ML21070A182
| ML21070A182 | |
| Person / Time | |
|---|---|
| Site: | Susquehanna |
| Issue date: | 02/26/2021 |
| From: | Susquehanna |
| To: | Office of Nuclear Reactor Regulation |
| References | |
| DT 2021-3078 | |
| Download: ML21070A182 (29) | |
Text
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.Lo O I L. U.L..L MANUAL HARD COPY DISTRIBUTION-DOCUMENT TRANSMITTAL 2021-3078 USER INFORMATION:
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542-3194 EMPL#: 028401 CA#:
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TO:
GERLACH*ROSEY M 02/26/2021 LOCATION:
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of 2
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Title:
TECHNICAL REQUIREMENTS -MANUAL TINIT 2 -
Table Of Contents Issue Date:
02/25/2021 Procedure Name Rev Issue Date Change ID Change Number TEXT LOEB 99 01/03/2019
Title:
LIST OF EFFECTIVE SECTIONS TEXT TOC 27 03/05/2019
Title:
TABLE OF CONTENTS TEXT 1.1 0
11/19/2002
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USE AND APPLICATION DEFINITIONS TBXT 2.1 1
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10/12/2020
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REACTIVITY CONTROL SYSTEMS CONTROL ROD SCRAM ACCUMULATORS INSTRUMENTATION AND CHECK VALVE TEXT 3.2.1 18 11/30/2020
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03/31/2011
Title:
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11/09/2007
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11/10/2015
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10/22/2003
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05/14/2009
Title:
INSTRUMENTATION LPRM UPSCALE ALARM INSTRUMENTATION TEXT 3.3.10 1
12/14/2004
Title:
INSTRUMENTATION REACTOR RECIRCULATION PUMP MG SET STOPS TEXT 3.3.11 1
10/22/2003
Title:
INSTRUMENTATION MVP ISOLATION INSTRUMENTATION TEXT 3.3.12 2
04/02/2019
Title:
WATER MONITORING INSTRUMENTATION Page 2 of 15 Report Date: 02/26/21
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04/16/2009
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11/09/2007
Title:
REACTOR COOLANT SYSTEM REACTOR COOLANT SYSTEM (RCS)
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05/14/2009
Title:
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04/26/2006
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04/25/2013
Title:
REACTOR RECIRCULATION SINGLE LOOP OPERATION SLO FLOW RATE RESTRICTION TEXT 3.5.1 2
03/05/2019
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ECCS RPV WATER INVENI'ORY CONTROL AND RCIC SYSTEM ADS MANUAL INHIBIT TEXT 3.5.2 2
03/05/2019
Title:
E,CCS RPV WATER INVENTORY CONTROL AND RCIC SYSTEM ECCS RPV WATER INVENTORY CONTROL AND RCIC MONITORING INSTRUMENTATION TEXT 3.5.3 1
03/05/2019
Title:
ECCS RPV WATER INVENI'ORY CONTROL AND RCIC SYSTEM LONG TERM NITROGEN SUPPLY TO ADS TEXT 3.6.1 0.. 11/19/2002
Title:
CONI'AINMENT VENTING OR PURGING TEXT 3.6.2 3
01/03/2019
Title:
SUPPRESSION CHAMBER TO DRYWELL VACUUM BREAKER POSITION INDICATION TEXT 3.6.3 0
11/19/2002
Title:
CONI'AINMENT SUPPRESSION POOL ALARM INSTRUMENTATION Page 3 of 15 Report Date: 02/26/21
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Title:
TECHNICAL REQUIREMENTS MANUAL UNIT 2 TEXT 3.6.4 0
11/19/2002
Title:
CONTAINMENT PRIMARY CONTAINMENT CLOSED SYSTEM BOUNDARIES TEXT 3.7.1 0
11/19/2002
Title:
PLANT SYSTEMS EMERGENCY SERVICE WATER SYSTEM (ESW) SHOTDOWN TEXT 3.7.2 0
11/19/2002 1
Title:
PLANT SYSTEMS ULTIMATE HEAT SINK (UHS) AND GROUND WATER LEVEL TEXT 3.7.3.1 6
02/13/2020
Title:
PLANT SYSTEMS FIRE SUPPRESSION WATER SUPPLY SYSTEM TEXT 3.7.3.2 3
04/16/2009
Title:
PLANT SYSTEMS SPRAY AND SPRINKLER SYSTEMS 1:'EXT 3.7.3.3 4
05/16/2016
Title:
PLANT SYSTEMS CO2 SYSTEMS TEXT 3.7,3.4 2
04/16/2009
Title:
PLANT SYSTEMS HALON SYSTEMS TEXT 3.7.3.5 2
04/16/2009
Title:
PLANT SYSTEMS FIRE HOSE STATIONS TEXT 3.7.3.6 2
04/16/2009
Title:
PLANT SYSTEMS YARD FIRE HYDRANTS AND HYDRANT HOSE HOUSES TEXT 3.7.3.7 1
04/26/2006
Title:
PLANT SYSTEMS FIRE RATED ASSEMBLIES TEXT 3.7.3.8 14 12/18/2017
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PLANT SYSTEMS MAIN CONDENSER OFFGAS EXPLOSIVE GAS MIXTURE TEXT 3.7.5.3 1
04/26/2006
Title:
PLANT SYSTEMS LIQUID HOLDUP TANKS TEXT 3.7.6 3
06/04/2012
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PLANT SYSTEMS ESSW PUMPHOUSE VENTILATION TEXT 3.7.7 2
09/05/2008
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02/04/2005
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11/14/2013
Title:
ELECTRICAL POWER DEGRADED VOLTAGE PROTECTION TEXT 3.8.6 3
03/05/2019
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ELECTRICAL POWER EMERGENCY SWITCHGEAR ROOM COOLING TEXT 3.8.7 3
02/25/2021
Title:
BATTERY MAINTENANCE AND MONITORIN.G PROGRAM t'EXT 3.9.1 0
11/19/2002
Title:
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11/19/2002
Title:
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03/12/2019
Title:
REFUELING OPERATIONS REFUELING PLATFORM TEXT 3.10.1 1
04/26/2006
Title:
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04/09/2007
Title:
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04/26/2006
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04/26/2006
Title:
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10/09/2012
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03/05/2015
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Title:
RADIOACTIVE EFFLUENTS DOSE RATE TEXT 3.11.2.2 1
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04/26/2006
Title:
RADIOACTIVE EFFLUENTS INTERLABORATORY COMPARISON PROGRAM TEXT 3.12.1 0
11/19/2002
Title:
LOADS CONTROL PROGRAM CRANE TRAVEL-SPENT FUEL STORAGE POOL TEXT 3.12.2 4
04/17/2008
Title:
LOADS CONTROL PROGRAM HEAVY LOADS REQUIREMENTS
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11/19/2002
Title:
LOADS CONTROL PROGRAM LIGHT LOADS REQUIREMENTS TEXT 4.1 0
09/27/2003
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01/03/2019
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01/03/2019
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09/27/2003
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09/27/2003
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09/27/2003
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03/05/2015
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04/29/2014
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11/19/2002
Title:
REACTIVITY CONTROL SYSTEM BASES CONTROL ROD DRIVE (CRD) HOUSING SUPPORT TEXT B3.l.3 4
12/18/2017
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01/31/2014
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11/09/2007
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10/22/2003
Title:
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01/03/2019
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02/22/2012
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10/22/2003
Title:
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11/19/2002
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04/16/2009
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11/09/2007
Title:
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01/03/2019
Title:
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11/19/2002
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03/17/2020
Title:
ECCS RPV WATER INVENTORY CONTROL AND RCIC SYSTEM ADS MANUAL INHIBIT TEXT B3.5.2 2
03/05/2019
Title:
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03/05/2019 I
Title:
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04/19/2007
Title:
CONTAINMENT BASES SUPPRESSION POOL ALARM INSTRUMENTATION TEXT B3.6.4 1
12/14/2004
Title:
CONTAINMENT BASES PRIMARY CONTAINMENT CLOSED SYSTEM BOUNDARIES TEXT B3.7.1 0
11/19/2002
Title:
PLANT SYSTEMS BASES EMERGENCY SERVICE WATER SYSTEM (SHUTDOWN)
TEXT B3.7.2 0
11/19/2002
Title:
PLANT SYSTEMS BASES ULTIMATE HEAT SINK_ (UHS) GROUND WATER LEVEL TEXT B3.7.3.1 4
02/16/2017
Title:
PLANT SYSTEMS BASES FIRE SUPPRESSION WATER SUPPLY,SYSTEM TEXT B3.7.3.2 2
04/26/2006
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11/19/2002
Title:
PLANT SYSTEMS BASES CO2 SYSTEMS TEXT B3.7.3.4 3
06/19/2019
Title:
PLANT SYSTEMS BASES HALON SYSTEMS TEXT B3.7.3.5 1
04/26/2006
Title:
PLANT SYSTEMS BASES FIRE HOSE STATIONS TEXT B3.7.3.6 1
04/26/2006
Title:
PLANT SYSTEMS BASES YARD FIRE HYDRANTS AND HYDRANT HOSE HOUSES TEXT B3.7.3.7 0
11/19/2002
Title:
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09/27/2012 Title, PLANT SYSTEMS BASES FIRE DETECTION INSTRUMENTATION TEXT B3.7.4 0
11/19/2002
Title:
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11/19/2002
Title:
PLANT SYSTEMS BASES MAIN CONDENSER QFFGAS HYDROGEN MONITOR I
TEXT B3.7.5.2 0
11/19/2002
Title:
PLANT SYSTEMS BASES MAIN CONDENSER OFFGAS EXPLOSIVE GAS MIXTURE TEXT B3.7.5.3 0
11/19/2002
Title:
PLANT SYSTEMS BASES LIQUID HOLDUP TANKS TEXT B3.7.6 4
06/04/2013 Title, PLANT SYSTEMS BASES ESSW PUMPHOUSE VENTILATION TEXT B3.7.7 2
01/31/2008
Title:
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Title:
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01/31/2014
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03/05/2019 Titl~: PLANT SYSTEMS BASES CONTROL STRUCTURE HVAC TEXT B3.7.10 1
12/14/2004
Title:
PLANT SYSTEMS BASES SPENT FUEL STORAGE POOLS TEXT B3.7.11 3
11/01/2018
Title:
STRUCTURAL INTEGRITY TEXT B3.8.1 2
03/10/2010
Title:
ELECTRICAL POWER BASES PRIMARY CONTAINMENT PENETRATION CONDUCTOR OVERCURRENT PROTECTIVE DEVICES 0
11/19/2002
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Title:
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09/17/2004
Title:
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11/19/2002
Title:
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11/19'/2002
Title:
ELECTRICAL POWER;BASES 24 VDC ELECTRICAL POWER SUBSYSTEM TEXT B3.8.5 1
11/14/2013
Title:
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03/05/2019
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Title:
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02/25/2021
Title:
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'llanual Tii;:le: TECHNICAL REQUIREMENTS MANUAL UNIT 2 TEXT B3.9.1 0
11/19/2002
Title:
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11/19/2002
Title:
REFUELING OPERATIONS BASES COMMUNICATIONS TEXT B3.9.3 1
03/12/2019
Title:
REFUELING OPERATIONS BASES REFUELING PLATFORM TEXT B3.10.1 0
11/19/2002
Title:
MISCELLANEOUS BASES SEALED SOURCE CONTAMINATION TEXT B3.10.2 1
04/10/2007
Title:
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10/17/2019 Title,: MISCELLANEOUS BASES INDEPENDENT SPENT FTIEL STORAGE INSTALLATION ( ISFSI)
TEXT B3. 11. 1. 1 1
05/10/2016
Title:
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11/19/2002
Title:
RADIOACTIVE EFFLUENTS BASES LIQUID EFFLUENTS DOSE TEXT B3. 11. 1. 3 0
11/19/2002
Title:
RADIOACTIVE EFFLUENTS BASES LIQUID WASTE TREATMENT SYSTEM TEXT B3. 11. 1. 4 0
11/19/2002
Title:
RADIOACTIVE EFFLUENTS BASES LIQUID RADWASTE EFFLUENT'MONITORING INSTRUMENTATION TEXT B3.11.1. 5 0
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Rev. 3 Battery Monitoring and Maintenance Program 3.8.7 3.8 ELECTRICAL POWER 3.8. 7 Battery Monitoring and Maintenance Program TRO 3.8.7 Battery cell parameters for the Class 1 E 250 V batteries and Class 1 E 125 V batteries shall be within limits.
APPLICABILITY:
When associated DC electrical power subsystems are required to be OPERABLE.
ACTIONS
NOTE Separate Condition entry is allowed for each battery.
CONDITION REQUIRED ACTION COMPLETION TIME A. One or more batteries A.1 Verify pilot cell electrolyte 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> with one or more battery level and float voltage meet cell pararne1ers not within Table 3.8.7-1 Categqry B Category A limits.
limits.
AND A.2 Verify battery cell 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> parameters meet Table 3.8.7-1 Category B AND limits.
Once per 7 days thereafter AND A.3 Restore battery cell 31 days parameters to Category A limits of Table 3.8.7-1.
B. Required Action A.1 or 8.1 Enter TS 3.8.6.
Immediately A.2 and associated Completion Time for Condition A not met.
SUSQUEHANNA - UNIT 2 TRM / 3.8-26
Rev. 3 ACTIONS ( continued)
CONDITION C. Required Action A.3 and associated Completion Time for Condition A not met.
D. Entry into TS 3.8.6 Condition C with electrolyte level below the top of the plates.
SUSQUEHANNA - UNIT 2 C.1 D.1 AND Battery Monitoring and Maintenance Program 3.8.7 REQUIRED ACTION COMPLETION TIME Declare associated battery Immediately inoperable.
Apply equalizing charge to 31 days battery/or affected cell.
Verify affected cell meets Table 3.8.7-1 Category A and B limits for float voltage and temperature.
TRM / 3.8-27
Rev. 3 ACTIONS (continued)
CONDITION E. Required Action D.1 and associated Completion Time for Condition D not met.
OR One or more batteries on one 125 VDC electrical power su~ystem or on one 250 VDC electrical power subsystem with average electrolyte temperature less than the Table 3.8.7-1 Category B Limits.
OR One or more batteries on one 125 VDC electrical
_p})Wer subsystem_ or on_
one 250 VDC electrical power subsystem with connection resistance
~ 100.0 E-6 ohms for any single connection or the calculated average resistance for the battery is> 50.0 E-6 ohms.
SUSQUEHANNA - UNIT 2 E.1 Battery Monitoring and Maintenance Program 3.8.7 REQUIRED ACTION Declare associated battery inoperable.
TRM / 3.8-28 COMPLETION TIME Immediately
Rev. 3 Battery Monitoring and Maintenance Program 3.8.7 TECHNICAL REQUIREMENT SURVEILLANCE SURVEILLANCE TRS 3.8.7.1 Verify for each terminal and connector No visible corrosion OR
- a. s 50.0 E-6 ohms; OR
- b. s 100.0 E-6 ohms with the calculated average resistance for the battery < 50.0 E-6 ohms.
FREQUENCY 92 days TRS 3.8.7.2 Verify average electrolyte temperature (minimum of 10%
92 days of cells) is within Table 3.8.7-1 Category A limits.
TRS 3.8. 7.3 Verify the average of the specific gravity (corrected for 48 months temperature) of all the connected cells is > 1.195 and no cell more than 0.020 below the average.
TRS 3.8.7.4 Verify battery cells, cell plates, and racks show no visual 48 months indication of physical damage or abnormal deterioration that could potentially degrade battery performance.
TRS 3.8.7.5 Verify the battery connection resistance is:
48 months
- a. < 100.0 E-6 ohms for any single connection;
- b. The calculated average resistance for the battery is
< 50.0 E-6 ohms.
SUSQUEHANNA - UNIT 2 TRM / 3.8-29
~
Rev. 3 Battery Monitoring and Maintenance Program 3.8.7 Table 3.8.7-1 (page 1 of 1)
Battery/Battery Cell Parameter Requirements CELL PARAMETER CATEGORY A:
CATEGORYB:
LIMITS FOR EACH ALLOWABLE LIMITS FOR CONNECTED CELL EACH CONNECTED CELL Electrolyte Level
~ Minimum level indication Above top of plates, and mark, and not overflowing s 1/4 inch above maximum level indication-mari<<a>
~ 2.13 V
~ 2.07 V Cell Temperature
~ 60 Degrees F
~ 60 Degrees F (a) It is acceptable for the electrolyte level to temporarily increase above the specified maximum level during and immediately following equalizing charges provided it is not overflowing.
SUSQUEHANNA - UNIT 2 TRM / 3.8-30
Rev. 3 B 3.8 83.8.7 BASES ELECTRICAL POWER Battery Monitoring and Maintenance Program B 3.8.7 Battery Monitoring and Maintenance Program BACKGROUND This TRO delineates the limits on electrolyte temperature, electrolyte level, float voltage, and specific gravity for the Unit 1, when common loads are aligned, and Unit 2 DC electrical power subsystems batteries and comprises the "Battery Monitoring and Maintenance Program" as required under Technical Specification 5.5.13. A discussion of these batteries and their OPERABILITY requirements is provided in the Bases for Technical Specification LOO 3.8.4, "DC Sources-Operatingt and LCO 3.8.5, "DC Sources-ShutdoVJ11."
APPLICABLE The initial conditions of Design Basis Accident (OBA) and transient SAFETY ANALYSES analyses in FSAR, Chapter 6 (Ref. 1) and Chapter 15 (Ref. 2), assume Engineered Safety Feature systems are OPERABLE. The DC electrical power subsystems provide normal and emergency DC electrical power for the diesel generators (DGs), emergency auxiliaries, and control and switching during all MODES of operation.
TRO The OPERABILITY of the DC subsystems is consistent with the initial assumptions of the accident -analyses and is based upon meeting the design basis of the unit. This includes maintaining DC sources identified in Technical Specification Table 3.8.4-1 OPERABLE during accident conditions, in the event of:
- a.
An assumed loss of all offsite AC or all onsite AC power; and
- b.
A worst case single failure.
Since battery cell parameters support the operation of the DC electrical power subsystems, they satisfy Criterion 3 of the NRG Policy Statement (Ref. 3).
Battery cell parameters must remain within acceptable limits to ensure availability of the required DC power to shut down the reactor and maintain it in a safe condition after an anticipated operational occurrence or a postulated OBA.
Electrolyte limits are conservatively established, allowing continued DC electrical system function even with Category A limits not met.
SUSQUEHANNA - UNIT 2 TRM / B 3.8-18
Rev. 3 BASES APPLICABILITY ACTIONS Battery Monitoring and Maintenance Program B 3.8.7 The battery cell parameters are required solely for the support of the associated DC electrical power subsystem. Therefore, battery cell parameters are required to be within required limits only when the associated DC power source is required to be OPERABLE. Refer to the Applicability discussions in Technical Specification Bases for LCO 3.8.4 and LCO 3.8.5.
A Note has been added to provide clarification that, for the purpose of this TRO, separate Condition entry is allowed for each battery. This is acceptable, since the Required Actions for each Condition provide appro-priate compensatory actions for each inoperable battery. Complying with the Required Actions may allow for continued operation, and subsequent inoperable batteries are governed by subsequent Condition entry and application of associated Required Actions.
A 1, A2, and A.3 With parameters of one or more cells in one or more batteries not within Category A limits but within the Category B limits specified in Table 3.8.7-1, the battery is degraded but there is still sufficient capacity to perform the intended function. Therefore, the affected battery is not required to be considered inoperable solely as a result of Category A limits not met and continued operation is permitted for a limited period.
The pilot cell electrolyte level and float voltage are required to be verified to meet the Category B limits within 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> (Required Action A 1 ). This check provides a quick indication of the status of the remainder of the battery cells. One hour provides time to inspect the electrolyte level and to confirm the float voltage of the pilot-cell. One hour is considered a reasonable amount of time to perform the required verification.
Verification that the Category B limits are met (Required Action A2) provides assurance that during the time needed to restore the parameters to the Category A limits, the battery is still capable of performing its intended function. A period of 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> is allowed to complete the initial verification because average temperature measurement must be obtained for the battery. Taking into consideration both the time required to perform the required verification and the assurance that the battery cell parameters are not severely degraded, this time is considered reasonable SUSQUEHANNA - UNIT 2 TRM / B 3.8-19
Rev.3 BASES ACTIONS
( continued)
Battery Monitoring and Maintenance Program B 3.8.7 A 1, A2, and A3 (continued)
Verification of the average temperature of the battery within the design bases ensures operability. The verification is repeated at 7-day intervals until the parameters are restored to Category A limits.
Continued operation is only pennitted for 31 days before battery cell parameters must be restored to within Category A limits. Taking into consideration that, while battery capacity is degraded, sufficient capacity exists to perfonn the intended function and to allow time to fully restore the battery cell parameters to nonnal limits, this time is acceptable for operation prior to declaring the DC batteries inoperable.
8.1 Failure to complete the checks required for Actions A 1 or A.2 require immediate action. Entry into Technical Specification 3.8.6 must be entered immediately.
C.1 When any battery parameter is outside the Category B limit for any connected cell, sufficient capacity to supply the maximum expected load requirement is not ensured and the corresponding DC electrical power subsystem must be declared inoperable. Additionally, other potentially extreme conditions, such as not completing the Required Action A.3 within the required Completion lime also are cause for immediately declaring the associated DC electrical power subsystem inoperable.
D.1 Cells that have been discovered with electrolyte level below the top of the plates are equalized and tested IA W Technical Specification 5.5.13 Required Action E.1 is to ensure that under extreme conditions, such as failure to complete the required Action D.1 within the required completion time, average electrolyte temperature falling below 60° F, or intercell connections found not within required connection resistance also are cause for immediately declaring the associated battery inoperable.
SUSQUEHANNA-UNIT 2 TRM / B 3.8-20
Rev.3 BASES TRS TRS 3.8.7.1 Battery Monitoring and Maintenance Program 8 3.8.7 The quarterly inspection for visible corrosion at the terminal and connector is consistent with IEEE-450. The "OR" condition is to ensure, if there is visible corrosion, intercell connection resistance is not impacted.
TRS 3.8.7.2 The quarterly inspection of average electrolyte temperature is consistent with IEEE-450 recommendation to check 10% of the connected cells.
Lower than normal temperatures act to inhibit or reduce battery capacity.
This TRS ensures that the operating temperatures remain within an acceptable operating range. This limit is based on manufacturer's recommendations and battery sizing calculations.
TRS 3.8.7.3 IEEE-450 (Ref. 4) recommends a check of specific gravity every year. The Frequency of the TRS is acceptable because other administrative controls ensure adequate battery performance between performances of TRS 3.8.7.3 and aligns performance of TRS 3.8.7.3 with refueling outage intervals.
~ Toe*limit specified for specific gravity for each connected cell is no more * -
than 0.020 below the average of all connected cells with the temperature corrected average ~ 1.195. These values are based on manufacturer's recommendations for the minimum required value. The minimum specific gravity value required for each cell ensures that the effects of a highly charged or newly installed cell do not mask overall degradation of the battery.
Specific gravity gradients produced during the recharging process may result in delays of several days until the specific gravity stabilizes.
However, a minor battery recharge (such as equalizing charge that does not follow a deep discharge) does not produce specific gravity gradients that are significant.
SUSQUEHANNA - UNIT 2 TRM / 8 3.8-21
Rev. 3 BASES TRS
( continued)
TRS 3.8.7.4 Battery Monitoring and Maintenance Program B 3.8.7 Visual inspection of the battery cells, cell plates, and battery racks provides an indication of physical damage or abnormal deterioration that could potentially degrade battery performance. The presence of physical damage or deterioration does not represent a failure of the TRS, provided an evaluation determines that the physical damage or deterioration does not affect the OPERABILITY of the battery (its ability to perform its design function). The Frequency of the TRS is acceptable because other administrative controls ensure adequate battery performance between performances of TRS 3.8.7.4 and aligns performance of TRS 3.8.7.4 with refueling outage intervals.
TRS 3.8.7.5 The connection resistance limits for this TRS must be below the limits specified in the TRS. The calculated average resistance limit ensure that the total voltage drop across the battery connections is consistent to those assumed in the battery calculations, while the upper limit for battery resistance prevents the possibility of battery damage due to overheating of the connections.
The Frequency of this TRS is acceptable because other administrative controls-ensure adequate battery performance between performances of TRS 3.8.7.5 and aligns performance of TRS 3.8.7.5 with refueling outage intervals Table 3.8.7-1 This table delineates the limits on electrolyte level, float voltage, and temperature for two different categories. The meaning of each category is discussed below.
Category A defines the normal parameter limits for each connected cell.
The term "connected ceW excludes any battery cell that may be jumpered out.
SUSQUEHANNA - UNIT 2 TRM / B 3.8-22
Rev. 3 BASES TRS
( continued)
Table 3.8.7-1 (continued)
Battery Monitoring and Maintenance Program B 3.8.7 The Category A limits specified for electrolyte level are based on manufacturer's recommendations and are consistent with the guidance in IEEE-450 (Ref. 4), with the extra 1/4 inch allowance above the high water level indication for operating margin to account for temperature and charge effects. In addition to this allowance, footnote (a) to Table 3.8.7-1 pennits the electrolyte level to be above the specified maximum level during equalizing charge, provided it is not overflowing. These limits ensure that the plates suffer no physical damage, and that adequate electron transfer capability is maintained in the event of transient conditions. IEEE-450 (Ref. 4) recommends that electrolyte level readings should be made only after the battery has been at float charge for at least 72 hours8.333333e-4 days <br />0.02 hours <br />1.190476e-4 weeks <br />2.7396e-5 months <br />.
The Category A limit specified for float voltage is :?: 2.13 V per cell. This value is based on the recommendation of IEEE-450 (Ref. 4) which states that prolonged operation of cells below 2.13 V can reduce the life expectancy of cells.
Category B defines the limits for each connected cell. These values, although reduced, provide assurance that sufficient capacity exists to perform the intended function and maintain a margin of safety. When any battery parameter is outside the Category B limits, the assurance of
- -sufficient capacity*described above no longer exists, and Technical Specification 3.8.6 must be entered immediately.
The Category B limit specified for electrolyte level (above the top of the plates and not overflowing) ensures that the plates suffer no physical damage and maintain adequate electron transfer capability. The Category B allowable limit for voltage is based on IEEE-450 (Ref. 4), which states that a cell voltage of 2.07 V or below, under float conditions and not caused by elevated temperature of the cell, indicates internal cell problems and may require cell replacement.
SUSQUEHANNA - UNIT 2 TRM / B 3.8-23
Rev.3 BASES REFERENCES
- 1.
FSAR, Chapter 6
- 2.
FSAR, Chapter 15 Battery Monitoring and Maintenance Program B 3.8.7
- 3.
Final Policy Statement on Technical Specifications Improvements, July 22, 1993 (58 FR 39132)
- 4.
IEEE Standard 450-1995 SUSQUEHANNA - UNIT 2 TRM / B 3.8-24