ML20148K430
ML20148K430 | |
Person / Time | |
---|---|
Site: | Vogtle |
Issue date: | 03/02/1988 |
From: | GEORGIA POWER CO. |
To: | |
References | |
ISI-P-016, ISI-P-16, NUDOCS 8803310145 | |
Download: ML20148K430 (150) | |
Text
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O SOUTHERN COMPANY SERVICES INSPECTION,' TESTING, AND ENGINEERING DEPARTMENT FOR GEORGIA POWER COMPANY ISI-P-016 INSERVICE TEST PROGRAM V0GTLE ELECTRIC GENERATING PLANT UNIT 2 i
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INSERVICE TEST PROGRAM .i l\_]' -
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1 VOGTLE ELECTRIC GENERATING PLANT l
UNIT 2 i
Table of Contents .
Section M Introduction.......................................... 1-1 ,
Pumps................................................. 2-1 Pump Relief Requests.................................. 3-1 Nuclear Service Cooling Water (NSCW) Pumps....... 4-1 Component Cooling Water (CCW) Pumps.............. 5-1 Safety Injection (SI) Pumps...................... 6-1 Residual Heat-Removal (RHR) Pumps................
7-1 Containment Spray (CS) Pumps..................... 8-1 Chemical and Volume Control (CVCS) Pumps......... 9-1 Auxiliary Feedwater (AFW) Pumps................. 10-1 Engineered Safety Feature Chilled Water (ESF) Pumps..................................... 11-1 Va4ves............................................... 12-1 Valve Relief Requests................................ 13-1 Valve Cold Shutdown Justifications................... 14-1
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1.0 INTRODUCTION
1.1 GENERAL The Inservice Testing Program is written and presented in accordance with the requirements of the Code of Federal Reg-ulations 10 CFR SO.SSa(g). This document provides a descrip-tion of the inservice testing program for Vogtle Electric Generating Plant, Unit 2 (VEGP-2), for safety-related ASME Boiler and Pressure Vessel Code Class 1, 2, and 3 pumps and valves in accordance with the requirements of Subsections IWP and INV of the ASME Boiler and Pressure Vessel Code,Section XI, 1983 Edition through Summer 1983 Addenda. This program is refer-enced by VEGP-2 plant Technical Specification 4.0.5.
1.2 EFFECTIVE PERIOD This document shall go into effect beginning with baseline testing to establish reference data and shall then remain in
, effect through the first 120-month interval of commercial operation.
1.3 PROGRAM REVISIONS
As a minimum, this program will be reviewed and revised as
- necessary for compliance with the ASME Code in effect 12 months prior to the end of the first 120 months of commercial operation.
Similarly, this program will be reviewed and revised for each subsequent 120-month interval. Georgia Power Company reserves the right to submit program revisions which may enhance or improve this pump and valve testing program at any time within the effective period. ,
1.4 GENERAL PROGRAM CONCEPT The program specifiesSection XI testing requirements for components providing, either by action or position, a safety-related function. By definition, a safety-related function is i one that is used in:
- a. Mitigating the consequences of an accideni,
- b. Shutdown of the reactor to the cold shutdown condition.
- c. Maintaining the reactor in w safe shutdown condition.
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(~' Section XI requires quarterly testing of all components unless it
\ is impractical to do so. This program specifies quarterly testing of pumps and valves unless it has been determined that such testing would: ,
- a. Be impractical due to system or component design,
- b. Render a safety-related system inoperable,
- c. Cause a reactor or turbine trip,
- d. Require significant deviations from normal plant operations.
- e. Require entry into_ inaccessible plant areas,
- f. Increase the possibility of an intersystem LOCA.
Each component excluded from quarterly testing has been analyzed to determine when appropriate testing may be performed. If operation of a valve is not practical during plant operation, the Code allows part-stroke exercising during normal plant operation and full-stroke exercising at cold shutdown.
Since the Code accepts cold shutdown testing, this program does not request relief for those valves for which testing is delayed O until cold shutdown. The Program does provide a justification for delay of testing until cold shutdown. These justifications are prepared in a format similar to relief requests, and are located behind the Cold Shutdown Justification tab.
Where it has been determined that testing is not practical during plant operation, or at cold shutdown, a specific relief request has been prepared. Each specific relief request provides justification for not performing the Code-spec ified tests, and provides appropriate alternative testing. In addition to specific relief requests, general' relief requests which address specific Code requirements found to be impractical for this site have been prepared. Relief requests are located behind the Relief Requests tab.
The two general relief requests which have been written are RR-2 and RR-3. RR-2 requests relief from IWV-3417(b) and IWV-3523 which state that, when corrective action is required as a result of tests made during cold shutdown, the condition shall be corrected before startup. Relief was requested to alJow corrective action to be performed prior to the valve being required for plant operability as defined in the Plant Technical Specifications. RR-3 requests relief from IWV-3413(b) and IWV-3417 for valves with stroke times of 2 seconds or less.
' Relief was requested to require the acceptance of the test to be j based only on the stroke time limit and not the "50 percent" criterion in IWV-3417.
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fN 1.5 DEFINTIONS Terms below, when used in the Inservice Testing Program, are defined as follows:
Quarterly: An interval of 92 days for testing components which can be tested during normal plant operation.
Cold Shutdown: Testing scheduled for cold shutdown will commence no later than 48 hours5.555556e-4 days <br />0.0133 hours <br />7.936508e-5 weeks <br />1.8264e-5 months <br /> after entering cold shutdown. Testing will continue until all-tests are complete or the plant is ready to return to power. Completion of all testing is not a prerequisite to return to power. Testing not completed at one cold shutdown will be performed during subsequent cold shutdowns that may occur before the refueling outage. In case of frequent cold shutdowns, valve testing will not be performed more often than once every 3 months. The 48-hour interval need not hold for planned cold shutdowns when their duration is of sufficient time to accomplish all shutdown testing.
Refueling: Testing scheduled for refueling will be performed
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t during the normal scheduled refueling shutdowns before returning to power operation.
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2.0 PUMPS The following Pump Test List describes the inservice /preservice testing of pumps subject to the requirements of Subsection IWP of the American Society of Mechanical Engineers (ASME) Code,Section XI, 1983 Edition through Summer 1983 Addenda. The edition and addenda of Section XI for the inservice testing will be as required by 10 CFR 50.55a. The Pump test List provides identifi-cation of the pumps to be tested, inservice inspection (IST) class, reference drawings, test requirements, and frequency of the tests. The legends before the Pump Test List de3cribe the alpha coding used in the list.
Relief from the te9 ting requirements of Section XI is requested where full compliance with the requirements of the code is not practical. In such cases the Pump Test List refers to a specific pump relief request (PR) number for the appropriate pump. The relief request provides specific information which identifies the applicable code requirements, the justification for the relief request, and the testing to be used as an alternate.
The baseline testing of pumps will be performed during preoperational testing or during the first surveillance test run.
Reference values for subsequent inservice testing will be obtained from these baseline tests.
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2.1 Inservice Test Plans IWP-6230 (Inservice Test Plans) requires test plans which include the following:
(a) the hydraulic circuit to be used; (b) the location and type of measuremens for each of the required test quantitles; (c) the reference values (Table IWP-3100-1), limits of Pi und Tb (Table IWP-3100-2), and any other values required by Subsection IWP.
Included in Sections 4 (NSCW) through 11 (ESF) of this document is information that meets the intent of this requirement.
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i LEGEND FOR HEADINGS Pump I.D. No. - Unique Pump Identification Number ISI Class - The Classification as Determined for Section XI Project Class - The Classification as Determined by the Vogtle Project P&ID/ Sheet Number - Piping and Instrumentation Diagram on which pump is shown.
Coordinates - Location on P&ID where pump is shown.
Pump Descriptions - Functional name of pump.
Relief Req - Applicable relief request numbers are indleated with a "PR" prefix.
LEGEND FOR PUMP PARAMETERS Pi - Inlet pressure (psig)
Po - Outlet pressure (psig) dP - Differential pressure dP = Po-Pi (psi)
Q - Flowrate (gal / min)
V - Vibration amplitude (mil)
T - Bearing temperature ('F)
LL - Lubricant level or pressure N - Speed (rpm)
PR - Pump Relief Request LEGEND FOR FREQUENCY OF TEST Q - Quarterly A - Annually N/A - Not applicable
- - Test deleted, see Relief Request I \
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016 REV 0 VEGP Unit No. 2 j
Pump Test List System: Nuclear Service Cooling w ter - Systen 1202 .
Sheet 1 of 1~
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Neasured Para eters and Freg m cy V LL N - Relief j Pump Class P&lD/ Sheet Coordi- Pump Pi Po dP- Q T '
Descriptions {25i9}[25iH} (25il (92e} (mil} {'F} [NA} { rpm} _ Reg. Notes I.D. N a ber 151Pgj. t Number __ nates Q N/A N/A N/A s. ;
2-1202-P4-001 3 313 2X4DB133-1 C-8 NSCW Pumps Q Q Q Q 2-1202-P4-002 3 313 2X4DB133-2 C-8 '.5CW Pumps Q Q Q Q Q N/A N/A N/A 2-1202-P4-003 3 313 2X4DB133-1 C-5 NSCW Pumps Q Q Q Q Q N/A N/A N/A 2-1202-P4-004 3 313 2X408133-2 C-5 NSCW Pumps Q Q Q Q Q N/A N/A N/A 2-1202-P4-005 3 313 2X4DB133-1 C-7 NSCW Pumps Q Q Q Q Q N/A N/A N/A 2-1202-P4-006 3 313 2X4DB133-2 C-1 NSCW Pumps Q Q Q Q Q N/A N/A N/A 2-1202-P4-007 3 313 2X408133-1 C-6 NSCW Transfer Pump 'Q Q Q Q Q N/A N/A N/A 2-1202-P4-008 3 313 2X408133-2 C-6 NSCW Transfer Pump Q Q Q Q Q N/A N/A N/A
- The bearings of the nuclear service cooling water pumps are in the main process flow path and therefore temperature measurements are not required by IWP-4310.
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016 REV 0 VEGP Unit No. 2 .
Pump Test List Component Cooling Water - System No. 1203 Sleet 1 of 1 System:
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. :i Measured Parameters and Freguegcy 4
Pump Pi, Po dP Q V T LL N Relief i Pump __C} ass __ P&l0/ Sheet Coordi-1A_heht 1stgtgj __seht__ _ggin_ pescietign, (egig) (esigl tes!) (gem] [e!!1 en g41 [real _gg _ Notes Q - Q N/A PR-1 2-1203-P4-001 3 313 2X408136 G-4 CCW Pumps Q Q Q Q Q - N/A PR-1 2-1203-P4-002 3 313 2X408136 D-4 CCW Pumps Q 'Q Q Q Q Q - Q N/A PR-1 2-1203-P4-003 3 313 2X408136 G-4 CCW Pumps Q Q Q Q Q Q - Q N/A PR-1 2-1203-P4-004 3 313 2X408136 C-4 CCW Pumps Q Q Q Q Q - Q N/A PR-1 2-1203-P4-005 3 313 2X408136 F-4 CCW Pumps Q Q Q CCW Pumps Q Q - Q N/A PR-1 2-1203-P4-006 3 313 2X4DB136 8-4 Q Q Q 095Bn 2-4
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o VEGP Unit No. 2 016 REY 0 -
Pump Test List -
System: Safetyinjection-SystemNo 1204 Sheet 1 of 1
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.l'hasured _ Parameters and Freggengy Pump Pi Po dP V T LL N Relief 9 Pump __ Class _ P&lD/ Sheet Coordi- Q
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1:D;,Ngppt {S{ ((g,j _ Number , nates, Desgriptigns {ps,ig){ps_ig){ psi){gpm)(mi{;F)(NA){rps) ,geg., Notes 2-1204-P6-003 2 212 2X4DB121 E-3 Safety Injection Q Q .Q Q Q - Q N/A PR-1 Pumps 2-1204-P6-004 2 212 2X408121 C-3 Safety Injection Q Q Q Q Q - Q N/A PR-1 Famps 0958n 2-5
I O s . VEGP Unit No. 2 016 REV 0 :} Puep Test List System: Residual Heat Removal - System No. 1205 Sheet 1 of 1 Measured Parameters and Freguency Pump Pump Pi Po dP Q V T LL N Relief _ Class _ P&lD/ Sheet Coordi-I.D. Number ISIProj. _ Number , nates , Descriptions {psig} {psig} (ESI) [9pm} { mil} {]} [NA} (rpm} _ Reg., Not,es 2-1205-P6-001 2 212 2X40B122 G-4 RHR Pumps Q Q Q Q Q - Q N/A PR-1 2-1205-P6-002 2 212 2X408122 D-4 RHR Pumps Q Q Q Q Q - Q N/A PR-1 i I 0958n 2-6
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1 VEGP Unit No. 2 016 REV 0 Pump Test List System: Containment Spray - System No. 1206 Sheet 1 of 1 j l. ' I' Mea'sured Parameters and Fregu ecy Pump ,, Class,, P&ID/ Sheet Coordi- Pump Pi Po dP Q V T LL N Relief [E_EMh[ 151((gj. Number nates Descriptigns ( gig} {psjg} (pgj} (92m} (gj}} [ [} (@@) ([pg} ,@en , $gtgs, 2-1206-P6-001 2 212 2X408131 G-4 CS Pumps Q Q Q Q Q - Q N/A PR-1 i 2-1206-P6-002 2 212 2X408131 C-4 CS Pumps 0 Q Q Q Q - Q N/A PR-1 l l 4 4 l 095Bn 2-7
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VEGP Unit No. 2 016 REV 0 Purp Test List System: Chemical and Volume Control - System No. 1208 Sleet 1 of 1 , MusuredParameters_and_[reguency Pump _ Clays __ P&l0/ Sheet Coordi- Pump Pi Po dP Q V T LL N Relief 1 1 .E @ C 151EE?l: __5NE__ _nft n_ Degcriptigng {pgig}{pgig}{pyi][ges}[ mil}{[}{$3}{[pe] _Seg;_ Egteg Centrifugal Clerg- Q - N/A PR-1 2-1208-Ph-002 2 212 2X4DB116-2 G-4 Q Q Q Q Q ing Pumps C-4 Centsilugal Charg- Q Q - Q N/A PR-1 2-1206-P6-003 2 212 2X4DB116-2 Q Q Q ing Pumps . 2-1206-P6-006 3 313 2X408118 D-4 Buric Acid Q Q Q Q Q ' N/A N/A N/A PR-3 Transfer Pt.mps 2-1208-P6-007 3 313 2X4DB118 6-4 Boric ?.cid Q Q Q Q Q N/A N/A N/A PR-3 Transfer Fumps
- Bearing surf aces and other parts are lubricated and cooled by the positive flow of pumped fluid. Tierefore, temperature seasurements are not required by IWP-4310.
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O O 016 REV 0 VEGP Unit No. 2 Pump Test List System: Auniliary Feed.ater - Syste No. 1302 Sleet 1 of I ] l 1 Measured Parameters and Freguency Pump Pump Pi Po dP Q V T LL N Relief __ Class __ P610/ Sheet Coordi-4 1A_!ueht Is1 etyL __gueht_, _etn_ twstieties Inis) Inis) (nil (seal hi!) (2) (?!) keel _Ees _ Betn AFW Pump (Turbire Q - Q PR-1 i 2-1302-P4-001 3 313 2X4DB161-2 F-5 Q Q Q Q Q Driven) 2-1302-P4-002 3 313 2X4D8161-2 0-6 AFW Pumps Q Q Q Q Q - Q N/A PR-1 2-1302-P4-003 3 313 2X4D8161-2 B-6 AFW Pumps Q Q Q Q Q - Q N/A PR-1 i I i 1 1 i l T 095Bn 2-9
O 016 REV 0 VEGP Unit No. 2 Pump Iest List System: Safety-Related (ESF) Chillers - System No.1592 Sheet i of I Measured Parameters,49d,Freguegcy Pump Pi Po dP Q V T LL N Relief : Puep ,, Class,, P&l0/ Sheet Coordi- ' l A _E s _c 151 Pcg h ,,g @ c,, ,g t n , 995tjptjgny (psig} (psig} {psj} [92*} [?il} f_O [E31 [EE!} .E"91, Hutu 2-1592-P7-001 3 313 2X4DB221 F-5 ESF Chilled Water Q Q Q Q 0 - Q N/A PR-1 Pump 2-1592-P7-cD2 3 313 2X4DB221 C-5 ESF Chilled Water Q Q Q Q Q - Q N/A PR-1 Pump i h
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f I RELIEF REQUEST , PR-1 PUMPS: All pumps except the NSCW and NSCW j Transfer, and Boric Acid Transfer Pumps CLASS: 2 and 3 TEST REQUIREMENTS: IWP-3300 requires a bearing temperature measurement at least once a year. BASIS FOR RELIEF: The once-a-year temperature measurement will not provide significant information about pump conditions. 1 Industry experience has shown that bearing temperature changes caused by degrading bearings occur only after major. degradation has occurred at the pump. Prior t7 this, the vibration measurement w . ovide the necessary information ts :n the operator of an impending malfunction. The long runr.ing time required to achieve I\ temperature stability could result in (s. increased maintenance and repair. Deletion of this measurement will not have significant affect on evaluating pump test results since other required test parameters are being measured. ALTERNATE TESTING: Vibration amplitude will be measured quarterly as required by Code. I lI 1 i 4 0957n 3-1 016 REV O
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.m .cm. - - , I RELIEF REQUEST )
PR-3
-PUMPS: Boric acid transfer pumps (2-1208-P6-006 and 2-1208-P6-007)
CLASS: 3 TEST REQUIREMENTS: IWP-4120 states "The full-scale range of each instrument shall be three times the reference value or less." BASIS FOR RELIEF: Suction pressure gauges PI-10115 and PI-10116 on the boric acid transfer pumps have a range of -15 psi to 15 psi. The suction pressure measurements are expected to be less than 4 psi. Therefore, the maximum , full scale range of the gauge would have to be less than 12 psi to be within Code requirements. These instruments are within the - accuracies of Table IWP-4110-1. Considering the low pressures involved, the difference between the Code ranges O' and the range on the installed
'nstruments would have no significance on the adequacy of the measurements taken.
ALTERNATE TESTING: The installed instruments will be used for taking suction pressure measurements during pump tests. 0957n 3-3 016 REV O
i NUCLEAR SERVICE COOLING WATER PUMPS (2-1202-P4-001, -002, -003, -004, -005, -006, -007, -008) t 4 System Function The nuclear service cooling water (NSCW) system.provides cooling water for the containment coolers, control building essential chiller condensers, various engineered safety ; 4 features pump coolers, and the component cooling water and auxiliary component cooling water heat exchangers and transfers the heat removed from these systems to the ultimate heat sink. . Pump Descriotion The NSCW pumps (Table 4-1) are each rated at 8600 gal / min at 230-ft head. Each pump is driven by a 700-hp motor. T h'e , transfer pumps (Table 4-2) are driven by a 30-hp motor and are rated at 600 gal / min at 110-ft head. The following information is included for testing of these pumps: Test Parameter Tables (Tables 4-3 through 4-10) Pump Test Loops (Drawings.ISI-D-250 through 257) Pump Characteristic Curves (Figures 4-1 through 4-6) t I F
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o Table 4-1 NSCW Pumps (2-1202-P4-OO1, -002, -003, -004, -005, -006) Quantity 6 Type Vertical centrifugal, 2 stages, self lubricated Manufacturer /Model Bingham-W111amette/18x27B VCM Rated capacity 6600 (gan/ min, each) Rated total differential 230 head (ft) NPSH required, low level 33.5 basin (ft) NPSH available 36.5 O (minimum ft) Driver Type Electric motor Horsepower 700 Revolutions / min 1170 Power supply 4160 V, 60 Hz, 3 phases Project Class 313 Outline Drawing 2X4AF02-33 Instruction Book 2X4AF02-94 ! Location NSCW Pump House l P&ID 2X4DB133-1, -1 i o 016 REV O 0957n
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i i i () Table 4-2 NSCW Transfer Pumps (2-1202-P4-007, -008) _ i Quantity 2 , t Type Vertical Centrifugal, 4 self-lubricated 2 stages ; Manufacturer /Model Bingham W111amette/8x12A VCM . Rated capacity 600 i (gal / min, each) Rated total differential 110 > head (ft) i NPSH required, low level 18 basin (ft) ; -j NPSH available 37.7 (minimum ft) !~ Driver i Type Electric motor Horsepower 30 Revolutions / min 1760 t Power supply 480 V, 60 Hz, 3 phases a Project Class 313 l Outline Drawing AX4AF02-26 i Instruction Book 2X4AF02-96 I i i , Location NSON Pump House 1 P&ID 2X4DB133-1, -2 1 t 1 i I F l 4
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r~N O %s %_./ Table 4-3 Test Parameter Table f9r Puep 2-1202-P4-031 Test Instrument, ,- [rgwengy _ Utilized Eghtensg,Vghe @mynts E*rgmetgr N/A N/A Speed measurement required only Speed (N) N/A on variable speed motors Quarterly (1) L1-1606 N/A Pi 2 33.5 ft required in basin InletPressure(Pi) Outlet Pressure (Po) Quarterly PI-2148 N/A CifferentialPressure(dP) Quarterly N/A(dP=Po-Pi) dPr(2) Flowrote(Q) Quarterly FI-11160 Or(2) Vibration Amplitude (V) Quarterly M&TE Vr (2) Nute 3 Proper Lubricant level N/A N/A N/A Bearings in main process flow path or Prnsure (LL) N/A N/A Not required per IWP-4310, Bearing Temperature (Tb) N/A bearings in main process flow path General Comment: At tie discretion of Georgia Power Compant instrumentation otter than that listed above may be used for measuring inservice test quantities. Notn: (1) Measure before pump startup and during test (2) Reference values determined per IWP-3110 (3) Temporarytestequipment(M&TE)used 016 Rev. O 095Bn
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Table 4-4 Test Parameter Table for Pump 2-1202-P4-002
]- ]id Test Instrument:
Utilized _ Reference Values Comments Parameter Freguency N/A Speed measurement required only Speed (N) N/A N/A on variable speed motors. Quarterly (1) LI-1607 N/A Pi 1 33.5 ft required in basin. InletPressure(Pi) OutletPressure(Po) Quarterly PI-2149 N/A-Differential Pressure (dP) Quarterly N/A(dP=Po-Pi) dPr(2) Flowrote(Q) Quarterly FI-11763 'Qr(2) Vibration Amplitude (V) Quarterly M&TE Vr(2) Note 3 Proper Lubricant Level N/A N/A N/A Bearings in main process flow path orPressure(LL) BearingTemperature(Tb) N/A N/A N/A Not required per IWP-4310,
- bearings in main process flow path General Comment:
At the discretion of Georgia Power C'ampany instrumentation other than that lirted above may be used for measuring inservice test quantities.- Notes: (1) Measure before pump startup and during test (2) Reference values determined per IWP-3110 (3) Tempc,rarytestequipment(M&TE)used 016 Rev. O 0958n
L ! Table 4-5. : Test Parameter Table for Pump 2-1202-P4-003 l l ~
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Parameter Fgguency Utilizedf Reference Values Comments ; {i:n 3 Speed (N) N/A N/A Speed measurement required only : N/A on variable speed motors .6 l i i-Quarterly (1) L1-1606 N/A Pi 133.5 f t required in basin 3 InletPressure(Pi) 4 OutletPressure(Po) Quarterly PI-2152 N/A - 7 4 J Differential Pressure (dP) Quarterly N/A(dP=Po-Pi) dPr(2) { 1, Flowrote(Q) Quarterly F1-11762 Qr(2) 1
- Vibration-Amplitude (V) Quarterly M&TE Vr(2) Note 3 .
t Proper Lubricant level .N/A N/A N/A Bearings in main process flos path or Pressure (LL) f I I Not required per IWP-4310, j BearingTemperature(Tb) N/A N/A N/A bearings in main process flom i path ! l General Comment: At the discretion of Georgio Power Company instrumentation other than that listed above may be used for measuring inservice test quantities. $ i i Notes: ! l1) Measure before pump startup and during test , l (2) Reference values determined per IWP-3110 j (3) Temporary test equipment (M&TE) used i I l 1 j t i 0958n 016 Rev. 0 & l
m w.a..umzw. we, a s w.,, .. , -,- . . . . . . . . , . - - - - - _ _ - - _ O O 0: [ Table 4-6 Test Parameter Table for Pump 2-1202-P4-004 Test Instrument Parameter Freguency Utilized),'
- O],ifi. Reference Values Comments N/A N/A Speed measurement required only Speed (N) N/A on variable speed motors Quarterly (1) LI-1607 N/A Pi 2 33.5 ft required in basin InletPressure(Pi)
Quarterly PI-2153 N/A OutletPressure(Po) Differential Pressure (dP) Quarterly N/A(dP=Po-Pi) dPr(1) Flowrote(Q) Quarterly FI-11765 Qr(2) VibrationAmplitude(V) Quarterly N&TE Vr(2) Note 3 N/A Bearings in main process flow Proper Lubricant Level N/A N/A path orPressure(LL) N/A N/A Not required per IWP-4310, BearingTemperature(Tb) N/A hearings in main process flow path General Comment: At the discretion of Georgia Power Company instrumentation other than tLat listed above may be used for measuring inservice test quantities. Notes: (1) Measure before pump startup and during test (2) Reference values determined per IWP-3110 (3) Temporarytestequipment(M&TE)used 9-016 Rev. 0 ' 0958n
O O Table 4-7 Test Parameter Table for Pump 2-1202-P4-005 Test InstrumentI, !\ ll; Reference Values Comments Porameter Freguen_cy Utilized _ N/A- N/A Speed measurement required only Speed (N)' N/A on variable speed motors Quarterly (1) LI-1606 N/A Pi 1 33.5 ft required in basin InletPressure(Pi) OutletPressure(Po) Quarterly 'PI-2150 N/A DifferentialPressure(dP) Quarterly N/A(dP+Po-Pi) dPr(2) Flowrote(Q) Quarterly FI-11761 Or(2) . VibrationAmplitude(V) Quarterly. M&TE Vr-(2) Note 3 Proper Lubricant Level N/A N/A N/A Bearings in main process flow path orPressure(LL) N/A Not required per IWP-4310, BearingTemperature(Tb) N/A N/A bearings in main process flow
. path General Comment:
At the discretion of Georgia Power Cooper.y instrumentation other than that listed above may be used for measuring inservice test quantities. Notes: (1) Measure before pump startup and during test , (2) Reference values determined per IWP-3110 (3) Temporarytestequipment(M&TE)used 016 Rev. O 0958n
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,,aw'wy f % ) (w/ ) ( < '- q; Table 4-8 Test Parameter Table for Pump 2-1202-P4-006 Test Instrument ', ,' ' ' ' ' ; l I, .i Reference Values Comments P8Easytyg [tyguency . lit ilized _
N/A N/A Speed measurement required only Speed (N) N/A on variable speed motors Quarterly (1) LI-1607 N/A Pi 2 33.5 f t required in basin Inlet Pressure (Pi) Outlet Pressure (Po) Quarterly PI-2151 N/A DifferentialPressure(dP) Quarterly N/A(dP=Po-Pi) dPr(2) Flocate(Q) Quarterly FI-11764 Qr(2) Vibration Amplitude (V) Quarterly M&TE Vr (2) Note 3 Proper Lubricant level N/A N/A N/A Bearings in main process flow path orPressure(LL) BearingTemperature(Tb) N/A N/A Not required per IWP-4310, N/A bearings in main process flow path General Comment: At the discretion of Georgia Power Company instrumentation other than that listed above may be used for measuring inservice test quantities. Notes: (1) Measure before pump startup and during test (2) Reference values determined per IWP-3110 (3) Temporarytestequipment(M&TE)used 016 Rev. O
.0958n
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~ %d Table 4-9. ,
Test Parameter Table for Pump 2-1202-P4-007 Test Instrument'- Uh.. Reference Values Comments Pa.ameter Freguency Ut ilized_ , N/A N/A Speed measurement required only Speed (N) N/A ' on variable speed motors t Quarterly (1) LI-1606 N/A Pi 2 18 ft required in basin InletPressure(Pi) . Quarterly PI-2154 N/A GutletPressure(Po) Quarterly M&TE dPr,(2) Note 3 DifferentialPressure(dP) Flo. rate (Q) Quarterly FI-2156 Or(2) Vibration Amplitude (V) Quarterly M&TE Vr(2) Note 3 Proper Lubricant level N/A N/A N/A Bearings in main process flow path orPressure(LL) N/A Not required per IWP-4310, BearingTemperature(Tb) N/A N/A bearings in main process flow path General Comment: At the discretion uf Georgia Power Company instrumentation other than that listed above may be used for measuring inservice test quantities. Notes: (1) Measure before pump startup and during test (2) Reference values determined per IWP-3110 (3) Temporary test equipment (M&TE) used 016 Rev. O 0958n
( f%. .m-9 5 Table 4-10 Test Parameter Table for Pump 2-1202-P4-009 Test Instrument?l P 7j!:r? Comments Parameter Freguency . Utilized _' [eference, Values N/A Speed measurement required only Speed (N) N/A N/A on variable speed motors Quarterly (1) LI-160T N/A. Pi 218 ft required in basin InletPressure(Pi) OutletPressure(Po) Quarterly PI-2155 N/A Quarterly M&TE dPr(2) Note 3 DifferentialPressure(dP) Flowrote(Q) Quarterly FI-2157 Qr (2) Vibration Amplitude (V) Quarterly M&TE Vr(2) Note 3 Proper Lubricant level N/A N/A Bearings in main process flow , N/A path orPressure(LL) N/A N/A Not required per IWP-4310, BearingTemperature(Tb) N/A bearings in main process flow path General Comment: At the discretion of Georgia Power Company instrumentation other than that listed above may be used for measuring inservice test quantities. Notes: (1) Measure before pump startup and during test (2) Reference values determined per IWP-3110 (3) Temporarytestequipment(M&TE)used 016 Rev. 0 0958n
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COMPONENT COOLING WATER PUMPS (2-1203-P4-001, -002, -003, -004, -005, -006) ,, System Function The component cooling water system (CCWS) performs the following f t. actions : A. Provides a continuous supply of cooling water to the heat exchangers that are necessary for safe operation of the reactor facility, under accident as well as normal I conditions, and that handle radioactive fluids during normal operation. B. Provides a continuous supply of cooling water to the residual heat removal (RHR) heat exchangers and pumps during accident conditions. C. Serves as a barrier to radioactive m'aterial leakage from the containment systems serviced by the CCWS to the nuclear service cooling water system, which is
/"*g open to the atmosphere through the ultimate heat sink. ) E:
Pump Description The component cooling water (CCW) pumps (Table 5-1) are horizontal, centrifugal pumps, rated at 5000 gal / min at a head of 160 ft. They are driven by 300-hp electric motors. The pumps are 50-percent capacity with one standby per train. They take suction from the CCW heat exchanger discharge, and pump forward to a common line, which delivers the CCW as a coolant to the spent fuel pool heat exchanger, the residual heat exchanger, and the RHR pump seal cooler. The following Information is included for testing of these pumps: Test Parameter Tables (Tables 5-2 through 5-7) Pump Test Loops (Drawings ISI-D-258 through 263) Pump Characteristic Curves (Figures 5-1 through 5-6) G' 5-1 016 REV O 0957n
O' Table 5-1 COMPONENT COOLING WATER PUMPS (2-1203-P4-001, -002, -003, -004, -005, -006) Quantity 6 Type Horizontal, centrifugal, single-stage, horizontally split volute pumps with mechanical seals Manufacturer /Model Ingerso11-Rand /10x18 SE Capacity (gal / min) (each) 5000 TDH (ft) 160 HPSH Required (ft) 17 Driver Electric motor hp f, 300 Manufacturer Westinghouse Type LAC-LLD, 5008-S rpm '." 1761 Power supply 4160 V/3 phase /60 Hz Project Class 313 Outline Drawing 2X4AF01-109, 2X4AF01-110 Instruction Book 2X4AF01-137 Location Auxiliary building, level A P&ID 2X4DB136 . O 0957n 016 REV O
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Table 5-2 Test Parameter Table for Pump 2-1203-P4-001 i Test ( Instrumen'((h;!.M[%Y Para eter Freguency Utilized ' ~ Reference Values Comments N/A Speed measurement required only Speed (N) N/A N/A on variable speed motors Quarterly (1) M&TE N/A Pi27.4psig(17ft) Note 3 - InletPressure(Pi) OutletPressure(Fo) Quarterly PI-1858 N/A DifferentialPressure(dP) Quarterly N/A(dP=Po-Pi) dPr(2) Flowrote(Q) Quarterly F1-11794 Qr(2) VibrationAmplitude(V) Quarterly ETE Vr(2) Note 3 Proper Lubricant level Quarterly N/A N/A Observe lubricant level orPressure(LL) N/A N/A Relief requested - See PR-1 BearingTemperature(Tb) N/A General Comment: At the discretion of Georgia Power Company instrumentation other then that listed above may be used for esasuring inservice test quantities. Notes: (1) Measure before pump startup and during test (1) Reference values determined per IWP-3110 (3) Temporarytestequipment(ETE)used 1 016 Rev. O ~ 0958n j
V ., Table 5-3 Test Parameter Table for Pump 2-1203-P4-002 o Test Inst m t - Reference Values Comments Parameter Fmmcy _ Utilized]fqfM h N/A N/A Speed measurement required only Speed (N) N/A on variable speed motors
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Quarterly (1) M&TE N/A Pi17.4psig(17ft) Note 3 InletPressure(Pi) Quarterly PI-1859 N/A OutletPressure(Po) DifferentialPressure(dP) Quarterly N/A(dP=Po-Pi) dPr(2) Floerate(Q) Quarterly FI-11795 Qr(2) VibrationAmplitude(V) MIE Vr(2) Note 3 Quarter 19' Proper Lubricant Level Quarterly N/A N/A Observe lubricant level orPressure(LL) N/A N/A Relief requested - See PR-1 BearingTemperature(Tb) N/A General Comment: At the discretion of Georgia Power Company instrumentation other than that listed above may be used for measuring inservice test quantities. Notes: (1) Measure before pump startup and during test (2) Reference values determined per IWP-3110 (3) Temporary test equipment (ETE) used 016 Rev. O ~ 0958n
5 ; Table 5-4 Test Parameter Table for Pump 2-1203rP4-003
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Test lostrument
- Comments Parameter Freguency _Utiliged.]f[,f,,1l} f Reference Values N/A Speed esasurement required only Speed (N) N/A N/A on variable speed motors Quarterly (1) ETE N/A Pi 17.4 psig (17 f t) Note 3 InletPressure(Pi)
Quarterly PI-1860 N/A OutletPressure(Po) DifferentialPressure(dP) Qu(rterly N/A(dP=Po-Pi) dPr(2) Qr(2) < Florate(Q) Quarterly F1-11796 Vibration Amplitude (V) Quarterly ETE Vr(2) Note 3 Proper Lubricant level Quarterly N/A N/A Observe lubricant level orPressure(LL) N/A Relief requested - Sea PR-1 3earingTemperature(Tb) N/A N/A General Comment: , At the discretion of Georgia Power Coopany instrumentation other than that listed above may be used for measuring inservice test quantities. Notes: (1) Measure before pump startup and during test (2) Reference values determined per IW-3110 (3) Temporary test equipment (ETE) used ( 1 016 Rev. 0 0958a
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1 , Table 5-5 Test Parameter Table for Pump 2-1203-P4-004 , Test Instrument Parameter Freguen_cy Utilizedjy>l/h%[fff,' Reference Values Comments Speed (N) N/A N/A Speed seasurement required only N/A. on variable speed motors , InletPressure(Pi) Quarterly (1) M&TE N/A Pi17.4psig(17ft) Note 3 y OutletPressure(Po) Quarterly PI-1861 N/A DifferentialPressure(dP) Quarterly N/A(dP=Po-Pi) dPr(2) Flo= rate (Q) Quarterly F1-11791 Qr(2) VibrationAmplitude(V) Quarterly M&TE Vr(2) Note 3 Observe lubricant level j Proper Lubricant Level Quarterly N/A N/A 1 orPressure(LL) BearingTemperature(Tb) N/A N/A N/A Relief requested - See PR-1 General Comment: At the discretion of Georgia Power Company instrumentation other i b n that listed above may be used for seasuring inservice test quantities. Notes (1) h asure before pump startup and during test (2) Refe.ence values determined per IWP-3110 (3) Temporarytestequipment(M&TE)used
.l 095Bn 016 Rev. 0 ' * '::JgL_ ' 2.%
s w s ma m m w .uv ue s w - a m.y: m v - w ,-4 u - .3 - - . , . . . ..-.. -. . - h . 2 Table 5-6 i Test Parameter Table for Pump 2-1203-P4-005 Test Instrument Parameter Freguency Utiliz g .; ,ff},d Reference Values Comments ! Speed (N) N/A N/A Speed measurement required only N/A on vcriable speed motors InletPressure(Pi) Quarterly (1) ETE N/A Pi17.4psig(17ft) Mote 3 Outlet Press 'o) Quarterly PI-1862 N/A DifferentialPressure(dP) Quarterly N/A(dP=Po-Pi) dPr(2) Flowrate(Q) Quarterly FI-11798 Qr(2) VibrationAmplitude(V) Quarterly ETE Vr(2) Note 3 Proper Lubricant Level Quarterly N/A N/A Observe lubricant level orPressure(LL) BearingTemperature(Tb) N/A N/A N/A Relief requested - See PR-1 General Comment: At the discretion of Georgia Power Company instrumentation other than that listed above ear be used for esasuring inservice test quantities. Notes: ) (1) Measure before pump startup and durirg test (2) Reference values determined per IWP-3110 (3) Temporarytestequipment(ETE)used 0958n 016 Rev. O
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Table 5-7 Test Parameter Table for Pump 2-1203-P4-006 Test Instrument Comments Parameter Freguen,cy Utilized /{%, Ih.j(jj'/ Reference Values N/A N/A Speed measurement required only Speed (N) N/A on variable speed motors . Quarterly (1) ETE N/A Pi 17.4 psig (17 f t) Note 3 InletPressure(Pi) OutletPressure(Po) Quarterly PI-1863 N/A DifferentialPressure(dP) Quarterly N/A(dP=Po-Pi) dPr (2) Flowrote(Q) Quarterly FI-11799 Qr(2) VibrationAmplitude(V) Quarterly ETE Vr(2) Note 3 Proper Lubricant Level Quarterly N/A N/A Observe lubricant level orPressure(LL) N/A Relief requested - See PR-1 BearingTemperature(Ib) N/A N/A General Comment: At the discretion of Georgia Power Company instrumentation other than that listed above may be used for seasuring inservice test quantities. Notes: (1) Measure before pump startup and during test (2) Reference values determined per IWP-3110 1 (3) Temporary test equipment (ETE) used 016 Rev. 0 095Bn f t.s.
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