ML20148E648

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Rev 0 to VEGP Units 1 & 2 Second 10-Yr Interval Pump IST Program
ML20148E648
Person / Time
Site: Vogtle  
Issue date: 05/15/1997
From:
SOUTHERN NUCLEAR OPERATING CO.
To:
Shared Package
ML20148E642 List:
References
PROC-970515, NUDOCS 9706030209
Download: ML20148E648 (180)


Text

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VOGTLE ELECTRIC GENERATING PLANT l UNITS 1 & 2 SECOND 10 -YEAR INTERVAL PUMP INSERVICE TEST PROGRAM R ITS ITS ITS VNMS E DATE DESCRIPTION PREP'D REV'D APPV'D APPV'D V BY BY BY BY 0 12/06/96 INITIAL ISSUE TO VEGP FOR REVIEW & APPROVAL. # VEGP IST APPROVAL IST Eng J -- 'I 6/co/e-l Engr. Supv: / 104tre 97-97 Mgr. Engr: [ 4%d .5 'M/ 2 ANQ: 'd pf{w JhGX phA ZfErg, _ J 9 7 PRB: Mtg. No: Mb9 30 JA .

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l 9706030209 970529 PDR ADOCK 05000424 P PDR Vogtle Electric Generating Plant Route 2, Box 299-A Waynesboro, GA 30830

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i DISTRIBUTION LIST I l 1 IIOLDER _ MANUAL NUMBER K. G. Lowery (SCS) 1 1 T. M. Hickox 2 J. J. Churchwell 3 l SNC Site Document Control Supervisor 4 SNC Site Perfbrmance Supervisor 5 i K. L. Glandon 6 l J. C. McWimrter 7 ITS Department Shelf Copy 8 O l Rev.O

TABLE OF CONTENTS (See Active Page List for Current Revision) O SECTION PAGES PROGRAM INTRODUCTION 1-1 thm 1-2 ABBREVIATIONS LIST 2-1 thm 2-2 PUMP INTRODUCTION 3-1 thm 3-9 VEGP 1 PUMP TABLES 4-1 thm 4-8 ] NSCW PUMPS 5-1 thm 5-10 NSCW PUMP TEST DIAGRAMS 8 pages l CCW PUMPS 6-1 thm 6-7 l CCW PUMP TEST DIAGRAMS A pages S1 PUMPS 7-1 thm 7-3 S1 PUMP TEST DIAGRAMS 2 pages I RHR PUMPS 8-1 thm 8-3 RHR PUMP TEST DIAGRAMS 2 pages CS PUMPS 9-1 thm 9-3 CS PUMP TEST DIAGRAMS 2 pages CVCS PUMPS 10-1 thm 10-3 CVCS PUMP TEST DIAGRAMS 2 pages BAT PUMPS 11-1 thm 11-3 BAT PUMP TEST DI AGRAMS 2 pages AFW PUMPS 12-1 thru 12-6 AFW PUMP TEST DIAGRAMS 3 pages ESF PUMPS 13-1 thru 13-3 ESF PUMP TEST DIAGRAMS 2 pages VEGP-2 PUMP TABLES 14-1 thru 14-8 NSCW PUMPS 15-1 thm 15-10 NSCW PUMP TEST DIAGRAMS 8 pages CCW PUMPS 16-1 thru 16-7 CCW PUMP TEST DIAGRAMS 6 pages Page1of2

Table of Contents (cont.) S1 PUMPS 17-1 thru 17-3 , SI PUMP TEST DIAGRAMS 2 pages RHR PUMPS 18-1 thm 18-3 RHR PUMP TEST DIAGRAMS 2 pages 1 CS PUMPS 19-1 thru 19-3 l CS PUMP TEST DIAGRAMS 2 pages CVCS PUMPS 20-1 thru 20-3 CVCS PUMP TEST DIAGRAMS 2 pages BAT PUMPS 21-1 thru 21-3 BAT PUMP TEST DIAGRAMS 2 pages AFW PUMPS 22-1 thm 22-6 AFW PUMP TEST DIAGRAMS 3 pages l ESF PUMPS 23-1 thru 23-3 i ESF PUMP TEST DIAGRAMS 2 pages RELIEF REQUESTS 24-1 thru 24-5 O b l l O L) Page 2 of 2

1 ACTIVF PAGE LIST Pane No. Rev. No. Page No. Rev. No. (

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(]s 6-5 0 13 - 2 0 Page 1 of 2 Updated 04/28/97

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1.0 PUMP IST PROGRAM INTRODUCTION 1.1 GENERAL

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This document describes the Pump Inservice Testing (IST) Program for the Vogtle Electric j Generating Plant (VEGP), Units 1 and 2. Provided below are important dates relative to the IST l Program. VEGP-1 VEGP-2 4 Construction Permit: 06-28-74 06-28-74 j Commercial Operation: 05-31-87 05-20-89 1st 10-Year Interval: 05-31-87 to 05-20-89 to 05-30-97 05-30-97* i 2nd 10-Year Interval: 05-31-97 to 05-31-97* to 05-30-2007 05-30-2007

  • VEGP-2 was updated at the same time as VEGP-1 for the 2nd 10-Year Interval in order to t

utilize the same Code edition for both units (See Relief Request RR-G-2 which is included in the Valve IST Program document). 4 The edition of 10 CFR 50.55a current on May 31,1996, was used to determine the applicable . O' Code (s) of record for this program update. 10 CFR 50.55a identified the ASME Section XI Code, 1989 Edition, as the applicable Code. The 1989 edition of ASME XI references OM Part 6 (IWP) as being applicable for pump testing. 10 CFR 50.55a(b)(2)(viii) references the OMa-1988 Addenda to the OM-1987 Edition of ANSI /ASME part 6 for pump testing. ASME issued the OM Code-1990 Edition which included requirements for pump, valve, relief valve and dynamic restraint inservice testing, and subsequently issued the OMb-1992 Addenda, the OMc-1994 Addenda, the OM-1995 Edition and the OMa-1996 Addenda. Therefore, the below listed Code version is being utilized for pump IST at VEGP as described in Relief Request RR-G- , 1. (RR-G-1 is included in the Valve IST Program document.) The NRC approved the use of the 1 ASME OM Code-1990 Edition for pump testing at Plant Vogtle in a letter dated November 27, i 1996. ! ASME OM Code -1990 Edition Subsections ISTA and ISTB This program document includes IST requirements for safety.related ASME Code Class 1,2 and 3 pumps. NRC Generic Letter 89-04 and Supplement 1 (NRC NUREG-1482) were used, to the extent practical, for guidance in the development of this program. 1.2 EFFECTIVE DATE The Pump IST Program, for the 2nd 10-Year Interval, will become effective on May 31,1997 and will be utilized through May 30,2007 unless federal regulations are revised otherwise. 1-1 Rev.0

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1.3 SCOPE This document is a description of the Pump IST Program to be implemented for Units 1 and 2 at i VEGP. This document describes only the IST surveillance testing applicable to safety-related w ASME Code Class 1,2 and 3 punips included in the program. A 1.4 SUBSEQUENT PROGRAM REVISIONS It is anticipated that this document will be reviewed again near the end of the 120 month interval and compared to a later NRC approved version of the ASME Code applicable for IST. At that 3 time, the program will be modified, if required, to comply to the extent practical with the later Code edition. Any additional relief requests for impractical requirements will be submitted in 4 accordance with the applicable regulations. 1.5 RESPONSIBILITY { Southern Nuclear Operating Company, being license holder and agent for Georgia Power Company  ! (Owner), bears the overall responsibility for the implementation of the inservice testing activities j contained in this program per the ASME OM Code - 1990 Edition, Subsection ISTA 1.4. l l 1.6 RECORDS I i Records and documentation of information and testing results, which provide the basis for

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evaluation and which facilitate comparison with results from previous and subsequent tests, will be maintained and available for the active life of the component or system in accordance with the ASME OM Code - 1990 Edition, Subsection ISTA 3. 1.7 METHODS OF TESTING t The method of testing applicable to each pump is listed adjacent to the component identification in the Pump IST Program Tables. The ASME OM Code does not stipulate any specific training / certification requirements for personnel involved in pump testing. At Plant Vogtle, all

!       pump testing is performed by operations, maintenance or engineering personnel who have been            l l        trained to perform specific testing tasks.

1 1.8 STANDARDS FOR TESTING EVALUATION The acceptance criteria applicable for each pump to be tested have been developed in accordance with the ASME OM Code requirements as modified by any applicable relief requests. Acceptance criteria are not provided in the IST Program document, but are provided in the applicable surveillance testing procedures which are available for review at the plant site. O l-2 Rev.0

ABBREVIATIONS LIST Abbreviation Definition Acc Accuracy AFW Auxiliary Feedwater

 ' Amp.              Amplitude ASME American Society of Mechanical Engineers atm .             Atmospheric Aux               Auxiliary Bldg              Building CC ASME Code Class CCW Component Cooling Water Coord.            Coordinate CS Containment Spray CVCS Chemical Volume & Control System AP                Pump DifferentialPressure APr Reference DifferentialPressure Differ.           Differential ECCS Eme gency Code Cooling System ESF Eagmeered Safety Feature F

Fahrenheit FI FlowrateIndicator ft Feet Freq. Frequency GPC Georgia Power Company gpm Gallons Per Minute Hz Hertz I.D. Identification in/s Inches Per Second IST Inservice Testing kW Kilowatt LOCA Loss OfCoolant Accident LI LevelIndicator NA Not Applicable N Speed No. Number NPSH Net Positive Suction Head NSCW Nuclear Service Cooling Water OM ASME OM Code PC Vogtle Plant Project Class P&ID Piping & Instrumentation Diagram Pi Pump Inlet Pressure PI Pressure Indicator Po Pump Outlet Pressure psig Pounds Per Square Inch 21 Rev.O i

_ __ _ ... _. _ __.._....._.. _.._ _ _ _ _ ~ _.... .... _ . _ .. _ _ _ . _ _ . _.-. _ _ _ _ . .__ _ __ _ . _ ._ _ ._... _ .. - 4 l 1 Abbreviations (cont.) i a Abbreviation Definition Q - Pump Flowrate Qtr. Quarterly , Qr  ! Reference Flowrate RCS  ! Reactor Coolant System l Ref. Reference l Req.~ Required . RHR  : ' ResidualHeat Removal j rpm Revolutions PerMinute ! RR ReliefRequest i i SI SafetyInjection j- SI Speed Indicator ! SNC Southern Nuclear Operating Company V Vibration i VEGP Vogtle Electric Generating.'lant i Vib. Vibration Vr Reference Vibration Amplitude I t i I l iO l 4 i 1 i O 2-2 Rev.0

INTRODUCTIGN A. Regulatory Position rN U ~ This document defines the testing requirements for the pumps incicded for inservice testing (IST) at Southern Nuclear Operating Company's (SNC) Vogtle Electric Generating Plant (VEGP) Unit I and 2. This Pump IST Program was developed to comply with the i provisions of 10 CFR 50.55a. The Code of record applicable for this program is the ASME OM Code - 1990 Edition. NRC Generic Letter 89-04 and its Supplement 1 (NUREG-1482) were used for guidance, to the extent practical, in the development of this program document. B. Ssage In accordance with 10 CFR 50.55a and NRC Regulatory Guide 1.26 (water, steam and radioactive waste containing systems), ASME Code Class 1,2 and 3 safety-related pumps which perform a function required in; 1) shutting the reactor down to the cold shutdown condition,2) maintaining the cold shutdown condition,3) or mitigating the consequences of an accident, and are provided with an emergency power source, are included in this program document for inservice testing. It was recognized that 10 CFR 50, Appendix A, General Design Criteria 1, and Appendix B, Criterion XI, intended that all pumps necessary for safe operation of the plant be tested to demonstrate that they will perform satisfactorily in service. The subject testing is to be performed to a level commensurate with the safety significance of the pump. For those non- [] L ASME Code Class 1,2 and 3 pumps, this testing is performed in accordance with the plant technical specifications and/or other plant testing programs and is not included in this program document. The determination as to whether a pump should be included in this testing program was performed by review and evaluation of the Updated Final Safety Analysis Reports (UFSAR) and other design and licensing documents. These documents were reviewed to determine 1 which pumps are required to respond to the design basis accident scenarios and provide a  ; function required to shutdown the reactor, maintain the shutdown condition, or mitigate the consequences of the accident. C. Testine Reauirements A description of the ASME OM Code testing requirements applicable to pumps is provided in each section. The ASME OM Code-1990 Edition should be used in conjunction with this  ! description to ensure a complete identification of the testing requirements. Subsection ISTB l' of the ASME OM Code is applicable for pump inservice testing and the applicable ISTB paragraph is listed in parenthesis for cross reference.

1. Definitions (ISTB 1.3) l

{ v The below listed definitions are provided for easy reference as they are applicable to VEGP and are used in subsequent sections of this introduction. 0 3-1 Rev.0

3 i inservice rest - a test to determine the operational readmess of a pump

. instrument accuracy - the allowable inaccuracy of an instrument loop based on the .

l square root of the sum of the square of the inaccuracies of each instrument or [ component in the loop-instrument loop - two or more instruments or components working together to provide i a single output (e.g., a vibration probe and its associated signal conditioning and

readout devices) operationalreadiness - the ability of a pump to perform its intended function

! preservice testperiod - the period of time after completion of construction activities j related to the pump and before first electrical generation by nuclear heat, in which component and system testing take place 1 j pump - a mechanical device used to move liquid l J reference values - one or more values of test parameters measured or determined when the equipment is know to be operating acceptably l i routine servicing - the performance of planned, preventative maintenance (e.g.,  ; replacing or adjusting valves in reciprocating pumps, changing oil, flushing the cooling i system, adjusting packing, adding p*Wg rings or mechanical seal maintenance or  : replacement) l system resistance - the hydraulic resistance to flow in a system 2. Reference Information (ISTB 2) The hydraulic and mechanical condition of a pump relative to a previous condition can be determined by attempting to duplicate by test a set of reference values. Deviations detected are symptoms of changes and, depending upon the degree of deviation, indicate need for further tests or corrective action.

3. Owner's Responsibility (ISTB 3.1)

Each pump to be tested in accordance with this program shall be identified by the  ; Owner and listed in the plant records. '

4. Testing Requirements (ISTB 4) 1 A. Preservice Testine (ISTB 4.1) j Each pump shall be tested during the preservice test period. These tests shall be  !

conducted under conditions as near as practical to those expected during subsequent O inservice testing. Only one preservice test is required for each pump, except when a pump is repaired or replaced (see C.4.D). j I 3-2 Rev.O I l l l

B. Inservice Testina (ISTB 4.2) Inservice testing shall commence when the pump is required to be operable (see C.5.C). t l3 V C. Reference Values (ISTB 4.3) Initial reference values shall be determined from the results of the preservice test or from the results of the first inservice test. Reference values shall be established at points of operation readily duplicated during subsequent testing. All subsequent test results shall be compared to these initial reference values or to new reference values as appropriate (see C.4.E). Reference values shall only be established when the pump is known to be operating acceptably. If the particular parameter being measured or determined can be significantly influenced by other related conditions, then these conditions shall be analyzed. D. Effect of Pump Reolacement. Reoair. and Maintenance on Reference Values (ISTB 4.4) When a reference value or set of reference values may have been affected by repair,  ;

 ],s  replacement, or routine servicing of a pump, a new reference value or set of reference values shall be established in accordance with C.4.C above (ISTB 4.3), or the previous         .

l value(s) reconfirmed by an inservice test run before declaring the pump operable. l Deviations between the previouc and new reference value(s) shall be evaluated, and l verification that the new reference value(s) represent acceptable pump operation shall be placed in the record of tests. E. Establishment of Additional Set of Reference Values (ISTB a 5) i If necessary or desirable, for some reason other than stated in C.4.D above, to establish an additional set of reference values, an inservice test shall be run at the conditions of an existing set ofieference values and the results analyzed. If operation is acceptable per C.5.B (ISTB 6.2), then a second test run at new reference conditions shall follow as soon as practical. The results of this test shall establish the additional set of reference I values. Whenever new reference values are established, the reason for doing so shall be l documented in the record of tests. fh l I 0 ' 3-3 Rev.O

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f' F. Instrumentation (ISTB 4.6) ' Instrument accuracy shall be within the limits of the below table (Table ISTB 4.6.1-1). Station instruments meeting these requirements are acceptable. j l ACCEPTABLE INSTRUMENT ACCURACY (Table ISTB 4.6.1-1) j Percent Quantity [ Note (1)] Pressure i2% l Flow Rate ' i2% ~ 1 Speed i i2% j Vibration iS%  ! DifferentialPressure i2% i ! NOTE: Y (1) Percent of full scale for individual analog instruments, percent of total loop accuracy for a combination ofinstruments, or over the calibrated range for digital  ; j instruments. ' i { The full-scale range of analog instruments shall not be greater than three times the i reference value. Digital instruments shall be selected such that the reference value does not exceed 70%

of the calibrated range of the instrument. j I

Vibration instruments are excluded from the range requirements stated above. The ' i 1 frequency response range of vibration measuring transducers and their readout system shall be from one-third minimum pump operating speed to at least 1000 Hz. i The Owner shall be responsible for establishing the location of instruments used for } { inservice testing. The location shall be appropriate for the parameter being measured  ! i and the same location shall be used for subsequent tests. Instruments that are position- {  ! sensitive shall be either permanently mounted, or provisions shall be made to duplicate their position during each test. l

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1 i Instruments and instrument loops shall be cahbrated in accordance with the Owner's quality assurance program New or repaired instruments shall be calibrated before test l use. 1 [ G. Pressure Memenrements (ISTB 4.6.2) l l' i i Differential pressure across a pump may be determined using a differential pressure gage i or a differential pressure transmitter that provides direct measurement of pressure

;                               difference, or the difference between pump discharge pressure and pump inlet pressure j .

shall be used. 1 1 3-4 Rev.0 1 i

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4 H. Rotational Speed Man =nremente GSTB 4.6.3)  ! a i I Rotational speed measurements of variable speed pumps shall be measured by a method l that meets the instrument accuracy requirements of the above instrument accuracy table c (C.4.F). ) I. Vibration Man = e...=a GSTB 4.6.4) j p On centrifugal pumps, vibration measurements shall be taken in a plane approximately i perpendicular to the rotatmg shaft in two orthogonal directions on each accessible D j pump-bearing housing. Measurement shall also be taken in the axial direction on each "

accessible pump thrust bearing housing.

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On vertical line shaft pumps, measurements shall be taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction.

If portable vibration instruments are used, the ' measurement points shall be clearly identified on the pump to permit repeatability in both location and plane. J. Flow Rate Ma==nremanta GSTB 4.6.5) Flow rate shall be measured using a rate or quantity meter installed in the pump test l circuit. If the meter does not indicate flow rate directly, the record of tests shall include the method used to reduce the data. j

5. Testing Methods (ISTB 5)

A. Frequency ofInservice Tests GSTB 5.1) An inservice test shall be performed on each pump nominally every 3 months except for . pumps that are declared inoperable or are not required to be operable. B. Test Procabre GSTB 5.2) An inservice tests shall be conducted with the pump operating at specified test reference conditions. The test parameters listed in the below tables shall be determined and recorded. t i O 3-5 Rev.0

4 i INSERVICE TEST PARAMETERS (Tchle ISTB 5.2-1) Quantity Remarks

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Speed, N i Ifvariable speed pump DifferentialPressure, AP ' Centrifugal pumps, including vertical line shaft I

Pumps i l Discharge Pressure, P Positive displacement pumps ! Flow Rate, Q All pumps i i Vibration i Displacement, Vd Peak-to-Peak Velocity, VV Peak The pump shall be operated at nominal motor speed for a constant speed driver or at a speed adjusted to the reference point for variable speed drivers. The resistance of the system shall be adjusted until the flow rate equals the reference value. The differential pressure shall then be determined and compared to the reference value. Alternately, the flow rate shall be varied until the differential pressure equals the O reference value and the flow rate determined and compared to the reference flow rate value. If system resistance cannot be varied, flow rate and pressure shall be determined and compared to their respective reference values. Pressure, flow rate, and sihration shall be determined and compared with the corresponding reference values. All deviations from the reference values shall be compared with the acceptance criteria listed below and corrective action shall be taken as specified in Section C.6. Vibration measurements shall be broad band (unfiltered). Velocity measurements shall be peak and displacement amplitudes shall be peak-to-peak respectfully. O 3-6 Rev.0

VIBRATION ACCEPTANCE CRITERIA (Table ISTB 5.2-2a) Pump Pump Test Acceptable Alert Required

  /Q     Type                 Speed         Parameter               Range                    Range V                                                                                                         Action Range Centrifugal &        <600 rpm         Vd or VV          52.5Vr             >2.5Vr to 6Vr or           >6Vr or Venical Line
                                                                                    >10.5 to 22 mils           >22 mils i        Shaft (Note 2)                                                                                                                    l 4

Centrifugal & 2 600 rpm Vvor Vd s2.5Vr >2.5Vr to 6Vr or >6Vr or I VerticalLinc

                                                                                    >0.325 to 0.7 in/sec       >0.7 in/sec l        Shaft (Note 2)

Reciprocating Vd or Vr s2.5Vr >2.5Vr to 6Vr >6Vr NOTES: (1) Vr is reference vibration value in selected units. (2) Refer to OM Code Figure ISTB 5.2 1 to establish di=!=~nt limits for pumps with speeds 2 600 rpm or velocity limits for pumps with speeds s 600 rpm. l HYDRAULIC ACCEPTANCE CRITERIA (Table ISTB 5.2-2b) ' Acceptable Required Action Range Test Parameter Range Aled Range a Low High I I l ('T P (Positive Displacement Pumps) 0.93 to 1.10Pr 0.90 to <0.93Pr <0.90Pr U >1.10Pr AP (VerticalLine Shaft Pumps) 0.95 to 1.10APr 0.93 to <0.95APr <0.93APr >l.10APr Q(Positive Displacement and 0.95 to 1.10Qr 0.93 to <0.95Qr <0.93Qr >1.10Qr VerticalLine Shaft Pumps) AP (Centrifugal Pumps) 0.90 to 1.10APr none

                                                                                                      <0.90APr              >1.10APr

, Q (Centrifugal Pumps) 0.90 to 1.10Qr none <0.90Qr >1.10Qr C. Pumos In Systems Out of Service GSTB 5.4) For a pump in a system declared inoperable or not required to be operable, the test schedule need not be followed. However, within 3 months before the system is placed in an operable status, the pump shall be tested. Pumps that can only be tested during plant operation shall be tested within I week following startup. i ( D. Duration ofTests GSTB 5.6) After pump conditions are as stable as the system permits, each pump shall be run for at least 1 2 minutes prior to measuring any ofthe required test parameters.

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, 3-7 Rev.O t

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6. A
:alysis czd Ev:.1=ti:2 (ISTB 6) 4 A.- Acceptance Criteria GSTB 6.1)

J i U b If the measured test parameter values fall within the alert range of the applicable table (see - [ C.S.above), the frequency of testing shall be doubled until the cause of the deviation is determined and the condition is corrected. , j If the measured test parameter values fall within the required action range of the applicable table (see C.5 above), the pump shall be declared inoperable until either the cause of the 2 deviation has been determined and the condition corrected. (See ReliefRequest RR-P-2) ) When a test shows measured parameter values that fall outside the acceptable rarges that have resulted from an identified system error (e.g. improper system lineup, inaccurate  ; instruments) the test shall be rerun after correcting the error. B. Time Allowed for Analysis ofTests GSTB 6.2) ? l All test data shall be analyzed within 96 hours after completion of test. i - 7. Records and Reports (ISTB 7) a j A. Pumo Records GSTB 7.1) fj The Owner shall maintain a record, for each pump included in the program, that includes the j' followinginformation: , ) 1 { I (a) the manufacturer and the manufacturer's model and serial number or other identification ! i number, j (b) a copy or summary of the manufacturer's acceptance test report if available; and ! (c) a copy of the pump manufacturer's operating limits. B. Inservice Test Plans GSTB 7.2) i The Owner shall maintain a record of test plans and procedures that shall include the following: i (a) the hydraulic circuit to be used; (b) the location and type of measurements for the required test parameters;  ; (c) the reference values; and 1 (d) the method of determining test parameter values that are not directly measured by instrumentation. This Pump IST Program document in conjunction with the pump surveillance test procedures satisfy the above requirement. O 3-8 Rev.0

C. Record ofTests USTB 7.3) The Owner shall maintain a record of each test that shall include the following:

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 . (s) pump identification; .

(b) date of test;

 . (c) reason for test (e.g. post-maintenance, routine inservice test, or establishing new reference values);
(d) values ofmeasured parameters; (e) identification ofinstruments used; (f) comparisons with allowable ranges of test values and analysis of deviations; (g) requirements for corrective action; (h) evaluation andjustification for changes to reference values; and (I) signature of the person (s) responsible for conducting and analyzing the test data.

This Pump IST Program document in conjunction with the pump surveillance test procedures satisfy the above requirement. D. Record ofCorrective Action GSTB 7.4) The Owner shall maintain records of corrective action that shall include a summary of the corrections made, the subsequent inservice tests and confirmation of operational adequacy, and the signature of the individual (s) responsible for corrective action and verification of results. O ' O 3-9 Rev.0

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

O . O VEGP-1 PUMP TEST TABLE Nuclear Service Cooling Water - System 1202 i Measured Parmarters & Frm LD. Number CC/PC PalD-Sheet No. _CM Description h E R Y E NW Gulal (a:D isa!al theerl smal , I l-1202-P4-001 3D13 IX4D1133-1 C-8 NSCW Pump QTR QTR QTR QTR NA RR-P-2 1-1202-P4-002 3813 IX4DB133-2 C-5 NSCW Pump QIR NA QTR QTR QIR RR-P-2 + i 1-1202-P4-003 3813 IX4DB133-1 C-5 NSCW Pump QTR NA QTR QTR QIR RR-P-2 1-1202-P4-004 3/313 IX4DB133-2 C-5 NSCW Pump QIR QTR' QTR QTR NA RR-P-2 1-1202-P4-005 3D13 IX4DB133-1 C-7 NSCW Pump QTR QTR QIR QTR NA RR-P-2 1-1202-P4-006 3D13 IX4DB133-2 C-7 NSCW Pump QIR QTR QTR QIR NA RR-P-2 1-1202-P4-007 3D13 IX4DB133-1 C4 NSCW Transfer Pump QTR QTR QTR QTR NA RR-P-2 1-1202-P4-008 3D13 IX4DB133-2 C-6 NSCWTransfer Pump QIR QIR QTR QIR NA RR-P-2 i Test Frequency: QIR = Quarterly Pump Test i . 4-1 Rev.O I r _ _ _ _ _ _ _ . , , _ _ . _ . . _ . . . . - . . - - - - _ - - - - - - - - - - - - - - - . - - = - - - - - - - - - ' - - ' ' ' ' - - - - ' ^ ' ^ ' " - - ~ - - - ' ^ ^ ^

                   . _ . _ . ___m.._       .  . _ _ _       ..               ._._ _.                    _ _ _. . . . _ _ _ _ _                            . _           m . ._._                                ._ _         _    _      _ . . _

O O O VEGP-1 PUMP TEST TABLE Compoecat Cooling Water - System 1203 Measured Pas ___;a.e & Fm LD. Number P&ID-Sheet No. Coord, Descristion QC/PQ fe R Q V H RR/ Remarks fagl 1 fa!D (snel (heus) (en) 1-1203-P4-001 3/313 IX4 dbl 36 H-4 CCW Pump Q1R QTR QTR QTR NA RR-P-2 1-1203-P4-002 3/313 IX4DB136 D-4 CCW Pump QTR QTR QTR QTR NA RR-P-2  ; i 1-120'i-P4-003 3/313 IX4DB136 G-4 CCW Pump QTR QTR QTR QTR NA RR-P-2 1-1203-P4-004 3/313 IX4DB136 C-4 CCW Pump QTR QTR Q1R QTR NA RR-P-2 1-1203-P4-005 3/313 IX4DB136 F-4 CCW Pump QTR Q1R QTR QIR NA RR-P-2 1-1203-P4-006 3/313 IX4DB136 B-4 CCW Pump QTR QTR Q1R QTR NA RR-P-2 Test Farquency: QTR = Quarterly Pump Test i i t 4-2 Rev.O

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

VEGP-1 PUMP TEST TABLE . t Safety lajection - System 1204 Measured Parameten & Freescacy LD. Number CC/PC P&ID-Sheet No. Coord. Description h AE 9. Y M RR/ Remarks (a!!al fa!!1 Onual h) Daisl 1-1204-P6-003 2/212 IX4DB121 E-2 SIPump QTR QTR QTR QTR- NA RR-P-2 1-1204-P6-004 2/212 IX4DB121 C-2 SIPump ' QTR QTR QTR QTR NA RR-P-2 Test Frequency: QTR = Quarterly Pump Test t b i f r v i 4-3 Rev.0 L I

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

O O O VEGP-1 PUMP TEST TABLE . I Residual Heat Removal- System 1205 i Measured Paranneters & Freauency 1 LD. Number P&ID-Sheet No. Description y CC/PC Coord. P2 R .Q M RR/ Remarks (Mal (eG (smal &=ci fouel 1-1205-P6 @ l 2/212 IX4DB122 F-4 RHR Pump NA

                                                                                                                                         'QTR                               QTR                                                          Q1R                                                       QIR                          RR-P-2 1-1205-P6-002        2/212             IX4DB122                      G-4       RIIR Pump                                                  QTR                               QTR                                                          QTR                                                        QTR' NA                     RR-P-2                               ,

i Test Frepency: QTR = Quarterly Pump Test i i f I 4-4 Rev.0 __ _ _ . . _ _ _ . _ _ _ _ _ . _ . _ _ _ _ . . _ _ _ . . _ _ _ _ _ _ _ _ _ _ . . _ _ _ _ _ _ _ . _ . . _ _ _ _ _ . . . _ _ _ _ . _ _ _ _ _ _ _ _ - . _ _ _ _ _ _ . _ . _ _ . _ _ _ _ _ _ ___m___

(, t i VEGP-1 FIIMP TEST TABLE r Contahment Spray - System 1206 i I Measured Parameters & Fr*==-=ar . LD. N mber QC/PC P&ID-Sheet No. Coord. Descristlos Po AE _Q Y H RR/ Remarks  : fadal fa:D Gmed fw=c) trued l-1206-P6-001 2/212 IX4DB131 G-4 CS Pump NA QTR QTR QTR QTR RR-P-2  ! l-1206-P6-002 2/212 IX4DB13i C-4 CS Pump NA QTR QTR QTR QTR RR-P-2 i Test Frequency: QTR = Quarterly Pump Test 1 I D 4-5 Rev.O I

                                                                                                                                                                                                                                                                .n .

VEGP-1 PUMP TEST TABLE Chemical & Volume Control - System 1208 Measured Parameters & Freauency I.D. N mber CC/PC P&lD-Sheet No. Coord. Description P_o _AP_ Q V N RR/ Remarks Ot!!rl (a!!1 framl da/wd Ltned 1-1208-P6-002 2/212 IX4DB116-2 G-4 CVCS - Centrifugal QTR QTR QTR QTR NA RR-P Charging Pump t 1-1208-P6-003 2/212 IX4DBil6-2 C-4 CVCS - Centrifugal QTR QTR QTR QTR NA RR r.y. Charging Pump 1-1208-P6-006 3/313 IX4DB118 . , D-4 CVCS-Boric Acid QTR QTR QTR QTR NA RR-F-1, RR-P-2 Transfer Pump 1-1208-P6-007 3/313 IX4DB118 B-4 CVCS - Boric Acid QTR QTR QTR QTR NA RR-P-1, RR-P-2 Transfer Pump Test Frequency: QTR = Quarterly Pump Test 4-6 Rev.0

O O O VEGP-1 PUMP TEST TABLE i Auxili;ry Feedwater - System 1302 I Measured Parameters & Preemency LD. Number CC/PC P&ID-Sheet No. Coord. Description Po V N AP Q RR/ Remarks Gulal fadl famed Gn w fraud i 1-1302-P4-001 3/313 IX4DB161-2 F-6 AFW Pump QTR QTR QTR Q1R NA RR-P-2

                                                                 'Ihrbine Driven 1-1302-P4-002                     3/313  IX4DB161-2      D4     AFW Pump                                                                                                                  '

Q1R Q1R Q1R Q1R NA' RR-P-2 Motor Driven 1-1302-P4@3 3/313 IX4DB161-2 B4 AFW Pump NA QTR QfIR QTR QTR RR-P-2

  • Motor Driven Test Frequency: QTR = Quarterly Pump Test s

v b b i F I 1 L 4-7 Rev.0 [

_ _ - - - . - _ = - - - _ - - - - - _ - - _ _ - _ _ - - - _ - _ _ - - - - - - _ - - - _ - - - - _ _ - - - - - ._ - - __ - -- - --_-__----- - O O O VEGP-1 PUMP TEST TABLE Safety Related (ESF) Chillers - System 1592 i Measured Parameters & Freaucacy i LD. Number, CC/PC P&ID-Sheet No. Coord. Description P _3 AE .Q V RR/Researks N! fa:Isl &!Il fanal (Mt!s) frauni 1 1-1592-P7-001 3813 IX4DB221 F-5 ESF Chilled Water Q1R QTR QTR QTR NA RR-P-2 Pump 1-1592-P7-002 3B13 IX4DB221 C-5 ESF Chilled Water Q1R QTR Q1R' Q1R' NA RR-P-2 , Pump Test Frespency: QIR = Quarterly Pump Test i 4-8 Rev.0 _ . . . _ - _ _ _ _ _ _ ____u -_ a__ ______ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ +-_ _- -'

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

NSCWPumps ! (1-1202-P4-001, 002, 003, 004, 005, & 006) l l System Function Provide cooling water for the containment coolers, control l ' building essential chiller condensers, various engineered safety feature pump motor and lube oil coolers, and the component cooling water and auxiliary component cooling I water diesel generator jacket water heat exchangers and transfers the heat removed to the ultimate heat sink. Quantity 6 Type l Vertical Line Shaft, 2 stage, selflubricated

Manufacturer /Model Bingham-Willamette/18x27B VCM i

Rated Capacity 8600 gpm(each) Rated TotalDynamic Head 230 feet Driver i l Type Electric Motor l Horsepower 700  ; Speed 1180 rpm Power Supply. 4160V,60 Hz,3 phase Code Class 3 i Project Class ~ 313 Outline Drawing IX4AF02-32 l i Instruction Book 1x4AF02-93 1

Physical Location NSCW Pump House P&ID 1X4DB133-1, -2 l

Surveillance Procedure 14802-1 Pump Test Loop Diagrams ISI-D-201 through ISI-D-206 i Test Parameter Sheets Page 5-3 through 5-8 l~

)

e !O , 1 5-1 Rev.0 I

__ .__m .- . - . _ . - - - _ - _ _ _ _ _.__. ._ . - _ . . . _ . _ _ _ ._ __

                                                                                                                                          ?

NSCW Transfer Pumps  ! (1-1202-P4-007, 008)

System Function 1 Provides capability to transfer water between cooling tower

basins. Quantity 2 i

Type i

Vertical Line Shaft,2 stage, selflubricated 1 Manufacturer /Model Bingham-Willamette/18x12A VCM i ! Rated Capacity 600 gpm (each) i 4

Rated TotalDynamic Head 110 feet

Driver Type Electric Motor Horsepower 30 Speed 1765 rpm Power Supply 480V,60 Ih,3 phase Code Class 3 Project Class 313 O Outline Drawing IX4AF02-3 Instruction Book IX4AF02-95 PhysicalLocation NSCW Pump House ' P&ID 1X4DB133-1, -2 Surveillance Procedure 14801-1 Pump Test Loop Diagrams ISI-D-207 and ISI-D-208 Test Parameter Sheet Page 5-9 and 5-10 O 5-2 Rev.0

                                                                                                                                                                                                                        .m v                                                                            O~

l Test Parameter Table - Pump 1-1202-P4-001  ; (Figure ISI-D-201) j Instrumentation Utilized Ref. Acceptable Alert Action Earameter Test Freq. I.D. No.f4) Bange Req. Acc. Value Range Bange Bange Comments , Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet , Pressure Qtr LI-1606 NA (1) NA NA ~ NA NA Measure basin level j (Pi) Outlet Pressure Qtr PI-2148 0-200 12% NA NA NA NA NA . (Po) psig & Differ Pressure Qtr (2) NA i2% APr .95 - 1.10APr .93 - <.95APr <.93 or >l.10APr NA i (AP) l Flowrate Qtr FI-l 1760 0-15000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm j Vib. Amp. Qtr (3) NA 15% Vr 5; 2.5Vr >2.5Vr - 6Vr >6Vr or 1,A , (V)(5) or >.325 in/s >.70 in/s N:tes: t

1. Basin level indicator is utilized to determine level in feet.

t

2. Differential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instmments are utilized.
4. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters. j
5. Measurements are taken on the upper motor-bearing housing in three onhogonal directions, one of which is the axial direction.  ;

i L 5-3 Rev.0 {

                                                                                                       *  -rw -

( Test ParameterTable - Pump 1-1202-P4-002 (Figure ISI-D-202) Instrumentation Utilized Ref. Acceptable Alert Action P_aramritt Test Freq. LD. No.(4) Range Req. Acc. Yalut Bangt Range Range Comments  ; i Speed l (N) NA NA NA MA NA NA NA NA Constant speed driver l Inlet i Pressure Qtr LI-1607 NA (1) NA NA NA NA Measure basin level  ; (Pi) , Outlet Piessure Qtr PI-2149 0-200 12% NA NA NA NA NA i (Po) psig  ; Differ.  ! Pressure Qtr (2) NA 12% APr .95 - 1.10APr .93 - <.95APr <.93 or >l.10APr NA (AP) , Flowrate Qtr FI-l1763 0-15000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib.  ; Amp. Qtr (3) NA i5% Vi s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(5) or >.325 in/s >.70 in/s j Notes:

1. Basin level indicator is utilized to determine icvel in feet. [
2. DifTerential pressure is calculated using basin level (to determine suction head) and outlet pressure. .
3. Portable vibration instruments are utilized.
4. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction. ,

t 5-4 Rev.0 I i _ _ _ . _ _ . _ _ ._ u - _ -. _ _ _ _ _ _ _ _ _ . _ _ _ _ _ _ _ . . _ _ _ _ _ _ _ . _ _ _ . _ _ _ _ _ _ _ _ _ _ _ _ . _ _ _ _ _ . _ . _ _ _ _ - __mm______.__.__ _ _ _ . _ _ _ . _ _ _ . _ _ _ _ ____m_ _______ _ _ _ _ _ _ _ _ _ _ _ . _ _ _ . . _ _ . _ _ _ _ _ . _ _ _ _ _ _ . - t--- .- _

O O Test Parameter T$ble - Pump 1-1202-N-003 (Figure ISI-D-203) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freg, LD. No.(4) Range Req. Acc. Yalue Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver i U Inlet  ; Pressure Qtr L1-1606 NA (1) NA NA NA NA Measure basin level (Pi) Outlet Pressure Qtr PI-2152 0-200 12% NA NA NA NA NA i (Po) psig  ; DitTer. Pressure Qtr (2) NA 12% APr .95 - 1.10APr .93 - <.95APr <.93 or >l.10APr NA i f (AP) Flowrate Qtr FI-I 1762 0-15000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm  ; Vib. A m p. Qtr (3) NA i5% Vr s 2.5Vr >2.5Vr - 6Vr >6Vr or NA (V)(5) or >.325 in/s >.70 in/s i f i t Notes: 1

                                                                                                                                                                                                                                                                                                                                                                                                  +
1. Basin level indicator is utilized to determine level in feet.
2. Differential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized. [
4. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction.  ;

t i 5-5 Rev.0 [ [ b

                           - - - .                                                                   _ _ _ _ _ _ _ . . _ _- _ _ _ .            .__.u--__ __.-_._.._. _ __ _ . . - _ - _ _ _ - _ _ _ _               e                                                                                                                                        w      o-          w<w w      w =-'i

O O O Test ParameterTable - Pump 1-1202-P4-004 (Figure ISI-D-204) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Iest Freg. I.D. No.f 4) Range ~ Req. Acc. Value Rangt Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr L1-1607 NA (1) NA NA NA NA Measure basin level (Pi) i , Outlet Pressure Qtr PI-2153 0-200 12% NA NA NA NA NA i (Po) psig 4 DitTer. Pressure Qtr (2) NA i2% APr .95 - 1.10APr .93 <.95APr <.93 or >l.10APr NA (AP) Flowrate Qtr F1-11765 0-15000 12% Qr NA NA NA Flowrate is set at reference value  ; (Q) gpm Vib. , A m p. Qtr (3) NA 15% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(5) or >.325 in/s >.70 in/s  ; Notes: i

1. Basin level indicator is utilized to determine level in feet.
2. IMfferential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized.
4. At the discrenon of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction.

5-6 Rev.0 t i

O O O Test Parameter Table - Pump 1-1202-P4-005 (Figure ISI-D-205) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. LD. No.(4) Range Req. Ace. Yalue Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr LI-1606 NA (1) NA NA NA NA Measure basin level (Pi) Outlet Pressure Qtr PI-2150 0-200 12% NA NA NA NA NA i l (Po) psig Differ. Pressure Qtr (2) NA i2% APr .95 - 1.10APr .93 <.95APr <.93 or >1.10APr NA , (AP)  ! Flowrate Qtr FI-l 1761 0-15000 t2% Qr NA NA NA Flowrate is set at reference value l (Q) gpm r Vib. Amp. Qtr (3) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA l (V)(5) or >.325 in/s >.70 in/s i ( Notes: f

1. Basin level indicator is utilized to determine level in feet. _

f

2. DifTerential pressure is calculated using basin level (to vetermine suction head) and outlet pressure.  ;
3. Portable vibration instruments are utilized. [
4. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.  ;
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of w hich is the axial direction.

L i 5-7 Rev.0 [

O O O Test Parameter Table - Pump 1-1202-P4-006 (Figure ISI-D-206) Instrumentation Utilized Ref. Acceptable Alert Action P_arameter Test Freq. I.D. Nol4) Range Rea. Ace. Yalue Range Range Range Comments r Speed (N) NA NA- NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr LI-1607 NA (1) NA NA. NA NA Measure basin level (Pi) Outlet Pressure Qtr PI-2151 0-200 12% NA NA NA NA NA e (Po) psig , i Differ. Pressure Qtr (2) NA i2% APr .95 - 1.10APr .93 - <.95APr <.93 or >l.10APr NA (AP) Flowrate Qtr FI-I1764 0-15000 12% Qr NA NA NA Flowrate is set at reference value , (Q) gpm i Vib. Amp. Qtr (3) NA i5% Vr s 2.5Vr > 2.5Vr - (Vr >6Vr or NA (V)(5) or >.325 in/s >.70 in/s Notes:

1. Basin level indicator is utilized to determine level in feet.
2. Differential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized.
4. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction.

5-8 Rev.0 i

T b v Test ParameterTable - Pump 1-1202-P4-007 (Figure ISI-D-207) Instrumentation Utilized Ref. Acceptable Alert Action Paramtier Test Freo. I.D. No.(4) Bange Rea. Acc. Value Range Range Range Comtatnis Speed . (N) NA NA NA NA NA NA NA NA Constant speed driver [ Inlet , Pressure Qtr LI-1606 NA (1) NA NA NA NA Measure basin level i (Pi) Outlet i Pressure Qtr PI-8895 0-60 12% NA NA NA NA NA , (Po) psig Differ. Pressure Qtr (2) NA 12% APr .95 - 1.10APr .93 - <.95APr <.93 or >l.10APr NA (AP) Flowrate Qtr FI-2156 0-1000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (3) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vrer NA (V)(5) or >.325 in/s > 70 in/s Notes:  ! t

1. Basin level indicator is utilized to determine level in feet. .
2. Differential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized. [

i 4. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.  ! I

5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction.

5-9 Rev.0

O O , Test ParameterTable - Pump 1-1202-P4-008

                                                                                                                                           - (Figure ISI-D-208)

InstEnmentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. 1.D. No.f4) Range Reg. Acc. Value Range Range Range Comments Speed i (N) NA NA NA NA NA NA NA NA Constant speed driver , Inlet t Pressure Qtr LI-1607 NA (1) NA NA NA NA Measure basin Icvel j (Pi) Outlet Pressure Qtr PI-8894 0-60 12% NA NA NA NA NA i j (Po) psig DitTer. , Pressure Qtr (2) NA i2% APr .95 - 1.10APr .93 - <.95APr < 93 or >l.10APr NA (AP) Flowrate Qtr F1-2157 0-1000 12% Qr NA NA NA Flowrate is set at reference value l (Q) gpm l i Vib. .t Amp. Qtr (3) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or .NA  ! (V)(5) or >.325 in/s >.70 in/s Notes: 1

l. Basin level indicator is utilized to determine level in feet. +

I

2. Differential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized.
4. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction. ,

I i 5 - 10 Rev.0 I i

_ _ . . . _ _ _ _ . _ _ - . _ . . - _ . _ _ . . _ . . . ~ _ _ , _ . . . . - . . . _ _ _ . _ _ _ _ . O O O - NOTE: THIS IA A SIMPLIFIED DIAGRAM CV USED TO DEPICT A TEST CIRCUIT. 9446 'MC><]}---{MpCID ADDITION REFER TO THE P8.ID FOR DETAILS, O g (ggiD f6T4) BLIND FLANGE TE D TO 2' y ; ;g  ; FC BLOVDOVN (172)

                                                                                      - 1642                                                                                                                                                                                                    Q23)

M I, (4 3 plSPERSANT ADDITION VS @ 0 (0Z6) G 3' (048) C e4- 20  ; g 16* '- 18' S QMCB 4 0MCB 4 0MCB 1602A 1608A 1634 18' 18' i g y l 11760 l 11761 l . j 11762 _ NSCVS _~.v .' '

                                                                                                                                                                           ~

b  !! 24 . COMPONENTS I PDI PI PDI PI PDI PI  ! 11726 2148 11727 2150 (11729 2152 I O " 1668" SrC QMCB -lbr" ' ll -lbrl ' ll gh 1606 HV HV HV 1160 1160 i 11600 18'  ;

                                                                                                                                                                                                                                                                                                       ,TO TGVER                      TO BASIN                                 ,

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1-1202-P4-001 1-1202-P4-005 1-1202-P4-003 NUCLEAR SERVICE NUCLEAR SERVICE NUCLEAR SERVICE 1-1202-V4-001 COOLING VATER PUMP COOLING VATER PUMP COOLING VATER PUMP NUCLEAR SERVICE COOLING (SPARE) VATER TOVER

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Southern Company Services. Inc.FOR Southern Nuclear Operating Company VDGTLE ELECTRIC GENERATING PLANT =$ = " == =c UNIT 1 ""* == vs PUMP INSERVICE TESTING LOOP FOR neu. "C C' m, NUCLEAR SERVICE COOLING VATER

 -                                                                                                                                                                                        PUMP l-1202-P4-001                                                                                        N/A           N/A          ISI-D- 201                  1 [F 1 2            i
                                                          -m.___._                            ._._m.._.                               m.     . . _._ - __,~..- ....__.                           .__         _ _ _ _ _ _ _ _ . _ . . _ _ _ _ . _                           -._

O O O i NOTE: THIS IA A SIMPLIFIED DIAGRAM CV i USED TO DEPICT A TEST CIRCUIT. (049) 9447 M[>qj l'/pCID ADDITION REFER TO THE PS.ID FOR DETAILS. (077) j-BLIND FLANGE TE b TU " l>4; l'AHf

                                                                        - 1643                                                             FC                          BLOVDOVN I

g g if X 'yISPERSANT ADDITION Q68)68 Cd797 (076) 3' >{ C050) O 24' 20' g QMCB l6* 18' M QMCB g QHCB 1603A 1609A 1635 18' g W g , 1 1 l 11763 l 11764 _ l 11765 _ 1 le 1- i 669

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                                  --,                        W                                                   ;-- ;                                      -~*

NSCVS 24- COMPONENTS l t

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PDI PI PDI PI PDI PI ll l 11730 2149 11731 2151 11733 2153 l i lO Il @ Il h 1669B

         -dist:               'F            g                Hist:                                        ' ll                                                 -Hell                  ' l'                                                       __

1607 HV HV HV 11612 11613 -- 11607 18'  :

                                                                                                                                                                                                                   , , TO TOVER                     ,   TO BASIN                 !

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                                /~\                                                                            /~\                                                                         /g \                                                                                  j 1-1202-P4-002                                                                1-1202-P4-006                                                                1-1202-P4-004 NUCLEAR SERVICE                                                           NUCLEAR SERVICE                                                                  NUCLEAR SERVICE                                    1-1202-V4-002 COOLING VATER PUMP                                                     COOLING VATER PUMP                                                                  COOLING VATER PUMP NUCLEAR SERVICE COOLING (SPARE)                                                                                                                  VATER TOVER my        ante       pr  two                         sEs:kPruse                                 appea       arre2      arme.3          arva e    areas        moeurs

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                                                                                                                                                                                                                "**                                 c"'     vs UNIT 1 PUMP INSERVICE TESTING LOOP FOR                                ~ ui ap                  $$ $"            ,,n,  .C NUCLEAR SERVICE COOLING VATER                                                                                          '

PUMP 1-1202-P4-002 N/A N/A ISI-D- 202 1 DF 1 2

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t V v NOTE: THIS IA A SIMPLIFIED DIAGRAM CV USED TO DEPICT A TEST CIRCUIT. N 9446 'M[><3l "/F- ACID ADDITION REFER TO THE P8.ID FOR DETAILS. (155) (040) (074) BLIND FLANGE FC OVDOVN

                                                                                 - 1642                                                                                                                              '               I
                                                                                                                                                                                                                     /                   X             syISPERSANT ADDITION I'                                                                      (156)                (076)         (075) 3'             S                 ,048)

( 0 24' 20* QMCB [6' 18' H OMCB QMCB 1602A 1608A 1634 18' 18' g 1 11760 l 11761 l 11762 l _ _ 1 _- l a {a

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                                                                                                                                                                                                                                                           ,           24 . COMPONENTS PDI                            PI                                                                       PDI     PI                                             ,l PDI         PI                                                                                                                                                                                                                  i 11726 2148                                                        11727 2150                                                                                         11729 2152 hO                                                         h    @                                                                                           i l   b                                                                                1668B
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PUMP INSERVICE TESTING LOOP FOR muta 5."S b"." me, .cy. NUCLEAR SERVICE COOLING VATER PUMP 1-1202-P4-003 N/A N/A ISI-D- 203 10F 1 2

O O O NOTD THIS IA A SIMPLIFIED DIAGRAM CV USED TO DEPICT A TEST CIRCUIT. N 9447 M[><]l lM}--- ACID ADDITION BLIND FLANGE REFER TO THE PtID FOR DETAILS. (041) (677) TE D TO @ 2'; g

                                                                                  - 1643                        FC             BLOVDOVN I

g M X yISPERSANT ADDITION s I'S W M @ l 3' (050) , O 24' 20' QMCB QMCB 16' 18' H QMC5 3 3 1603A 1609A 1635 t I IO' I 1 * . t l 11763 l . j 11764 - l . j 11765 1 1- I

     \.v                          , ,                         .                                       , ,

{ng , , 1669 24' NSCVS COMPONENTS  ! PDI PI PDI PI PDI PI .I l 11730 2149 11731 2151 11733 2153 O '" l

                                                                                                                                               '"                               1669B
       -U;rij               ' l}-            O B             --g;rll                                                      Hsrll                                                              .:

t 1607 HV HV

          ' H'V                                           11612                                                   11613                                                                    :

11607 18' '

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     '  MAM                                                                                            LMMG                                                                                        m                          i
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1-1202-P4-002 1-1202-P4-006 1-1202-P4-004 NUCLEAR SERVICE NUCLEAR SERVICE NUCLEAR SERVICE l-1202-V4-002 COOLING VATER PUMP CODLING VATER PUMP COOLING VATER PUMP NUCLEAR SERVICE CDOLING (SPARE) VATER TOVER [ 6w ears se o=, uscuerase ==4 === ma =e 4 was acuses . FT l D 9-**-84 BBS v3 IEILED Flut ,tY t de*-as css tvs urann to arv se y 1 4 set 33-a a

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                                                                                                                                                                  '"*                                 v UNIT 1                   Ec=c     ,                 ""' s o.5 wtr corr r i

PUMP INSERVICE TESTING LOOP FOR ana mm. c. wr, av. NUCLEAR SERVICE COOLING VATER PUMP 1-1202-P4-004 N/A N/A ISI-D- 204 1 [F 1 2

O O O NOTE: THIS IA A SIMPLIFIED DIAGRAM CV USED TO DEPICT A TEST CIRCUIT. 9446 M C)<%

                                                                                                                                                                                                                                                                                                     MCID ADDITION REFER TO THE PLID FOR DETAILS.                                                                                                                                                                   Mt D                    TO g                  2'g
                                                                                                                                                                                                                                                                                         ;g (fy-)W BLIND FLANGE TE 1642                     FC             BLOVDOVN                                   g           g

' I yISPERSANT ADDITION f i X s

                                                                                                                                                                                                                              >S
                                                                                                                                                                                                                                                                    @                   @           (075)
  • 3' (048)
     "                                24'                                                                                                                                                                                                                                          20-g DMCB                                                          l6*

18* M QMCB 4 0MCB 1602A 1608A 1634 18' g W g , 1 j 11760 l 11761 l 11762 1 1- la 1668 NSCVS

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                                                                                                                                                                                                                                                                  'd                              ,                    24 . COMPONENTS PI                                      PDI                                                 I, PDI       PI                                                                                                                                                                 PDI                                                      P7                                    i 11726 2148                                                                                                                                                                  11727 2150                                  g      11729 2152                                           gy g

h 1668B

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HV HV HV l1606 j ) 1160 1160  :- 11600 18'

                                                                                                                                                                                                                                                                                           , TO TGVER               ,   TO BASIN MJM                                                                                                                                                                                                         A                                            GMM
                                    / \                                                                                                                                                                           / \                                           / \

1-1202-P4-001 1-1202-P4-005 1-1202-P4-003 NUCLEAR SERVICE NUCLEAR SERVICE NUCLEAR SERVICE 1-1202-V4-001 COOLING VATER PUMP COOLING VATER PUMP COOLING VATER PUMP NUCLEAR SERVICE COOLING (SPARE) VATER TOVER 7 av. == or ci usc.er== -i -, .,,u -. -3 mi s

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UNIT 1 ' PUMP INSERVICE TESkING LOOP FOR " ,,,an a $am mr erv. NUCLEAR SERVICE COOLING VATER PUMP l-1202-P4-005 N/A N/A ISl-D- 205 1 Ir 1 2 f

                                             . . _ _ _ _ , _ . _ . _ . . _ . . . - - - _ . - - . _ . - - - _ _ . - - - - - - _ _ - - . - - _ - - - - _ _ - - - _ _ - - - - _ _ - - - - - - - -                                                                      - _ _ . . . ---            -              -s            w              a  -t

O O O t NOTE: THIS IA A SIMPLIFIED DIAGRAM CV USED TO DEPICT A TEST CIRCUIT. (049F 9447 MC><]HyCID ADDITION ' REFER TO THE P8,ID FOR DETAILS. 04L) 0 (077) BLIND FLANGE TV g - TO Q6J7) 2'(gW

                                                                                 - 1643                                       FC                             BLOVDOVN                                                                        g I                        '             nISPERSANT ADDITION
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8 X / VS ci6Tn cum L0z8) 3* g c e4 go. . g GMCB l6* 18* M OMCB g DMCB 1603A 1609A 1635 18" 18' , I I a = 11763 l 11764 l 11765 l _ _

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                                                                                                            ><                                                                                       is                                                                    24* COMPONENTS PDI      PI                                                   PDI           PI                                                                       PDI                   PI                                           ll ll                                                                                [

11730 2149 11731 2151 11733 2153  : Nb jl @ h O 1669B i d)(0 'U -0)(C 'E -lJfC 'l __

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                                                                                                                                                                                                                                  , , TO TOVER .                                               TO BASIN                           ,

M}A .) G L G ,

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1-1202-P4-002 1-1202-P4-006 1-1202-P4-004 NUCLEAR SERVICE NUCLEAR SERVICE NUCLEAR SERVICE 1-1202-V4-002 COOLING VATER PUMP COOLING VATER PUMP COOLING VATER PUMP NUCLEAR SERVICE COOLING (SPARE) VATER TOVER t e 1: o. scane mi me =u -. =s ==srs t . 3- -

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O O O NOTE: THIS IS A SIMPLIFIED DIAGRAM USED TO DEPICT A TEST CIRCUIT. REFER TO PLID FOR DETAILS HV FI pg 1670 2156 8895 , , _ e a ls, v s g e LO g GMCB FI HV M" 2 54 .LD . ei . . 4 .. 4 6-PI 6' 2155 , , PDI 0" O 11728 PI 1606 8894 QMC O m PDI r 1173 WMAMM JM)JM. M

                                                                                                                                              /                                                                                                                                                         /_                              3 r 1-1202-P4-007                                                                                                                                          1-1202-P4-008 TRANSFER PUMP                                                  1-1202-V4-001                                                                               TRANFFER PUMP                                 1-1202-V4-002 NUCLEAR SERVICE COOLING                                                                                                                        NUCLEAR SERVICE COOLING VATER TGVER                                                                                                                                VATER TOVER
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NOTE: THIS IS A SIMPLIFIED DIAGRAM USED TO DEPICT A TEST CIRCUIT. t REFER TO PLID FOR DETAILS HV FI 1670 2156 pg 8895 , , ,l, , n_ i i LO ii QMCB " FI HV i 2166 2157 1671 167A pg 2154 LO , [ Mll l l [ 6-PI PDI V  ! QMCB 11728 PI 1606 QMCB i 8894 m PDI r 1173 .

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                                                            /~\                    I f                                                        / \                                  y 1-1202-P4-007                                                                                                1-1202-P4-008 TRANSFER PUMP                                         1-1202-V4-001                                           TRANSFER PUMP                      1-1202-V4-002                       l NUCLEAR SERVICE COOLING NUCLEAR SERVICE COOLING VATER TOVER                                                                               VATER TOVER e   .,c        ,  o,                                               mawen.      -2      nm    nm   -4     .-s        --.

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                                                                                                                                                                      "              ==     '"e V0GTLE ELECTRIC GENERATING PLANT KK8     ""'                 """ "'

UNIT 1 PUMP INSERVICE INSPECTION LOOP

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                                                                                                                             .1-1202-P4-008                      N/A     N/A     ISI-D- 208      1 IF 1 3

J CCWPumps (1-1203-P4-001, 002, 003, 004, 005, & 006)

p)u System Function Remove waste heat from the spent fuel pool heat exchangers, RHR heat exchangers and the RHR pump seal coolers during plant operation, plant cooldown and during a '

} postulated post-accident condition.~ This heat energy is then transferred by the component cooling water heat ' exchangers to the NSCWS. The CCWS functions as an intermediate system between a radioactive fluid system and the non-radioactive NSCWS, which operates at a higher 1 l system pressure. This arrangement greatly reduces the i probability ofradioactive fluid leakage to the enviroment by  ; 4 means of the NSCWS. J Quantity - 6 ! ) ! Type.

Horizontal, centrifugal, single-stage, split volute with l

mechanical seals ' [ Manufacturer /Model Ingersoll-Rand /10x18 SE

l Rated Capacity 5000 gpm (each) i~

Rated Total Dynamic. Head 160 feet iO I Driver Type Electric Motor, Westinghouse, LAC-LLD, 5008-S

Horsepower 300 {
Speed 1761 rpm j Power Supply 4160V,60 Hz,3 phase Code Class 3 1
Project Class 313 j Outline Drawing i IX4AF01-67 & 1X4AF01-70 l

Instruction Book X4AF01-136 Physical Location Aux Bldg, Level A, Rooms R-A03 & R-A05 i P&ID 1X4DB136 i Surveillance Procedure 14803-1 i

;        Pump Test Loop Diagrams                      ISI-D-209 through ISI-D-214
 . w
Test Parameter Sheets Page 6-2 through 6-7 6-1 Rev.O i  !
                                                                      .,               1

O O O4 Test Parameter Table - Pump 1-1203-P4-001 , (Figure ISI-D-209) Instrumentation Utilized ~ Ref. Accepuble Alert Action Earameler Int Freq. 1.D. No.01 Range Rea. Acc. Yalue Range Range Range Comments  ; Speed . (N) NA NA NA NA NA NA NA NA Constant speed driver  ! l Inlet Pressure Qtr PI-1878 0-60 12% NA NA NA NA NA i (Pi) psig Outlet Pressure Qtr PI-1858 0-200 12% NA NA NA NA NA i y (Po) psig  ! Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l.10APr NA f (AP) Flowrate Qtr F1-11794 0-10000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm t Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Notes: i

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, w hich meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

6-2 Rev.0

                                                                                                         - - - -                  _ --    _ _ - - - -   . - - _ - - - - - -           _     - - - _ - -n

Test Parameter Table - Pump 1-1203-P4-002 (Figure ISI-D-210) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Irst Freq. I.D. No.f3) Range Rec.Acc. Value Range Rangt Range Comments Speed NA NA NA NA NA NA NA NA Constant speed driver (N) inlet Pressure _ Qtr PI-1881 0-60 12% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr PI-1859 0-200 12% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 er > l.10APr NA (AP) Flowrate Qtr F1-11795 0-10000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or>.325 in/s >.70 in/s Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

6-3 Rev.0 E -_ _ _-. ._. ._ _ _ _ _ . . . _ . _ _ . . _ _ _ . _ _ _ _ _ . _ . . _ _ _ . _ _ . . _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ . . _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ . _ _ _ , _ _ _ _ _ _ _ _ _

O O O ' i Test Parameter Table - Pump 1-1203-P4-003 (Figure ISI-D-211) Instrumentation Utilized Ref. Acceptable Alert Action Paramettr Test Frea. I.D. NoJ3) Range Rea. Acc. Value Range Bange Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet

 . Pressure           Qtr              PI-1879        0-60                 12%                                       NA        NA                     NA                                          NA                                       NA (Pi)                                                psig Outlet Pressure            Qtr              PI-1860       0-200                  2%                                       NA        NA                     NA                                          NA                                      NA                                                                                                  i (Po)                                                psig Differ.

Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l.10APr NA , r (AP) Flowrate Qtr F1-11796 0-10000 12% Qr NA NA. NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (2) NA i5% Vr 5 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s > 70 in/s b Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters. i
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-beanng housing and in the axial direction on each accessibie thrust bearing housing.

i . 6-4 Rev.0 l  : 4

p s. O V  : Test Parameter Table - Pump 1-1203-P4-004 (Figure ISI-D-212) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. 1.D. No.01 Range Rea. Acc. Value Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-1882 0-60 12% NA NA NA NA NA (Pi) BC(2) psig Outlet " Pressure Qtr PI-1861 0-200 12% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr NA(1) NA i2% APr .90 - 1.10APr NA < 90 or >l.10APr NA (AP) Flowrate Qtr F1-11797 0-10000 t2% Qr NA NA NA Flowrate is set at reference value  : (Q) gpm Vib. Amp. Qtr (2) NA i5% Vr <; 2.5Vr > 2.5Vr - 6Vr >6Vr or NA  ! (V)(4) or >.325 in/s >.70 in/s 5 Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.

i

3. At the dircretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.

i

4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

6-5 Rev.0 m_--___ - . . . - _ __ _

O ' O Test Parameter Table - Pump 1-1203-P4-005 (Figure ISI-D-213) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freo. I.D. NoJ3) Range Rea. Acc. Value Bange Range Bange Comments Speed (N) NA. NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-1880 0-60 2% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr PI-1862 0-200 12% NA NA NA NA NA i (Po) psig DifTer. I Pressure Qtr NA(1) NA i2% APr .90 - I .10APr NA <.90 or >I.10APr NA > (AP) Flowrate Qtr FI-l 1798 0-10000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm . Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s i i t I. Notes:

1. DifTerential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized. l
3. At the discretion of SNC, instrumentation other than that listed, w hich meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

6-6 Rev.0 I t-

                                                                                          /m                                                                          em Os                                                                          U                                                                           U Test Parameter Table - Pump 1-1203-P4-006 (Figure ISI-D-214)

Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Frea. I.D. No.(3) Range Rea. Ace. Value Range Range flanFe Comments ' Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-1883 0-60 12% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr PI-1863 0-200 12% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 er >l.10APr NA (AP) Flowrate Qtr - FI-Il799 0-10000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (5) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s N ites:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

6-7 Rev.O u -

_. _ .~_ ._ . . . _ . _. . . _ . . . _ . . - _ . . - . . . _ _ _ _ _ . -. . - . . . _ . - - = . . _ - . - _ . _ -. .- . _ - . . . . _ . . O O o/ M OMCB PI gy NOTE: THIS IS A SIMPLIFIED - HV PI 1852A 1858 FI DIAGRAM USED TO DEPICT 11803 11800 1878 1179 A TEST CIRCUIT. REFER LD A ' * '"' * * " " * " l N '- ' 16' 'I !.' 1[ 1-1203-P4-001 (030)

                                                                                                                                                                                                             }

CMPNT. CLG. OMC VATER PUMP HV PI 54 1860 U 1879 11 4 1179 11801 10' LU LO ' c lN!  ! l 16' 'I I', th 1-1203-P4-003 O , CMPNT. CLG. VATER PUMP 18' OMC FI i PI HV 1179 HV PI 856 1862 11805 1180 1880 I CCVS LO l 18' = COMPONENTS l 10' e gi ha l  ! 16' 'I I', th \ 1-1203-P4-005 CMPNT. CLG. VATER PUMP 20' (SPARE) i _L 18' i! < Is. T LO HV 4' COMPONENT CLG. VATER 11807

                                                                               'g        gi'                                                            HEAT EXCHANGER COMPONENT CLG. VATER LO                                                                                                  [1 03-a-001 SURGE TANK                                                HV 1-1203-T4-001                                           11806 L

T LO 1866 -- _ z ., EV. hfE l BY De*D K-- mPytJ mPPRA appe.4 arse 2 appa3 N 8 h ME vt IISLEB ftbr PET fl i r-e+= css cw wrte = is.eenas arv n JJC Southern Company Services, Inc.FOR Southern Nuclear Operating Company VOGTLE ELECTRIC GENERATING PLANT =8=* " ** c UNIT 1 "' **=* vs PUMP INSERVICE TESTING LOOP FOR COMPONENT CDOLING VATER PUMP m EU' n .v. 1-1203-P4-001 N/A N/A ISI-D- 209 IT1 2

                       ._    m . __..               . - . . - - . _ - - . . - - - -- -                       __      ._- -    . . . . -          --.- - -        . - - - .              . - - - - _ . -         . -. .

v b Cf*~ i i M QHCB PI HV NOTE: THIS IS A SIMPLIFIED PI 853 HV 1859 11811 FI DIAGRAM USED TO DEPICT r 11808 1881 II79 A TEST CIRCUIT. REFER LO TO THE P&ID FOR DETAILS. LD A, lN - i 16' 1-1203-P4-002 g4, CMPNT. CLG. OMCB VATER PUMP HV PI 855 1861 11 2 118C9 1882 11797 i 10' LO LO c I,'

lN: lN:

16'  ! h 1-1203-P4-004 O < CMPNT. CLG. VATER PUMP 18' O 857 PI HV 1179 HV PI 1863 1883 11813 11810 f CCVS fu, 18' LO  ; 10, g g; l = COMPONENTS 16'  ! O h 1-1203-P4--006 CMPNT. CLG. VATER PUMP 20' (SPARE) j _a_ 18' ,l i  !. i i T LO i' 4* HV COMPONENT CLG. VATER 11815 gi HEAT EXCHANGER i COMPONENT CLG. VATER LO 1- 203-G-002  ; SURGE TANK HV l-e a) 1 1-1203-T4-002 11814 T t T 1867 ~ ~ ~ ar . mir o, = _ . _ -u -u .-2 ==. . m-= i 0 N 353 wt IIstE3 Ftp PET FI a i v-e.-es can ews urmece m u. ems avi, JJC

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                                                                                                                                                                  ==z                             can a. m. mar PUMP INSERVICE TESTING LOOP FOR                                 n.            .         aum         re =v.

COMPONENT COOLING VATER PUMP 1-1203-P4-002 N/A N/A ISI-D- 210 1 IF 1 2

O O O M OMCB PI HV NOTD THIS IS A SIMPLIFIED HV PI 852Al 1858 FI 11803 DIAGRAM USED TO DEPICT 11800 1878 1179 A TEST CIRCUIT. REFER t,g , t o. , to , To TME etiD roR nEraitS.

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16' 1h 1-1203-P4-001 g4, CMPNT. CLG.  ; QMC VATER PUMP , HV PI 854 1860 11 4 I 11801 1979 1179 10' LO t LD  :: '

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16' 1 1-1203-P4-003 O e CMPNT. CLG. OMC g PI FI 56 HV 1179 HV PI 1862 1880 11805 I!B0 f CCVS LD NN l 10' c '

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16' IM 1-1203-P4-005 (034) CMPNT. CLG. VATER PUMP  ; 20' (SPARE) 2 18',l i li i T LO 4' HV COMPONENT CLG. VATER 11807 ig l HEAT EXCHANGER COMPONENT CLG. VATER LD 1-1203- & 001 . SURGE TANK HV l_ wa> 1-1-1203-T4-001 11806 T t T ~~ 1866 r w =re e, =, =_. -.. -, -, -. m. e - ms vs usan rar m 1 > L_ F-944 CSS CVS tPtm7ED 19 II490BM IEV B9 _ JC

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O O O S QMCB PI NOTE: THIS IS A SIMPLIFIED ' PI A HV HV 1 1859 11811 FI DIAGRAM USED TO DEPICT 11808 1881 1179 A TEST CIRCUIT. REFER 10' - hD TO THE P8.ID FOR DETAILS. L,D

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16' 14' O 1-1203-P4-002 g4 CMPNT. CLG. OMC VATER PUMP HV PI 55 II 18 1 11 11809 1882 11797 10' LD LO '

                                                                                                                                                                                                                                                                                             'Ni                  l                                                                                                                                         i 16'   '    N                        gh                                                       1-1203-P4-004                                                                                                                                                             '

CMPNT. CLG. DMC Fb PI HV 1179 HV PI 857 1C63 1883 11813 11810 J CCVS fu, 18' LO ' 10, g ,q l = COMPONENTS 16*  ! N 1 1-1203-P4-006 O [ CMPNT. CLG. VATER PUMP 20' (SPARE) _a_ 18' ,I i Ii n T LO  ! 4' HV COMPONENT CLG. VATER 11815 HEAT EXCHANGER COMPONENT CLG. VATER LO SURGE TANK HV- -I- i e a> A 1-1203-T4-002 11814 T - T '

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l i MCB PI NOTES THIS IS A SIMPLIFIEld t HV PI HV FI 1858 11803 DIAGRAM USED TO DEPICT  ; 11800 1878 1179 A TEST CIRCUIT. REFER

                                                                                                                                                                                                                                          ' 10. ,                                                                                                 LD                                        TO THE P&ID FOR DETAILS. i LO
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16' IM 1-1203-P4-001 g4, i CMPNT. CLG. OMC VATER PUMP HV PI 854 U 1879 1860 11 4 11801 1179 10' LO LD ' i NN i -

                                                                                                                                                                                                                                                                                       'N 16'                                                                                                                                                                                                                       032) 1                                                                           1-1203-P4-003                                                                                                                                                        ,

CMPNT. CLG. VATER PUMP 18' ' QMC O HV PI 856 1862 11 5 1180 1880 1179 CCVS 1 LO

                                                                                        '          '!,'                                                                                                                                 M                                             N'                                                               '                                    18'     -      COMPONENTS 16'                                                                                      1h                                                                           1-1203-P4-005                                   (034)

CMPNT. CLG. VATER PUMP 20' (SPARE) _a_ 18' el li i i T LO , 4' HV ' COMPONENT CLG. VATER 11807 ge' HEAT EXCHANGER COMPONENT CLG. VATER LO 1-1203-a-001

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SURGE TANK HV GlfL9) 1 1-1203-T4-001 11806 f T 1866 - -- e s-e.-e. == wi num rar m t1 7-*** == ews wmnets is is.suas sity s, JJC

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Southern Company Services. Inc.FOR Southern Nuclear Operating Company VDGTLE ELECTRIC GENERATING PLANT sosien n an .mc UNIT 1 ""' === vs PUMP INSERVICE TESTING LOOP FOR COMPONENT COOLING VATER PUMP

                                                                                                                                                                                                                                                                                                                                                                                         -.        "EC'              m, 1-1203-P4-005                                                         N/A                      N/A    ISI-D- 213        i (F 1 2

t S QMCB PI PI 1853 HV NOTE: THIS IS A SIMPLIFIED HV 1859 11811 FI DIAGRAM USED TD DEPICT

  • 11808  ! Gal 1179 A TEST CIRCUIT. REFER LD TO THE PLID FOR DETAILS.

LO i 10, e g 16* ' I', h 1-1203-P4-002 g4, CMPNT. CLG. QMCB VATER PUMP HS l pg HV PI HV FI 1861 11812 1882 11809 11797 10' LD LO  ; c

                                                                               !   N lN:                l                   l 16'                                                                                                                                                                      (057) 1                            1-1203-P4-004                                                                                                                                                                                                                                    ,

CMPNT. CLG. VATER PUMP 18' QMC F1 857 PI HV 1179-HV PI 1863 I I 1883 11813 11810 18 CCVS LD A '

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l C MP NENTS 16' (059) 1 1-1203-P4-006 l CMPNT. CLG.  ! VATER PUMP ' 20' (SPARE) _a_ 18' iI' I. n T LO 4' HV , jp COMPONENT CLG. VATER 11815 i gi HEAT EXCHANGER COMPONENT CLG. VATER LO 1-1 03-M02 SURGE TANK HV l-

  • w a) 1-1-1203-T4-002 11814 T

T ~ L 1867 e s++ nu vs amanrm m ti a ve-as os cws wantra su smessas av is JJC I

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Southern Company Services. Inc.FOR Southern Nuclear Operating Company j VDGTLE ELECTRIC GENERATING PLANT E8=<= " = =c , UNIT 1 "" === vs PUMP INSERVICE TESTING LOOP FDR COMPDNENT COOLING VATER PUMP men. "Eh" .ex, o 1-1203-P4-006 N/A N/A ISI-D- 214 I (F 1 2 I

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I I l l SIPumps (1-1204-P6-003, & 004) G System Function k.) - The SI system provides emergency core cooling and serves no other purpose. The primary function of the ECCS is to remove the stored and fission product decay heat from the reactor core following an accident in order to prevent fuel rod damage. Quantity 2 Type Horizontal, centrifugal,11-stage i 4 Manufacturer /Model Pacific Model 3-i t., JHF I Rated Capacity 440 gpm I Rated Head 2680 ft.  : Driver Type Electric Motor, Westinghouse, Frame 5809 H

Horsepower 450 Speed 3600 rpm l Power Supply 4160V,60 Hz,3 phase Code Class 2 Project Class 212 l Outline Drawing IX6AG02-10,13 & 15 Instruction Book IX6AG02-016 Physical Location Aux Bldg, Level B, Rooms R-BIS & R-B19 P&ID 1X4DB121 l Surveillance Procedure 14804-1 Pump Test Loop Diagrams ISI-D-215 & ISI-D-216 Test Parameter Sheets Page 7-2 & 7-3 4

4 O 7-1 Rev.O I { l

                                                                                                                                                                            \

t Test Parameter Table - Pump 1-1204-P6-003 (Figure ISI-D-215) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. I.D. No.(3) Range Rea. Ace. Yalum Range Range- Range Comments  ; Speed 1 (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qr PI-0977 0-100 2% NA NA NA NA NA (Pi) psig Outlet  ; Pressure Qtr Test NA 12% NA NA NA NA NA i t (Po) Gage j Differ.

                                                                                                                                                                                                                                                                          <.90 er >l.10APr NA Pressure                                             Qtr        NA(1)         NA           i ~. A                    APr                                        .90 - 1.10APr                                                        NA (AP)                                                                                                                                                                                                                                                                                                     ,

Flowrate Qtr FI-0968 0-100 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm i Vib.  ; Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Notes:  ;

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.  ;
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters. i
4. Measurements are taken in a plane approximately perpendicular to the routing shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial ,

direction on each accessible thrust bearing housing. i 7-2 Rev.O  ; l t

O O O Test Parameter Table - Pump 1-1204-P4-004 (Figure ISI-D-216) Instrumentation Utilized Ref. Acceptable Alert Action EaramticI Test Freq. I.D. NoJ3) Range Req. Acc. Value Range Range Range comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver  : Inlet Pressure Qtr PI-0978 0-100 12% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr Test NA 12% NA NA NA NA NA $  ; I (Po) Gage Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 er >l.10APr NA (AP) Flowrate Qtr FI-0968 0-100 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (2) NA 15% Vr 5 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s - t Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instmmentation other than that listed, which meets the requirements of the OM Code, may'be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessi'i pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

7-3 Rev.0

                                                                                                                                                                                                                                                                               ~+
                                                                                                                                                                   /3                                                                                                                                 f3 d                                                                                                                                     V                                                                                                                                   V NOTE: THIS IS A SIMPLIFIED DIAGRAM USED TD DEPICT                              M MCB                        HV FI A TEST CIRCUIT. REFER                                                                                                                0968 8964                       8964 TO THE P8.ID FOR DETAILS.

MMCB 3/4" REFUELING VATER G88 HV j l PCP STORAGE TANK 8813 th0

                                                                                                                                                                                                                                                                                               -          ~

8813 M HV l , , HV 807 HV 802 q FC QMCB 1 1/2, 8814 HV >, 8888 g GMCD , M MCB 7 3' 8814l CVCS CHARGING 802 k k 3/4, j 6, QM B 807B  ! PUMP QMCB 4' SUCTION HEADER 093) 23 HV HV HS 821A m HV M 807B QMCB 0998 pg 923 00 (098) ,l 24" 0977 r' EI ' '

                                                                                                                                                                                                         ,                              207 LO                                                                     1-1204-P6-003                        ~~

6' > SIS COLD 4* SAFETY INJECTION HV LEG LDUP L H PUMP 8806 ' 82 B MCB QMCB 090 M QMCB 094) 821B M PI 8920 4 MCB HV QM B QMCB HV 101 802 11/2* 0978 g 4, HS r LO 1-1204-P6-004 Dw k 802 6, L SAFETY INJECTION (163) M RHRS DISCHARGE QMCB 4' 8 , l DM TRAIN *B' RHR HEAT EXCHANGER 3 9-ee-se ggig VS_ IISKs FtR PST I 7-e*-es em ev. waarts = ines.m arv . , JC rE $ E ."

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FOR SAFETY INJECTION PUMP 1-1204-P6-003 N/A N/A ISI-D- 215 1 [F 1 3

(~ p /} O j NOTE: THIS IS A SIMPLIFIED " I DIAGRAM USED TO DEPICT HS HV A TEST CIRCUIT. REFER 8964 8964 68 TO THE P&lD FDR DETAILS. MCB _ 888 3/I G HV i l OM B PCP REFUELING VATLR STORAGE TANK 8813 H TIS 1-204-T4 -001 807 10980 8813 M ' HV

                                      .                                                 , r                                                       HV                                                                              EM                    807 802                                                  [           MCB                     1 1/2, 8814 8888 P                                                             3*                              M        8814
                                                                                                                                                                                                                                     ' QMCB 802                                                                                                                                                                                                                                      CVCS CHARGING L                                     3/4'                                                                                                              QM B                 807B                           H            PUMP 6'

QM B 4' " 093 92 HS 80 B 82 A HV M QMCB 0998 H Q.00 ' (098) w 0977 pg A UM 923 I,I e4-821A M i z LO 1-1204-P6-003 0- D SIS COLD 4' g SAFETY INJECTION 6' jl LEG LOOP L HV H e PUMP LD 8806 HV 0919 8920 _ QMCB QMCB HV M 8806 821B - <-> ' HV Q OMCB HV b0 802 101 ) 1 1/2'  ! 0978 H 4, , HS r LO 1-1204-P6-004 0: D 802 k L SAFETY INJECTION PUMP 6,

                                                                                                                                                                                                                                     @                                      RHRS DISCHARGE QMCB                   4                                                                                                                                                                                               .

8 / l FROM TRAIN *B' WV. 9ME BT M's RHR HEAT EXCHANGER K-.m appq3 appg3 appeJ appte a, pts Myuuurt e we= ma vi nuns run m tI a 7-e* == . cvs urams to es.sma uv is - JJC rN m" [es .Ev~., C.,7

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RHR Pumps j (1-1205-P6-001, & 002) ' O U System Function

                                                       ~          The primary function is to remove heat energy from the i

' reactor core and reactor coolant system during plant -  ! cooldown and ra4*hg operations. As a secondary j function, RHR is used to transfer refueling water between the refueling water storage tank and the refueling cavity at the beginning and end of refueling operations. Portions of the RHR system also serve as part of the ECCS during the injection and recirculation phsses of a LOCA. Quantity 2 i Type Vertical, centrifugal, single stage ! Manufacturer / Mode! Ingersoll-Dresser,8X20WDF Rated Capacity 3000 gpm (- Rated Head 375 ft. Driver I Type O Horsepower Speed Westinghouse LLD squirrel-cage induction motor 400 1780 rpm i Power Supply 4160V,60 Hz,3 phase Code Class 2 Project Class 212 } Outline Drawing AX6AF02-20007 l Instruction Book AX6AF02-20030 RHR Pumps (cont) Physical Location Aux Bldg, Level D, Rooms R-D48 & R-D49 P&ID 1X4DB122 ( Surveillance Procedure 14805-1 & 14812-1

l. Pump Test Loop Diagrams ISI-D-215 & ISI-D-216

, Test Parameter Sheets Page 8-2 & 8-3 l l 81

Rev.0 I

_ _ . . ~ . . . - _ - _ _ - _ _ - _ _ _ - - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ - _ _ - _ - _ _ . _ _ _ _ _ - - - _ - - _ _ _ _ _ - _ _ - - _ - - _ _ _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ . . _ _ _ _ _ _ _ _ _ _ _ _ - _ - _ . C O O . f Test ParameterTable - Pump 1-1205-P6-001 (Figure ISI-D-217)  : Instrumentation Utilized Ref. Acceptable Alert Action , Paramtitt Test Frea. LDJio4) Range Rtg. Acc. Value B.ange Range Range Comments t Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-8884 0-100 12% NA NA NA NA NA I (Pi) psig Outlet . Pressure Qtr PI-8886 0-400 12% NA NA NA NA NA , (Po) psig Differ. Pressure Qtr NA(1) NA 2% APr .90 - 1.10. ipr NA <.90 or >1.10APr NA  ; i (AP) i Flowrate Qtr FI-0618A 0-5000 12% Qr NA NA NA Flowrate is set at reference value I (Q) gpm Vib.  ; Amp. Qtr (2) NA 15% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA  ; (V)(4) or >.325 in/s >.70 in/s i Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thmst bearing housing.

i t 8-2 - Rev.0 j [ _ . . _ _ . . . _ _ _ _ _.._____.____m___ , _ _ _ _ _ _ . _ _ _ . _ _ .. - _ _. - , , , , , ,

J O O , Test ParameterTable - Pump 1-1205-P6-002 (Figure ISI-D-216)  ! Instrumentation Utilized Ref. Acceptable Alert Action

  • Earamtitr Test Freq. I.D. No.(3) Range Reg. Acc. Yalut Range Rangt Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver inlet Pressure Qtr PlfS885 0-100 12% NA NA NA NA NA j (Pi) psig Outlet Pressure Qtr PI-8887 0-400 12% NA NA NA NA NA ,

(Po) psig . Differ. Pressure Qtr NA(1) NA 12% ' APr .90 - 1.10APr NA <.90 or > t.10APr NA (AP) t Flowrate Qtr FI-0619A 0-5000 i2% Qr NA NA NA Flowrate is set at reference value (Q) gpm x Vib. A m p.- Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.  ;
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

f 8-3 Rev.0 i i i

p Q f V (> U) NOTE: THIS IS A SlHPLIFIED FI FIC FROM CONTAINMENT FV 3, DIAGRAM USED TO DEPICT 618 0618 EMERGENi SUMP O dR ILS. OMC 00 M061 PI OMCE _ _ HV FT 0618 HV 0606

                                                                                                                                         ^

8886 M HV 8811 REFUELING VATER 0620 STORAGE TANK 809 M 0618 PI l (019 0612 l-1204-T4-001 SIS COLD LEG 8'  :,: - llr0ll ' N---{- Q

                                                                                                    <l,             2,,      1-1205-E6-001 LOOP                                                8'                                                                                                                 @l)                                         Ji 14 HV                                                                                                                                       FIS M                            PI 804                                                             FY T                                                                                                                 QMCB L                                                                              0610                    5016      8884 g,                                                H      (12 2 )                g                               g CVCS CHARGING = 7 4                                                                            . 0618          CVCS LETDOVN                                                   1-1205-P6-001                                                                                                       812y PUMP SUCTION -                                                                                            HEAT EXCHANGER                                                 RESIDUAL HEAT                                                  1  r                                                                       HV HEADER                                                                                                        se REMOVAL PUMP                                                   J  L                                                                       812 -

M HV HV Ml 15 8' LC, LC 840 716 ,m , m, r, RCh0W1 i RHT(027) (226) -9  : 12' 24' FV 3 RCS '

                                      - "'                                                                         0611 HOT LEG                                            HV                                                                              OMCBM PI                                                QMCB M 0615 8887                                              M LOOP
                                                                                                                                                                                                                                                                                                                                           ~~

m 716 HV HV 0607 (0621,1 809 M r (020 0613 Y 06 2 02 s' ' QM SIS COLD LEG

.- llhl '3 M { 12- L RCS HOT LEG 2'

l-1205-E6-002 ' "' LOOP 4 LOOP FT (010 ) o 8' QMcB 0619 @ FIS M PI Q

                                                                                                                                                                                                                                                      "-                                                                       QMCB HV b                  '

7 0619 7' 0611 5015 5017 8885 HV H 0619 LOO Iv 34' 88llB 812 804 0619 CVCS LETDOVN 0619 $ l-1205-P6-00 HEAT EXCHANGER RESIDUAL HEAT 1 F ^ (00p' HV SIS SAFETY _ a j c-1M) M 8812 INJECTION !I I REMOVAL PUMP FRDi CONTAINMENT 619 FC s, PUMP SUCTION EMERGENCY SUMP, j MCB 12' V i SEv. Om Tt DT Oer1 stSt EPTEM apres asww2 mPPR.3 araw . erwetS apuers

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FOR RESIDUAL HEAT REMOVAL PUMP l-1205-P6-001 N/A N/A ISI-D- 217 1 OF 1 6

O O O NOTE: THIS IS A SIMPLIFIED DIAGRAM USED TO DEPICT [M0618Al M FV 3, FROM CONTAINMENT QMC 0618 EMERGENCY SUMP A TEST CIRCUIT. REFER 0610 TO THE PLID FOR DETAILS. 00 DMCB M pt OMCB _ _ 0618 HV ^ 0614 8886 HS HV HV REFUELING VATER FT 0606 0620 8 811 809 STORAGE TANK M 0618 (019 0612 l 0601 1-1204-T4-001 0 ' SIS COLD LEG LOOP B* 8, hl lik e FO 2, r 1-1205-E6-001 g{ i (]ED

                                                                                                                                                                                                            *}                                           H                     ,

HV  ! N FI Q TI PI OMCB 0618 8884 34, py 870 A 812 V CVCS CHARGING = r 4 ' 0618 CVCS LETDOVN 1-1205-P6-001 PUMP SUCTION 7

                                                                                                                                       'I HEAT EXCHANGER                         RESIDUAL HEAT                                                      1                                                             T                         HV HEADER                                                                                                                                                      4                                                                                            M
                                                                                                                                           ,                8'                                REMOVAL PUMP                                                       J  L                                                            g                      812 HV                   HV                                                                              M li                             g,             mLC,             ,LC 8840                                                                                                                                                   r,               r, RCS     O h Tl LEG                i *
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FV 3' RCS - 0611 (001 ) HOT LEG HV OMCB M pg OMCB 1 LDDP 716 ^ 0615 8887 M ' 809 M r 06 7 l PI HV (020 0602 702 M w 12' ES " COL LEG o 1-12 2 r4 LOOP FT 2' 'e LOOP 4 (010 ) ' 8' OMCB 0619 flS FV Q ] PI _ OMCB HV O 9 FV 881 B 804 O g j 0619 CVCS LETDOVN k

                                                                                                   '                                                   HEAT EXCHANGER                                                                                         1    rj g                     (,00.

0 U HV SIS SAFETY u

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l-1205-P6-002  ; L v M 812 INJECTION 619 I I e. RESIDUAL HEAT FRDi CONTAINMENT PUMP SUCTION FC REMOVAL PUMP EMERGENCY SUMP, j MCB - 12' ' '

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y ""c PUMP INSERVICE TESTING LOOP

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                                                                                                                                                                                                      -120 -P6-002                                                             N/A           N/A                     ISI-D- 218                               1 DF l     6
 ~   _ _ _ _ . - . _ _ .                 . _ . - _ . _ _ _ . _ . _ . . _ _ - _ . _ _ . _ . _ _ . _ _ . _                               . - . _ . . . _    .

l CS Pumps l (1-1206-P6-001, & 002)'  ; j System Function Containment spray limits the peak pressure in the l

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containment to less than design pressure following a LOCA 1 or a main steam line break inside containment. Trisodium  ! phosphate is mixed with recirculated spray water in the containment sump region for pH control and to enhance absorption of the airborne fission product iodine and to retain the iodine in the containment sump solution to limit calculated offsite doses to less than 10CFR100 limits. Quantity 2 i Type Horizontal, centrifugal j Manufacturer /Model Goulds Model 3415 .. Capacity 2600 gpm-l l l Total Dynamic Head 450 ft. l

                      ' Driver                                                                                                                                 l Type                                              Westinghouse electric motor, Frame 5010S                                      ,

Horsepower 400 l Speed 1777 rpm Power Supply 4160V,60 Hz,3 phase  ; Code Class 2 l Project Class 212 Outline Drawing IX6AD02-11 l- Instruction Book , X6AD02-18 i l l Physical Location Aux Bldg, Level D, Rooms R-D76 & R-D77 j P&ID IX4DB131 Surveillance Procedure 14806-1 Pump Test Loop Diagrams . ISI-D-219 & ISI-D-220 Test Parameter Sheets Page 9-2 & 9-3 lO 9-1 Fev. 0

Test Parameter Table - Pump 1-1206-P6-001 , (Figure ISI-D-219) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freu, J.D. No.(3) Range Req. Acc. Yalue Range Range Range Comments Speed , (N) NA NA NA NA NA NA NA NA Constant speed driver i Inlet Pressure Qtr PI-0972 0-100 12% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr PI-0974 0-300 12% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr NA(t) NA 12% APr .90 - l .10APr NA <.90 er >l.10APr NA (AP) Flowrate Qtr F1-0929 0-400 12% Qr NA NA NA Flowrate is set at reference value t (Q) gpm Vib. [ Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr- 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Notes:

1. Differential pressure is calculated as, AP = Po - Pi  ;

t

2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

9-2 Rev.0 l _ . _ _ . _ _ _ _ . _ _ _ _ _ -- ~ . . _ _ . _ _ _ _ _ _ . . , . . _ _ _ _ . _ _ . _ _ _ _ _ _ _ _ _ _ _ . - . _ _ _ . _ . _ . ___m__ _ _ . _ ____..a.____ ___________m

O O O Test Parameter Table - Pump 1-1206-P6-002 (Figure ISI-D-220) Instrumentation Utilized Ref. Acceptable Alert Action Entameter Irst Frey. I.D. No.(3) Range Req. Acc. Yalue Range Range Range Commeuts Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-0973 0-100 12% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr PI-0975 0-300 i2% NA NA NA NA NA . (Po) psig Differ. Pressu e Qtr NA(1) NA i2% APr .90 - 1.10APr NA < 90 or >l.10APr NA (AP) Flowrate Qtr F1-0929 0-400 2% Qr NA NA NA Flowrate is set at reference value (Q) gpr t Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr- 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shall in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

9-3 Rev.O

O O

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NOTE: THIS IS A SIMPLIFIED ,LC, p, DIAGRAM USED TO DEPICT r, _ A TEST CIRCUIT. REFER (006) TO THE P&ID FOR DETAILS. HV 9003 QMCB QMC'B 9001 HS 2' HV mr FROM CONTAINMENT TI PI 1094 "' 9001A 0938 0974 PI 12' ENERGENCY SUMP FI __ TO M , 0972 929 - CONTAINMENT - ? , SPRAY 8, I l

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a CONTAINMENT SPRAY g J --C PUMP S CONTAINMEN ' SPRAY EDUCTOR

                                                                                                                                                                                                             "                                                                     SPRAY ADDITIVE TANK                                                                                                 M     9017A 1-1206-J6-001                                                                                                              $                                                                                     g U                                                                                                           HV                                                       HV                                          90    A.
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                                                                                                                                                                                                    -S                                                                                       994                                                     994 REFUELING VATER                                  c 3                                                                                                                               MCB                                                         MCB STORAGE TANK o                           h S

3' ] % 994 )% 9[4 2 09 1-1204-M-001 CONTAINMENT SPRAY EDUCTOR k 1,C, HV

                                                                                                                                                                                                            "                                                                                                                                                                              10      9017B 1-1206-J6-002                                                                                                                                                                                                                                                                    15 2                                               MCB 9001B 3'                                                         ,QMCB HV                                                                                                                  e                                                                                                                                                                                                                            M      9017B 4

D TO h 9001B m m 8' 0 9 [C 0973 PI

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o HV 9003P CONTAINMENT SPRAY 7' e- 2' 1-1206-P6-002 h PI l m - FROM CONTAINMENT CUNTAINMENT SPRAY 12- r, 0975 EMERGENCY SUMP PUMP ES 2* s., - -, dT6h

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UNIT I '" " ' ' * ' vs sc=1 .s,. a=rsus e. san PUMP INSERVICE TESTING LODP a. s,.wa. x, u FOR CONTAINMENT SPRAY PUMP 1-1206-P6-001 N/A N/A ISI-D- 219 1 [F 1 3

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O v J s < i NOTD THIS IS A SIMPLIFIED ,L C, p. DIAGRAM USED TO DEPICT r, _ A TEST CIRCUIT. REFER (006) TO THE P&ID FDR DETAILS. HV I 9003 OMCB QMCB b 9001 HV TI PI M 1094 r' FROM CONTAINMENT i 9001A 0938 0974 PI 12" EMERGENCY SUMP FI __ TO M 0972 929 .

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i CONTAINMENT = ,' , ' SPRAY 8, l

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8 CONTAINMENT SPRAY PUMP g  %'C3 S ' CONTAINMEN SPRAY EDUCTOR e 8 SPRAY ADDITIVE TA W M 9017A 1-1206-J6-001 2 3' HV 3' HV 90 A. - S 994 994 REFUELING VATER c 3 CB MCB STORAGE TANK gh 3'] g 94 ) M 994 2' 098 1-1204-T4-001 e l = CONTAINMENT SPRAY EDUCTOR h o M r HV

  • 10 9017B 1-1206-J6-002 (13_'2) 1 MCB 9001B '

HV MCB M r 9017 9001B g} Cs 1094 pg y 0973 3 HV TD m 8' i 9003 i' CONTAINMENT SPRAY r'

2" 1-1206-P6-002 h ,

PI l - FROM CONTAINMENT CONTAINMENT SP' RAY 12' r' 0975 EMERGENCY SUMP I I PUMP 1

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PUMP INSERVICE TESTING LOOP FOR CONTAINMENT SPRAY PUMP

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ua UEn 1-1206-P6-002 N/A N/A ISI-D- 220 1 (F 1 3

CVCS Pumps CENTRIFUGAL CHARGING PUMPS l

 ,,                                          (1-1208-P6-002, & 003) k-       System Function                  ~

The primary functions of the CVCS are to: l Regulate reactor coolant chemistry for reactivity and , corrosion control l Maintains the water level in the pressurizer of the RCS j e Maintains seal-water injection flow to the reactor I coolant pump

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Provide a means offilling, draining and pressure testing the RCS Provide injection flow to the RCS following actuation ofSIS Quantity 2 l ! Type Horizontal, centrifugal,11 itaIg i i

         . Manufacturer /Model                   Pacific, U 2-1/2 in., RL l         Capacity                                150 gpm Total Dynamic Head                      5800 ft.

Driver 1 Type Westinghouse electric motor

              ~ Horsepower                      600 Speed                             1800 rpm Power Supply                      4160V,60 Hz,3 phase Code Class                              2 Project Class                           212                                                                  {

Outline Drawing IX6AH02-101 i Instruction Book IX6AH02-85 Physical Location Aux Bldg, Level C, Rooms R-Cl15 & R-C118 P&ID IX4DB116-2 Surveillance Procedure 1480~8-1 1 Pump Test Loop Diagrams ISI-D-221& ISI-D-222 i l Test Parameter Sheets Page 10-2 & 10-3 10-1 Rev.0

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Test Parameter Table - Pump 1-1208-P6-0<)2 (Figure ISI-D-221)

  • Instrumentation Utilized Ref. Acceptsble Alert Action ,

Paramtitt Test Freq. I.D. NoJ3 n Range Ecsl. Acc. Yalue Bange Range Range Comments - Speed (N) NA NA NA NA NA NA NA NA Constant speed driver inlet PI-8891 0-100 12% NA NA NA NA NA i Pressure Qtr (Pi) psig l Outlet . Pressure Qtr PI-8472 0-4000 12% NA NA NA NA NA i I (Po) psig Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 er >l.10APr NA (AP) Flowrate Qtr F1-10120 0-80 12% Qr NA NA , NA Flowrate is set at reference value (Q) gpm i Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s i N:t:s:  ;

1. Differential pressure is calculated as, AP = Po - Pi f
2. Portable vibration instruments are utilized. l
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing. ,

i 10 -2 Rev.0

( ( V Test Parameter Table - Pump 1-1208-P6-003 (Figure ISI-D-222) Instrumentation Utilized Ref. Acceptable Alert Action Test Freo. I.D. No.(3) Range Req. Arc, Yalut Range Range Range Comments Parameter Speed NA NA NA NA NA NA NA NA Constant speed driver (N) inlet Pressure PI-8892 0-100 12% NA NA NA NA NA Qtr (Pi) psig Outlet PI-8473 0-4000 12% NA NA NA NA NA Pressure Qtr (Po) psig Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l .10APr NA (AP) FI-10121 0-80 12% Qr NA NA NA Flowrate is set at reference value Flowrate Qtr (Q) gpm Vib. Amp. (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA Qtr or >.325 in/s >.70 in/s (V)(4) Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

10 -3 Rev.0

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( O 3' SEAL VATER $ 3' i l@ 1 -120 - - U i 3' P MP RVST SEALS 3' @ l 8110

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RHT rt 3* L j g CVCS N REGENERATIVE HEAT N Fv Da0 G3D W 6 8111A H 1-1208-P6-001 POSITIVE DISPLACEMENT 3' 4 g3g ll2B _ CHARGING PUMP MCB 121 EXCHANGER IN FT 21 QMC HS FI MCB - 112C QMCB ' 8 2 273 485 g p3 12C y 018 7 8891 @4. LD CVCS

                                                   $3                    D            i    'M                         l                                        , 6'     O                           13 REACTOR                                                                          '

G ggg 4, 1-1208-P6-002 COOLANT PUMP RHT H SEALS MCB 1 g F CENTRIFUGAL 10118 CHARGING PUMP 471 J LRHT 'V F1 QMCB HST NOTE: THIS IS A SIMPLIFIED DIAGRAM HS 485 3' IUI I PI & 47I 8 USED TO DEPICT A TEST HV q 8473 274 PI MCB PI CIRCUIT. REFER TO THE 485 8892 0188 P&I.D. FOR DETAILS. j

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O 1-1208-P6-003 RHT CENTRIFUGAL H LV 012 4 71 112E CHARGING PUMP HV HV HS 803 803 1 G 508 4 71 FROM SIS BORON J LRHT MCB

                                                                                                        ,                                                                                     REFUELING INJECTION TANK                                              r,                     RVST                                                                VA TER 1-1204-V6-001                                                                                                                             STORAGE TANK

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                   '% I                                                                         's )                                                                            w 3'             SEAL VATER                                                                                 LC i  l         1           -120 - -

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CVCS 1-1208-P6-001 3' 4 112B REGENERATIVE ) ll DE} H POSITIVE DISPLACEMENT HS HEAT @ Fv G3D G23) BillA _._ CHARGING PUMP ll2B EXCHANGER g$ FT 121 MCB QMC HS MCB 0121 FI - 112C QMCB " 3485 g 8 72 273 pg y 018 7 4. LO 12C 8891 --{$RJ

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1-1208-P6-002 CDDLANT PUMP RHT 1 G FD CENTRIFUGAL H SEALS MCB . 471 J LRHT 10118 CHARGING PUMP FI QMCB HS V NOTE: THIS IS A HS 10121 112D SIMPLIFIED DIAGRAM 485 3, PI g3 4 71 8-USED TO DEPICT A TEST HV q 8473 274 pl PI MCB CIRCUIT. REFER TO THE 485 g 0188 P&I.D. FOR DETAILS. q I ili 8892 M-af " O I

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1-1208-P6-003 RHT 1012 CENTRIFUGAL H LV CHARGING PUMP 4 71 112E HV HV gy HS 803 803B-2 LRHT p 508 4 71 FROM SIS BORON J MCB REFUELING INJECTION TANK r, RVST VATER 1-1204-V6-001 STORAGE TANK uv. == e, o., ww - -m -m m. -s

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PUMP INSERVICE TESTING LOOP === - - - - iar av. FOR CENTRIFUGAL CHARGING PUMP 1-1208-P6-003 N/A N/A ISI-D- 222 1 IF 1 5

l BORIC ACID TRANSFER PUMPS l (1-1208-P6-006 & 007) System Function Provides boric acid to the CVCS for use in RCS inventory control and makeup to systems requiring reactor grade ) borated water. The boric acid transfer system also provides boric acid for emergency boration of the RCS. Quantity 2 Type Canned motor Manufacturer /Model Chempump Model GVH-1K Design Flowrate 75 gpm l Design Head 235 ft. l Driver

Type Electric motor kW 15.5 i Speed 3450 rpm

) Power Supply 4160V,60 Hz,3 phase Code Class 3 'O ! Project Class 313 Outline Drawing IX6AH02-45 j Instruction Book 2X6AA07-10 Physical Location Aux Bldg, Level D P&ID 1X4DB118 Surveillance Procedure 14811-1 Pump Test Loop Diagrams ISI-D-228& ISI-D-229 Test Parameter Sheets Page 11-2 & 11-3 O 11 - 1 Rev.0 4

Test Parameter Table - Pump 1-1208-P6-006 (Figure ISI-D-228) Instrumentation Utilized Ref. Acceptable Alert Action j Parameter Test Freq. I.D. NoJ3) Range Req. Acc. Value Range Range Range Commenh Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-10115 -15 to +15 2% NA NA NA NA Relief Request RR-P-1 (Pi) psig Outlet Pressure Qtr Pl-Oll3 0-160 12% NA NA NA NA NA i (Po) psig DilTer. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 er >l.10APr NA (AP) Flowrate Qtr FI-40001 0-100 t2% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (2) NA 15% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Nstes:

1. Differential pressure is calculated as, AP = Po - Pi
1. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing ho'ising and in the axial direction on each accessible thnist bearing housing.

11 - 2 Rev.0

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                                                           ~                                                                                                                                                        %./                                                                                                                                Q Test Parameter Table - Pump 1-1208-P6-007 (Figure ISI-D-229)

Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. I.D. NoJ3) Range Req. Acc. Value Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-10l l6 -15 to +15 12% NA NA NA NA Relief Request RR-P-1 (Pi) psig Outlet Pressure Qtr PI-0114 0-160 i2% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10aPr NA <.90 or >l.10APr NA (AP) Flowrate Qtr F1-40001 0-100 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration inst uments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shcft in two orthogonal directions on each accessible pump-bearing housing and in the axial s direction on each accessible thrust bearing housing.

11 - 3 Rev.0

f D V} (V V NOTE THIS IS A SIMPLIFIED DIAGRAM V USED TO DEPICT A TEST CIRCUIT. REFER TD 3 7 PLI.D. IX4DB118 FOR (x- Ann) jg DETAILS. FROM BRS RECYCLE LD LD TO BDRIC EVAPORATOR g ACID 2' X X

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1 e am e i BORIC ACID 000 TRANSFER PUMP i LC BORIC ACID l-1208-P6-007 2' a BORIC ACID FILTER BYPASS 2* STORAGE TANK SEE ISI-D-229 7' TD BORIC ACID BLENDER 1-1208-T4-003 O 3' FU,TURE DMCB

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I PP 113 011

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e S{ [ t SAMPLE 3] [G l-1 B 8-P6g06  ! TO UNIT 2 BORIC TRANSFER PUMP +

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                                                                                                                                               ==z                com m e eimari PUMP INSERVICE TESTING LOOP FOR                            r=ana    seaws.i -      ours arv.

BORIC ACID TRANSFER PUMP 1-1208-P6-005 N/A N/A ISI-D- 228 1 IF 1 3 ,

O O O NOTE THIS IS A v SIMPLIFIED DIAGRAM USED TO DEPICT A TEST CIRCUIT. REFER TD F PLI.D. IX4DBil8 FOR (X- 800) Jk DETAILS. FROM BRS RECYCLE LO LO 10 BORIC EVAPORATOR b, X X F ER GL"D GB7)

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                                                                                                                                                                                                                                                                              =X 1                                                e                  am                                                                                                                                        m I               BORIC ACID 000             TRANSFER PUMP                                                                                                                                                                                                           LC BORIC ACID                                            l-1208-P6-006                                                                                                                                                                                                  2*     n            BORIC ACID FILTER BYPASS _

STORAGE TANK SEE ISI-D-228 7' TO BORIC ACID BLENDER 1-1208-T4-003 O 3' FUTURE OMC y Jk eM'o I 3' PP 11 4 on . to 1i. 3'= X

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e e m 60~ GTA 3' S$ [ 5 G8a SAMPLE 3] [G 2:! l-th8-P6-007 B C TO UNIT 2 BORIC TRANSFER PUMP uv. se Y ACID TRANSFER PUMPS av oari mwanem mu === mu me mas ames a w-en* nac vs naza nst est i ist CVD _lJC i =-*-se ese we aesce rr esem VLV MB Se N3 mE 3 Southern Company Services, Inc.FOR Southern Nuclear Operating Company VOGTLE ELECTRIC GENERATING PLANT =*** * **= e UNIT 1 '"' ' " " ' " v5 EA1 am CENTDEAe De Isti PUMP INSERVICE TESTING LOOP FOR emana en.w =m meu =v. BORIC ACID TRANSFER PUMP 1-1208-P6-007 N/A N/A ISI-D- 229 1 IF 1 3

I i AFW Pumps (1-1302-P4-001,002 & 003) System Functior v ' Supply water to the steam generators whenever the reactor coolant temperature is above 350'F and the main feedwater system is not in operation, i.e., during startup, cooldown, or ' emergency conditions resulting in a loss of main feedwater. Automatically provides feedwater for the removal of reactor core decay heat following a loss of main feedwater. This prevents damage to the reactor core until the reactor coolant temperature is brought from a hot standby condition to the point at which RHR may be placed into i operation. AFW mpplies feedwater to the steam generators at a flowrate sufficient to support normal low-power transients l such as startup, cooldown, and hot standby. Turbine Driven AFW Pumo (1-1302-P4-001) l Quantity } Type Horizontal, centrifugal,5 stage, split-case

Manufacturer /Model Ingersoll-Rand, Model 6HMTA Capacity 1175 gpm Total Dynamic Head 3500 ft.

Driver Type Terry Turbine, Model GS-2N, non-condensing, single-stage, mechanical drive Horsepower 1603 Speed 4250 rpm Power Supply Steam Code Class 3 Project Class 313 Outline Drawing IX4AF03-83 Instruction Book IX4AF03-20033 12 - 1 Rev.O

Turbine Driven AFW Pumo (1-1302-P4-001)(conti Physical Location AFW pump house O P&ID ~ IX4DB161-2 Surveillance Procedure 14810-1 Pump Test Loop Diagrams ISI-D-223 Test Parameter Sheets Page 12-4 i I l l lO l l l i l l l l iO 12 - 2 Rev.0

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Motor-Driven AFW Pumos (1-1302-P4-002 & 003) Quantity 2 9~ Type - Horizontal, centrifugal, 6 stage, split-case i Manufacturer /Model Ingersoll-Rand, Model 4HMTB Design Flowrate 630 gpm Total Dynamic Head 3500 ft. Driver Type Westinghouse electric motor, LLD 5810 H l Horsepower 900 l Speed 3600 rpm Power Supply 4160V,60 Hz,3 phase l Code Class 3 Project Class 313 Outline Drawing IX4AF03-81 Instruction Book IX4AF03-20032 lO Physical Location AFW pump house P&tD IX4DB161-2 Surveillane Procedure 14807-1 1 l Pump Test Loop Diagrams ISI-D-224& ISI-D-225 j 1 ! Test Parameter Sheets Page 12-5 & 12-6

                                                                                                                                                       )

i d i i r I 12 - 3 Rev.0 l i

o o ' Test Parameter Table - Pump 1-1302-P4-001 (Figure ISI-D-223) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. I.D. NoJ3) Range Req. Arc. Yalue Range Range Range Comments ' i Speed l (N) Qtr SI-15109A 0-6000 12% Nr NA NA NA Speed is set to reference value Inlet Pressure Qtr PI-5110A 0-30 12% NA NA NA NA NA (Pi) psig t Outlet . Pressure Qtr PI-5107A 0-2000 12% NA NA NA NA NA ,  ! (Po) psi Differ. 1 Pressure Qtr NA(I) NA 2% APr .90 - 1.10APr NA <.90 or >l.10APr NA (AP) Flowrate Qtr F1-15100 0-200 12% Qr NA NA NA Flowrate is set at reference value , (Q) gpm Vib.  ; Amp. Qtr (2) NA i5% Vr 5 2.5Vr - > 2.5Vr - 6Vr >6Vr or NA i (V)(4) or >.325 in/s >.70in/s t Notes:  !

1. DifTeremial pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

12 - 4 Rev.0 -

r n (s) Test Parameter Table - Pump 1-1302-P4-002 (Figure ISI-D-224) Instrumentation Utilized Ref. Acceptable Alert Action l Earamcler Test Frea. I.D. No13) Range Ben. Arc. V_ sinc Range Range Range Comments t i Speed (N) NA NA NA NA NA NA NA NA Constant speed driver i Inlet Pressure Qtr PI-5128A 0-30 12% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr PI-5140A 0-2000 12% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr NA(1) NA i2% APr .90 - 1.10APr NA <.90 or >l.10APr NA (AP) , Flowrate Qtr F1-15101 0-200 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s  ! i Notes:

1. DifTerential pressure is calculated as, AP = Po - Pi  !
2. Portable vibration instruments are utilized. >
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.  !
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial  ;

direction on each accessible thrust bearing housing. 12 - 5 Rev.O f t t t

(N._/) O)

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L. 4* I CONDENSATE CONDENSATE TE 15 9 5106 'I STORAGE TANK STORAGE TANK 5175 FRON MAIN - I 1-1302-V4-002 1-1302-V4-001 sy NH NU g' (Opg) 0 15133 3g g3 QMCB M 5' I HV 5109 106A 5107 o-- J 3090 5110A

                                                                                                                       ~

MCB - 0 GMCB LD E i 6' N l I , GIT) 6 , HV AUX FEEDVATER TURBINE DRIVEN i b 3[-@O I HV 5113 dh 5093 PUM. P TURBINE 1-1302-P4-0DI-K01. TO ATMOSPHERE 1-130g-P4-001 FEEDVATER t' UMP FV N rd [. - NOTE: THIS IS A SIMPLIFIED DIAGRAM USED TO DEPICT A TEST I 10' Y MCB 5154 CIRCUIT. REFER TO THE ID M QMCB M140 G' r P&I.D. FOR DETAILS.

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HV 5093 " N NDE THIS IS A 1-hoY-P NkkOf X ti[ s_ _ If 5113 ATMOSPHERE TO FEEDVATE PUMP FV [- SIMPLIFIED DIAGRAM USED TO DEPICT A TEST 10, i MCB 5154 CIRCUIT. REFER TO THE OMCB H ^

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PUMP INSERVICE TESTING LOOP FOR AUXILLARY FEEDVATER PUMP

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HV 15133 gg gg -DMCB 'M 2.5'!! . 5109 106A 5107 o-- 5090 5110A MCB - J GMCB /, R ru l LO 0% , i 6' i  ; a 'N am e ' HV AUX FEEDVATER TURBINE DRIVEN b b 3[-@0 M 5113 HV 5093 PUMP TURBIN 1-1302-P4-001 E K01'TD ATMOSPHERE l-1302-P4-001 FEKD RUMP ATER ry N (V [- NGTO THIS IS A SIMPLIFIED DIAGRAM USED TO DEPICT A TEST I p

                                                                                               @              GMCB 130A M140                                                 7' r mj AMMONIA &

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HV l S' QMC 3 QMC HS pg ,2' - 5092--S 5095 HV 5129 131A 5141A (l 0 s U 6 O_ HV LO j{ 1- 02-P4-003 5119 AUX g, @ s 8, FEEDVATER PUMP "v- we ,, .., MSCRIPTEBe O S 4 4-94 g;g 4M4 TV I6 B

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PUMP INSERVICE TESTING LOOP . .au. $$ oui uv. FOR AuxlLLARY FEEDVATER PUMP 1-1302-P4-003 N/A N/A ISI 225 1T1 2

l ESF Pumps \ i (1-1592-P7-001, & 002) O System Function

                                                  ~

Durmg normal operation, the ESF chilled-water system is in l i standby mode; it is activated during emergency conditions upon receipt of a safety injection signal, containment ventilation isolation, or control room isolation signal. The ESF chilled-water system serves air handling units located in the safety-related areas of the plant to ensure the integrity of the cooling system during plant emergency l situation. ' l l Quantity 2 1 Type Centrifugal Manufacturer Goulds Capacity 600 gpm Total Dynamic Head 125 ft. Driver . l Type Westinghouse electric motor i Horsepower 30 iO sPeea Power Supply tioo rP-480V,60 Hz,3 phase l Code Class 3 Project Class 313 Outline Drawing IX4AJ05-27 Instmetion Book AX4AJ05-86 Physical Location Control Bldg, EL 260 ft., Rooms R-313 & R320 i P&ID IX4DB221 l Surveillance Procedure 14809-1 l Pump Test Loop Diagrams ISI-D-226 & ISI-D-227 l Test Parameter Sheets Page 13-2 & 13-3 i l4 13 - 1 Rev.0

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i Test Parameter Table - Pump I-1592-P7-001 (Figure ISI-D-226) Instrumentation Utilized Ref. Acceptable Alert Action  ; Parameter Test Frea. LD. No.(3) Bange Req. Ace. Value Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver , i Inlet Pressure Qtr PI-22410 0-30 12% NA NA NA NA NA , (Pi) psig r Outlet , Pressure Qtr PI-22414 0-200 12% NA NA NA NA NA i (Po) psig i Differ. Pressure Qtr NA(1) NA 2% APr .90 - 1.10APr NA <.90 or >l.10APr NA

  • k (AP) i Flowrate Qtr FI-22425 0-750 12% Qr NA NA NA Flowrate is set at reference value gpm i (Q)

I Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s . l Notes: r 6

1. Differential pressure is calculated as, AP = Po - Pi r
2. Portable vibration instruments are utilized.  !
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.  ;
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial  !

direction on each accessible thrust bearing housing. f 13 - 2 Rev.0 j l , i i I i I

s i Test Parameter Table - Pump 1-1592-P7-002 (Figure ISI-D-227) Instrumentation Utilized Ref. Acceptable Alert Action Test Freq. I.D. No.(3) Range Reg. Acc. Value Range Rance Range Comments Parameter Speed NA NA NA NA NA NA NA NA Constant speed driver (N) Inlet PI-22411 0-30 i2% NA NA NA NA NA Pressure Qtr (Pi) psig Outlet Pressure PI-22415 0-200 12% NA NA NA NA NA Qtr (Po) psig Differ. Pressure Qtr NA(1) NA i2% APr .90 - 1.10APr NA <.90 or >l.10APr NA (AP) Flowrate Qtr FI-22426 0-750 i2% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr- 6Vr >6Vror NA ! or >.325 in/s >.70 in/s (V)(4) Notes:

1. DifTerential pressu.~ is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

13 - 3 Rev.0

( J' v V NOTE 1. THIS IS A SIMPLIFIED EXPANSION DIAGRAM USED TO DEPICT TANK HVC A TEST CIRCUIT. REFER S 1-1592-T7-001 TO THE P8.ID FOR 2240 IP2412 DETAILS. 2240 C I, ( IA

2. VALVE INTERNALS REMOVED PER DCP
                                                                           }                                                                                                  pO .                                                                                               90-VIN 0067-0-1 f

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N l EVAP. l M @ CB ESF CHILLER ' k ATER h, I' r LC 2" 6' n 5 odL 1P CB ESF CHILLED VATER PUMP 1-1592-C 7-001-000 HV 1-1592-P7-001-000 240 PROJ. CLASS 313 10' , i t 10* 10'

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_ TRAIN 'A' 6' CDOLING COILS =~. == s, . === rs= -u w., . . -s - 9 +H BW WS I3$tES FIR PST I we+=  : ews woms a u.saans arv n - JC E i7 . C ,,1" ' Southern Company Services. Inc.FOR Southern Nuclear Operating Company VDGTLE ELECTRIC GENERATING PLANT ==* " = *a UNIT I '"* o=* vs PUMP INSERVICE TESTING LOOP FOR CB ESF CHILLED WeiCo PUMP

                                                                                                                                                                                                                                    ".                                                $ $ 2 '          ,,    .

TRAIN 'A' 1-1592-F 7-001-000 N/A N/A ISI-D- 226 1 IT I 3

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l NOTE: 1. THIS IS A SIMPLIFIED EXPANSION DIAGRAM USED TO DEPICT TANK A TEST CIRCUIT. REFER ' S 1-1592-T7-002 HVC TO THE P8.ID FOR 2240 2413 DETAILS. C 2. VALVE INTERNALS l' 22401 REMOVED PER DCP CHEMICAL 90-VIN 0067-0-I j {n g FEED PDT. pg f D , N 7' CHEMICAL FEED PDT. SDB TI 243 FI

                                                                                                                                                                                           ' 242 s h mn.                            1 C9                                                    ,,             ,,

G G PI 22 1 h P 44 d 1 22411 &L M, 1/2" LC #1 "N N sm I IEVAP. l 6 (2U7) CB ESF CHILLED hkh" VATER

                                                                                                                                                                        ~ ~          ~

1- 2' 6* m CB ESF CHILLED

                             )(                                                            [P                    VATER PUMP LC                                                   HV       3 dk 1-1592-P7-002-000 L1                   240                         PROJ. CLASS 313 10'                                                                                                                                          ' '

I ' 10 Y 10'h D b* 6* TRAIN "B. COOLING COILS Ev. SAM BT Det*3 M EWIPYE3e apetJ mPpg3 APPt3 appts appt 3 h3 a 7-** == evs urn.ns = in ams arv is _ _C M .,v NS "(( 7 ' Southern Company Services, Inc. FOR Southern Nucisar Operating Cornpany VDGTLE ELECTRIC GENERATING PLANT ==* " 5"' "58 UNIT 1 '"' ""' v5 nau amneens a man PUMP INSERVICE TESTING LOOP ua v .a. = v. FOR CB ESF CHILLED VATER PUMP TRAIN 'B' 1-1592-P7-002-000 N/A N/A ISI-D- 227 I IT I 3

O O O , I t VEGP-2 PUMP TEST TABLE , i Nucle:.r Service Cooling Water - System 1202 LD. Number Measured Per--- :- . A Fr-v ' CC/PC PalD-Sheet No. Coord. g _ Der 8ation h Q y. E RIVRemuth (asial (mull (aniel ikksi taunl 2-1202-P4-001 3D13 2X4DB113-1 C-8 NSCW Pump Q1R QTR Q1R QIR NA RR-P-2 2-1202-P4-002 3D13 2X4DB133-2 C-8 NSCW Pump QTR Q1R QTR QTR NA RR-P-2 2-1202-P4-003 3S13 2X4DB133-1 C-5 NSCW Pump QTR QTR Q1R QTR NA ~ RR-P-2 2-1202-P4-004 3 S 13 2X4DB133-2 C-5 NSCW Pump Q1R QTR QIR Q1R NA RR-P-2 2-1202-P4-005 3B13 2X4DB133-1 C-7 NSCW Pump QTR QTR QTR QTR NA RR-P-2 i 2-1202-P4 006 3813 2X4DB133-2 C-7 NSCW Pump Q1R Q1R Q1R QTR NA RR-P-2 2-1202-P4@7 3013 2X4DB133-1 C4 NSCW Transfer Pump Q1R Q1R QTR QIR NA RR-P-2  ! 2-1202-P4-008 3B13 2X4DB133-2 C-6 NSCWTransfer Pump 4 QTR QIR QTR QTR NA RR-P-2 . t t Test Frequency: QTR= Quarterly Pump Test l i

                                                                                                                                                                                                                                                                                                                                                                                                                                                                          \

r 4 14 - 1 Rev.0 u _ _ _ _ _ _ _ _ _ . . _ _ _ _ _ _ . _ _ . _ . ...-m..-___m.a __-__ . - , * - . _ _ _ _ _ _ ._ _ _ _ _ _ . _ - . _ _ _ ______--s --_ _ _ _ __-,-=.-%

  • S ++--wa e-
 . . _ . .-    ~ . .    .  . . .    . _ _ . - . . . .- - - . . . . .        - . .           - . . . . . -                         _ .        ..-. - _..-... -            .

O O O VEGP-2 PUMP TEST TABLE Component Cooling Water- System 1203 Measured Parameters & Freemency LD. Number CC/PC P&ID-Sheet No. Coord, Description V Bt AE Q N RR/ Remarks i (a!ial fa 0 faunl Gaksl framil 2-1203-P4-001 3/313 2X4DB136 G-4 CCW Pump QTR QTR QTR QTR NA RR-P-2 2-1203-P4-002 3/313 2X4DB136 D-4 CCW Pump QTR QTR QTR QTR NA RR-P-2 2-1203-P4-003 3/313 2X4DB136 G-4 CCW Pump QTR QTR QTR QTR NA RR-P-2 2-1203-P4-004 3/313 2X4DB136 C-4 CCW Pump QTR QTR QTR QTR NA RR-P-2 2-1203-P4-005 3/313 2X4DB136 F-4 CCW Pump QTR QTR QTR QTR NA RR-P-2 2-1203-P4-006 3/313 2X4DB136 B-4 CCW Pump ' QTR QTR QTR QTR NA RR-P-2 Test Freepsency: QTR = Qua.terly Pump Test 14 - 2 Rev.0

VEGP-2 PUMP TEST TABLE  ; Safety Injection - System 1204 Measured Parameters & Freenesev LD. NTmber ((JPC PAID-Sbret No. Coord. Description h AP Q V _N_ RR/ Remarks i (asis) (s!Q (sand hi fouel b 2-1204-P6@3 2/212 2X4DB121 E-3 SI Pump QTR QTR QTR QTR NA RR-P-2 2-1204-P6-004 2/212 2X4DB121 C-3 SI Pump QTR QTR QTR QTR NA RR-P-2 i Test Frequency: QTR = Quarterly Pump Test  ! l t I i 14 - 3 Rev.0

O O O VEGP-2 PUMP TEST TABLE Residual Heat Removal- System 1205 Measured Parameters & Freemency LD. Number CC/PC P&ID-Sheet No. Coord. Description to AE Q E N. RR/ Remarks (adal fa!!! (smal Gaksi Ltund 2-1205-P6@l 2/212 2X4DB122 G-4 RHR Pump QTR QTR QTR QTR NA RR-P-2 2-1205-P6 @ 2 2/212 2X4DB122 D-4 RHR Pump QTR QTR QTR QTR NA RR-P-2 i Test Frequency: QTR = Quarterly Pump Test 14 - 4 Rev.0

O O O VEGP-2 PUMP TEST TABLE Contstment Spray - System 1206 , Measured Parnaseters & Freemency LS. N aber CQ/PC P&ID-Sheet No. Coord. Description Po R _Q V N RR/ Remarks (esial (e!!1 (and (W=c) (mal 1 2-12 % % 001 2/212 2X4DB131 G-4 CS Pump QTR NA QTR QTR QTR RR-P-2  ! 2-12%P6-002 2/212 2X4DB131 C-4 CS Pump QTR QTR NA RR-P-2 QTR QTR , Test Frequency: QTR = Quarterly Pump Test t r i l i i 14 - 5 Rev.0 > _ _ _ _ __ _ _ _ _ _ _____.__________.__________m_ __.. _ _ _ _ . _ . _ _ _ _ _ _ . _ _ _ _ _ _ . _

O O O VEGP-2 PUMP TEST TABLE Chemical & Volume Control- System 1208 Measured Parameters & Freemency LD. Number CC/PC P&ID-Sheet No. Coord. Description Po AE Q V- E RR/ Remarks fa!!al fasil (sanal (Wwel Qaud 2-1208-P6-002 2/212 2X4DBII6-2 G-4 CVCS Centnfugal QTR QTR QTR QTR NA RR-P-2 , Charging Pump s 1 2-1208-P6403 2/212 2X4DBII6-2 C-4 CVCS Centrifugal QTR QTR QTR. QTR NA RR-P-2 Charging Pump 2-1208-P6-006 3/313 2X4DBil8 D-4 CVCS Boric Acid QTR QTR QTR QTR NA RR-P-1, RR-P-2 - Transfer Pump 2-1208-P6407 3/313 2X4DBil8 B-4 CVCS Boric Acid QTR QTR QTR QTR NA R. P-1, RR-P-2 Transfer Pump Test Frequency: QTR = Quarterly Pump Test I 14 - 6 Rev.O "

O O O i VEGP-2 PUMP TEST TABLE i Armili;ry Feedwater -System 1302 i Measured Parameters & Freemency

  • LD. Number CC/PC P&ID-Sheet No. Coord. Descdotion Po R Q V N RR/ Remarks fadal te!Q fand (W=) trustl  ;

2-1302-P4-001 3/313 2X4DB161-2 F-6 AFW Pump QTR QTR QTR Q1R NA RR-P-2 I Turbine Driven < t 2-1302-P4-002 3/313 2X4DB161-2 D-6 AFW Pump Q1R Q1R Q1R Q1R NA RR-P-2 ) Motor Driven 2-1302-P4-003 D 3 2X4DB161-2 B-6 AFW Pump Q1R QTR NA RR-P-2 QTR Q1R Motor Driven i i I Test Frequency: QTR = Quarterly Pump Test  : i f i t 14 - 7 Rev.0

[ VEGP-2 PUMP TEST TABLE Sdety Related (ESF) Chillers - Systens 1592 Measured Parameters & Frea=*=ev LD. Number CC/PQ P&ID-Sheet No. Coord. Descdotion Po AE Q V N RR/ Remarks (eds! (ann (cral h) Its!n1 2-1592-P7-001 3/313 2X4DB221 F-5 ESF Chilled Water QTR QTR QTR QTR NA RR-P-2 Pump 2-1592-P7 002 3/313 2X4DB221 C-5 ESF Chilled Water QTR Q1R QTR QTR NA RR-P-2 i Pump Test Frequency: QTR = Quarterly Pump Test t i l i 14 - 8 Rev.0

j- NSCW Pumps i (2-1202-P4-001, 002, 003, 004, 005, & 006) i r System Function Provide cooling water for the containment coolers, control building essential chiller condensers, various engineered safety feature pump motor and lube oil coolers, and the component cooling water and auxiliary component cooling water diesel generator jacket water heat exchangers and transfers the heat removed to the ultimate heat sink. Quantity 6 Type Vertical Line Shaft,2 stage, selflubricated Manufacturer /Model BinghamMdlamette/18x27B VCM Rated Capacity 8600 gpm (each) Rated TotalDynamic Head 230 feet Driver Type Electric Motor Horsepower 700 Speed 1180 rpm Power Supply O 4160V,60 Hz,3 phase Code Class 3 Project Class 313 Outline Drawing 2X4AF02-33 i Instmetion Book 2X4AF02-94 Physical Location NSCW Pump House P&ID 2X4DB133-1, -2 Surveillance Procedure 14802-2 Pump Test Loop Diagrams ISI-D-250 through ISI-D-255  ! 1 Test Parameter Sheets Page 15-3 through 15-8 O 15 - 1 Rev.O

NSCW Transfer Pumps j (2-1202-P4-007, 008) { i System Function Provides capability to transfer water between cooling tower )

basins.

J l Quantity 2 j Type Vertical Line Shaft,2 stage, selflubricated i Manufacturer /Model Bingham-Willamette/18x12A VCM Rated Capacity 600 gpm (each) l Rated Total Dynamic Head 110 feet Driver

Type Electric Motor Horsepower j 30 j

Speed 1765 rpm i Power Supply 480V,60 Hz,3 phase

l
Code Class 3

{p

  • Project Class 313 s j I

I Outline Drawing 2X4AF02-136 i i Instruction Book 2X4AF02-96

Physical Location NSCW Pump House i

P&ID 2X4DB133-1, -2 . i i l Surveillance Procedure 14801-2 , Pump Test Loop Diagrams ISI-D-256 and ISI-D-257 Test Parameter Sheet Page 15-9 and 15-10 0 15 - 2 Rev.0

O O 3 Test Parameter Table - Pump 2-1202-P4-001 (Figure ISI-D-250) ~ Instrumentation Utilized Ref. Acceptable Alert Action Earameter Test Frea. I.D. NoJ4) Range Req Acc. Value RanFe Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet-Pressure Qtr LI-1606 NA (1) NA NA NA NA Measure basin level (Pi) Outlet Pressure Qtr PI-2148 0-200 12% NA NA NA NA NA i (Po) psig DifTer-Pressure Qtr (2) NA i2% APr .95 - 1.10APr .93 - <.95APr <.93 or >l.10APr NA (AP) Flowrate Qtr FI-l 1760 0-15000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (3) NA 15% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA ' (V)(5) or >.325 in/s >.70 in/s i Notes: i

1. Basin level indicator is utilized to determine level in feet.
2. Differential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized.  ;
4. At the discretion of SNC, instrumentation other than that listed, w hich meets the requirements of the OM Code, may be utilized for measuring test parameters. ,
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction. j i

15 - 3 Rev.0  ! i r

O O O i Test Parameter Table - Pump 2-1202-P4-002 (Figure ISI-D-251) Instrumentation Utilized Ref. Acceptable Alert Action Parameicr Test Frea, I.D. No14) Range Reo. Acc. Value Range Range Range Cnements Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr LI-1607 NA (1) NA NA NA NA Measure basin level (Pi) l Outlet > Pressure Qtr PI-2149 0-200 12% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr (2) NA i2% APr .95 - 1.10APr .93 <.95APr <.93 or >l.10APr NA (AP)  ; Flowrate Qtr FI-I 1763 0-15000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (3) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA t (V)(5) or >.325 in/s >.70 in/s Notes:

1. Basin level indicator is utilized to determine level in feet.
2. Differential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized.
4. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction.

i 15 - 4 Rev.0 i

O O O Test Parameter Table - Pump 2-1202-P4-003 (Figure ISI-D-252)  ! Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Frea. I.D. No.(4) Range Rea. Acc. Value Ranee Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet , Pressure Qtr LI-1606 NA (1) NA NA. NA NA Measure basin level (Pi) Outlet Pressure Qtr PI-2152 0-200 12% NA NA NA NA NA . (Po) psig Differ.  ; Pressure Qtr (2) NA 2% APr .95 - 1.10APr .93 <.95APr <.93 or >l.10APr NA (AP) . Flowrate Qtr FI-I1762 0-15000 12% Qr NA NA -NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (3) NA i5% Vr 5; 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(5) or >.325 in/s >.70 in/s Notes:

1. Basin level indicator is utilized to determine level in feet.
2. Differential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized.
4. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.  !
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction.

15- 5 Rev.0

                                                                                                                                                                                        .I

O O O Test Parameter Table - Pump 2-1202-P4-004 (Figure ISI-D-253) Instrumentation Utilized Ref. Acceptable Alert Action Parametgr Test Freq. I.D. No14) Range Reo. Acc. Value Bange Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr LI-1607 NA (1) NA NA NA NA Measure basin level (Pi) Outlet Pressure Qtr PI-2153 0-200 12% NA NA NA NA NA , (Po) psig Differ. Pressure Qtr (2) NA i2% APr .95 - 1.10APr .93 - <.95APr <.93 or >l.10APr NA (AP) Flowrate Qtr FI-l 1765 0-15000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (3) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(5) or >.325 in/s >.70 in/s Notes:

1. Basin level indicator is utilized to determine level in feet.
2. Differential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized.
4. At the discretion of SNC, instmmentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction.

15 - 6 Rev.0

(3  % G , Test Parameter Table - Pump 2-1202-P4-005 (Figure ISI-D-254) Instrumentation U83H=d Ref. Acceptable Alert Action Paramelgt Test Frea. LD. No.(4) Bange Erg. Acc. Yalue Range Ranee Bangt Comments  ! Speed (N) NA NA NA NA NA NA NA NA Constant speed driver  ; i Inlet Pressure Qtr LI-1606 NA (1) NA NA. NA NA Measure basin level (Pi) Outlet l Pressure Qtr PI-2150 0-200 12% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr (2) NA 12% APr .95 - 1.10APr .93 - <.95APr <.93 or >l.10APr NA j i (AP) L Flowrate Qtr F1-11761 0-15000 i2% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (3) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(5) or >.325 in/s >.70 in/s t N:tes: I. Basin level indicator is utilized to determine level in feet.

2. Differentishressure is calculated using basin level (to determine suction head) and outlet pressure.  ;
3. Portal % vibrmbn instruments are utilized. ,
4. At '.ne discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction.

15 - 7 Rev.0 _ . - . . . - - _ . - . _ . _ _ _ - - _ . - - _ _ _ - _ - - - . . . - _ . - - - _ - - - _ - _-----_--.--_s . - - _- c w~

O Test Parameter Table - Pump 2-1202-P4-006 (Figure ISI-D-255) Instrumentation Utilized Ref. Acceptable Alert Action  ; Parameter Test Freq. I.D. NoJ4) Range Req. Acc. Value Range Range Pange Comments 4 Speed t (N) NA NA NA NA NA NA NA NA Constant speed driver inlet Pressure Qtr LI-1607 NA (1) NA NA NA NA Measure basin level (Pi) , i Outlet Pressure Qtr PI-2151 0-200 12% NA NA NA NA NA i , (Po) psig Differ. Pressure Qtr (2) NA i2% APr .95 - 1.10APr .93 - <.95APr <.93 or >l.10APr NA (AP) Flowrate Qtr FI-I1764 0-15000 12% Qr NA NA NA Flowrate is set at reference value , (Q) gpm Vib. Amp. Qtr (3) NA i5%. Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(5) or >.325 in/s >.70 in/s Notes:

1. Basin level indicator is utilized to determine level in feet.
2. Differential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized.
4. At the discretion of SNC, instrumentation other than that listed, u hich meets the requirements of the OM Code, may be utilized for measuring test parameters.
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one ofwhich is the axial direction.

i t 15 - 8 Rev.O

                                                                                                                                                                                                                                                                                                    \
                                                                                                                                                  -                                                                                                        -  +    -_                 ,   , - . + n

O F O ' Test Parameter Table - Pump 2-1202-P4-007 (Figure ISI-D-256)  ; Instrumentation Utilized Ref. Acceptable Alert Action  ! Parameter Test Frea. I.D. No.f41 Bange Rea. Acc. Yalue Rasse Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver inlet Pressure Qtr LI-1606 NA (1) NA NA M *_ NA Measure basin level (Pi) Outlet  ! Pressure Qtr PI-2154 0-100 12% NA NA NA NA NA . (Po) psig i Differ. Pressure Qtr (2) NA 2% APr .95 - 1.10APr .93 <.95APr <.93 or >l.10APr NA (AP) Flowrate Qtr F1-2156 0-1000 12% Qr NA NA NA Flowrate is set at reference value , (Q) gpm , Vib. Amp. Qtr (3) NA 15% Vr s; 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(5) or >.325 in/s >.70 in/s N:tes: , i

1. Basin level indicator is utilized to determine level in feet. '
2. DifTerential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized.
4. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.  ;
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction.

15 - 9 Rev.0 T

_ _ _ _ _ _ ~ . . - . . . . _ _ _ _ _ _ _ _ _ _ _ - _ - _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ __ - __-_-__ - - _ __- _____ _ - _ _ _- _ - - _ -- ---_ _ _ _ ____--__-_-_ _ ___-__ _ _ _ - O O Test Parameter Table - Pump 2-1202-P4-008 (Figure ISI-D-257)  ! Instrumentation Utilized Ref. Acceptable Alert Action i Paramet-r Test Freq. I.D. No.f 4) RanFe Req. Ash Yalu Range Ranee Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver l Inlet  ; Pressure Qtr L1-1607 NA (1) NA NA NA NA Measure basin level  ; (Pi) Outlet Pressure Qtr PI-2155 0-100 12% NA NA NA NA NA i (Po) psig Differ. t Pressure Qtr (2) NA i2% APr .95 - 1.10.1Pr .93 <.95APr <.93 or >l.103Pr NA l (AP) Flowrate Qtr FI-2157 0-1000 12% Qr NA NA NA Flowrate is set at reference value l (Q) gpm Vib. Amp. Qtr (3) NA 5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(5) or >.325 in/s >.70 in/s Notes:

1. Basin level indicator is utilized to determine level in feet.
2. Differential pressure is calculated using basin level (to determine suction head) and outlet pressure.
3. Portable vibration instruments are utilized.
4. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.  ;
5. Measurements are taken on the upper motor-bearing housing in three orthogonal directions, one of which is the axial direction.

15 - 10 Rev.O L _ ._. _ . -

                                                                                                                                                                                                                                                                  -                             .--l

O O O NOTE THIS IA A SIMPLIFIED DIAGRAM CV USED TO DEPICT A TEST CIRCUIT. N 9446 M[><]H/' ACID ADDITION REFER TO P&lD FOR DETAILS. (155) (040) N BLIND FLANGE h 142 FC OVDOVN

                                                                                                                                                                                                                           /     I X

7 ) ylSPERSANT ADDITION s  ! 3' '048) yy y a4- 4' h 18' S QMCB g DMCB g DMCB [6' 1602A 1608A 1634 18' 18" I g l , 11760 l - l 11761 l 11762 l _ 1668 NSCVS 24 . COMPONENTS PDI PI ,l l PDI PI PDI PI > 11726 2148 11727 2150 11729 2152 g HV II b '" 1668B 4;rll QKB -iluri! ' ll -ilarll  := N U / LIT N O N O 1606 HV HV HV 1160 1160-11600 18'

                                                                                                                                                                                                                                     , TO TGVER                                                   ,   TO BASIN N                                     Ah                                                                                                                  '    -                                          L
                                           /~\                                                                                                                /           \                                         / \                                                                                                     '

2-1202-P4-001 2-1202-P4-005 2-1202-P4-003 TRAIN 'A' NUCLEAR SERVICE NUCLEAR SERVICE NUCLEAR SERVICE 2-1202-V4-001 ' COOLING VATER PUMP COOLING VATER PUMP COOLING VATER PUMP NUCLEAR SERVICE COOLING VATER LOVER i (SPARE)

       ,,         ,c       ,,   c,                                                ust.m.                                                     -i           -,      ma            -.    -s     m-s
       .        me        ass   vi      unea m                                                                                              77 s-a-se    as    ets     ursarts in arv e. y enesm32-t                                                                      77C
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                                                                                                                                                                                                                                   '""                                                            " " ' v5 UNIT 2                                                                                              "

PUMP INSERVICE TESTING LOOP FOR " ,,an . $."d i., .t NUCLEAR SERVICE COOLING VATER PUMP 2-1202-P4-001 N/A N/A ISI-D- 250 10F 1 2

O O O  ! NOTE: THIS IA A SIMPLIFIED DIAGRAM CV USED TO DEPICT A TEST CIRCUIT. 9447 MC)<]l

                                                                                                                                                                                                                                                                                                 '                    l'/pCID ADDITION (049):

REFER TO THE P8,ID FOR DETAILS. TE g TO @F Hl (077) lM BLIND FLANGE

                                                                                                                                                                     - 1643                                                                          FC                BLOVDOVN                           g          g
                                                                                                                                                                                                                                                                                                 ,      1             ,

ISPERSANT ADDITION 7' (168) (079) (078) 3* S (050) yyy > p h h h I6' OMCB QMCB QMCB 3 18' H 1603A 1609A 1635 j 18' W g I g ' l 11763 b l 11764 - l 11765 - u 1g = p; -=p 1669 g g g NSCVS

                                                                                                                                                                                                                                                                  ~ "
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                                             ,,                                                                                                                                                                                        n                                                     y,                   ,       ,          24 . COMPONENTS PDI        PI                                                                                                                                 PDI                                  PI                                                               PDI    PI                          .l 11730 2149                                                                                                                                11731                               2151                                                                  11733 2153 k               b                                                                                                                                                                              1669B
                -Od:                   ' ::                                 OntB                                       -91l                                                                                      ' ::                                             -- vl!              ' ll                                      :

N O FLIT NO NO ' I1607 ) HV HV HV j 11612 11613 11607 18'

                                                                                                                                                                                                                                                                                                             , TD TOVER                TO BASIN M.AMML                                                                                                                                                                                                                                                                            GMM                                                         ,
                                          /~\                                                                                                                                                                                /~\                                                           /\

2-1202-P4-002 2-1202-P4-006 2-1202-P4-004 TRAIN *B* ' NUCLEAR SERVICE NUCLEAR SERVICE NUCLEAR SERVICE 2-1202-V4-002 COOLING VATER PUMP CDOLING VATER PUMP COOLING VATER PUMP NUCLEAR SERVICE COOLING (SPARE) VATER TOVER

  =,               ,r      ,    c,r.                                                             unwere.                                                                                    n iu                   -m e                   -2      .m. m.s       mismas
   ,             ,-,-           vi       risw. r= est                                                                                                                                         "

1 .-26-gp sits eL 3 LF3nft 10 KV 19 (F 2W.9H3H JK r e-e -= ma' === ia aca"3 # Southern Company Services. Inc.FOR Southern Nuclear Operoling Company i

                                                                                                                                                                                                                                                                                                                 "                   saawa  =c VOGTLE ELECTRIC GENERATING PLANT K58"'   '**                      "N"     vs UNIT 2 PUMP INSERVICE TESTING LOOP FOR                 " ,imma            "E C          our av.

NUCLEAR SERVICE COOLING VATER PUMP 2-1202-P4-002 N/A N/A ISI-D- 251 171 2

O O O NOTD THIS IA A SIMPLIFIED DIAGRAM CV USED TO DEPICT A TEST CIRCUIT. REFER TO THE P8.ID FOR DETAILS. O 9446 MD<]l

                                                                                                                                                                                                                                                                                         '                                   lMpCID ADDITION (040) (D743                                 BLIND FLANGE TE g                                                         TO                                                                                    @ 2* ;g; ;g FC                                                BLOVDOVN
                                                                                                      - 1642 g1 y                                  g       nISPERSANT ADDITION
                                                                                                                                         >'                                                                                                                                     (156)                      (076)             QZ5) 3' L018.)                               Uyy 24*                                        j[                                                                                                                                                                                                          24*

j[ j QMCB QMCB QMCB 16* 18 1602A 1608A 1634 18' 18' g  ; , 11760 . j 11761  !!762 l l l 1 1r Ig 1668

                                                                                                                                                                           ~~"

NSCVS O ,l

                                                                                                                                                                                                                                                                                                                                ,          24 COMPONENTS g

PDI 11726 214 8 PI PDI 11727 2150 PI PDI 11729 2152 PI { i b '" 1668B

                   -ligg:                 ' !l                          g                      :gg:

HV

                                                                                                                                                                                     -igg:                              ' ::

HV '1606 I HV 11600 ( j 116)0 1160 = 18*

                                                                                                                                                                                                                                                                                                              ,TO TOVER                                TO BASIN N_AhAh&NA                                                                                                                                                                                                                                         L
                                             /~\                                                                      / \                                                                                                                    / \

2-1202-P4-001 2-1202-P4-005 2-1202-P4-003 TRAIN *A* NUCLEAR SERVICE NUCLEAR SERVICE NUCLEAR SERVICE 2-1202-V4-001 COOLING VATER PUMP CDDLING VATER PUMP CDOLING VATER PUMP NUCLEAR SERVICE COOLING (SPARE) VATER TOVER

       =v            ,c      ,,   em                                                ust.ieram                  i      e   ar 3           . m                                  sio.uins
        .          w.-      er.:  vs        issure r, en                                                    n                                                                                                                                                                                                                                                                            s t          1-PSM    Wss   WL S     LPD.TED TD KV as IF SI400t23-1                                   JK
        '          ~        "              " ' " * " ' ' * " '

Southern Company Services, Inc.FOR Southern Ptuelear Operating Company K5= * " 'aava '=c V0GTLE ELECTRIC GENERATING PLANT UNIT 2 "t' mu' vs

                                                                                                                                                                                                                                                                                                               ' ~

PUMP INSERVICE TESTING LOOP FOR ua 5."$ C" m, ,cy. I NUCLEAR SERVICE COOLING VATER PUMP 2-1202-P4-003 N/A N/A ISI-D- 252 10F 1 2

O O O NOTD THIS IA A SIMPLIFIED DIAGRAM CV i i USED TO DEPICT A TEST CIRCUIT. 9447 / 1*lNr i li/pCID ADDITION REFER TO THE P&ID FOR DETAILS. (049F (677) BLIND FLANGE TE D FC TO BLDVDOVN FlNl g lig  ;

                                                                    - 1643                                                                      I f

i X ylSPERSANT ADDITION s 8 Q6_8) (079) (6T8) 3' >{ (050) ]fy 1f 24' g 24' g j ' QMCB l6' 18 OMCB 3 OMCB H [ 1603A 1609A 1635 18" 18' g g l 11763 l .j 11764 l . j 11765 m o V 1669 a NSCVS

      ~~- "                                                                                              ~~*

n M" 24 COMPONENTS v , PDI PI PDI PI PDI PI d 11730 214 9 11731 2151 g 11733 2153 , g b 1669B ,

        -il>rll              ' ll            OtiCB         -H>rll              ' ll                          --{>rll                                                      ::

NO [ LIT NO NO I1607I HV HV HV (j 11612 11613 =: . 11607 18' '

                                                                                                                                                    , . TO TOVER            ,   TO BASIN MJM                                                                              A-                                              GMM
                                /~\                                                 /~\                                             /~\

2-1202-P4-002 2-1202-P4-006 2-1202-P4-004 TRAIN *B'

  • NUCLEAR SERVICE NUCLEAR SERVICE NUCLEAR SERVICE 2-1202-V4-002 COOLING VATER PUMP CDOLING VATER PUMP COOLING VATER PUMP NUCLEAR SERVICE COOLING (SPARD VATER TOVER  ;

=v. == s, o, usawin. meu me n.u nm. 6 -s suomrs . *w ass vi issues rar m n  ! i i-a-se ses at e emn in arv i, or emum a Southern Company Services, Inc.FOR Southern Nuclear Operating Company VDGTLE ELECTRIC GENERATING PLANT '""" * * " == '"e

                                                                                                                                                                           ""' v5                       '

UNIT 2 " PUMP INSERVICE TESTING LOOP FOR muta C" u .y. NUCLEAR SERVICE COOLING VATER PUMP 2-1202-P4-004 N/A N/A ISI-D- 253 1 [F 1 2

O O O NOTE: THIS IA A SIMPLIFIED DIAGRAM CV USED TD DEPICT A TEST CIRCUIT. ' 9446 REFER TO THE PLID FOR DETAILS. (047} ' 4M[><]' g"MCID ADDITION TE D - TO 2' ;g;  ;,g h 1642 FC BLOVDOVN

                                                                                                                                                 '/

I X '/ nISPEP.SANT ADDITION (156 ) (UT67 (075) 3' >S (048) y Jf1[ O 24' g g 24' [ QMCB OMCB [6' 18' S 4 QMCB 1602A 1608A 1634 18'  ; W g , 3 l 11760 l 11761 l . j 11762 1 L lag v 668 NSCVS _-. , , " t # C , il

                                                                                                                                                                          ,            24 COMPONENTS PDI      PI                                      PDI        PI                                          PDI    PI 11726 2148                                       11727 2150                                       g     11729 2152                                  y b                                                                     '"                             1668
          -1XC                     ' ll         OMEB           Hl>r"                  ' ll                           ---G>r" NO NO                         [L1T                NO                                                                                                             :h 11606} HV                                                     HV HV 11600                            (f 1160                                                      1160                                                                  =-

18

                                                                                                                                                              ,TO TOVER             , TO BASIN MJMMAA-                                                                                                                               G
                                      /\                                                   /\                                               /\

2-1202-P4-001 2-1202-P4-005 2-1202-P4-003 TRAIN 'A' NUCLEAR SERVICE NUCLEAR SERVICE NUCLEAR SERVICE 2-1202-V4-001 CDDLING VATER PUMP COOLING VATER PUMP COOLING VATER PUMP NUCLEAR SERVICE COOLING (SPARE) VATER TOVER av mrs = ci., u se-rum. l .mu == -u m. =u x rs

  ,       *s-..         ms   .a      nu. = n.                                    n i        -n-a.        .ss  =e     sans m av a or rumn-i                        a
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Southern Company Services, Inc.FOR Southern Nuclear Operating Company V0GTLE ELECTRIC GENERATING PLANT "5=' " == "c UNIT 2 ""' === wt

                                                                                                                                                                  ~

PUMP INSERVICE TESTING LOOP FOR m " [v,$ $."." , . NUCLEAR SERVICE CDOLING VATER PUMP 2-1202-P4-005 N/A N/A ISI-D- 254 10F ! 2

O O O NOTE: THIS IA A SIMPLIFIED DIAGRAM M USED TO DEPICT A TEST CIRCUIT. 9447 MC)<:}----{MpCID ADDITION REFER TO THE P8.ID FOR DETAILS. (049) - (041) (077) TE D TO Q67_) 2' ;g; ;gp_4[ BLIND FLANGE

                                                                           - 1643                          FC                BLOVDOVN 1

g , ISPERSANT ADDITION (168) (079) (078) 3' >S (050) yQy a ET' j j[ 24' h , I6' 18' H OMCB QMCB 3 QMCB 1603A 1609A 1635 18' g W g , 1 l 11763 l 11764 l 11765 4 1m  ! le Ip y 1669 NSCVS

                                                                                                                     ~
                                                                                                                        ~ "

7"  !" 24 . COMPONENTS V ,l PDI PI PDI PI PDI PI i l 2149 11731 2151 11733 2153  ! n @ 11730 b h @ 1669B

         -{;rll               ' ll                OtiCB         ---g;rll                ' ll                            --l;rll              ' ll 1:

NO (LIT NO NO l HV HV HV 11607 () l1607 ) 11612 11613 = Ig- ,

                                                                                                                                                                 , , TO TGVER             ,             TO BASIN MAMMA.                                                                                                                                       G
                                 / \                                                         / \                                                  /\                                                                              l 2-1202-P4-002                                               2-1202-P4-006                                         2-1202-P4-004                            TRAIN *B'                                    [

NUCLEAR SERVICE NUCLEAR SERVICE NUCLEAR SERVICE 2-1202-V4-002  ! COOLING VATER PUMP CDOLING VATER PUMP COOLING VATER PUMP NUCLEAR SERVICE COOLING (SPARE) VATER TOVER t uv. satt se ces scscorruse meu was me.2 maa mes sciemus

 .       me      ==    vs       issa. ra. ,s,                                     n JJc                                                                                                                                             t I       FES M   88:   WL 5     LF9htE TB KV 19 IF russes33-2
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Southern Company Services, Inc.FOR Southern Nuclear Operating Company "s= ' " **= c V0GTLE ELECTRIC UNITGENERATING 2 PLANT" = = ' vs i PUMP INSERVICE TESTING LOOP FOR " ,muis $$C" m, .y. f NUCLEAR SERVICE COOLING VATER PUMP 2-1202-P4-006 N/A N/A ISI-D- 255 1 [F 1 2  !

                                                                                                                                                                                                                                  +

1 . - . _ - _ - _ _ _ _ _ _ _ _

NOTE: THIS IS A SIMPLIFIED ' DIAGRAM USED TO DEPICT A TEST CIRCUIT. , REFER TO THE PLID FOR DETAILS < HV FI PI 1670 2156 8895 i ag O . l lll  ? 8'X6' LD 4 0MCB FI HV M PI 2166 2157 167A 1671 i 2154 ,

                                                                  ,                                                                              LD                8'X6'                                        ,

[- 3 Ml! l l C [ I 6' PI

                                                               ~

PDI > 4 6' 2155 ,, 11728 QMCB 1606 PI 8894 OMCB i I lp i PD1 1607 d! D 1173 WMAhA.AA.A> h vhJh N

                                                           /        \                                                                                                                                     / \                                                                                                  3r                           ,

2-1202-P4-007 TRAIN 'A' 2-1202-P4-008 TRAIN 'B' TRANSFER PUMP 2-1202-V4-001 TRANSFER PUMP 2-1202-V4-002 ' NUCLEAR SERVICE COOLING NUCLEAR SERVICE C00 LING VATER TOVER VATER TOVER , =v. mm ., o-, ==.-r .-. .-, .-2 m. -. __. e ++= mm vs namn rm m - n i i-=-es === == warte ve av. m n.nem av. i, n_._3a a

  • Ate-M vtV M 333 Pg-ge,. & 7 ,

Aac w+w av.S mm

                                                           -,7          EELETT9 serv esmeras gw.s                                          Southern Company Services, Inc.rog Southern Nuclear Operating Company                                                                                                              [

V0GTLE ELECTRIC GENERATING PLANT =$*<* " = =c UNIT 2 ~ '** PUMP INSERVICE INSPECTION LOOP -. " E *,'. " ' rv =v. , FOR TRANSFER PUMP  ; 2-1202-P4-007 N/A N/A ISI-D- 256 1 IF 1 3

( v J s NOTE: THIS IS A SIMPLIFIED DIAGRAM USED TO DEPICT A TEST CIRCUIT. REFER TO THE P&ID FOR DETAILS HV FI pg 1670 2156 8895

e. I i
                                                                      ^        8'X6' i' g 't                            k
                                                                                                      'LO' 4 0MCB                                                                                                  4 0MCB PI                               166A 2157                    1671                          167A                           ,

2154 LO 8'X6' ll! l l 0 8' PI PDI -- ; 6* 2155 - 11728 QMCB 1606 PI 8894 OMCB lH 1607 N E hDI 1173 WMA N vm.) N

                                  /      \                                                                                              / N 2-1202-P4-007                                            TRAIN 'A'
                                                                                                                                                                         +

2-1202-P4-008 TRAIN *B' TRANSFER PUMP 2-1202-V4-001 TRANSFER PUMP 2-1202-V4-002 NUCLEAR SERVICE CDOLING NUCLEAR SERVICE CDOLING VATER TOVER VATER TOVER ev. == = o., ===== .-, .-, .-, -. -s _ .. . =+ som vs unes run ni n i N-88 "BS E3 LP=YE3 70 =V. EB EE.MB33-9 . IEv. 39 tu4pge3M J.c e 4-w ww = => = : . == arw ev --- a a ie-e-w sv. aats . wn . .c ,2 ages Southern Company Services, Inc.FOR Southern Nuclear Operating Company V0GTLE ELECTRIC GENERATING PLANT = 5= * " n=wa *=c PUMP INSERVICE INS ECTION LOOP FOR TRANSFER PUMP re =v. 2-1202-P4-008 N/A N/A ISI-D- 257 1 [F 1 3  !

CCW Pumps (2-1203-P4-001, 002, 003, 004, 005, & 006) L System Function ' Remove waste heat from the spent fuel pool heat

                                             ~

exchangers, RHR heat exchangers and the RHR pump seal s coolers during plant operation, plant cooldown and during a ' postulated post-accident condition. This heat energy is then transferred by the component cooling water heat 4 exchangers to the NSCWS. The CCWS functions as an intermediate system between a radioactive fluid system and ' the non-radioactive NSCWS, which operates at a higher system pressure This arrangement greatly reduces the  : probability of radioactive fluid leakage to the enviroment by means of the NSCWS.

Quantity 6 4

1 Type Horizontal, centrifugal, single-stage, split volute with mechanical seals Manufacturer /Model Ingersoll-Rand /10x18 SE Rated Capacity 5000 gpm (each) Rated Total Dynamic Head O Driver 160 feet Type Electric Motor, Westinghouse, LAC-LLD, 5008-S Horsepower 300 Speed 1761 rpm-Power Supply 4160V,60 Hz,3 phase Code Class 3 Project Class 313 Outline Drawing 2X4AF01-109 & 2X4AF01-110 Instruction Book 2X4AF01-137 Physical Location Aux Bldg, Level A, Rooms R-A96 & R-A98 P&ID 2X4DB136 Surveillance Procedure 14803-2 Pump Test Loop Diagrams ISI-D-258 through ISI-D-263 Test Parameter Sheets Page 16-3 through 16-8 16 - 1 , Rev.O

O O O i Test Parameter Table - Pump 2-1203-P4-001 (Figure ISI-D-258)  ; Instrumentation Utilized Ref. Acceptable Alert Action l Parameter Iest Frea. 1.D. NoJ3) Range Rea. Acc. Value Range Range Range Comments

                                                                                                                                                                                                                                                                                                                                        .l Speed (N)                 NA                       NA                  NA          NA                  NA              NA                                                      NA                                          NA                          Constant speed driver L

Inlet Pressure Qtr PI-1878 0-60 12% NA NA NA NA NA (Pi) psig Outlet

  • Pressure Qtr PI-1858 0-200 12% NA NA NA NA NA .

(Po) psig , Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 er >l.10APr NA ,. (AP) Flowrate Qtr FI-I1794 0-10000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm  ! Vib. Amp. Qtr (2) NA .1 5 % Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Nctes:

1. DifTerential pressure is calculated as, AP = Po - Pi  ;
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters. I
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

16-2 Rev.0 f i

O O O . 1 Test Parameter Table - Pump 2-1203-P4-002 (Figure ISI-D-259) Instrumentation Utilized Ref. Acceptable Alert Action , Oarameter Int Freq. ' I.D. No.(3) Range Rea. Acc. Value Range Range Range Comments  ; Speed (N) NA NA NA NA NA NA NA NA Coastant speed driver inlet 6 Pressure Qtr PI-1881 0-60 12% NA NA NA NA NA i (Pi) psig , l Outlet Pressure Qtr PI-1859 0-200 12% NA NA NA NA NA i (Po) psig Differ. ' Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l.10APr NA (AP) Flowrate Qtr FI-l1795 0-10000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm I Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s t Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial  ;

direction on each accessible thrust bearing housing. , [ 16 -3 Rev.0 _ _ _ _ __.____-__m__m___-. _ . _ _ _ . _ . . _ _ _ . - _ _ . _ . _ - _ _ _ _ _ _ _ _ _ _ _ _ . . _ _ . _ _ _ _ _ _ _ ____-_m -- - - - - - + - w--

r r - l (' J Test Parameter Table - Pump 2-1203-P4-003 (Figure ISI-D-260) Instrumentation Utilized Ref. Acceptable Alert Action Earamtitt Test Freq. I.D. NoJ3) Range Rea. Acc. Value Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver inlet Pressure Qtr PI-1879 0-60 12% NA NA NA NA- NA (Pi) psig Outlet Pressure Qtr PI-1860 0-200 12% NA NA NA NA NA e (Po) psig Differ. Pressure Qtr NA(1) NA i2% APr .90 - 1.10APr NA <.90 or >l.10APr NA (AP) Flowrate Qtr FI-I1796 0-10000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm  ! I Vib. Amp. Qtr (2) NA 15% Vr 5 2.5Vr >2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s 1 I N:tes: ,

l. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized. .
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial l direction on each accessible thrust bearing housing.

L k 16-4 Rev.0 i _ . . . _ _ _ . , _ _ . ._______.___.__...._..________._________._____________._m_____._s___ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _

N  ! Test ParameterTable - Pump 2-1203-P4-004 (Figure ISI-D-261) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. 1.D. No.f3) Range Beg Act Yalac Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-1882 0-60 12% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr PI-1861 0-200 12% NA NA NA NA NA (Po) psig Differ. l Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 er >1.10aPr NA , (AP) Flowrate Qtr F1-11797 0-10000 12% Qr NA NA NA Flowrate is set at reference value  ! (Q) gpm Vib. Amp. Qtr (2) NA i5% Vr 5 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Notes: .

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters. '
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

r 16 - 5 Rev.0 L

                                                                        .._._________________.m___           _ _ _ _ _ _ _ _ _ _ _ _ _ _ . _ _ _         _m___.   - ___             . . -
  • O /~}

U .%) i Test Parameter Table - Pump 2-1203-P4-005 (Figure ISI-D-262) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Frea. I.D. No (3) Range Req. Acc. Yalue Range Bange Range Comments Speed [ (N) NA NA NA NA NA NA NA NA Constant speed driver  : [ Inlet Pressure Qtr PI-1880 0-60 2% NA NA NA NA NA (Pi) psig  ! Outlet Pressure Qtr PI-1862 0-200 12% NA NA NA NA NA e (Po) psig DitTer. i Pressure Qtr NA(1) NA i2% APr .90 - 1.10APr NA <.90 er >l.10APr NA  ; (AP) l NA NA NA Flowrate is set at reference value i Flowrate Qtr FI-l 1798 0-10000 i2% Qr gpm j (Q) L Vib. [ Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Nites:

1. Differential pressure is calculated as, AP = Po - Pi r
2. Pcatable vibration instruments are utilized. l
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.  !
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thmst bearing housing.

i f 16 - 6 Rev.0 l i

Test Parameter Table - Pump 2-1203-P4-006 (Figure ISI-D-263) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Frea. I.D. No.f3) Range Rea. Ace. Value Range Range Range C.cmments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet l Pressure Qtr PI-1883 0-60 2% NA NA NA NA NA , (Pi) psig Outlet Pressure Qtr PI-1863 0-200 12% NA NA NA NA NA i (Po) psig  ; Differ.  : Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 er >l.10APr NA l (AP) Flowrate Qtr FI-l 1799 0-10000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. ' Amp. Qtr (2) NA 15% Vr- s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA , (V)(4) or >.325 in/s >.70 in/s 1 N:tes: i

1. Differential pressure is caseilated as, AP = Po - Pi
2. Portable vibration instr:nnents are utilized. ,
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial  ;

direction on each accessible thrust bearing housing. t i 16-7 Rev.0 i i

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

O O O . i S QMCB PI gy NOTE: THIS IS A SIMPLIFIED HV PI 1852A 1858 F1 11803 DIAGRAM USED TO DEPICT 11800 1878 II79 A TEST CIRCUIT. REFER 14*X10* LO LO / ' - ' ' TO THE P8.ID FOR DETAILS.

                                                                                                                                          'N' 16'                                                                                             030$

16'XI . -1203-P4- 01 l4, XI CMPNT. CLG. p20'X16' VATER PUMP HS PI HV HV PI pg 954 1960 11804 11801 1879 1179 - 14*X10' LO LG  : c lNl l l ' 16' O 16*X1 2-1203-P4-003

  • XI CMPNT. CLG.

VATER PUMP 18* 14' ' HS PI HV 1179 HV PI 1862 0 20'X16' 1180 1880 856 11805

                                                                                                                            '                                                                                            CCVS IO' If 16" I,_0 gl                                      lN' (034) f'                l      8*X14'                           COMPONENTS 16'X14"                     2-1203-P4-005
          ~ ~

CMPNT. CLG. i ATER PUMP 2'X18, 20' (SPARE) b

                                                                                                                                                                       ~

18' 1 li .

                                                                                                                                                                 ~I'                      LO 4"                                                                                                                                                                                             Hv COMPONENT CLG. VATER                                    11807
                         =                                           i p'                                                                  HEAT EXCHANGER                                                                             ,

y COMPONENT CLG. VATERNLO 2-1203-E4-001  ; SURGE TANK ) HV l_ 2-1203-T4-001 j 11806 T W V 22'X20' 1866 -- TRAIN *A' 9 N Mit WS iJ.T.E3 f1R PIT I l s e-es-es as ets wup to av. se er en sam _JC

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Southern Company Services, Inc.FOR Southern Nuclear Operating Company  ; VDGTLE ELECTRIC GENERATING PLANT ==* " '*'*" c UNIT 2 ".mLE empt

                                                                                                                                                                                                      " "'" v5 GBff8'EB E 3DEZI PUMP INSERVICE TESTING LOOP FOR                                 m                                 n .v.

COMPONENT COOLING VATER PUMP 2-1203-P4 -001 N/A N/A ISI-D- 258 i [F 1 2

O O O

                                                                     / TIS'\QMCB                   PI                                            NOTE: THIS IS A SIMPLIFIED HV      PI        1853A                                               HV        FI 1859                 11811                       DIAGRAM USED TO DEPICT        i 11808     1881 II79            A TEST CIRCUIT. REFER 14*X10"                   Lo ,

a, - TO THE P8.ID FOR DETAILS 16' 16*X1 2-1203-P4-002 g4 XI CMPNT. CLG. 1120'X16' 02 VATER PUMP QMC PI HV 855 1861 FI 1882 11812 33797 118 9 14*X10' LO VD c lN' ' ' 16' E 16*XI 2-1203-P4-004 i XI CMPNT. CLG. VATER PUMP 14' t QMC H, PI HV 1179  ! HV PI 1863 U 20'X16* 1883 857 11813 I ' 18' 11810 14 X10' LO CCVS 16' LD

                                          '     !,'                            %                       O l  18'X14'                          COMPONENTS C
  • 16*X1 2-1203-P4 06 CMPNT. CLG.

VATER PUMP 20' XI (SPARE) 6 h _m._ 18' i! Ii i +

                                                                                                                                                                                 )

T LO 4 HV COMPONENT CLG. VATER 11815 i i e HEAT EXCHANGER I y COMPONENT CLG, VATER LD -1203M-002 SURGE TANK HV l-2-1203-T4-002 11814 _ T E0 f ~ 22'X20' 1867 ~ ~~ TRAIN 'B' e 'a iza vs usurs rar est FI i -es* ms ate wearen To av. se y as4asem JJC ' "~"~ Southern Company So vices, Inc.FOR Southern Nuclear Operating Company VDGTLE ELECTRIC GENERATING PLANT "[58" " *=' = UNIT 2 '" "=* w$ PUMP INSERVICE TESTING LOOP FOR COMPDNENT CDOLING VATER PUMP

u. "E U' r, .

2-1203-P4-002 N/A N/A ISI-D- 259 I [F 1 2

O O O M QMCB pl HV NOTD THIS IS A SIMPLIFIED HV PI 1852A 1858 FI 1878 11803 DIAGRAM USED TD DEPICT 11800 1I79 A TEST CIRCUIT. REFER l4'Xl0' 0 0 TO THE P8.ID FOR DETAILS. 16' ' I,' j N l 16*XI 2-1203-P4-001 g4 XI CMPNT. CLG. Il 20*X16' 502 VATER PUMP OHC PI HV 1879 854 1860 11804 jg79 11801 14'X10* LD LO c

                                                '       I,'
IN: :1 ll u 16' O 16*XI 2-1203-P4-003 i

_ _ XI CMPNT. CLG. 5026 VATER PUMP 14'

                       ~'

O HV PI QMC h PI HV 11 9 856 1862 11805 ' U 20*X16' 1180 1880 IB.I = CCVS 16' LO 16'XI H lNl (034) [l l 18'X14' COMPONENTS C

  • 2-1203-P4 5 CMPNT. CLG.

ATER PUMP 20' (SPARE) 22'X18* h _a_

                                                                                                                                         ~
                                                                                                                                         -          18'. iI Ii n T                      LD 4"                                                                                                                                                             HV COMPONENT CLG. VATER                           11807 i

i

                                                                    '                                                HEAT EXCHANGER y                   COMPONENT CLG. VATER                    0                                                     2-1203-E4-001 SURGE TANK                               HV                                          3-2-1203-T4-001 W                 -

11806

                                                                                                       -             T V                                                                       22'X'20' 1866 ~-                                                                    TRAIN     'A'

_ _, ._ _. _. _. _. _s - 9 FM EiB VE ESED f1R PST -I a e as als irsarts to av . r emessim . JC

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Southern Company Services, Inc.FOR Southern Nuclear Operating Company VDGTLE ELECTRIC GENERATING PLANT "S** " = == UNIT 2 ""' ==* vi

                                                                                                                                                      ~

DUMP INSERVICE TESTING LOOP FOR COMPONENT COOLING VATER PUMP

                                                                                                                                                           -.          ~ECC'         ,,o,   .

2-1203-P4-003 N/A N/A ISI-D- 260 1 (1r 1 2

O O O > M OMCB pr gy NOTE: THIS IS A SIMPLIFIED HV PI 1853 1859 FI DIAGRAM USED TO DEPICT 11811 11808 1881 1179 A TEST CIRCUIT. REFER 14*X10* LD TO THE PLID FDR DETAILS. LD c ' ' l l, D-i l 14' lN' 16, i 16*X14* 2-1203-P4-002 @ g4, XI CMPNT. CLG. 1120'X16' 5025 VATER PUMP "h855 1861 PI HV 11812 FI 11809 1882 11797 I 14*X10' LO LO

c lN l l -

16' 16*X1 2-1203-P4-004 O i XI CMPNT. CLG. VATER PUMP QMC PI HV 1179 HV PI 1863 U 20'X16' 1883 857 11813 gg, 11810 CCVS l-18'X14' 16' LO

                                           !     N                          H                                                                                                 IN'           fi                                                     COMPONENTS               ,
              =

16*X1 2-1203-P4 6 -i CMPNT. CLG. ATER PUMP 20' (SPARD 22'X18' ' 18'ij ge , H T LD HV 4' COMPONENT CLG. VATER 11815 , sp i HEAT EXCHANGER _' y COMPONENT CLG. VATER LD SURGE TANK HV l-

  • T 2-1203-T4-002 11814 U EO f 22'X20' L 1867 -- TRAIN *B'

. -- - ., nm ei i e-es-as et ats tranrts a uv. se r exassin JJC

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Southern Company Services. Inc.FOR Southern Nuclear Operating Company VDGTLE ELECTRIC GENERATING PLANT **e " = c UNIT 2 '""* " " vs PUMP INSERVICE TESTING LOOP FOR mus "EU' x, . COMPONENT CDOLING VATER PUMP 2-1203-P4-004 N/A N/A ISI-D- 261 1 [F 1 2 t

                 %                                                                          (                                                                              lh Y                                                                                                                                                            Y PI                           Hy                       NOTE: THIS IS A SIMPLIFIED HV      PI                                                                                      }

11800 1878 1858 11803 gg79 MGM M TD DMCT

                                                                        '                   14'X10                                                           A TEST CIRCUIT. REFER LO                                        e
                                                                                             ~               'qi' e             hO      ,                          TO THE PLID FOR DETAILS.

6*  !  !! N 14' 16*X14' 2-1203-P4-001 O XI I4' CMPNT. CLG. H 20*X16' 5024' VATER PUMP PI HV

                                                                                                    ,1860                     11804 11801    1879                                                                                 1179 14*X10*                       LO
                                           'O                                       :       c                lN:          '

16' ' Ii' M 14* O 16'X14' 2-1203-P4-003 , XI CMPNT. CLG. 5026 VATER PUMP 14 DMC FI HS P1 HV 1179 HV PI 1862 N20*X16* 1180 1880 11805 -- If yg,1I 14*X10' LD r CCVS 16, fu, y.4l , E

                                                                                                             ;q;         e
                                                                                                                                ;         l   18'X14*                       COMPONENTS 16'X14*               2-1203-P4-005
      '~__

CMPNT.CLG. ATER PUFP 20' (SPARE) 22*X18' i _i_ - 18' .iI la a ___ T LO 4' HV COMPGNENT CLG. VATER 11807

                                                       '   '                                                    HEAT EXCHANGER jf              COMPONENT CLG. VATER LD                                                                        2-1203-E4-001 SURGE TANK                          HV                                               _1_

2-1203-T4-001 11806 T 1f 22*X20'

               =                                                                TE LD                                                                   1866 PES                                                                          ,

e am e, a== m-_._ , , . m. ms 9 77 % EE vt 13SE3 FIR PST fI *

  ,-as e  et   ets i

waarts is arv. se y emessem .1C

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Southern Company Services. Inc.FOR Southern Nuclear OperoHng Company VDGTLE ELECTRIC GENERATING PLANT - " = =c UNIT 2 '" g, y_, PUMP INSERVICE TESTING LOOP FDR a. - , o COMPONENT COOLING VATER PUMP 2-1203-P4-005 N/A N/A ISI-D- 262 I [F 1 2

O O O

                                                                                                                                                / TIS'\0MCB                      PI                                                  NOTE: THIS IS A SIMPLIFIED PI                                           853                                                      HV           FI HV                                                                                                                   1859                        11811                      DIAGRAM USED TO DEPICT 11808                                        1881                                                                                                                    1179         A TEST CIRCUlT. REFER 14*X10"                          LO                             TO THE PLID FOR dei.c,ILS.

LO  : c lN  : 16'  ! 16'X1 2-1203-P4-002 O g4, XI CMPNT. CLG. 1120'X16" 5025 VATER PUMP HV PI 0" h PI 1861 Hy 11812 FI gg 9 18g2 855y gg797 14*X10' LO LO ' '

                                                                                                                                                                 .     ~                .N' 16' 16*XI                                                    2-1203-P4-004           E
  • XI CMPNT CLG.

VATER PUMP H P1 HV 1179 L, HV PI 1863 O 20*X16' 1883 857 11813 gg. I I 11810 14*X10' LO CCVS O , , , l 18'X14' COMPONENTS

                                          '        '!,'                                                                                                     K' C O 16*                                                                16*X1                                                    2-1203-P4 06              O CMPNT. CLG.

ATER PUMP 20' (SPARE) 22*X 8' 18' ,ig gi h T LD 4' HV COMPONENT CLG. VATER 11815 ig i HEAT EXCHANGER

                                                                                                                                                                                              ~     ~ ~

y COMPONENT CLG. VATER LO SURGE TANK HV I-W10 2-1203-T4-002 11814

                                                                                                                                                                          -               T 22'X'20' L                                                                                                                                                 1867 --                                                                           TRAIN 'B' e  ,+=     su  vs   nuns nsi ne                                                                                                  ti n  e-m-es  ca. sta  tenarts to av. a. r asesoim                                                                              JJC
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Southern Company Services, Inc.FOR Southern Nuclear Operating Company VDGTLE ELECTRIC GENERATING PLANT ==' " "

  • UNIT 2 '"' === vs PUMP INSERVICE TESTING LDDP FDR ua C h"' -,

COMPONENT CDOLING VATER PUMP 2-1203-P4-006 N/A N/A ISI-D- 263 1 [F 1 2

4 ' SIPumps (2-1204-P6-003, & 004) System Function ] 4

                              ,      The SI system provides emergency core cooling and serves no other purpose.
                                                                                               'l The primary function of the ECCS is to remove the stored l                                    and fission product decay heat from the reactor core j

following an accident in order to prevent fuel rod damage.

!                                                                                               i Quantity                       2 Type Horizontal, centrifugal,11-stage s                                                                                                !

4 Manufacturer /Model Paci6c Model 3-ht., JHF Rated Capacity 440 gpm Rated Head 2630 ft. Driver Type Electric Motor, Westinghouse, Frame 5809 H Horsepower 450 Speed 3600 rpm Power Supply 4160V,60 Hz,3 phase Code Class 2 Project Class 212 Outline Drawing 2X6AG02-10,13 & 15 i Instruction Book 2X6AG02-016 Physical Location Aux Bldg, Level B, Rooms R-B117 & R-B119 P&ID 2X4DB121 Surveillance Procedure 14804-2 Pump Test Loop Diagrams ISI-D-264 & ISI-D-265 Test Parameter Sheets Page 17-2 & 17-3 D 17 - 1 Rev.O

o ' O , i Test ParameterTable - Pump 2-1204-P6-003 (Figure ISI-D-264) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. I.D. No.f3) Range Rea. Acc. Value Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver s Inlet Pressure Qtr PI-0977 0-100 i2% NA NA NA NA NA i (Pi) psig Outlet Pressure Qtr Test NA 12% NA NA NA NA NA i i (Po) Gage Differ. Pressure Qtr NA(1) NA i2% APr .90 - 1.10APr NA <.90 or >l.10APr NA l (AP) i t Flowrate Qtr FI-0968 0-100 i2% Qr NA NA NA Flowrate is set at reference value

                                                                                                                                                                                           ~

(Q) gpm Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA l (V)(4) or >.325 in/s >.70 in/s  ; i

                                                                                                                                                                                           ^

Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial  ;

direction on each accessible thrust bearing housing. i 17-2 Rev.O

                               ~. _ ._ . .._ ____ _. _                         _.m   . _ _ ._ __ _ _. _                 _ . _ . _ . _ .- _ ..         _ . - . . _ .

Test ParameterTable _- Pump 2-1204-P4-004

                                                                                             ' (Figure ISI-D-265)

Instruments. lion Utilized Ref. Acceptable Alert Action Earameter Test Frea. 1.D. No.(3) Range Rea. Ace. Value Range Range Rance Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver inlet ' Pressure Qtr PI-0978 0-100 12% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr Test NA 12% NA NA NA NA NA i (Po) Gage Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l.10APr NA (AP) Flowrate Qtr FI-0968 0-100 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

17 - 3 Rev.0

                         /G                                                                                                 Og U                                                                                                   V                                                                                                                     [N U l NOTE: THIS IS A SIMPLIFIED                                                                                                                                                            VPS REAC DIAGRAM USED TO DEPICT                                            M"               HV              3'X3/4"       CVCS BA BLENDER 2,                ,

C CDDL DRAIN g? [If2,@ I fIf (0.02) A TEST CIRCUlT. REFER O CSS TEST LINE TANK PUMP 00 TO THE P&ID FOR DETAILS. 8964 ~ k' 8964 jf , , SIS BORON INJECTIONj 3/4" "FC'

                                                                                                                                                                                              ~

TEST LINE O REFUELING VATER HV SFPCS PCP STORAGE TANK HS MCB 8813 09 8 PURIF  ;; 3'

                                                                                                                                                                                                                                                                       ~'

8888 PUMP (003) 807 1 0

                                                       !                        813       M          3'X2'                                                                          HV i                                                     HV                                                                     807 H                                       t. --

QMCB " (FC 3'X11/2 8814 HV OMCB >, 8888 , r M MCB 802 k L 3/4' LOCAL C 3/4-1 1/2* 8814 6, 07B H CVCS CHARGING N QM B HV 4' b 093 MCB 9 Hv A

                                                                                                       -                         HS                             M                  g0 B QHCB                                                                                                           X11/2'        999          pg                g23 H                                                         (100 )        (098)                                                                                        >,                                                                                            24' 4
  • X3, , 0977 UM OI LD 3'X11/2' 2-1204-P6-003 D b^

6-(207 SIS COLD s SAFETY INJECTION LEG LOOP _4' / PI T XI TI H L HV H PUMP 8806 HV 8920 M TRAIN *A. LO 135 QMCB 821B MCB QMCB gy 8'X6' WO M 8806 821B M " HV

  -QMCB       HV                                                                                                                             PI                923 802                                                101 )        (099)                                                                                     Luh136) 1 1/2' h          4,    4'X3,                       OW8 8

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p Q ,) ] NOTE: THIS IS A SIMPLIFIED VPS REAC DIAGRAM USED TO DEPICT M MCB HV 3'X3/4" CVCS BA BLENDER E, ^ 2, ' ' COOL DRAIN A TEST CIRCUIT. REFER 8964

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CSS TEST LINE 7;2 TANK PUMP y y Q03) 0 TO THE P8.ID FOR DETAILS. k'8964 y gy _ SIS BORON INJECTIONj 3/4' 'pC' TEST LINE N jl REFUELING VATER HV SFPCS QM B PCP STORAGE TANK M MCB 8813 09 8 PURIF  ;; 3' HS3 TS 2-204 -T4-001 813 M 3'X2' HV H t--- HV 807 (FC QMCB 3'X11/2 8814 HV ' QMCB r M M 802 k k 3/4 LOCAL

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SIS COLD 4 -% SAFETY INJECTION 6' LEG LOOP / PI \ XI TI h L HV PUMP 1 8806 H 8920 M TRAIN *A. LO 135) QMCB QMCB - HV 8'X6* 090 M 8806 821B M <- MCB QMCB HV PI 923 802 (099) LD 1 1/2* 4*X3, 0978 4, HV HS LO 2-1204-P6-004 0 Ms D P 802 L SAFETY ECTION 6, (163) QMCB 4*

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PUMP INSERVICE TESTING LUDP ua u a FOR SAFETY INJECTION PUMP 2-1204-P6-004 N/A N/A ISI-D- 265 1 [F 1 2

l i . RHR Pumps j (2-1205-P6-001, & 002) i System Function O' ~ The primary function is to remove heat energy from the reactor core and reactor coolant system during plant cooldown and refueling operadons. As a secondary ' function, RHR is used to transfer refueling water between the refueling water storage tank and the refualing cavity at the begin. ing and end of refueling operations. i Portions of the RHR system also serve as part of the ECCS during the injection and recirculation phases of a LOCA. Quantity 2 Type Vertical, centrifugal, single stage Manufacturer /Model Ingersoll-Dresser,8X20WDF Rated Capacity 3000 gpm ' Rated Head 375 ft. Driver I g Type Westinghouse LLD squirrel-cage induction motor i Horsepower 400 Speed 1780 rpm ( Power Supply  : 4160V,60 Hz,3 phase Code Class 2 Project Class 212 Outline Drawing AX6AF02-20007 Instruction Book AX6AF02-20030 PhysicalLocation Aux Bldg, Level D, Rooms R-D21 & R-D22 P&ID 2X4DB122 Surveillance Procedure 14805-2 & 14812-2 Pump Test Loop Diagrams ISI-D-266 & ISI-D-267

                                                                                                                                               )

Test Parameter Sheets Page 18-2 & 18-3 O 18 - 1 Rev.0 1

s J a Test Parameter Table - Pump 2-1205-P6-001 (Figure ISI-D-266) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. I.D. No.(31 Range Req. Acc. Value Range Range Range comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver inlet Pressure Qtr PI-8884 0-100 12% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr PI-8886 0-400 12% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr NA(1) NA i2% APr .90 - 1.10APr NA <.90 or >l.10APr NA (AP) Flowrate Qtr F1-0618A 0-5000 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or>.325 in/s >.70 in/s Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

Rev.0 18 -2

O O O Test Parameter Table - Pump 2-1205-P6-002 (Figure ISI-D-216) Instrumentation Utilized Ref. Acceptable Alert Action  ; Parameter Test Freg, I.D. No.0) Range Reedcc. Value Bange Range Range Comments i Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-8885 0-100 12% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr PI-8887 0-400 12% NA NA NA NA NA i (Po) psig . DitTer. , Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l.10APr NA (AP) Flowrate Qtr FI-0619A 0-5000 12% Qr NA NA NA Flowrate is set at reference value gpm i (Q) Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA , (V)(4) or >.325 in/s >.70 in/s Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instnr ' tion other than that listed, which meets the requirements of the Oh! Code, may be utilized for measuring test parameters.
4. Measurements are taken in a , .e pproximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible th.a bearing housmg.

i i 18 - 3 Rev.0 j

f h Test Parameter Table - Pump 2-1205-P6-002 (Figure ISI-D-216) Instrunnentation Utilized Ref. Acceptable Alert Acties ' Parasmeter Test Free. LD. No.f3) Ranee Ree. Acc. Value Ramme Ranee Range Connasents  ; Speed (N) NA NA NA NA NA NA NA NA Constant speed dnver Inlet Pressure Qtr PI-8885 0-100 12% NA NA NA NA NA (Pi) psig i Outlet Pressure Qtr PI-8887 0-400 12% NA NA NA NA NA (Po) psig - Differ. Pressure Qtr NA(1) NA 12% APr '

                                                                                                         .90 - 1.10APr                                                     NA              <.90 er >l.10APr NA (AP)

Flowrate Qtr F1-0619A 0-5000 12% NA NA Qr NA Flowrateis set at reference value (Q) gpm t Vib. Amp. Qtr (2) NA 15% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) [ or >.325 in/s >.70 in/s  ! Notes:

1. Differental pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized. '
3. At the discretion of GPC, instrumentation other than that listed, which meets the reqmrements of the OM Code, may be utilized for measuring test parameters. l
4. Measurements are taken in a plane approximately r.r..dkwlar tc the rotating shan in two orthogonal directions on each accessible e . Wing housing and in the axial direction on each accesnNe thrust bearing housing.

18 -3 Rev.O

Ag / h NOTD THIS IS A SIMPLIFIED hN" , FROM CONTAINMENT DIAGRAM USED TO DEPICT 618A 0618 FV = EMERGENCY SUMP A TEST CIRCUIT. REFER 0610 2-1205-E6-001 MCB TO THE P8.ID FOR DETAILS. 00 MCB pg pr QMCB _ - 0618 HV 614/ 8886 HV 606 HS REFUELING VATER HV FT 0606 T 881I 809 0620 STORAGE TANK M 0618 (ogg 0612 PI

                                                                                                                                                                                                                                                     ,       0601                                         P 2-1204-T4-001 SIS                           8' y y COLD LEG FO                                                    g-d U

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HV l N XI TI PI 804 M l' 06 8 FV M' 70 A CVCS CHARGING - - 0618 CVCS LETDOVN 2-1205-P6-001 PUMP SUCTION HEADER r N f ,C HEAT EXCHANGER 8 RESIDUAL HEAT REMOVAL PUMP 1 J rg t g HV 812 HV c' 8' ,L C, ,L C, RC 76 LO 1 M , I U FV RHTkO27) (226)  : 12' 24-RCS ' HOT LEG ' " ' 12 X8' FDT 0611 U LOOP HV HIC QMCB M PI QMCB 1 ' 716 o 0615 8887 ' HV 809 y z HV 607 0607 MCB M 0621 4*X8' y (020 0613 0602 02 M

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                                                                 ' 0619 FY (022)                                          5015              5017       8885                    HV                                            b812 D                                                                                                                                                                                                               le 8811B 804                          [g9                                                                        0619                                             CVCS LETDOVN                                     2-1205-P6-002 SIS SAFETY INJECTION

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                                                                                                                                                                                                             ,                             2-1205-P6-001                            ,

N/A N/A ISI-D- 266 10F 1 3

(% ~\ 0 V (V V NOTE: THIS IS A SIMPLIFIED DIAGRAM USED TO DEPICT I 618 nil"CM" FV

                                                                                                                                                                    ,                                FROM CONTAINMENT 0618                                                                                                               :                 EMERGENCY SUMP A TEST CIRCUIT REFER                                                                 0610                      2-1205-E6-001                  MCB TO THE P&ID FOR DETAILS.                                 00                   MCB                                                        pg            pr              QMCB                                            .                            .

0618 HV 0614 8886 H HV REFUELING VATER HV FT 606 0606 TE 0620 8 811 STORAGE TANK 809 M 0618 \ gg9 0612

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PUMP SUCTION Y HEAT EXCHANGER RESIDUAL HEAT r HV r 9 HEADER N 8, p REMOVAL PUMP J L 812 C M HV HV U /c j C, LC, 76 8' RCbu F i " , U FV RHT 2 @ (h6) Y w 12' 24' 12*X8, 0611 HD LEG HV QMCB M PI QMCB ' ' LOOP HV 8716 HV m TE 0615 8887 M 7 0621 p309 M r 0607 4*X84 (020 06 2 02 I 8* I M[ SIS 4  :.: l ll G y :i: 12- o RCS HOT LEG COLD LEU i i T- I -- "' LOOP 4 LOOP FT 2* 2-1205-E6-002 (010 ) ' i^ e- QMCB 0619

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VOGTLE ELECTRI EgERATING PLANT E=8 " _g'a y o PUMP INSERVICE TESTING LOOP ~ ,coua SAE .u r .tv FOR RESIDUAL HEAT REMOVAL PUMP 2-1205-P6-002 N/A N/A ISI-D- 267 10F 1 3

CS Pumps (2-1206-P6 001, & 002) f'~ System Function Containment spray limits the peak pressure in the containment to less than design pressure following a LOCA or a main steam line break inside containment. Trisodium phosphate is mixed with recirculated spray water in the containment sump region for pH control and to enhance absorption of the airborne fission product iodine and to , retain the iodine in the containment sump solution to limit calculated offsite doses to less than 10CFR100 limits. Quantity 2 Type Horizontal, centrifugal Manufacturer /Model Goulds Model 3415 Capacity 2600 gpm Total Dynamic Head 450 ft. Driver Type Westinghouse electric motor, Frame 5010S g Horsepower 400 Speed 1777 rpm Power Supply 4160V,60 Hz,3 phase Code Class 2 j Project Class 212 I Outline Drawing 2X6AD02-10 Instruction Book ,, 2X6AD02-18 Physical Location Aux Bldg, Level D, Rooms R-D04 & R-DOS P&ID 2X4DB131 Smveillance Procedure 14806-2 Pump Test Loop Diagrams ISI-D-268 & ISI-D-269 Test Parameter Sheets Page 19-2 & 19-3 I 19 - 1 Rev.0 l

o o D Test Parameter Table - Pump 2-1206-P6-001 (Figure ISI-D-268) , instrumentation Utilized Ref. Aeceptable Alert Action l Parameter Test Frea. I.D. No.(3) Range Rea. Acc. Value Range Range Range Comments - r Speed ' (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-0972 0-100 12% NA NA NA NA NA i psig l (Pi)  ! ( Outlet i Pressure Qtr PI-0974 0-300 i2% NA NA NA NA NA , (Po) psig i Differ. , Pressure Qtr NA(1) NA i2% APr .90 - 1.10APr NA <.90 or >l.10APr NA , (AP) r Flowrate Qtr F1-0929 0-400 12% Qr NA NA NA Flowrate is set at reference value j (Q) gpm Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or - NA  ! (V)(4) or >.325 in/s >.70 in/s , s Notes: l

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instmments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

I i 19 - 2 Rev.0

                                                       - -         . . - _    . _ _ _ . ~      -________._----_.-__--__..__-_--____n_   -                                       _ _ _ - - - - _ _ . . - _ . - _ _ -_ - - - _ _ . . _ _ - - _ - - _ _ _ - - _ - - _ . , . - - -                              . -,

O O l Test Parameter Table - Pump 2-1206-P6-002 (Figure ISI-D-269) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. 1.D. No.(3) Range Req. Acc. Value Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-0973 0-100 12% NA NA NA NA NA (Pi) psig , Outlet Pressure Qtr PI-0975 0-300 12% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr NA(1) NA 12% APr .90 - l .10APr NA <.90 er >l.10APr NA (AP) Flowrate Qtr F1-0929 0-400 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm , Vib. l A m p. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA I (V)(4) or >.325 in/s >.70 in/s l t Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial i direction on each accessible thrust bearing housing.

8 k 19-3 Rev.0 t i

                                . _ . _                                          _ . . _ _ . _         . _ _ _              .         m_ . . _       . _ . _ . _ . . _ _ . _ . _ _ . _ _ . _ _ . _ _ . _ _ . _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _               __

p ,/- N Q -] - 0 NOTE: THIS IS A SIMPLIFIED ,L C, p, DIAGRAM USED TO DEPICT r, M A TEST CIRCUIT. REFER TO THE P8.ID FOR DETAILS.

                                                                                                        @                                               HV 003 QMCB                                                                                                                         d 9003 QMCB                                QMCB           (">

9001 HV TI PI M FROM CONTAINMENT 1094 12' EMERGENCY SUMP FI 1 9001A 0938 0974 PI 929 TD . 0972 12,X10, - Cny T^.!NMENT -QM yq I 12*X10* 12' U 8, SPRAY F-c o-- n a e ~ 5010 2-1206-P6-001 d C _y _a CONTAINMENT SPRAY g OMCB CONTAINMEN TRAIN 'A' 5012 SPRAY EDUCTOR s M 9017A 2-1206-J6-001 _ C o P 1093 10' 90 A_ . 8,3 REFUELING VATER = 3' PCP STORAGE TANK oprG E, 2-1204-T4-001 8JL C v QMCB CONTAINMENT SPRAY EDUCTOR

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                                                                        "                                                              10    9017B 2-1206-J6-002                                                            U.52)                                  MCB 9001B HV                                                        MCB                                           M n                       H                                                          9017B 9001B          TI      a     s                      1094 M                  0939 J                                                                                     n g                                      09 3                                $      HV       ,r-- 9003 TD                 m 7'

8' i , S 9003 g CONTAINMENT O SPRAY XI 5011 2-1206-P6-002 l FROM CONTAINMENT PI 0975 M CONTAINMENT SPRAY PUMP - TRAIN 'B' 12' 7' 2 EMERGENCY SUMP D- M e-

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SCALE em CIDffpaKB (Be SM.ET PUMP INSERVICE TESTING LOOP ua 1, a FOR CDNTAINMENT SPRAY PUMP l 2-1206-P6-001 N/A N/A ISI-D- 268 10F 1 4

NOTE: THIS IS A SIMPLIFIED ,LC DIAGRAM USED TO DEPICT r, 2 2" - - A TEST CIRCUIT. REFER (006) QMCB j; TO JHE P8.ID FOR DETAILS. QMCB QMCB 4 U 9003A 9001A HV TI PI M ~ m F GM CONTAINMENT 1094 12' 7' EMERGENCY SUMP FI __ 9001A 0938 0974 PI 0929 - TO - 0972 12*X10' CONTAINMENT - "'- 1 12*X10* 12' SPRAY 8' }--C - o 5010 2-1206-P6-001 0 W

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_s CONTAINMENT SPRAY y QMCB CONTAINMEN , 5012 TRAIN *A* SPRAY EDUCTOR s M 9017A 2-1206-J6-001 ,/, O u 1093 10' 90 A. . S REFUELING VATER 3' 3,

  • T QPCP STORAGE TANK PE 2-1204 -T4-001 uL a v

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2-1206-J6-002 152 MCB 9001B 3 QMCB HV r M 9017B 9001B Tl a ~ 1094 M m 0939 2 g 09 3 $ HV r-- 9003 TD & 7' 8' I I, S 9003 g CONTAINMENT SPRAY Q 0

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V5013 M a' = aE v. 3.rt av oerg dI5h m3casPYuss meeJ mppea appeJ arets appas ajanlas . , - - mas vs nsx rm m I t-ES-GB CA. I,LB tr3.TED TU EvJS IF 22493t3 _ ._)2 = e-w itv su arvrucs v=ves - essest a em JJ n-u m vs == miovra spear ansmvt = a v=vts er,. -LMs Southern Company Services, Inc.FOR Southern Nuclear Operating Company o c n .,m Ye ro -m . ir,. ,v. m .c .c 3 og5 VOGTLE ELECTRI nsreca n .c EgERATINGPLANT scaz a=rous a. s=ri PUMP INSERVICE TESTING LOOP ,.aa. a .tr e erv. 1 FOR CONTAINMENT SPRAY PUMP 2-1206-P6-002 N/A N/A ISI-D- 269 1Wl 4

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i CVCS Pumps 3 CENTRIFUGAL CHARGINGPUMPS ' (2-1208-P6-002, & 003) {

System Function -

The primary functions of the CVCS are to: I Regulate reactor coolant chemistry for reactivity and corrosion control I Maintains the water level in the pressurizer of the RCS Maintains seal-water injection flow to the reactor coolant pump Provide a means offilling, draining and pressure testing 4 the RCS Provide injection flow to the RCS following actuation j ofSIS i

Quantity 2

! Type. Horizontal, centrifugal,11 stage ) Manufacturer /Model Pacific, U 2-1/2 in., RL i j Capacity 150 gpm TotalDynamic Head 5800 ft. C\ (/ Driver , Type Westinghouse electric motor 4 Horsepower 600  ! 3 Speed 1800 rpm j Power Supply 4160V,60 Hz,3 phase J J. , Code Class 2 1 Project Class 212 l Outline Drawing 2X6AH02-100 Instruction Book 2X6AH02-85 Physical Location Aux Bldg, Level C, Rooms R-C16 & R-C17 P&ID 2X4DB116-2 Surveillance Procedure 14808-2 Pump Test Loop Diagrams ISI-D-270 & ISI-D-271 O Test Parameter Sheets Page 20-2 & 20-3 20-1 Rev.O

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Test Parameter Table - Pump 2-1208-P6-002 (Figure ISI-D-270) InstInnentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. I.D. No.0) Range Req. Ace. Value Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-8891 0-100 12% NA NA NA NA NA (Pi) psig Outlet , Pressure Qtr PI-8472 0-4000 12% NA NA NA NA NA i (Po) psig i Differ. Pressure Qtr NA(1) NA 12% APr  % - 1.10APr NA <.90 or >l.10APr NA (AP) Flowrate Qtr F1-10120 0-80 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. A m p. Qtr (2) NA 15% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s > Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than sat listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

20-2 Rev.0

                                                                                                                                                                                                                                                                                                  )                               !

s Test Parameter Table - Pump 2-1208-P6-003 (Figure ISI-D-271) , Instrumentation Utilized Ref. Acceptable Alert Action  ! Parameter Test Frea. I.D. NoJ3) Range Rea. Acc. Yalue Range Range Range Comments j Speed (N) NA NA NA NA NA NA NA NA Constant speed driver i Inlet Pressure Qtr PI-8892 0-100 12% NA NA NA NA NA * (Pi) psig Outlet Pressure Qtr PI-8473 0-4000 12% NA NA NA NA NA i , t j (Po) psig Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 er > l.10APr NA t (AP) Flowrate Qtr F1-10121 0-80 12% Qr NA NA NA Flowrate is set at reference value  ; (Q) gpm i Vib. Amp. Qtr (2) NA 15% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA  : (V)(4) or >.325 in/s >.70 in/s . l i Notes:  ;

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instnamentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing. -[

[ 20-3 Rev.0 [

                                                                                                                                                                                       . - - - - - _ - _ . - - _ _ - _ _ . _ _ _ . _ - - - _ _ _ _ _ _ _ _ _ _ - - _ _ _ _ _ _ - _ _ - _ _ , - _ _ - _ - - _ _ _ _ - _ _ . _ _ _ -l
                  .O                                                                                                                                                                                                                                                                                                                                                                                                                                i b                                                                                                                                                                                                                                                                                                                               V                                                                                                 O)-

4 X3* SEAL VATER LC e 3' l 120 329B N3* ][i _ 3* 3- RVST 2' h _.

                                 -                       3*                                                      GU                                                                                                                                  l                             8110 l                                        3,                                              VOLUME U

ONgQAg $ REACTOR 3*X2' l

                      '                                                                                                                                                                                                                                                                                                                                                  OMCB                 2-1208-P6-001                                                         L   l' COOLANT                           RHT'                                                                                                                                                                                                                                                                                                                      j    /IiSN               POSITIVE DISPLACEMENT                                                       L CHARGING PUMP SEALS                                                                                                                                                                                                                                                                                                                                                                                                                                RHT     4-                M D                                                                                                                           ll                                                                                                       M FD                                                                                                                                                                              g3 CVCS                          @                                                                                                                                                                         FV                                                  G3D GED 10120                                                                                                    PS                                            12C                     112B II                                                                                                                                               -3*X2-                                                                                           MCB REGENERATIVE                                                                   gN                                                                          FT                                                                                                          QMC                                                                FI                                  508                                           if     RHT         i EXCHANGER                     /TiSh0MCB                                                                                                                                                                                                                                                                                                                            8 2              273         pg     M g                             E                                            8891 0187                g              aMr                  =

CVCS LUU  ? i'

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                                                                                                                                                                                                                                                                                                                                                                                                   '2-1208-P6-002 '                                           013 h    '

SEALS MCB ' g X CENTRIFUGAL H F CHARGING PUMP 471 QMCB a LRHT 10th! 3*X2 5018 QMCB TRAIN *A* NOTE: THIS IS A H 3* HS $ - 12D SIMPLIFIED DIAGRAM 4g PI b RH USED TO DEPICT A TEST HV 8473 74 pg PI MCB CIRCUIT. REFER TO THE 485 q 018 8

                                                                                                                                                                                                                                                                                                                                                           ,                                            8892                                           A 8 *'

PLI.D. FOR DETAILS. E A if I '

                                                                                                                                                                                                                                                                                                                                                                                                 ,                 ,      6-           8'X6*          GED                  ,

S '2-1208-P6-003 HV k( ) '48) RHT e508 xI Ugp TRAIN *B* H 47l V l 2E HV HSN ( 801A 801B ' J LRHT 508 4 71 FROM MCB REFUELING TD RCS COLD LEGS  !, RVST VATER STORAGE TANK 8E'A MTE BY Der *B KSCAFTEss arrGJ srPW2 apptJ APPE4 aPPt.S EgaMut3 P N VS ESS IISUE FtEt PST ' I s-es-se ca. == tenarts u irva y ev4emm-e - JC Ie vs E ~E"t>YE n caers i asern es oma a , Ei Southern Company Services, Inc.FOR Southern Nuclear Operating Company s C E My " ir w , " '" cams, " " " " " " " " " N VDGTLE ELECTRIC GENERATING PLANT 8t=8 " UNIT 2 "**

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                                                  )                                                                                                                                                                                                                                          =

3' 3' H RVST 2' H n 3' (IDE)d 8110 7' l 3 1 VOLUME v i CVCS r REACTOR c 6' 3'X2' e s l MCB 2-1208-P6-001

                                                                                                                                                                                                                                                                                                        -1      - -

fyt%^ #T CDOLANT RHT rr POSITIVE DISPLACEMENT PUMP 0121 t 111 CHARGING PUMP SEALS ggg RHT 4- Il2B D ll g FO ' CVCS @ FV (I3D (IEH) 10 20 PS 112C ll2B

                                                                                                                                              -3'X2' REGE        TIVE                       gg                  121 QMC                                FI                                              508                                                                                                                                    I RHT_g HS                                                                                                                                     MCB EXCHANGER                 /Tih 0MCB                                             H h485                                                           8 2                  273                                                          pg                                      PI                                      OMC                      y
                                                                                                                   !                                  Ie 8891 0187                ggp -a M,                            =

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                                                                                              /

6, 8'X 4' , (Ig2) p SEALS QMCB ' C G P QMCB ' 6RHT 101 1 3'X2 5018 " OMCB g3 b LV NOTE: THIS IS A H , 5 8- 112D SIMPLIFIED DIAGRAM 4 PI 4 73 BS 274 PI MCB RHT USED TO DEPICT A TEST HV 8473 pg CIRCUIT. REFER TO THE 485 8892 018 8 P8,I.D. FOR DETAILS. h I a i O 4'l O 1 6 8'X6' M

                                                                                                                                              /P                                                                                  2-1208-P6-003 g  i  P L

1 J g RHT 508 [XI CENTRIFUGAL CHARGING PUMP H 4 71 LV 112E 5019 HV HV HS 801A 801B 1 2 LRHT 508 471 FROM  !

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                                                                                                                                                           ^                        "^ "

2 08-P -O03 N/A N/A ISI-D- 271 1 (T 1 5

    . _ _ _ . . . _ .       . . , _ _ _ = _ . _ _ _ . . . . _ . _ _ _ . . _ _ _ . _ . . . . . .                _ _ .      . . _ _

4 BORIC ACID TRANSFER PUMPS (2-1208-P6-006 & 007)

/' System Function
                                                  -           Provides boric acid to the CVCS for use in RCS inventory control and makeup to systems requiring reactor grade borated water. The boric acid transfer system also provides boric acid for emergency boration of the RCS,

! Quantity 2 l Type Canned motor j Manufacturer /Model Chempump Model GVH-1K ' i 4 Design Flowrate 75 gpm Design Head ) 235 ft. I Driver Type Electric motor kW 15.5 Speed 3450 rpm Power Supply 4160V,60 Hz,3 phase i Code Class 3

 .O          Project Class                                  313 Outline Drawing 2X6AH02-45 & 2X6aH02-92 Instruction Book                               2X6AA07-10 Physical Location Aux Bldg, Level D, Rooms R-D106 & R-D123 P&lD                                            2X4DB118 Surveillance Procedure                          14811-2 Pump Test Loop Diagrams                        ISI-D-277 & ISI-D-278 Test Parameter Sheets                          Page 21-2 & 21-3 0

21 - 1 Rev.O

(4 0 0(./ V Test Parameter Table - Pump 2-1208-P6-006 (Figure ISI-D-277) Instrumentaten Utilized Ref. Acceptable Alert Action Parameter Test Frea. I.D. NoJ3) RanFe Rea. Acc. Value Range Range Range Comments t Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-10115 -15 to +15 12% NA NA NA NA Relief Request RR-P-l (Pi) psig t Outlet  ! Pressure Qtr PI-0113 0-160 12% NA NA NA NA NA i i (Po) _ psig i Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l.10APr NA  ; (AP) Flowrate Qtr FI-40001 0-100 2% Qr NA NA NA Flowrate is set at reference value (Q) gpm , Vib. Amp. Qtr (2) NA i5% Vr 5 2.5Vr > 2.5Vr - 6Vr >6Vr or NA  ; (V)(4) or >.325 in/s >.70 in/s . Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters. j
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial j direction on each accessible thrust bearing housing.  !

21-2 Rev.0  ! t

O O O Test Parameter Table - Pump 2-1208-P6-007 (Figure ISI-D-278) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Frea, LD. NoJ3) RanFe Rea. Acc- Yalue Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver Inlet Pressure Qtr PI-10116 -15 to +15 i2% NA NA NA NA Relief Request RR-P-1 (Pi) psig Outlet Pressure Qtr PI-Oll4 0-160 12% NA NA NA NA NA i (Po) psig i Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l.10APr NA (AP) Flowrate Qtr FI-40001 0-100 12% Qr NA NA NA Flowrate is set at reference value ! (Q) gpm Vib. Amp. Qtr (2) NA i5% Vr s 2.5Vr > 2.5Vr - 6Vr >6Vr or NA i (V)(4) or >.325 in/s >.70 in/s Notes:

1. DilTerential pressure is calculated as, AP = Po - Pi i
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters. i
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial I

direction on each accessible thrust bearing housing. i l 1 t 21 - 3 Rev.0 i

Q) p] L \J NOTE THIS IS A V SIMPLIFIED DIAGRAM USED TO DEPICT A TEST CIRCUIT. REFER TO THE I P&I.D. FOR DETAILS. (x-800) FROM BRS RECYCLE LO LD TD BORIC EVAPORATOR b, 2' Z Z ER Olle

                                                                                                                                                                 @                                      N N

1 X lll 0 l Nl m L1 (1 2ma 1 LO 2, D LO 1N, K: = lI: M  :*: =X 1 e am m I BORIC ACID 000 TRANSFER PUMP LC BORIC ACID 2-1208-P6-006 2* n BORIC ACID FILTER BYPASS 2' STORAGE TANK SEE ISI-D-277 7' TO BORIC ACID BLENDER 2-1208-T4-003 N 3* FUTURE OMCB

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BORIC ACID TRANSFER PUMP r 2-1208-P6-007 N/A N/A ISI-D- 278 1 IT 1 2

                    %                                                                                                                                                              N/                                                                                 ,/

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PUMP INSERVICE TESTING LOOP FOR BORIC ACID TRANSFER PUMP

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2-1208-P6-006 N/A N/A ISI-D- 277 1 (T 1 2

s. 4 , t AFW Pumps (2-1302-P4-001,002 & 003)  : 1/ System Function _ Supply water to the steam generatore whenever the reactor i coolant temperature is above 350'F and the main feedwater system is not in operation, i.e., during startup, cooldown, or  ;

emergency conditions resulting in a loss of main feedwater.  !

c

Automatically provides feedwater for the removal of  :

reactor core decay heat following a loss of main feedwater. ' This prevents damage to the reactor core until the reactor coolant temperature is brought from a Hot Standby ' condition to the point at which RHR may be placed ir.to j operation. l AFW supplies feedwater to the steam generators at a j flowrate sufficient to support normal low-power transients i

                                             -                 such as stanup, cooldown, and hot standby.

4

Turbine Driven AFW Pumo (2-1302-P4-001) j Quantity 1 i

a , 4 Type Horizontal, centrifugal,5 stage, split-case i i y b Manufacturer /Model Ingersoll-Rand, Model 6HMTA i Capacity 1175 gpm l Total Dynamic Head 3500 ft. 1 4 Driver i Type Terry Turbine, Model GS-2N, non-condensing, single-i stage, mechanical drive

,                            Horsepower                       1603 j                             Speed                           4250 rpm Power Supply                    Steam
)

Code Class 3 i I

+

( Project Class 313 4 i Outline Drawing 2X4AF03-88

  !              Instruction Book                            2X4AF03-20031
 !O i

22 - 1 Rev.O I

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

i Turbine Driven AFW Pumn (2-1302-P4-001) (cond A Physical Location lO AFW pump house i V P&ID ~ 2X4DB161-2 I a j Surveillance Procedure 14810-2 ! Pump Test Loop Diagrams i t ISI-D-272 i 4 Test Parameter Sheets Page 22-4  !

                                                                                                                              )

1 I l l l l i l i 22 - 2 Rev.0

Motor-Driven AFW Pumos (2-1302-P4-002 & 003) j Quantity 2 1 !hv Type - f Horizontal, centrifugal, 6 stage, split-case { Manufacturer /Model Ingersoll-Rand, Model 4HMTB Design Flowrate 630 gpm Total Dynamic Head 3500 ft. Driver Type I Westinghouse electric motor, LLD 5810 H Horsepower 900  ! i Speed 3600 rpm Power Supply 4160V,60 Hz,3 phase Code Class 3 Project Class 313 Outline Drawing 2X4AF03-87 Instruction Book 0 Physical Location 2X4AF03-20030 AFW pump house P&ID 2X4DB161-2 Surveillance Procedure 14807-2 I Pump Test Loop Diagrams ISI-D-273 & ISI-D-274 Test Parameter Sheets Page 22-5 & 22-6 l 22 - 3 Rev.O

O O O Test Parameter Table - Pump 2-1302-P4-001 (Figure ISI-D-272) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. LD. No.(3) Range Rea. Acc. Value Range Range Range Comme::ts Speed (N) Qtr SI-15109A 0-6000 12 % Nr NA NA NA Speed is set to reference value Inlet Pressure Qtr PI-5110A 0-30 i2% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr PI-5107A 0-2000 i2% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l .10APr NA (AP) Flowrate Qtr F1-15100 0-200 i2% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. , Amp. Qtr (2) NA 15% Vr 5; 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing. ,

22 -4 Rev.0

_ . . _ . _ . - . _ _ . _ . . . . _ _ _ . . . . _ _ _ _ _ . _ . . . . _ _ _ _ . _ . . . _ . _ _ ~ ._ _ - . _ . _ Test Parameter Table - Pump 2-1302-P4-002 (Figure ISI-D-273) i Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Freq. I.D. No.(3) Rance Req. Acc. Value Ranee Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver [ Inlet Pressure Qtr PI-5128A 0-30 12% NA NA NA NA NA . i (Pi) psig i i Outlet Pressure Qtr PI-5140A 0-2000 12% NA NA NA NA NA i (Po) psig , Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l.10APr NA (AP) 1 I Flowrate Qtr FI-15101 0-200 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (2) NA 15% Vr 5 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s r Notes: l

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.  ;
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearmg housing and in the axial i direction on each accessible thrust bearing housing.

22-5 Rev.0 ,

o o o Test ParameterTable - Pump 2-1302-P4-003 (Figure ISI-D-274) Instrumentation Utili=1 Ref. Acceptable Alert Action Parameter Test Frea. LD.No.01 Range Reg. Acc. Value Raare Range Rance Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver i inlet i Pressure Qtr PI-5129A +10 12% NA NA NA NA NA - (Pi) pug Outlet Pressure Qtr PI-5141 A 0-2000 12% NA NA NA NA NA i  : (Po) psig j Differ. [ Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l.10APr NA  ; (AP)  ; Flowrate Qtr F1-15102 0-200 12% Qr NA NA NA Flowrate is set at reference value I (Q) gpm  ; Vib. Amp. Qtr (2) NA i5% Vr 52.5Vr > 2.5Vr - 6Vr >6Vr or NA i (V)(4) or >.325 in/s >.70 in/s f r Notu: l

1. Di Terential pressure is calculated as, AP = Po - Pi
2. Po: table vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.  ;
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.  ;

L 22 - 6 Rev.0 i _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ .___m_____ .___ _ . _ . _ - . , _ _ . . . .. . -. -. - - .

(S (g g N N LD 2.5" CONDENSATE CONDENSATE TE 15 9 510 LD 3*X2 1/2" 2.5" 5175 FROM MAIN , i STORAGE TANK STORAGE TANK ## MEM 2-1302-V4-002 _ 2-1302-V4-001  ;, sy $ 0 15133 sg g OMCB p 'c3 7, 5 0 5 3 5110A

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AUX FEEDVATER 0 W

            -@0                      HV HS 5113                   PUMP TURBINE 2-1302-P4-001-K01 10' / XI T FEEDVATER PUMP AUX cu   cu             -

NOTE THIS'IS A SIMPLIFIED DIAGRAM 3[ 5113 TD FV 8[_- USED TO DEPICT A TEST , (U5T) ATMOSPHERE CIRCUIT. REFER TO THE ' T 10' 5154

                                              'N '                       QMCB                                                                   H                                                     M   5140                                                                                         2 1/2*X2'
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HV HV 128 MCB 5094  ! (UDD g (UM) Sj[_5098 8' g 8 8' j 4, lll , , HV LD m 2-1302-P4-002 $ 5118 X FV 8 - 2' FEED ATER g, PUMP 5035 5155 y 1 [

                                         ;            '     =                                                                                                                                                                                                                                                                   3 OMC HV 5092--

QMCB HS 131A Q 5141A 2 1/2*X2* ,2 ' ( HV I9 5095 , y[ g HV -- 5099 U O 8* 8'X6' 3 4'

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_ D _)AUX FEEDVATER '\ h_jh f4k0 " r n 0 HS AUX n; ni HV PUMP TURBINE 10' XI FEEDVATER NOTEi THIS ilS A 5113 -1302-P4-001-K01 TO SIMPLIFIED DIAGRAM Sjd, 5113 PUMP $ n[_ FV S USED TO DEPICT A TEST l 10' @ ATMOSPHERE 5154 CIRCUIT. REFER TO THE QMCB H p1 ] [

                                              'N                                                                                                                                                                                                                      'FROM CHEM.

HV HV 128 2MCB @ 1/2'X2' e' INJFCTION 5094 GED A @ 3[5098 q7 8'

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5118 FEED ATER \ I FV 5155 S m 2' PUMP 1 [ 1! HV 8, i

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QMC M OMCB p 2 1/2*X2' 2~ MCB 131 I HV 5141A 5092--o 5129 _' HV -_J 5095 4, g 5099 N , 8' 8'X6' W I DA' - e B p 0 7 (DUT) l LO

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                                                                                                                                                                                                                                                                                  "                ==   =c V0GTLE ELECTRIC GENERATING PLANT 't='           ""'                    == vs UNIT 2 PUMP INSERVICE TESTING LOOP
                                                                                                                                                                                                                                                                                      -,         $"      ,7r   mv  .

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ESF Pumps (2-1592-P7-001, & 002) System Function

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During nonnal operation, the ESF chilled-water system is in standby mode; it is activated during emergency conditions upon receipt of a safety injection signal, containment ventilation isolation, or control room isolation signal. The

                                                                . ESF chilled-water system serves air handling units located in the safety-related areas of the plant to ensure the integrity of the cooling system during plant emergency situation.

Quantity 2 Type Centrifugal Manufacturer Goulds Capacity 600 gpm TotalDynamic Head 125 ft. Driver Type Westinghouse electric motor Horsepower O Speed Power Supply 30 1800 rpm 480V,60 Hz,3 phase j Code Class 3

             - Project Class                                     313                                                                '

Outline Drawing 2X4AJ05-28 Instruction Book AX4AJ05-86 Physical Location Control Bldg, EL 260 ft., Rooms R-310 & R-308 P&ID 2X4DB221 Surveillance Procedure 14809-2 Pump Test Loop Diagrams ISI-D-275 & ISI-D-276 Test Parameter Sheets Page 23-2 & 23-3 O 23 - 1 Rev.0

I O O O Test Parameter Table - Pump 2-1592-P7-001 (Figure ISI-D-275) Instrumentation Utilized Ref. Acceptable Alert Action Parameter Test Frea. 1.D. NoJ3) Range Rea. Acc. Yalut Range Range Range Comments Speed (N) NA NA NA NA NA NA NA NA Constant speed driver inlet Pressure Qtr PI-22410 0-30 12% NA NA NA NA NA (Pi) psig Outlet Pressure Qtr PI-22414 0-200 12% NA NA NA NA NA i (Po) psig Differ. Pressure Qtr NA(1) NA 12% APr .90 - 1.10APr NA <.90 or >l.10APr NA (AP) Flowrate Qtr F1-22425 0-750 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm Vib. Amp. Qtr (2) NA iS% Vr 5 2.5Vr > 2.5Vr - 6Vr >6Vr or NA (V)(4) or >.325 in/s >.70 in/s Notes:

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial direction on each accessible thrust bearing housing.

23 - 2 Rev.O

O O O Test Parameter Table .- Pump 2-1592-P7-002 . (Figure ISI-D-276) , Instrumentatian Utili=d Ref. Acceptable Alert Action I.D. No.f3) Range Req. As Value Range Range Range Comments  ; Parameter Iest Frea. Speed NA NA NA NA NA NA NA NA Constant speed driver . (N) Inlet ' Pressure Qtr PI-22411 0-30 12% NA NA NA NA NA (Pi) psig Outlet  ; PI-22415 0-200 12% NA NA NA NA NA Pressure Qtr (Po) psig Differ. Pressure Qtr NA(1) NA i2% APr .90 - 1.10APr NA <.90 or >l.10APr -' NA (AP) Flowrate Qtr FI-22426 0-750 12% Qr NA NA NA Flowrate is set at reference value (Q) gpm

       ' Vib.                                                                                                                                                                                                                                                           I Amp.                                                                      Qtr        (2)          NA           i5%'       Vr               s 2.5Vr               > 2.5Vr - 6Vr >6Vr or             NA or >.325 in/s >.70 in/s                                                                        ;

(V)(4) i Notes: [

1. Differential pressure is calculated as, AP = Po - Pi
2. Portable vibration instruments are utilized.
3. At the discretion of SNC, instrumentation other than that listed, which meets the requirements of the OM Code, may be utilized for measuring test parameters.
4. Measurements are taken in a plane approximately perpendicular to the rotating shaft in two orthogonal directions on each accessible pump-bearing housing and in the axial  !
           ' direction on each accessible thrust bearing housing.                                                                                                                                                                                                       !

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23 - 3 Rev.0 [ t

O O O NOTE: 1. THIS IS A SIMPLIFIED EXPANSION DIAGRAM USED TO DEPICT TANK HVC A TEST CIRCUIT. REFER S 2-1592-T7-001 TO THE Pt.ID FOR 2240 P2412 DETAILS. C 2240 1, ( 2. VALVE INTERNALS REMOVED PER DCP IhA D 90-V2N0068-0-1 f CHEMICAL SDA TI FI

                                                                        "'        FEED PDT.

D 242 m p ,.@ @ t 9 02 PI TI 22 1 1 P 44 2241 22410 5032 9 L N, 1/2' C fl N 6*X4'  !! N 'sm dEVAP.l E @CB ESF CHILLER EMERGENCY MAKEUP VATER g* I 2' 6' I/2' 2-1592-C 7-001-000 m, Ci r 5030 EC' HV Sd k 240 CB ESF CHILLED 242 fl 10' VATER PUMP I f Y 2-1592-P7-001-000 (10* 10'% D PROJ. CLASS 313 E' _ TRAIN 'A' 6'

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COOLING COILS

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9 WS-te M vs 133E3 FtB PIT *]

se-as ca. ets woms is eva er enma -_C bS E E C .1" b Southern Company Services, Inc. FOR Southern Nuclear Operating Company V0GTLE ELECTRIC GENERATING PLANT smeen n mm. =

UNIT 2 = === vs

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PUMP INSERVICE TESTING LOOP -a "EC' x, o FOR CB ESF CHILLED VATER PUMP TRAIN 'A' 2-1592-P7-001-000 N/A N/A ISI-D- 275 1 IT I 3

O O O NOTE 1. THIS IS A SIMPLIFIED EXPANSION DIAGRAM USED TO DEPICT TANK C A TEST CIRCUIT. REFER S 2-1592-T7-00E TO THE P&lD FOR 2240 2413 DETAILS. C 2. VALVE INTERNALS I, 22401 REMOVED PER DCP IA 90-V2N0068-0-1 j pD CHEMICAL SDB TI FI 7' D FEED POT. 243 4 shmn,. t 9 De (U57) g PI g HV TI 243 ' 2441 pg 22411 b $d L

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                                                       l mir LC'                                              [HV       $d k            CB ESF CHILLED                                                                                                                                                                                                                    242 fl             2240                       VATER PUMP 10'                                 2-1592-P7-002-000                                                                                                                                                                                                                                 I I 10'     10'                                 PROJ. CLASS 313 b'                          _                                                                                        TRAIN 'B'                                                                                                                                         6'                       ;
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CDOLING COILS av. an r, o.c, er _ . .,,. i u -, 2 . . . 9 W BE WS 1EstKB f1R PtY I s-as-ee et us a trairra in svm er asesora - JC s 'Ae- M "w2 "'E ~ ' Southern Company Services, Inc. FOR Southern Nuclear Operating Company VDGTLE ELECTRIC GENERATING PLANT 8m"* " " UNIT 2 " ""*v5 PUMP INSERVICE TESTING LOOP " ,,aa. 527 x, . FOR CB ESF CHILLED VATER PUMP TRAIN 'B' 2-1592-P7-002-000 N/A N/A ISI-D- 276 1 [F 1 3

PUMP RELIEF REQUEST LOG Relief Reauest Number Status RR-P-1 Submitted for NRC Review. RR-P-2. Submitted for NRC Review. RR-G-1 Submitted for NRC Review. RR-G-2 Submitted for NRC Review. i t O O 24-1 Rev.0

                                             .                 =

PUMP RELIEF REQUEST RR-P-1 2 SYSTEM: Chemical Volume and Control System (CVCS) PUMPS: Boric Acid Transfer i s 1-1208-P6-006 and -007 and 2-1208-P6-006 and -007 l CLASS: 3 i ) TEST I ! REQUIREMENT. i j ISTB 4.7.1(b)(1) requires the full scale range of analog instmments to be l i not greater than three times the reference value. l j BASIS FOR RELIEF: i Suction pressure gages PI-10115 and PI-10116 have a full scale range ol [ 30 inches of mercury to 15 psig, or -15 psig to 15 psig with an accuracy l i ofi0.15 psig. Since pressure readings when the pump is running will i l always be positive, the range ofinterest for IST is 0 - 15 psig. The l j actual suction pressure experienced during surveillance testing is '

approximately 2 psig which results in a maximum allowable range of 0 -

6 psig to satisfy the Code requirements. The Code allowable tolerance l j j would be 10.12 psig (0.02 x 6). Since the only purpose for measuring i suction pressure is to use in determining differmtial pressure, for t comparison to the test reference value, a total difference of 0.03 (0.15 - ' 0.12) psig in the measurement of differential pressure will have no impact on the repeatability or adequacy of the pump test. Therefore, the { existing suction pressure gages provide adequate means for measuring j the pump suction pressure and do not jeopardize the adequacy of the testing being performed. 1 ALTERNATE i TESTING: ) None. The existing suction pressure gages will be utilized for IST of the  ! referenced pumps. l l l l l I l O i 24-2 Rev.O i l 1 1

~ , PUMP RELIEF REQUEST RR-P-2

SYSTEM-Allincluded in scope ofIST Program PUMPS

j Allincluded in scope ofIST Program , CLASS: 2 and 3 I TEST

REQUIREMENT:

! ISTB 6.1 - If deviations fall within the required action range of Table ISTB 5.2-1, the pump shall be declared inoperable until the cause of the l 2 deviation has been determined and the condition corrected BASIS FOR RELIEF: The ASME Section XI Code,1989 Edition, subsection IWP-3230(c) states that; ! " Corrective action shall be either replacement or repair per IWP-3111, or i shall be an analysis to demonstrate that the condition does not impair i pump operability and that the pump will still fulfill its function. A new 4 set of reference values shall be established after such analysis." l The both 6.2.2) OMc-1994 state that; Addenda (ISTB 6.2.2) and the OM 1995 ed i {(

"If the measured test parameter values fall within the required action I_ range of Table 5.2.1-1, Table 5.2.1-2, Table 5.2.2-1, or Table 5.2.3-1, as i applicable, the pump shall be declared inoperable until either the cause of

! the deviation has been determined and the condition corrected, or an l analysis of the pump is performed and new reference values are l 1 established in accordance with ISTB 4.6." l l The Code applicable for the first intervalIST Program (1983 ASME XI), and the latest issued Code both provide for analysis of pump test data in i lieu of repair or replacement of the pump if the test parameters fall within 4  ! the required action range. The OM Code-1990 Edition did not include such provisions.  ! Communications with members of the OM Code Committee indicate that this was an oversight and that it was never intended to delete the ability to analyze the test data and determine if the i pump is still capable of performing its intended safety function. 4 ALTERNATE TESTING: Should pump test parameters fall within the required action range of Table ISTB 5.2-2 (OM Code 1990 Edition), then the OM Code 1995 Edition, subsection ISTB 6.2.2 will be utilized. Since subsection ISTB 4.6 in the 1995 Code Edition references ISTB 6.2.2, subsection ISTB 4 4.6 from the OM Code 1995 Edition will also be applied. L 24-3 Rev.O

GENERAL RELIEF REQUEST p y RR-G-1 SYSTEMS: Allin Scope ofIST Program VALVES: Allin Scope ofIST Program I PUMPS: Allin Scope 7 FIST Program CLASS: 1,2 and 3 TEST REQUIREMENT: The version of 10CFR50 in effect on May 31,1996, paragraph 50.55a(b)(2) ) specifies the applicable Code to be the ASME XI,1988 Addenda through 1989 ) Edition. The 1989 Edition of ASME XI references OM part 6 and 10 for

                                                                                                                    ~

inservice pump and valve testing respectfully. Paragraph 50.55a(b)(2)(viii) of the CFR specifies the Code applicable to inservice pump and valve testing to be the ASME/ ANSI part 6 and ASME/ ANSI part 10 of the OMa-1988 Addenda to the OM-1987 Edition. BASIS FOR 4 RELIEF: The ASME/ ANSI OM document was issued as a Code with the ASME OM  ! Code-1990 Edition. This edition was amended with the OMa Code-1991 l Addenda, the OMb Code-1992 Addenda, and the OMc Code-1994 Addenda. ' The ASME OM Code-1995 Edition was issued in early 1995. With each addenda and edition of the ASME OM Code, the ASME OM Code Committee pg has included updated inservice testing requirements based on improved V knowledge, operating history and experience and changes in testing technology. , Beginning with the ASME OM Code-1990 Edition, the format of the document  ! was also changed to read like a Code instead of a standard as it was initially drafted. Therefore, application oflater versions of the ASME OM Code, than specified in 10CFR50, should enhance the quality of the IST Program. i ALTERNATE TESTING: The ASME OM Codes utilized for update of the Vogtle Inservice Testing Program shall be: IST of Valves (except safety / relief valves)- ASME OM Code-1990 Edition IST of Pumps - ASME OM Code-1990 Edition IST of Safety / Relief Valves - ASME OM Code 1995 Edition (ASME OM Code-1995 Edition, Appendix I, augments the rules of Stabsection ISTC 4.4.) The NRC previously approved use of the above referenced Codes in a letter dated November 27,1996. This relief request is identical to RR-G-1 included in the IST Valve Program. yQ F 24-4 Rev. O

l GENERAL RELIEF REQUEST RR-G-2 < l SYSTEMS: Allin Scope of Unit 2 IST Program VALVES: Allin Scope of Unit 2 IST Program PUMPS: Allin Scope of Unit 2 IST Program CLASS: 1,2 and 3 TEST 1 REQUIREMENT: The version of 10CFR50 in effect on May 31,1996, paragraph 50.55a(f)(4)(ii), specifies that inservice testing to verify operational readiness of pumps and valves required for. safety, conducted during successive 120-month intervals must comply with the requirements of the latest edition and addenda of the Code incorporated by reference in paragraph 10CFR50.55a(b) 12 months prior to the start of the 120-month interval. BASIS FOR RELIEF: The commercial operation date for Vogtle Unit I was May 31,1987. The commercial operation date for Vogtle Unit 2 was May 20,1989. Maintaining both units on the same interval schedule allows both IST programs to be developed utilizing the same edition of the applicable Codes, will make it easier for involved personnel to become familiar with the Code requirements, will ensure a greater degree of consistency for IST between the units, and will O- reduce the cost associated with surveillance arocedure revisions for the program update and for maintenance of the program c ocuments. ALTERNATE. TESTING: Update the Vogtle Nuclear Plant Unit 2 IST Program concurrent with the Unit I second 10-year interval IST Program update due on May 31,1997. The Unit 2 IST Program will be updated concurrent with the Unit 1 IST Program in accordance with the applicable regulations for the remainder of the plant life. The NRC previously approved use of the above referenced Codes in a letter dated November 27,1996. This relief request is identical to RR-G-1 included in the IST Valve Program. i 4 1 i O l l 4 24-5 Rev. O i - - 1}}