ML19354E670

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Rev 2 to, Unit 2 Pump & Valve Inservice Test Plan.
ML19354E670
Person / Time
Site: South Texas STP Nuclear Operating Company icon.png
Issue date: 01/08/1990
From: Jordan J, Post B
HOUSTON LIGHTING & POWER CO.
To:
Shared Package
ML19354E669 List:
References
PROC-900108, NUDOCS 9002010057
Download: ML19354E670 (121)


Text

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l SOUTH TEXAS PROJECT-ELECTRIC GENERATING STATION j

HOUSTON LIGHTING AND POWER COMPANY-1 3

UNIT 2 PUNP AND VALVE ,

INSERVICE TEST PLAN c Prepared by: ,

BL _

M"/ '

Cogn ant Engineer Date Approved bya w PM[Eligin ering Manager #

7!h Date ,

Approved by 1 #A %\ Pb-90

'* ~ Plan Q ager Date l

t-i i Revision 2 l

I i i l

900Nkg KO 3C PDR l p -1 i

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!4 1

.i TABLE OF CONTENTS Rev.-2!

1.0 INTRODUCTION

1 1.1 General l

1.2 Scope i 1

1.3 Effective Period 1.4 Plan Revisions

'2.0 INSERVICE TESTING OF PUMPS' l

2.1 Requests for Relief from ASME Boiler and Pressure Vessel Code Section XI Requirements 3.0 INSERVICE TESTING OF VALVES 3.1 Requests for Relief from ASME Boller and Pressure Vessel Code Section XI Requirements-and Clarifications of Valve Testing Methods 4.0 DRAWINGS 1

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1.O Unhsgryn In g_le1LPlan IIIIRQDVCIlQR Rev. 2 11 QgntLR1 This Code document is pr epared in Revision 3. wasof Federal Regulations 1 accordance wit for 9the MS pumps 01 -4 ,

inclused forsafety-relat0CFR50 55a(g). h the requirements uded "Ident of the

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Testing Programs"ificationin, was this plan. ed classification dRegulatory subject to the testing Boiler used as guidance for dof Valves for Inc requirements n in Inservicede, Task.

1.2 SJ;u;tes and Pressure Vessel Code. of Subsection IWV ofetermining s the valve the t.SME This document pr Unit 2 preparedtesting in planof for thovides a description IWP and IWV ofaccordancee 1983 th South Texas Project Ethe pump and by South Texas ProjEdition requirementslectric througheofASMEtation Generating BoilerwithSnservice the Specification 4 0 S Summer Addenda. 1983and Pressure Vessel C Subsections ect Electric Generati 1.3 . .

This plan isode Section XI, Eligs11Eg_.EgI1gd ng Station Unit 2 Techreferenced nical This document remain in goshall into 14 operation. effect through the fieffect prior to fuel rst 120 month load P.lRD Rgylg1QD1 As a interval of commercihad al shall for minimus, this plan compliance end of will be this plan interval.the willfirst be 120s monthwith effect the ASME code inreviewed an submit plan Houston reviewed Lighting and and revised or fof on.

commercialtheoperati12 months prior revisions Similarly, valve inservice test an plwhich may enhancePower Company reseeach su at any time rves the onth

. within theor improveright this to pump and effective period.

V

Unit 2 Pump and' Valve Rev.- 2 Intervice Test Plan

1.0 INTRODUCTION

1.1 General This document is prepared in accordance with the ' requirements of- the Code of Federal Regulations 10CTR50 55a(g). . Regulatory Guide 1.26, Revision 3, was used for safety-related classification determination for the pumps included in this plan. Draft Regulatory Guide, Task MS 901-4, " Identification of Valves for Inclusion in' Inservice Testing Programs", was used as guidance for_ determining the valves subject to the testing requirements.of Subsection IWV of-the ASMEi Boiler and Pressure Vessel Code.

1.2 Scope This document provides a description of the pump and valve inservice ,

testing plan for the South Texas Project Electric Generating Station '

Unit 2 prepared in accordance with the requirements of subsections IWP and'IWV of the ASME Boiler and Pressure Vessel Code Section XI, 1983 Edition through Summer 1983 Addenda. This plan is referenced by South Texas Project Electric Generating Station Unit 2 Technical Specification 4.0.5.

.i 1.3 Effective Period This document shall go into effect prior to fuel load and shall then remain in effect through the first 120 month-interval.of commercial i operation.

1.4 Plan Revisions  !

As a minimum, this plan will be reviewed and revised as necessary .l for compliance with the ASME code in effect 12 months prior to the end of the first 120 months of: commercial operation. .Similarly,  !

this plan will be reviewed and revised for each subsequent 120 month interval. Houston Lighting and Power-Company reserves the right to )

submit plan revisions which may enhance or improve this pump and  ;

valve inservice test plan at any time within the effective period.

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J Unit 2 Pump and valva Rev. 2-

_ Inservice Test Plan ]

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2.0 1RSERVICE TESTING OF PUKPS  ;

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The table " Unit 2 IST Pump List" describes the inservice test plan for i pumps subject to the requirements of subsection IWP.of the ASME Boiler and Pressure Vessel Code section XI, 1983 Edition through Summer 1983. -

Addenda. The table provides the following informations l

a. Identification of the pumps to be tested,
b. Applicable ASME code class,
c. P&IL and P&ID grid coordinates (See Section 4.0, Drawings),
d. . Test parameters to be measured,
e. Test interval,
f. Relief requests,
g. Remarks.

Relief from the requirements of Section.XI is requested where full-compliance with the code is not practical. In such cases, specific information is provided in Gection 2.1 which ' identifies the applicable q code requirements, justification for the relief request, and the alternate testing to be performed.

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Unit 2 IST Pump List Page 1 of 12 M iliary Feedwater - AF Rev. 2 I  ! ASME l l PEID ll l l ll l l Pump l Code l l Grid ll Measured l Test l . Relief ll l l Identification l Classi P&ID l Coordinates ll Test Parameters  ! Interval l Requestsli Remark.s l l l l l ll l l- ll l l Auxiliary Feedwater l 3 l FOOO14 l F7 ll 1. Inlet Pressure (Pi) l Quarterly l -

ll l l Pump 21 l l l ll l l ll l l l l l ll 2. Outlet Pressure (Po) l Quarterly l -

ll. l l l l l ll l -l ll l l Auxiliary Feedwater l 3 l FOOO24 l D7 ll 3. Differential Pressure l Quarterly l -

ll l l Pump 22 l l l ll (o P = Po-Pi) l l ll l l l l l ll 1 l ll l.

l l l l ll 4. Flow Rate (Q) l Quarterly l -

ll l l Auxiliary Feedwater l 3 l FOOO24 l B7 ll l l ll l l Pump 23 l l l ll S. Vibration Amplitude (V) l Quarterly lRR4, RR6 ll l i l l l ll l l ll l l l l l ll 6. Bearing Temperature (Tb)l Annually l 'RR7 ll l l l l l ll l l ll l l l l l ll 7. Lubricant Level or l Observe l -

ll l l l l l ll Pressurte  ! Quarterly l ll l l l l l ll l l ll l -!

l l l l ll 8. Speed (N) l Not- l -

ll l l l l l ll l Applicable l ll l l 1 1 I 11 I l' Il l. ,

3

Unit 2 IST Pump List Page 2 of 12 Auxiliary Feedwater - AF Rev. 2 l l ASME l l P&ID ll l l ll l l Pump l Code l l Grid ll Measured l Test l Relief ll l Identification l Classl P&ID I Coordinates iI Test Parameters I Interval I Requests!I 9 - rks l l

l l l l ll l l ll l l Auxiliary Feedwater l 3 l FOOO24 l H7 ll 1. Inlet Pressure (Pi) l Quarterly l -

ll l l Pump 24 l l l ll l l ll l l l l l ll 2. Outlet Pressure (Po) l Quarterly l -

ll l l l l l ll -l l ll l l l l ~l ll 3. Differential Pressure .l Quarterly l -

ll l l l l l ll (d P = Po-Pi) l l ll l l i  ! l ll l l ll l l l l l ll 4. Flow Rate (Q) l Quarterly l -

ll l l l l l ll l l ll l l l l l ll 5. Vibration Amplitude (V) l Quarterly lRR4, RR6 ll l l l l- l ll l l ll l 1 l l l l ll 6. Bearing Temperature (ii3)l Annually l RR7 ll l 1 l l l ll l l ll 1 l l l l ll 7. Lubricant Level or l Observe l -

ll l l l l l ll Pressure l Quarterly l ll l l l l- l ll l -l ll l l l l l ll 8. Speed (N) ] Quarterly l -

ll 'l l l l 1 Il l~ I II l

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-i i

4 4- - - - -s - s _.__ a . _ _ .____m____ .._________ _ ____

a __"< -

-y v - - y, o  % -v-- s ,v vvr= u.-m-v,

Unit 2 IST Pump List Page 3 of 12

.C A ..ent Cooline Water - CC Rev. 2 l l ASME l l PEID ll l l ll 'l l Pump l Code l l Grid ll Measured l Test l Relief ll l l Identification l Classl P&ID l Coordinates II Test Parameters l Interval I Reauestsll D-rtr.s l l l l l ll l l ll l l Component Cooling l 3 l F05017 l B7 ll 1. Inlet Pressure (Pi) l Quarterly l -

ll l l Water Pump 2A l l l ll l l ll l l l l l ll 2. Outlet Pressure (Po) l Quarterly l -

ll l l l l l ll l l ll l l Component Cooling l 3 l F05018 l B7 ll 3. Differential' Pressure l Quarterly l -

ll l l Water Pump 2B l l l ll (A P = Po-P1) l l ll l l l l l ll l l ll l l l l l ll 4. Flow Rate (Q) l Quarterly l -

ll l l Component Cooling l 3 l F05019 l B7 ll l l ll l l Water Pump 2C l l l ll 5. Vibration Amplitude (Y) l Quarterly lRR4,.RR6 ll l l l l l ll l l ll l.

l -l l l ll 6. Bearing Temperature (Tb)l Annually l RR7 ll l l l l l ll l l ll l l l l l ll 7. Lubricant Level or l Observe l -

ll l l l l l ll Pressure l Quarterly l ll l l l l l ll l l ll- l l l l l. l l 8. - Speed (N) l Not l -

ll l l l l l ll l Applicable l ll l l l l 1 ll I l ll 1.

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- -- - e m._,.. 3 . Z. : _ _ _ _ _ . _ _ _ _ _ _ _ _ _ _ _ _ _ _ . _ _ _ _ _ ___._.m_.m_., __._.__._J.m ..j

Epit 2 IST Pump List Page e of 12 Essential Chilled Water - CH _'Rev. 2 l l ASME l l P&ID ll l l ll l l Pump l Code l l Grid ll Measured l Test l Relief ll l l Identification I ClassI P&ID l Coordinates ll Test Parameters l Interval I Requests!l Remarats. l l l l l ll l l ll l l Essential Chilled l 3 l Y10001 l F7 ll 1. Inlet Pressure (Pi) l Quarterly l -

ll l l Water Pump 21 A l l l ll l .

l ll l l l l l ll 2. Outlet Pressure (Po) l Quarterly l -

ll l l l l l ll l -l .ll l l Essential Chilled l 3 l Y10001 l D7 ll 3. Differential Pressure l Quarterly l -

ll .l l Water Pump'21 B -l l l ll (d P = Po-Pi) l l ll l l l l l ll l l ll l l l l l ll 4. Flow Rate (Q) l Quarterly l -

ll l l Essential Chilled l 3 l Y10001 l' A7 ll l l ll l.

l Water Pump 21'C l l l ll S. Yibration Amplitude (Y) l Quarterly IRR4, RE6 ll .l l l l l ll l l ll l l l l l ll 6. Bearing Temperature'(Tb)l Annually l RR7 ll l ll ll l l l l l- l l l l l l ll 7. Lubricant Level or l Observe l -

ll l .;

l l l l ll Pressure l Quarterly l ll l l l- l l ll l l ll l .

l l l l ll s. speed (n) .l wot l -

ll l l l l l =ll- l Applicable l ll. l l 1 1 I 11 l' I 11 l 6

. _ _ _ _ _ . _____1._ L _u _ .u .. _ _ _ . . _ _ _ . ._i,_ .____.u1._ _...._1_ ,,. . . . . . , _ . . . .

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Unit 2 IST Pump List Page 5 of 12 Containment Sprav - CS Rev. 2 l l ASME l l PEID ll l l ll l' l Pump l Code l l Grid .ll Neasured l Test l Relief ll l l Identification l Classl PEID l Coordinates Il Test Parameters I Interval I RequestslI Remarks l 1 l l l ll l 1 li l l Containment Spray l 2 l F05037 l G3 ll 1. Inlet Pressure _(Pi) l Quarterly l -

ll l l Pump 2A l l l ll l l ll l' l l l l ll 2. Outlet Pressure (Po) l Quarterly l -

ll l l l l l ll l 1 ll l l Containment Spray l 2 l F05037 l E3 ll 3. Differential Pressure l Quarterly l -

ll l-l Pump 2B l l l ll (d ? = Po-Pi) l l ll l '

l l l l ll 1 l ll l -

l l l l ll 4. Flow Rate (Q) l Quarterly l -

ll l 'l

.l Containment Spray l 2 l F05037 l C3 ll l l ll l l Pump 2C l l l ll 5. Yibration Amplitude (V) l Quarterly lRR4, RR6 ll l l l l l ll l I. ll l ~

l l l l ll 6.- Bearing Temperature (Tb)l Not- l RR1 ll l l l l l ll l Applicable l ll l 1 l l l ll -l l ll l.

l l l l ll 7. Lubricant Level or l' Not' l RRl ll l l l l l ll Pressure ~l Applicable l ~ll l l l l .l ll l l ll l l l l l ll s. Speed (N) l Not l -

ll l l l l l ll l Applicable l ll l

'l I I I II I l' 11 l .

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_ _____ ____ __________-___-___= _._ -______ ____--____-_ _- .

Unit 2 IST Pump List Page 6 of 12 Chemical and Volume Control - CY Rev. 2 l l ASME l l PEID ll l l ll l l Pump l Code l l Grid ll Measured l Test 'l Relief ll l 4

l Identification l Classl PGID l Coordinates ll Test Parameters I Interval I Requests!l Renarts l l l l l ll l l ll l l Boric' Acid l 3 l F05009 l DS ll 1. Inlet Pressure (Pi) l Quarterly l -

ll l l Transfer Pump 2A l l l ll l l ll l-l l l l ll 2. Outlet Pressure (Po) l Quarterly l -

ll l l l l l ll 1 l ll' l l Boric Acid l 3 l F05009 l C5 ll 3. Differential Pressure l Quarterly l -

ll l l Transfer Pump 2B l l l ll ( AP = Po-Pi) l l ll l l l l l ll l  ! ll l l l l l ll 4. Flow Rate (Q) l Quarterly l -

ll l -l ll ll l l l l l l l l l l l ll S. Yibration Amplitude (Y) l Quarterly lRR4, RR6 ll l l l l l ll l l ll l 8

l l l ll 6. Bearing Temperature (Tb)] Not l RR1 ll .l i l l l ll l Applicable l ll l

.I l l l ll l l ll l l l l l ll 7. Lubricant Level or l Not l RR1 ll l l l l l ll . Pressure l Applicable \ ll l l l l l ll l l ll -l l l l l ll 8. Speed (N) l Not l -

ll l l l l l ll l Applicable l ll l ll l 1 I l- l l 11 l 2

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_ _ _ _ _ _ _ - _ _ _ . _- -_ -- , -z~ a-- - - - - - _.

. .. . . _ _ = _ . -. _ _ _ _ . . . - ~ -

Unit 2 IST PussP List Page 7 of 12 N Yolume Control - CY Rev. 2 i

i I asus I i PsID iI I I Ii i i Pump i Code I i Grid Ii Neasured i Test i Relief Ii i i Identificatica I clausl PEID I Coordinates !I Test Parameters I Mterval I RemuestsII Remarks I i I l 1 il I i il I i Centrifugal i 2 i F05007 i D5 Ii 1. Inlet Pressure (P1) IQuarterly 1 -

1I I I Charging Pump 2A I i i ii i i iI l 1 l I 1 II 2. Outlet Pressure (Po) IQuarterly 1 -

1I I i i i i 11 1 I Ii i i Centrifugal i 2 i F05007 i B5 iI 3. Differential Pressure IQuarterly 1 -

1I i l Charging Pump 2B i i i II (d P = Po-P1) I I il i I I I I il I i 11 1 I I I I II 4. Floe Rate (Q) IQ arterly i -

1I I i 1 i i ii i i ii i i i i i i1 5. vibration amplitude (V) IQuarterly IRR4, ER5 Ii i i i i i li i i ii i i i i i ii s. Bearing Temperature (Tb)lan== ur i Rm7 ii i i i i i 11 I i ii i i i 1- I 11 7. Lubricant Level or lobserve I -

ll 1 I i i i ii Pressure IQ rterly i Ii i i i i i 11 1 I il I '

i I I I 11 s. speed (w) i Not 1 -

11 1 I I I I ii iapplic.bieI ii i '

i I I I II I I il I 9

. . - _ . _- . . .. - - - _ . _ - . . _ - . , - . . . _ - , . . - . . . , . ~ . - . . . . - - _ - - .__ _ _ __ - - _ . - . .

Unit 2 IST Pump List Pere 8 of 12 Essential Cooline Water - EW Rev. 2 l I aswE I l PsID ll l l lI l l Pump I Code l l Grid ll Neasured I Test I Relief lI l l Identification I Classl PEID I Coordiantes lI Test Parameters I Interval I ReauestslI Remarks l l l l l 11  ! l ll l l Essential Cooling l 3 i F05038 l G3 ll I. Inlet Pressure (Pi) l Quarterly I RK2 ll l l Water Pump 2A I i l 1I l I ll l l l l l ll 2. Outlet Pressure (Po) IQuarterly l -

ll l 1 I l l 11 I l lI I I Essential Cooling l 3 l F05038 l E3 ll 3. Differential Pressure l Quarterly l RK2 ll l l Water Pump 2B l l l ll ([(P = Po-PI) l l ll l l l 1 l II l l ll 1 l l l I ll 4. Flow Rate (Q) l Quarterly 1 -

ll 1 i Essential Cooling l 3 l F05038 l B3 ll l l ll l l Water Pump 2C l l l Il S. Vibration Amplitude (Y) l Quarterly lRR4, RR6 ll 1 l l 1 l II l 1 ll l l l l  ! ll 6. Beering Temperature (Tb)l Not l RK1 ll l l l l l ll l Applicable l ll l l l l 1 il I l lI l l l 1 l ll 7. Lubricant Level or l Not l RR1 ll l l l l l ll Pressure lApplicablel ll l l l l l ll l 1 II l l l l l lI 8. Speed (N) l Not I -

ll l l 1 l l ll lApplicablel ll 1 l l i I II I I 11 1 1

10 g ey + + . =y r w g-

  • e- w' =++yie--ye---4 =- <g-
  • i-- i-'wv-u- :i e- g -%-v++- --w-se -

er---- 3y m-__ a-.m -y_ w - - + --m--+v-g

Unit 2 IST Pump M Pare 9 of 12 Essential Cooline Water - EW Rev. 2 I I ASME l l PEID ll l l ll l l Pump l Code l l Grid ll Neasured I Test l Relief ll l l Identification l Class l PEID I Coordinates lI Test Parameters l Interval I RemnestsIi samar C ]

l l l l ll l l ll l l Essential Cooling l 3 l F05039 l D7 ll 1. Inlet Pressure (P1) l Quarterly I -

ll l l Water Screen Wash l l l ll l l ll l l Booster Pump 2A l l l ll 2. Outlet Pressure (Po) l Quarterly l -

ll l l l l l ll l l ll l l Essential Cooling l 3 l F05039 l D4 ll 3. Differential Pressure l Quarterly I -

ll l l Water Screen Wash l l l ll (6P == Po-Pi) l l ll l l Booster ru-p 2B l l l ll l l ll l l l l l ll 4. Flow Rate (Q) l Quarterly I -

ll l l Essential Cooling l 3 l F05039 l D2 ll l l ll l l Water Screen Wash l l l ll 5. Yibration Amplitude (V) IQuarterly IRR4, RR6 ll l l Booster Pump 2C l l l ll l l ll l l l l l ll 6. Bearing Temperature (Tb)lAamuelly l RR7 ll l l l l l ll l l Il l l l l l ll 7. Lubricant Level or l Observe l -

ll l l l l l ll Pressure IQuarterly l ll l ll ll l l l l l l l l 1 l l ll s. Speed (N) l Not I -

ll l l l l l ll l Applicable l ll l l I I i II I I II l 11

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Unit 2 ISI, Damp List Pare 10 of 12 Ppsidual Heat Jgsg2Y_4A_ gg Rev. 2 l l ASME I l P&ID ll l l ll l l Pump l Code l l Grid ll Neasured l Test l Relief lI l l Identification I Class! PEID I Coordinates Il Test Parameters I Interval I R e_tsll n-rt.s l l l l l li l  ! il I l Residual Heat l 2 l F20000 l B6 ll 1. Inlet Pressure (P1) l Quarterly l -

ll l l Removal Pump 2A l l  ! ll l l lj l l l l l ll 2. Cutlet Pressure (Po) l Quarterly l -

ll l l l l l ll l l il l l Residual Heat l 2 l F20000 l D6 ll 3. Differential PrJssure I not l -

ll l l Removal Pump 2B l l l ll (d P = Po-P1) l Applicable l ll l l l l l ll l l ll l 1 l l l ll 4. rio Rate (Q)  ; Quarterly l -

ll I l Residual Heat l 2 l F20000 l G6 ll l l ll l l Removal Pump 2C l l l ll S. Vibration Amplitude (Y) 3 Quarterly IRR4, RRS ll l l l l l ll l 1 lI l l l  ! l ll 6. acaring Temperature (Tb)l wot l RR1 II l 4

l l l l ll lApplicablel ll l l l l l 11 l l ll l l l l l Il 7. t.ubricant avet or l wot l RR1 ll l l l l l l! Pressure IAprilcablel ll l l l l l l1 l l ll l l l l l l! a. speed (w) l wot I -

l! l l l l l ll l Applicable l ll l l 1 I I 11 1 1 II l 12

- , - . - . . .. .. . ~ , _ . . . . - - . . _ - - . , - - -. . . - . .

Epit 2 IST Pump List Page 11 of 12 Safety Iniection - SI Rev. 2 l l ASNE l l P&ID ll l l ll l l Ptamp l Code l l Grid ll He*sured l Test l Relief ll l l Identifi.ge_ tion I Class! PEID I Coardinates II Test Parameters I Interval I RequestsII EmaKAE_,_l l l l l l! l l ;l l l High Head Safety l 2 l F05013 l F4 ll 1. Inlet Pressure (Pi) l Quarterly l -

ll l l Injection Pusp 2A l l l ll l l ll l l l l l ll 2. Outlet Pressure (Po) lQusrterly l ll l l l l l ll l l 11 l l High Head Safety l 2 l F05014 l G3 ll 3. Differential Pressure l Quarterly l 8

-3 ll l l Injection Pump 2B l l l l! (d P = Po-Pi) l l ll l l l l l  !! l l ll l l l l l ll 4. Flow Rate (Q) l Quarterly l 223 ll l

, l High Head Safety l 2 l F05015 l F3 ll l l ll l l Injection Pump 2C l l l ll 5. Vibration Amplitude (V) l Quarterly lRR4, RR6 ll l l l l l ll l l ll l l l l l ll 6. Bearing Temperature (Tb)l Not l RR1 ll l l l l l ll l Applicable l ll l l l l l ll l l ll l l l l l ll 7. F.ubricant Level or l Not l RR1 ll l l l l l ll Pressure l Applicable l ll l l l l l ll l l ll 1 l l l l ll 8. speed (w) l wot l -

ll .

l l l l ll lApplicaniel ll l l l l 1  !! I I II l t

4 13

Unit 2 IST Pump List Page 12 of 12 Saiety Iniection - SI Rev. 2 l l ASME l l PEID ll l l ll l l Pump l Code l l Grid lI Nessured l Test l Relief ll l l Identification I ClassI PEID I Coordinates II Tqat Parameters I Interval I Remaests!I ILemarks l l l l l ll l l ll 1 l Low Head Safety l 2 l F05013 l C3 ll 1. Inlet Pressure (Pi) l Quarterly l -

ll l l Injection Pump 2A l l l ll l l ll l l l l l ll 2. Outlet Pressure (Po) l Quarterly l -

ll l l l l l ll l l ll l l Low Head Safety l 2 l F05014 l D3 ll 3. Differential Pressure l Quarterly l RR3 ll l l Injection Pump 2B l l l ll (O P = Po-Pi) l l ll l l l l l ll I l ll l l l l l ll 4. Flow Rate (Q) l Quarterly l RR3 ll l

! Low Head Safety l 2 l F05015 l D3 ll l l ll l l Injection Pump 2C l l l ll S. Yibration Amplitude (V) l Quarterly lRR4. ER6 ll l l l l l ll l l ll l l l l l ll 6. Bearing Temperature (Tb)l Not l RR1 ll l l l l l ll l Applicable l ll l l l l l ll l l ll l l l l l ll 7. Lubricant Level or l Not l RR1 ll l l l l l ll Pressure l Applicable l ll l l l l l ll l l ll l l l l l ll s. Sp ed (N) l Not l -

ll l l l l l ll l Applicable l ll l l l 1 I II I I II l 14

1 Unit 2 Pump and Valve Rev. 2 Inservice Test Plan 6

2.1 Reauests for Relief from AEKE Boiler and Pressure Vejsel Code Section II  ;

ReauiremenLE i

eel i i

Test Reautrement Table IWP-3100-1 requires that proper lubricant level or pressure be observed and bearing temperature be measured during each inservice ,

test.

Basis for Religi The bearings of the Containment Spray Pumps, the Boric Acid Transfer l Pumps, the Essential Cooling Water Pumps, the Residual Heat Removal  !

Pumps, the High Head Safety Injection Pumps, and .the Low Head Safety [

Injection Pumps are lubricated and cooled by the pumped fluid making r it impractical to verify proper lubricant level or pressure and i measure bearing temperature.

Alternate Testine Lubricant level or pressure will not be observed and bearing temperature will not be measured for these pumps.

REZ Test Requirement I'

IWP-4200 requires direct measurement of pressure.

Basis for Religi The Essential Cooling Water Pumps are vertical submerged suction centrifugal pumps with no direct means to measure inlet pressure .as required.

&litrnate Testing -

3 The inlet pressure will be calculated based oh the water level above ,

the pump inlet.

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Enit _2 Pump and valve Rev. 2 Inservice Test Plan Rai Test Recuirement IWP-3100 requires that the resistance of the system shall be varied until either the measured differential pressure or the measured flow rate equals the corresponding reference value.

Basis for Relief Both the High Head Safety Injection Pumps and the Low Head Safety Injection Pumps have a recirculation flow path contkining a restricting orifice which limits flow through the recirculation line to a specific, fixed flow rate. When these pumps are tested using their respective fixed-resistance flow paths, the flow rates will be approximately the same each time the tests are conducted.

Alternate Testine Pump testing will be performed using the fixed-resistance flow paths. The measured differential pressure will be compared to the allowable ranges given in Table IWP-3100-2 in order to determine pump operability.

RRA Test Recuirement IWP-4120 requires the full scale range of each instrument to be three times the reference value or less.

i Basis for Relief Portable vibration indicators have selectable ranges in overlapping scales (multiples of 1 and 3 full scale). It is possible to have an indicated vibration which, in order to read on an available scale, will not be in the range of the instrument required by IWP-4120.

Alternate Testine The portable vibration indicators, which provide overall readout repeatability within the accuracy limits of Table IWP-4110-1, will be used to obtain vibration data except tchen permanently installed instrumentation is used.

16

Unit 2 Pumn and Valve Rev. 2 Inservice Test Plag ,

tas j Test Reauirement IWP-4120 requires the full scale range of each instrument to be three times the reference value or less.

Basis for RR1131 The Centrifugal Charging Pumps (located in the Mechanical Auxiliary Building) and the Residual Hoat Removal Pumps (located in the  :

Reactor Containment Building) are in areas of high radiation. For i ALARA considerations, the Vibration Monitoring System (located in  !

the control Room) is used tc, measure vibration amplitude. The vibration monitoring system is an online system which constantly i monitors the machine and provides alarms when alert limits are I reached. The full scale range of each instrument is fixed and the above requirement could be exceeded. Rescaling the instrument to j meet the requirements of IWP-4120 for a low ref erence value would  ;

impair the ability of the system to monitor the machine up to the severity limit determined by size, speed and application. ,

Alternate Testing .

The Vibratiora Monitoring System will be used to obtain vibration data for the Residual Fioat Removal and Centrif ugal Charging Pumps.

The system provides overall readout repeatability within the accuracy limits specified in Tahle IWP-4110-1 with indication in increments of at least 0.2 mils. If the Vibration Monitoring System l

1s unavailable, portable vibration indicators will be used as  ;

described in RR4.

t 1

17 l

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I i

Unit 2 Pa=a mad Valve Rev. 2  !

Intervice Test Plan i

RRh j I

Test teauirement j l

IWP-4510 requires at least one displacement vibration amplitude j shall be read during each inservice test. Table IWP-3100-2 defines  !

the allowable range of vibration based on displacement amplitude. q Basis for telle.1 The use of a velocity standard, rather than a displacement standard, j i

l 1s more indicative of lump condition and is industry accepted.  ;

f Alterntie Testine d At least one velocity vibration measurement (in/sec unfiltered peak) l shell be read during each inservice test. The frequency response range of the vibration measuring transducers and the readout system shall be from one-half minimum pump shaf t rotational speed to at .

least 1.000 Herts with an accuracy of at least i 5%. All other requirements of IWP-4510 and IWP-4520 shall be complied with. i Allowable ranges of vibration velocity for pump testing shall be as follows:

Test Acceptable Alert Required Action l

Quantity emnee gangg emnoe l

1. V when 0 to 0.075 0.075 to 0.1 >0.1 t

DiVr110.05 in/sec in/sec in/sec in/sec

2. V when 0 to 0.15 0.15 to 0.2 >0.2 t

0.051Vr210.1 in/sec in/sec in/sec in/sec

3. V when 0 to 0.2 0.2 to 0.25 >0.25 t

0.11Vr810.15 in/sec in/sec in/sec in/sec

4. V when 0 to 0.285 0.285 to 0.314 >0.314 t

0.151Vr410.25 in/sec in/sec in/sec in/sec Definitionat V = Reference velocity measurement (in/sec unfiltered peak)

V = Surveillance test velocity measurement (in/sec l

unfiltered peak) 18

-, )

I IInit 2 Pump and Valve Rev. 2 Inservice Test Plan su Test Reauirement IWP-3300 requires a bearing temperature measurement at least once a year.

Basis for Relief )

The yearly temperature measurement will not provide significant ,

information about pump conditions. Industry experience has shown  ;

that bearing temperature changes caused by degrading bearings occur only after major degradation has occurred at the pump.. Prior to ,

this major pump degradation, the vibration measurement would provide  ;

the necessary information to warn of an impending malfunction.

Deletion of this measurement will not have a significant effect on pump evaluation since vibration amplitude is measured quarterly. ,

Alternate Testina Vibration velocity, as described in RR6, will be measured quarterly I in lieu of bearing temperature measurement for all pumps which would  ;

require bearing temperature measurement per IWP-4310 except the Centrifugal Charging Pumps. The Centrifugal Charging Pumps, due to ALARA considerations, will have vibration measured quarterly using remote instrumentation which provides only vibration displacement.

i J

i 19

)

l l

l Unit 2 Puno and Valve Rev. 2 Inservice Test Plag ]

l l

3.0 INSERVICE TESTING OF VALVES ]

]

The table " Unit 2 IST Valve List" describes the inservice test plan for ]

valves subject to the requirements of subsection IWV of the ASME Boiler and Pressure Vessel Code Section XI,1983 Edition through Summer 1983 Addenda. The table provides the following informations i

l a. Identification of the valves to be tested, j i i

b. Description of valve function,
c. Applicable ASME code class,
d. P&ID and P&ID grid coordinates (See Section 4.0, Drawings),
e.Section XI valve category,

I

f. Valve size,
g. Valve type, I
h. Valve actuator type, ,
i. Normal position during power operation, J. Failure position, R. Test requirements and alternate testing,
1. Relief requests and/or clarification (if necessary),

i

m. Stroke time limit (if applicable).

1 Relief from the requirements of Section XI is requested where full i compliance with the code is not practical. In such cases, specific )

information is provided in Section 3.1 which identifies the applicable code requirements, justification for the relief request, and the alternate testing to be performed. In certain cases, relief is not requested, but the code-required testing is performed in an unusual or complicated manner. In such cases, clarifications are provided in Section 3.1 to explain the actual testing method to be used.

Some valves have a fail-safe position. Valves which fail open or fail i closed are tested to their failure positions during the exercising tests.

The test method used meets the requirements of IWV-3415 in every case, since remote valve control switch operation removes actuator power from each fail-safe valve. I i

l 20 l l

)

I

P Unit 2 PumD and Valve Rev. 2 i Inservice Test Plan I Rapid-acting valves are valves which have very short stroke times less I thkn or equal to 2 seconds, and are not trended in accordance with .

IW-3417 (a ) . Instead, stroke times are coepared to the specified stroke l time limits not to exceed 2 seconds and corrective actions (if required) f are taken in accordance with IW-3417(b). i k

i a

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+

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l 21  !

I

l Unit 2 Pump and Valve Rev. 2  !

Intervice Test Plan i Unit 2 IST Valve List Lorend VALVE ID - Valve Identification The alphanumeric valve designator used as a unique identifier for each valve. t i

YALVE FUNCTION - Valve Function Description  ;

i A brief description of the function of each valve.

CL - Code Class )

The appropriate ASME code classification (Sa'lety Class 1,2,3 or NE (Non-Safety Related)) for each valve. [

EkID - Piping and Instrumentation Diagram The P&ID showing the location of each valve in the system (See Section 4.0, Drawings).

QC - P&ID Grid Coordinates The grid coordinates describing where each valve appears on each P&ID.

CAT- Section XI Category The category applicable to each valve per Iwv-2200.

l E1ZE - Valve Size ,

The size of the valve (inside diameter) in inches.

IIEE - Valve Type The type of valve described by the following:

A = Angle ARC = Auto Recirc Check B = Butterfly 1 BL = Ball )

CK = Check i D = Diaphragm GL = Globe GT = Gate  ;

PR = Pressure Relief or Safety q SCK= Stop Check l

~l l

j 22 J

l 1

Unit 2 Pump and Valve Rev. 2 Intervlee Test Pigg 1

ACI - Actuator Type j The type of actuator on each valve described by the following i

A0 = Air Operated H0 = Hydraulic Operated l M = Manual t MO = Motor Operated l SA = Self/ System Actuated l SO = Solenoid Operated NORM. POS. - Normal Position I The normal position of each valve during power operation described by the followings  ;

( NC = Normally Closed

! NO = Normally open t NI = Normally Interrittent (0 pen or Closed)

NT = Normally Throttled or Controlling EAlL_EQEt - Fail-safe Position i

The position of each valve when actuator power or air is secured as described by the followings i

FC = Fails Closed F0 = Fails open FAI = Fails As Is '

- = Not Applicable TEST REQUIREMENT - Test Requirements (Alternate Testing) l The test requirements (or alternate testing) required for each valve as described by the following CV = Exercise check valves to the position required to fulfill their function at least once every three (3) months. .

LT = Valves are leak tested per Appendix J to 10CFR50 at each  !

refueling outage or by alternate testing method.

{ .

$ =

MT Stroke time measurements are taken and compared to the stroke time limiting value per Section XI Article IWY-3410.

23

1 I

i Unit 2 Pump and Valve Rev. 2 l Inservice Test Plan l

)

Q = Exercise valves (full stroke) for operability at least once every i three (3) months except when the other train (s) of a redundant i system are inoperable. Nonredundant valves in the remaining I train (s) should not be cycled if their failure would cause a ]

total loss of system function. )

1 R = Remote valve position indicator is used during valve stroking and

]

must be calibrated at least once every two (2) years.  ;

SRV = _ Safety and relief valves are tested per Section XI Article {

IWY-3510.

(CP) = Containment Purge Valves are leak tested per plant Technical {

Specifications.

(CS) = Exercise valve (full stroke) for operability during each cold -

shutdown and at each refueling outage. In case of frequent cold ,

shutdowns, valve testing is not required to be performed more i often than once every three (3). months.

Valve testing will commence not later than 48 hours5.555556e-4 days <br />0.0133 hours <br />7.936508e-5 weeks <br />1.8264e-5 months <br /> after an unscheduled cold shutdown and continue until complete or until plant is ready to return to power. Completion of all valve testing is R21 a prerequisite to return to power. Any testing not completed at one cold shutdown should be_ performed during the ,

subsequent cold shutdowns to meet the code-specified testing j frequency.

(CSDI)= Exercise valve (partial stroke) for operability at each cold  !

shutdown not to exceed once every three (3) months and  ;

disassemble and inspect check valve at each refueling outage.  ;

(CSP)= Exercise valve (partial stroke) for operability at least once every three (3) months and exercise valve (full stroke) at each cold shutdown not to exceed once every three (3) months.

(CSR)= Exercise valve (partial stroke) for operability at each cold shutdown not to exceed once every three (3) months and exercise valve (full stroke) at each refueling outage.

f

1 (DI) = Disassemble and inspect check valve at each refueling outage.

! 4 (NA) = No cesting required.

(NST)= No stroke time measurements are taken. #

l (NT) = Stroke time not trended due to very short stroke times (valves are classified as rapid-acting).

I i 24

l l

l EA i t 2 Pump and Valyg Rev. 2 Inservice Test Plan  ;

J

(PIV)= Reactor Coolant Systen Pressure Isolation Valves are leak tested per plant Technical Specifications. l 6

(PO) = Valve seat leak tightness is demonstrated during normal plant l operation.

(PRR)= Exercise valve (partial stroke) for operability at least once every three (3) months and exercise valve (full stroke) at each !

I refueling outage.

(PRS)= Exercise valve (partial stroke) for operability at least once  !

every three (3) months providing.RCS pressure is greater than [

pump shutof f head and exercise valve (full stroke) at each l refueling outage.

(RR) = Exercise valve (full stroke) for operability at each refueling i outage not to exceed once every two (2) years.

KRZC - Relief Request / Clarification The appropriate relief request for each valve when alternate testing is proposed or clarification of testing method if required [

(See Section 3.1).  ;

EI - Stroke Time ,

N The close and open stroke time limiting value for power-operated valves in seconds.

h 25 i

Unit 2 IST Yalve List Page 1 of 69 Auxiliary Feedwater - AF Rev. 2 I I i l l 1 1 I I inOen.lrAILI TzsT I l_sy I iYALVE IDI YALVE FUNCTION ICLI Pr.YD IGC ICATISrnITYPEIACTIPOS. IPOE. IewunemmunTI _ **/C ICIO I I I i i 1 i i i i I i l i i i i IAF-DO36 IAFW Pump No.21 Auto Recire. I 3I FOOO24 IF6 IC I 4 I ARCI SAI NC I-I CY I - I-I-I I I I I I I I i i 1 l i I I I I lAF-DO5S IAFW Pump 50.22 Auto Recire. I 3I FOOO24 ID6 ICI 4 I AECI SAI NC I-I CY l - I - i-- l l 1 I l i I l l 1 I l l l l 1 1 IAF-DO91 IAFW Pump 50.23 Auto Recire. I 3I FOOO24 IB6 IC I 4 I AECI SAI NC I-I CY I -- I-I-I I I I I I I I I I I I I I I I I IAF-OO11 IAFW Pump 5o.24 Auto Recire. I 3I FOOO24 IH5 ICI 4 I ARCI SAI NC II CY I - I-I-1 I I I I I I I I I I I I I I I I IFY-7517 IAFV Pump 5o.21 Disch. Crosstie I 3I FOOO24 IF4 IBI 4 I GL I AOI NC I FC I O.E.NT I -

IlO l -- I I I I I I I I I I I I I I I I I IFY-7516 lAFW Pump 50.22 Disch. Crosstie I 31 FOOO24 ID4 IB I 4 I GL I AOI NC I FC I O.E.BT I - IlO I--I I I I I I I I I I I I I I I I I IPV-7515 IAFW Pump 50.23 Disch. Crosstie I 3I FOOO24 IB4 IB l 4 I GL I AOI NC I FC I Q.E.ET I - IlO I--I

I I I I I I I I I I I I I I I IFv-751s IAFW Pump 50.24 Disch. Crosstie I 3I FOOO24 IG4 IB I 4 I GL I AOI NC I FC I O.E.BT I - 110 I-l 1 I I I I I I i 1 1 I I I I I I try-7525 IArW Pump No.21 Disch. Control I 3I r00024 Ir4 IB I 4 I GL I MOI NO I rAII O.E.mT 1 - 155 ISS_I l i I I I I I I I i i l i l i i Irv-7524 IAFW Pump 50.22 Disch. Control I 3I FOOO24 ID4 IB I 4 I GL ! EOI NO I FAII O.E.NT I - I57 IST I I I I I I I I I I I I I I I i i Irv-7523 IArv Pump No.23 Disch. Control I 3I FOOc24'IB4 I B I 4 I GL I BOI NO I FAII O.R MT I - ISS IS$ I I I I I I I I I I I I I I I I i lFv-7526 IArW Pump No.24 Disch. Control I 31 FOOO24 IR3 IB I 4 I GL I BOI NO I FAII O.R.ET I - ISO I48_I 26

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Unit 2 IST Yalve List Page 3 of 69 Auxiliary Feedwater - AF Rev. 2 I I I I i l I I i lNORN.IrAILl TEST l l ST l 1YALYE IDI YAr.YE FUNCTION ICLI Pt.YD IGC ICATISTzrITYPEIaCTIPOS. IPOS. lmarurrowmmmTI er/C I C I O-. I I I 1 i l i l I i i i l i I I l inOV-0143Iarw Pump Turbine Stop l 2I FOOO24 IGS I BCI 4 I SCKI nOI NO I FAII Q.E.RT I -

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Unit 2 IST Valve List Page 13 of 69 -

Component Cooline Water - CC Rev. 2 1 I I I I I I I I IwOax.IFAILI TEST I I ST I l IVALVE IDI VALVE FUNCTION ICLl P&ID IGC ICATlSIZEITYPEIACTIPOS. IPOS. Iur.uu i--- A I RE/C l C IOI l l l l l l l l 1 1 I I I I I I IMOV-0297ICCW to CTNT HTX OB Isol. l 31 F05021 IG8 iB 1 6 I B l EOl NO I FAII O.R.NT I - 115 l-- I I I I I I I I i 1 1 I I I I I I IMOV-0392lCCW to RcoT nTx IB.Isol. I 31 roSo21 los i B l 4 I or I nO! nO I FAII O.R.ET l - !12 I-- I I ICCW to Excess i I I I I I i i i i i I i I inOV-03931 Letdown nTx IB Isol. I si FoSo21 los i B 1 6 i B l uOl uO I FAIL O.R.ET I - 115 l-1 l i i I .I i 1 I I I I I l i I I lNOV-DO52iCCW A Return Isolation l 31 F05020 ID7 IB l 24 l B I EOI NO I FAII O.R.RT I - I17 l17 I I I I I I I I I I I I I -l i I I iMOV-0132lCCW B Return Isolation l 31 F05020 IC7 IB I 24 I B i EOl 50 I FAIL O.R.MT I - Ils Ils i I I I I i i i l i i i i i i i I InOV-0192iCCW C Return Isolation i si roSo20 IC7 iB I 24 i B I nOI so I FAIL O.R.ET I - l15 115 i

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Rait, 2 IST Valve List Page 28 of 69 Demineralized Water - DW  : Rev. 2 -

I I I i i I l -l I InonN.irAILI TzST I -I ST l IYALVE ID l VALYE FUNCTION ICL! P&ID IGCICATISIZElTYPEIACTlPOS. IPOS. IREDUTennTI De/C lC IO I I I l1 I I I I I l- 1 I I l- 1 I IDw-osol IDW To CTNT OB Isolation l 21 F05034 IF41 A l 2 ID lE I EC 1 -- 1 O(NA) ~I C4 l-I-I I -l l I I i -l I i i l i I I l- 1 I I I l' I I I I I I I I LT I - I 1.

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Unit 2 IST Yalve List Page 29 of 69 Radioactive Yents_and Drains - ED Rev. 2 l l l l l l l 1 I luocx.IFAILI TEST l l ST I.

-IVALVE ID I VALVE FUNCTION ICLI PEID lGCICATISIZEITYPZlACTIPOS. IPOS.Imzuv w--i! EE/C I C I O 1 l I i l i i i l i i l i i l i l-luoV-oose ICrur sa - Disch. IB Isol. I 21 F05030 IG71 A I3 i GT I ROI 50 I FAIL O.E.MT I - ' l'101 1 I I I I I I I i i I i i l i i i i i i i  ! -l l I i i i I LT I -

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Unit 2 IST valve List Page 30 of 69 -

Essential Cooling Water - EW Rev. 2 i i I I I i i i i INOax.lFAILI TE$T l l ST l l VALVE ID I YALVE FUNCTION lCLl P&ID lGClCATISIZEITYPEIACTIPOS. IPOS. Iz.ra.ru ik--- A l RE/C l C I O I I I I I I I I I i 1 I I i i i i IEW-OOO6 lECW Pump 2A Disch. Chect l 31 F05038 lH4I C I 30 l CK I sal NO I-l CY I - I-I-l i I I I I I I I i 1. I I I I I I lEW-OO42 lECW Pump 2B Disch, Check I 31 F05038 IE4l C I 30 l CK I sal NO I-l CY I - I- I -- l I I l l- i l l I l i l I l i l l lEW-OO79 lECW Pump 2C Disch.' Check l 31 F05038 IC41 C I 30 I CK l SAI NO I-I CY I - I-I-I l I I I I I I i 1. I I I I I I I luov-0121 IECW Pump 2A Disch. Isolation I 31 F05038 lH41 B I 30 IB I BOI NO lFAI I O.E.HT I -- I--I 141 1 I I I I I I I I I I I I i i i luov-0137 IECW Pump 2B Disch._ Isolation 1 3I F05038 IE4I B l 30 IB l 40] NO IFAI I O.R.ET I - I--I 121 I I i i i i i i i i i i i i i i luov-0151 lECW Pune 2C Disch. Isolation I 3I F05038 lC41 B l 30 IB l MOI NO IFAI I Q.E.ET I - I--l 15l l 'l:CW Screen Wash Pump I I l l l l l l l l l l l l IEW-0253 12A Discharge Chect l 31 F05039 ID71 C I 3 I CK I SAI NO I-I CY l - I - l -- l

, I IECW Screen Wash Pump l l 1 l l l 1~ l l l l l l l lEW-0254 12B Discharre Chect I 3I F05039 ID5I C I 3'l CK I SAI NO I -- I CV I - l -- l -- l l lECW Screen Wash Pump l l l l l 1 l l l l .l l l l IEW-0255 12C Discharge Check l 31 F05039 lD2! C I 3 I CK l SAI NO l-l (T  ! - l -- I -- l l lECW Screen Wash Pump i l l I I I I l l j l l l l lFv-6914 I2A Discharre Isolation 1 31 F05039 lD71 B I 3 I GL I AOI NO I FO'I O.R.MT l - I-I 6l l- .lECW Screen Wash Pump i l' l l l 1 ] I I I i l j l IFv-6924' 12B Disch=rre Isolation 1 31'F05039 IDSI B I 3 I'GL I AOI NO I FO I Q.E.ET I - l-I 7l l lECW Screen Wash Pump I i I l l l l l 1 I I I I l IFv-6934 12C Discharge Isolation I 31 F05039 ID3I B l 3 I GL l AOI NO I FO I O.R.ET l - I-l 4l 4

f 55

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l llgit 2 IST Yalve List Page 31 of 69 Essential Coolinst Water - EV Rev. 2 l l l 1 I l l l 1 IwOEw.lFAILI TEST l l ST l lYALVE ID l VALVE FUNCTION ICLl P6ID lGCICATISIZEl TYPE lACTIPOS. IPOS.IREQUlk - -AI RE/C I C'I O l l lECW Loop A to Essential l l l l l l l l l l l l l l lEW-0262 lCHW Chillers I 31 F05038 lH61 C I 14 I CK I Sal NO I-I CV I - I l -- l l lECW Loop B to Essential l l l l l l l l l l. l l l l lEW-0263 ICHW Chillers I 31 F05038 IF61 C I 14 ! CK l SAI NO I-I CV I - I- I -- l l lECW Loop C to Essential l l l l l l l l l l l l l l lEW-0264 lCHW Chillers I 31 F05038 lC6l C I 14 I CK I sal NO I-l CV I - I - l---l l l l l l- l l l l l l l l l l l lFY-6935 IECW Loco A Drain to ECW Stump I 3I F05038 IF71 B l 4 I GT I AOl NO I FC I Q.E.NT I - l5 I--l '

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Unit 2 Pump and Valve Rev. 2 Inservice Test Plan f i

.1 3.1 Reauests for Relief from ASME Boiler and Pressure Vessel Code Section XI Recuirements and Clarifications of Valve Testing Methods i

f ER1  !

Test Recuirement The stroke time of all power-operated valves shall be measured, and check valves shall be exercised for operability at least once every three (3) months. ,

BAlis for Relief ,

i This valve is a stop check valve with a motor operator. 'The motor operator may be safely stroked at power; however, the stop chock valve can only be exercised (ful2-stroke) by directing Auxiliary Feedwater Flow into the Steam Generators. The initiation of ,

Auxiliary Feedwater during power operation would result in urwanted thermal shock to the secondary portions of the Steam Generators. An introduction of cold water would also cause unwanted-power  ;

transients.

Alternate Testing The valve motor operator will be stroked and timed at least once f 3

every three (3) months as required 3 however, after leaving cold

< shutdown and prior to entering Mode 2'(Startup) Auxiliary Feedwater will be directed through the valve using one pump flow rate.

Verification of flow through the valve will provide assurance that I the valve has opened sufficiently to perform its function (full-

! stroke).

ER2 Test Recuirement IWV-3417(b) and IWV-3523 state that when corrective action is required as a result of tests made during cold shutdown, the-condition shall be corrected before startup. A retest showing.

acceptable operation shall be run following any corrective action before returning valve to service.

Basis for Relief The plant Technical Specifications provide the requirements and plant conditions necessary for' plant startup (i.e. mode changes).

Alternate Testing The test requirement will be satisfied before the valve is required to be operable in accordance with the plant Technical Specifications.

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i EAit 2 Pumo and Valve Rcy. 2 Intervice Test Plan ,

ERI Test Recuirement Exercise check valves for operability at least once every three (3) months. r Basis for Relief  ;

This check valve is normally closed during normal power operation .

+

and can only be exercised (full-stroke) by directing Auxiliary Feedwater flow into the Steam Generators. The initiation of Auxiliary Feedwater during normal power operation would result in unwanted thermal shock and power transients. Flow from the Main Feedwater. system cannot be used to exercise this. check valve during ,

normal power operation since thermal shock to the Auxiliary Feedwater nozzles would occur by injecting the cooler, stagnant water in the connecting piping and no flow' instrumentation is available in this configuration to verify valve full-stroke.

Alternate Testire A

After leaving cold shutdown and prior to entering Mode 2 (Startup),

Auxiliary Feedwater will be directed through the valve using one pump flow rate. Verification of flow through'the valve will provide ,

assurance that.the valve has opened sufficient 1y'to perform its function (full-stroke).

GA Test Reauirement Exercise valves for operability at least once every three (3) months.

Testine Method I

L This valve is a normally closed containment isolation valve and is passive. The operability testing (full'or partial' stroke) during. l either power operation or cold shutdown provides no added^ assurance .f of an increase in safety. This valve will be verified closed and 1 leak-tight each refueling outage during performance of LLRT activities in accordance with 10CFR50 Appendix J.

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Unit 2 Pu.mp,and Yalve Rev. 2- I Inservice Test Plan ..

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.I Test Reanirement t Exercise check valves for operabiJity at least once every three (3)-  !

months. {

Testine Method This valve is a normally closed containment isolation. check valve ~ i and is passive. The operability testfog (fu111or partial' stroke) f during either power operation or cold shutdown.provides no added assurance of an increase in safety. This valve will be verified closed and leak-tight each refueling outage during: performance of LLRT totivities in accordance with 10CFR50 Appendin J.-

ERft Test Reauirement Exercise check valves for operability at least once every three (3) months.-

Basis for Relief Operability testing (full or partial stroke) of-this.normally closed check valve is impractical due to plant design.. ,

1 Alternate Testing l

This valve will be required to be partially disassembled everyL t refueling outage and the valve internals will be inspected'to ensure no degradation has occurred.

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Unit 2 Pump and Valve Ecy. 2 l IDARrvice Test Plan ERI _;

I Test Reauire3gst i

IWV-3413(b) requires that the stroke time of all power-operated :

valves shell be measured to the nearest second'for stroke times of >

10 seconds or less. IWV-3417 requires that on any one test of power-operated valves, an increase in stroke time of 50% or more r from the previous test for valves with stroke times of 10 seconds or=

l less, the test frequency shel?. be increased to once each month until -

corrective action is taken. , [

Basis for Relief

\

These solenoid-operated valves have very short stroke times and are classified as " rapid-acting" valves. Accurate measurement of stroke time'is not practical. In addition, stroke times may vary i significantly due to system pressure and/or tempere.ture changes from one test to snother.

AltJgraate Testine These valvea will be required to be full stroked and timed'to the nearest second quarterly. Acceptance of the test will be based only on the stroke time limit (not to exceed 2 seconds) and not on the "50%" criteria of IWV-3417.

ERE i

Test Requirement Exercise check valves for operability at least once every three (3) months. a Basis for Relief Due to plant des 2gn, it is not practical to verify by any positive means, either directly or indirectly, the operability of these normally open check valves per the requirements of IWV-3522(a).

Alternate Testine Valve closure will be verified during LLRT activities performed each -

refueling outage in accordance with 10CFR50-Appendix J.

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j pnit 2 Pump and Valve; Rev. 2.

Intervice Test P.Jan-EA2.

Test Recuirement Exercise check valves for operability at least once every three (3) ,

months.

l' Basis for Relief I

l. Operability testing (full or partial stroke)~of these normally . .

l closed check valves is impractical during power' operation or cold L shutdown. Stroking these valves with flow would require the l' spraying of containment which is impractical and may cause. equipment-

! damage. i 4

&lternate Testing e

The check valves will be verified operable by disassembly of.one' check valve each refueling outage on a rotating basis for inspectAon to ensure no degradation has occurred. If the check valve selected ,

during any refueling outage shows signs of unacceptable degradation, all other applicable check valves will be disassembled and inspected i during that refueling outage.

I l

Test Recuirement l Exercise valves for operability at least once every three (3) ,

months.  !

Basis for Relief These normally open valves supply clean, cool water for the RCP seals providing lubrication, cooling and pressurization of the pump seals. Failure of these1 valves in the closed position during.

stroking could significantly reduce seal life and possibly cause a

! plant outage.

- Alternate Testing These valves will be required to be exercised (full stroke) each cold shutdown not to exceed once every three months.-

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Unit 2 Pump and Valve -Rev. 2-Inservice Test Plan 6 ERll Test Reauirement l

l Exercise valves for operability =at least once everyfthree (3) months.

Basis for Relief I

The operability testing.(full stroke) of these valves would cause a loss of system function (loss'of charging pump normal suction from VCT). Utilizing other suction sources'(RWST or Boric-Acid Transfer-System) would affect reactivity control.possibly requiring a plant shutdown.- Valves have no partial stroke provisions..

Alternate Testing These valves will be required to be. tested for operability (full' i

stroke) each cold shutdown not to exceed once every-three (3)

I months.

RE12 Test Reauirengnt Exercise valves and. check valves for. operability at least once every.  !

three (3) months.  ;

l Basis for Relief s

Exercising of these normally closed valves and check. valves.at power would connect the suction of the Charging Pumps to the RWST resulting in concentrated boric acid injection into the~RCS, causing.

a resultant power change which is undesired.

! Alternate Testine These valves and check valves will be required to be' exercised (full stroke) each cold shutdown not to exceed once every three (3) months.

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s Unit 2 Pump and Valve Rev. 2 Inservice Test Plan- +

I RR13 Test Reauirement Exercise valves for operability at least once every three (3) months.

Basis for Reliti This valve normally is throttled'to controlicharging flow by a-flow controller. The, valve cannot be full stroked at power without-  ;

isolating charging flow to the RCS which could cause a loss of normal pressurizer level control possibly causing a' plant shutdown.

Alternate Testine

^

This valve will be required to be exercised (full stroke) each cold- r shutdown not to exceed once.every'three (3) months.

ERIA Test Reauirement Exercise valves for operability at least once every three (3) months.

Basis for Relief This.normally open valve supplies charging water to the RCS.

i Isolation of charging during normal power operation could cause a

! loss of normal pressurizer level control possibly causing a plant-shutdown.

Alternate Testing This valve will be required to be exercised (full stroke) each cold shutdown not to exceed once every three (3) months.

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l 1 L Unit 2 Pump and valve Rev. 2 J Inservice Test Plan .I l

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RR15  :

Test Requirement Exercise valves and check valves for operability at leastfonce every three (3) months.

Basis for Relief Exercising of this normally closed vgive and check valve would-require introduction of cold (1 140 F) spray water into the pressurizer at power creating an undesired transient. t Alternate Testine  ;

l ' -I This valve and check valve will be required to be exercised for.

! operability (full stroke) at each cold shutdown not to exceed once - s every three (3) months. _l RR16 l l

Test Reauirement 1

Exercise check VLlves for operability at'least once every three (3) months.

Basis for Relief

'i l.

Exercising of this normally closed check valve at power would result.

l in injection of concentrated boric acid into the RCS via the operating charging pump (s) creating an undesired power transient' and possible! plant shutdown..

Alternate Testing This check valve will be required to be exercised.(full stroke) each cold shutdown not to exceed once every three (3) months.

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. Unit 2 Puno and Valve Rev. 2' Inservice Test Plan RR17 Test Reauirement Exercise valves'for operability at least once every three (3)- 1 months.

Basis for Relief This valve is normally open during power operations and cannot be-full stroke tested without isolating Feedwater from the Steam Generators. Isolation of Feedwater would cause an undesirable power transient and possible turbine and reactor trip.

Alternate Testine.

This valve will be required to be partial-stroke tested at least once every three.(3) months'and full-stroke tested each cold shutdown not to exceed once every three (3)' months.  ;

ERla Test Reauirement i

Exercise valves for operability at-least once every'three-(3) months.

, Basis for Relief  !

This valve is norm 611y throttled open during powerfoperations to j maintain Steam Generator level.by controlling feedwater-flow. This-  !

valve cannot be tested without isolating Feedwater from the Steam Generators causing undesirable power transients and possible turbine 'I and reactor trip.  !

Alternate Testing j

This valve will be exercised (partial stroke) during the course-of.

, normal plant operations by automatically stroking to maintain '!

l programmed Steam Generator level. Abnormal valve operations will be i detected by Steam Generator level abnormalities. This valve will  !

also be exercised (full stroke) each cold shutdown, not to exceed l once every three (3) months. ,

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103

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h Unit 2 Pump and Valve Rev. 2 I inservice Test Plan i

l RR19 Test Requirement l

Exercise valves for operability at least once every three-(3) '

months.

i

. Basis for Relief This valve is normally closed above approximately 20%. power.and:

controls Feedwater flow to the Steam Generators below 20% power during start-up. This valve cannot be tested without isolating or perturbing Feedwater flow to the Steam Generators causing.

undesirable power transients and possible turbine and reactor-trip.'

Alternate Testine This valve will be required to be exercised (full stroke)-each' cold shutdown not to' exceed once every three (3) months.

RR20 Test Requirement i

Exercise valves for operability at least once every.three (3) months.

Basis for Relief l These 48 inch Containment Purge Valves are required by the Technical Specifications to be sealed closed during normal power operation.

l t Alternate Testine l

l These valves will be required to be exercised (full stroke) each

! cold shutdown not to exceed once every three (3) months.

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Unit 2 Pump and Valve Rev. 2 Inservice Test Plan RR21' Test Requirement Exercise valves.for operebility at least once every three (3) -

months.

Basis for Relief These 18 inch Containment Purge. Valves are allowed.by the Technical Specifications to be opened only for essential operational and personnel protection reasons minimiaing the total tima open during normal power operation. Failure of these valves during operation in the open position would cause a loss of primary containment integrity and necessitate a plant. shutdown.

Alternate Testing These valves will be required to be exercised (full stroke) each.

cold shutdown not to exceed once every three (3) months..

RR22 Test Reauirement t

Exercise valves for operability at least once every three'(3) months. 3 Basis for Relief 'I 1

This valve supplies Instrument Air.to containment to operate various valves. Isolation of Instrument Air (and'if valve fails closed and cannot be reopened) would cause a plant shutdown.

Alternate Testing l-This valve will be required to be exercised (full stroke) each cold shutdown not to exceed once every three (3) months.

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Unit 2 Pump and Valve Rev. 2 Inservice Test Plan RR23 t Test Reunirement Exercise valves for operability at least once every three (3) months.

Basis for Relief The operability testing of these normally closed valves during power ,

operation would result in undesirable power transients and'could cause a plant shutdown if valves fail to close. Closing the manual block valve upstream would require personnel entry into.the ,

Isolation Valve Cubicle area, which also contains the Main Steam Safety Valves in close proximity (approximately eight feet) to the '

manual block valve. Egress from this area requires personnel to pass by the Main Steam Safety Valves. Inadvertent operation of-a Main Steam Safety Valve would result in significant steam release to the immediate area from the safety valve discharge drip lines.

causing possible personnel injury.

Alternate Testing This valve will be required to be exercised (full stroke) each cold shutdown not to exceed once every three (3) months.

RR24 Test Recuirement Exercise valves for operability at least once every three (3)-

months.

Basis for Relief l The operability testing (full stroke) of these normally open valves at power is not practical and will cause a plant shutdown..

I

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Alternate Testing These valves will be required to be partial-stroke exercised 4

quarterly and full-stroke exercised each cold shutdown not to exceed i once every three (3) months.

9

. '106' 2 _ z_ _.

I Unit 2 Pump and Valve Rev. 2 Inservice Test Plan Igst Reanirement IWV-3421 requires that Category A valves shall be leak tested except valves which function in the course of plant operation in a manner : ,

which demonstrates functionally adequate leak-tightness need not be ,

leak tested.

Testine Method The leak tightness of these valves.is demonstrated to be functionally adequate during normal plant. operation. RCS is monitored for leakage per Technical Specification-3.4.6.2.

RR26 Test Recuirement Exercise valves for operability at least once every three (3) months.

Basis for Relief-These valves are line-pressure-actuated valves and therefore require their block valves to be open to allow reactor pressure to stroke the valve. This is not feasible at power _to-stroke these valves as an' unwanted RCS pressure and pressurizer level transient would occur possibly tripping the reactor. Acceptable n0Kimum RCS pressure has i

been determined to be between 300 and 400 psig,:with initial i pressurizer. water level at 25%, to allow for full stroking of these valves without causing an uncontrollable transient.

Alternate Testing These valves will be required to be exercised (full stroke) each-cold shutdown not to exceed once every three months.

3 107

Unit 2 Puno and valve Rev. 2 Inservice Test Pigg RR21 .

Test Recuirement Exercise valves for operability at least once every three (3).

months.

Basis for Relief l i

These valves cannot be stroked at a RCS pressure greater thantor equal to 350.psig due to an RCS pressure interlock.

Alternate Testine These valves will be required to be exercised (fu11' stroke).each cold shutdown not to exceed once every three (3) months.

ER2.8 Test Reauirement Exercise check valves for operability at least once every three (3) months. I Basis for Relief These valves cannot be exercised (full stroke) at power as the RHR' 'l Pumps have no provision for full flow testing except during cold j shutdown conditions.

Alternate Testine  ;

1 i i These valves will be required to be exercised'(partial stroke) at least once every three (3) months using RHR Pump recirculation flow, 3 and exercised (full stroke) each cold shutdown not to exceed once  !

every three (3) months with the RHR Pumps aligned for normal. ,

shutdown cooling flows. l l

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Unit'2 Pumo and Valve Rev. 2 l Inservice Test Plan ]

RR29 Test Recuirement Exercise check valves for operability at least once every three (3) months. .;

Basis for Relief These valves cannot be tested for operability (full stroke) at power because the RHR and'LHSI pumps cannot overcome RCS pressure to allow flow through these check valves.

Alternate Testing i These valves will be required to be exercised (full stroke) each cold shutdown not to exceed once every three (3) months.

RR30 Test Recuirement.

Exercise valves for operability at least once every three (3) months.

Basis for Relief These valves are normally inaccessible during power operation.

Exercising and stroke timing these valves will require lifting.

electrical leads to ensure repeatable stroke times since valve is normally controlled by a controller and not a handswitch.

Alternate Testine These valves will be required to be exercised (full stroke) at each cold shutdown not to exceed once every:three (3) months.

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Unit 2 Pumo and Valve Rev. 2 Inservice Test Plan ERE Test Recuirement 4 l

Exercise check valves for operability at least-once every three (3) months.

j- Basis for Relief 1

l These check valves can only be exercised (full stroke) by simulating LOCA conditions (pumping into.the Rr3 with RCS at zero or very low pressure) in order to get full pump flows.

l Alternate Testing These check valves will be required to be exercised (partial stroke)

[ at least once every three (3) months by running pumps at normal ~

l recirculation flows, and exercised (full stroke) each refueling I

outage by injecting into the RCS with the vessel head off using tho' appropriate pump (s) at full flod.

RR32 Test Reauirement l 1

l Exercise check valves for operability at least once every three (3) l months.

l Basis for Relief j

~

These check valves cannot be exercised (full stroke or partial stroke) at power as the HHSI pumps cannot develop discharge pressure greater than normal RCS pressure. These check valves cannot be.

exercised (full stroke or partial stroke) during. cold shutdown as  !

the HHSI pumps would overpressurize the RCS.  !

Alternate Testing I

These valves will be required to be exercised (full stroke) each refueling outage by injecting HHSI flow into the open and vented  !

RCS. ' !,

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URLt 2 pump _and Valve -Rev. 2 Inservice Test P(gg RRll  ?

Test Reauirecent >

Exercise check valves for operability at least once every three (3) months. ,

e Basis for Relffd

~

These check valves cannot be. exercised (full or partial stroke) at-power since the SIS Accumulator pressure is lower than the RCS pressure, cannot be exercised (full or partiel' stroke) during cold shutdown without the possibility of overpressurizing the RCS, and cannot be exercised (full stroke) during a refueling outage as the _

high flow rate of a full discharge with the SIS Accumulators at ,

normal pressure may cause internal damage to the core.

Alternate Testine. l These check valves will be verified operable by disassembly of one check valve each refueling outage on a rotating basis for inspection to ensure no degradation has occurred. If the check valve selected during any refueling outage- shows signs of unacceptable degradation, all other. applicable check valves will be disassembled and' inspected during that refueling outage.

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ERIA

' Test Reauirement Exercise valves for operability at least once every three (3) months.

Basis for Relief The operability testing (full stroke) of these valves during normal power operation requires isolating normal letdown in order to 4 prevent thermal shock and possible damage to the Letdown Heat ,

Exchanger. Isolating normal letdown durfug power operation requires closing either LCV-0465 or LCV-0466 (both inaccessible during normal power operation). Failure of either LCV-0465 or LCV-0468. in the closed position could result in plant shutdown due tc loss of normal pressurizer level control.

Alternate Testing These valves will be required to be exercised (full stroke) at each cold. shutdown not to exceed once every three (31 months.

i 111

P Unit 2 Pump and' Valve Rev. 2 /

Inservice Test Plan l ER15 Test Etquirement  !

Exercise valves for operability at least once every three (3) '[

nonths.

Spsis for Relief The operability testing (full stroke) of-these valves during normal, -; ~

power operation would result in thermal 1 shock and poscible damage to?

the Regenerative Heat Exchanger and Letdown Heat Exchanger. This valve is inaccessible during normal plant operation and failure of '

this valve in the closed position could result in plant shutdown.due to loss of normal pressurizer level control.

Altern te Teating These valves will be required-to be exercised (full stroke) at each-cold shutdown not be exceed once every three (3) months.

ER1b Test Reauireggnt Exercise valves for operability at least once every three (3) months.

I i

Basis for Relief The operabilit.y testing (full stroke) of. these' val'ves during. normal power operation requires closing of other. valves, normally >

inaccessible, inside reactor containment to protect a portion of the l letdown line from overpressurization and lifting of relief valve PSV-3100. Failure of these valves in the closed position or the l other valves closed for the test could result in a plant shutdown i due to loss of normal pressurizer level control. Also, isolation of-l letdown during normal power operation would result in thermal shock j and possible damage to the Regenerative Heat Exchanger and the Letdown Heat Exchanger.

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l Alternate Testing These valves will be required to be exercised (full stroke) at each cold shutdown not to exceed once every three (3) months.

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Unit 2 Pump.end Valve Rev. 2 Inservice Test Plan '

l RR37 Test Reuuire.amnt Exercise valves and check valves for operability at least once every three (3) months.

Basis for Relief The operability testing-(full stroke) of these valves during normal power operation requires alternating between the normal'and alternate charging headers. Alternating charging headers at power' -i would cause thermal shock and possible-damage to the charging nozzles at the Reactor Coolant System boundary.,

Alternate Testing These valves and check valves will be required to be exercised ~(full stroke) each cold shutdown not to exceed once every threel(3) months.

RR3.8 Test Reauirement -

^

Exercise valves for operability at least once every three (3)J months.

! Basis for Reli.gf,

[' The operability testing (full stroke) of _ these valves during normal power operation requires injecting Main Feedwater.through the cooler ,

Auxiliary Feedwater lines into the Steam Generator. Injecting the cooler water in the Auxiliary Feedwater lines followed by the hotter Main Feedwater would cause thermal shock'and possible damage to the Auxiliary Feedwater nozzles at the Steam Generator boundary.

I Alternate Testine l These valves will be required to be exercised (full stroke) at each cold shutdown not to exceed once'every three (3) months.

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i: l Unit 2 Pump and Valve Rev. 2-Inservice Test Plan ER39 Test Requirement Exercise check valves for operability at least once every three (3) .

months.

Basis for Relief These check valves cannot be exercised at power (full or partial stroke) since neither the HHSI pumps, LHSI pumps, RHR pumps, nor the SIS Accumulators can overcome RCS pressure. These check valves' cannot be e'xercised (full stroke) during cold shutdown'without the possibility of overpressurizing the RCS. These check valves cannot~ ,

be exercised (full stroke) during.a refueling outage as the high .

flow rate required may cause internal damage to the core..

Alternate Testine These check valves will be required to be exercised (partidl' stroke)'

each cold shutdown not to exceed once every three (3) months using RHR flow, and these check valves will be verified operable (full -

. stroke capable) by disassembly of.one check valve each refueling outage on a rotating basis _for. inspection to ensure no degradation has occurred. If the check valve selected during any refueling:

outage shows signs of unacceptable degradation, all other applicable

. check valves will be disassembled and inspected during that' refueling outage.

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1 Unit 2 Pumo and Valve Rev.'2 Inservice Test Plan' ERAD ,

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Test Reauircment

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The stroke time of all power-operated valves ~shall-be measured; Basis for Relief These valves supply air to the Standby Diesel Generator during the- .:

starting sequence establishing initial starting compression.-

Downstream of each redundant valve is a pressure switch that controls the alarm logic. The' failure of either-valve to'open sufficiently within one second of c start signal will result lIn a Starting Air System Malfunction alarm. Normal testing of-the Diesel  ;

Generator in accordance with Technical Specification will exercise  ;

both of these valves and verify stroke time-less than one second by 1 absence of alarms. This testing is performed at least once every 31

-days on a staggered test basis.

Alternate Testing

~

.These valves will be required to be verified operable during normal 4 Diesel Generator testing by verifying absence of the Starting Air System Malfunction alarm. No stroke times will be.taken..

9.11 l

l Test Reauirement i

Exercise check valves for operability at least once every three.(3) months, and category A valves shall be leak tested except valves which function in the course of plant operatien in a manner .which demonstrates functionally adequate leak tightness need not-be leak tested.

Testine Methgd I: '

These valves are normally closed unless the Residual' Heat Removal System experiences an external leak or a net intersystem leakage causing makeup from the RCP Seal Standpipe.which would be detectable by a low level alarm on the RCP Seal Standpipe servicing the affected train, and are therefore passive or proven passive by lack

' of a low level alarm. Leakage, however, is important'to the valve's function to prevent diversion of Low Head Safety Injection or Residual Heat Removal System flow. Leakage during noresl operation (if intersystem leakage into the Residual Heat Removal System is positive) and during Residual Heat Removal Pump operation (during heatup, cooldown, and pump testing) will be. detected by a high' level alarm in the corresponding RCP Seal Standpipe. No additional

( testing will be performed other than normal operations monitoring of the RCP Seal Standpipe alarms.

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Unit 2 Puma and Valve Rev.-2 Inservice Test Elag r

RR42 ,

Test Reauirement j IWY-3300 states that valves with remote position indication shall be observed at,2 east once every 2 years to verify that valve operation is accurately indicated.-

Basis for Relief These valves, AP-TV-2455 and AP-FV-2455A, are solenoid valves for which stem movement cannot be directly observed. These are redundant valves in series and operate simultaneously from a single switch with one set of indicating' lights.

Alternate Testing The valves are stroked and timed during normal inservice testing .l using the remote indicating lights. Open and closed indication is j

( actuated by the limit switches of each valve wired in series. 'j Therefore remote position indication is based.on:the slowest valve. j

( Since these redundant valves cannot be exercised separately (unless j l leads are lif ted, temporary 125 VDC power is supplied to the  : l, disabled valve to maintain it-in the open position and jumpers are placed across the disabled valve's limit. switches) the valves will be stroked simultaneously and remote position indication verified by observing system flow is initiated and then secured.

RR43 Test Requirement Exercise check valves for operability at least.once every three (3) l months. ]

Basis for Relief j l

4 I

These check valves can'only be exercised (full stroke) by simulating li

. LOCA conditions (pumping into the RCS with RCS at zero or very low

pressure) in order to get full pump flows.

t -

Alternate Testing R

These check valves will be required to be exercised (partial stroke) 'i at least once'every three (3) months,-provided RCS pressure is above pump shutoff head, by running pumps at normal recirculation flows,

, and exercised (full stroke) each refueling outage by injecting'into .,{

{. the RCS with the vessel head off using the appropriate pump (s) at  ;

full flow. l i

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Unit 2 Pump and Valve Rev. 2 Inservice Test Plan 4.0 PRAWINGS 5S109 F00016 #2 (F00016) 5S199 F00020 #2 (F00020) 5S149 F00024 #2 (F00024)

SS139 F00063 #2 (F00063) 5R1%9 F05001 #2 (F05001)

SR149 F05003 #2 (F05003)

SR149 F05004 #2 (F05004)

SR179 F05005 #2 (F05005) 5R179 F05006 #2 (F05006)

SR179 F05007 #2 (F05007)

SR179 F05009 #2 (F05009) -l I SN129 F05013 #2 (F05013)

I SN129 F05014 #2 (F05014) i SN129 F05015 #2 (F05015)

! SN129 F05016 #2 (F05016)

SR209 F05017 42 (F05017) 5R209 F05018 #2 (F05018)

I- SR209 F05019 #2 (F05019) j SR209 F05020 #2 (F05020)

SR309 F05022 #2 (F05022)  ;

, SR219 F05028 #2 (F05028) ]

SQ069 F05030 #2 (F05030)

SR279 F05033 #2 (F05033)  ;

5S199 F05034 #2 (F05034)

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Unit 2 Pumo and Valve Rev. 2 Inservice Test Plan 4.0 DRAWINGS (CONT.)

SN109 F05037 #2 (F05037) 5R289 F05038 #2 (F05038)

SR289 F05039 #2 (F05039) 5Q119 F05040 #2 (F05040)

SQ109 F05041 #2 (F05041) 5R279 F05042 #2 (F05042) 1 .

5Q129 F05044 #2 (F05044)  ;

SR349 F05046 #2 (F05046) }

50279 F05047 #2 (F05047)

SS209 F05057 #2 (F05057) k(

SC269 F05060 #2 (F05060)

SR169 F20000 #2 (F20000) n SS209 F20001 #2 (F20001)

SV149 V00017 #2 (V00017)

SV149 V00018 #2 (V00018)

SV149 V00019 #2 (V00019). ,

SV149 V00021 #2 (V00021)

SV119 V10001 #2 (V10001) a 3V119 V10002 #2 (V10002)

SZ329 Z00045 #2 (200045)

SZ169 200046 #2 (Z00046).

.i SZ549 Z47501 #2 (Z47501)  ;

1 14926-8041-00108-BCE (8041-00108) j i

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