determines what dose pathways are present as well as the distance of each receptor from the site.* The annual average meteorological data for 2006 was used in conjunction with the Annual Land Use Census to determine the dose to each receptor within five (5)miles.* The doses for each receptor from each sector were determined using methodologies given in the ODCM." The activity used. in these assessments is the total activity released by CPS for the year 2007 including radionuclides with half-lives less than eight (8) days and when dose pathway factors were available.." The occupancy factor was taken into consideration by calculating the dose to individuals using areas inside the Site Boundary in non-residential areas. The occupancy factor is determined by dividing the number of hour[s] of occupancy per year (taken from the ODCM) and dividing that value by the total number of hour[s]per year." Dose to individuals using areas inside the Site Boundary (that are not residences) was calculated using the Ground Plane and Inhalation pathways.-- page 31 of 80 --
TABLE 8 MAXIMUM OFFSITE DOSES AND DOSE COMMITMENTS TO MEMBERS OF THE PUBLIC IN EACH SECTOR Data Period: 01 January 2007 -31 December 2007 This table illustrates the dose that a member from the public would most likely be exposed to from radioactive effluents in each sector from CPS. These values represent the maximum dose likely to expose a member of the public in each sector.RECEPTOR INFORMATION AIRBORNE EFFLUENT DOSE WATERBORNE Iodine and Particulates Noble Gases (mRad) EFFLUENT DOSE (mRem) (mRem) [1]Sector Distance Pathways Organ Age Organ Total Body Gamma Beta Organ Total (miles) Body N 0.9 GP, I, M, V Th A 7.82E-04 6.40E-04 0.00E+01 O.00E+01 O.0OE+01 O.0OE+01 NNE 1.0 GP, I Th A 2.03E-04 2.01 E-04 0.00E+01 O.OOE+01 NE 1.3 GP, I Th T 1.14E-04 1.13E-04 0.OOE+01 0.OOE+01 ENE 1.8 GP, I Th A 8.21 E-05 8.13E-05 0.00E+01 0.OOE+01 E 1.0 GP, I, M Th A 1.60E-04 1.49E-04 0.OOE+01 0.OOE+01 ESE 3.2 GP, I Th A 7.16E-05 7.09E-05 0.00E+01 0.OOE+01 SE. 2.8 GP, I Th A 6.430E-05 6.37E-05 0.00E+01 0.00E+01 SSE 1.7 GP, I Th T 5.14E-05.:
5.08E-05 0.00E+-01 0.00E+01 S 3.0 GP, IV Th A 1.04E-04 9.39E-05 0.00E+01 0.00E+01 SSW 2.9 GP, I Th A 4.02E-05 '3.98E-05 0.OOE+01 0.OOE+01 SW 0.7 GP, I Th A 1.64E-04 1.63E-04 0.OOE+01 0.OOE+01 WSW 1.6 GP, I Th A 4.29E-05 4.25E-05 0.00E+01 0.OOE+01 W 1.2 GP, I, V Th. C 2.52E-04 2.20E-04 0.OOE+01 0.OOE+01 WNW 1.6 GP, I, V Th A 2.41 E-04 2.19E-04 0.OOE+01 0.OOE+01 NW 1.6 GP, i, V Th A 2.31E-04 2.11E-04 0.OOE+01 0.OOE+01 NNW 1.3 GP, I, M, V Th A .79E-04 3.36E-04 0.OOE+01 0.OOE+01 U I I I I I U I I I!I I U I Key for Table 8 GP Ground Plane I= Inhalation M= Cows Meat V = Vegetables Th = Thyroid A = Adult T = Teen I = Infant C = Child All doses were within all regulatory limits, including limits from 40CFR190.There were zero (0) liquid radwaste releases from CPS in 2007.[11-- page 32 of 80 --U COMPLIANCE WITH 40CFR190 REQUIREMENTS Thermoluminescent dosimeters
[TLD] are stationed around CPS to measure the ambient gamma radiation field. Monitoring stations are placed near the site boundary and approximately five (5) miles from the reactor, in locations representing the sixteen (16) compass sectors. Other locations are chosen to measure the radiation field at places of special interest such as nearby residences, meeting places and population centers. Control sites are located further than ten (10) miles from the site, in areas that should not be affected by plant operations.
The results from the TLDs are reported in the Annual Radiological Environmental Monitoring Report [REMP]. The results from this effort indicated no excess dose to offsite areas.Additionally, NUREG-0543, METHODS FOR DEMONSTRATING LWR COMPLIANCE WITH THE EPA URANIUM FUEL CYCLE STANDARD (40 CFR PART 190) states in section IV, "As long as a nuclear plant site operates at a level below the Appendix I reporting requirements, no extra analysis is required to demonstrate compliance with 40 CFR Part 190." The organ and whole body doses reported in Table 8 are determined using 10 CFR 50 Appendix I methodology.
The doses reported are well below the limits of Appendix I.DOSE TO MEMBERS OF THE PUBLIC WITHIN THE SITE BOUNDARY CPS Offsite Dose Calculation Manual section 7.2 requires that the Radioactive Effluent Release Report include an assessment of the radiation doses from radioactive liquids and gaseous effluents to MEMBERS OF THE PUBLIC due to their activities inside the SITE BOUNDARY.
Within the CPS site boundary there are seven areas that are open to members-of the public as identified by CPS ODCM Table 3.4-4 (see Figure 4):-The Department of Natural Resources Recreation Area at 1.287 kilometers (0.8 miles) in the ESE sector-A road at 0.495 kilometers (0.3 miles) in the SE sector-A residence at 2.736 kilometers (1.7 miles) in the SSE sector-A residence at 1.219 kilometers (0.8, miles) in the SW sector-Agricultural acreage at 1.372 kilometers (0.9 miles) in the SSW sector-A residence at 2.414 kilometers (1.5 miles) in the WSW sector-A portion of Clinton Lake at 0.335 kilometers (0.2 miles) in the NW sector At all of the above locations, the plume, inhalationand ground-plane exposure pathways are used for dose calculations.
The 2007 Annual Land Use Census identified no other exposure pathways.
All dose calculations were performed using the methodology contained in the CPS ODCM.-- page 33 of 80 --
FIGURE 4 AREAS WITHIN THE CPS SITE BOUNDARY OPEN TO MEMBERS OF THE PUBLIC U I I I I g CLINTON MARO NOTES: 1. Road 0.3 miles in SE Sector 2. Agricultural acreage 0.9 miles in SSW Sector 3. Clinton Lake 0.2 miles in the NW Sector 4. Department of Natural Resources Recreation Area 0.8 miles in ESE Sector 5. Residence 0.8 miles in SW Sector 6. Residence 1.5 miles in WSW Sector 7. Residence 1.7 miles in SSE Sector I I I I I I I I I I I j Z...-- page 34 of 80 --U TABLE 9 CALCULATED DOSES TO MEMBERS OF THE PUBLIC DURING USE OF THE DEPARTMENT OF NATURAL RESOURCES RECREATION AREA IN THE EAST-SOUTHEAST SECTOR WITHIN THE CPS SITE BOUNDARY Data Period: 01 January 2007 -31 December 2007 DESCRIPTION DOSE UNITS Total Body Dose Rate (Noble Gases) 0.OOE+01 mRem/year Skin Dose Rate (Noble Gases) 0.OOE+01 mRem/year Gamma Air Dose 0.OOE+01 mRad Beta Air Dose 0.OOE+01 mRad Total Body Dose (Particulates) 2.65E-04 mRem Skin Dose (Particulates) 11 4.01 E-05 mRem[1] DOSE includes the dose values resulting from the release of iodines, particulates (with half lives >8 days) and tritium in gaseous effluents.
Highest Organ Dose by Age Group: Teen Thyroid 2.70E-04 MRem Adult Thyroid; 2.67E-04 mRem Child Thyroid.'
2.44E-04 mRem Infant Thyroid 1.56E-04 mRem-- page 35 of 80 --
TABLE 10 CALCULATED DOSES TO MEMBERS OF THE PUBLIC DURING USE OF THE ROAD IN THE SOUTHEAST SECTOR WITHIN THE CPS SITE BOUNDARY Data Period: 01 January 2007 -31 December 2007 I I I I I I I I DESCRIPTION DOSE UNITS Total Body Dose Rate (Noble Gases) 0.OOE+01 mRem/year Skin Dose Rate (Noble Gases) 0.OOE+01 mRem/year Gamma Air Dose 0.OOE+01 mRad Beta Air Dose 0.00E+01 mRad Total Body Dose (Particulates) 6.15E-04 mRem Skin Dose (Particulates)
[ 8.33E-05 mRem[1] DOSE includes the dose values resulting from the release of iodines, particulates (with half lives >8 days) and tritium in gaseous effluents.
Highest Organ Dose by Age Group: Teen Thyroid Adult Thyroid Child Thyroid Infant Thyroid 6.26E-04 6.21 E-04-5.65E-04 3.57E-04 mRem mRem mRem mRem I I I I I I I I I I-- page 36 of 80 --I M TABLE 11 CALCULATED DOSES FOR THE RESIDENTS IN THE SOUTH-SOUTHEAST SECTOR WITHIN THE CPS SITE BOUNDARY Data Period: 01 January 2007 -31 December 2007 DESCRIPTION DOSE UNITS Total Body Dose Rate (Noble Gases) 0.OOE+01 mRem/year Skin Dose Rate (Noble Gases) 0.00E+01 mRem/year Gamma Air Dose 0.OOE+01 mRad Beta Air Dose 0.OOE+01 mRad Total Body Dose (Particulates) 5.11E-05 mRem Skin Dose (Particulates)
[1] 3.67E-06 mRem[1] DOSE includes the dose values resulting from the release of iodines, particulates (with half lives >8 days) and tritium in gaseous effluents.
Highest Organ Dose by Age Group: Adult Thyroid Teen Thyroid Child Thyroid Infant Thyroid 5.16E-05 N/A [2]N/A [2], N/A [2]mRem mRem mRem mRem[2] No receptors of this age at this location-- page 37 of 80 --
TABLE 12 CALCULATED DOSES FOR THE RESIDENTS IN THE SOUTHWEST SECTOR WITHIN THE CPS SITE BOUNDARY Data Period: 01 January 2007 -31 December 2007 DESCRIPTION DOSE UNITS Total Body Dose Rate (Noble Gases) 0.OOE+01 mRem/year Skin Dose Rate (Noble Gases) 0.OOE+01 mRem/year Gamma Air Dose 0.OOE+01 mRad Beta Air Dose 0.OOE+01 mRad Total Body Dose (Particulates) 1.56E-04 mRem Skin Dose (Particulates)
[1] 1.70E-05 mRem[1] DOSE includes the dose values resulting from the release of iodines, particulates (with half lives >8 days) and tritium in gaseous effluents.
Highest Organ Dose by Age Group: I I I I I 1 I I I 3 I I I I I I I I Adult Thyroid Teen Thyroid Child Thyroid Infant Thyroid 1.57E-04 N/A [2]N/A [2]N/A [2]mRem mRem mRem mRem[2] No receptors of this age at this location-- page 38 of 80 --I U TABLE 13 CALCULATED DOSES TO MEMBERS OF THE PUBLIC DURING USE OF THE AGRICULTURAL ACREAGE IN THE SOUTH-SOUTHWEST SECTOR WITHIN THE CPS SITE BOUNDARY Data Period: 01 January 2007 -31 December 2007 DESCRIPTION DOSE UNITS Total Body Dose Rate (Noble Gases) 0.00E+01 mRem/year Skin Dose Rate (Noble Gases) 0.00E+01 mRem/year Gamma Air Dose 0.OOE+01 mRad Beta Air Dose 0.OOE+01 mRad Total Body Dose (Particulates) 9.30E-05 mRem Skin Dose (Particulates)
[1] 1.12E-05 mRem[1] DOSE includes the dose values resulting from the release of iodines, particulates (with half lives >8 days) and tritium in gaseous effluents.
Highest Organ Dose by Age Group: Teen Thyroid Adult Thyroid Child Thyroid Infant Thyroid 9.48E-05 9.39E-05 N/A [2]N/A [2]mRem mRem mRem mRem[2] Dose calculated only for the age groups likely to be in the field.-- page 39 of 80 --
TABLE 14 CALCULATED DOSES FOR THE RESIDENTS IN THE WEST-SOUTHWEST SECTOR.WITHIN THE CPS SITE BOUNDARY Data Period: 01 January 2007 -31 December 2007 I I I I I I I DESCRIPTION Total Body Dose Rate (Noble Gases)Skin Dose Rate (Noble Gases),...
Gamma Air Dose Beta Air Dose Total Body Dose (Particulates)
Skin Dose (Particulates)
[1]DOSE 0.00E+01 0.OOE+01 0.00E+01 0.OOE+01 4.29E-05 2.69E-06 UNITS mRem/year m Rem/year mRad m Rad mRem mRem[1] DOSE includes the dose values resulting from the release of iodines, particulates (with half lives >8 days) and tritium in gaseous effluents.
Highest Organ Dose by Age Group: Adult Thyroid Teen Thyroid Child Thyroid Infant Thyroid 4.34E-05 N/A [2]N/A [2]N/A [2]mRem mRem mRem mRem I I I[2] No receptors of this age at this location I U I I I I I-- page 40 of 80 --I II TABLE 15 CALCULATED DOSES TO MEMBERS OF THE PUBLIC DURING USE OF CLINTON LAKE IN THE NORTHWEST SECTOR WITHIN THE CPS SITE BOUNDARY Data Period: 01 January 2007 -31 December 2007 DESCRIPTION Total Body Dose Rate (Noble Gases)Skin Dose Rate (Noble Gases)DOSE 0.OOE+01 0.OOE+01 UNITS mRem/year mRem/year Gamma Air Dose 0.00E+01 mRad Beta Air Dose 0.OOE+01 mRad Total Body Dose (Particulates) 5.36E-04 mRem Skin Dose (Particulates)
[ 3.91 E-05 mRem[1] DOSE includes the dose values resulting from the release of iodines, particulates (with half lives >8 days) and tritium in gaseous effluents.
Highest Organ Dose by Age Group: Teen Thyroid Adult Thyroid Child Thyroid Infant Thyroid 5.46E-041 5.41 E-04 4.89E-04"2.98E-04 mRem mRem mRem mRem-- page 41 of 80 --
U SECTION 7 METEOROLOGICAL DATA AND DISPERSION ESTIMATES On 13 April 1972, the meteorological monitoring program commenced at the Clinton Power Station site. The meteorological system consists of a tower 199 feet high with two (2) levels of instrumentation at the 10-meter and 60-meter elevations.
A combined cup and vane sensor measures wind direction and wind speed[s] at the 10-meter and 60-meter levels. An aspirated dual temperature sensor senses the temperatures at these levels. One-half of the dual sensors at each elevation are used for ambient temperature while the other half is used to provide a differential temperature between the 10-meter and 60-meter levels.Meteorological monitoring instruments have been placed on the Clinton Power I Station microwave tower at the 10-meter level to serve as a backup to the primary meteorological tower.Clinton Power Station meteorological data is transmitted to the Main Control Room [MCR] via a dedicated communication link. Once the signals are received at the MCR, they are then converted to a 4 to 20 milliamp signal and fed individually to a I microprocessor and chart recorders.
The microprocessor is part of the Clinton Power Station Radiation Monitoring System [RMS]. Meteorological data is available via the microprocessors in the Main Control Room and the Technical Support Center [TSC].Dispersion modeling for effluents for normal operation of Clinton Power Station is a straight-line, sector-averaged Gaussian plume model designed to estimate average relative concentration at various receptor points. The model was developed in accordance with routine release analysis procedures, specified in Regulatory Guide 1.111. For joint frequency input data, periods'of calm are distributed in accordance with a directional distribution.
For hourly input data, periods of calm are the previous I hour's wind direction.
Periods of calm are assigned a wind speed value of half the specified instrument threshold value. Reference Table 18 for more detailed information on meteorology and dispersion data.I ong m r and ds I I I I I-- page 42 of 80 -- 3 M TABLE 16 METEOROLOGICAL DATA AVAILABILITY Data Period: 01 January 2007 -31 December 2007 PERCENT OF VALID PARAMETER HOURS PARAMETER Quarter 1 Quarter 2 Quarter 3 Quarter 4 1. Wind Speed ____ _a. 10-Meter sensor 99.5% 99.7% 99.9% 99.6%b. 60 Meter sensor 99.4% 99.7% 99.9% 98.3%2. Wind Direction
-a. 10-Meter sensor 99.5% 99.7% 99.9% 99.6%b. 60 Meter sensor 99.5% 99.7% 99.9% 99.6%3. Temperature
: a. 10-Meter sensor 98.4% 99.7% 100% 99.6%b. 60 Meter sensor 97.2% 99.7% 100% 99.1%c. Temperature Difference (10m-60m) 97.3% 99.7% 100% 99.1%4. Percent of hours for which valid 10-meter Wind Speed, Wind Direction, and Delta Temperature were available 97.5% 99.7% 99.9% 99.0%5. Percent of hours for which valid 60-meter Wind Speed, Wind Direction, and Delta Temperature were'available 97.3% 99.7% 99.9% 97.8%Clinton Power Station was able to achieve 99.4% Meteorological Recoverable Data during 2007 exceeding the minimum criteria of 90% as delineated within Regulatory Guide 1.23.-- page 43 of 80 --
TABLE 17 CLASSIFICATION OF ATMOSPHERIC STABILITY Stability Classification Pasquill Category Defining Conditions Extremely unstable A ------ <AT < -1.042 Moderately unstable B -1.042 <AT< -0.933 Slightly unstable C -0.933 <AT< -0.823 Neutral D -0.823 <AT< -0.274 Slightly stable E -0.274 <AT< 0.823 Moderately stable F 0.823 <AT< 2.195 Extremely stable G 2.195 <AT<------
I I I I I I I I AT = temperature difference in degrees Fahrenheit per 100 feet I I I I I I I I I I-- page 44 of 80 --I U TABLE 18 JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Reporting Period: 01 January 2007 through 31 December 2007 The following table contains the joint wind frequency tables for CPS. The tables are segregated by sensor elevation and calendar quarter. All tabled values are in hours.-- page 45 of 80 --
TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: A 10 Meter Height Quarter: 1 WIND DIRECTION N NNE NE ENE E ESE SE SSE S SSW SW WSW W WNW NW NNW WIND SPEED. (MPH)1-3 4-7 8-12 13-18 19-24 >24 TOTAL 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 O 0 0 1 0 0 0 0 0 0 0 0 0 3 0 0 1 6 1 1 5 2'0 0 0 1 6 6 2 0 0 8 3 0 0 0 0 0 0 1 1 8 6 0 0 0 0 0 0 0 0 0 0 0 0 0 0 7 23 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 3 0 8 4 6 1 2 5 2 0 1 1 16 35 6 2 U I I I I U U I I U I I U I I I I TOTAL 0 1 34 27 30 0 92 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: F 55 VARIABLE DIRECTION:
0 Stability Class: A 10 Meter Height Quarter: 2 WIND WIND SPEEDI(MPH)
DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 0 2 0 0 0 2 NNE 0 1 1 12 0 0 14 NE 0 0 4 0. 0. 0 4 ENE 0 0 4 0. 0 0 4 E 0 1 5- 0, 0 0 6 ESE 0 7 0, 0 0 0 7 SE 0 6 5 0 0 0 11 SSE 0 2 2 0 0 0 4 S 0 1 10 1 0 0 12 SSW 0 0 4 3 3 0 10 SW 0 2 5 5 0 0 12 WSW 0 1 2 0 0 0 3 W 0 2 2 6 4 0 14 WNW 0 1 4 17 7 1 30 NW 0 1 7 12 2 0 22 NNW 0 0 7 0 0 0 7 TOTAL 0 25 64 56 16 1 162 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 I I-- page 46 of 80 --n TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: A 10 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 6 13 0 0 0 19 NNE 0 2 4 2 0 0 8 NE 0 6 15 1 0 0 22 ENE 0 3 1 0 0 0 4 E 0 12 6 0 0 0 18 ESE 0 1 0 0 0 0 1 SE 0 10 1 0 0 0 11 SSE 0 1 2 0 0 0 3 S 0 11' 26 0 0 0 37 SSW 0 3 11 4 0 0 18 SW 0 2 3 4 0 0 9 WSW 0 5 5 10 0 0 20 W 0 3 9 3 0 0 15 WNW 0 6 7 2 0 0 15 NW 1 8 8 4 0 0 21 NNW 0 1 5 0 0 0 6 TOTAL 1 80 116 30 0 0 227 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 0 F 0 VARIABLE DIRECTION:
0 Stability Class: A 10 Meter Height Quarter: 4 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 0 2 21 0 0 4.NNE 0 0 0 2 1 0 3 NE 0 0 0 0 0 0 0 ENE 0 0 0 0 0 0 0 E 0 0 0 0 0 0 0 ESE 0 0 0 0 0 0 0.SE 0 0 0 0 0 0 0 SSE 0 0 0 0 0 0 0 S 0 2 12 0 0 0 14 SSW 0 0 2 3 0 0 5 SW 0 0 0 0 0 0 0 WSW 0 0 0 0 0 0 0 W 0 0 2 4 0 0 6 WNW 0 0 1 7 3 0 11 NW 0 0 0 1 1 0 2 NNW 0 0 0 0 0 0 0 TOTAL ,0 2 19 19 5 0 45 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 47 of 80 --
TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: B 10 Meter Height -Quarter:
1 WIND WIND SPEED. (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 > 24 TOTAL N 0 0 1 0 0 0 1 NNE 0 0 0 0. 0 0 0 NE 0 0 1 1 0 0 2 ENE 0 0 1 1 0 0 2 E 0 0 0 0 0 0 0 ESE 0 2 8 0 0 0 10 SE 0 9 0 0 0 0 9I SE 0 2 1 0 0 0 3 S 0 1 1 0 0 0 2 SSW 0 0 4 2 2 0 8 SW 0 0 2 7 0 0 9 WSW 0 0 1 2 0 0 3 W 0 0 3 7 0 0 10 WNW 0 1 14 2 5 0 22 NW 0 3 4 0 1 0 8 NNW 0 1 3 2 0 0 6 TOTAL 0 19 44 24 8 0 95'I PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 55, VARIABLE DIRECTION:
01 Stability Class: B 10 Meter Height Quarter: 23 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 4 2 0. 0 0 6 NNE 0 2 4 5 0 0. 11 NE 0 1 2 0 0 0 3 ENE 0 1 3 0 0 .0 4 E 0 5 2 0 0 0 7 ESE 0 7 0 0 0 0 7 SE 1 10 2 0. 0 0 13 SSE 0 3 2 0 0 0 5 5 0 6 10 4 0 0 20 SSW 0 2 0 4 4 1 11I SW 0 3 6 2 0 0 11 WSW 0 4 14 3 1 0 22 W 0 2' 4 2 0 0 8 WW0 1 5 4 1 0 11I NW 0 3 5 3 3 0 14 NNW 0 0 4 3 0 0 7 TOTAL 1 54 65 30 9 1 160 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
03-- page 48 of 80-3 U TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: B 10 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 1 5 5 0 0 0 11 NNE 0 2 4 0 0 0 6 NE 0 7 4 1 0 0 12 ENE 0 5 1 0 0 0 6 E 0 9 1 0 0 0 10 ESE 0 12 0 0 0 0 12 SE 0 11 0 0 0 0 11 SSE 0 8 1 0 0 0 .9 S 0 10 7 2 0 0 19 SSW 0 8 11 2 0 0 21 SW 0 3 12 4 0 0 19 WSW 0 2 6 4 0 0 12 W 0 2 2 0 0 0 4 WNW 0 9 6 1 0 0 16 NW 0 11 7 1 0 0 19 NNW 01 3 1 0 0 0 4 TOTAL 1 107 68 15 0 0 191 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 0 VARIABLE DIRECTION:
0 Stability Class: B 10 Meter Height Quarter: 4 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24' >24 TOTAL N 0 2 3 0 0 0 5 NNE 0 1 1 3 0 0 5 NE 0 0 0 0 0 0 0 ENE 0 1 0 0 0 0 1 E 0 1" 0 0 0 0 1 ESE 0 0 0 0 0 0 0 SE 0 0 1 0" 0 0 1 SSE 0 1 2 0 0 0 3 S 0 5 5 1 0 0 11 SSW 0 1 7 1 1 0 10 SW 0 2 2 0 0 0 4 WSW 0 0 3 2 0 1 6 W 0 1 3 1 0 0 5 WNW 0 1 5 6 1 0 13 NW 0 0 6 7 1 0 14 NNW 0 0 4 0 0 0 4 TOTAL 0 16 42 21 3 1 83 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 49 of 80 --
I I TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: C 10 Meter Height Quarter: 1 WIND DIRECTION N NNE NE ENE E ESE SE SSE S SSW SW WSW W WNW NW NNW WIND SPEED (MPH)1-3 4-7 8-12 13-18 19-24 >24 TOTAL 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 2 1 4 0 2 1 0 1 2 4 2 0 1 0 0 0 2 4 2 3 8 9 2 4 9 11 8 1 0 0 2 1 0 0 0 0 0 4 6 3 5 10 0 1 0 0 0 0 0 0 0 0 0 2 0 4 9 4 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 2 1 4 5 6 3 10 16 8 12 25 29 10 2 TOTAL 0 19 64 32 19 0 134 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 55 VARIABLE DIRECTION
: 0 Stability Class: C 10 Meter Height Quarter: 2 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18. 19-24 >24 TOTAL N 0 6 3 1 0 0 10 NNE 0 1 4 3 0, 0 8 NE 0 2 2 3 0 0 7 ENE 0 1 1 0 0 0 2 E 0 4 1 0 0 0 5 ESE 0 7 5 0 0 0 12 SE 3 9 1 0 0 0 13 SSE 0 8 2 2 0 0 12 S 0 6 8 4 1 0 19 SSW 0 2 1 4 6 0 13 SW 0, 2 8 3 1 1 15 WSW 0 5 10 5 1 0 21 W 0 2 9 1 0 0 12 WNW 0 4 5 4 2 0 15 NW 0 3 4 6 1 0 14 NNW 1 4 2 1 0 0 8 TOTAL 4 66 66 37 12 1 186 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 I I I I I I I U I I I I I I I 1 U-- page 50 of 80 --U TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: C 10 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 2 1 0 0 0 3 NNE 112 11 4 0 0 0 17 NE 0 8 4 0 0 0 12 ENE 0 7 1 0 0 0 8 E 0 3 1 0 0 0 4 ESE 1 8 0 0 0 0 9 SE 1 6 0. 0 0 0 7 SSE 0 13 2 0 0 0 15 I '0 7 7- 0 0 0 14 SSW 1 3 8 0 0 0 12 SW 0 2 14 4 0 0 20 WSW 1 2 9 1 0 0 13 W 0 4 1 1 0 0 6 WNW 1 9 7 0 0 0 17 NW 1 8 6 0 0 0 15 NNW 1 3 2 1 0 0 7 TOTAL 9 96 67 7 0 0 179 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: -0 VARIABLE DIRECTION:
0 Stability Class: C 10 Meter Height Quarter: 4 WIND WIND SPEED (MPH)DIRECTION 11,-3 4-77 8-12 13-18 19 >24 TOTAL N 0 3 7 2 0 0 12 NNE 0 0 0 0 2 0 2 NE 0 1 3 2 1 0 7 ENE 0 1 0 0 0 0 1 E 0 0 0 0 0 0 0 ESE 0 0 0 0 0 0 0 SE 0 3 1 0 0 0 4 SSE 0 4 7 1 0 0 12 S 0 6 11 3 3 0 23 SSW 0 1 4 2 3 0 10 SW 0 1 12 1 0 0 14 WSW 0 2 7 1 1 2 13 W 0 3 3 2 0 0 8 WNW 0 2 4 6 1 0 13 NW 1 3 1 10 3 0 18 NNW 0 3 1 1 0 0 5 TOTAL 1 33 61 31 14 2 142 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 51 of 80 --
I I TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: D 10 Meter Height Quarter: 1 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 2 14 12 5 0 33 NNE 0 4 12 6 0 7 29 NE 2 12 42 19 10 6 91 ENE 1 3 19 4 0 0 27 E 3 10 36 9 0 0 58 ESE 2 37 36 6 1 0 82 SE 1 12 7 1 0 0 21 SSE 1 12 17 20 0 0 50 S 0 15 26 45 3 0 89 SSW 4 15 35 37 9 0 100 SW 2 11 31 26 1 0 71 WSW 0 15 22 30 26 9 102 W 1 16 34 37 13 0 101 WNW 0 19 65 73 24 1 182 NW 0 11 48 21 4 0 84 NNW 0 7 31 11 1 0 50 TOTAL 17 201 475 357 97 23 1170 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 55 VARIABLE DIRECTION:
0 Stability Class: D 10 Meter Height- Quarter: 2 WIND WIND SPEED (MPH)DIRECTION 1.-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 12 13 5 0 0. 30 NNE 2 6 15 5 3 0 31 NE 0 13 29 12 1 0 55 ENE 0 7 23 0 0 0 30 E 5 13 21 4 0 0 43 ESE 4 28 14 0 0 0 46 SE 3 25 14 2 0 0 44 SSE 4. 26 11 0 0 0 41 S 0 25 33 15 6 0 79 SSW 0 18 17 24 6 0 65 SW 1 21 18 9 0 2 51 WSW, 4 8 15 8 8 2 45 W 3 10 26 17 5 0 61 WNW 3 15 23 17 23 2 83 NW 2 8 16 24 7 1 58 NNW 0 7 8 5 0 0 20 TOTAL 31 242 296 147 59 7 782 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 U I I I I I I I I I I I U I I I-- page 52 of 80 --I U TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: D 10 Meter Height Quarter: 3 WIND WIND SPEED. (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 1 11 15 2 0 0 29 NNE 1 17 16 0 0 0 34 NE 2 27 7 0 0 0 36 ENE 3 12 3 0 0 0 18 E 1 10 0 0 0 0 11 ESE 3 16 1 0 0 0 20 SE 5 11 1 0 0 0 17 SSE 5 18 9 0 0 0 32 S 2 20 28 8 0 0 58 SSW 0 15 26 9 0 0 50 SW 2 21 33 2 0 0 58 WSW 0 9 8 0 0 0 17 W 2 7 8 0 0 0 17 WNW 0 12 7 2 0 0 21 NW 3 17 19 1 0 0 40 NNW 2 12 9 0 0 0 23 TOTAL 32, 235 190 24 0 0 481 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: F 0 VARIABLE DIRECTION:
0 Stability Class: D 10 Meter Height Quarter: 4 WIND WIND SPEED (MPH) -DIRECTION 1 -3 4-7 8-12 13-18 19-24 >24 TOTAL N 5 14 26 21 3 0 69 NNE 10 17 11 8 3 0 49 NE 4 23 31 8 1 0 67 ENE 2 8 14 1 0 0 25 E 5 4 11 0 0 0 20 ESE 1 19 20 0 0. 0 40 SE 1 26 20 6 0 0 53 SSE 1 26 34 12 2 0 75 S 1 19 43 25 4 0 92 SSW 3 20 34 30 4 0 91 SW 0 13 19 5 0- 0 37 WSW 1 8 15 30 10 5 69 W 4 10 18 31 2 3 68 WNW 1 11 21 39 12 5 89 NW 9 13 28 -18 13 0 81 NNW 9 8 27 11 2 0 57 TOTAL 57 239 372 245 56 13 982 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 53 of 80 --
I I TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: E 10 Meter Height Quarter: 1 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 2 5 0 0 0 7 NNE 0 8 7 0 0 0 15 NE 1 5 2 0 0 0 8 ENE 0 8 2 0 0 0 10 E 2 14 4 0 0 0 20 ESE 5 17 6 2 0 0 30 SE 5 21: 8 1 0 0 35 SSE 0 3 9 2 0 0 14 S 3 8 14 23 0 0 48 SSW 2 25 34 14 6 0 81 SW 0 15 19 6 0 0 40 WSW 0 9 10 6 0. 0 25 W 2 14 14 13 0 0 43 WNW 1 17 25 8 0 0 51 NW 0 6 11 0 0 0 17 NNW 0 6 7 3 0 0 16 TOTAL 21 178 177 78 6 0 460 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA:.VARIABLE DIRECTION:
0 55 Stability Class: E 10 Meter Height.. Quarter: 2 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8 -12 13;- 18 19-24 >24 TOTAL N 2 4 2. 0 0 0 8 NNE 1 14 9 6 0 0 30 NE 0 15 14 6 0 0 35 ENE 6 14 1 0 0 0 21 E 7 17 10 2 0 0 36 ESE 11 36 6 0 0 0 53 SE 4 20 1 0 0 0 25 SSE 8 44 12 0 0 0 64 S 5 57 19 11 2 0 94 SSW 5 25 21 6 0 0 57 SW. 2 20 15 0 0 0 37 WSW 1 11 13 0 0 0 25 W 2 10 16 0 0 0 28 WNW, 1 11 13 0 0 0 25 NW 3 10 7 1 0 0 21 NNW 1 10 2 1 0 0 14 TOTAL 59 318 161 33 2 0 573 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 I I I 1 I I I I I I U I I I I I I-- page 54 of 80 --U TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: E 10 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13- 18 19-24. >24 TOTAL N 2 17 7 0 0 0 26 NNE 1 23 1 0 0 0 25.NE 4 38 1 1 0 0 44 ENE 3 20 2 0 0 0 25 E 6 21 0 0 0 0 27 ESE 6 26 1 0 0 0 33 SE 7 32 4 0 0 0 43 SSE 5 66 5 0 0 0 76 S 5 46 14 3 0 0 68 SSW 4 47 32 0 0 0 83 SW 2 33 12 0 0 0 47 WSW 4 13 10 0 0 0 27 W 2 13 5 0 0 0 20 WNW 1 17 5 0 0 0 23 NW 2 22 8 0 0 0 32 NNW 5 8 0 0 0 0 13 TOTAL 59- 442 107 4 0 0 612 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 0 VARIABLE DIRECTION:
0 Stability Class: E 10 Meter Height Quarter: 4 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12. 13-18 19-24 >24 TOTAL N 2 9 7 2 0 0 20 NNE 2 7 7 9 1 0 26 NE 3 6 8 7 0 0 24 ENE 7 10 4 0 0 0 21 E 1 9 4 0 0 0 14 ESE 5 25 7 0 0 0 37.SE 5 51 8 2 0 0 66 SSE 5 44 29 2 0 0 80 S 3 32 50 26 0 0 111 SSW 2 17 48 25 0 0 92 SW 1 18 19 2 0 0 40 WSW 3 16 16 2 0 0 37 W 2 14 15 3 0 0 34 WNW 0 18 40 7 0 0 65 NW 0 12 22 8 2 0 44 NNW 3 11 4 1 1 0 20 TOTAL 44 299 288 96 4 0 731 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 55 of 80 --
TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: IF 10 Meter Height Quarter: 1 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 > 24 TOTAL N 0 1 0 0 0 0 1 NNE 0 0 0 0 0 0 0 NE 0 8 0 0 0 0 8 ENE 1 2 0 0 0 0 3 E 1 3 0 0 0 0 4 ESE 1 10 0 0 0 0 11 SE 3 7 0 0 0 0 10 SSE 1 5 3 0 0 0 9 5 3 10 4 0 0 0 17 SSW 1 6 3 0 0 0 10 SW 4 6 4 0 0 0 14 WSW 4 3 1 0 0 .0 8 W 1 3 0 0 0 0 4 WNW 2 4 3 0 0 0 9 NW 0 1 3 0 0 0 4 NNW 0 1 1 0 0 0 2 TOTAL 22 70 22 0 0 0 114 PERIODS OF CALM (HOURS): 1 HOURS OF MISSING DATA: 55 VARIABLE DIRECTION:
01 I I U I I I I I I I Stability Class: F 10 Meter Height Quarter: 2 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8 -12 13 -18, 19 -24, >24 TOTAL N 0 0 0 0 0 0 0 NNE 4 5 0 0 0 0 9 NE 9 15 0 0. 0 0 24 ENE 7 3 0 0 0 0 10 E 2 7 0 0 0i 0 9 ESE 3 4 0 0 0 0 7 SE 3 3 1 0 0 0 7 SSE 1 2 4 0 0 0 7 5 0 6 0 0 0 0 6 SSW 5 10 0 0 0 0 15 SW 5 17 3 0. 0 0 25 WSW 2 6 10 0 0 0 18 W 5 2 0 0 0 0 7 WNW 9 4 1 0 0 0 14 NW 1 11 0 0 0 0 12 NNW 0 4 0 0 0 0 4 TOTAL 56 99 19 0 0 0 174 PERIODS OF CALM (HOURS): 1 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 I I I I I I I I I-- page 56 of 80 --U, TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: F 10 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 2 9 0 0 0 0 11 NNE 4 19 0 0 0 0 23 NE 11 51 0 0 0 0 62 ENE 5 19 0 0 0 0 24 E 8 5 0 0 0 0 13 ESE 6 8 0 0 0 0 14 SE 8 12 0 0 0 0 20 SSE 7 10 1 0 0 0 18 S 6 16 0 0 0 0 22 SSW 3 18. 6 0 0 0 27 SW 2 12 0 0 0 0 14 WSW 3 10 3 0 0 0 16 W 0 3 0 0 0 0 3 WNW 6 6 0 0 0 0 12 NW 2 8 0 0 0 0 10 NNW' 1 3 0 0 0 0 4 TOTAL 74 209 10 0 0 0 293 PERIODS OF CALM (HOURS): 0 'HOURS OF MISSING DATA: 0 VARIABLE DIRECTION:
0 Stability Class: IF 10 Meter Height Quarter: 4 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 3 1. 0 0 0 4 NNE 1 2 0 0 0 0 3 NE 2 8 0 0 0 0 10 ENE 1 1 0 0 0 0 2 E 1 2 0 0, 0 0 3 ESE 0 4 0 0 0 0 4 SE 2 10 0 0 0 0 12 SSE 3 27 3 0, 0 0 33 S 2 12 1 0 0 0 15 SSW 1 10 1 0 0 0 12 SW 0 5 1 0 0 0 6 WSW 1 6 1 0 0 0 8 W 0 3 0 0 0 0 3 WNW 2 1 0 0 0 0 3 NW 3 7 6 0 0 0 16 NNW 0 6 2 0 1 0 9 TOTAL 19 107 16 0 1 0 143 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 57 of 80 --
TABLE 18 (continued).
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: G 10 Meter Height Quarter: 1 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 1 2 0 0 0 0 3 NNE 0 0 1 0 0 0 1 NE 1 8 0 0 0 0 9 ENE 0 1 0 0 0 0 1 E 0 0 0 0 0 0 0 ESE 0 0 0 0 0 0 0 SE 0 0 0 0 0 0 0 SSE 0 0 0 0 0 0 0 S 5 0 0 0 0 0 5 SSW 1 5 2 0 0 0 8 SW 1 1 0 0 0 0 2 WSW 2 0 0 0 0 0 2 W 0 0 0 0 0 0 0 WNW 1 0 1 0 0 0 2 NW 1 0 0 0 0 0 1 NNW 2 0 0 0 0 0 2 TOTAL 15 17 4 0 0 0 36 PERIODS OF CALM (HOURS): 2 HOURS OF MISSING DATA: 55 VARIABLE DIRECTION:
0 Stability Class: G 10 Meter. Height Quarter: 2 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13t- 18. 19- 24 > 24 TOTAL N 3 0 0 0 0 0 3 NNE 6 6 0 0 0 0 12 NE 7 31 0 0 0 0 38 ENE 5 4 0 0 0 0 9 E 3 0 0 0: 0 0 3 ESE 2 2 0 0 0. 0 4 SE 0 0 0 0 0 0 0 SSE 0 0 0 0 0 0 0 S 1 0 0 0 0 0 1 SSW 1 1 0 0 0 0 2 SW 3 8 0 0 0 0 11 WSW 2 7 0 0 0 0 9 W 8 8 0 0 0 0 16 WNW 5 5 0 0 0 0 10 NW 10 4 0 0 0 0 14 NNW 5 0 0 0 0 0 5 TOTAL 61 76 0 0 0 0 137 PERIODS OF CALM (HOURS): 3 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 I I I I I I U I I I I I I I I I I I I-- page 58 of 80 --U TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: G 10 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 7 1 0 0 0 0 8 NNE 18 17 0 0 0 0 35 NE 39 69 0 0 0 0 108 ENE 8 1 0 0 0 0 9 E 6 2 0 0 0 0 8 ESE 4 1 0 0 0 0 5 SE 5 1 0 0 0 0 6 SSE 2 4 0 0 0 0 6 S 1 2 0 0 0 0 3 SSW 1 3 0 0 0 0 4 SW 2 1 0 0 0 0 3 WSW 3 0 0 0 0 0 3 W 2 0 0 0 0 0 2 WNW 6 4 0 0 0 0 10 NW 2 5 0 0 0 0 7 NNW 2 0 0 0 0 0 2 TOTAL 108 111 0 0 0 0 219 PERIODS OF CALM (HOURS): 3 HOURS OF MISSING DATA: 0 VARIABLE DIRECTION:
0 Stability Class: G 10 Meter Height Quarter: 4'WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 1 2 0 0 0 0 3 NNE 5 2 0 0 0 0 7 NE 4 3 0 0 0 0 7 ENE 3 2 0 0 0 0 5 E 2 2 0 0 0 0 4 ESE 4 2 0 0 0 0: 6 SE 1 3 0 0 0 0 4 SSE 0 2 2 0 0 0 4 S 1 0 0 0 0 0 1 SSW 4 2 0 0 0 0 6 SW 2 2 0 0 0 0 4 WSW 0 1 0 0 0 0 1 W 1 0 0 0 0 0 1 WNW 1 1 0 0 0 0 2 NW 0 2 3 0 0 0 5 NNW 0 1 0 0 0 0 1 TOTAL 29 27 5 0 0 0 61 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 59 of 80 --
I TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: A 60 Meter Height Quarter: 1 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL I N 0 0 2 1 0 0 3 NNE 0 0 0 0 0 0 0 NE 0 0 0 1 6 0 7 ENE 0 0 0 1 4 0 5 E 0 0 0 5 0 0 5 ESE 0 0 2 0 0 0 2 SE 0 0 2 0 0 0 2 SSE 0 0. 2 2 0 0 4 S 0 0 1 2 0 0 3 SSW 0 0 0 0 0 0 0 SW 0 0 0 0 1 0 1 WSW 0 0 0 1 0 0 1 W 0 0 0 4 9 4 17 1 WNW 0 0 3 3 15 13 34 NW 0 0 4 2 0 0 6 NNW 0 0 2 0 0 0 2 U TOTAL 0 0 18 22 35 17 92 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA,: 55 VARIABLE DIRECTION:
0 Stability Class: A 60 Meter Height Quarter: 2 WIND WIND SPEED (MPH)DIRECTION 1 -3 4-7 8-12 13-1.8 19- 24 >24 TOTAL N 0 0 1 0 0 0 1 NNE 0 0 1 10 4 0 15 NE 0 0 0 4, 0 0 4 ENE 0 0 1 3 0 0 4 E 0 0 2 4. 0 0 6 ESE 0 3 5 0 0 0 8 SE 0 1 5 4 0 0 10 SSE 0 1 2 1 0 0 4 S 0 0 3 8 1 1 13 SSW 0 0 0 6 2 2 10 SW 0 0 4 7 0 0 11 WSW 0 0 2 1 0 2 5 W 0 1 2 3 7 0 13 WNW 0 0. 5 4 14 6 29 NW 0 1 1 10 9 0 21 NNW 0 0 2 6 0 0 8 TOTAL 0 7 36 71 37 11 162 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 I I I I I I I I I I i0 of 80 -- Ii-- page 6 n TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: A 60 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 2 14 3 0 0 19 NNE 0 1 2 4 0 0 7 NE 0 0 11 4 2 0 17 ENE 0 1 9 2 0 0 12 E 0 3 12 3 0 0 18 ESE 0 0 0 0 0 0 0 SE 0 4 7 0 0 0 11" SSE 0 1 4 0 0 0 5 S 0 1 13 19 0 0 33 SSW 0 0 4 12 3 1 20, SW 0 0 3 4 1 0 8 WSW 0 4 3 9 4 0 20 W 0 2 4 7 2 0 15 WNW 0 2 8 3 1 0 14 NW 0 6 9 5 1 0 21 NNW 0 2 3 2 0 0 7 TOTAL 0 29 106 77 14 1 227 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 0 IVARIABLE DIRECTION:
.0 Stability Class: A 60 Meter Height Quarter: 4 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18. 19-24 >24 TOTAL N 0 0 1 3- 0 0- 4 NNE 0 0 0 0 1 1 2 NE 0 0 0 0 1 0 1 ENE 0 0 0 0 0 0 0 E 0 0 0 0 0 0 0 ESE 0 0 0 0 0 0 0 SE 0 0 0 0 0 0 0 SSE 0 0 0 0 0 0 0 S 0 0 5 4 1 0 10 SSW 0 0 4 4 1 0 9 SW 0 0 0 0 0 0 0 WSW 0 0 0 0 0 0 0 W 0 0 0 2 3 0 5 WNW 0 0 0 3 6 1 10 NW 0 0 0 0 2 2 4 NNW 0 0 0 0 0 0 0 TOTAL 0 0 10 16 15 4 45 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 61 of 80 --
TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: B 60 Meter Height Quarter: 1 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 0 1 0 0 0 1 NNE 0 0 0 0 0 0 0 NE 0 0 1 0 1 0 2 ENE 0 0 0 1 1 0 2 E 0 0 0 0 0 0 0 ESE 0 1 4 5. 0 0 10 SE 0 9 0 0 0 0 9 SSE 0 2 0 1 0 0 3 S 0 0 2 0 0 0 2 SSW 0 0 2 4 0 2 8 SW 0 0 1 6 2. 0 9 WSW 0 0 1 1 1 0 3 W 0 0 4 5 3 0 12 WNW 0 1 8 6 1 4 20 NW 0 0 5 2 0 1 8 NNW 0 0 3 1 2 0 6 TOTAL 0 13 32 32 11 7 95 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 55 VARIABLE DIRECTION:
0 Stability Class: B 60 Meter Height,., Quarter: 2 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >.24 TOTAL N 0 2 4 0 0 0 6 NNE 0 0 4 4, 2 0 10 NE 0 1 2 1 0 0 4 ENE 0 0 2 2 0 0 4 E 0 0- 7 2 0 0 9 ESE 0 4 1 0. 0 0 5 SE 0 5 7 1 0 0 13 SSE 0 3 0 2 0 0 5 S 0 1 7 8 4 0 20 SSW 0 1 1 1 2 5 10 SW 0 1 6 4 0 0 11 WSW 0 3 9 10 0 1 23 W 0 0 6 1 0 0 7 WNW 0 0 5 1 3 3 12 NW 0 2 4 1 4 2 13 NNW 0 0 3 5 0 0 8 TOTAL 0 23 68 43 15 11 160 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 I I I I I I I I I I I I I I I I I I I U-- page 62 of 80 --
TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: B ' 60 Meter Height Quarter: 3 WIND -WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 3 4 2 0 0 9 NNE 0 1 3 1 0 0 5 NE 0 1 9 1 1 0 12 ENE 0 0 7 1 0 0 8 E 0 5 3 1 0 0 9 ESE 0 8 5 0 0 0 13 SE 0 8 3 0 0 0 11 SSE 0 3 3 0 0 0 6 S 0 10 3 5 2 1. 21 SSW 0 1 12 5 2 0 20 SW 0 2 8 8 1 0 19 WSW 0 1 3 8 2 0 14 W 0 0 1 2 0 0 3 WNW 0 6 5 4 1 0 16 NW 0 11 7 2 1 0 21 NNW 0 0 4 0 0 0 4 TOTAL 0, 60 80 40 10 1 191 PERIODS OF CALM (HOURS): 0 HOURSOF MISSING DATA: 0 VARIABLE DIRECTION:
0 Stability Class: B 60 Meter Height Quarter: 4 WIND WIND SPEED (MPH)DIRECTION 1-3. 4-7 8-12 13 -18 19-24 >24 TOTAL N 0 0 3 2 0 0 5 NNE 0 1 1 0 2 0 4 NE 0 0 0 0, 1 0 1 ENE 0 0 1 0 0 0! 1 E 0 0 0 0 0 0 0 ESE 0 1 0, 0 0 0 1 SE 0 0 0 1 0 0 1 SSE 0 1 2 1 0 0 4 S 0 1 3 1 1 0 6 SSW 0 0 9 3 1 1 14.SW 0 1 1 2 0 0 4 WSW 0 0 1 2 2 1 6 W 0 0 2 1 1 0 4 WNW 0 0 1 9 3 0 13 NW 0 0 3 6 4 2 15 NNW 0 0 4 0 0 0 4 TOTAL 0 5 31 28 15 4 83 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 63 of 80 --
I TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: C 60 Meter Height Quarter: 13 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL I N 0 0 1 0 0 0 1 NNE 0 0 0 0 0 0 0 NE 0 0 0 1 1 0 2 ENE 0 0 0 0 0 1 1 E 0 0 0 0 0 0 0 ESE 0 0 3 6 0 0 9 SE 0 4 2 0 0 0 6 SSE 0 0 2 1 0 0 3 S 0 1 6 3 0 0 10 SSW 0 0 5 6 3 2. 16 SW 0 0 0 5 5 0 10 WSW 0 1 1 3, 1 0 6 W 0 1 9 4 3 4 21m WNW 0 1 7 10 5 9 32 NW 0 2 6 3 1 3 15 NNW 0 0 1 0 1 0 2 1 TOTAL 0 10 43 42 20 19 134 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA : 55 VARIABLE DIRECTION:
0 Stability Class: C 60 Meter.Height Quarter: 2 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 4 3 0 1 0 8 NNE 0 1 6 2 1 0. 10 NE 0 2 0 3 2 0 7 ENE 0 1 1 1 0 0 3 E 0 1 3. 1 0 0 5 ESE 1 6 3 1 5 0 16 SE 1 6 2 0 0 0 9 SSE 0 6 2 2 2 0 12 S 0 3 5 7 5 2 22 SSW 0 2 0 2 1 5 10 SW 0 1 10 2 2 2 17 WSW 0 1 8 4 4 1 18 W 0 1 8. 5 0 0 14 WNW 0 4 5 0 3 2 14 NW 0 1 4 5 2 1 13 NNW 0 3 1 4 0 0 8 TOTAL 2 43 61 39 28 13 186 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 U I I I I i I I I I 64 of 80 -- i-- page IN TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: C 60 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 3 1 1. 0 0 5 NNE 0 2 7 1 0 0 10 NE 0 4 11 1 0 0 16 ENE 0 1 8 1 0 0 10 E 0 1 3 1 0 0 5 ESE 0 7 2 0 0 0 9 SE 1 8 1 0 0 0 10 SSE 0 6 1 2 0 0 9 S 0 7 1 5 2 0 15 SSW 0 0 10 4 0 0 14 SW 1 0 9 5 4 0 19 WSW 0 2 4 6 1 0 13 W 0 3 4 1 0 0 8 WNW 1 8 8 1 0 0 18 NW 1 5 4 1 0 0 11 NNW 0 3 3 0 1 01 7 TOTAL 4 60 77 30 8 0 .179 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 0 VARIABLE DIRECTION:, 0 Stability Class: C 60 Meter Height Quarter: 4 WIND WIND SPEED'(MPH)
DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 4 4 1 2 0 11 NNE 0 0 1 1 0 2 4 NE 0 1 0 3 0 1 5 ENE 0 0 0 0 0 2 2 E 0 0 1 0 0 0 1 ESE 0" 0 0 0 0 0 0 SE 0 2 0 1 0 0 3 SSE 0 3 4 1 1 0 9 S 0 1 14 5 3 3 26 SSW 0 1 2 3 2 3 11 SW 0 0 5 8 1 0 14 WSW .0. 2 2 5 0 3 12 W 0 1 4 2 0 0 7 WNW 0 0 5 2 6 0 13 NW 0 4 0 6 3 3 16 NNW 0 1 1 5 1 0 8 TOTAL 0 20 43 43 19 17 142 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 65 of 80 --
TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: D 60 Meter Height Quarter: 1 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 0 9 1.4 7 5 35 NNE 0 1 7 10 3 7 28 NE 0 7 7 35 10 18 77 ENE 0 3 3 17 10 6 39 E 1 4 5 23 10 2. 45 ESE 0 4 26 33 19 9 91 SE 1 7 12 6 0 1 27 SSE 0 3 12 12 15 7 49 S 1 5 11 15 42 19 93 SSW 0 10 19 21 31 10 91 SW 0 7 16 29 22 1 75 WSW 1 6 10 30 20 38 105 W 1 4 22 37 20 13 97 WNW 0 5 35 56 54 24 174 NW 0 5 28 37 16 4 90 NNW 0 2 26 20 3 0 51 TOTAL 5 73 248 395 282 164 1167 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 55 VARIABLE DIRECTION:
0 Stability Class: D 60 Meter Height, Quarter: 2 WIND WIND SPEED (MPH)DIRECTION 1-3. 4-7 8-12 13-18 19-24 > 24 TOTAL N 0 4 13 10 1 0 28 NNE 0 2 11 10 2 1 26 NE 2 2 13 19 17 3 56 ENE 1 4 4 15 9 0 33 E 1 4. 9 18 7 3 42 ESE 1 5 14 16 8. 45 SE 2 13 18 12 4. 0 49 SSE 0 15 13 10 2 1 41 S 0 11 18 28 23 7 87 SSW 0 7 14 11 9 14 55 SW 2 5 23 14 7 2 53 WSW 1 4 16 9 5 14 49 W 2 2 12 28 10 5 59 WNW 0 7 18 13 12 26 76 NW 0 10 6 21 19 6 62 NNW 0 2 6 7 6 0 21 TOTAL 12 97 208 241 141 83 782 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 I I U I I I I I I I I I I I I I U I I-- page 66 of 80 --U TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: D 60 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 2 1 12 10 2 0 27 NNE 1 7 19 1i 0 0 38 NE 2 3 16 3 3 0 27 ENE 0 5 13 2 0 0 20 E 1 3 7 2 0 0 13 ESE 2 10 8 3 0 0 23 SE 2 4 11 1 0 0 18 SSE 1 5 8 11 0 0 25 S 2 8 16 20 10 5 61 SSW 2 5 14 19 6 1 47 SW 0 3 30 26 3 0 62 WSW 0 2 11 7 0 0 20 W 0 3 7 4 0 0 14 WNW 0 6 10 6 1 0 23 NW 1 10 14 10 1 0 36 NNW 1 6 12 .8 0 0 27 TOTAL 17 81 208 143 26 6 481 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: F 0 IVARIABLE DIRECTION:
0 Stability Class: D 60 Meter Height' Quarter:&#xfd; 4 WIND WIND SPEED (MPH)DIRECTION 1- 3 4-7 8-12 13-18 19- 24 > 24 TOTAL N 0 5 21 24 14 6 70 NNE 0 4 15 4 9 2 34 NE 5 11 20 12 5 4 57 ENE 1 3 17 15 3 1 40 E 2 3 3' 12 1 0 21 ESE 3 5 13 15 4 0 40 SE 2 4 25 14 7 0 52 SSE 0 5 20 23 9 9 66 S 2 6 33 27 26 12 106 SSW 2 8 24 20 24 10 88 SW 0 3 13 19 7 1 43 WSW 1 4 8 19 18 15 65 W 0 8 15 13 24 7 67 WNW 2 4 9 23 28 18 84 NW 0 5 11 25 15 16 72 NNW 0 3 26 16 5 0 50 TOTAL 20 81 273 281 199 101 955 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 67 of 80 --
I TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: E 60 Meter Height Quarter: 1 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL I N 0 0 5 5 0 0 10 NNE 0 1 2 9 0 0 12 NE 0 1 4 4 1 0 10 ENE 0 1 3 3 0 0 7 E 0 0 5 5 2 0 12 ESE 0 4' 5 14 6 1 30 SE 0 3 18 13 3 1 38 I SSE 0. 2 5 7 5 1 20 S 1 0 4 10 16 12 43 SSW 0 5 11 22 24 9 71 I SW 0 4 12 25 10 1 52 WSW 0 1 7 9 9 0 26 W 0 1 9 11 10L 1 32 WNW 0 0 14 18 13 4 49 NW 0 3 12 13 1 0 29 NNW 1 0 11 4 3 0 19 TOTAL 2 26 127 172 103 30, 460 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 55 F IVARIABLE DIRECTION:
0 Stability Class: E 60 Meter Height Quarter: 2 WIND WIND SPEED (MPH)&#xfd;DIRECTION 1-3 4-7 8s- 12 13-18 19-24 >24 TOTAL N 0 0 5 5 0 0 10 NNE 0 0 10 13 9 0 32 NE 0 1 3 11 12 0 27 ENE 0 1 10 8 0 0 19 E 3 4 13 9 7 2 38 ESE 1 6 16 16 3 0 42 SE 0 10 27 6 0 0 43 SSE 0 6 28 30 8 0 72 S 0 5 36 28 17 8 94 SSW 01 0 14 18 7 2 41 SW 0 4 13 23 1 0 41 WSW 1 1 6 10 3 0 21 W 0 6 9 24 0 0 39 WNW 0 3 -8 11 0 0 22 NW 0 0 9 10 1 0 20 NNW 1 1 8 2 0 0 12 TOTAL 6 48 215 224 68 12 573 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 I I I I I I I i I.8 of 80 --i-- page 6 0 TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: E 60 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 1 3 10 15 0 0 29 NNE 0 5 12 3 0 0 20 NE 0 3 12 12 1 0 28 ENE 1 3 13 20 1 0 38 E 0 3 9 9 1 0 22 ESE 1 4 17 12 0 0 34 SE 1 3 36 5 0 0 45 SSE 0 11 21 35 0 0 67 S 0 4 26 38 3 2 73 SSW 1 4 23 39 2 0 69 SW 0 4 21 36 1 0 62 WSW 1 2 11 20 1 0 35 W 1 3 10 8 0 0 22 WNW 0 4 11 8 0 0 23 NW 3 2 17 10 0 0 32 NNW 1 4 4 4 0 0 13 TOTAL 11' 62 253 274 10 2 612 PERIODS OF CALM (HOURS): 0 -HOURS OF MISSING DATA: 0 VARIABLE DIRECTIQN:
0 Stability Class&#xfd; E 60 Meter Height Quarter: 4 WIND WIND SPEED (MPH)-DIRECTION 1-3 4-7 8-12 13-18 19 --24 >24 TOTAL N 1 7 5 12 1 0 26 NNE 0 4 2 '4 9 3 22 NE 0 3 2 2 11 4 22 ENE 1 1 3 9 3 0 17 E 1 3 4 8 .0 0 16 ESE 4 1 3 8 -1 0 17 SE 2 11 36 20 0 0 69 SSE 0 4 28 34 8 2 76 S 0 5 25 53 32 7 122 SSW 1 2 18 28 35 6 90 SW 0 2 9 30 10 0 51 WSW 0 3 12 16 7 0 38 W 1 3 9 11 3 0 27 WNW 0 1 15 26 13 0 55 NW 0 2 17 27 11 2 59 NNW 0 1 12 6 3 1 23 TOTAL 11 53 200 294 147 25 730 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 69 of 80 --
TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: F 60 Meter Height Quarter: 1 WIND DIRECTION N WIND SPEED (MPH)1-3 4-7 8-12 13-18 19-24 >24 TOTAL NNE NE ENE E ESE SE SSE S SSW SW WSW W WNW NW NNW 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 2 0 0 0 2 0 1 4 2 3 1 0 1 1 1 0 0 2 4 1 9 2 1 2 3 2 2 4 1 2 0 1 1 1 0 4 6 5 11 6 5 1 0 3 2 3 0 0 0 0 0 0 0 3 1 2 4 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 3 3 4 5 17 10 14 14 14 8 3 8 4 6 TOTAL 2 17 36 49 11 0 115 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: F 55 VARIABLE DIRECTION:
0 Stability Class: F 60 Meter-Height Quarter: 2 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 1.3-18 19-24 >24 TOTAL N 0 1 0 0 0 0 1 NNE 0 2 1 0 0 0 3 NE 0 0 3 2 0 0 5 ENE 0 4 8 5 0 0 17 E 0 3 9 5 0 0 17.ESE 0 1 6 3 0 0 10 SE 0 0 6 1 0 0 7 SSE 1 0 2 1 1 0 5 S 0 2 2 8 1 0 13 SSW 0 1 3 2 0 0 6 SW 0 5 4 16 0 0 25 WSW 1 0 1 12 7 0 21 W 0 2 8 4 0 0 14 WNW&#xfd; 0 3 3 1 0 0 7 NW 0 3 3 2 0 0 8 NNW 0 2 9 4 0 0 15 TOTAL 2 29 68 66 9 0 174 PERIODS OF CALM (HOURS): 1 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 I I I I I I I I I U I I I I I I I I I-- page 70 of 80 --0 TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: F 60 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12. 13-18 19-24 >24 TOTAL N 0 1 4 2 0 0 7 NNE 1 2 7 11 0 0 21 NE 1 2 14 23 2 0 42 ENE 0 1 11 21 1 0 34, E 0 2 13 7 0 0 22 ESE 0 2 9 4 0 0 15 SE 0 6 5 0 0 0 11 SSE 0 11 8 8 0 0 27 S 0 4 13 9 0 0 26 SSW 0 2 7 16 0 0 25 SW 0 0 6 14 0 0 20 WSW 0 2 5 6 0 0 13 W 1 0 6 7 0 0 14 WNW 1 0 3 1 0 0 5 NW 0 0 3 4 0 0 7 NNW 0 1 1 3 0 0 5 TOTAL 4 36 115 136 3 0 294 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 0 VARIABLE DIRECTION:
0 Stability Class: F 60 Meter Height Quarter: 4 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 1 1 1 4 0 0 7 NNE 0 0 1 3 0 0 4 NE 0 0 1 3 0 0 4 ENE 1 0 2' 2 0 0 5 E 0 0: 1 0 0 0 1 ESE 0 1 1 1 0 0 3 SE 0 2 6 2 0 0 10 SSE 0 0 3 7 0 0 10 S 0 1 15 18 0 0 34 SSW 0 1 12 6 1 0 20 SW 0 1 5 4 0 0 10 WSW 0 0 3 5 0 0 8 W 0 0 1 0 0 0 1 WNW 0 0 4 0 0 0 4 NW 0 0 4 6 1 1 12 NNW 1 2 2 5 0 0 10 TOTAL 3 9 62 66 2; 1 143 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 71 of 80 --
TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: G 60 Meter Height Quarter: 1 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 0 0 0 2 0 0 2 NNE 0 0 0 1 0 0 1 NE 0 0 0 1 3 0 4 ENE 0 0 0 1 1 0 2 E 0 2 1 0 0 0 3 ESE 0 0 0 0 0 0 0 SE 0 1 0 0 0 0 1 SSE 0 0 0 0 0 0 0 S 0 0 0 0 0, 0 0 SSW 0 0 1 0 1 0 2 SW 0 0 2 4 3 0 9 WSW 0 4 2 0 0 0 6 W 0 1 1 0 0 0 2 WNW 0 1 1 0 0 0 2 NW 0 2 0 0 0 0 2 NNW 0 2 0 0 0 0 2 TOTAL 0 13 8 9 8 0. 38 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 55 VARIABLE DIRECTION:
0 Stability Class: G 60 Meter Height Quarter: 2 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 1.3- 18 19-24 >24 TOTAL N 0 1 4 0. 0 0 5 NNE 0 2 4 0 0 0 6 NE 0 1 4 3 0 0 8 ENE 0 2 7 14 0 0 23 E 0 1 4 10 0 0 15 ESE 0 1 6 0 0 0 7 SE 1 4 4 0 0 0 9 SSE 1 0 0 0 0 0 1 S 0 1 0 0 0 0 1 SSW 1 1 1 0 0 0 3 SW 3 1 1 7 0 0 12 WSW 0 2 2 9 0 0 13 W 1 1 5 8 0 0 15 WNW 1 2 2 1 0 0 6 NW 0 2 7 2 0 0 11 NNW 0 3 1 1 0 0 5 TOTAL 8 25 52 55 0 0 140 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 6 VARIABLE DIRECTION:
0 I I I I I I I I I I I I I I I I I I I-- page 72 of 80 --0 TABLE 18 (continued)
JOINT WIND FREQUENCY DISTRIBUTION BY STABILITY CLASS Stability Class: G 60 Meter Height Quarter: 3 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7 8-12 13-18 19-24 >24 TOTAL N 1 1 2 0 0 0 4 NNE 1 5 2 4 0 0 12 NE 0 6 8 18 3 0 35 ENE 0 5 13 20 1 0 39 E 0 2 28 20 0 0 50 ESE 0 2 10 4 0 0 16 SE 0 7 2 0 0 0 9 SSE 1 5 5 1 0 0 12 S 0 3 2 1 0 0 6 SSW 1 2 3 2 0 0 8 SW 3 2 1 2 0 0 8 WSW 1 3 2 1 0 0 7 W 1 0 3 0 0 0 4 WNW 1 0 0 0 0 0 1 NW 0 2 1 1 0 0 4 NNW 0 .0 5 2 0 0 7 TOTAL 10 45 87 76 4 0 222 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 0 VARIABLE DIRECTION:
0 Stability Class: G 60 Meter Height Quarter: 4 WIND WIND SPEED (MPH)DIRECTION 1-3 4-7. 8-12 13-18 19-24 >24 TOTAL N 0 0 0 0 0 0 0 NNE 1 0 2 2 0 0 5 NE 0 1 2 1 0 0 4 ENE 0 1 2 3 0 0 6 E 0 0 1 1 0 0 2 ESE 0 3 1 1 0 0 5 SE 0 1 6 0 0 0 7 SSE 0 3 3 0 0 0 6 S 0 2 2 3 0 0 7 SSW 0 0 3 0 0 0 3 SW 0 0 3 0 0 0 3 WSW 0 0 3 0 0 0 3 W 0 0 2 0 0 0 2 WNW 0 0 2 1 0 0 3 NW 0 0 0 3 0 0 3 NNW 0 0 0 0 2 0 2 TOTAL 1 11 32 15 2 0 61 PERIODS OF CALM (HOURS): 0 HOURS OF MISSING DATA: 21 VARIABLE DIRECTION:
0-- page 73 of 80 --
SECTION 8 ODOM OPERATIONAL REMEDIAL REQUIREMENT -REPORTS In accordance with CPS ODOM section[s]
2.7.1 and 3.9.2, INOPERABLE radioactive liquid and gaseous effluent monitoring instrumentation channels remaining in an INOPERABLE condition for greater than 30 days shall be reported in the Annual Radioactive Effluent Release Report.During the course of 2007, there were zero (0) instances when either a radioactive liquid or gaseous effluent instrumentation channel[s]
was INOPERABLE for greater than any 30 day period.I I I I I I I I I I I I I I I I I I I-- page 74 of 80 --0 SECTION 9 CHANGES TO RADIOACTIVE WASTE TREATMENT-SYSTEMS In accordance with Section 7.2 of the CPS ODCM, licensee-initiated changes to the liquid, gaseous or solid radioactive waste treatment systems shall be reported in the Annual Radioactive Effluent Release Report.The Process Control Program (PCP) for Radioactive Wastes procedure, RW-AA-100, Revision 3 had no changes in 2007.There were no permanent changes to the Solid Radioactive Waste Treatment System during the course of the 2007 reporting period.-- page 75 of 80 --
SECTION 10 NEW LOCATIONS FOR DOSE CALCULATION AND / OR ENVIRONMENTAL MONITORING The following is a summary of the 2007 Annual Land Use Census. It shows changes in locations for, dose calculations and / or environmental monitoring identified by the Annual Land Use Census. The distance of the receptor is being listed in the report in lieu of the name of the resident.
This is being done to maintain and respect the privacy of the residents.
1.0 Nearest Residence The nearest residents identified in each of the sixteen (16) sectors are shown below. An asterisk notes any changes from the previous year below (*)I I I I I I I I I I I I*/*k 2007 2006 SECTOR RESIDENT AGE GROUP RESIDENT AGE GROUP (miles) (miles)N 0.9 A 0.9 A NNE 1.0 1, A 1.0 A NE 1.3 A 1.3 T, A ENE 1.8 C, A 1.8 A E 1.0 A 1.0 A ESE 3.2 A 3.2 A SE 2.8 A 2.4 C, T, A SSE 1.4 T, A 1.8 T, A S 3.0 A 3.0 A SSW 2.9 A' 2.9 A SW 0.7 A 0.7 A WSW 1.6 A'. 1.6 A W 1.2 C, A 1.2 C, A WNW 1.6 A 1.6 A NW 1.6 A 1.6 A NNW 1.7 A 0.9 A U I U I I I I U (I)nfant (C)hild (T)een (A)dult-- page 76 of 80 --
SECTION 10 (continued) 2.0 Broadleaf Garden Census Eighty-three (83) gardens within a three (3) mile radius were located in the sixteen (16) geographical sectors surrounding CPS. Fourteen (14) gardens contained broad leaf vegetation, which were specifically identified for this report. Although other crops were identified within these areas, they are~not addressed as part of this report.The nearest gardens identified in each of the sixteen (16) geographical sectors are shown below. An asterisk notes any changes from the previous year below (*).2007 2006 SECTOR GARDENS AGE GROUPS GARDENS AGE GROUPS__ __ __ _ (miles) _ _ _ _ _ _ __(miles)_
_ _ _ _ _ _ _N 0.9 A 0.9 A NNE 3.0 A 2.3 A NE 2.1 A 2.1 T, A ENE 2.6 A 2.6 1, C,T, A E 1.0' A > 5 ESE 3.2 A 3.3 T, A SE > 5 > 5 SSE >5 2.8 C1,A S 3.0 A 3.0 A SSW >5 > 5 SW > 5 > 5 WSW 2.3 A 2.9 T, A W 2.0 A 1.2 C, A WNW 1.6 A 1.6 A NW 2.8 C, T, A > 5 NNW 1.3 A 1.3 A (I)nf ant (C)hild (T)een (A)dult-- page 77 of 80 --
SECTION. 10 (continued) 3.0 Milking Animal Census Milking animals within the sixteen (16):geographical sectors were located within five (5) miles surrounding CPS. These milking animals were either used for the nursing of their offspring or used for meat production for their own personal use and sold commercially.
There were no residents that milked their animals for human consumption.
Milking animals were specifically identified for this report. Although other livestock were identified within these areas, they are not addressed as part of this report.The nearest milking animals identified in each of the sixteen (16) geographical sectors are shown below. An asterisk notes any changes from the previous year below (*).***SECTOR 2007 MILKING AGE 2006 MILKING AGE ANIMALS (miles) GROUPS ANIMALS (miles) GROUPS N 0.9 A 0.9 A NNE 2.3 A 2.3 A NE > 5 N/A > 5 N/A ENE > 5 N/A > 5 N/A E 1.0 N/A > 5 N/A ESE > 5 N/A > 5 N/A SE > 5 N/A > 5 N/A SSE > 5 N/A > 5 N/A S 4.1 A 4.1 A SSW 3.4 A 3.4 A SW 3.6 N/A > 5 N/A WSW 2.8 A 3.4 A W > 5 N/A > 5 N/A WNW > 5 N/A > 5 N/A NW > 5 N/A > 5 N/A NNW 1.3 A 1.3 A I I I I I I I I I I I I I I I I I I I (I)nfant (C)hild (T)een (A)dult-- page 78 of 80 --0l SECTION 11 CORRECTIONS TO DATA REPORTED IN PREVIOUS REPORTS There were no administrative changes identified in 2007 against previously submitted Annual Radioactive Effluent Release Report[s]
resulting in an errata data submittal to the Commission.
-- page 79 of 80 --
SECTION 12 CHANGES TO THE OFFSITE DOSE CALCULATION MANUAL There were no changes to the Offsite Dose Calculation Manual during 2007.I I I* I I I I I-- page 80 of 80 --}}

Latest revision as of 05:03, 21 August 2019