TXX-6936, Forwards Info Associated W/Wcap 11331 Re Plant Thermal/ Hydraulic Analysis of Fire Safe Shutdown Scenario,Per NRC 871104 Request.Record of 871104 Telcon W/Westinghouse Encl

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Forwards Info Associated W/Wcap 11331 Re Plant Thermal/ Hydraulic Analysis of Fire Safe Shutdown Scenario,Per NRC 871104 Request.Record of 871104 Telcon W/Westinghouse Encl
ML20236M512
Person / Time
Site: Comanche Peak  
Issue date: 11/05/1987
From: Counsil W, Woodlan D
TEXAS UTILITIES ELECTRIC CO. (TU ELECTRIC)
To:
NRC OFFICE OF ADMINISTRATION & RESOURCES MANAGEMENT (ARM)
References
TXX-6936, NUDOCS 8711130157
Download: ML20236M512 (6)


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wmi s c. c=nsit November 5,.1987' '

' Encuive Vice President ~ < '

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U. S~.' Nuclear Regulatory Commission

. Attn: Document Control Desk-- ,

Washington, DC 20555 i

SUBJECT:

COMANCHE PEAK STEAM' ELECTRIC STATION'(CPSES) ,

DOCKET NOS. 50-445 and 50-446' l

-TRANSMITTAL OF INFORMATION ASSOCIATED WITH WCAP 11331, COMANCHE 1 PEAK STEAM . ELECTRIC STATION' THERMAL / HYDRAULIC ANALYSIS .0F FIRE SAFE SHUTDOWN-SCENARIO-Gentlemen: I

~

i Attached are copies of a comparison. of time frames used for' WCAP 11331 and l

. EPM.-P0257-167-000 - and a. telephone . conversation record containing data used to , calculate PRTc rupture time ~ with ~ spurious Safety Injection in the WCAP. ,

Please' note the WCAP calculation of PRT rupture time' represents a conservative ~

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estimate and-is'not. intended to be a~best estimate.

i Thi's information ~is provided in response to our. telephone conversation of November,4, 1987, with your staff.

Very truly yours.

W. G. cA W. G. Counsil By: _

D. R. Woodlan j Supec.Isor  ;

Docket Licensing R08/vjt Attachment  ;

~ c1- Mr. A. Fresco, BNL .

Mr. R.'D. Martin,' Region IV 1 Mr. A. Singh, OSP. g J

- Resident Inspectors, CPSES (3) 0y 8

' ' 8711130157 871105 i g PDR ADOCK 05000445-

p. .PDR- 1 i 400 Nonh Olive Street LB 81 Dallas, Texas 73201 )

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l. Attachment 1

. Sheet 2 of 3 COMPARISON OF CALCU'.ATION NO. EPM-P0257-167-000 TIMEFRAMES' .

TO WESTINGHOUSE SPURIOUS SI ANALYSIS (WCAP 11331, p. 67 and 106) I l

Time (sec) Westinghouse Cale No. EPM-P0257-167-000 0 Offsite power available (Same)

Trip Reactor (manual)

Trip-Main FW Pumps 120-1270 RCS Pressure at Safety (Same)

Valve Setpoint 180 Close MSIVs Trip RCPs (Same) 300 Stop One Charging /SI Pump 720 Initiate AFW Flow at (Same) 235 gpm/SG to Genera-tors 1 and 2 780 Terminate Safety Injection Flow 840 Stop One Charging /SI Pump 1020 Terminate PRZ Heater (Same)

Operation.

1050 Pressurizer Level at 100%

1140 Terminate Safety Injec-tion Flow 2290 Approximate Time of In- (Same) active Loop SG Dryout (SGs 3 and 4) 2290-3870 RCS Pressure at Safety RCS Pressure at Safety Valve Setpoint (Liquid Valve Setpoint Break Flow Discharge) 2800 Throttle AFW (Same) 3120 PRT Rupture (WCAP 11331

p. 67)

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PRT. .Does ~ Not ' Rupture' .

.y 3600 _ Transient'.Terminati.on (Same)'

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j NE-13912 TXX-6936 Attachm*Ht 2' '

.  : ELEPHONE CONVERSATION. RECORD

. Sheet 1 of 2.- Date: 11/04287

,< Time: 4:10pm' CST l

. Call;by: A. F. cannon of '4 1

' Westinghouse (Name) (Company)-

s ay Answer.by _ H. R. Beck of CPE, Fire Protection (Name) -(Company)

, ' Subject discussed _

COMANCHE PEAK STEAM ELECTRIC STATION WESTINGHOUSE CALCULATION OF PRT RUPTURE TIME IN WCAP-11331

~I I

SUMMARY

OF DISCUSSION, DECISIONS AND COMMITMENTS.

t Andy' time.

Gagnon called to give data concerning the calculation of PRT rupture I At the beginning of the transient there is capacity in the PRT for

the addition'of 19926 lba of fluid discharge. .The following fluid contribu-tions to the~PRT were assumed
'

Seal Leakoff 0-600~ seconds 705.8 lb 600-1140 seconds 4447 lb 1140-2800 seconds 1952.9 lb Seal Iniection_

1140-2800 seconds 2752 lb Safety Valve Discharge (Intermittent) 0-2800 seconds 4140 lbm A contribution of 2166 lbm is added to account for density change of the fluid in the PRT.

Therefore, at 2800 seconds allowable discharge mass remaining = 19926 - (705.8

. + 4447 + 1952.9 + 2752 + 4140 + 2166) = 3762 lbm (still available) <

After 2800 seconds:

Safety Valve Flow = 10.2 lbm/see Seal Leakoff Flow =

1.18 lbm/sec Seal Injection Flow = 1.66 lbm/sec 13.04 lbm/sec

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3762 lbd = 288.' seconds I

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1  : Time to Rupture =

2800.+<288 = 3088 seconds = 52 minutes .

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