ML20029B189
| ML20029B189 | |
| Person / Time | |
|---|---|
| Site: | Fort Saint Vrain |
| Issue date: | 12/31/1990 |
| From: | Crawford A PUBLIC SERVICE CO. OF COLORADO |
| To: | NRC OFFICE OF INFORMATION RESOURCES MANAGEMENT (IRM) |
| References | |
| P-91077, NUDOCS 9103060155 | |
| Download: ML20029B189 (64) | |
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P.O. Dos 840 Denver CO 80201 084o A. Clegg Crawfo,d Vece Pies dent Nucioar Operations February 27, 1991 Fort.St. Vrain Unit No. 1 l -- P-91077-l U.S. Nuclear Regulatory Commission Attn: Document Control Desk Washington, DC 20555 Docket No. 50-267
SUBJECT:
Semi-Annual Radioactive Effluent Release Report . Gentlemen: Attached please find the Semi-Annual Radioactive Effluent Release Report for the Fort St. Vrain Nuclear Generating Station. This report covers the period July 1,1990 through December 31, 1990, l-and is submitted pursuant to Section 7.5.1.e of the Fort St. Vrain Technical Specifications, i l Please contact Mr. M. H. Holnes at (303) 480-6960 if you have any l questions regarding this report. i Sincerely, l 9 6N [, p M. o l A. C. Crawfor' h' Vice' President Nuclear Operations l-ACC:SC/skd-Attachments l' l l-L l-9103060155 901231 [ PDR ADOCK 05000267 /. R PDR g
= _ February 27, 1991 Page 2 P-91077 cc w/att'achments: Regional Administrator, Region IV Attn: Mr. G. L. Constable, Chief Technical Support Section Division of Reactor Projects Mr. J. B. Baird. Senior Resident Inspector Fort St. Vr'ain Dottie Sherman, ANI Library American Nuclear Insurers The Exchange, Suite 245 270 Farmington Avenue Farmington, CT 06032 Mr. Robert Quillen Director-Radiation-Control Division Colorado. Department of Health 4210 E.- lith Ave. Denver, CO 80220 Mr.-Milt-Lammering, Chief Regional' Representative, Radiation Program -U. 5, Environmental Protection Agency -Region VIII 999-18th Street,' Suite 500 Denyer; CO-80202-2405-Mr..Farrell D.-Hobbs: -Environmental Management Rockwell-International Building 250,-P.O. Box 464 Golden, CD i80402L Dr.: James E. Johnson Department of Radiation Biology MRB Building Colorado State Univ'ersity Fort Collins, CO 80523
.v i 4 t -j l . SEMI-ANNUAL RADI0 ACTIVE EFFLUENT RELEASE REPORT July'. December 1990 / I i a Public Service Company of Colorado Fort Sti Vrain -Nuclear Generating Station -February, 1991 i 3 I
., I, -1.0
SUMMARY
This report --summarizes radiological effluent released from 16e_ Fort St. Vrain Nuclear Generating Station for the period of July through December,-1990. This.information is provided pursuant. to the-requirements of Sections _7.5.1.e,-8.1.2.d. e and j, 8.1.3.e-and f,-. and 8.2.1.h.1 of the Fort St. Vrain Technical Specifications, This report uses the reporting format recommended by Regulatory Guide 1.21 as well as the requirements of the aforementioned sections of our_ Technical. Specifications. The following; tables with a supplemental information.section are included _with this. report: Table -Description 1 A-' Gaseous Effluents - Summation of All Releases IC Gaseous ~ Effluents - Ground-Level Releases ' 2A - Liquid Effluents - Summation of All Releases
- 28 Liquid Cffluents 3:
Solid Waste and Irradiated Fuel Shipments 4A'. Hourly Meteorological Data Piease-note that Table IB (of Reoulatory Guide 1.21) has been omitted from this report because all of our gaseous effluents _are assumed-to be ground-lesel releases as opposed to being elevated' releases. Fort St. Vrain Technical. Specifications apply exclusively ~ to the - following radionuclides: Kr-87, Kr-88,_Xe-133,1Xe-133m, Xe-135. ~and Xe-138 for gaseous emissions and Mn-54, Fe-59, Co-58, Co-60, Zn-65, Mo-99,.Cs-134, Cs-137, Ce-141, and Ce-144 for particulate. emissions.' This list does: not mean that only these nuclides are considered. !Other gamma emitting nuclides that'are identifiable,_ together with' those of the above nuclides, are-analyzed and-included in this report. Sample activities-- that' are less than the detection capabilities of -_our equipment _are-entered-in.this-report using the -value' resulting from the calculation of-the lower limit' of detection -(LLD) or minimum detectableactivity_(MDA). This re'sults in reporting. upper limit values that are in excess of true activities. l - b
T_he-lower limit of detection (LLD), for the purpose of this report, is defined as the smallest concentration of radioactive material in a sample that will yield a net count, above the system background, that will be detected with a 95"4 probability of being correct and only a 1 5's ' probability of falsely concluding that a blank observation represents a real signal. The LLD values specified in our Technical - Specifications are as follows: Liquid Principle Gamma Emitters 5.00E-07 uCi/ml 01ssolved Noble Gases 1.00E-05 pCi/mi 1 Tritium
- 1. 00E-051C 1,'21 Iodine-131 1.00E-06 uC1/mi f
Gross. Alpha-1.00E-07 pC1/ml Strontium-89,90(Composite) 5.00E-08 uti/mi Gaseous Principle Gamma Emitters 1.00E-04 pCi/cc.
- (Gas)
Principle Gamma Emitters 1.00E-11 pCi/cc .(Particulate) Tritium;(Gas) -1.00E-06 pCi/cc l Iodine l31-(Charcoal) 1.00E-12 pCi/cc Gross Alpha-(Particulate)- -1.00E-11 uCi/cc - Strontium-89, _90 (Particulate) 1.00E-11 uti/cc - Gross-Beta (Particulate) 1.00E-11 uC1/cc Where applicable, we have.li sted - '.'less-than" values for those nuclides listed specifically in our Technical Specifications. These "less-than", values were calculated using.the-observed LLD values and th'e total ~ volume of the media. - The "less-than" values were not -included in the total values for the pathway. i
a The' percent of Technical Specification' limit on Table 1A is blank in some cases because this value could not be calculated from data which were at' or below the. minimum detectable activity. On Table IC, the continuous release mode values are not reported because this release. pathway is the same as the batch mode, All other blanks on Tables 1C and 2B occur because no LLD values for these nuclides are required to be calculated per Technical Specifications. There has been some confusion in the past as to the total volume of water used for dilution of radioactive liquid effluent. All average diluted concentrations are based on the activity at the unrestricted area. Although this effluent could eventually reach one of two ~ ivers (St. Vrain Creek and South-Platte River) which converge r approximately one and one half miles downstream of the plant, no further dilutions were assumed. Additional discussion on river flow is^ contained-in.section 4a of the Supplemental Information Section. There were no abnormal or unplanned radioactive liquid waste releases made from the liquid Waste System 62 or the Reactor Building Sump during this reporting period. There-were no abnormal or' unplanned radioactive gas waste releases made'during this reporting period. There _were six shipments of radioactive material transported for disposal during this reporting period.' The: shipments consisted of dry _ compressible waste and contaminated equipment. A detailed report' of_the shipments can be found on Table 3. There have been no major design changes to the radioactive waste -systems reviewed by the Plant Operations and Review ~ Committee (PORC) 'dering the period covered by this report. During the:-second half of 1990 there was one minor change made to-both the liauid radio' active waste and the gaseous radioactive waste -systems. This change was made through Change Notice CN-2956 which permanently removed various helium regeneration ~ equipment to ' allow-3 ~for' a -new fuel _ loading port..The change to the liquid waste system primarily involved the removal of drainage to the system from the Regeneration Knockout. Drum (T-2301), the Helium. Purification Coolers (E-2301 and E-2302), and the Regeneration Compressor-Containment Tank (T-2303) which have all been permanently removed. The change to the gaseous-w?ste system primarily involves the removal of. input of j. off gas from the _ helium purification system of which all related equipment has_been permanently removed. n l.
k Both-loffthese changes are minor in nature and aid to reduce the-potential load on the gaseous and liquid radioactive waste systems. There; were no changes to _ the. Process Control Program, (SUSMAP-3),- ' Issue-2, effective date November 13, 1984, during this reporting
- period,
' Changes to the Of f site Dose Calculation Manual (0DCM), SUSMAP-2 whichi vere described in the. previous semi-annual report were incorporated into Issue-18 _during: this Lreporting period. No changes were initiated during-this reporting period. -On _ August 14,. 1989, Amendment No. 71 to the FSV Technical. -Specifications became effective which revised ELCO-8.1.1 9, deleting =theifrequirementEto report' gaseous effluent activity monitors or flow instruments inoperable ~over thirty days in_this Semi-Annual Effluent Report. The reporting-requirements yere changed to require a Special -Report-if.-lessithan the minimum required -gaseous effluent activity monitors are operable for over'seven days. It-has not been necessary1 rto issue any _such Special Reports since the requirement-became
- effective.
'There 'were no: liquid effluent activity monitors or their associated-acorders:3noperableifor more than 30-days this reporting period. r Radiation' Edoses resulting from the release of-radioactive liquid and gas effluents from Fort St. Vrain durieg -1990 fare ' reported below. Radiation doses are: calculated =in accordance with the. Fort St. Vrain- ~Offsite iDose Calculation: Manual ;(SUSMAP-2), 'which is based 'o n ~ NUREG-0472,. " Radiological -Effluent Technical Specifications for PWR's", NUREG-0133, " Preparation,of Radiological Effluent Technical-
- Specifications! for Nuclear Power-Plants", and other inputs from the'
- Nuclear Regulatory Commis,sion.
m l ___m_
I i Doses are calculated for a hypothetical " maximum" individual present at all times of the year at the Exclusion Area Boundary (EAB) in the sector in.which all of the activity is calculated to have been released. -The following exposure rates are for the 1990 calendar year. Liquid - 10CFR50 Whole Body 1.32E-02 mrem Bone 9.07E-03 mrem Liver 1.75E-02 mrem Thyroid 4.97E-03 mrem Kidney 9.20E-03 mrem Lung =6.37E-03 mrem .GI 6.38E-03 mrem Gaseous - 10CFR50 c Noble Gas Gamma 0.00E+00 mrad-d Beta-0.00E+00 mrad Iodine,'Particulates, Tritium Adult Whole' Body 4.54E-02 mrem Organ _(maximum)- 4.54E-02 mrem Bone-0.00E+00 mrem Teen < Whole Body 15.20E-02 mrem: Organ (max < mum) 5.20E-02 mrem-Bone O.00E+00 mrem -Child + Whole. Body 7.46E-02 mrem- . Organ (maximum)_ 7.46E-02 mrem Bone-0,00E+00 mrem Infant <Whole Body 5.81E-02 mrem Organ (maximum)- 5.81E-02 mrem Bone- -0.00E+00 mrem Gaseous - 10CFR20-Iodine,' Particulates, Tritium 1.32E+02 mrem-All doses are within acceptable limits in accordance with 10CFR20 and 10CFR50. L.
4 It is felt that use of actual dilution factors is more accu ~ rate than the annual average X/Q of 1.37E-06 s/m' as previously reported in the Final -Safety Analysis Report. Beginning in 1987, dilution factors for actual periods of release were used to calculate doses from gaseous effluent releases. As mentioned earlier, the doses reported here are to the hypothetical most exposed member of the public. In order to assess the actual dose to the~ likely most exposed member of the public due to their activities inside the site boundary, the following assumptions are made: 1) Residents living within the site boundary are at home during-50% of gaseous effluent releases. 2)_ As game ' fishing is not prevalent within the. site boundary, fish consumption is 25% of the adult fish consumption of 21 kg/yr as listed in SUSMAP-2, 3) All other assumptions of SUSMAP-2 remain valid. l The doses - demonstrate conformance with the exposure limit in 40CFR, Part 190 of 25 mrem to the total body, 75 mrem to the thyroid, and 25 mrem to any organ. To show conformance with 40CFR190= subpart B, the total curies of Krypton-85 released from Fort St. Vrain is less than 2.65E-01 Ci. The 29.78' key iodine-129 peak is below the minimum detectable energy of our detectors. We-assume that no iodine-129 (fission yield of-0.574 percent) hasi been released because no measurable amount of- -_ iodine-131'(fission yield of 2.78 percent) was detected during-this reporting period. The total release value of gross alpha is listed in Table 2A Section D._ An annual' land use census-is' performed as part of the Fort St. Vrain Radiological Environmental Monitoring Program. Changes made to I environmental sampling locations as a result of-the_ annual land use census are reported in the; annual' ; Radiological Environmental Monitoring Program report. -l
Effluent and Waste Disposal Semiannual Report Supplemental Information i Faci _lity Fort St. Vrain Nuclear Generating Station Licensee Public Service Company of Colorado 'l 1. Regulatory limits All results of _ radioactivity analyses of gaseous and liquid effluent are used in accordance with the mathodology and parameters listed in the Offsite Dose Calculation Manual (SUSMAP-2) to assure that the concentrations at the point -of release are maintained within the limits set forth in the Technical Specifications, These limits will ensure the quantity of radioactive effluent released from the plant is maintained as low as reasonably achievable and in any event within the limits of 10CFR20 and in accordance with 10CFR50. The air. dose due to noble gases released in gaseous effluent at the-unrestricted area is limited to: a) 5 millirads gamma and 10 millirads beta during any calendar quarter, and, b)- 10 millirads gamma and 20 millirads beta during any calendar year. The doso to. a member of the public due to I-131, tritium, and radioactive particulates with half-lives longer.than eight days .in gaseous effluents will be limited to: a) 7.5 millirems to any organ during any calendar quarter,
- and, b) 15 millirems-to any organ during any calendar. year.
The dose rate due to radioactive gaseous effluent is limited to -the following: .a) For noble gases, less than or equal to 500 millirems per year to the total body and less than or.-equal to 3000 millirems per year to the skin, and, b) For.- I-131, tritium, and radioactive particulates with. half-lives greater than eight days, less than or equal to 1500 millirems per year to any organ...
.The dose or dose commitment to a member of the public from radioactive materials in liquid effluents released to unrestricted areas are limited as follows: a) During any calendar quarter to less than or equal to 1.5 millirem to the total body and to less than or equal to 5 millirems to any organ, and, b) During any calendar year to less than or equal to 3 millirems to the total body and to less than or equal to 10 millirems to any-organ. 2, Maximum Permissible Concentrations All Maximum Permissible Concentration (MPC) values used in determining allowable release rates from the gas waste holdup system and the liquid weste system are listed in Table II, Columns 1 and 2, respectively, of Appendix B to 10CFR20. In addition, for the MPC of dissolved noble gases in liquid effluent the value of 2.00E-04 microcuries per milliliter was used. For the purposes of calculating allowable releast rates, the MPC for halogens and particulates with half-lives longer than eight days will be reduced by a f actor of 700 from their_ listed value in Table II, Column 1, of Appendix B to 10CFR20. 3. Average Energy The average energy (E-Bar) of the radionuclide mixture-in releases _of fission and activation gases is not calculated or used at-this facility. 4. Measurements and approximations of Total Radioactivity 'a)- Fission and Activation Gases Batch releases from the gas waste _ holdup system are performed after sampling and analyses for.noole gases and -tritium. These analytical results are used along with atmospheric oiiution factors to determine tha allowable release rate. Gas is released on a continu: 9s basis through a gas' waste header which is monitored by a no'ule-gas monitor -and an iodine monitor. In the event of high activity in the continuous release, header control functions are -initiated -which divert the gas to the-gas-waste holdup system. 9 i
All: radioactive gases are released to the Reacter Building-exhaust ventilation system which has a flow rate of approximately 30,000 cubic feet per minute. The full-flow [ of this exhaust is directed through high efficiency particulate filters (HEPA) and activated charcoal beds prior ~ to the release to the environment. Downstream of _the activated charcoal beds the gas stream radioactivity is continuously monitored and recorded by noble gas monitors, particulate monitors, and iodine monitors. b) Iodines For gaseous iodine, the Reactor Building exhaust ventilation is'mc 4'ored and recorded on a continuous basis. The 2-inch todin-cartridges used in these monitors are removed from servit. after one week of service and quantitatively analyzed on - a gamma spectroscopy system. The quantity of-radiciodine released during_that period would be calculated based on.the integrated flow'during the collection period. c) Particulates As in the case of iodine discussed in b) above, a 2-inch particulate filter is removed and, analyzed each week. Gross-beta analysis. as well as gamma spectral analyses are . performed to identi_fy and quantify any radionuclides. The quantity of any radionuclides on this filter with half-lives greater than eight days would similarly be correlated to total. flow during the-co'llection period. d). Liquid Effluents-All liquid _ effluent discharged from the' site reaches the unrestricted area at the Goosequil Ditch. From that point the effluent can be diverted to the St. Vrain Creek via the-St. Vrain Slough, or, more commonly diverted to the Goosequil Pond which is approximately one -mile north of-the plant site. 0utfall from the Goosequil. Pond reaches-the-South Platte River. - Both rivers converge.approximately 1.1/2 miles from the plant site. The average stream flow re' ported in section 5a -of this supplemental report is a summation of both rivers and was received-and tabulated from-data _provided by the Colorado Department-of Natural Resources in Greeley, Colorado. l ) -l {
Liquid effluent is released from the site using both a continuous and batch mode. The continuous mode (automatic discharge mode) is used on_ the Turbine Building Sump efflaent where the only expected radionuclide is tritium. This discharge path utilizes a continuous sempler and an ~~ aliquot of this composite sampler is taken three -times per week and analyzed for gross-beta, gross-alpha, tritium, and gamma emitters. Total flow integrators enable us to calculate the total activity released via this. pathway based on composite sample results, Discharge from the Turbine Building Sump is made directly to the unrestricted area with no dilution. The batch release mode 1.s used on the Reactor Building Sump effluent and the liquid waste processing system. The Reactor Building Sump area can hold several hundred thousand gallons of waste water from various sources which could be contaminated. The liquid waste system consists of 2-2000 gallon receivers, 1-2000 gallon monitoring
- tank, and associated. filters and demineralizers.
This _ system is designed to collectz and process contaminated waste water resulting from reactor-and laboratory operations, Prior to each _ liquid -batch release duplicate samples are quantitatively analyzed for their radioactive constituents. These analyses include. gross-beta, gross-alpha, tritium, and gamma spectral analyses. - The results of these analyses, and other gnalyses as dictated by the gross-beta-results, are used to determine the maximum release rate. from the site, -The.-liquid. effluent, normally released at or less than 60 -gallons per-minute -is diluted with cooling tower blowdown, which runs 'at or more than 1100 gallons per minute, _The resulting mixture is sampled during.the-release period -to confirm compliance with regulatory limits. .The liquid effluent from-the batch release mode is monitored continuously by redundant gamma-activity monitors. All tank level - indicating devices, _ flow monitoring and -recording devices, and radiation monitoring equipment are calibrated 'and - maintained' :at scheduled intervals in-accordance with-established procedures, Composite samples from batch -releases and continuous
- releases are analyzed quarterly =for_ Sr-89 and Sr-90.
Composite samples:from batch releases from the liquid waste processing system are= analyzed quarterly for S-35, All sample results. are conservatively. decay-corrected to the start of the composite period..
e) _Overall Errors The -overall error associated with determining the total activity released from the site for both gaseous and liquid effluent is estimated to be 17.3 percent. This value is the ~~ square root of the sum of squares of counting statistics and associated calibration errors, sampling errors, and tank i volume estimates, each considered to be plus or minus 10 percent. 5. Batch Releases a) Liquid l-1 I LNumber of Batch Releases I 93 I ITotallime Period for l l ~ LBatch Releases 1 6.14E+02 HOURS -lMaximumTiide~ Period for l la Batch Release 1 2.60E+01 HOURS j Average Time Feriod for i ~1a Batch Release-l 6.60E+00 HOURS l l Minimum Time Period for l I ja Batch Release I 1.67E+00 HOURS I fAverageStreamFlowOuringl l l Periods of Release of 'l-l l Effluent.into a Flowing l_ -l Istream i 1.47E+0S GPM" l
- Gallons'Per Minute b)-
Gaseous 1 l l l Number of Batch Releases 1 43' -l Total Time Period for l- .LBatch Release-l 1 39E+02_ HOURS 1 IMaximum Time Period for y IBatch Release 6.98E+00 HOURS 4 -l I -l Average 1 3.23E+00 HOURS 1- 'l l - l-l Minimum' i 1.20E+00 HOURS 1 --
~. .J'! t 6,:; Abnormal Releases a) Liquid-i, ll l l~ l Number of Releases 1 0 j l' l-l JTotal' Activity Released i N/A J - b). = Gaseous l. l -l-JNumber of Relaases.- 1 0 [
- l
-l l ITotal Activity Release.f_ l N/A-I a 0 L t i m. ..J.
TABLE 1A EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT 1990 GASEOUS EFFLUENT-SUMMATION OF ALL RELEASES l Unitt l Quarter ! Quarter l Est. Total l l I 3 l 4 l Error. % l l. I I I I A. Fission and activation products i 1. None detected B. Iodine 1. Total iodine-131 l Ci l <1.82E-03 l <1.82E-06 l 1.73E+01 ~ l l I l 1 I I 2. Average release rate for luci/secl <2.30E-07 l <2.31il-07 l period l j. l l L i l l-- l l 3, Percent of technical l l l l l_ specification limit l l l l l L C. -Particulates 1. Particulates with half-lives l C1 1 <1.18E-07 l 1.F2E-07 l 1.73E+01. l. > 8 days. l-l l l l- ~ I l .l_._ -I I 2. Average release rate for liit1/secl <1.49E-08 l <1.91E-08;l .. pe ri od l l l l l l' l-l 3. Percent of technical. l l _l l specification limit l _ l l-l l l-l- -l-4. Gross alpha radioactivity l Ci-l <3.03E-08-l <3.48E-08 l -l. l -~ I _l 0 Tritium l; ij 1. -Total: release l-Ci l-3.61E-02-l 2.84E-02'l 1.73E+01 l D I l l l l l 2. ~ Average release rate for-luci/secl 4.54E-03-l -3.9E-03 l . period: l-l l l l 1 -l ^~l 5.93E-05 I l 3. Percent-of tech, spec. l
- 4 l
7.57E-05 l l-limit l l l l l l l , l
A ?& 4A._ A ..m.a ,+-4+ 44 -4h A. AStA @.,_.im+m,4 34_ .a _aq J$ 2_..e_ .e ,,,E J -m._4 y >a-- y ,a TABLE 1C EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT (1990) -GASEOUS EFFLUENTS--GROUND-LEVEL RELEASE CONTINUOUS MODE BATCH MODE l Released j Unit i l I Quarter 3 l Quarter 4~l l-1 I l_ l I I . Fission gases inrypton-85 I Ci l I 1 <9.88E-01 I <8,68E;0T I I I I i 1 - l I l krypton-85m l Ci ~l l I I l l I I I I I I 7.93E-0T l ~ lkrypton-87 I C1 l l l <7.92E-03 1 6 l I I I l-1 ~ I ikrypton-88 l Ci l l l <1.21E-02 I <1.06E-02 1 l l I I I 1 I l xenon-133 I Ci i l I <1.12E-02 I <9.85E-0Tl - I I I I I I I lxenon-135 I Ci l I i<3.32E-03j<2.926-031
- l l _ Ci l l
i - I I l I l-i l lxenon-135m I ,li l l i l ~ I I lxenon-138 l Ci l-l i <4.29E-D2 l <3.77E-02~l l l i I.. - l -i l' lxenon-133m 1 Ci l i ~ l <2.84E-02.1 <2.49E-02 l l l l-I l l I
- lxenon-131m.
I Ci l i l I l l l-1 I .I l-i= ~170tal for period
- l - Ci I
. I l I I -l I l l I I IL Iodines- -liodine-131 i Ci l-l -- I <1.83E-10-1 <1.61E-10 l l- -l i I I l-I !! iodine-133 l-Ci l l l . i l l' -1: I l- - 1 - l - l liodi.ne-135' ) C1.1 l l l -l
- 1 ---
1 I l l
- l l-liotal for period *-
-I Ci' l - l l l l- 'l - 11 1 I i I -l- - l l 'o -Total values do not include "<" data 15-
~.. _. -L r ? TAB'.E 10. (Continued) i
- Particulates
!l strontium-89 l-: C1 l l l l -l .l - l i I I i -l lstruntium-90 I ci l l l l l- -l I- _I I .I I I .lcesium-134 l ci i l l l - l I-1 I I I I -Icesium-137 i ; ci l l l l l El I I I I i 1 lbarium-lanthanum-140 .I ci l l l l l - 1 I - l I 1 l l t T P 'T5tal values do not include "<" data, v v e g e y -,.c-., w-~
a -. TABLE 2A EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT 1990 LIQUID EFFLUENT-SUMMATION OF ALL RELEASES l Nuclide l Units l Quarter l Quarter i Est. Total'l l-l l 3 l 4 l Error. % l I I 1,. 1 l l 'A. Fission and activation -products ~1. Total release 105-137 i Ci l 4.29E-06 l 4.29E-06 l 1.73tT61 l l l -- I. -1 I 2. Average diluted luci/mi l 7.78E-12 lI 7.78E-12 l concentration i l i l l l I 3. Percent of l I 3.89E-0Fl 3.89E-0Fl ~ l applicable limit l._ l l l 1. Total release. 10o-60 l Ci l-4.29E-05 l 4.85Rifl 1.73E+01 l l l l l 1 l 2. Average diluted luci/mi l 7.78E-11 1 8.7Y-WI -concentration l l l l l-I l-l 3.- Percent of. I l 2.59E-04 l 2.9aE-05 l applicable limit I 1 l l B. Tritium 1. Total release lH-3 l Ci l 1.67E+00 1 9.71E-01 l 1.73E+01 l l l - - - -- l l l l 2. -Average diluted. luci/ml-l 3.03E-06 l 1.76E-06-l concentration-l l-l l' 3; Percent of-' l l I l I i 1.01E-ul-l 5.87T-02 l applicable limit I -I _l l C. Dissolved and entrained gases-1. None detected
v TABLE 2A (Continued)- 0.- Gross' alpha radioactivity 0 i l 5.46E73 l <2.04F05 l 1.73U01 i 1. Total release l Ci I .-._ l - I. I l - E. ' Volume of waste released (prior to dilution) l Liters l 1.56E+07 l 4.92E+06 l 1.00E+01 l 1 I I I I . F. Volume of dilution water used during release l Liters l7.52E+08 1 5.52E+08 l.l.00E+01 'l I l - l ._ I 'l ) 1 s
TARLE 2B EFFLUENT AND WASTE DISPOSAL SEMIANNUAL REPORT (1990) LIQUID EFFLUENTS CONTINUOUS MODE BATCH MODE INuclides Released l Unit l Quarter 3 I Quar'er 4 l Quarter 3 l Quarter 4 l l l l l _.I I l l <4.24E-05 l <9.1SE-06 l <1.15E-05 l <3.83E-06 l strontium-89 l Ci l l 1 1 l l strontium-90 i Ci l.<4.02E-05 l <7.07E-06 l 9.65F0Tl <2.97E-06 T l l 1 I I -- l l l l <4.72E-04 l <1.23E-04 l (9.54E-O fl_<5.62E-05 l- _ cesium-134 l Ci l l i I I I I I l cesium-137 l C1 l <4.54E-04 l <1.19E-04 l <8.4fE-05 i <5.25E-05 l l-I I I I I I l iodine-131 l Ci l <3.78E-04 1%.86E-05 l <7.62E-05~ l <4.41E-0TI 1. l-l l I I l ,l cobalt-58 l C1 l <4.37E-04 l <1.14E-04 l <8.83E-05 1 <5 ITE-05 l -l I l l I i l <4.72E-04 l <1.23E-04 1 <1.26E-04 l'<5.50E-0 .I cobalt-fD l C1 l 1 l l I i l-l l iron-59 l C1 l <7.77E-04 l <2.03E-04 l <1.67E-04 I <9.08E-05 l 'l l_ l i l ~ l I _l zinc-65 l Ci i <1.03E-03 l <2.69E-04 i <2.08E-04 l <1.20E-04 l 'l l_ l l l i I -l mangar.e se-54
- 1. C i l <4.05E-04 1 <1.06E-04 I <7.72E-05 l <4.73E-05 I I
I I I l 1 l l chromium-51 l Ci l l l l 1 l l l l I l ll-zirconium-niobium-95 i C1 l l l l l l l I I I I l molybdenum-99, l _ Ci_ l <2.87E-03 l <7.47E-04 l <5.78E-04 I <3.35E-04 l l 1 I i l 1 I u -l technetium-99m l-C1 l l' l l l 1 I I I I l-I
- l barium-}anthanum-140 l
Ci i l. l l l l-1 I - i-l I l-gl -cerium-141 l Ci l <6.58E-04 l <T72E-04 l <1.33E-04 l <7.69E-05 I I I I I I I I I: tritium _ l Ci l 9.60E-03 l 2.94E-03 l 1.66E+00 l 9.68E-01 I sl= l- -l l I I I l< sulfur-35 i Ci l <2.34E-03 l <2.58E-04 l <4.73E-04 l <1.91E-04 l l~ l l l l l l l-
- Total for period (above)"l Ci l
9.60E-03 l 2.94E-03 l 1.66E+00 l 9.68E-01 1 1 l l l l l l' l' o Total: values do not include "<" data - -
TABLE 2B (Continued) Continuous Mode Batch Mode l xencn-Th. 1 C1 l <1.30E-03-t <3.40E-04 l <2.63E-04 1 <1.52E-04 l l 1 l I l I i l xenon l Ci l <3.51E-f Fl <9.11E-0TI <7.10E-05 l <4.11E-05 l l I I l l l l Total values do not include "<" data
TABLE 3 EFFLUENT AND WASTE DISPOSAL $EMIANNUAL REPORT (1990) SOLIO WA$TE AND 1RRA01A1ED FUL. $HIPMENTS A. SOLIO WASTE $ HIPPED OFF$1TE FOR BURIAL OR 015POSAL (Not irradiated fuel) l 1. Type of waste l Unit l 6-ionth i Est. Total l l-l l Period i Error. % l 1 -l l l l l I I I i 1 a Process waste, i.e., I m' l l l spent resins, filter i Ci I 0.00E+00 l 0.00E+00 I sludges, evaporator l 1 l l 1 bottoms, etc. l l l l l__ - 1 l_ l _I I I I I I l b. Dry' active waste i.e., I m' l 4.80E+01 l l l dry compressible waste, I Ci l 1.10E400 l 1.00E+01 l I contaminated equip. etc. l l l l l l_- l 1 l I -- 1 I l l l c. Irradiated components, l m' l 0.00E+00 1 0.00E400 l l control rods, etc. l Ci l l l l:- l 1. -I l I I I I l l d. Other(describe) I m' l 0.00E+00 l 0.00E400 l l l Ci l i l I-1 I I E. Estimateofmajornuclidecomposition(bytypeofwaste) Type of Waste (Isotope'fContenti ~ Curies l Error % l l .L % a. _ Process waste -._1 l 2 1 4 Dr ~ y~ active waste 3H 61% G IE-01 b. $$7e ' 1R -TTIF01 ~ I 355 10% Eli72W1 _[ i 60Co 2. W~ 2.7ECW2 ~ ~-c... Irradiated Compo-nents d. Dthey.
3. Solid Waste Disposition Number of Type of Shipments Container Mode of Transportation Destination 1 Strong Truck on Highway $EG, Inc. Tight 1560 Bear Creek Rd. Containers Oak Ridge. fN 5 Strong Truck on Highway Ramp Industries ~ 'ight 1127 W. 46th Ave. Ct,3taine rs Denver, CO 80211 B. IRRA01ATED FUEL SHIPMENTS (Disposition) Number of_ Shipments Mode of Transportation Destination .None C. SOLIDIFICATION AGENTS OR ABSORPTION MEDIA USED None .I' i i 1...... . _ = _
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a w ilOURS-AT EAcil WIND' SPEED AND DIRECTION iPER10d OF RECORD: Jul-Sop -- 1990 i _ STABILITY _CIASS: A_ : ELEVATION:-
- Direction 1 : 4 -7_ Wind Speed (mph)- at. 1-Om Level TOTAL Wind 8 - 12 13 - 18 19 - 24
->24-N 7.00 -3.50 1.00 0,.00 0.00 0.00 11.50 NNE- - 0.00 0.00-0.00 0.00 0.00 0.00 0.00 a NE 3.25-0.00 0.00 0.00-0.00 0,00 0.25 -ENE 0.00 0.50 0.00 0.00 0.00 0.00 -0.50 E' O.50 0.00 0L.00 0.00 0.00 -0.00 0.50 F0E 0.50 o0.25 0.25 0.00 0.00 0.00 1.00 .SE 0.00 0.00 0.00
- 0.00 0.00 0.00 0.00 SnE 0.25 0.75 0.00, 0.00 0.00 0.00
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0.75 0.25 0.25 0.00 0.00 1.75 -SSW- ' O.7 5 - 10.50 . 0. 10 0 0.25 0.00 0.00-1.50 SW~ 0.50 0.25 - 0'.00 0.7G 0.00 0.00 1.50 WSW~ 0.25 0.75 0.50 0.25 0.00 0.00 -1. 7 5 - W. 0.25-0.00-0.00 0.25 0.00_ 0.00 - O '. 5 0 WNK-0.00 .1. 5 0 - 0.00 0.00 0.00 0.00 1.50 NV-. -0.00 0.00-0.25 0.00. 0.00-0.00 70.25 -NNW 0.00 0.00 0.25 0.00 0.00 0,00 0.25-VARIABLE. Oa00- -0.00 0.00> 0.00-0.00-0.00 0.00
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Total- ,10.75- _. 8. 7 5 2.50 1.75 0.00, 0.00 23,75-l Periods!of' calm (hourn):. 13.25 .llouracof minoing data: 0.25 ~ had
i l IlOURS AT EACil WIND SPEED AND DIRECTION PERIOD OF RECORD: Jul-Sop 1990 STABILITY CLASS: B ELEVATION: Wind Wind Speed (mph) at 10m Level TOTAL Direction 1 - 3 4 - 7 8 - 12 13 18 19 - 24 >21 N 0.00 0.00 0.00 0.00 0.00 0.00 0.00 NNE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 NE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ENE O.00 0.00 0.00 0.00 0.00 0.00 0.00 L 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ESE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 S F, 0.00 0.00 0.00 0.00 0.00 0.00 0.00 SSE 0.00 0.00 0.25 0.00 0.00 0.00 0.25 0 0.00 0.50 0.00 0.00 0.00 0.00 0.b0 SSW 0.00 0.00 0.00 0.00 0.00 0.00 0.00 SW 0.00 0.00 0.00 0.00 0.00 0.00 0.00 WSW 0.00 0.00 0.00 0.00 0.00 0.00 0.00 W 0.00 0.00 0.00 0.00 0.00 0.00 0.00 WNW 0.00 0.00 0.00 0.00 0.00 0.00 0.00 NW 0.00 0.00 0.00 0.00 0.00 0.00 0.00 NNW O.JO O.00 0.00 0.00 0.00 0.00 0.00 VARIABLE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 Total 0.00 0.50 0.25 0.00 0.00 0.00 J.75 Periodo of calm (hours) : 0.00 Hourn of mincing data: 0.00 s N e D
. - ~ -. k 1 ilOURS AT EACN WIND SPELJ AND DIRECTION PERIOD 10F' RECORD: 'Jul-Sep:,1990 TSTA53ILITY CLASS: C
- [
ELEVATION: 1 Wind Wind Speed ~ (mph) - a t 10m. Level: TOTAL i
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-j 0 ht 'NNE 0.00 0.00 0.00 0.00 0.00 0.00 0.00-NE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ENE 0.00' O.00 0.00 0.00 0.00 0.00-0.00 y E u0.00 0.00-0.00-0.00 0.00 0.00-0.00 ESE 0.00 0.00
- 0. 00 0.70 0.00 0.00 0.00-e SE 0.00 0.00
.0.00 0.00 0.00 0.00 0.00: SSE .0.00J ~0.00 0.00 0.00 0.00 0.00-0.00. Sc 0.00 0.25 0.00 0.00 0.00 0.00 0.25 .SSW. 0.00 0.25 0.00
- 0. 00 0.00 0.00
'.0. 2 5 - SW- "0.00-0.00; -0.00 0.-00 0.00 0.00 0.001 WSW 0.00 0.00 0.25 0.00 0.00 0.00 0.25 W 0.00 -0.00 0.00 0.00 0.00 0.00 0;00
- WNW:
0.00 0.001 -0.25 0.00 0.00 0.00 0.25
- NW O J2 5-0,00~
0.00 0.00 0.00 0.00 0.25- -l 'NNW . 0. 00; o0.00-0.00 0.00 0.00 0.00 0.00
- VARIABLE' O.001 0.00' O.00 0.00 0.00 0.00 0.00
-i a--------------------.-.-----------------------------.,-, TotalE 0.25-0.75 0.60. O.00 0-00 ~0 00 '3,SO -Periods ofLealm (hours):- 0.00-j Hours of'minaing data: 0.00 .1 ^ i 1 i i p- -.-.,a
.- ~, . -. ~ - - - - _ -. ~. .... ~. l o HOURS AT EAcil WIND SPEED-AND DIRECTION g PERIOD OF RECORD:--Jul-Sop 1990- . STABILITY; CieAS S :. ;D
- ELEVATION:
-Wind Wind Spood. (reph) at 10m Lovel TOTAL' Direction: l' - '4 --- 7 _8 - 12 13 - 18 19-- 24 ->24 d
- I 0.00 0.00 0.00-0.00 J0.00
. 0. 00' O 00 NNE 0 00 0.00 0.00 0.00' O.00 0.00 0.00 'NE' O.00-0.00 0.00 0.00 0.00 0.00 0.00-ENE 0.00 0.00 0.00-0.00 0.00 0.00 0.00 -E 0'.00 0.00 .0.00 0,00 0,00 ~0,00- -0.00 <[ ESE-0.00.4 0.00 0.00 0.25 0.00 .0.00: 0,25 i SE 0.25 0.25 0.25 0.00-0.00 0.00-0.75. f SSE _0.00 0.25 O.00- .0.00 0.00 0.00
- 0.26 i
S O'. 2 5 : - 0.' 0 0 0.50 0.00-0.00 'O.00 0.75; -SSW-0.00' 0: 00 0.00 -0.25 0.00 0.00f 0.25 2 SW- _0.00- ' 0,00-0.00 0.00 -0.00 0.00-0.00 WSW 0.00; -0.25-
- 0. 00-0.00 0.00-0.00-
.0.25 --- W 0.00; 0.25 0.00 .0=00 0.00 0.00-0.25 -WNW. 0.00. 0.'005 0.00 0.00 0.00: - 0.001
- 0. 0 0 ;-
'NW-~ -0.00 0.00-0.00 0.00 0.00 0.00 10.00L !NNW -l0.00__ 0.25 0.00= 0.00 0.00- -0.00 0.25 7 VARIABLE 0'. 00 - - 0 '. 0 0 < 0.00 0.00. 0.00~ 0.00
- 0,00
' To t a l'- 0 ~. 5 0 l'.25
- 0.75 0.50 0.= 0 0 '
0 '. 0 0 ' 3.00 ' Periods f of1' calm ;(hours) : - 0.00-
- 11ours ofLmisoing
- data:-
0.00L = 4' I ~ -u
_7 i
- u
\\ HOURS AT EACil WIND SPEED AND DIRECTION 'i PERIOD =OF RECORD: Jul'-Sop =1990
- SThB_ILITY1 CLASS :
E ELEVATION: = r
- Wi nd -
. Wind Spood (mph) at.10m Lovel TOTAL-Direction-1 - 73 4 -- -- 7 8 --12 13 --18 19 > 24 4 t -N. -1.00 5.25 2.50 0.00 0.00 0.00 _8.75 NNE 0.00 -0.00-0.00 0.00 0.00 0.00 0.00 NE 0.25 0.75 0.00 0.00 -0.00 0.00 1.00 ENE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 E 0.25 0.50 0.00 0.00 0.00 0.00: 0.75 .ESE 0.25 0,25' O.00 0.00 0.00 0.00-0.50 .E' O.50 -0.00 .0.00 -0.00 0 00 0.00 0'.50 . ' O', E - O'.25 0.25 0.25-0.00 0.00 0.00= 0.75 o' S .0.00 20.50' O.50 -0. 0 0 - 0.00 0.00 ' 1. 00. SSW 0.00 0.50 0.50 0.00 0.00-0.00 -1.00 -SW' 0 00 10.25 10.25' 10.00 0.00 0.00 0.50 WSW 0.00 0.00 0.00 0.00 0.00 - 0.00 0.00-W 0.00 0.00 0.00-0.00 0.00' O.00 0.00 ~WNW 0.25 .0.75. 0.25 0.00 0.00 0.00; 3.25 ~ NW. 10.00 10.00. 0.50 0;00 0.00 0.00-0. 5 0 -- NNW -- 0.00 0 =. 7 5 -0.25 0.00-0.00 0.00-1.00 VARIABLE; -0.00 0.00 0.00-0,00-0.00- .0.00 0.00 Total. .2.75 9.75 5.00- - 0. '; 0 = 0.00 0.00 17.50 j Periodstof calm 1(houral:~ 1.50. J ' Hours.offmianing' data: 0.00 t, a + b 1 1 + m .,-r.,
- evm.
,",-w r--
~, _... ~...... - -. _.m_... m.._.. .c--- =IlOURS AT-EACll WIND-SPEED AND DIRECTION-l -PERIOD OF RECORD: Jul-Sep 1990 STABILITY CLASS: F j ) -ELEVATIONt gj (Wind Wind Speed - (mph) at 10m. Level TOTAL = Di rection 1-- 3 4 - 12 33 - 18 19 " 24 >24 N-0.25 0.~25 0.00 0.00 0.00 0.00 0.50' NNE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 t 9 NE 0.00 0.00 0.00 0.00 0.00, 0.00 0.00 ENE 0.25 0.50 0.00 0.00 0.00 0.00 -0.75 E 0.25-- 10.25 _0.00 0.00 -0.00 0.00' O.50 -ESE 0.00~ 0.00 0.00-0.00 H0.00 'O.00 0.00 SE 0'.00 0.00 0.00' O.00 1D.00 0.00 0.00 SSE 0.00-o0.00 0.00 0.00 0.00-0.00; 0.00 S 0.00-0.00-0.00 0.00 0.00-0.00 0.00 .SSW -0.00 10 ~. 0 0 0.00.- 0.00 0.00 0.00~ 0.00 ~ SW 0.25: 0.~ 0 0 0.00 0.00 0,.00 0.00 0.25 WSW. -0.00 0.75 0.00 0.00 0.'00 -0.00 '0.75 W 0.50-0-.00 0.00 0.00 0.00 0.00-0.50 WNW-0.^9 0.00 0.01 0,00. 0.00 '0.00 0.00 NW-0;00-0.25 0.00 0. iO O 0.00- -0,00 0.25. NNW 0.00 0,50-0.00 0.00 0.00. 0.00-0.50
- VARIABLE
-0.00 -0.00 0.00 0.00 0.00 0.00 0.00 Total. 1.'50 2.50 0.00? 10.00 0.00 0.00 4.00 Periods of calm (houro):- 0' 00 ~ 'lioura:of missing data:- 0.00 b i t r L l-~ l ('. a
+. .1 i i HOURS AT, EACli WIND SPEED - AND D1RECTION PERIOD OFfRECORD: 1Jul-Sep 1990 STABILITYfCLASS: G LELEVATION: i Wind Wind Speed (mph) _at 10m bevel . TOTAL Direction 1-3 4 7 8 12 13,- 18 '19 >24-L.00 0.00 0.00 0.00 0.501 -N -0.50-0.00 0 NNE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 NE 0.00-0.00 0.00 0.00 0.00 0.00 0.00 ENE 0.00 0.00-0.00 0.00 0.00 0.00 0.00 E 0.00 -0.00-0.00 0.00-0.00 0 00-0.00: ES E -- 0.00 0.00 0.00. .0.00 0.00 0.00 0.00 SE 0.00 0.00 0.00 0.00 0.00 .0.00 0.00 SSE 0.00 -0. 00. 0.00 0.00 0.00 0.00 0.00_ S 0.25' 'O.00 0.00 -0.00 -0.00 -0.00 0.25 SSW 0.00_ 0.00 -0.00 10.00-0.00' -0.00 -0.00 SW 0.25-0-.25 0.00-0.00 0.00 0.00 - 0.50 WSW 0.00 0.00 0.00 0.00 0.00 0.00 -0.00 -W-0.00-0.00 0.75 0.00 .0.00 -~0.00 0.75 WNW-. 0.00 .0.25 0.50 0.00 - 0.00- 'O.00 '0.75 HNW - 0.25 0.00 0.00. 0.00 -0.00 0.00 0.25. NNW 0.00' O.25 0.00 0.00 0.00 0.00 0.25 LVARIABLE-0.00 0.00 0.00 0.00 0.00- .0,00 0.00 Totali 1.25-0.'75 1.25~ 0.00-0.00 0.00 3.25
- Periodo of calm (houro):
0.00 llours of minning' data:- 0.00. t 4 't d d
.. -... ~. - ~., .t
- llOURS-AT EACH-WIND' SPEED AND' DIRECTION'
~ i 5 LPERIOD OF R'ECORD: Oct-Dec 3990 .8TABILITT CLASS:- A- ? ELEVATION - <Windi Wind Speed.(mph) at 10m Level TOTAL
- Direction 1-3 4-7 8 s-12 13 - 18
.19 --24 >24 1 -N: -0.00-0.00 0.00-0.00 0.00 0.00 0.00 -NNE 0.00 0.00 0.00 0.00 0.00 0.00 0.00- ~NE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 ENE 0.00 0.00 0.00 0.00-0.00 0.00 0.00 . F1 0.00 0.00 ~ 0.00 0.00-0.00 0.00 0.00 ESE 0.00 0.00 0.00 0.00 0.00 0.00 0 '. 0 0 ' SE 0.00 .0.00 0.00 0.00 0.'00 0.00 0.00 SSE 0.00-0.00 0.00 0.00 0.00 0.00 0.00 S-0.00 0.00-0.00 0.00 0.00 0.00 0,00: SSW: 0.00 -0.00 0.00 0.00 0.00-0.00 0.00 SW. 0.00 0.00 0.00 0.00 0.00 .0.00 0.00 WSW= 0'00 0.00 0.00 0.00 0.00 0.00 0.00 'W .0.00 10. 0 0-0.00-0.00 0.00 0.00 0.00 TWNW' O.00 0.00 0.00 0.00 0.00 0.00 0.00 NW. 0.00 0.00 0.00 0.00~ 0.00-10.00 0.00 .N NW. 0.001 0.00-0'.00 0.00 0.00 0.00 0.00
- VARI ABLE_;
0.00 0.00 0.00 D0.00 0.00 0.00 0.00 __a________________________.,__________________w_______,__________= l _ Total' O 00 0.00 0.00 0.00 0.00 -0. 00 - 0.00 Periodo of calm-(honra): 0.00: Hourafof: missing-du.a-0.00 e h
IlOORSlAT'EACH WIND: SPEEDLAND' DIRECTION ' PERIOD.0F RECORD: Oct-Dec. 1990 STABILITY CLASS: B-ELEVATION:- - Wind - Wind Speed (mph) at 10m Level TOTAL Direction 1 - 13' 7 8 - 12 ' 13~--18 19 - 24 >24 N ~ 0.00 0.'00 0.00 0.00 0.00 ~ 0.00 -- 0. 0 0. 'NNE 0.00: 0.00 0.00 0.00 0.00 0.00 0.00 NE 0.00 .0. 0 0.~ 0.00 0.00 0.00 0.00 0 00 -ENE 0.00 0.00 0.00 0.00 0.00 0.00 - 0.00 E~ 0.00 0.00 - - 0.00 0.00 0.00-0.00 0.00 ESE 0.00: 0.00 0.00 0.00 0.00-0.00 0.00 SE - 0.00 0.00 0.00 0.00 0.00 0.00 0. 0 0 -. SSE 0.00 - 0.00 0-.00 0.00 0.00 0.00 0.00 -8 0.00~ 0.00-0.00 0.00-0.00 0.00 0.00 SSW --0,00 0;00 0. 0 0 -- 0.00 0.00 0.00 0.00- - l -SW: 0.00= 0.00_ 0.00-0.00 0.00 0.00 0.00 WSW 0.00-0.00 0,00-0.00 0.00 0.00 - 0.00 'W ' 0. 00' O.00: 0.00-0.00 ' O.00; 0.00-0.00. WNW 0;00 . 0.00 - 0.00 0.00 0.00 0.00 0.-00 'NW 0. 0 0.. 0.00 -0. 0 0 - 0.00 - 0.-00 0.00 0.00 - i NNW 0.00' - 0.00 0.00 0.00 0.00 0.00 0.00 VARIABLE-0.00' - 0.00-0.00 0.00 ' O.00 0.00 10.00-Totalk 0.00 0.00 - 0.' 0 0. 0.00 0.00 0.00- - 0.00-Perlods!of calm (houra).: 0.00 Hours of! missing data: -0.00 h t I 1 i. y -y,. c .w.,,w-=.wa._ .r ,..-ar-wx-.- --=r-e-+ w-- -+e--, a v e r-- n w c% f ' * - = *
._. m. -.m _. _ _ _ __ _ _. _ _. _. _ _ _..._ _ _ _. _. _ _ _... _. -. _ _ _ _ N llOUR8 AT'EACll WIND SPEED AND DIRECTION PERIOD Ol' RECORD'. Oct-Dec 1990 STABILITY CLASS: C ELEVATION: j e < Wind. Wind Spood (mph) at 10m-Lovel TOTAL Direction 1-3 4-7 8 - 12 13 - 18 19 - 24 >24 N 0.00 0.00 0.00 0.00 0.'06 0.00 0.00-NNE 0.00' O.00 0.00 0.00 0.00 0.00 0.00- .NE --0.00 0.00 0.00. 0.00 0.00 0.00 0.00: -ENE 0.00 0.00-0.00 0.00-- 0.00 0.00 0.00- -E 0.00 0.00-0.00 0.00 0.00 0.00-0.00 ESE 0.00 0.00 0.00 0.00 0.00 0.00 0.00 S E ~- .0.00 0.00 0.00 0.00 0.00 0,00 0.00 SSE 0.00. 0.00 0.00 0.00 0.00 0.00 0.00 _S-0.00-0.00 0.00 .0. 0 0 - _0.00-0.00 -0.00 -SSW 0.00 0.00 0.00 0.00-0.00-0.00-0.00 -SW 0.00 0.- 0 0 - 0.00-0.00 0.00 0.00 ,0,00 WSW 0.00 0.00:_ 0.00 0.00 'O.00 0.00 0.00 W 'O.00 0.00 0;00 0.00 -0.00 0.00 0.00 WNW-0.00 0.00 '0.00 0.00 10. 0 0-0.00 0.00 NW. '0.00 0 ~00 0.00 0.00 0.00 0.00 0.00-U .. 3 - NNW 0.00 0.00 0.00 0.00' O.00 0.00 -0.00 JVARIABLE 0.00 0.00 0.00 0.00 -0.00 0.00 -0.00 ____,,____,________________._____7______._________,._____________ Total. 0.00 0.00-0.00-0.00 0.00 0.00 0.00 '- Periods of : calm -(hours).: 0.00-llours oftminning data: 0.00 'b I 4 P' l ., ~. -.. _,.. _-,.~.
m' ' 2 HOURSsAT EACll WIND SPEED AND DIRECTION -PERIODjOF RECORD:iOct-Dec-1990 ~ STABILITY CLASS:' D m ELEVATION: r IWind Wind Speed (mph) at ~ 10m Level TOTAL: 3 7 8'- 12 13 19 - 24 >24 ' Direction- -1 .N 0.00' O 00. 0.00 0.00 0.00 0.00' O. 0 0 -- a 'NNE 0.00' . 0.00 0.00-0.00: 0.00' O.00 0.00 =NE 0.00 0000 0.00 0.00 -0.00 0.00-0.00-ENE 0.00 0.00 0.00' -0. 10 0 0.-' 0 0 0.00_ 0.00 E 0.00 10.00= - 0.00 0.00 0.00. 0.00-0.00 -ESE 0.00 0.00 0.00 0.00 0'.00' O.00 0.00 SE! 0.00 0.00 0.00 0.00 0.00 0.00 -0.00 -8SL, .0.00 0.00-0.25 0.00 0.00 0.00 0.25-8: 0.00 0.00-o0.00 0.00 - 0.00: -0.00 0.00 .SSW. 0.00-0.25, 0.25 0.00-0.00 0.00 0,50- -SW-0.00 .0;00 0.00 0.00 0.00 -0.00 '0.00 WSW-0.00. o0.00'- 0.00 0.00-- 0.00 0.00 0.00 W .0.00: 0.00 ~0.00 0.00: 0.001 0.00 .0.00 WNW
- 0;00;
- O'.004 0.00= -0.00 -0.00-. 0.' 0 0_ -0.00 <NW O'.00 -0.00 0.00 0.00-0.00-0.00. 0.00-1 NNW - 0. 0 0 -. 0.00 0.00 0.00 0.00 0.00 0.00
- VARIABLE-0.00' 0.00 o0.00:
0.00 - 0.00 0.00 - 0.10 0-J-------------- au----------------------------------- Total? 0.00: 0.25 0.50= 0.001 'O. 010 - 0. 0 0. 0.75 'Pe'riods of calm - (hours) : 0.00 ! Hours _.of,minaing data:' O.00-1 + .~'_ yg t- -M*rh j Txr a-y-9 agw g =-gtweg. ge.-ww.ry.wy9-tre9-9, gy py eW-ce-g--g-: q-ya-g.,e v-y7-- <e
..I HOURSLAT:EACH:WINDTSPEED AND DIRECTION-2 i PERIOD _ : OF --_ RECORD : Oct Dec.'1990' STABILITY. CLASS: E' ELEVATION: _ Windi Wind Speed (mph) at 10m.Lovel iDirection 1--.- 3 4 - 7: 8 12 13 .18-19 - 24 >24- ' TOTAL .'N. - 7. 50. 8.25 2.00'- 0.50. 0.00' O.00 118.25 NNE' O.00; 0.00 0.00 0.00 0.00 0.00 0.00 ~ N E _- 0;25 0.00-- 0'.00 0.00 0 ~. 0 0 0.' 0 0.
- 0. 2 5 ~
'ENE' O.000 0.00 0.00 0.00 0.00 - 0.00 0.00 E 'O.25. 0.00 -0.00 0.00 0.00 0.00 0.25 ESE- -0.00: 0.50-0.00 0.00 0.00~ 0.00 0.50
- - S E _
0.75 0.75: 0.00 -0.00 0.00-0.00' 1.50-SSE: 0.75 -0.75 0.25 - 0. 00 :
- 0. 00
- 0.00 1.75. 2S 0.25 10.00 -0.50 0.00 0.00 0.00 - O '. 7 5 - n i SSW 20.00-0.00 .0.00' O.~ 0 0 -0.00 0.00 0.00-SW > 0 ', 2 5 -. 0.50; 0.00 0.00 0.00 0.00 0;75 L-WSW 0.00 -0.50' 0 25 0.00 - 0.00 0.00 .0.75 -J 'Wi ..' O. 7 57 0.00 0.00 0.00 0.00. 0.00 -0.75 WNW 0.'00 - 0.25 1.00 0.25- -0.00 0.00 1.50' NW -0.00: 0.25-0.25 0.00 0.'00 0.00-0150 NNW -0.75 -- 0~. 0 0 0.00-0.00 0.00 0.00-0.75: VARIABLE. - 0.' 0 0. 0.' 0 0 ' 0.00 0.00 - 0.00- - 0.00-0.00-q ___ u Total- .11;50-11.75 -4.25 0.75 0.00-0.00' 28.25-Periods ofocalm (hours ) :' 1.00 .HoursTof missing ~ data: 0.00 - y. ~ f
- I s
n u w, .+s ~,an., e r.-..,,-w ,-e., ,.--.,--g:. c-e~
.-_m 0-HOURS AT EAcil WIND-SPEED AND' DIRECTION'-
- P ERIOD :-lOF_-' R ECOR D : - -Oc t-D e c 1990
- STABILITY-- CLASS ::_.F ELEVATION:- F-Wind Wind Speed (mph) at 10m Lovel- . TOTAL ,. Direction-. _1 - - 4 - ._7 -12 13 - 18 19 - 24 > 24 [ N' 3.50. 3.50. 0.75 0.00 0.00 0.00 - 7. 7 5.- [ NNE' O.00 0.00-0.00 0.00 0.00 -0.00_ 0.00 NE: 0.25-0.00 0.00 0.00 0.00-0.00 0.25 ENE' O.25-0.00 0.00 0.00 0.00 0.00 0.25 E 0.25 0.25-0.00 0.00 0.00 0.00 -0.50 ESE 'O.25 1.25 0.25 0.00 0.00 0.00. 1.75 SE 0.25 l0.00-0.00 -0.00 0.00 0.00 0.25 SSE 0.25 0.00' O.00 '0.00 0.00 0.00 0.25 i S -0.50 0.50-0.00 0.00-0.00 0.00 1.00 ..SSW 0.25 -0.25 0.00 -0.00 0.00 0.00 0.50 SW 0.25 0.25 0.00 0.00 0~.00-0.00 -0.50 ~ WSW-0. 2 5 -- - 0. 0 0. - .0.50 .0.00-0. 0 0.' O.00-0.75 . c LW: 0.75 -- 0. 7 5 - -0.00 .0.00 - 0.' 0_0 0.00 21'.50
- L WNW _
0.25: 0.25. 0.25-0.00-0.00 0.00. 0.75- -NW2 0.75'-- 0.75 ~0.50 -0.00 0.00 0.-00 -2.00-
- NNW
1.00: 0'50 0.00 0.00 0.00 0.-00 1.50-i V ARI ABLE:: 0.00 0.00-0.00
- 0;00 0.00 0.00-
.0.00 __x__.,______ -Total.-
- 0.00~
8.25 2.25 0.00 0.00 - 0.00-19.50 Periods;of' calm (houra): ' O.50-l .tfours.of missing data:_ 0.00 i a I I s 4 P-~e w w
== m-a w-w- e --- s
-i
- 1i 4
L 110URS AT EACll WIND: SPEED
- ND DIRECTION
- PERIOD---OF RECORD
- :Oct4Dec-1990-i;
- STABILITY 1 CLASS:
G ELEVATION:. [ l Kind'- Wind. Speed ( ngh ', at '10m' Level-TOTAL
- Directiorf
- 1 = 3. .4 ' ' 7 8-12 18 19 - 24 >24 i N-1.'75 0.75 -0.75 0,00 0.00- - 0.00 3.25 LNNE 0.00-0.00 0.00 0.00 0.00. 0.00 0.00 ~ NE-0.00 0.00 0.00- - 0.00. 0.00 0.00 0.00
- ENE:
-0.25 -0.00 -0.00 0.00 -0.00-0.00 0.25-E 0. 0 0,- 0,25-0.00 00' O.00 0.00 0.25 ESE 'O.00-
- 0100 0 -. '0 0 0.00 0.00 0.00.
0.00 SE; 0;25 0.00-0.00 0.00-0.00 0.00- '0.25 t 'SSE 0.00 z 0.-2 5 0.- 0 0. - 0.00- .0.00 ' 0.00 0.25
- S
-0. 7 5-0.00- -0.00 0.00 0.00 0.00-
- 0. 7 5~
-SSW 3.75' -0.25 -0.00 10.'00-- '0.00 0.00- -2.0.0-SW-1.25; --1.75 0.25 0.00 0.00 0.00- - 3.' 2 5 WSW' =. 0. 7 5 1.75 0.25 0.00-0.00 0.00 2.75-1; 'W 12.' 0 0 =
- 1.50 0.75-0.60
- 0.' 0 0 0.00. 4.25
- WNW-l'.25.
=0.75 0.50 -0.00 0.00 0.00' -2.50c NW 0.00 0.-25 'O.00 'O 00 0.-00" . 0.00 'O.25- 'NNW 0250 -0.25 l0.00: 0.00 .0.00 0.00 -0.75 VARIABLE 0.00 0.00 0.00-0.00 0.00 0.00 -0.00 -Total. 10.-50 7.75 2.50' -0,00-0-00 --0.00 20.75. Periods of calm =(houra)-: l.00 Hours of m3saing data: 0.00 r } 'I 3e i 1 N f b' I -a }ff IF
- v"
?1 t'T"e* 4 1 "r-
+vr w--4-oi
- T+
--}}