ML20072B661

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Requests Review of Gessar Ii,Section 3.11 in Parallel W/ Current Review of NEDE-24326-1-P, GE Environ Qualification Program. Marked-up Proposed Plan Encl
ML20072B661
Person / Time
Site: 05000447
Issue date: 03/03/1983
From: Sherwood G
GENERAL ELECTRIC CO.
To: Eisenhut D, Eisenhut D
Office of Nuclear Reactor Regulation
References
JNF-012-83, JNF-12-83, MFN-046-83, MFN-46-83, NUDOCS 8303070127
Download: ML20072B661 (73)


Text

{{#Wiki_filter:- GENER AL $ ELECTRIC NUCLEAR POWER SYSTEMS DIVISION GENERAL ELECTRIC COMPANY,175 CURTNER AVE., SAN JOSE. CAUFORNIA 95125 MFN 046-83 MC 682, (408) 925-5040 JNF 012-83 March 3, 1983 U.S. Nuclear Regulatory Commission Office of Nuclear Reactor Regulation Washington, D.C. 20555 Attention: Mr. D.G. Eisenhut, Director Division of Licensing

SUBJECT:

IN THE MATTER OF 238 NUCLEAR ISLAND GENERAL ELECTRIC STANDARD SAFETY ANALYSIS REPORT (GESSAR II) DOCKET NO. STN 50-447 SECTION 3.11 ENVIRONMENTAL DESIGN The purpose of this letter is to request the review of GESSAR II Section 3.11 in parallel with the Staff's current review of the Licensing Topical Report (LTR) NEDE-24326-1-P, " General Electric Environmental Qualification Program." The proposed action plan, recently discussed with the Equipment Qualification Branch, is provided as Attachment No. 1. Since subsection 3.11.2 (Qualification Tests and Analyses) will " track" the LTR and the LTR review is nearing completion, the most effective use of resources is to submit a revised subsection 3.11.2 for Staff review shortly after approval of the LTR (mid-April 1983) with GE identifying any differences between the LTR and subsection 3.11.2. In the interim, GE is providing Attachment No. 2 which is a draft of revised Section 3.11.1, 3.11.4 and 3.11.5 (Environmental Ccnditions, Loss of Ventilation and Estimated Chemical and Radiation Environment, respectively) for staff review. As shown on the action plan, a supplemental safety evaluation report and the corresponding Section 3.11 amendment are anticipated by the end of June 1983. Very truly yours, Glenn G. Sherwood, Manager Nuclear Safety & Licensing Operation Attachments cc: F.J. Miraglia (Without Attachments) D.C. Scaletti -8g P. Shemanski R.J. Wright C.0. Thomas (Without Attachments) L.S. Gifford (Without Attachments) R.M. Ketchel (Without Attachments) 1 8303070127 830303 PDR ADOCK 05000447 A pop

ATTACHMENT NO. 1 PROPOSED GESSAR II SECTION 3.11 ACTION PLAN 1983 . _ March April May' June. i 205 2Ci O EG&G SER APPROVED INPUT ISSUED LTR ISSUED TO EQB RESOLUTION COMPLETE GESSAR II: REV ED REV SED GE QB S SUBSECTIONS SUBSECTION MEETINGS ISSUED 3.11.1, 3.11.4 3.11.2 TO RESOLVE AND AND 3.11.5 DOCKETED DIFFERENCES AMENDMENT DOCKETED FILED NOTES o Subsections 3.11.1, 3.11.4, and 3.11.5 under review by EQB while LTR being reviewed. o GESSAR II subsection 3.11.2 to " track" LTR. GE will identify differences. GESSAR II will utilize R. G.1.3 and 1.4 source terms (are presently o reviewing GESSAR II to give credit for Pool Scrubbing - - SSER scheduled forSeptember1983).

I ATTACHMENT N0. 2 DRAFT OF REVISED GESSAR II SUBSECTIONS 3.11.1, 3.11.4 AND 3.11.5

l x t GESSAR II 22A7007 238 NUCLEAR ISLAND Rev. 5 ~ Q O 2.u.2 ooaufio.uon aesu1es . Applicant to supply. 3.11.4 Loss of Ventilation ~ / / ^ oud rurnine muiltiirwe and/ Al l o u v i s v um u t el :o n[- - " - '.;j' - -cifig ;.....v. ....y m;;; e f s

._nlay/suneius ju-s,

7 nullalng tys-2 anc rs-J of aD ie~.h-4) ( Ka-o, ana au- / ) ay Fuel air,gonaltio ing vouwilawiuy, ano los7 vi i lude 1.ne

unautu3, In =hacrmal environmane=1 ::nditica.

. "' = H V A C 'T.AC) oyo..m. / e f d ,sywi.cm Ior tne control. building and th; c..ii.vmuuntal zyuus-of-JoolyumJ <a Cl::: 1",Il;;tried equipment. [6e otner,vuild uy., =pecial loss of HVAC envivnn==a'y'

.. lie yu. have_J:Lcten Para "a

/ a in ludua... th: wavstu.uucusal ovuwo. "'hc. b;; r ahuring that A in the T ;.ifr L% lv.. ;f !!""" ennditiona avr nem owsmuod m.; n af cafety-_ fo U,e...ug s ic, :ti^ae - Tae'ing a..l d,vuum.nt

  • 4ma O relatad ~ tip.:nt :::p:;dd

-v luss or HVAC enu,ranmoneai dnnai / 9 ^"" i -v. -. d d e-- Rh: r' i an bil.3. / f f s J-i 3 M D'rywell Loss of HVAC/ / / / i /Jt! W ant" E @ pi p ,/ f f J.11.4.2 . Cont &fnment-Loss-of._ EVAC (' / at7o siipply p/ A o l g / AuxiHagi EniltEnrLess of HVAC g J.11. 4..r / P 4;11;euL-te-ey[p,1y.. / / w'L l.1 4 L2,0e1 Build 3.ng.. Loss of HVAC I l ') l N 7 M 9 t-.ta,supp1. j / / / o 3.11-82

Vsf l 0 ( 3.11.4 LOSS OF VENTILATION Environmental conditions resulting from loss of ventilation (HVAC) are presented in Tables 3.11-2 through 3.11-6, where applicable, for Nuclear Island areas except for Radwaste Building. The Radwaste Building does not contain any safety related or safe shutdown equipment. As noted in the tables, areas containing major equipment of safety related systems are provided with safety grade cooling systems and as such are not affected by loss of ventilation. The loss-of-ventilation environmental conditions shown in the tables are included in Nuclear Island Design and Equipment specifications and are to be considered for environmental qualification of equipment. The loss of ventilation calculations were based on maximum heat loads and considered operation of all operable equipment regardless of safety classification. O C

GESSAR II 22A7007 l 238 NUCLEAR ISLAND R;v. 5 l [ 3.11.4.5 rbine Buil (Losso AC A plicant t upply. 3.11.4.6 Diesel Generator Buil g Loss of HVAC / The Diesel Generator Bui ngs are served by fety class HVA o / w systems.. Thus the lo of the HVAC syste for these buildings is not considered redible, and these vironmentalzone[need f not be analy2.c for a loss of HVAC vent. Also, sin division-ally separ diesel generation ystems are provid d with their dedicat , divisionally sep ate HVAC systems, .e loss of one HVAC ystem will not adv sely affect the op ability of safety-r ated equipment loc ed in these buildi s. 3.11.5 Estimated Chemical and Radiation Environment Ted s R lt T 7 AMica,pVtojc.- y. 1.t 1. 6.1 E-N JM ,-.e - AA E y-p. $~ fw ~ ~ =; r -;. A ff /2./L /Z - ^ g_t ( \\6 l l 4 3.11-83/3.11-84

INSERT 2 3.11.5.1 Chemical Environment Equipment located in the containment (outside of the drywell) is potentially subject to water spray from the containment spray mode of the RHR system. In addition equipment in the lower portions of the containment are potentially subject to submergence and wetting by pool swell and weir annulus backflow. 3.11.5.1.1 Containment Spray The containment spray is to be considered activated for a period of time between 10 minutes and 100 days

  • post - LOCA.

Spray characteristics are 400 micron particle size (nominal minimum); 1.1 gpm per square foot and 125 F temperature. Water quality is given in section 3.11.5.1.3. 3.11.5.1.2 Suppression Pool Wetting and Submergence The characteristics and extent and post - LOCA pool swell, and weir annulus backflow are given in Appendix 3B. Water quality is given in Section 3.11.5.1.3. 3.11.5.1.3 Post LOCA Water Quality 1he following water quality based oc fission prod'act "releas's of R.G.1.7: ~

a. pH = 4.5 to 7.0 h.

conducti ty 121 a 5/cm C. 1 8 P9mh.1 1 ppm CD2 2 1 0 a If-5 g mole /1 dissolved salts available to deposit as dry salts upon 2 d. evaporation from hot surfaces, e.1 0 ppm undis 11ved solids 9

f. 180 pet dissolved Hg arising from 1 41 volwie of M fn containment atmcspNtre.

g 3.11.5.2 Radiation Environments l The radiation environments are given in Tables 3.11-2 through I 3.11-6 for the various Nuclear Island buildings except for Radwaste Building. l

  • This should not be construed necessarily as establishing a continuous 100 l

day operating time for the Containment Spray System. Actual operating time guidance is established in NED0-24934 (BWR Emergency Procedure Guidelines). i l l I L C

b2A C TAE,LE. 3,i 55 ~ EMVIRON MENTAL CCMDITIONS FOR COMTAIRMERT(OUTSIDE DRYWELL) EQUIPMEMT INTEG INTEG I LIMITING DURATION FREQ/ TEMP ETA GMm N @T F PRER3URE NOTE IATION RADIATIm (Ntn/ o CONDITION OF CONDITION 40 YRS (*F) (%) (rads) (rads) an2) 4 N 7 0 bes) REFCAL Tb "5 Var 4 a _m etr 1raet.t.rz 3 a s l % :) m

== =m o q f m, tas a,3 + s a.5esa.sc.j COtTfAI?NENT - ABOVE REFUELING FICOR ct U. 84'-7" EL n WM I.S u Jo* NOI4ML llVAC 90*/70* 20-90% (-10.1 to 0 (-) l. 0 " 112 0 ABNOINAL g IOSS OF INAC 0 to 45 min 3 90 -121 20-90%

  • (-) 0.1" to 0

l Avg Avg (+)1.0" 1120 m

  • 45 min - 20 hr 3

121* 50-100% * (-) 0.1" to j (+)1.0" H2O c2

  • 20 hr-27.5 hr 3

121*-90* 50-100% * (-) 0.1" to (+)1.0" 1120 e [ IOSS OF OFFSITE Same as loss.of 11VAC n . POWER (INAC Powered Ly Non-0iv "N" Bus - Interru at. Offsite Po er) O p TEST (18)

  • 0 to 20 hr 12
  • 90 70-90%

8 psig 0 SOLATION EVENTS (6) A' s /O' g, ) ;' EEi &) > (1,2,3,4,5,6,7,8,

  • 0 to 30 min
  • 90 -120*
  • 100%

'O to 1.75psig 0 t _.4 12,16)

  • 30 min-10 hr
  • 120*
  • 100%

'l.75 psig l

  • 10 to 24 hr
  • 120 -90
  • 20-90%
  • l.75 to Opsig ACCIDENT (g) y8 j

J LARGE IIE PIPE

  • 0 to 6 sec
  • 90*-120*
  • 100%
  • 0 to 6 psig 0

BREAK IN DRYWELL

  • 6-45 sec
  • 120*-150* *100%

'6 to 9 psig (.7,) m

  • 45 sec -10 mir
  • 150 -185*
  • 100%

'9 to 15 psig ~ i

  • 10 min -1 day
  • 185
  • 100%
  • 15 psig m
  • 1 to 100 days
  • 185*-90

,100%

  • 15 to O psig y,

I

  • r'T? CTinnT TI?n FWPA N

O

  • s.

g g f[(_. pl ~ E4VIRONMENTAL 0.O M D IT tO M S FOR COMTAlHMEMT (00T5tDE DR. VIELd EQOlPMEMT Y INTEG INTEG I LIMITING DURATION FREQ/ TEMP BETA GM N @T PRESSURg NOTE E IATION RADIATIm (Ntn/ o CONDITION OF CONDITION 40 YRS (*F) (%) (rads) (rads) an2) g g } m w u m a N Y m'c 00tTPADNENT - ABOVE SUPPRESSI N POOL g H-n (-)11'-2" El CT-2 NORHl$T-UP NORI%L llVAC 100 /40 20-90% (-) 0.1" to (-) H2O O I!Of STANDBY

  • 100*-120*

20-90% * (-) 0.1 to (-) l. 0"H2O O O M ABNOINAL g i LOSS OF HVAC 0 to 45 min 3 100*-124*

  • 100 */. *0-1.24 psig 0

Avg Avg j

  • 45 min-20 hr 121*
  • 100%
  • l.24 psig
  • 20 Hr-27.5 hr 121*-100*
  • 100%
  • l.24-0 psig IOSS OF OFFSITE SAME AS 10 S OF llMC OO POWER (IIVAC PGiE2 ED BY b 31 DIV,"N" 1 0S - INT ERUPr. OFFSIT POWER) g ISOLATION LVENTS (1,2,3,4,5,6,7,8,
  • 0 to 30 min 100*-150*
  • e oa,; *0 to 1.75 1.1x 10' 4.44IE O

(3)(f,j W psig (NCC4. 6) (Note 6) 12,16)

  • 30 min-10 hr 150*
  • 100%
  • l.75 psig
  • 10 to 24 hr 150 -100*
  • 100%
  • l.75 to 0 Psig TEST (18)
  • 0 to 20 hr 12
  • 100*

20-90%

  • 8 psig 0

ACCIDENT (l) SMALL llE PIPE

  • 0 to 45 sec
  • 100*-150*
  • 0 to 9 psig BREAK IN DRYWELL
  • 45 sec-10 min
  • 150 -185*
  • 9 to 15 psig y
  • 10 min-1 day
  • 185
  • 15 psig m*
  • 1 to 100 days
  • 185 -100*
  • 15 to O psig l GE SUPPLIED DATA g-j_

y

n Q>c2 D00 o .y - I i e g :< } 'i '5 < i k l 3' a0* lo$Ny T m$ y$ mRE g;# ) b' M gnu # q n P [ tu N" ) Q 0 E O LE GA NW E / l T G W 8 (N / IG O' RD ) E GA L7 ET d w D TE Gfo NB o I / S I fh T0 g g g g i i gi i 0 s sis s E ( p psp p R p T U 5 g6 5 gO A. M S 1i 91i 2 S so so E E o pt o o pt t tt R 55 55 M P 0116911 l l .N OA I LAN .T HI) RF% EN T( LO SC [ Y A 5 005 0 R P ) 2 258 0 T 1 111 1 O M F E

  • F T

( 0550055 0222588 1111111

  • *
  • 2 * *
  • S S

N / R Q o E Y i R 0 T F 4 s L I l ~) ' D N O s O O cc yy (' N I P ee cnaa N O O T ssceidd N esm I C I O 54 s 10 T D I 50 0 N S 1 o641 n1 AR O S t i L U C E o oo mo R A D P t5.tt t 50 F P 0l46411 T O U S M E E ) V ) T. M O d d T B f t F AT t N A f L n n W A o EY D o C PR 9 N E L G O e ( ID D T L P t N I E 1 1 N l I T D EI L I i T I R H V t P 2 K P I D N D EA N M N I l D GE U I O A l S E L C R T I RR ) C AB E t0 C M G ] L 0 ( (l l

[ rA bt.E. O it-2.A 55 EHVIRONMENTAL CONDITIONS FOR CONTAIMMEMT[OOTslDE. DRYWELL) EQUIPMEMT INTEG INTEG ok RH ADDEN m LIMITING DURATION FREQ/ TEMP TA GMA N @T FINAL PRESSURE NorE CONDITION OF CONDITION 40 YRS (*F) (%) d REF l 5 l N $ o m COMAINMENT - IICU FIDOR S U-11'-0" El n CT-3 NOIN/ST-UP 7.0 x 10 0 NOFNAL HV1C 90 /40 20-70% (-) 0.1 to (-)l.0" 1I20 ABNOF4ML IDSS OF IIVAC 0 to 45 min 3 90*-128 20-90% * (-) 0.1 to 0 o Avg , (+)1.0" H2O y

  • 45 min-20 hr 3

121 50-100%* (-) 0.1 to (+)l.0" 11 0 j 2

  • 20 hr-27.5 hr 3

121*-90* 50-100%* (-) 0.1 to C (+)1.0" 11 0 2 2 IDSS OF OFFSITE SAME AS IISS OF i VAC POWER (llVAC POW 1. RED BY NCN-DIV "N" BUS - INfERRUPT OFFSIT POWER) IP O O ISOLATION EVEtfrS (1,2,3,4,5,6,7,8

  • 0 to 30 min
  • 90 -120
  • 100%

0 % 17fpuy I.t x 10 4.4410 8 0 (G) 12,16)

  • 30 min-10 hr
  • 120*
  • 100%
  • l'75 PM7 Usata 6) (Nate O
  • 10 to 24 hr
  • 120*-90
  • 20-90% *s.7th Opseg TEST (18)
  • 0 to 20 hr 12
  • 90*

20-90% *8 psig ACCIDENT (g) IARGE IIE PIPE

  • 0 to 6 sec
  • 90* to 120*
  • 100%
  • 0 - 6 psig Fide. 2-Fl41 0

(7) BREAK IN DRYriELL

  • 6-45 sec
  • 120 -150*
  • 100%
  • 6 - 9 psig (Nota. 7) (Note F)
  • 45 sec-10 min
  • 150 -185
  • 100%

'9 - 15 psig y

  • 10 min-1 day
  • 185
  • 100%
  • 15 psig
  • 1 to 100 days
  • 185 -90*
  • 100%
  • 15 to o psig S
  • GE SUPPLIED DATA

~~ ~ k q g p. ENVIROM MENTAL COMDITIONS FOR COMTAlHMEMT (OOTSIDE DRYWELL)EQOtPMENT INTEG INTEG l LIMITING DURATION FREQ/ TEMP TA Nm N @T PRESSUR'E NCyrE RADIATION RADIATICN (Ntn/ CONDITION OF CONDITION 4 0 YRS (*F) (%) o (rads) (rads) an2) g g } l2 i o-c COfrAINMENT -SIfS AREAS 37'-1" El CT-4 SUM /WINr /, g 95 NORMAL IIVAC 90*-70 20-90% (-) 0.1 to 0 (-)l.0" II20 ABNORMAL IDSS OF IIVAC 0 to 45 min 3 90 -121* 20-90% * (-) 0.1 to g Avg Avg (+)1.0" II20 0

  • 45 min-20 hr 3

121' S0-100% *(-)0.1 to (+)l.0" II20

  • 20 hr-27.5 hr 3

121 -100* 50-100% *(-)0.1 to IDSS OF OFFSITE SAME AS I JSS OF IVAC POWER (IIVAC PG ERED BY DIV "N" BR --INTERRUPT.,OFFSITE 1 W ER) E OO ISOLATICN EVERTS g 4,4 go 2. (1,2,3,4,5,6,7,8,

  • 0 to 30 min
  • 90*-120
  • 100%
  • 0 to 1.75 psig g,, 4) Wora 6) o (c. )

12,16)

  • 30 min-10 hr
  • 120*
  • 100%
  • l.75 psig
  • 10 to 24 hr
  • 120*-90*
  • 20-90%
  • l.75 to 0 psig TEST (18)
  • 0 to 20 he 12
  • 90*
  • 20-90%

'8 psig ICCIDENT (3) A G. 2.

  1. es, /

IARGE IIE PIPE

  • 0 to 6 sec
  • 90 -120*
  • 100%
  • 0 to 6 psig (N*Ts.7) (Norm 7) 0 (1)

BREAK IN DRYWELL

  • 6 sec-45 sec
  • 120*-150*
  • 100%

'6-9 psig

  • 45 sec-10 min
  • 150*-185
  • 100%

'9-15 psig

  • 10 min-1 day
  • 185*
  • 100%
  • 15 psig E
  • 1 to 100 days
  • 185 -90*
  • 100%
  • 15-0 psig j

k

  • GE SUPPLIED DATA p

g - ---- -

g P' re>tA 3.11-2.A S g ENV1ROMMENTAL COND)TiONs FOR CONTAlHMEMT (OUTSIDE DRYWELL) EQUIPMENT '. INTEG INTEG i RH ADDW m ar LIMITING DUI<ATION FREQ/ TEMP ETA GN N NOTE @T FINAL PRESSURE CONDITION OF CONDITION 40 YRS (*F) (%) REF ds d 2) 1 !3 i o-4 CQffAINMEtfr -RWCU ROCNS (IlOLDING PUMP & FILTER DEMIN) fe M 59'-7" El CT-5 0 976 O NORMAL IIVAC: PUMP RM 90 20-70% (-)0.1 to (S) E/D RMS 105 (-)1.0" H2O ABNORMAL IDSS OF liVAC 0 to 45 min 3 100 -109 20-90%

  • (-)0.1 to o

O (IMCU PUMP & F/D) Avg AVG-(+)1.0" H O 1 2

  • 45 min-20 hr 3

109* 20-90% (-) 0.1 to a (+)1.0" 1I20 2

  • 20 hr-27.5 hr 3

109 -100 20-90% (-)0.1 to (+)1.0 1120 2 IDSS OF OFFSITE O to 1 hr 100 -127 20-90% (-) 0.1 to y 0" 11 0 POWER 2 g (ALL llVAC EQUIP (RWCU HVAC PCNERED I'I DIV N1 ANi lN2 BUS- -NORMAL POWER,DG BACIG D, SHED O J IDCA 04LY; CONT O EXCL RWCU RMS) !!VAC POWEREE BY NG-DIV "N" BUSES-INTER UPT.OFFSITE P t m,, j) (Mote. C.) o (d ISO L ATIDH Eve.HT C. (wo TEST

  • 0 to 20 hr 12 100*

20-90%

  • 8 psig ACCIDENT (I)

LARGE HE PIPE

  • 0 to 6 sec
  • 100*-120
  • 100%
  • 0 to 6 psig FICn.2.

F i(n. I o (7) BREAK IN DRYWELL

  • 6-45 sec
  • 120*-150*
  • 100%
  • 6 to 9 psig (uote. 7) (Hota. 7)
  • 45 sec-10 min
  • 150*-185*
  • 100%
  • 9 to 15 psig
  • 10 min-1 day
  • 185
  • 100%
  • 15 psig
  • 1 to 100 days
  • 185*-100
  • 100%
  • 15 to O psig i ai' 8

t. OGE SUPPLIED DATA l ]

s7e C F BRAUN O CO Paga pF ' 12 75 W V Crnlley General Electric ( San Jose TABLE 3.11-LA CONTAINMENT ADDENDUM TO DATA SHEETS 1 Pressure Control is not a part of the air conditioning system. A negative pressure level within the overall containment area is maintained by separate constant-exhaust-air and variable-supply-air systems. A differential pressure controller (RR619) above the suppression pool area, throttles a damper in the supply air ductwork to maintain the containment at a negative pressure with respect to the ambient atmosphere. Isolation valves to maintain the containment integrity are installed in the supply and exhaust ducts where they penetrate the containment / shield building barriers. These valves will close in the event of high radioactivity detection within the containment, and the exhaust and supply air systems will be shut-down. In addition, a shut-off damper will be closed in the outside air intake duct to the supply air system. 2 The systems are balanced to provide an air flow pattern from areas of low potential contamination to areas of higher potential ' ( contamination. 3 For the Zone CT-2 Abnormal condition of " ISOLATION EVENTS", the suppression pool temperature was assumed to be 150.*F due to the 19 SRV's opening. k IK

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*= =m

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== na .= iiEN;,,=~] 6 5=- HsEEEEEE- ---- Eass.is z-v

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'TA K E 'S Il ~ ' A

  • 1*

CCraTAIN MtEUT ADDEND # nc.az.s 7. ew l l l l l i lii l II I' l g i 7- ? l t gI ' 'l ' l ' ll ',l I i i I ..A l ui i i,i ' i' l i"',l i Ij lI l'I[i ' l ' fli ,i j i 1'" I i l g g i i , I! 'I [I t' ....g a. =_ g c . - = = b n- = INb.U m-- ( p u =1 2.. ~ s., ~

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-c s. IOOO ,4s TIME Luowas4

A O o p p m p r rABLE 3 l'. ~2.B g ERN11R.OMMEMTAL COktDtTIOhls FOR DRYWELL EQuiPMEh!T INTEG INTEG I ETA GN N LIMITING DURATION FREQ/ TEMP @T PRESSURg NME RADIATION RADIATION (Ntn/ o CONDITION OF CONDITION 40 YRS (*F) (%) (rads) (rads) on2) g g} tn e:) La o navEr. To" system [ oPER. STATUS" MAT 284 g S H E CT. e y o' < DRYWFTL - OLTPSIDE RPV SilIEID VNL - NOT AT CORE MIDPLANd O DW-1 (Note 7) (,40TM.- 7) (7) E NORMAL IIVAC 135* 20-90%

  • 2 psig REFUELING 70*

20-90% *12-psig ABNORMAL 0 IDSS CP llVAC 0-16 min

  • 3 135*-242
  • l-90%
  • 0 to 3 psig

'I 16 min-58 min 242 -251*

  • l-90%
  • 3 to 2 psig
  • 58 min-5 hr 251*-135*
  • l-90%
  • 2 to O psig a2>

j LOSS OF OFFSI'IE NO IMPACP-SAME AS NORMAL C2 POWER (llVAC POWI RED BY DIV N1 & N2 BUS -NCRMAL POWER, DG BACKED, 5HED W IDCA W LY) pp Lix80* + + X 10 (4) O ISOLATION EVENTS

  • 0 to 75 sec
  • 50.
  • 135*-150*

'I~'8 A *0 to 2 psig

  • 75 sec-30 min
  • 150*-135* *2040% *2 to O psig TEST (17)
  • 0 to 20 hr
  • 12
  • 100*
  • 20-90% *3 psig ACCIDENT (1)

T LARGE ilE PIPE

  • 0-1.5 sec
  • 135*-330
  • Steam
  • 0 to 30 psig F14.1 FIG.1 (g)

.~ l BREAK IN DRYWELL

  • l.5-40 sec
  • 330
  • Steam
  • 30 psig (nso4:e. 8) (Mota. 3) y
  • 40-45 sec
  • 330 -250*
  • Steam
  • 30 to 15 psic j
  • 45 sec-1 hr
  • 250*
  • Steam
  • 15 psig
  • 1 hr-1 day
  • 2.50
  • 100%
  • 15 to 5 psig h,
  • cn sirppi.TSEn DATA

., inn a,..

  • ,,,.,?.i c* q* inns l*5 to 0 nsia r

l

a' nO g (% n - 3 TA12>LE

3... - 2. E S

EM\\lleON MEMTAL GONDITIO NS FOR DIL'YWELL EQOn PMEMT INTEG INTEG l LIMITING DURATION FREQ/ TEMP @T PRESSURg BETA GN N NOTE CO'NDITION OF CONDITION 4 0 YRS (*F) (%) RADIATION RADIATION (Ntn/ 0 REF (rads) (rads) cm2) g y } 1 5 i e m DRYWELL OLTFSIDE RPV SHIEID WALL--AT CORE MIDPIANE fe U-n DW-2 NORMAL IIVAC 135* 20-90%

  • 12 psig (Not=. 7) (Ncte7)

(7) REEUELING 70 20-90% *i2 psig ABNORMAL O IDSS OF IIVAC 0 to 16 min

  • 3 135*-242
  • 1-90%
  • 0 to 3 psig 3

16 min-68 min 242*-251*

  • l-90%
  • 3 to 2 psig
  • S8 min-5 nr 251*-135*
  • 1-90%
  • 2 to O psig a>

LOSS OF OFFSITE NO IMPN T-SAME AS NORMAL C POWER (IIVAC PCWERED L Y DIV N1&1 I2 BUS - M 4AL POWER, XI 2

BACKED, SIIED C N A IOCA ONDY)

IP ISOLATION EVEms

  • 0 to 75 sec-
  • 50
  • 135*-150o e154o%
  • 0 to 2 psig 1.1x 80' 4. + x 10*

(4) Q

  • 75 sec-30 min _
  • 150 -135*

' to-90 % *2 to O psig TEST (#7)

  • o to 2.o kr
  • s 2.
  • too*
  1. 20-fo %
  • a psey ACCIDENP (1)

LARGE IIE PIPE

  • 0 to 1.5 sec
  • 135*-330*
  • Steam
  • 0 to 30 psig FIG.I FIG.1 0

(3') BREAK IN DRYWELL

  • l.5-40 sec
  • 330
  • Steam
  • 30 psig (Note 8) (state 8)
  • 40-45 sec
  • 330 -250*
  • Steam
  • 30 to 15 psig
  • 45 sec-1 hr
  • 250
  • Steam
  • 15 psig m
  • 1 hr-1 day
  • 250*
  • 100%
  • 15 to 5 psig j
  • 1-100 days
  • 250 -135*
  • 100%
  • 5 to O psig e

OGE SUPPLIED DATA

?

,2

  • iO Dmt Q 8

h _p - < }3m l$aUgw nNoql t $o g 9 EF TE O. OR N T E ) C 2 o M N/m t E Enc Ut x M F (N "A L P N 80 O ) GAI)s d 4 O x EMT / d Q TMA a x 4, NAID (r 4 'p. E IG A "2 R N L GAIO )s

  1. o L TEAa ETTd l

x I NB D (r E I I A G W R D ggg Y. iii R b sss E R R ppp W U g O g B D S i 32O P is S sp ooo L p 2 E ttt A R R 2 M 3 P 1 032 R O O l l F ,i L A N 0 S %%00 %%0 0 I) 9 000 U 0069 009 9 s F% 999 B 33 33 - 0 - - 5 0 E M T( 2 11l 2 661 66 2 N) I L O &L 1 EI L N

  • 615 A1C 5 05 5 5

T 753 MN 8 53 8 3 %I P ) 221 R - A 1 11 1 1 M F - OVC - T D E

  • NID * ***

5 561 DI 5550 555 0 T ( 4 3 375 S 3885 388 0 1 122 AY4 1111 111 1 0 B3 * *** * ** E S / MDD 1( R AEE Q Y 3 SRI 0 0 2 I E ES 5 5 1 R 0 TW 1 L F 4 CO, pA II I N L P E O A MCK T T nr IPC r r I N S nih NA n h n h r N O T E i m OI B i ri h I D m 5 N( mn1h mn1 I E T D E 8 - i-i- 0 A N P 35n 1 mn2 1mn 2 i i i M R O E oom o0 mo o0m o U C D tt t3 t t3 t M D I 8 - 0 0 F S 035 0l31 0l3 0 O O N I R VP N A R O I / E I 'I M N R T T M E I A r M N D C d L fv T E G O N A O K T U C N n S m n' I N I O I 1 I I I T N M / I T T I L FA F w WT P D I D L E OR OR A N D I T L L 4 C E M MI E f M N E m SS SW A AO D O f I O W 3 O S/ SO R RS T I L C Y Y ? N Ow DP C CI S C s I R W O B I I S S t C /* D D N A i I l 1 a

g ' n2>C2 O OO ec \\'% 1 o .p - w< uU3 o$ w oEOQ$ s m$ en m N ) EEF 3 n DFE D 7R ( AM N( T 0 M.E ) M 8 GA i EM d .a P T Et ) N Fo U G (N ..P EQ ) 8 I A s . e T d E mto F L N ( LE g i g g s g i W R p i gs

  • B. T U

s ip 0gpgs S 2 R 3i i p0 S s5 s E o p1 p5 o D R t - t P 0055 R 033115 L 4 A mmmm nt f N O HI) an aa ea ee 00 F RF% tttt00 E T( SSSS11 L > S eN 0 0 5 3 5 3 AO ) 3 2 1 P rI M F T E

  • 500000 T

I ( 333555 D 133222 N S O / R D Q ) Y 8 E ( R 0 F 4 ~ L N L O A c ( A I S sc hys r e r N T 2 T O E ec ay I D

5. s e 1 d a
  • I M

D E s-d T P 10 c1 E A 45e 0 N R O E o4 sr0 M C D t 5.0 5 h1 U I D M F S 0l4411 O N O I R V P ) J V M )d W I R r R f t M E n n EY pE N D o o PR G O N c C IDP U ( ( N I N I T EI T I 3 P H N K I D J E EA M N T D GE I O W W I BR C AB L C YR D O I D A 4

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  • B 0

100000 1 155 T ( 5 555 E 0 533555 I 1 111 MDD 1 133222 AE E D E I I S / ES M R TW Q Y 3 CO 2 ) O E APD 1 y R 0 P E g G F 4 MCK p ] 1 N D VN s O A OI B c y I I E r N( e r a n h r sc h yd L N I T I O i h ec a I mn5

5. s e 1 d 0 A

I T 0 s-0 D L m n-i T F 4 2 10 c11 T A W i N 45e o O o8 m o o4 sr N R Y t 5. 0 5 ht U C R t5 t E D D 8 F 04S 0 014411 M O N I l i N T o s i e I T r. O W A F r E R T W L o EY n t E I C 5 n PR V N W ID n G O A D C N n P M N I A O N I I T V 4 EI E L F F Y M I T I I I I K A O OR EA I D T M N L L N E M S D GE m-SNA T I BR F A S I I O W 4 M O S R AB v._ L C Y R N D DP L E I c _ S O B I I N R N A S T D

l I

4 l; i l l

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.i o.ya n y n2 g 2' s i < }$ ic I 2' e og" lm r1eo g$ O )8 g E I ( ON g. N/m ) 4 2 1 o 0 l nc T t x M N I ( j ) E N o t 6 1 M a C s TNI G g I) Ts 0 Gc x E d P 8 4, Fo I Aa x N D (r 4 N ) IG A 1 ( O R )' Q N 8 I 0 E GAIO )s mt t 1 TEAa u ETTd o L NB D (r t. F I N I 1 ( L G E D g i ggg s g W E iii R sss R p i g S Y-s ig U ppp E E S g W 0 g p g si i 32O O g 3i ips 2-S s P i s5s p D E p ooo s o p1 p5 R ttt L p t - 0 0055 - t P 2 A 4 3 O33115 1 032 4 i R U OF O N-mmmm%% 0 0 a am em 9 9 000 e 00 ) 999 0 S 0 ttte00 E_ S T( 2 lll U 2 SSSS11 B t mR 2 O 615 0 0 5 N )Y 3 5 3 I 753 rT 3 2 1 L&L-221 P A N ) M F M1O t L 5 561 RN 0 500000 E * ) D T L 3 375 O A 0 333555 ( A 1 122 NVC 1 133222 M W IO O S E I G / D A S YN R L Q E 3 EBO 2 ) Y E I M 1 1 ADD ( R 0 l i F 4 S SEE L I I N E ES c A O D TW ce s es r I r CO T N S n h APD r s hys I A O T N i P E h 0c ay 54 e1da I I mn5 *MCK I s-d IAC 0 m n-VA 2 1 o c1 E T 3 i D ( t5 e0 A N T i OI B M I R O R o8 m N( o o 4 sr0 t5.05 h1 C I t5 t U M K 8 F S 035 0 0l441l D r O V e P H t R 0 i s y E T r n M D E A e m I T L W a I c EY n E S T C d 5 PR ID N m 4 1 U A r P G O O C V r f, N T O l N I A I I I T V J'j EI I i P n L F F T O OR /* N K n I I T I I E E EA I D J L M r S SW M D GE c e T M N F A I O W 5 M O S SO A T I RR I R N D OP A S C AB v L C Y W-O B I I c E C I c RD D N A S T A

4 Q (~>, ?% a 9 ) (j rAstE O. it-2 s EMORONMEMTAL 'cOND)TIONS FOR. Dft.YWELL EQU)PMEMT N RH ADDEN m o s LIMITING DURATION FREQ/ TEMP BETA GWA N @T FINAL PRESSURE NOTE T T CONDITION OF CONDITION 4 0 YRS (*F) (%) REF ds ds 2) l l N.Y m n DRYWELL - ANNUwS BE71HEEN RPV & RPV SilIEID WALL q W DW-6

  • l.8x1010*4x1017 NOINAL INIC 550*

l-30%

  • (-) 0.5 to

+1.5" HO 2 ABNOINAL IOSS OF INAC

  • 0 to 25 min 3

550 -575 1-5%

  • 0 to 3 psig
  • 25-58 min 3

575 -475* l-5%

  • 3 to 2 psig y
  • 58 min-5 hr 3

475 -135* 6-90%

  • 2 to O psig
n

{ IOSS OF OFFSITE NO IMP 1 CT-SAMI-AS NOINAL POWER (INAC I OWERED BY DIV N1& N2 BUS-- -NOINAL POWER, DG Z BACKEL, SIIED ON ONLY) 1.4 x 10+

4. + x to*

SCRAM 14'% sotArno4 O AOCIDENT O IAI1GE IIE PIPE

  • 0 to 1.5 sec
  • S50
  • Steam
  • 0 to 30 psig FIG.I FIG.t 0

(3) BREAK IN DRYWELL

  • l.5-40 sec
  • 550*
  • Steam

'30 psig (Note.6) (Note. 6)

  • 40-45 sec
  • 550
  • Steam
  • 30-15 psig
  • 45 sec-1 hr
  • 550 -250*
  • steam
  • 15 psig
  • 1 hr-1 day
  • 250*
  • 100%
  • 15 psig
  • 1 to 100 days
  • 250 -100
  • 100%
  • 15 to O psig l

'o N N,

  • GE SUPPLI W DATA i

s7s C F CRAUN O CO pana // 12 75 W V Cralley --.d_ General. Electric g i ') San Jose TA&LE 3.11-2 & DRYWELL ADDENDUM TO DATA SHEETS Pressure control is not a part of the drywell air conditioning systems, which are 100 percent recirculating. The various requirements for drywell pressure control are handled as follows. 1 During the reactor start-up mode, an increase in drywell pressure will result from the increase in air temperature. A drywell bleed-off vent system is provided to prevent this pressure from exceeding the containment pressure by 2 psig, which would initiate a LOCA signal. 2 A steam line break in the drywell will initially cause an outflow of non-condensibles through the suppression pool to the containment, and a subsequent condensation of the steam within the drywell, after termination of the steam flow, can result in the drywell pressure becoming negative with respect to the containment. A drywell vacuum relief system is provided to prevent this negative pressure differnential from causing the suppression pool to overflow and flood the base of the drywell. This drywell vacuum relief system also protects against an O overpressurization of the containment from an instrument line break which could also result in an overflow of the suppression pool into the drywell. 3 A drywell purge mode shall be provided to remove any accumulation of radioactive gases from the drywell prior to re-entry of the drywell during a routine plant shutdown. This is accomplished by having the SGTS exhaust fan draw air from the drywell and in conjunction draw replacement air into the drywell from the containment area, through valved ducting which penetrates the drywell ceiling. 4 Abnormal Isolation Events for Zones DW-1 and 2, are based on "19 t SRV's Open With Scram" and 5 150*F Suppression Pool temperature. 5 Normal HVAC temperature ...e DW-4 is based on a Fuel Pool temperature of 126.

  • F t

6 Abnormal Loss of HVAC temperature is based on a Fuel Pool temperature rise to 128.5*F. i i

TAELE 3 ll-2 B /9 i og.y wett AppENDOM ~{- e >a .a ,L ,. a. u-s o.- w 4 d 1 b,A m dn. S-k Sh.JA w.JJt. o~JL M tJL d.1 eb.,. ^ l Ctn I v44 hb W I 44 l =D hm mL w. Om e4

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--x- . - =/ - u : - - a -=: r=5==_-- -= =- - --_+::----=: ,N= I"~. !..'.i~9~~~- N _^ __._5 M_=E"':"N ~ ' ~_Z ~~$2~ U.I~~_~ 7 -- -i[f Mi.. '[' Yi_. --N.=M - - ~-f'7-I _---'=-Y--h_" -__-___._.._-.-._._'i.'_.rM ^ 5,= g .2--- 2 1.-- n: - __.._;__=------ , = _.. - -.. = - - - - - _ = _. _ -. _ _ - - - _ - - _ _ _. _ - - _ = -

--__.-,r_-

,n==-- o.W_ a 10 .;w .m -y .. - ~. y: - - + + - - ._e -. = 1 =.=, w.p m _ .y ' .='",'"r..._--

    • ~_3 3
st-

_v. -=7 _.:-s- .._7., y=, = _ : % '_.- ; g _. ; u _-_-5-. -;_~.,,a--:. _..,,= :2 ; = ^ t 8**"*$99*g M b he*-'e -. __.,-,-.--ef gas).- Mm__ ,=_g4;,,,',-^,'--f-y 9 ,,,~,,,,,-,*;_,,,.- - - - - - y,-=---;f]__-----=;____;_- p w----- , ' n; .T . ~ * - ; -* 7 ; 3_- h..., j _ l,,.; . _m'- +4-gii.4 ,e e h _q OiipmeyM- ^ tiaq_ g $~ . _- p L# m.g=-,.- _,, ' " '

  • ge

[ '-~ t 2-_, . - -. = - - _ - - - - . = _==:;. -.,----=-,____:a-_ e (.3:

. _
-. -54 _ _.i.w_ --: : a - ysj =I: = ;-j ;'.

7.-f. '-f _ y_, --'t.4p.=,,._ - g._ . a.,- ; j n _,-_n _ g.,ga ;i=_ :_g] ~-- ---_.___..;..___,--_.:_:.,___,,__._=-~~___~~a.- p ~~=..='. ' a. _ :.:-. ..:-_a=--=:--=..___. . _.. _ _ _ _ _ _ _ _.. : --~-~__ -~, "I._ . _. _ _=.='..%__----':-__*'_.',;-,.2-^._--_.-_--~~_.~7_.: -:._=.-_-_:-.=_;=- --. I ~ ' '..., * -. - ~ ~ ~ ~ ~..~ " * - * * * ~.. ~ - ', _ [ ^ ' ,." = '-"_-~ ~. ^. -. _'**' ~ ~* 2 ;; -- ^. ~ ^ .._.2_._-, _mw. e !3 \\.0 10 t00 \\ coo '"~ ~1 M E. FO u o 4 We LB C % ( WOWD L__ -q

b l n 3 gyC2 y,, i ).. s < }r; j )4 I ' g$ ogH ggS T gtG SN o ) E (4 M P MR l N/n O ) 2 L Q E na 0 N E tN AP ( )4 m N o 4. f W TNI)s G G n .e E T d O i. Gt Aa N o I I D l N D (r Fw i T IG A ( D R U I L N) H NA O S I GAI s B TEAa E O ETTd SG I T NN NB D (r I I O R I A 1J M CD R Y E. WE S 0 ) R g R o ST E " 2 R t0 A S 01 1 A U D 2 RR U OE B o I "1. "5 S N I FP t 3i S A O "F L E 5 0 T )2 NO S 2 R )L E T E I P 0 X E l 0 H ( I 3 E .U I N U 'Q AA O I 0 QE D 'l 6 ER 0 Y 6 ) l B (a 0 CY 2 AL) 8 ER T( VNGD A l F I ) R LO E YRB E I >eF R T* B R. W L O A N o Tn0P - r A P ) IW r. SOf M F R / / Cf C TS 7 E

  • A 4

A M S t L 0 ANC N 0 T ( N E S 9 1 C I I I I ( ( O G t I S H AO I / R C P T Q N Y T FNO T 1 E I R 0 CDI C I D W )L A.T A F 4 I' I I ) N N S E MSU M s I C I y O O MA a N c "0 OEV O D I C T i1 NRE N O 0 I I R '- 0 D 1 L A N T. 6 T R O C) o C E (- t A U T D L@ 0 F E( l O hE M M l EI G E T. M TR N E F T ST I " YA T W N S D 0 I EY I "o M C d PR O N I I D )A U 1 A n P R G O T B l C N U A O NB N I S I EID I T R ) T Y " V V T I EA R 0 L F F P I i I F T A 1 A O OR N KA) l E ST I L 4 E E EAC2 N I D A R S 9W D GE)I( 1 M N R.E L M O I RRI E I 6 1 E O S I O P C AB( )gE N O L C SeH U - B O B L T X C L I ) WP S A A N A A ( (O

ill ,llI'

2 I O m Qy 2 p go l

< } l 7 :o ~ I 3 t 0pog" !cf TN $a g$ E ) M n (S P uN lU E ) Q C 2 N/m E Enc 0 0 0 Dt IN F( )5 G W 3 0 M G A I )s 0 1e 1 x EMT d x ID TMAa

2. to NAIr 1

D( 5N L IG A 5 S ; ( I R CCD O N) EE S ) O B GAI s D E FI S ETTd OV U TEAa O B I E(r TR S WP R NB I Y. L R AO E O 0 C o2o0oO oOo0oO A 2 o2 OD tHt2t 2 t2t 2t 2 V H H H 1 1 1 1 R t1 I 'Q I 5" "5" 1 I L U DE D 5" 5" 5" 5" S 5 "0 NR 202020 202020 3I 2 A Y X S 4 E 0l S B 0l0101 010l01 EI ))))1) )))))) U R A P R 'I D ) ) l (((((( (((((( l U I T E (( 3E E R A S NM W ) I A 0 ' P O 0 0 HI) E 9 I I P 5 5 9 5 5 9 N R NU 3 3 3 3 { O RF% A 0 AQ T 0 0 F T( 2 DE N 8 8 2 8 8 2 A' I C I N E L DA Y P gS r V I E I ( I

  • Rl U 2

4 2 l gN N 0 Q 2 0 2 4 S I 6 OY E 1 1 1 0 P IB 1 yO ) M F M M / ' - C E

  • O

/

  • O M 4 ET A 4

2 2 4 2 2 T B U 0 US V 0 2 2 0 2 2 I ( T S 1 D 1 1 1 1 1 1 I I( 0 ( "C I b D S 3 / R Q R 'I T T 3 6 N E H CN C 3 1 Y R 0 R I E A 1 1 O PM P F 4 D b I b C N N II I O A U n OQ O i r I NE N n m n r h N i i h T S m n 5 m 5 O L I C i 4 1 I D P 2 m 2 1 T H o n A A NO o 0 t o i o R t 3 t m t T C S 0 U N D C 0 2 3 0 2 1 F P O L E 2 M G 1, S N E I 1 ) N I T N 1, ) 2 D I E 1 O 1 C S V 9, 9 0 N IU l A F E 2, R G O B E C V F 8, 8 1, N I I H O N V O 5, 2, 4, I I T Y T I R "0 H L F F I) V M I D A - A O OR TS3,3 3, E AC 2, 1, 1 I L 4 S E M N L '2 A SWOHP 2,4 T S I I I O I 3 2 M O S F N D DP S( 11 S (i L C X ) U - B O B I I I ( E A N A T A ( i l

EhNIRONMENTAL CONDITIOMS FC4t AUXt LI AR.Y SulLDiMG EQU1PMENT INTEG INTEG l RH ADDW m a s LIMITING DURATION PREQ/ TEMP @T FINAL PRESSURg BETA GN N NOTE RADIATION RADIATIm (Ntn/ o CONDITION OF CONDITION 4 0 YRS (*F) (%) (rads) (rads) cm2) g g } i m e u 3 m X.} AUXILIARY BUIIDING - LPCS, IIPCS, AND RIIR "C" ROCHS (ECCS AREAS) rt () 3 2.'- o EL. N. n AB-2 (Contd) FCCIDINF LARGE IIE PIPE

  • 0 to 2 min
  • 104*-122*
  • 8-35%
  • (-)0.25 to 0" (N0ke. G)(Noted) 0 (d)

BREAK IN DRYWELL 112 0 (IDCA-DBA)

  • 2 min-100 days
  • 122*
  • 8-35%
  • 0 to (-) 0.25" 11 0 g

(12) 2 flE PIPE BREAK IN

  • 0 to 24 sec
  • 104*-250*
  • 100%
  • 0-1.6 psig 2.0 m to ~

1,3 x to 0 1 AnJACINF ZWE

  • 24 sec-6 hr
  • 250*-212*
  • 100%
  • l.6 psig a

RIIR "C" W LY

  • 6-12 hr
  • 212*-150
  • 100%
  • l.6-0.5 psig 2

(15)

  • 12 hr-100 Days
  • 150*-104*
  • 100%
  • 0.5-0 psig

$2 l E o O 1 i i i i j i t-un h OGE SUPPLIED DATA

O 1 njC2 o g0 $% L# .49 l1 ] } $ $ :o I oy" NmOty 1 ^ T y$ N ) E E" (S DMP N/m ) ) U 2 o 0 nc 0 0 Q tN E ( ) GAI)s o 05

  • o 0

O 6 N 1 t f, G 1 EMI T xe x d T Aa x

3. t N

3 N o D (r 3 N 2 I IG A 1 3 D 6l f ( R L N SC o GAIO )s C t TEAa u ETTd B x S NB I r O F 0 D 2 I A( i "5,b ?. C) S ID U Y 0 TE B 0 0 0 o. g g i i t o2 AD o2o2o2 s R wI s s 1 1 I R t1 CI t1 t1 tI U OV "F 1 /"W p p A S 5 "0 5" 5 5"0202"0 I O S 2 gO R E 2 I S 2 i DP 5 3' L E 0l N 01010l 2, 2 t pt o so AR V R ))) ))) e 0 )) P O I I X % E- ) 0 22 E D ( (( ( ( ( (( RD (

n.. U t 'Q y f.

m I i L B I J 0 AE 0 5 0 a A A 9 e%% 9 NR D 5 5 9 3 ) lt00 ) E 3 3 A 0 TS R 0 0 lS00 T( E 2 NI E 8 8 2 s2 A 11 E. R R A> H a8 O A D i NI P - F S UU z4 0 24 t C T DQ P 2 4 z0 O N 0 EE I 2 0 6 10 i J E I 6 R U 1 1 1 21 E P ) W / C Q S M F ( / OA E 4 *2 A E

  • 4 02 I V 4

2 2 M M4 T M T o2 0 61 ( C L 0 C 0 2 2 I I i 1 O S 1 E A 1 1 1 1 12 O R UY V I I 1 i S P ( ( T 3 / R M T 6 ) Q Y U - S 3 c I I E P 1 D R 0 TO P c ( F 4 D CN C M N O O MP M J ) s N A P, P m c ry n, m e ha E II I .n ( C N N U n i r I s d n O T I OQ O i m h 6 I 5 I B NE-N m t 6 - 0 T D R 0 1 i4 c0 N U 6 3 0 e1 o , o s-L A I R O o o t et o r A U C C t t t

6. h 2

I 0 o1 0 06 T D F C 0 6 3 O R H. E ) G ,8 M N S 9,2, N I E T I N D T N 8,4 ) E I E 2 KN y O N I C~ S V 6, T EZ I 3 AO 3 r* R N I A O G O U l A F E 4 R B E C V F 5,1 6 N BP m 4, E N I I I I T Y V V T I R "0 EE D PC) L F F l I l I D A A O OR T 3,1, T ^ 2 e IA L M E A N M N L 2 A R S SW I P75 2,1 S 1 I s c I O I 3 3 M O S SO O I 1 E L C X 8 ) R N O OP S11 EA( U B O B I I I( E ( c I J I A N A I A A ( i

t ENVIRONMENTAL CON DITioNS FOR. AUX.lLI AR.Y BUILDING EQUIPMENT EG INTEG RH LIMITING DURATION FREQ/ TEMP ADDDI m O C @T FINAL PRESSURg ETA GN N NOIE CONDITION OF CONDITION 4 0 YRS (*F) (%) REF ds ) 5 !2 i g": AUXILIARY BUIIDING - RCIC 'IURBINE AND PLMP ROOM (BCCS AREA) (-> s t'- o " EL Q g-AB-3 (contd) PCCIDD7P (Contd) IARGE IIE PIPE

  • 0 to 2 min
  • 104*-122
  • 8-35%
  • (-)0.25" to (Note 6) (NOIS h 0

(G) BREAK IN DRYWELL 0" H O 2 (12)

  • 2 min to 100
  • 122*
  • 8-35%
  • 0 to (-) 0.25

HO O Days 2 Sh OO i i y A% OGE SUPPLIED DATA

u. EMVIR.ONMENTAL CONDITIONS FOR AUX,1L1 AR.Y 1501LDIMG EQOlPMENT INTEG INTEG ADDW l i RH m c4 LIMITING DURATION FREQ/ TEMP @T FINAL PRESSUR$1 ETA GN NM NOTE T ( CONDITION OF CONDITION 40 YRS (*F) (%) d 2) REF 1 !3 7 g- : AUXILIARY BUIIDING - RIIR PLNP ROCNS "A" AND "B" (BCCS ARFA) Q (-) 32 '-0" El AB-4 SLM/WINT NOIEAL IIVAC 151 104 -60*

  • 8-90%
  • (-)0.25 to 5.8 x #0 0

(-)l.0" H O 2 (INCL SIftTP-DN & PEFUELING) (9,11) o ABNOfB E IDSS OF HVAC IMP 1 CT - ([UE 'IO REDUNDANT NA'ItRE AND IOCATIO 4 OF IECS E UIP NO ST-BY IU1C 1: QUIP IS REQ'D OR PROVI )ED). [' Z IOSS OF OFFSITE IIVAC E UIP POk ERED BY DIV "ESF" BU 3ES POWER IP 5.8 x 10 0 (5) o ISOLATION EVENTS

  • 0 to 6.5 min 115
  • 104*-122*
  • 8-35%
  • (-) 0.25 to (1,2,3,4,5,6,7,8,14,

(-).1.0" II 0 (Note 8) 2 27,28,29)

  • 6.5 min-49 hr
  • 122
  • 8-35%
  • (-)0.25 to

(-)1.0" 11 0 2 i

  • 49-52 hr
  • 122*-104*
  • 20-90% * (-) 0.25 to

(-)1.0" H O 2 TEST

  • 0 to 6.5 min 2241
  • 104*-122
  • 8-35%
  • (-)0.25 to 0

(-)l.0" 11 O

  • 6.5 min-1 hr
  • 122*
  • 8-35%
  • (-)0.25t$

(1,2,3,16) ) (-)l.0" H O 2 i

  • 1 to 4 hr
  • 122*-104*
  • 20-90% * (-) 0.25 to j

(-)l.0" H O 2 N 8 .L

R

]

  • GR cirpor.TFn nn'PA I

^ b ,\\ i 8 t. s

>E D Q D

o %~". 4 7fi s4 I Qa $$g" l3 c $ T $U g$ SN ) E 4 M ( P I E ) U C 2 N/n 0 0 Q Ena Ut E LN F( )G 0 3 NO 1 GAI)s e x GE1 T d t U 5, i TP Aa o NNA D (r (N I 3 IG A I D R ) 4 L N I, 0 GAIC )s 1 e. x I U E T TdTEAa o t 0 SNB N 2 I E(r ( I I s g i i s s o o p p Y t t g g R 6 i i 5 5 5 2020 1 s s A 2 2 p 0 p 01 01 o I I t 6 6 5 3IL ) ) - " (-"0 0 l l 0 0 I ( X 1 1.U m m 6A 5 5 a a% ) 3 3 lel e0 0 ltl t0 0 ) 8 8 ASAS1 1 A R T( E E. O R A &F M '2 0 2 0 4 5 1 5 0 2 O 2 2 1 1 ) t 1 P AS M F ( E

  • 4 2

4 0 2 0 TN 0 2 0 5 1 5 "B T ( 1 1 1 2 2 1 O D IT S N / R A ) Q I g Y ( D E "A R 0 t N F 4 y s h O N S n y O N i 0a c r d PC I C m 0d e h 0 N O 1 s T R 6 0 O I 5 n 4 r 1 I 6 i 2 c h D P N M m e r T L A L o o s 2 h A R O P t 5 t 1 C 4 2 U 0 6 0 2 6 1 T D F R I I N O R E N G J I M I E N F N K )d" I M D L EW AE ) I E d PR [A t ID R N I BT U "o n P N G O B R N I o N l I T Y - C EI EE PC I T V T I R '. I D A 2 N K IA) ( I E EA) PJ5 M I 3 D GE2 EA(D1 M N L RR1 E I O I 4 I I C AB( I L C X )- B C 1 UA ( A I 1 l l\\ ifl .f1f llI 1l

__ [__ - _ ..P %6LE ".11-3 '}> ENVIRON MEMTAL CONDITlOhls FOR AOKILi AEY T501 LDI MG EQUlPMENT RH INTEG INTEG LIMITING DURATION FREQ/ TEMP BETA GN N ADDm m o s g ..t,SSURE NorE CONDITION OF CONDITION 4 0 YRS (*F) (%) T ( REF ds ds) Ej 1 !2 7 o' c ElXILIARY BUIIDING - RNCU PWP ROWS rt (-) 6 '-10" El N o as-s sW/WINP s NOINAL INAC 100*/60* 20-60% (-)0.25" to 1.4 x 70 0 (-)l.0" H O 2 ABNOINAL LOSS OF llVAC 0 to 8 min 10 100*-151

  • 3-60%
  • (-)0.25 to O

n ( -) 1. 0 " 112 0 1

  • 8-20 min 151*-100*
  • 5-90%
  • (-)0.25 to a

(-)l.0" 1I20 g IDSS OF OFFSITE

  • 0 to 27 sec 10
  • 100 -104
  • 17-60% * (-) 0.25 to 0

E POWER (-)1.0" H O 2

  • 27 sec-17 min
  • 104*-100
  • 17-90% * (-) 0s 25 to

(-) 1. 0 " 112 0 0O (INN FOWERED BY DIV N1 &N2 BUS BS, NORMAL PO VER, DG { BACFED, SIIFD W IOCA WLY) AOCIDENP IARGE IIE PIPE

  • 0 to 100 days
  • 100 -150'
  • 5 -60% * (-)0.25 to (Nota 6) I(40ta6) o (d'

BREAK IN DRYWELL (-)l.0" 11 0 2 s IIE PIPE BREAK IN 2 0 x to p,3 x fo 0 l IMll CWPAR'INENT e 2 i t l CGE SUPPLIED DATA l

E!f be. 03n:$2g o s .a .j g4 $ i :o [y' 3IonQ n 3 mg mT )4 N g F 1 E ( R E gggR M N(" P 1 O 0 0 0 u V Q [ D )4 E G 0 N G NN 7 E K .a x T Gt ca Y o 1 I B PD i Fp M IG 3 1 B R L GA E W ET d O I TE U NB P B l I SR NE o0 o o AW o 2 t 2 t t FO t Y R P 1 1 R U I ~ I S 5" 5 5 XE 5 20

2. O
2. O ET
2. O A

S 2 2 I 2 3i E 0l 0H 0H &S 0H L R )) ) ) F ) PF P "0 ( 0 UO I (( ( ( 0 X 1 3 3 I L U A sA TP 0 0 0 0 0 NU 0 N HI) 9 9 9 9 9 C R 9 RF% C K 0 5 5 5 5 t 0 T( 2 1 1 1 1 S 2 E._ R Sn

i l

l O R

t. F S

r S P e M N * - U P ) O 1 0 4 4 B A M F O w6 9 9 C rS E

  • R

/ / AV "N M a T ( S t 0 0 4 0 4 0 I M C S 9 9 9 9 9 ( 9 I J O XE S I / T Q O 0 0 1 R F ) E Y I 1 1 ( D R 0 E F 4 D N I O N S r s OC P r h y O U n h n a I N O i i O T m 0 m 5 d I S 1 2 0 IT D R 0 0 0 A N O 1 n 1 n 1 L R O D i i I o m o m o A U C R t t t D R 0 0 T F O 0 1 O 1 0 O C N E G L M N A r I E F T N D T A L I EY D gRO N I C S PR G O U l A F ID) D B E C V F P A E N I A H O NB I I I T Y V EIn L V T I R 0 L F F T P l I l I I D A A O OR N KA P M L M E E EAC U I M N L 2 A B S SW D GEO S E I O I 3 6 M 0 S SO I BRI L C X D DP C AB( E ) R t U B O B I T O I G A A N A A (

n" .o g A TABLE All-3 9 'n a= E8VIRONMENTAL DON DITiONS FOR AUKILIARY suitoi% EQUIPMEMT l INTEG INTEG k RH ADDEN m Ci LIMITING DURATION FREQ/ TEMP ETA GAMMA N @T FINAL PRESSURE NOTE CONDITION OF CONDITION 40 YRS (*F) (%) REP d 2) !3 i o m AUXILIARY BUIIDING - STEAM TUNNEL h 3. 9'-0"&l3'-0" El n SIN /WINr S NORMAL IIVAC 122 -60*

  • 10-90%
  • (-)0.25 to 9,fx to 0

0" H O 2 ABNOINAL O IDSS OF IIVAC 0 to 11 min 10 122*-180*

  • 0.8-25% *(-)0.25 to 0

y 0" H2O

  • ll min-1 hr 180
  • 0.8-25% * (-) 0.25 to 0" 1120
  • l-2.5 hr 180 -122*
  • 10-90%
  • (-)0.25 to j

0" H O 2 IOSS OF OFFSITE O to 11 min, 10 (SIMIIAR 'IY i NOINAL IVAC SINCE IIVA: POERED BY DIV N1 n POWER

  • 11 min-2.5 hr

&N2 BUSEE - NOIM L POWER, DG BhZED, SIEI ON IDCA O

  • 2.5-4 hr N LY)

ACCIDENT U} IARGE IIE PIPE

  • 0 to 1 hr
  • 122*-180*
  • 0.8-25% *0 to 2 psig FI G. 5 FIGa. 4 0

(4) BREAK IN DRYWELL

  • 1 hr-100 days
  • 180 -150*
  • 4-42%
  • 2-0.5 psig (Nota 4) (flote. 4)

(IDCA-DBA) IIE PIPE BREAK ' o to 0.5 sec_

  1. 12.1'- 24 8 All Steam "O to Epsey

( Not Sl' EN F ac A asT)o IN STEAM 'IUNNEL 'O.Esee - I hr

  • 14o*-315*
  • 5ps 3
  • I
t. 1 kr

" 3 L5"

  • 5pssy
  • 1 1: 6 kr
  • 325*-181*

r

  • 5 e e i psg

" G hr - loo days

  • 1: 2*- 150*

soo '1 to 0.fpsig n y m TORNADO ' o t. 1.5 see

  • o 4:o t-33pu3 o

' s,5 - 4 5 sec % s paq '4 5 - 44,.53ec Y-13 to o psg jGESUPPLIEDDATA j h

I lll l ll1 !?QU oMn2>h ;P 0 s p Il. C < } $d3< O$*g" MWmn n ($ g$ n 9 DEF )4 4 DPE ( O. M. T DOR AN N/a E ) 2 M O n h O P 4/ ( ) CI ) U W a OD G O R Q GNM)d G h* Y I s s E YB K. D E T a I N D (r 1 r iE FM IG A rR ( N C, .I 1 c R BW R O ) I GA s D P N I ETMd E C AN I TE a E EA D T F E,(r NB 1 A N3 I L R i FN 0 0O P C 2 N N 5 E oH E AS 1 R t V FAI U I 5 R T S S 2 U N4 O EO Y. E 0 l VO l ) / R R 3E P S Y ( E BY A S K I t t 1 L A S r L A r I 0 6 O SA N HI) 1 ) X RF% V AB I 0 R) I I V U T( D 2 IS ( AN I 1 A N l ) 2O ) K 1R Pl S l T CCU 1 1 AB MY R d N

  • I O "F PE u

P ) n I 6 L M O M F a W 6 M / / I i F E

  • 4 M
  • Nr SS T

U 6 IN OLE ( S 9 MB NA" ( 2 S S N / R 1 _0 Q O Y E V .( I R 0 I T F 4 D f ID N ON O S 4 N O I O O T O I d I R D TA N i R O m L C i U r A D F A-T O B R KAL E G ) A N A E L T I E E R E A M D YR T D LA I B S W lO N I J N IU Ok F T D EY G O B G F F R N I T - O M R T. I T Y l NW E P T D P V T I R E ES L F I I I D A V A OR D P D T I L M M E H M N L "0 m O R SW I l N I E I O I 8 XR O 6O c EI F. I u EF N OP c H C L C X I U 1 B O B I ( A 1 A N A A

V .l 1 s g :< $ I< l a$ " E g'nn$ m$ gEF ) (4 T gN TE TC R HEM N O P U W 1 C I L I r,)4 Q '0 C EN G 1 W E G* r T x. T. N 2 I r F n IG 1 ) G X ( N GA S I U ET D B TE L NB "F I l 3 u E B g " O V R 5 2 I U

2. H D

S N 0 Y S B E o R R t D A P E 0 RE IL 0 L A I 0 1 X N HI) 9 U RF% C) 0 AW A T( 1 VS hE ( l Y .R TB O 0 CD P W 6 AE ) F M F / PI E

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0 IP T ( 2 P S i OU M m NS O / S b R Y Q S I Y T ER 0 L I D F 4 AE N N S O O E I N V C O T I I T I D I T S N L A O R O P A U C T D R F I N O A E K M C A L A E U E R L. T N D T A BE D O I I R G O U F T W N I S D B C FO N E Y. E N I I T Y l W E PR L I IV T I R E H F D P l N I D A M OR D P P M N T. L M E U ) I O T 6 A R SW E N S r 9 N O SO c. EI L C x N DP E I u 8 B O B I c H G A2 A N A A i l 1

_ _ _ O'- - - - - '7 ~ y T^ e,'E 30-3 m* i ENVi RDh1 MENTAL COMDITIONS FOR AUXILIARY E9)ltoING EQUIPMENT LIMITING DURATION FREQ/ TC*tP RH N IN ADDDI to O @T FINAL PRESSURE BETA GMA N CONDITION OF CONDITION 4 0 YRS (*F) (%) f IOrE (" REF E 1 W3 AUXILIARY BUIWItK; - CRD MAINID1ANCE ROrN. CORRTmRs. CARTR 'TYmIPr. O '< rr w 'tr w ? vrw prims m (-) 6 '-10" El Q b An-10 tKHML llVAC Sal /WINF (1) CRD fMINF 75*/60* 20-90% 0 to (-)0.25" 4.4 x lo' o !! 0 (2) 00RR & C 'IUN 2 90*/60 20-90% 0 to 0.25" e, t x f o' o (3) ELEV 'IOWER II20 n 90*/60* 20-90% 0 to 0.25" i, t x id' o 1 (4) ELEV EQ IN H2O 104*/60* 20-90% 0 to 0.25" i.1 x 80* o m (101'-6" El) !!20 j C ABNOINAL Z I F wSS OF INAC ( n).946%. TEM R CONTRcL AMD HO PRESS. CONTROL ) O sine.weu.e ts,,u o L.IL.- % n s o*-s30* so - c.0% LOSS OF OFFSITE o ? (INAC EQUII AND CRD DOI FAN IVIERID BY PKN-SIV "N" BlS, - POWER INTERRUPT OFFSITE OWER) ACCIDENT (0 ME PIPE 15REAK ( SAME A5 LOSS C F HVAC. NOTI)- FICs. C. o (4.) IN DR.YWELL (Note. 4-) 2 GE SUPPLIED DATA bt

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S D I' M C N4 A. T 0 L 0 00 0 NE A ( S 1 S 11 1 AKR S s 1 FCA ( u T l I FBI S N 7 M o / R E Q M DGI Y ) i E P VDS T R 0 I ( 1, ( F 4 U I D Q N E M O C rr I o N A hh T V d O 22 I l I l T DN L 11 A A L R O R oo U C E tt A D N T F E O0 O G M. K ) 2 E A G M N V EL I E I RL T D BE N D ) ) I RR I O N I CEE S R W U APP F O E #r G O R B C) VOO F N I O 1 l Pi 1 l I T Y l V Y 12 H T I R E L L F F V T D I I M I D A N A OVV ORI N P I I L O N II ED E E M N L 6 l A SDD SW/ D EN I I O I l N V O S/ SOW I I N L (W (W LP( C L C X H l B I I C U 8 B 0 (I A A I A 2 A 1 l

n. sg C F CRAUN O CO Paga 35 W V Cralley n General Electric ~~- -b San.Tose TAlbLE. 3.ll-3 AUXILIARY BUILDING ADDENDUM TO DATA SHEETS 1 The secondary containment zone within the Auxiliary Building, consisting of the ECCS and RWCU equipment spaces, is isolated from the remainder of the building areas by leaktight physical barriers. Pres ure control is provided for these ECCS and RWCU rooms by means of redundant pressure control supply and exhaust fan systems. The differential pressure controller (RR604) at the (-)32'-0" elevation corridor, outside the ECCS rooms, throttles the damper in the supply air system which furnishes air to the corridor only. This supply air throttling, in conjunction with the constant suction from the corridor and ECCS and RWCU rooms by the exhaust fan system, maintains a negative static pressure within the area with respect to the surrounding areas and the outside atmosphere. Since the supply and exhaust fans are on normal interruptible off-site power, a loss of this off-site' power will result in the loss of the negative pressure control within the area.

However, since there is an alternate valved bypass arrangement from the

( exhaust system to the SGTS, the SGTS can be manually actuated to provide a direct suction exhaust for the ECCS and RWCU rooms. 2 A slight positive static pressure is provided throughout the remainder of the auxiliary building, except for (1) the battery rooms and the CRD maintenance area which will be slightly negative due to their respective exhaust systems, and also (2) the steam tunnel area which is open to the turbine building but has only blow-out panel access to the auxiliary building RHR "A" and "B" areas. The slight positive pressure in the HVAC equipment rooms at 28'-6" elevation is provided during summer cooling only by means of the room supply air fans which furnish once-through 100 percent outside air for ventilation. These fans do not operate during winter heating and thus there is no room pressurization provided at the time. The fans however, are powered by the divisional N1 and N2 diesel generator backed buses. The slight positive pressure throughout the remaining areas is provided by the main air conditioning systems which furnish a minimum of outside air for exhaust makeup and general building pressurization. Since these air conditioning system fans are on normal interruptible off-site power, a loss of this off-site power will result in the loss of the positive preceurization for the g{ general building area. 3. Zone AB-7, steam tunnel. For a loss of either divisional bus one of the two A/C units will be lost and the tunnel temperature will rise to 1350F with the 0 ESW supply at its maximum of 100 F. For LOCA the resulting environ;nental conditions will be the same as for loss of HVAC event. l W

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== [ L-.____ c n b... x 3- ..:v3 1.g. *" ~ 4.s .3sk .[_. .t

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C F CRAUN O CO .' age, '.d s,s sa ts ~~" w v cen11.u General Electric San Jose .( c \\w 7 c. ~ 1 'g i o 0 0 o o e ^ sn +V n C*n w Q 'o 8 y h %;5 I l

  • 8 i

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  • AM Z

3 g 5 k EI Ih c I o E 7 -I 2 _) oS J f 50 4 -: 84 I2 y d J I.2 4 [w 4 r Y .3 j 4 a. 0 8 a co-osa .o,2 - ,o y,- y Si I E .{ 2 0 i d El 5s g e*2 c = =o g eg e. a g 8 O 'o M 2 V 2A s 2 z*

  • E H B w

3 J 4 o 4 I W u4 W H H u. d) 'N Jc. C-y QL c ni g dy W <L M O W 6$ N. u. b. .J d y 2 o o s <e M 0 4 4 0 W m m au h k [ bb$ g h& 2

'r Abt.-.L

3. I I 55 EMN/ t RO N MEM T Al._

CO NDITt o u s Fo P-FUEL-BWLDI MG. EQU t P MF_RT INTEG INTEG l LIMITING DURATION FREQ/ TEMP BETA GAMMA N ST FINAL PRESSURg U EEU@ I CONDITION OF CONDITION 40 YRS (*F) (%) RtF (rads) (rads) a 2) g g 7 e I D i a' c FUEL BOILDiMG - FPccu FILTER /oEMin BAcxwAsu TAMW,, RM S (-) 3 z'-o"EL Zn FB-IA sum /wlNT NORMAL HVAC 12*/co* 25-65% T-> o.1 t e f.o" s.1 x lo o (I) Ho t Ae>ktoRMAl._ LOSS OF H VAc-o to q mm. *fo 9 2 *- /1 1

  • lt-3f% 4)o.iteOI.o' (7) o U

Hg.o '4 man. ti> l Le. II L' IL-3SZ w i

  • 1 a 1.s s,.

,1 e - gz* 1s-crz n C i 2 i Loss oF OFFSITE o to IS's.un.

  • 10 12"- 10 &* 17-42) 1-> a.E h 0"n o 0

(8) g, n Po wER. 'ifmm -2dhr ios' 17~4Q Y') D. I " O '*s * 'O l

  • 2.5 - s I, r.

10G*- 9 1* 26-CQ %o.s kHl.o l "88 ? Accl DEMT (. 0 LARGE HE PIPE "o t 10 mm. 91 - f oG l'/- 41) T->o.1M-)l.o 4.o x io' S,3 x to o (4)(q) H a.O (N ots-II) (W0te. II) (lt) 15REAK sal DRYhttft1 l

  • lo mm - I day
log,
  1. 7-417.'

(100 DAYS)

  • I to 10odeys i O G - 4 L" 15-652 h

FUEL HANDLIMor

  • o b 10 mea 91 -181* 11-3f] t-)0.1 twt.)l,0 3.0 x 10 3.5 x 10 o

('l NO N I h0N l ACG.I D EMT y L yom,,.ggay ,,1* ,,,yy (soo pAvs') I

  • 8 to loo </ays s I 2*- 9 t
  • 25-SSR e

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C F CRAUN O CO Pcga 96~ y v cra11 y General Electric San Jose Ov 8 u) ll$ g c so 89 2 5 g5 go v c .s c. b O O O e iu g 4e 4,2 o~n ~~n o ~ 6 5 I I %dk 543 a van en 2 -og- [y +e?*o -O %co

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~ i P a g a y /p C F CRAUN O CO , 'n - w v rrm11.y General Electric hI San Jose e ( W o e e co . sgIg is 2 28 ga ~ o e D h o 0 0 0 0 cr 12 o w? o+ v

  • o ' O o

6 T I I j 82 j 'E 4.D Ed7 2 a zt it t o E 64

54 "olu gg 2

4 H co 4."ee ' {, fr ao o ~ I 0 l [ l 4.4.C 2.40 o og = 2 Nu.2u $ 2 og

  • 6 ma h-

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    • m'=+

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  • e 'o 6

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(%l (it ng y TABLE' 3.11 3 2 E MV t EDM MF_MTAL CONDITIONS FO R. FOEL ButLDL NG EQO)PMEMT INTE INTEG RH ADDEN m o a LIMITING DURATION FREQ/ TEMP A @T FINAL PRESSURE NOTE CONDITION OF CONDITION 40 YRS (*F) (%) REF d l 5 e N.x 1 e FUEL BulLDING - SGTS FAN AND FILYEK ROOMS S (-> 513 4 (-)17'oEL E ( n pg 4 sum /WINT l o (so3 nom Ai_ uvAc. vo-/so-so-c.oA e o.i +..(-)l.o Mo t ASMoRMAL (5 ) Loss oF 84VAc. fio* MAX 12-30 % (-S o.I t.O f.a o NJ O l LOSS OF OFFSITE 120* MAX lt-30 ff (-) o,f t. O *N,0 o (4,) y POWElt s 3 3.9 x to o (15) iCoLATa0N EVENTS i 2o* MAX J 2.-3 o f,' (-)o.; to (-)1.0 (Mote 15) G ACCIDEhlT n LAEd E ME PIPE (f ) 11D* max 11-30 % M O,1 t.(-)I 0 6 i j E,KEAK IN DitNWEU Mso FIA. I o (f(,) S&Ts FILTER RM V v v (Note. I6) S6TS FAM RM v v v 4,0 s lO g,(,xgo# o (lta) l (Nota.16) (Mata_16) i i 5t

  • GE StIPPLIED DATA l

C F CRAUN O CO Pcgo pg j ,Q. - ,_w v evallav General Electric San Jose nb C sa se a I ji o o o o o L_, ..c N M e l l I f 5, h6 43 f %c +.0 ~ o, A me x3 J ew m. o I i i xo c zm u y h kh -) Q 8 g 9 =. 33 % oS og

.

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8 O' %N e N.daque y N .p.. h [ TABLE 3.1 N FUEL. ButLDI MG AccEDIDOM h. Y l'- 4h c g c d;.....c4 e..G w.Lu. 4.;J fy_ f' C esu,p...~ K 14 .-4 ~..~ tupw.aaz s c, s 7 4,,. n, ~. C w a a. ( n +. .cf"a- ^t~y J ~ 1 '~ 4'h ,L le.s. NVn c. s: . ~ c w . s.. ~,, a,_ ; s t s. _, 7-,C.c_ of th,~p.lmEj uo~Cd ~~6 C. .j) cac~. I,.. e.. wa -, tbu'a.-% 6 ja, 4. . 6+ ~% t~' i a "n ~ s.. _ y. 9 z u n... .c w a d e-o,'G~LL.c,gg n T ~ nf ja.a..a.:c wGL uL.. -t,4.m.. *?( 4~ - I'20' 7, s,xL2i~ainJ rkatp.2 g ~ M gc.,,.o v ( n.d i f w.~ ~ L L n ~ c..p w, % n 2

s. 4 % pw.. m.2GL:.,Jn-ej

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= ~ -. ~.. 37

4_._

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d. _

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- ~.. - - C F CRAUN O CO P2qn @ s7e ?? ?S W V Cralley ) General Electric San Jose TAELE. 3. il-f CONTROL BUILDING ADDENDUM TO DATA SHEETS (RR602A/B) at the (-)6'-10" 4 The differential pressure controllers elevation corridors throttle dampers in the return air ducts to the 1 This throttling division 1 and 2 Control Room Return / Exhaust fans. of the return air system provides the means of controlling a positive pressure within the control and computer rooms area with respect to the ambient. (RR601A/B) at the 11'-0" The differential pressure controllers elevation corridors throttle dampers in the return air ducts to the 2 This division 1 and 2 Control Equipment Room Return / Exhaust fans. throttling of the return air system provides the means of controlling a positivo pressure within the Control Equipment room area with respect to the ambient. No pressure control is provided within the fan room areas at the 3 28'-6" elevation. If there is a high radiation level in the building outdoor air the normal outdoor 4 supply, such as may be possible during a LOCA, ( air supply to the building A/C units is shut-off and the outdoor air This supply is provided through the Outdoor Air Cleanup Units. highly filtered outdoor air is of a sufficient quantity to pressurize the building as it provides the corresponding leakage rate for the building. During the smoke removal mode the following fans will operate at reduced air flow rate: (1) the building A/C supply fan at 50 percent 5 (2) the control equipment area (11'-0" elevation) exhaust /

capacity, the control room area return fan at 50 percent capacity, and (3) exhaust / return fan at 66 percent cap

((-)6'-10" elevation) The radiation doses are based on the Loss of Coolant Accident 6 utilizing Regulatory Guide 1.3 assumptions. 1

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