ML093290107: Difference between revisions

From kanterella
Jump to navigation Jump to search
Created page by program invented by StriderTol
Created page by program invented by StriderTol
Line 16: Line 16:


=Text=
=Text=
{{#Wiki_filter:Technical Specification 5.6.5d Thomas N Weber Mail Station 7636 Palo Verde Nuclear Department Leader, Tel. 623-393-5764 PO Box 52034 Generating Station Regulatory Affairs Fax 623-393-5442 Phoenix, Arizona 85072-2034 102-06095-TNW/REB/CJS November 17, 2009 ATTN: Document Control Desk U.S. Nuclear Regulatory Commission Washington, DC 20555-0001
{{#Wiki_filter:Technical Specification 5.6.5d Thomas N Weber                                       Mail Station 7636 Palo Verde Nuclear             Department Leader,         Tel. 623-393-5764       PO Box 52034 Generating Station             Regulatory Affairs         Fax 623-393-5442         Phoenix, Arizona 85072-2034 102-06095-TNW/REB/CJS November 17, 2009 ATTN: Document Control Desk U.S. Nuclear Regulatory Commission Washington, DC 20555-0001


==Dear Sirs:==
==Dear Sirs:==


==Subject:==
==Subject:==
Palo Verde Nuclear Generating Station (PVNGS) Units 1, 2, and 3 Docket Nos. STN 50-528, 50-529, and 50-530 Revised Core Operating Limits Reports (COLRs), Units 1, 2 and 3 Pursuant to PVNGS Technical Specification, Section 5.6.5, enclosed are the revised Core Operating Limits Reports (COLRs). Unit 1 -Revision 20, Unit 2 -Revision 16, and Unit 3 -Revision 19, were made effective October 29, 2009. These revisions include changes resulting from License Amendment No. 174, dated August 26, 2009.By copy of this letter and the enclosures, these COLR revisions are being provided to the NRC Region IV Administrator and the PVNGS Senior Resident Inspector.
Palo Verde Nuclear Generating Station (PVNGS) Units 1, 2, and 3 Docket Nos. STN 50-528, 50-529, and 50-530 Revised Core Operating Limits Reports (COLRs), Units 1, 2 and 3 Pursuant to PVNGS Technical Specification, Section 5.6.5, enclosed are the revised Core Operating Limits Reports (COLRs). Unit 1 - Revision 20, Unit 2 - Revision 16, and Unit 3 - Revision 19, were made effective October 29, 2009. These revisions include changes resulting from License Amendment No. 174, dated August 26, 2009.
This letter does not make any commitments to the NRC. Should you need further information regarding this submittal, please contact Russell A. Stroud, Licensing Section Leader, at (623) 393-5111.Sincerely, TNW/RAS/CJS/gat Enclosure 1 -PVNGS Unit 1 Core Operating Limits Report (COLR), Revision 20 Enclosure 2 -PVNGS Unit 2 Core Operating Limits Report (COLR), Revision 16 Enclosure 3 -PVNGS Unit 3 Core Operating Limits Report (COLR), Revision 19 cc: E. E. Collins Jr. NRC Region IV Regional Administrator J. R. Hall NRC NRR Project Manager R. I. Treadway NRC Senior Resident Inspector for PVNGS A member of the STARS (Strategic Teaming and Resource Sharing) Alliance Callaway " Comanche Peak " Diablo Canyon " Palo Verde " San Onofre " South Texas " Wolf Creek/( (
By copy of this letter and the enclosures, these COLR revisions are being provided to the NRC Region IV Administrator and the PVNGS Senior Resident Inspector. This letter does not make any commitments to the NRC. Should you need further information regarding this submittal, please contact Russell A. Stroud, Licensing Section Leader, at (623) 393-5111.
Enclosure 1 PVNGS Unit I Core Operating Limits Report (COLR)Revision 20 PALO VERDE NUCLEAR GENERATING STATION (PVNGS)UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Effective October 29, 2009 Responsible Engineer C Digitally signed by Napier, Napier, 1 Joseph J(Z71881)Date DN: cn=Napier, Joseph J I(4I Z71881)Joseph J ýl Reason: I am the author of tf -this' 86bZment (Z7188A)V.'
Sincerely, TNW/RAS/CJS/gat -PVNGS Unit 1 Core Operating Limits Report (COLR), Revision 20 -PVNGS Unit 2 Core Operating Limits Report (COLR), Revision 16 -PVNGS Unit 3 Core Operating Limits Report (COLR), Revision 19 cc:       E. E. Collins Jr.       NRC Region IV Regional Administrator J. R. Hall               NRC NRR Project Manager R. I. Treadway           NRC Senior Resident Inspector for PVNGS A member of the STARS   (Strategic Teaming and Resource Sharing) Alliance Callaway " Comanche Peak " Diablo Canyon " Palo Verde " San Onofre " South Texas             " Wolf Creek/(   (
Date 2009.10.27 16:17:19 n e Digitally signed by Bodnar, Independent Reviewer Bodnar, d1 Walter S(Z06432)Date DN: cn=Bodnar, Walter DateW alter S (zo dnart6er2S W Reason: I have reviewed-this document (Z06432ý ) Date: 2009.10.27 16:22:54 0-7'00o= ! Digitally signed by Rowland, Responsible Section Leader Rowland James W(Zbyown," DN: n=Rowland, James W Date I /(Z80533)James vv /IýReason:
 
am approving this.document as temporary SL (Z8053 X , .. Date: 20096" 10.27 17:04:16_ _ _ _ __ --- ---0700'Page 1 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table of Contents Description Page Cover Page 1 Table of Contents 2 List of Figures 3 List of Tables 4 Affected Technical Specifications 5 Analytical Methods 6 CORE Operating Limits 3.1.1 Shutdown Margin (SDM) -Reactor Trip Breakers Open 8 3.1.2 Shutdown Margin (SDM) -Reactor Trip Breakers Closed 8 3.1.4 Moderator Temperature Coefficient (MTC) 8 3.1.5 Control Element Assembly (CEA) Alignment 8 3.1.7 Regulating CEA Insertion Limits 8 3.1.8 Part Strength CEA Insertion Limits 9 3.2.1 Linear Heat Rate (LHR) 9 3.2.3 Azimuthal Power Tilt (Tq) 9 3.2.4 Departure From Nucleate Boiling Ratio (DNBR) 9 3.2.5 Axial Shape Index (ASI) 10 3.3.12 Boron Dilution Alarm System (BDAS) 10 3.9.1 Boron Concentration 10 Page 2 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 List of Figures Description Figure 3.1.1-1 Shutdown Margin Versus Cold Leg Temperature 11 Reactor Trip Breakers Open Figure 3.1.2-1 Shutdown Margin Versus Cold Leg Temperature 12 Reactor Trip Breakers Closed Figure 3.1.4-1 MTC Acceptable Operation, Modes 1 and 2 13 Figure 3.1.5-1 Core Power Limit After CEA Deviation 14 Figure 3.1.7-1 CEA Insertion Limits Versus Thermal Power 15 (COLSS in Service)Figure 3.1.7-2 CEA Insertion Limits Versus Thermal Power 16 (COLSS Out of Service)Figure 3.1.8-1 Part Strength CEA Insertion Limits Versus Thermal Power 17 Figure 3.2.3-1 Azimuthal Power Tilt Versus Thermal Power 18 (COLSS in Service)Figure 3.2.4-1 COLSS DNBR Operating Limit Allowance for Both 19 CEACs Inoperable In Any Operable CPC Channel Figure 3.2.4-2 DNBR Margin Operating Limit Based on the Core 20 Protection Calculators (COLSS Out of Service, CEAC(s)Operable)Figure 3.2.4-3 DNBR Margin Operating Limit Based on the Core 21 Protection Calculators (COLSS Out of Service, Both CEACs Inoperable In Any Operable CPC Channel)Page 3 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 List of Tables Description Page Table 3.3.12-1 Required Monitoring Frequencies for Backup Boron 22 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff> 0.98 Table 3.3.12-2 Required Monitoring Frequencies for Backup Boron 23 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.98 > Keff> 0.97 Table 3.3.12-3 Required Monitoring Frequencies for Backup Boron 24 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.97 > Keff > 0.96 Table 3.3.12-4 Required Monitoring Frequencies for Backup Boron 25 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.96 > Keff> 0.95 Table 3.3.12-5 Required Monitoring Frequencies for Backup Boron 26 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff< 0.95 Page 4 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 This Report has been prepared in accordance with the requirements of Technical Specification 5.6.5. The Core Operating Limits have been developed using the NRC approved methodologies specified in Section 5.6.5 b of the Palo Verde Unit 1 Technical Specifications.
Enclosure 1 PVNGS Unit I Core Operating Limits Report (COLR)
AFFECTED PVNGS TECHNICAL SPECIFICATIONS 3.1.1 Shutdown Margin (SDM) -Reactor Trip Breakers Open 3.1.2 Shutdown Margin (SDM) -Reactor Trip Breakers Closed 3.1.4 Moderator Temperature Coefficient (MTC)3.1.5 Control Element Assembly (CEA) Alignment 3.1.7 Regulating CEA Insertion Limits 3.1.8 Part Strength CEA Insertion Limits 3.2.1 Linear Heat Rate (LHR)3.2.3 Azimuthal Power Tilt (Tq)3.2.4 Departure From Nucleate Boiling Ratio (DNBR)3.2.5 Axial Shape Index (ASI)3.3.12 Boron Dilution Alarm System (BDAS)3.9.1 Boron Concentration Page 5 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 ANALYTICAL METHODS The COLR contains the complete identification for each of the Technical Specification referenced topical reports (i.e., report number, title, revision, date, and any supplements) that provide the NRC-approved analytical methods used to determine the core operating limits, described in the following documents::
Revision 20
Title Report No. Rev Date Sump CE Method for Control Element Assembly CENPD- N.A. January N.A.Ejection Analysis 0190-A 1976 (13-N001-1301-01204-1)
 
The ROCS and DIT Computer Codes for CENPD- N.A. April N.A.Nuclear Design 266-P-A 1983 (13-N001-1900-01412-0)
PALO VERDE NUCLEAR GENERATING STATION (PVNGS)
Modified Statistical Combination of CEN- 01-P-A May N.A.Uncertainties 356(V)-P-A 1988 (13-N001 -1303-01747-2)
UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Effective October 29, 2009 Responsible Engineer             Napier,                C Digitally signed by Napier, 1 Joseph J(Z71881)
System 8 0 TM Inlet Flow Distribution Enclosure N.A. February 1-P (13-N001 -1301-01228-0) 1 -P to LD- 1993 82-054 Calculative Methods for the CE Large Break CENPD- N.A. March 4-P-A LOCA Evaluation Model for the Analysis of CE 132 2001 and W Designed NSSS (13-NOO1-1900-01192-3)
Date                                                           DN: cn=Napier, Joseph J Joseph J                I(4I Z71881)
Calculative Methods for the CE Small Break CENPD- N.A. April 2-P-A LOCA Evaluation Model 137-P 1998 (13-NOO -1900-01185-3)
                                                          &#xfd;l Reason: I am the author of tf 86bZment
Fuel Rod Maximum Allowable Pressure CEN-372- N.A. May N.A.(1 3-NOO 1-0201-00026-1)
                                                              -this' (Z7188A)V.'                 Date 2009.10.27 16:17:19 n eDigitally signed by Bodnar, Independent Reviewer             Bodnar,d1                   Walter S(Z06432)
P-A 1990 Arizona Public Service Company PWR Reactor NFM-005 N.A. January N.A.Physics Methodology Using 2006 CASMO-4/SIMULATE-3 (NFM-005)Technical Description Manual for the CENTS CE-NPD 2 March N.A.CodeVolume 1 282-P-A 2005 (CENTS-TD MANUAL-VOL
Date                                                           DN: cn=Bodnar, Walter DateW alter S               (zo           dnart6er2S W Reason: I have reviewed
: 1) Vols. 1 Technical Description Manual for the CENTS CE-NPD 2 March N.A.Code Volume 2 282-P-A 2005 (CENTS-TD MANUAL-VOL
                                                              -this document (Z06432&#xfd; )                   Date: 2009.10.27 16:22:54 0-7'00o
: 2) Vols. 2 Page 6 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Title Report No. Rev Date Suppi Technical Description Manual for the CENTS CE-NPD 2 March N.A.CodeVolume 3 282-P-A 2005 (CENTS-TD MANUAL-VOL
                                                            *". Digitally signed by Rowland,
: 3) Vols. 3 Implementation of ZIRLOTM Cladding Material CENPD- 0 November N.A.in CE Nuclear Power Fuel Assembly Designs 404-P-A 2001 (13-NOO1 -1900-01329-0)
                                                =    !
HERMITE, A Multi-Dimensional Space-Time CENPD- July Kinetics Code for PWR Transients 188-A 1976 (HERMITE-TOPICAL)
Responsible Section Leader       Rowland                     James W(Zbyown,
TORC Code, A Computer Code for Determin-CENPD- April ing the Thermal Margin of a Reactor Core 161-P-A 1986 (NOO1-1301-01202)
                                                            " DN: n=Rowland, James W Date                                                 I /(Z80533)
CETOP-D Code Structures and Modeling Meth- CEN- September ods for San Onofre Nuclear Generating Station 160(S)-P 1981 Units 2 and 3, (NOO1-1301-01185)
James vv ./I&#xfd;Reason:                   am approving this document as temporary R*"Reioad-Anrlysis SL (Z8053
CPC Methodology Changes for the CPC CEN-3 10- 0 April Improvement Program, (N001-1303-02283)
_ _  _ - -- ,- -
P-A 1986 Loss of Flow, C-E Methods for Loss of Flow CENPD- 0 June Analysis, (NOO1-1301-01203) 183-A 1984 Methodology for Core Designs Containing CENPD- 0 August Erbium Burnable Absorbers 382-P-A 1993 (NOO1-0201-00035)
_ __
Verification of the Acceptability of a 1-Pin Bur- CEN-386- 0 August nup Limit of 60 MWD/kgU for Combustion P-A 1992 Engineering 16 x 16 PWR Fuel (NOO 1-0201-00042)
                                                    .. X      Date: 20096"10.27 17:04:16
Page 7 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 The cycle-specific operating limits for the specifications listed are presented below.3.1.1 -Shutdown Margin (SDM) -Reactor Trip Breakers Open The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.1-1.3.1.2 -Shutdown Margin (SDM) -Reactor Trip Breakers Closed The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.2-1.3.1.4 -Moderator Temperature Coefficient (MTC)The moderator temperature coefficient (MTC) shall be within the area of Acceptable Operation shown in Figure 3.1.4-1.3.1.5 -Control Element Assembly (CEA) Alignment With one or more full-strength or part-strength CEAs misaligned from any other CEAs in its group by more than 6.6 inches, the minimum required MODES 1 and 2 core power reduction is specified in Figure 3.1.5-1. The required power reduction is based on the initial power before reducing power.3.1.7 -Regulating CEA Insertion Limits With COLSS IN SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limits 1 shown in Figure 3.1.7-12; with COLSS OUT OF SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limitsi shown in Figure 3.1.7-2.2 Regulating Groups 1 and 2 CEAs shall be maintained fully withdrawn 3 while in Modes 1 and 2 (except while performing SR 3.1.5.3).1 A reactor power cutback will cause either (Case 1) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with no sequential insertion of additional Regulating Groups (Groups 1, 2, 3, and 4) or (Case 2) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with all or part of the remaining Regulating Groups (Groups 1, 2, 3, and 4) being sequentially inserted.
                                                                -0700' Page 1 of 26
In either case, the Transient Insertion Limit and withdrawal sequence specified in the CORE OPERATING LIMITS REPORT can be exceeded for up to 2 hours.2 The Separation between Regulating Groups 4 and 5 may be reduced from the 90 inch value specified in Figures 3.1.7-1 and 3.1.7-2 provided that each of the following conditions are satisfied:
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT         Revision 20 Table of Contents Description                                                               Page Cover Page                                                                     1 Table of Contents                                                             2 List of Figures                                                               3 List of Tables                                                                 4 Affected Technical Specifications                                             5 Analytical Methods                                                             6 CORE Operating Limits 3.1.1 Shutdown Margin (SDM) - Reactor Trip Breakers Open             8 3.1.2 Shutdown Margin (SDM) - Reactor Trip Breakers Closed           8 3.1.4 Moderator Temperature Coefficient (MTC)                       8 3.1.5 Control Element Assembly (CEA) Alignment                       8 3.1.7 Regulating CEA Insertion Limits                               8 3.1.8 Part Strength CEA Insertion Limits                             9 3.2.1 Linear Heat Rate (LHR)                                         9 3.2.3 Azimuthal Power Tilt (Tq)                                     9 3.2.4 Departure From Nucleate Boiling Ratio (DNBR)                   9 3.2.5 Axial Shape Index (ASI)                                       10 3.3.12 Boron Dilution Alarm System (BDAS)                           10 3.9.1 Boron Concentration                                           10 Page 2 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT           Revision 20 List of Figures Description Figure 3.1.1-1 Shutdown Margin Versus Cold Leg Temperature                     11 Reactor Trip Breakers Open Figure 3.1.2-1 Shutdown Margin Versus Cold Leg Temperature                     12 Reactor Trip Breakers Closed Figure 3.1.4-1 MTC Acceptable Operation, Modes 1 and 2                         13 Figure 3.1.5-1 Core Power Limit After CEA Deviation                           14 Figure 3.1.7-1 CEA Insertion Limits Versus Thermal Power                       15 (COLSS in Service)
Figure 3.1.7-2 CEA Insertion Limits Versus Thermal Power                       16 (COLSS Out of Service)
Figure 3.1.8-1 Part Strength CEA Insertion Limits Versus Thermal Power         17 Figure 3.2.3-1 Azimuthal Power Tilt Versus Thermal Power                       18 (COLSS in Service)
Figure 3.2.4-1 COLSS DNBR Operating Limit Allowance for Both                   19 CEACs Inoperable In Any Operable CPC Channel Figure 3.2.4-2 DNBR Margin Operating Limit Based on the Core                   20 Protection Calculators (COLSS Out of Service, CEAC(s)
Operable)
Figure 3.2.4-3 DNBR Margin Operating Limit Based on the Core                   21 Protection Calculators (COLSS Out of Service, Both CEACs Inoperable In Any Operable CPC Channel)
Page 3 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT           Revision 20 List of Tables Description                                                                 Page Table 3.3.12-1 Required Monitoring Frequencies for Backup Boron               22 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff> 0.98 Table 3.3.12-2 Required Monitoring Frequencies for Backup Boron               23 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.98 > Keff> 0.97 Table 3.3.12-3 Required Monitoring Frequencies for Backup Boron               24 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.97 > Keff > 0.96 Table 3.3.12-4 Required Monitoring Frequencies for Backup Boron               25 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.96 > Keff> 0.95 Table 3.3.12-5 Required Monitoring Frequencies for Backup Boron               26 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff< 0.95 Page 4 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                     Revision 20 This Report has been prepared in accordance with the requirements of Technical Specification 5.6.5. The Core Operating Limits have been developed using the NRC approved methodologies specified in Section 5.6.5 b of the Palo Verde Unit 1 Technical Specifications.
AFFECTED PVNGS TECHNICAL SPECIFICATIONS 3.1.1     Shutdown Margin (SDM) - Reactor Trip Breakers Open 3.1.2     Shutdown Margin (SDM) - Reactor Trip Breakers Closed 3.1.4     Moderator Temperature Coefficient (MTC) 3.1.5     Control Element Assembly (CEA) Alignment 3.1.7     Regulating CEA Insertion Limits 3.1.8     Part Strength CEA Insertion Limits 3.2.1     Linear Heat Rate (LHR) 3.2.3     Azimuthal Power Tilt (Tq) 3.2.4     Departure From Nucleate Boiling Ratio (DNBR) 3.2.5     Axial Shape Index (ASI) 3.3.12   Boron Dilution Alarm System (BDAS) 3.9.1     Boron Concentration Page 5 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                             Revision 20 ANALYTICAL METHODS The COLR contains the complete identification for each of the Technical Specification referenced topical reports (i.e., report number, title, revision, date, and any supplements) that provide the NRC-approved analytical methods used to determine the core operating limits, described in the following documents::
Title                             Report No.       Rev       Date     Sump CE Method for Control Element Assembly                 CENPD-         N.A. January     N.A.
Ejection Analysis                                       0190-A                   1976 (13-N001-1301-01204-1)
The ROCS and DIT Computer Codes for                     CENPD-         N.A. April       N.A.
Nuclear Design                                         266-P-A                 1983 (13-N001-1900-01412-0)
Modified Statistical Combination of                     CEN-           01-P-A   May         N.A.
Uncertainties                                           356(V)-P-A               1988 (13-N001 -1303-01747-2)
System 8 0 TM Inlet Flow Distribution                   Enclosure       N.A. February     1-P (13-N001 -1301-01228-0)                                 1-P to LD-               1993 82-054 Calculative Methods for the CE Large Break             CENPD-         N.A. March       4-P-A LOCA Evaluation Model for the Analysis of CE           132                     2001 and W Designed NSSS (13-NOO1- 1900-01192-3)
Calculative Methods for the CE Small Break             CENPD-         N.A. April       2-P-A LOCA Evaluation Model                                   137-P                   1998 (13-NOO - 1900-01185-3)
Fuel Rod Maximum Allowable Pressure                     CEN-372-       N.A. May         N.A.
(13-NOO 1-0201-00026-1)                                 P-A                     1990 Arizona Public Service Company PWR Reactor             NFM-005         N.A. January     N.A.
Physics Methodology Using                                                       2006 CASMO-4/SIMULATE-3 (NFM-005)
Technical Description Manual for the CENTS             CE-NPD         2       March       N.A.
CodeVolume 1                                           282-P-A                 2005 (CENTS-TD MANUAL-VOL 1)                                 Vols. 1 Technical Description Manual for the CENTS             CE-NPD         2       March       N.A.
Code Volume 2                                           282-P-A                 2005 (CENTS-TD MANUAL-VOL 2)                                 Vols. 2 Page 6 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                 Revision 20 Title                         Report No. Rev   Date     Suppi Technical Description Manual for the CENTS         CE-NPD     2     March       N.A.
CodeVolume 3                                       282-P-A           2005 (CENTS-TD MANUAL-VOL 3)                             Vols. 3 Implementation of ZIRLOTM Cladding Material         CENPD-     0     November     N.A.
in CE Nuclear Power Fuel Assembly Designs           404-P-A           2001 (13-NOO1 -1900-01329-0)
HERMITE, A Multi-Dimensional Space-Time             CENPD-           July Kinetics Code for PWR Transients                   188-A             1976 (HERMITE-TOPICAL)
TORC Code, A Computer Code for Determin-           CENPD-           April ing the Thermal Margin of a Reactor Core           161-P-A           1986 (NOO1-1301-01202)
CETOP-D Code Structures and Modeling Meth-         CEN-             September ods for San Onofre Nuclear Generating Station       160(S)-P         1981 Units 2 and 3, (NOO1-1301-01185)
CPC Methodology Changes for the CPC                 CEN-3 10-   0     April Improvement Program, (N001-1303-02283)             P-A               1986 Loss of Flow, C-E Methods for Loss of Flow         CENPD-     0     June Analysis, (NOO1-1301-01203)                         183-A             1984 Methodology for Core Designs Containing             CENPD-     0     August Erbium Burnable Absorbers                           382-P-A           1993 (NOO1-0201-00035)
Verification of the Acceptability of a 1-Pin Bur-   CEN-386-   0     August nup Limit of 60 MWD/kgU for Combustion             P-A               1992 Engineering 16 x 16 PWR Fuel (NOO 1-0201-00042)
Page 7 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                           Revision 20 The cycle-specific operating limits for the specifications listed are presented below.
3.1.1 - Shutdown Margin (SDM) - Reactor Trip Breakers Open The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.1-1.
3.1.2 - Shutdown Margin (SDM) - Reactor Trip Breakers Closed The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.2-1.
3.1.4 - Moderator Temperature Coefficient (MTC)
The moderator temperature coefficient (MTC) shall be within the area of Acceptable Operation shown in Figure 3.1.4-1.
3.1.5 - Control Element Assembly (CEA) Alignment With one or more full-strength or part-strength CEAs misaligned from any other CEAs in its group by more than 6.6 inches, the minimum required MODES 1 and 2 core power reduction is specified in Figure 3.1.5-1. The required power reduction is based on the initial power before reducing power.
3.1.7 - Regulating CEA Insertion Limits With COLSS IN SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limits1 shown in Figure 3.1.7-12; with COLSS OUT OF SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limitsi shown in Figure 3.1.7-2.2 Regulating Groups 1 and 2 CEAs shall be maintained fully withdrawn 3 while in Modes 1 and 2 (except while performing SR 3.1.5.3).
1 A reactor power cutback will cause either (Case 1) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with no sequential insertion of additional Regulating Groups (Groups 1, 2, 3, and 4) or (Case 2) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with all or part of the remaining Regulating Groups (Groups 1, 2, 3, and 4) being sequentially inserted. In either case, the Transient Insertion Limit and withdrawal sequence specified in the CORE OPERATING LIMITS REPORT can be exceeded for up to 2 hours.
2 The Separation between Regulating Groups 4 and 5 may be reduced from the 90 inch value specified in Figures 3.1.7-1 and 3.1.7-2 provided that each of the following conditions are satisfied:
a) Regulating Group 4 position is between 60 and 150 inches withdrawn.
a) Regulating Group 4 position is between 60 and 150 inches withdrawn.
b) Regulating Group 5 position is maintained at least 10 inches lower than Page 8 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Regulating Group 4 position.c) Both Regulating Group 4 and Regulating Group 5 positions are maintained above the Transient Insertion Limit specified in Figure 3.1.7-1 (COLSS In Service) or Figure 3.1.7-2 (COLSS Out of Service).3 Fully withdrawn  
b) Regulating Group 5 position is maintained at least 10 inches lower than Page 8 of 26
->147.75" (Pulse Counter indication) and >145.25" (RSPT indication) 3.1.8 -Part Strength CEA Insertion Limits The part strength CEA groups shall be limited to the insertion limits shown in Figure 3.1.8-1.3.2.1 -Linear Heat Rate (LHR)The linear heat rate limit of 13.1 kW/ft shall be maintained.
 
3.2.3 -Azimuthal Power Tilt (Tq)The AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 10% with COLSS IN SERVICE when power is greater than 20% and less than or equal to 50%. Additionally, the AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 5% with COLSS IN SERVICE when power is greater than 50%. See Figure 3.2.3-1.3.2.4 -Departure From Nucleate Boiling Ratio (DNBR)COLSS IN SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel -Maintain COLSS calculated core power less than or equal to COLSS calculated core power operation limit based on DNBR decreased by the allowance shown in Figure 3.2.4-1.COLSS OUT OF SERVICE and CEAC(s) OPERABLE -Operate within the region of acceptable operation of Figure 3.2.4-2 using any operable CPC channel.COLSS OUT OF SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel -Operate within the region of acceptable operation of Figure 3.2.4-3 using any operable CPC channel with both CEACs INOPERABLE.
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                           Revision 20 Regulating Group 4 position.
Page 9 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 3.2.5 -Axial Shape Index (ASI)The core average AXIAL SHAPE INDEX (ASI) shall be maintained within the following limits: COLSS OPERABLE-0.18< ASI 0.17 for power > 50%-0.28 < ASI < 0.17 for power >20% and < 50%COLSS OUT OF SERVICE (CPC)-0.10 < ASI < 0.10 for power >20%3.3.12 -Boron Dilution Alarm System (BDAS)With one or both start-up channel high neutron flux alarms inoperable, the RCS boron concentration shall be determined at the applicable monitoring frequency specified in Tables 3.3.12-1 through 3.3.12-5.3.9.1 -Boron Concentration The boron concentration of all filled portions of the Reactor Coolant System and the refueling canal shall be maintained at a uniform concentration
c) Both Regulating Group 4 and Regulating Group 5 positions are maintained above the Transient Insertion Limit specified in Figure 3.1.7-1 (COLSS In Service) or Figure 3.1.7-2 (COLSS Out of Service).
_ 3000 ppm.Page 10 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.1.1-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS OPEN 7 ..........  
3 Fully withdrawn - >147.75" (Pulse Counter indication) and >145.25" (RSPT indication) 3.1.8 - Part Strength CEA Insertion Limits The part strength CEA groups shall be limited to the insertion limits shown in Figure 3.1.8-1.
... .. .... .........
3.2.1 - Linear Heat Rate (LHR)
(50050)5 ....................-  
The linear heat rate limit of 13.1 kW/ft shall be maintained.
-----.-- ................--........................  
3.2.3 - Azimuthal Power Tilt (Tq)
--- --...... ---------
The AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 10% with COLSS IN SERVICE when power is greater than 20% and less than or equal to 50%. Additionally, the AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 5% with COLSS IN SERVICE when power is greater than 50%. See Figure 3.2.3-1.
......................  
3.2.4 - Departure From Nucleate Boiling Ratio (DNBR)
........REGION OF ACCEPTABLE OPERATION z z3 ----------.. ....... ....................... ......................................-- --------.....: .......................................REGION !OF UNACCEPTABLE OPERATION-.0 0 100 200 300 400 COLD LEG TEMPERATURE
COLSS IN SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Maintain COLSS calculated core power less than or equal to COLSS calculated core power operation limit based on DNBR decreased by the allowance shown in Figure 3.2.4-1.
('F)500 600 Page 11 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 I FIGURE 3.1.2-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS CLOSED 7 6 5.4 z 03 2 0.........  
COLSS OUT OF SERVICE and CEAC(s) OPERABLE - Operate within the region of acceptable operation of Figure 3.2.4-2 using any operable CPC channel.
.........  
COLSS OUT OF SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Operate within the region of acceptable operation of Figure 3.2.4-3 using any operable CPC channel with both CEACs INOPERABLE.
..I REGION OF ACCEPTABLE
Page 9 of 26
...............
 
OPERATION--:-
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                           Revision 20 3.2.5 - Axial Shape Index (ASI)
.......................  
The core average AXIAL SHAPE INDEX (ASI) shall be maintained within the following limits:
-----------------------
COLSS OPERABLE
----------------------------------------------
        -0.18*< ASI
...............................................
* 0.17 for power > 50%
+/-(500,6.5)i (350,4.0)REGION OF UNACCEPTABLE
        -0.28 < ASI < 0.17 for power >20% and < 50%
..................
COLSS OUT OF SERVICE (CPC)
-........................
        -0.10 < ASI < 0.10 for power >20%
3.3.12 - Boron Dilution Alarm System (BDAS)
With one or both start-up channel high neutron flux alarms inoperable, the RCS boron concentration shall be determined at the applicable monitoring frequency specified in Tables 3.3.12-1 through 3.3.12-5.
3.9.1 - Boron Concentration The boron concentration of all filled portions of the Reactor Coolant System and the refueling canal shall be maintained at a uniform concentration _&#x17d;3000 ppm.
Page 10 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                                                                                                                   Revision 20 FIGURE 3.1.1-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS OPEN 7   .                                                       .........                   ...       .. .... ......... (50050) 5 ....................------.--       ................--........................       --- --...... ...................... . .......
                                                                                                    ---------
REGION OF ACCEPTABLE OPERATION z
z Z*3    -- --- --. . . .......
                          . . . . . . . . . . . . . . ...
                        ---..                                 .... ........ ...... ...... .......
                                                          . . .....                                 ...--
                                                                                                - --- ---- ...:.. ...       .. ....... ..... ..... ...... ....... ....
REGION !OF UNACCEPTABLE OPERATION
                                                                                                        -       .
0 0                       100                         200                           300                   400                         500                        600 COLD LEG TEMPERATURE ('F)
Page 11 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                                                                     Revision 20 I
FIGURE 3.1.2-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS CLOSED 7 .........           .........           I
                                              ..
(500,6.5)i 6
REGION OF ACCEPTABLE ............... OPERATION--:-
  . 4 (350,4.0) z 03
      .......................
                            -----------------------
REGION OF UNACCEPTABLE 2                                            .................. -
      ----------------------------------------------                   ........................
I.....................
I.....................
OPERATION.l l l l l l l m l l l l l .....l l l ll.. ..l ........0 100 200 300 400 COLD LEG TEMPERATURE
OPERATION
('F)500 600 Page 12 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.1.4-1 MTC ACCEPTABLE OPERATION, MODES I AND 2 0.5-1.0 .........-
      ...............................................
o z W 0.<-U 0 F-0 0<-1.5 ............
0                                       +/- . .l l .l . .l .ll l l .m .ll l                    l ..
-2.0..-m ' I ..... I. ...-- ------- ----....I ...... ... ... .... ..I ...... .. ... ...I. ..."!........
                                                                                                  . l .l        l .
i..... (50%,0.0)(100%,-0.2
                                                                                                              . .. l ll..
-- -----------------.....................  
0                  100              200                    300            400                    500            600 COLD LEG TEMPERATURE ('F)
-- ----- -------- --- ---....................  
Page 12 of 26
......._ ...........  
 
' ...... ..... ............  
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                                                                                                                                        Revision 20 FIGURE 3.1.4-1 MTC ACCEPTABLE OPERATION, MODES I AND 2 0.5
..............  
                                  ' mI    . . . .. I.--
...... -- -- -- -- --.-. ---.-. --. -.............
                                          ..-           . . -. - - - ---- - - -                 I. .. ..           . . .       .. . .. .I..   . . . . . .. .. ...
............. -CAREA OF ..................................................
                                                                                                                                            . ....                   . . . I.       . .
ACCEPTABLE
                                  ."!........           i.....                   (50%,0.0)
:OPERATION
                                              -------   -- --- -             -- -- --             . . . . .................             -- - - -         -- - - ------       ------
-------------............................ ...............
(100%,-0.2
' .............  
                                ....................
-- ---- ---- ----..............  
                                                  ....... _                             ...........
........ .............-----------.  
                                                                                                  '           . .....   ..... ............ .............. --. .--....------.-.     ---.-.
--. ----------...............
                                                                                                                                                                                        --.
I' .............  
                                                                                                                                                                                          -
---.............
o
I ............  
  -1.0 .........-
.. I..........................................
U z
.. ..... .. ... .. ... .. ..... ... ..... .. ... ..... .. ... .. ........ ... .....-- --------------........  
  -1.............                   ..........................                            -CAREA                  OF ..................................................
...... .........  
W 0.
..... --------.. .......... ........:............  
<-                                                                          ACCEPTABLE 0
---- ---- -- .........----  
  -2.0                                                                    *:OPERATION
-.........
                                        -------------............................       ...............
.. .. ......... ...... ............i.. ..i.. ..-- -------- -- -- -- I .....i.. ......-- ---- ---- -- -- -- -- ---- -- ..- --2.5-3.0-3.5-4.0 4...........
                                                                                                  '           .............               --. .----
-4.5 0 10 20 30 40 50 60 70 80 90 100 CORE POWER LEVEL (% OF RATED THERMAL POWER)Maintain Operation within Boundary TECH SPEC 3.1.4 Maximum Upper Limit .......Page 13 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT 1 FIGURE 3.1.5-1 CORE POWER REDUCTION AFTER CEA DEVIATION*
                                                                                                                                                  . . .----
tevision 20 ASt 20 15 z 0 16 5100% to>80% RTP 12 12 :580% to>70% RTP 8 8 -70% to>45% RTP............  
                                                                                                                                                        . .. .----..............
------------  
                                                                                                                                                                . . . . . .. . . . . .
.. .... ---------  
F-0
----- -----------  
                        -----------.   --. ----------............... I'............. ---.............I............ ..I..........................................
----------
0  -2.5
-<45% RTP 15 10 5 I 10 5-i i 0 0 10 20 30 40 50 60 TIME AFTER DEVIATION, MINUTES* WHEN CORE POWER IS REDUCED TO 35% OF RATED THERMAL POWER PER THIS LIMIT CURVE, FURTHER REDUCTION IS NOT REQUIRED.Page 14 of 26 I PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.1.7-1 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS IN SERVICE)1.0 0.9 -0.8 -0.7 0.6 05 0T.0 L 0.3 0.2--------------------0!Uz..! ......-(SEE FOOTNOTE IN SECTION 31.;7 .......-.-
<
FOR APPLICABILITY FOLLOWING-GRP 4-POS-= (-12-.5-xFRAC.PWR)-+-25-5--
  -3.0                  .. . . . .. .. . .. .. . .. .. . . . .. . .. -. -          . -
GRP 5 POS = (172.5:'x FRAC. PWR) -64.5--- I .......................................  
                                                                                      . -.. -.. ---. ..- -. . -.....--
........ I ....... ..........  
                                                                                                          ...           .. . .. .. . . ......
... .....................  
                                                                                                                . -.. --........                   ...... .........
.................  
                                                                                                                                                                - --  .....- -     -- -
....... ........ ......0.1 -I O0 GROUP5 GROUP3 GROUP I I I I I I I I I I I I I I I I I I I FW* 120 90 60 30 0 FW* 120 90 60 30 0 FW* 120 90 60 30 0 GROUP 4 GROUP 2 F)&#xfd;C* 1 P0 OTI 34o FIN 1C0 6W0 31DRW CEA POSITION (INCHES WITHDRAWN)
  -3.5
*Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).Page 15 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.1.7-2 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS OUT OF SERVICE)1.0 0.9 1 0.8 0.7 0.6 05 0.4 0 U 0.3 0.2 0.1 ('n..... ... ...i ....! ...... !........
                                ... . . . . . . .. . . . . . . . .:............
I -------- -- -- -........ ....... --- --.. .. .-- -- --...-- ------ ---- J ....... i ..... .i ........ .... ... ..........
                                                                              ----   ----   -- .........---- -......... .. ..                     .........                   ...... ........
.................  
  -4.0 4...........
.......-----
                        .. . .        i..
-.........
                                        . .-----
.(SEE FOOTNOTE-iN SEC-TION-3;[;7.........7 FOR APPIACABILITY FOLLOWING A: REACTOR CUTBACK)0------ -----GRP-4POS-=(-250.9-X-FRAC.-PWR" +-9.82---GRP 'PWOS = (250.9 i FRAC. PWR)- 80.18... ...... i..... ... -- .....z zz.z , .. ... ... .. .. .... :... ..... ... .. ... .... .. ........ ....... ........ -- ----- ----- --- ...... .. '. ........ ...... ... ..--- -- -.-- --. .--- --..... ..--. .-- --- -- -- .I.......
                                        --         . . i..
.... ..... ... ... --- --..........  
                                                        ---   ------I.                   . . .--  . ----    . ----
...... .&#xa3; , : ! ! ''J, GROUP5 GROUP3 GROUP I I I I I I I I I I I I- I I I I I I I FW* 120 90 60 30 0OFW* 120 90 60 30 0 FW* 120 90 60 30 0 GROUP 4 GROUP 2 F X%* 10 0 3 g Ft It L0O 6+0 t CEA POSITION (INCHES WITHDRAWN)
                                                                                                                  . .i... --  . .----                               ------       --. .- -
*Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).Page 16 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT FIGURE 3.1.8-1 PART STRENGTH CEA INSERTION LIMITS VERSUS THERMAL POWER Revision 20 0.0 10.0 20.0 30.0 40.0 50.0 60.0 70.0 z z r-,.n F-0Z u)z------------  
  -4.5 0             10            20              30                  40                  50                      60                70              80                  90          100 CORE POWER LEVEL
---- -----............
(% OF RATED THERMAL POWER)
...........
Maintain Operation within Boundary TECH SPEC 3.1.4 Maximum Upper Limit .......
.......................
Page 13 of 26
............  
 
----------
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                                   1tevision 20 FIGURE 3.1.5-1 CORE POWER REDUCTION AFTER CEA DEVIATION*                                       ASt 20 16 5100% to
------------  
                                                                          >80% RTP 15                                                                                15 z
----------
12          12 :580% to
............
                                                                          >70% RTP I 0 10                                                                                10 8                 8   -70% to
.............................
                                                                          >45% RTP 5                                                                                5
.....................
            ............
----- -- --------- ------..........
                    ------------ .. .... ---------   ---------------- ----------
----------------
                                                                          -<45%RTP
.............
                                          -i 0
.............
i 0         10             20         30             40           50         60 TIME AFTER DEVIATION, MINUTES
.............  
* WHEN CORE POWER IS REDUCED TO 35% OF RATED THERMAL POWER PER THIS LIMIT CURVE, FURTHER REDUCTION IS NOT I
-------------
REQUIRED.
.............  
Page 14 of 26
.............
 
---------------------  
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                                                                                 Revision 20 FIGURE 3.1.7-1 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS IN SERVICE) 1.0
--------.............................
                      -- ---- ---- - -- -- -----
-------------  
0.9 -                                    -(SEE FOOTNOTE IN SECTION 31.;7.......-.-
--------.............  
FOR APPLICABILITY FOLLOWING 0.8 -
........-----------
0.7                                    -GRP 4-POS-= (-12-.5-xFRAC.PWR)-+-25-5--
...........................  
GRP 5 POS = (172.5:'x FRAC. PWR) - 64.5 0.6 0!
...........
I .......................................
!TRANSIEN T INSERTION LIMIT (75.0:INCHES) 80.0 90.0.............  
                                                            ---              ........I         .......                      .......... .
--- ---IO ............
05 Uz.
OT..........I UNACCEPTABLE
0T.
-- -- -- -- -- -- -L ......:. .................... -- --- ------- --.........
0
OPERATION
                  .!......
..................
L  0.3
RESTRICTED I I I I 100.0 110.0 120.0 130.0 140.0 150.0 1.(-.6 ... ...* .... .. .- ........LONG TERM STEADY STATE INSERTION:LIMITSI (112.5 INCHES)........ -------- -...... ------ ..............
                                                          *          .. . . ...................   .................   ....... ........ ......
i...... ........................  
0.2                                    I 0.1 -
------- ............
O0 GROUP5                           GROUP3                                           GROUP I I I   I   I     I     I     I     I   I     I       I         I         I         I         I       I       I       I FW* 120 90   60     30 0 FW* 120 90             60     30 0 FW* 120 90                                   60       30       0 GROUP 4                               GROUP 2 F)&#xfd;C* 1       P0OTI 34o           FIN           1C0           6W0 31DRW CEA POSITION (INCHES WITHDRAWN)
I ---------------------------------
*Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).
OPERATION ACCEPTABLE
Page 15 of 26
....I .. .. .I ....I --. I-.. -. ..-.J 1. .... ----.. I ... .I ....0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 FRACTION OF RATED THERMAL POWER Page 17 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.2.3-1 AZIMUTHAL POWER TILT VERSUS THERMAL POWER (COLSS IN SERVICE)20.0 15.0 F-0:z-10.0---- ----------------
 
REGION OF-R E G I O N O F --------------  
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                                                                                         Revision 20 FIGURE 3.1.7-2 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS OUT OF SERVICE) 1.0
-----------------.................
                          .. .........iI--------  ....!--  ......
UNACCEPTABLE OPERATION.. ... .. .......... .......... .. ... .. .................... .. ..... ......... .... ... .. ... ...-5.0 WLCEPTABLE OPERATION 0.u -20.0 30.0 40.0 50.0 60.0 70.0 CORE POWER LEVEL 80.0 90.0 100.0 (% OF RATED THERMAL POWER)Page 18 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT FIGURE 3.2.4-1 COLSS DNBR OPERATING LIMIT ALLOWANCE FOR BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL Revision 20 25 20 ......0 E0 15 I-----------  
                                                              -- -!.. . . . . . . . . . . .---
-----------
                                                                                            --.. ----. -...
....................  
                                                                                                    ..- -- ------ ----         .i. . . . ....*
-----------
J . . .i. .....
....................  
0.9 1 0.8          .............
----------
                                  .................         .......-----
.................
                                                                  -.........     .(SEE FOOTNOTE-iN SEC-TION-3;[;7.........7 FOR APPIACABILITY FOLLOWING A: REACTOR CUTBACK) 0.7 0
....................
0.6                      ------                       -         ----GRP-4POS-=(-250.9-X-FRAC.-PWR" +-9.82---
....................
GRP 'PWOS = (250.9 i FRAC. PWR)- 80.18 05
....................  
                      . .... ....i.....   ... -- . . .
./...... ......101-...............
zz                               z 0.4 0
5 0:(80,5)(70,0):....................
U 0.3
1 1 I I I Illlllll 50 60 70 80 CORE POWER LEVEL (% OF RATED THERMAL POWER)90 100 Page 19 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.2.4-2 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, CEAC(s) OPERABLE)2.5 2.4 2.3 I z 0 2.2 2.1.. ....... !.........
                                                              ... :......*.....*...... *... .......... ....... ........ --
................  
                                                    ...z,.........                                                               ---
.................
                                                                                                                            -----
                                                                                                                          -----     ...... ..'......
                                      &#xa3;        ,
0.2
:
                            . ..
                    .........             ..---       -- -.-- - .--.....   !    !
                                                                                    ..--.   '
                                                                                                --- --
                                                                                                  .---
                                                                                                    -- .--  .I...........
                                                                                                                      ........ - --. . . . . ......
                                                                                                                                ...
                                                                                                                                --                .
0.1
('n
            'J, GROUP5                                               GROUP3                                     GROUP I I   I   I         I         I I               I         I       I     I     I- I         I       I     I     I         I I FW* 120   90     60         30 0OFW* 120 90                             60   30   0 FW* 120           90     60       30       0 GROUP 4                                           GROUP 2 F         X%*
10                   0       3         g Ft       It   L0O 6+0           t CEA POSITION (INCHES WITHDRAWN)
*Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).
Page 16 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                                                                                                     Revision 20 FIGURE 3.1.8-1 PART STRENGTH CEA INSERTION LIMITS VERSUS THERMAL POWER 0.0 10.0 - -----------   ---------                   .....................         -----  -- ----            ...........................
                                                                                                          -----------                       ...........
20.. ...........   ...........                 -----------                    ..........                   ---------------------  --------
30.0  . ......................                                  ---------------- .............                .............................
40.. ...........   ----------                                                 .............                           ------------- --------
z    50.0  - -----------    ----------                                  ............. -------------                           ............. ........
60.0  . ...........   ......                                     ............. .............
0Z  70........................
                                                                                      !TRANSIENT INSERTION LIMIT (75.0:INCHES) u)                                                                                                    I        I          I                I F-
,.n 80.0 zz OT..........I
                          ............. ---       IO ............
                                                ---
r-  90.0                                                                                  ......... OPERATION ..................
UNACCEPTABLE                                                                RESTRICTED 100.0 L-- . --
                                . .--.--
                                        . .:.
                                          -- . .-. . . . --
                                            --            . ---
                                                            . . .---
                                                                  . . ----
                                                                        ........--
110.0
                                              ..............i...... -------                                    I------------
                                                                                          ........................ ............
                                                                                                                                      .. ......
                ........                 -......
                                -                                                       .              *    . . .  .  ..    ...-
                                            ------
                                                                                            .6        ...
120.0
                          --------
LONG TERM STEADY STATE INSERTION:LIMITSI (112.5 INCHES) 130.0 OPERATION ACCEPTABLE 140.0
              . . . . I ....-          . -.I .   . .-.. I       I-..   - ..-. J 1.- . . ..-     -..                 I   ...   . I . . . .
150.0 1.(0         0.9             0.8           0.7           0.6           0.5           0.4       0.3         0.2           0.1         0.0 FRACTION OF RATED THERMAL POWER Page 17 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                                                                                                                                           Revision 20 FIGURE 3.2.3-1 AZIMUTHAL POWER TILT VERSUS THERMAL POWER (COLSS IN SERVICE) 20.0 15.0   --   -- -               -RE G I O N OF --------------
                        ---------------                                                                                             -----------------............
UNACCEPTABLE OPERATION F-0  10.0                              .. . .. .. . . . . . . . . .. . . . . . . . . .. .. . .. .. . . . . . . . . . . . . . . . . .... .. . . . .. . . . . . . . .. . . .. . .. .. . .. . ..-
:z-5.0 REGION OF WLCEPTABLE OPERATION 0.u -
20.0 30.0   40.0       50.0                     60.0                           70.0                             80.0                           90.0                         100.0 CORE POWER LEVEL
(% OF RATED THERMAL POWER)
Page 18 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                                                       Revision 20 FIGURE 3.2.4-1 COLSS DNBR OPERATING LIMIT ALLOWANCE FOR BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL 25 0
20 ......         ----------
                            -----------                     ....................
                                                                                            ....
                                                                                            /...
15 I-                                                    ....................
E0 101-        ....................
                            -----------    ................. ....................   .       ...............
5          ....................
                            ----------
:(80,5)
                                                                                            ............
(70,0):
11                  Illlllll 0            I I   I 50                   60                       70                           80       90        100 CORE POWER LEVEL
(% OF RATED THERMAL POWER)
Page 19 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                                                                                                                         Revision 20 FIGURE 3.2.4-2 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, CEAC(s) OPERABLE) 2.5   .. .......         !.........           I                , ,&deg; , ,o., ,,l..  . .l,,    .  ... l...   ...   ...     . ...   .. ..
ACCEPTABLE OPERATION ANY POWER LEVEL AT LEAST 1 CEAC OPERABLE IN EACH OPERABLE CPC CHANNEL
                                                ................... .... ........ ... ..---              ---------
                                                                                              ----------------.      -----    . ... ..........
                                                                                                                          ---..
2.4 (0,06,2.38)                              (0.1,2.3 8):
        . ...............  .................
                                                                                                                                                  ...i ...... ........
2.3
(-0.1,2.28)
(-0.1,2.28)
..........
                                                                        ... ..............
(... 1193)............
                                                            .................               . ................
-. -.-------------
                                                                                                            .         ........ -......
.................., ,&deg; , , ,,l ,o. .. ..l,, .... l... ... ... .... .. ..ACCEPTABLE OPERATION ANY POWER LEVEL AT LEAST 1 CEAC OPERABLE IN EACH OPERABLE CPC CHANNEL...................  
                                                                                                                                ------
.... ........ ... .. --- ----------------.
z 2.2 ACCEPT~ABLE OPERATION POWER AT OR ABOVE 90%
--------- ----- ---.. .... ..... .....(0,06,2.38)
0 AT LEAST 1 CEAC OPERABLE IN 2.1                                            ....EACH OPER-ABILE-CPC CHtANNELA'-......                                                            ----------------..
(0.1,2.3.................
... ..............
.................
......... ...... -------ACCEPT~ABLE OPERATION POWER AT OR ABOVE 90%AT LEAST 1 CEAC OPERABLE IN....EACH OPER-ABILE-CPC CHtANNELA'-......
(0.05,2.00)
(0.05,2.00)
.................
        ..........     (... 1193)............     ................. I................. ............. * ' ........           "*0. 12 .01 2.0
I .................
        -.-.-------------    ..................
.............' ........ 12 .01 UNACCEPTABLE
UNACCEPTABLE
.........  
                                                  ......... ............. OP E RAT ION ....................................
.............
1.9
O P E R A T IO N .... ................................
                                                  . . . . . . . .. I . . . . . . .. . I .. . . . . . . I .. . . . . . . . ! . .      .     .
......... I ........ .I .. ......I .. .......! ....8):...i ...... ........----------------. .2.0 1.9 1.8 I i fl i i i fl i 1 I i i i ..... I i i I .....I l i I-0.20 -0.15 -0.10 -0.05 0.00 0.05 CORE AVERAGE ASI 0.10 0.15 0.20 Page 20 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.2.4-3 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL)3.6 IIgDHllll Illl 3.5 I 3.4 z u C..)----------------
1.8 i fl i i i fl i 1I i
: .........----------------
* i i ..... II                                                                                                        i iI .. . . . I l iI
.........3.3 ACCEPTABLE
    -0.20            -0.15                -0.10                -0.05                0.00            0.05              0.10                  0.15                  0.20 CORE AVERAGE ASI Page 20 of 26
:OPERATION ANY POWER LEVEL BOTH CEACs INOPERABLE
 
...... ... --- -- --- -- -- B:E -- ----- ---.................
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                                                                                                                                Revision 20 FIGURE 3.2.4-3 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL) 3.6    IIgDHllll              Illl                                                                                                          l'    'r  '    '    .  ,  .,  i ACCEPTABLE :OPERATION ANY POWER LEVEL BOTH CEACs INOPERABLE 3.5  I
........IN ANY OPERABLE CPC CHANNEL (-0.i.3.27)
                                              ... . ...---        --  ---  --  --  --  -----    ---B:E.................  ........
UNACCEPTABLE OPERATION ( 1, 3.4 1)............  
IN ANY OPERABLE CPC CHANNEL
...l' 'r ' ' ., ., i 3.2 P--3.1 3.0---------------
( 1,3.4 1) 3.4  - ---------------    : .........
........1 ....1 ..........I ........ .I .. .......I .. .... .... ............m ..... ............1 .1 ..... ........-0.20 -0.15 -0.10 -0.05 0.00 0.05 0.10 0.15 0.20 CORE AVERAGE ASI Page 21 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table 3.3.12-1 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff > 0.98 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours 0.5 hours ONA ONA 4 not on SCS 12 hours 0.5 hours ONA ONA 5 not on SCS 8 hours 0.5 hours ONA ONA 4 & 5 on SCS ONA ONA ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 22 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table 3.3.12-2 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.98 Keff > 0.97 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours 1 hour 0.5 hours ONA 4 not on SCS 12 hours 1.5 hours 0.5 hours ONA 5 not on SCS 8 hours 1.5 hours 0.5 hours ONA 4 & 5 on SCS 8 hours 0.5 hours ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 23 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table 3.3.12-3 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.97 Keff> 0.96 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours 2.5 hours 1 hour ONA 4 not on SCS 12 hours 2.5 hours 1 hour 0.5 hours 5 not on SCS 8 hours 2.5 hours 1 hour 0.5 hours 4 & 5 on SCS 8 hours 1 hour ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 24 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table 3.3.12-4 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.96 > Keff> 0.95 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours 3 hours 1 hour 0.5 hours 4 not on SCS 12 hours 3.5 hours 1.5 hours 0.75 hours 5 not on SCS 8 hours 3.5 hours 1.5 hours 0.75 hours 4 & 5 on SCS 8 hours 1.5 hours 0.5 hours ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 25 of 26 PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table 3.3.12-5 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff < 0.95 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours 4 hours 1.5 hours 1 hour 4 not on SCS 12 hours 4.5 hours 2 hours 1 hour 5 not on SCS 8 hours 4.5 hours 2 hours 1 hour 4 & 5 on SCS 8 hours 2 hours 0.75 hours ONA 6 24 hours 1.5 hours ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 26 of 26 Enclosure 2 PVNGS Unit 2 Core Operating Limits Report (COLR)Revision 16 Digitally signed by O'Connor, Tina O'Connor, , M(Z06952)SODN- cn=O'Connor, Tina M Ti na M ~ J (Z06952)n6ason:oi2 attest to the accuracyrQ ,/- nd integrity of this document (Z0695 '2 Date: 2009.10.28 05:57:33 -07'00'PALO VERDE NUCLEAR GENERATING STATION (PVNGS)UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Effective 10/29/2009 Responsible Engineer lDigitally signed by Foster, Foste r, Glenn A(Z35831)Date ' DN: cn=Foster, Glenn A Glenn. A ,(Z35831)G le A'% f"R&#xfd;eason:
z 3.3  - ---------------       .........
I am the author of thisJ ),,&#xfd;_document, Date: 2009.10.27 16:10:17 (Z. .3 5 83 -07'00'Independent Reviewer -, Digitally signed by Delorenzi,;
u                                              (-0.i.3.27)
Delorenzi, Mark J(Z01931)Date DION: cn=Delorenzi, Mark J M rk /
C..)
Mark J Reason: I have reviewed , ddument 7 Date: 2009.10.27 16:34:063l# m -07'00'Digitally signed by Rowland, Responsible Section Leader Row a, &#xfd;k j\i James W(Z80533)Ro la ,) N: cn=Rowland, James W Date I " A Dta O.I I VV/ ;Reason: I am approving this James V, 1 documentas temporary..
3.2 P--
SL (Z8053 ,. Date: 2009610.27 16:50:38-0700'Page 1 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Table of Contents Description Page Cover Page 1 Table of Contents 2 List of Figures 3 List of Tables 4 Affected Technical Specifications 5 Analytical Methods 6 CORE Operating Limits 3.1.1 Shutdown Margin (SDM) -Reactor Trip Breakers Open 8 3.1.2 Shutdown Margin (SDM) -Reactor Trip Breakers Closed 8 3.1.4 Moderator Temperature Coefficient (MTC) 8 3.1.5 Control Element Assembly (CEA) Alignment 8 3.1.7 Regulating CEA Insertion Limits 8 3.1.8 Part Strength CEA Insertion Limits 9 3.2.1 Linear Heat Rate (LHR) 9 3.2.3 Azimuthal Power Tilt (Tq) 9 3.2.4 Departure From Nucleate Boiling Ratio (DNBR) 9 3.2.5 Axial Shape Index (ASI) 10 3.3.12 Boron Dilution Alarm System (BDAS) 10 3.9.1 Boron Concentration 10 Page 2 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 List of Figures Description Page Figure 3.1.1-1 Shutdown Margin Versus Cold Leg Temperature 11 Reactor Trip Breakers Open Figure 3.1.2-1 Shutdown Margin Versus Cold Leg Temperature 12 Reactor Trip Breakers Closed Figure 3.1.4-1 MTC Acceptable Operation, Modes 1 and 2 13 Figure 3.1.5-1 Core Power Limit After CEA Deviation 14 Figure 3.1.7-1 CEA Insertion Limits Versus Thermal Power 15 (COLSS in Service)Figure 3.1.7-2 CEA Insertion Limits Versus Thermal Power 16 (COLSS Out of Service)Figure 3.1.8-1 Part Strength CEA Insertion Limits Versus Thermal Power 17 Figure 3.2.3-1 Azimuthal Power Tilt Versus Thermal Power 18 (COLSS in Service)Figure 3.2.4-1 COLSS DNBR Operating Limit Allowance for Both 19 CEACs Inoperable In Any Operable CPC Channel Figure 3.2.4-2 DNBR Margin Operating Limit Based on the Core 20 Protection Calculators (COLSS Out of Service, CEAC(s)Operable)Figure 3.2.4-3 DNBR Margin Operating Limit Based on the Core 21 Protection Calculators (COLSS Out of Service, Both CEACs Inoperable In Any Operable CPC Channel)Page 3 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 List of Tables Description Page Table 3.3.12-1 Required Monitoring Frequencies for Backup Boron 22 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff> 0.98 Table 3.3.12-2 Required Monitoring Frequencies for Backup Boron 23 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.98 > Keff> 0.97 Table 3.3.12-3 Required Monitoring Frequencies for Backup Boron 24 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.97 > Keff> 0.96 Table 3.3.12-4 Required Monitoring Frequencies for Backup Boron 25 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.96 > Keff> 0.95 Table 3.3.12-5 Required Monitoring Frequencies for Backup Boron 26 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff< 0.95 Page 4 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 This Report has been prepared in accordance with the requirements of Technical Specification 5.6.5. The Core Operating Limits have been developed using the NRC approved methodologies specified in Section 5.6.5 b of the Palo Verde Unit 2 Technical Specifications.
UNACCEPTABLE OPERATION
AFFECTED PVNGS TECHNICAL SPECIFICATIONS 3.1.1 Shutdown Margin (SDM) -Reactor Trip Breakers Open 3.1.2 Shutdown Margin (SDM) -Reactor Trip Breakers Closed 3.1.4 Moderator Temperature Coefficient (MTC)3.1.5 Control Element Assembly (CEA) Alignment 3.1.7 Regulating CEA Insertion Limits 3.1.8 Part Strength CEA Insertion Limits 3.2.1 Linear Heat Rate (LHR)3.2.3 Azimuthal Power Tilt (Tq)3.2.4 Departure From Nucleate Boiling Ratio (DNBR)3.2.5 Axial Shape Index (ASI)3.3.12 Boron Dilution Alarm System (BDAS)3.9.1 Boron Concentration Page 5 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 ANALYTICAL METHODS The COLR contains the complete identification for each of the Technical Specification referenced topical reports (i.e., report number, title, revision, date, and any supplements) that provide the NRC-approved analytical methods used to determine the core operating limits, described in the following documents:
                                                                                                                                              ............       .   .   .
Title Report No.Rev N.A.Date January 1976 1) CE Method for Control Element Assem-bly Ejection Analysis (NOO-1301-01204-1)
3.1 - --------------
: 2) The ROCS and DIT Computer Codes for Nuclear Design (NOO1-1900-01412-0)
m .. .. .. .... .. .. .. .. I .
: 3) Modified Statistical Combination of Uncertainties (NOO1-1303-01747-2)
                                          . . . . . .. .. 1                                            . I .. . . . . . . . I .. . .
: 4) System 8 0 TM Inlet Flow Distribution (NOO1-1301-01228-0)
3.0 ..  . . .
: 5) Calculative Methods for the CE Large Break LOCA Evaluation Model for the Analysis of CE and W Designed NSSS (NOOl-1900-01192-3)
                .  . . .. .. ..
: 6) Calculative Methods for the CE Small Break LOCA Evaluation Model (NOO1-1900-01185-3)
                  . ..            1 .. ..                                              . .
: 7) Fuel Rod Maximum Allowable Pressure (NOO1-0201-00026-1)
                                                                                          . . . . . ..                               . . . ..    . 1 . 1 . . . ..   . . . .. . . .
: 8) Arizona Public Service Company PWR Reactor Physics Methodology Using CASMO-4/SIMULATE-3 (NFM-005)9) Technical Description Manual for the CENTS CodeVolume 1 (CENTS-TD MANUAL-VOL 1)10) Technical Description Manual for the CENTS Code Volume 2 (CENTS-TD MANUAL-VOL 2)11) Technical Description Manual for the CENTS CodeVolume 3 (CENTS-TD MANUAL-VOL 3)CENPD-0190-A CENPD-266-P-A SuWpl ement N.A.N.A.N.A. April 1983 CEN-356(V)-P-A -P to LD-82-054 CENPD-132 CENPD-137-P CEN-372-P-A 01-P-A (ARI)N.A.May 1988 (April 1996)February 1993 N.A.1-P N.A. March 2001 4-P-A N.A. April 1998 2-P-A N.A. May 1990 N.A.NFM-005 N.A.January 2006 N.A.CE-NPD 282-P-A Vols. I CE-NPD 282-P-A Vols. 2 CE-NPD 282-P-A Vols. 3 2 March 2005 2 March 2005 2 March 2005 N.A.N.A.N.A.Page 6 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Title 12) Implementation of ZIRLOTM Cladding Material in CE Nuclear Power Fuel Assembly Designs (NO01-1900-01329-0)13) HERMITE, A Multi-Dimensional Space-Time Kinetics Code for PWR Transients
        -0.20               -0.15                 -0.10                       -0.05                   0.00               0.05             0.10                   0.15             0.20 CORE AVERAGE ASI Page 21 of 26
: 14) TORC Code, A Computer Code for Determining the Thermal Margin of a Reactor Core.15) CETOP-D Code Structures and Model-ing Methods for San Onofre Nuclear Generating Station Units 2 and 3 (NOO 1-1301-01185)
 
: 16) CPC Methodology Changes for the CPC Improvement Program (NOO1-1303-02283)17) Loss of Flow, C-E Methods for Loss of Flow Analysis (NOO1-1301-01203)
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                 Revision 20 Table 3.3.12-1 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff > 0.98 OPERATIONAL                   Number of Operating Charging Pumps MODE                     0               1         2           3 3                     12 hours       0.5 hours     ONA           ONA 4 not on SCS         12 hours       0.5 hours     ONA           ONA 5 not on SCS           8 hours       0.5 hours     ONA           ONA 4 & 5 on SCS           ONA           ONA         ONA           ONA Notes:   SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 22 of 26
: 18) Methodology for Core Designs Contain-ing Erbium Burnable Absorbers (NOO 1-0201-00035)
 
: 19) Verification of the Acceptability of a 1-Pin Burnup Limit of 60 MWD/kgU for Combustion Engineering 16 x 16 PWR Fuel (NO0 1-0201-00042)
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                 Revision 20 Table 3.3.12-2 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.98 &#x17d; Keff > 0.97 OPERATIONAL                   Number of Operating Charging Pumps MODE                     0               1           2           3 3                     12 hours         1 hour     0.5 hours     ONA 4 not on SCS         12 hours       1.5 hours   0.5 hours     ONA 5 not on SCS           8 hours       1.5 hours   0.5 hours     ONA 4 & 5 on SCS           8 hours       0.5 hours     ONA         ONA Notes:   SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 23 of 26
Report No.CENPD-404-P-A CENPD-188-A CENPD-161-P-A Rev Date Sumel ement 0 November 2001 July 1976 April 1986 N.A.I CEN-160(S)-P September 1981 April 1986 CEN-3 10-P-A CENPD-183-A CENPD-382-P-A CEN-386-P-A 0 0 0 0 June 1984 I August 1993 August 1992 Page 7 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 The cycle-specific operating limits for the specifications listed are presented below.3.1.1 -Shutdown Margin (SDM) -Reactor Trip Breakers Open The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.1 -1.3.1.2 -Shutdown Margin (SDM) -Reactor Trip Breakers Closed The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.2-1.3.1.4 -Moderator Temperature Coefficient (MTC)The moderator temperature coefficient (MTC) shall be within the area of Acceptable Operation shown in Figure 3.1.4-1.3.1.5 -Control Element Assembly (CEA) Alignment With one or more full-strength or part-strength CEAs misaligned from any other CEAs in its group by more than 6.6 inches, the minimum required MODES 1 and 2 core power reduction is specified in Figure 3.1.5-1. The required power reduction is based on the initial power before reducing power.3.1.7 -Regulating CEA Insertion Limits With COLSS IN SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limits 1 shown in Figure 3.1.7-12; with COLSS OUT OF SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limits 1 shown in Figure 3.1.7-2.2 Regulating Groups 1 and 2 CEAs shall be maintained fully withdrawn 3 while in Modes 1 and 2 (except while performing SR 3.1.5.3).1 A reactor power cutback will cause either (Case 1) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with no sequential insertion of additional Regulating Groups (Groups 1, 2, 3, and 4) or (Case 2) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with all or part of the remaining Regulating Groups (Groups 1, 2, 3, and 4) being sequentially inserted.
 
In either case, the Transient Insertion Limit and withdrawal sequence specified in the CORE OPERATING LIMITS REPORT can be exceeded for up to 2 hours.2 The Separation between Regulating Groups 4 and 5 may be reduced from the 90 inch value specified in Figures 3.1.7-1 and 3.1.7-2 provided that each of the following conditions are satisfied:
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                 Revision 20 Table 3.3.12-3 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.97 &#x17d; Keff> 0.96 OPERATIONAL                 Number of Operating Charging Pumps MODE                     0               1         2           3 3                     12 hours       2.5 hours   1 hour       ONA 4 not on SCS         12 hours       2.5 hours   1 hour     0.5 hours 5 not on SCS           8 hours       2.5 hours   1 hour     0.5 hours 4 & 5 on SCS           8 hours         1 hour     ONA           ONA Notes:   SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 24 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                 Revision 20 Table 3.3.12-4 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.96 > Keff> 0.95 OPERATIONAL                 Number of Operating Charging Pumps MODE                     0               1           2           3 3                     12 hours       3 hours     1 hour     0.5 hours 4 not on SCS         12 hours       3.5 hours   1.5 hours   0.75 hours 5 not on SCS           8 hours       3.5 hours   1.5 hours   0.75 hours 4 & 5 on SCS           8 hours       1.5 hours   0.5 hours     ONA Notes:   SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 25 of 26
 
PVNGS UNIT 1 CORE OPERATING LIMITS REPORT                   Revision 20 Table 3.3.12-5 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff < 0.95 OPERATIONAL                   Number of Operating Charging Pumps MODE                     0               1           2           3 3                     12 hours       4 hours     1.5 hours     1 hour 4 not on SCS         12 hours       4.5 hours     2 hours     1 hour 5 not on SCS           8 hours       4.5 hours     2 hours     1 hour 4 & 5 on SCS           8 hours       2 hours     0.75 hours     ONA 6                     24 hours       1.5 hours       ONA         ONA Notes:   SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 26 of 26
 
Enclosure 2 PVNGS Unit 2 Core Operating Limits Report (COLR)
Revision 16
 
O'Connor,                                    ,
Digitally signed by O'Connor, Tina M(Z06952)
Ti na M ~                                  J n6ason:oi2 SODN- cn=O'Connor, Tina M (Z06952) attest to the accuracy
[7Cic(*                rQ          ,/-       nd integrity of this document (Z0695                               '2       Date: 2009.10.28 05:57:33 -07'00' PALO VERDE NUCLEAR GENERATING STATION (PVNGS)
UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Effective 10/29/2009 Responsible Engineer               Foste r,                          lDigitally signed by Foster, Date
* Glenn A(Z35831)
                                                                        ' DN: cn=Foster, Glenn A Glenn. A                           ,(Z35831)
G         le
                                              *
* e* J
                                          /--,m,,*
A'%          f"R&#xfd;eason: I am the author of this
                                                                ,* ),,&#xfd;_document, Date: 2009.10.27 16:10:17 (Z. 3 5. 83                             -07'00' Independent Reviewer                   -,                           .*  Digitally signed by Delorenzi,;                         Delorenzi, Mark J(Z01931)
Date Mark    M  rk /J                    DION: cn=Delorenzi, Mark J f'7.*(ZO1931)
Reason: I have reviewed
                                                                          , thl*; ddument 7       Date: 2009.10.27 16:34:06
                                              .*,am        3l# m           -07'00' Responsible Section Leader Date Row Ro la          a,"  ,)
Digitally signed by Rowland,
                                                                      &#xfd;kj\iJames Dv**
W(Z80533)
N: cn=Rowland, James     W I                       A       *,(Z80533)
DtaO.I I
* VV/ ;Reason: Iam approving this James                   V,   1       documentas temporary
                                                                  /-.*Rload
                                                                  . .                *A*nlysis SL (Z8053/*/,.                             Date: 2009610.27 16:50:38
                                                                            -0700' Page 1 of 26
 
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT         Revision 16 Table of Contents Description                                                               Page Cover Page                                                                   1 Table of Contents                                                             2 List of Figures                                                               3 List of Tables                                                               4 Affected Technical Specifications                                             5 Analytical Methods                                                           6 CORE Operating Limits 3.1.1 Shutdown Margin (SDM) - Reactor Trip Breakers Open           8 3.1.2 Shutdown Margin (SDM) - Reactor Trip Breakers Closed         8 3.1.4 Moderator Temperature Coefficient (MTC)                       8 3.1.5 Control Element Assembly (CEA) Alignment                     8 3.1.7 Regulating CEA Insertion Limits                               8 3.1.8 Part Strength CEA Insertion Limits                           9 3.2.1 Linear Heat Rate (LHR)                                       9 3.2.3 Azimuthal Power Tilt (Tq)                                     9 3.2.4 Departure From Nucleate Boiling Ratio (DNBR)                 9 3.2.5 Axial Shape Index (ASI)                                     10 3.3.12 Boron Dilution Alarm System (BDAS)                         10 3.9.1 Boron Concentration                                         10 Page 2 of 26
 
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT           Revision 16 List of Figures Description                                                                 Page Figure 3.1.1-1 Shutdown Margin Versus Cold Leg Temperature                     11 Reactor Trip Breakers Open Figure 3.1.2-1 Shutdown Margin Versus Cold Leg Temperature                     12 Reactor Trip Breakers Closed Figure 3.1.4-1 MTC Acceptable Operation, Modes 1 and 2                         13 Figure 3.1.5-1 Core Power Limit After CEA Deviation                           14 Figure 3.1.7-1 CEA Insertion Limits Versus Thermal Power                       15 (COLSS in Service)
Figure 3.1.7-2 CEA Insertion Limits Versus Thermal Power                       16 (COLSS Out of Service)
Figure 3.1.8-1 Part Strength CEA Insertion Limits Versus Thermal Power         17 Figure 3.2.3-1 Azimuthal Power Tilt Versus Thermal Power                       18 (COLSS in Service)
Figure 3.2.4-1 COLSS DNBR Operating Limit Allowance for Both                   19 CEACs Inoperable In Any Operable CPC Channel Figure 3.2.4-2 DNBR Margin Operating Limit Based on the Core                   20 Protection Calculators (COLSS Out of Service, CEAC(s)
Operable)
Figure 3.2.4-3 DNBR Margin Operating Limit Based on the Core                   21 Protection Calculators (COLSS Out of Service, Both CEACs Inoperable In Any Operable CPC Channel)
Page 3 of 26
 
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT           Revision 16 List of Tables Description                                                                 Page Table 3.3.12-1 Required Monitoring Frequencies for Backup Boron               22 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff> 0.98 Table 3.3.12-2 Required Monitoring Frequencies for Backup Boron               23 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.98 > Keff> 0.97 Table 3.3.12-3 Required Monitoring Frequencies for Backup Boron               24 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.97 > Keff> 0.96 Table 3.3.12-4 Required Monitoring Frequencies for Backup Boron               25 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.96 > Keff> 0.95 Table 3.3.12-5 Required Monitoring Frequencies for Backup Boron               26 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff< 0.95 Page 4 of 26
 
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT                     Revision 16 This Report has been prepared in accordance with the requirements of Technical Specification 5.6.5. The Core Operating Limits have been developed using the NRC approved methodologies specified in Section 5.6.5 b of the Palo Verde Unit 2 Technical Specifications.
AFFECTED PVNGS TECHNICAL SPECIFICATIONS 3.1.1     Shutdown Margin (SDM) - Reactor Trip Breakers Open 3.1.2     Shutdown Margin (SDM)     - Reactor Trip Breakers Closed 3.1.4     Moderator Temperature Coefficient (MTC) 3.1.5     Control Element Assembly (CEA) Alignment 3.1.7     Regulating CEA Insertion Limits 3.1.8     Part Strength CEA Insertion Limits 3.2.1     Linear Heat Rate (LHR) 3.2.3     Azimuthal Power Tilt (Tq) 3.2.4     Departure From Nucleate Boiling Ratio (DNBR) 3.2.5     Axial Shape Index (ASI) 3.3.12   Boron Dilution Alarm System (BDAS) 3.9.1     Boron Concentration Page 5 of 26
 
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT                           Revision 16 ANALYTICAL METHODS The COLR contains the complete identification for each of the Technical Specification referenced topical reports (i.e., report number, title, revision, date, and any supplements) that provide the NRC-approved analytical methods used to determine the core operating limits, described in the following documents:
Title                         Report No.       Rev         Date       SuWpl ement
: 1) CE Method for Control Element Assem-             CENPD-        N.A.      January      N.A.
bly Ejection Analysis (NOO-1301-01204-1)             0190-A                    1976
: 2) The ROCS and DIT Computer Codes for               CENPD-        N.A. April 1983      N.A.
Nuclear Design (NOO1-1900-01412-0)               266-P-A
: 3) Modified Statistical Combination of             CEN-       01-P-A    May 1988        N.A.
Uncertainties (NOO1-1303-01747-2)            356(V)-P-A    (ARI)    (April 1996)
: 4) System 8 0 TM Inlet Flow Distribution         Enclosure      N.A.      February        1-P (NOO1-1301-01228-0)                     1-P to LD-                  1993 82-054
: 5) Calculative Methods for the CE Large           CENPD-        N.A. March 2001      4-P-A Break LOCA Evaluation Model for the                 132 Analysis of CE and W Designed NSSS (NOOl-1900-01192-3)
: 6) Calculative Methods for the CE Small             CENPD-        N.A. April 1998    2-P-A Break LOCA Evaluation Model                     137-P (NOO1-1900-01185-3)
: 7) Fuel Rod Maximum Allowable Pressure             CEN-372-      N.A.      May 1990      N.A.
(NOO1-0201-00026-1)                         P-A
: 8) Arizona Public Service Company PWR             NFM-005        N.A.      January      N.A.
Reactor Physics Methodology Using                                           2006 CASMO-4/SIMULATE-3 (NFM-005)
: 9) Technical Description Manual for the           CE-NPD          2    March 2005      N.A.
CENTS CodeVolume 1                        282-P-A (CENTS-TD MANUAL-VOL 1)                         Vols. I
: 10) Technical Description Manual for the           CE-NPD          2    March 2005      N.A.
CENTS Code Volume 2                       282-P-A (CENTS-TD MANUAL-VOL 2)                         Vols. 2
: 11) Technical Description Manual for the           CE-NPD          2      March 2005      N.A.
CENTS CodeVolume 3                       282-P-A (CENTS-TD MANUAL-VOL 3)                         Vols. 3 Page 6 of 26
 
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT              Revision 16 Title                      Report No. Rev  Date        Sumel ement
: 12) Implementation of ZIRLOTM Cladding            CENPD-    0  November      N.A.
Material in CE Nuclear Power Fuel            404-P-A         2001 Assembly Designs (NO01-1900-01329-0)
: 13) HERMITE, A Multi-Dimensional                  CENPD-       July 1976 Space-Time Kinetics Code for PWR Transients 188-A                            I
: 14) TORC Code, A Computer Code for                CENPD-       April 1986 Determining the Thermal Margin of a          161-P-A Reactor Core.
: 15) CETOP-D Code Structures and Model-             CEN-       September ing Methods for San Onofre Nuclear            160(S)-P        1981 Generating Station Units 2 and 3 (NOO 1-1301-01185)
: 16) CPC Methodology Changes for the CPC          CEN-3 10- 0    April Improvement Program (NOO1-1303-                 P-A           1986 02283)
: 17) Loss of Flow, C-E Methods for Loss of                    0    June Flow Analysis (NOO1-1301-01203)
CENPD-183-A         1984              I
: 18) Methodology for Core Designs Contain-        CENPD-    0  August ing Erbium Burnable Absorbers (NOO 1-         382-P-A         1993 0201-00035)
: 19) Verification of the Acceptability of a 1-     CEN-386-   0   August Pin Burnup Limit of 60 MWD/kgU for              P-A           1992 Combustion Engineering 16 x 16 PWR Fuel (NO0 1-0201-00042)
Page 7 of 26
 
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT                            Revision 16 The cycle-specific operating limits for the specifications listed are presented below.
3.1.1 - Shutdown Margin (SDM) - Reactor Trip Breakers Open The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.1 - 1.
3.1.2 - Shutdown Margin (SDM) - Reactor Trip Breakers Closed The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.2-1.
3.1.4 - Moderator Temperature Coefficient (MTC)
The moderator temperature coefficient (MTC) shall be within the area of Acceptable Operation shown in Figure 3.1.4-1.
3.1.5 - Control Element Assembly (CEA) Alignment With one or more full-strength or part-strength CEAs misaligned from any other CEAs in its group by more than 6.6 inches, the minimum required MODES 1 and 2 core power reduction is specified in Figure 3.1.5-1. The required power reduction is based on the initial power before reducing power.
3.1.7 - Regulating CEA Insertion Limits With COLSS IN SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limits1 shown in Figure 3.1.7-12; with COLSS OUT OF SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limits1 shown in Figure 3.1.7-2.2 Regulating Groups 1 and 2 CEAs shall be maintained fully withdrawn 3 while in Modes 1 and 2 (except while performing SR 3.1.5.3).
1 A reactor power cutback will cause either (Case 1) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with no sequential insertion of additional Regulating Groups (Groups 1, 2, 3, and 4) or (Case 2) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with all or part of the remaining Regulating Groups (Groups 1, 2, 3, and 4) being sequentially inserted. In either case, the Transient Insertion Limit and withdrawal sequence specified in the CORE OPERATING LIMITS REPORT can be exceeded for up to 2 hours.
2 The Separation between Regulating Groups 4 and 5 may be reduced from the 90 inch value specified in Figures 3.1.7-1 and 3.1.7-2 provided that each of the following conditions are satisfied:
a) Regulating Group 4 position is between 60 and 150 inches withdrawn.
a) Regulating Group 4 position is between 60 and 150 inches withdrawn.
b) Regulating Group 5 position is maintained at least 10 inches lower than Regulating Group 4 position.Page 8 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 c) Both Regulating Group 4 and Regulating Group 5 positions are maintained above the Transient Insertion Limit specified in Figure 3.1.7-1 (COLSS In Service) or Figure 3.1.7-2 (COLSS Out of Service).3 Fully withdrawn  
b) Regulating Group 5 position is maintained at least 10 inches lower than Regulating Group 4 position.
->147.75" (Pulse Counter indication) and >145.25" (RSPT indication) 3.1.8 -Part Strength CEA Insertion Limits The part strength CEA groups shall be limited to the insertion limits shown in Figure 3.1.8-1.3.2.1 -Linear Heat Rate (LHR)The linear heat rate limit of 13.1 kW/ft shall be maintained.
Page 8 of 26
3.2.3 -Azimuthal Power Tilt (Tq)The AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 10% with COLSS IN SERVICE when power is greater than 20% and less than or equal to 50%. Additionally, the AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 5% with COLSS IN SERVICE when power is greater than 50%. See Figure 3.2.3-1.3.2.4 -Departure From Nucleate Boiling Ratio (DNBR)COLSS IN SERVICE' and Both CEACs INOPERABLE in Any OPERABLE CPC Channel -Maintain COLSS calculated core power less than or equal to COLSS calculated core power operation limit based on.DNBR decreased by the allowance shown in Figure 3.2.4-1.COLSS OUT OF SERVICE and CEAC(s) OPERABLE -Operate within the region of acceptable operation of Figure 3.2.4-2 using any operable CPC channel.COLSS OUT OF SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel -Operate within the region of acceptable operation of Figure 3.2.4-3 using any operable CPC channel with both CEACs INOPERABLE.
 
Page 9 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 3.2.5 -Axial Shape Index (ASI)The core average AXIAL SHAPE INDEX (ASI) shall be maintained within the following limits: COLSS OPERABLE-0.18< ASI 0.17 for power > 50%-0.28 < ASI < 0.17 for power >20% and < 50%COLSS OUT OF SERVICE (CPC)-0.10 < ASI < 0.10 for power >20%3.3.12 -Boron Dilution Alarm System (BDAS)With one or both start-up channel high neutron flux alarms inoperable, the RCS boron concentration shall be determined at the applicable monitoring frequency specified in Tables 3.3.12-1 through 3.3.12-5.3.9.1 -Boron Concentration The boron concentration of all filled portions of the Reactor Coolant System and the refueling canal shall be maintained at a uniform concentration  
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT                           Revision 16 c) Both Regulating Group 4 and Regulating Group 5 positions are maintained above the Transient Insertion Limit specified in Figure 3.1.7-1 (COLSS In Service) or Figure 3.1.7-2 (COLSS Out of Service).
>_ 3000 ppm.Page 10 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.1-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS OPEN 7 ....., , , , , ......................,. ,. .. ... ............ ..........-----------------------.
3 Fully withdrawn - >147.75" (Pulse Counter indication) and >145.25" (RSPT indication) 3.1.8 - Part Strength CEA Insertion Limits The part strength CEA groups shall be limited to the insertion limits shown in Figure 3.1.8-1.
------------------------------------........................  
3.2.1 - Linear Heat Rate (LHR)
-....------ ------REGION OF ACCEPTABLE/
The linear heat rate limit of 13.1 kW/ft shall be maintained.
OPERATION z z REGIONOF UNACCEPTABLE
3.2.3 - Azimuthal Power Tilt (Tq)
.......................-
The AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 10% with COLSS IN SERVICE when power is greater than 20% and less than or equal to 50%. Additionally, the AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 5% with COLSS IN SERVICE when power is greater than 50%. See Figure 3.2.3-1.
---- --- -- ---- ---.. .. .. .. .. .. ....... .. .. .. ... .. .. ...... ... .....i: OPERATION--.... ................
3.2.4 - Departure From Nucleate Boiling Ratio (DNBR)
(350,1::.0) o 100 200 300 400 500 600 COLD LEG TEMPERATURE
COLSS IN SERVICE' and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Maintain COLSS calculated core power less than or equal to COLSS calculated core power operation limit based on.DNBR decreased by the allowance shown in Figure 3.2.4-1.
('F)Page 11 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.2-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS CLOSED 7I (51 6 5 4 z 03 2 0 REGION OF ACCEPTABLE-
COLSS OUT OF SERVICE and CEAC(s) OPERABLE - Operate within the region of acceptable operation of Figure 3.2.4-2 using any operable CPC channel.
...............
COLSS OUT OF SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Operate within the region of acceptable operation of Figure 3.2.4-3 using any operable CPC channel with both CEACs INOPERABLE.
O P E l A TIA o N ...,..-- ..-- .--- ............--  
Page 9 of 26
...........
 
-------------  
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT                           Revision 16 3.2.5 - Axial Shape Index (ASI)
.....................
The core average AXIAL SHAPE INDEX (ASI) shall be maintained within the following limits:
-------------  
COLSS OPERABLE
-- --------------------
        -0.18*< ASI *0.17 for power > 50%
g4 Z<Z 0 3[-,.... ... ...(350,4.0)'REGION OF UNACCEPTABLE
        -0.28 < ASI < 0.17 for power >20% and < 50%
.............  
COLSS OUT OF SERVICE (CPC)
........................
        -0.10 < ASI < 0.10 for power >20%
--T I OPERATION.. ... ... .. ... .--- --- ----- --- --..............
3.3.12 - Boron Dilution Alarm System (BDAS)
..............
With one or both start-up channel high neutron flux alarms inoperable, the RCS boron concentration shall be determined at the applicable monitoring frequency specified in Tables 3.3.12-1 through 3.3.12-5.
..............
3.9.1 - Boron Concentration The boron concentration of all filled portions of the Reactor Coolant System and the refueling canal shall be maintained at a uniform concentration >_3000 ppm.
...........l.ll.l.liL1L i .1............ .J. ...L ..0 100 200 300 400 COLD LEG TEMPERATURE
Page 10 of 26
('F)500 600 Page 12 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.4-1 MTC ACCEPTABLE OPERATION, MODES I AND 2 0.5 0.0-0.5-1.z o -1.5 0 U-2.0 1 -2.5< -3.0 0-3.5-4.0-4.5-"%0. '&#xfd; ' ...,: ' " ' ..' ..... i.. ..., .., ..(100%,-o.............................  
 
------ ....... ............---------------.......  
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT                                                                           Revision 16 FIGURE 3.1.1-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS OPEN 7 .. .           ..       ,, , ,             , .. . . .         . . . ..             . . . . . . . .. . . . ,. ,. ..   .
..............  
                          . .. . . . . . . . . . . ----------------------
............................
      .. . . . . . . . . . --------------
..................
    -----------------------.                                                          ....
M TC..............  
                                                                        ........................             ------- ------
.............
REGION OF ACCEPTABLE/
-A R E A O F- ...................................................-ACCEPTABLE OPEPATION-.......... _ ----------
OPERATION z
-...... .....-- ..................
z REGIONOF
.... .... .... .... .... .... ....-------------.. ...........-----------------.... ......................... ....I,-- --------------------------. ................--0%,-3.4)-.........-- -- ----..........  
                            ...................
---------------- ------------.......- ----------------- ------. ...... ..... ..-- -----....i. ...-- ------- -- -- -- ----------------
                      .......................-      ...................
--. ...I I I m l 0 10 20 30 40 50 60 70 80 90 100 CORE POWER LEVEL (% OF RATED THERMAL POWER)Maintain Operation within Boundary TECH SPEC 3.1.4 Maximum Upper Limit ........Page 13 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.5-1 CORE POX 92 .........15 z 0 r- -ug~-0-VER REDUCTION AFTER 16 -100% to>80% RTP.. ......... .... .........
                                                                      ........
.......----------1 12. ..80% to>70% RTP 9---- 7----- --- ........-  
                                                                        ---- ---              ------ ---i:*
--- .....1o CEA DEVIATION*
UNACCEPTABLE OPERATION
... 20 15 10 5 8 -70% to>45% RTP 6 5---------  
                                                                            -          -              ................
------- ----- ---------------
                                                                                                              ....
:!&#xfd;45% RTP................  
(350,1::.0) o                   100                     200             300               400                   500             600 COLD LEG TEMPERATURE ('F)
.......................  
Page 11 of 26
...................
 
0 I I.........1 .1 ......I .......................................0 10 20 30 40 TIME AFTER DEVIATION, MINUTES 50 60* WHEN CORE POWER IS REDUCED TO 35% OF RATED THERMAL POWER PER THIS LIMIT CURVE, FURTHER REDUCTION IS NOT REQUIRED.I Page 14 of 26 PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.7-1 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS IN SERVICE), r, I.U 0.9 0.8 0.7 R ,..< 0.6 0.5 0 z 0.4 0 0.3 0.2 0.1 00l-- ------- --- ---- ----(SEE FOO.TNOT-E IN SEACTI N -31.7---------
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT                                                                               Revision 16 FIGURE 3.1.2-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS CLOSED 7I (51 6                                                                         -------------           . ......
                                                                                            ..............
REGION OF ACCEPTABLE-5    ............... OP E l A TIAo N...,..--..-- ............--...........-------------
                                                  .---                                    -- --------------------       ..............
                                                                                                                          ..............
4 Zg4                                                                          (350,4.0)
        <
z 03      Z 0
                                                                                                                          ..............
[-,
                                                                  'REGION OF UNACCEPTABLE 2                                                ............. ........................
T I --                                    ..........
OPERATION
                                  ....... ...
                                                              ....
                                                                ..........----------------
0    .l.ll.l.liL1L       i .1                     .   .   .   .                                         . . . ...... J.
                                                                                                                            . . .L..
0                   100               200               300                       400             500                      600 COLD LEG TEMPERATURE ('F)
Page 12 of 26 3
 
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT                                                                                                                                                             Revision 16 FIGURE 3.1.4-1 MTC ACCEPTABLE OPERATION, MODES I AND 2 0.5
      -                    "%0.
                              '&#xfd; ,:' . ..                       * .*' " ' . .' ..... i.. .                                                           . ., . ., . .
0.0                                                                                                                                                                        (100%,-o.
                                                                                                                                  .............. ............................
  -0.5    ............................
          ------                                         .......         ............---------------.......
  -1.
z o -1...................                                         ............. MTC..............
                                                                                              - A R EA O F-                      ...................................................
0
                                                                                    -ACCEPTABLE U
OPEPATION
  -2.0
        - . . . . ----------    . . . .             ..               -                                  ...... .....--         _..................
                                                                                                                                                    .... .... .... .... .         ... .... ....
1 -2.5
                                          . . .--. .- .-. -. . -..-
                                -------------..                                          -. -. .- -. -. . . . . . . . . I,--
                                                                      - - . . .- -. . .-. ...                            . --------------------------.
                                                                                                                            .. .....
                                                                                                                                  ..                                           . . . . . . . . . . . . . . ..-
< -3.0
            .........
                    ----.......... --------------
0        -0%,-3.4)
  -3.5  -  -- --                                                                                             ------------.......-                                  -----------
  -4.0                                                                                                                                                                                                                  I
                                ------      . .....
                                        ------.          . . . --     ...-----
                                                                          .                . . . . i.--   . .-------
                                                                                                                .            --   ----   -                   ---------------       --.    . . .
  -4.5    I I ml 0                    10            20                      30              40                  50              60                  70                80                90                        100 CORE POWER LEVEL
(% OF RATED THERMAL POWER)
Maintain Operation within Boundary TECH SPEC 3.1.4 Maximum Upper Limit ........
Page 13 of 26
 
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT                                                                               Revision 16 FIGURE 3.1.5-1 CORE POXVER REDUCTION AFTER CEA DEVIATION*
92   .........                                                                                                             20          ...
16 -100% to
                                                                                                                >80% RTP 15                                                                                                                          15 z0 r-  -
                                                                          .......... .... .............------
1           .     . 12. 80% to ug~
                                                                                                                >70% RTP 1o 9---- ---   ........- ---     7-----
                                                                                                                        .....
10 8     -70% to
                                                                                                                >45% RTP 6
5                                                                                 ----------------
                                                                                                          ------ --------------
5
:!&#xfd;45% RTP
          -                0-0                                                                    ................                   ...................
                                                                                          .......................
I
              . . . . . . . . . 1 . 1 . . . . . . II . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
0                   10               20                   30                 40                 50                  60 TIME AFTER DEVIATION, MINUTES
* WHEN CORE POWER IS REDUCED TO 35% OF RATED THERMAL POWER PER THIS LIMIT CURVE, FURTHER REDUCTION IS NOT I
REQUIRED.
Page 14 of 26
 
PVNGS UNIT 2 CORE OPERATING LIMITS REPORT                                                                                               Revision 16 FIGURE 3.1.7-1 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS IN SERVICE)
            , r, I.U 0.9                       -- -----
                                            ----- --------               (SEEFOO.TNOT-E IN SEACTI N -31.7---------
FOR XPPLICA&#xfd;BILi'1Y FOLLOWIMNG::
FOR XPPLICA&#xfd;BILi'1Y FOLLOWIMNG::
A REACTOR CUTBACK) ..................
0.8                                                          A REACTOR CUTBACK)                                ..................
...... .....
0.7                                  .      .....        . ....  -RP-4-POS=-(72-5--xFRA*C.-PWR)                          +-25..
+-25..GRP 5 POS =
R                                                                GRP 5 POS = (*72.5::x FRAC. PWR                                -64.5
FRAC. PWR -64.5 z..... ... ..............
        ,..
....... -- ---- ------ ----................
        <    0.6 z.
                                          ....                  ...--
                                                                .....................
                                                                        ---- ------    ----.. . . . . . .*,.
                                                                                                          . .. . ................ ......... ........ . ._:
0.5        J1
a) Regulating Group 4 position is between 60 and 150 inches withdrawn.
a) Regulating Group 4 position is between 60 and 150 inches withdrawn.
b)' Regulating Gro up 5 position is maintained at least 10 inches lower than Page 8 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Regulating Group 4 position.c) Both Regulating Group 4 and Regulating Group 5 positions are maintained above the Transient Insertion Limit specified in Figure 3.1.7-1 (COLSS In Service) or Figure 3.1.7-2 (COLSS Out of Service).3 Fully withdrawn  
b)' Regulating Gro up 5 position is maintained at least 10 inches lower than Page 8 of 26
->147.75" (Pulse Counter indication) and >145.25" (RSPT indication) 3.1.8 -Part Strength CEA Insertion Limits The part strength CEA groups shall be limited to the insertion limits shown in Figure 3.1.8-1.3.2.1 -Linear Heat Rate (LHR)The linear heat rate limit of 13.1 kW/ft shall be maintained.
 
3.2.3 -Azimuthal Power Tilt (T-)The AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 10% with COLSS IN SERVICE when power is greater than 20% and less than or equal to 50%. Additionally, the AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 5% with COLSS IN SERVICE when power is greater than 50%. See Figure 3.2.3-1.3.2.4 -Departure From Nucleate Boiling Ratio (DNBR)COLSS IN SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel -Maintain COLSS calculated core power less than or equal to COLSS calculated core power operation limit based on DNBR decreased by the allowance shown in Figure 3.2.4-1.COLSS OUT OF SERVICE and CEAC(s) OPERABLE -Operate within the region of acceptable operation of Figure 3.2.4-2 using any operable CPC channel.COLSS OUT OF SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel -Operate within the region of acceptable operation of Figure 3.2.4-3 using any operable CPC channel with both CEACs INOPERABLE.
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                           Revision 19 Regulating Group 4 position.
Page 9 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 3.2.5 -Axial Shape Index (ASI)The core average AXIAL SHAPE INDEX (ASI) shall be maintained within the following limits: COLSS OPERABLE-0.18 < ASI < 0.17 for power > 50%-0.28 < ASI < 0.17 for power >20% and < 50%COLSS OUT OF SERVICE (CPC)-0.10 < ASI < 0.10 for power >20%3.3.12 -Boron Dilution Alarm System (BDAS)With one or both start-up channel high neutron flux alarms inoperable, the RCS boron concentration shall be determined at the applicable monitoring frequency specified in Tables 3.3.12-1 through 3.3.12-5.3.9.1 -Boron Concentration The boron concentration of all filled portions of the Reactor Coolant System and the refueling canal shall be maintained at a uniform concentration  
c) Both Regulating Group 4 and Regulating Group 5 positions are maintained above the Transient Insertion Limit specified in Figure 3.1.7-1 (COLSS In Service) or Figure 3.1.7-2 (COLSS Out of Service).
> 3000 ppm.Page 10 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.1-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS OPEN 7 6 5 03 2 0.........--- -- -- --- -- --- -- --- -- -- --- -- --- -- --- -- --.. ... .. ...... ........ .........( 5 0 .......* REGION OF(00)ACCEPTABLE-OPERATION-~REGION :OF*UNACCEPTABLE
3 Fully withdrawn   - >147.75" (Pulse Counter indication) and >145.25" (RSPT indication) 3.1.8 - Part Strength CEA Insertion Limits The part strength CEA groups shall be limited to the insertion limits shown in Figure 3.1.8-1.
*OPERATION  
3.2.1 - Linear Heat Rate (LHR)
-(350,1:.0)
The linear heat rate limit of 13.1 kW/ft shall be maintained.
............  
3.2.3 - Azimuthal Power Tilt (T-)
.... ........ .............  
The AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 10% with COLSS IN SERVICE when power is greater than 20% and less than or equal to 50%. Additionally, the AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 5% with COLSS IN SERVICE when power is greater than 50%. See Figure 3.2.3-1.
.........  
3.2.4 - Departure From Nucleate Boiling Ratio (DNBR)
..................
COLSS IN SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Maintain COLSS calculated core power less than or equal to COLSS calculated core power operation limit based on DNBR decreased by the allowance shown in Figure 3.2.4-1.
I........  
COLSS OUT OF SERVICE and CEAC(s) OPERABLE - Operate within the region of acceptable operation of Figure 3.2.4-2 using any operable CPC channel.
........ ...........
COLSS OUT OF SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Operate within the region of acceptable operation of Figure 3.2.4-3 using any operable CPC channel with both CEACs INOPERABLE.
0 100 200 300 400 COLD LEG TEMPERATURE (fF)500 600 Page 11 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.2-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS CLOSED 7 6 5 REGION OF ACCEPTABLE-OPERATION..I_.
Page 9 of 26
2 z 0...............
 
4 3 2 0 (350,4.0)REGION OF UNACCEPTABI OPERATION------ I ...(500,6.5):
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                           Revision 19 3.2.5 - Axial Shape Index (ASI)
LE....... ....---- -- -- ---- ---........................................0 100 200 300 400 COLD LEG TEMPERATURE
The core average AXIAL SHAPE INDEX (ASI) shall be maintained within the following limits:
('F)500 600 Page 12 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.4-1 MTC ACCEPTABLE OPERATION, MODES 1 AND 2 0[.-U L-.W 0[.-0 0.5 0.0-0.5-1.0-1.5-2.0-2.5-3.0''"." 0.... :. .......-( :: ...... ........ (.. .00O%,Q------------
COLSS OPERABLE
: i. ....... i ..........  
        -0.18 < ASI < 0.17 for power > 50%
... ....... ..... ................- ------i (100%.-0.2
        -0.28 < ASI < 0.17 for power >20% and < 50%
.... ... ... .... ... ..........  
COLSS OUT OF SERVICE (CPC)
...-- -- -..........................--  
        -0.10 < ASI < 0.10 for power >20%
..........................................................  
3.3.12 - Boron Dilution Alarm System (BDAS)
-..---------
With one or both start-up channel high neutron flux alarms inoperable, the RCS boron concentration shall be determined at the applicable monitoring frequency specified in Tables 3.3.12-1 through 3.3.12-5.
.-- ..-------
3.9.1 - Boron Concentration The boron concentration of all filled portions of the Reactor Coolant System and the refueling canal shall be maintained at a uniform concentration > 3000 ppm.
.- ... ..................
Page 10 of 26
-- -----...........................................  
 
.....................----.................  
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                                                                                 Revision 19 FIGURE 3.1.1-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS OPEN 7
.... ........ .............----
6   . . . . . . . --
---- --- ...... .............  
                    ..---
&#xfd;M T -C -A R E A --O F ...................................................
                      -- --- ----- ----- ------- -----
ACCEPTABLE
                                                      ---------... .......... . . . . ....
.. .'. .........................  
                                                                                        . . . . . (. 5. 0 . . .   .. .     ...
.. ....-- -----------.............
5
:...............................  
* REGION OF(00)
.........................-
ACCEPTABLE-OPERATION
.. .......................... i .... .. ... ..i .... ...... ..--------------------... ...... ...... ... .--------.. ..... .... ..... ..... ....... ....(0100%,4.2
                        ....  ........     ............
...-- ----.... ...I ....i... ....-- ----- .-- ------ -- -- -- -- ---- ---- -- -- -- --.. .---.. .--.. .L .........................
                                      ............
-3.5-4.0.a 5-45 0 10 20 30 40 50 60 70 80 90 100 CORE POWER LEVEL (% OF RATED THERMAL POWER)Maintain Operation within Boundary TECH SPEC 3.1.4 Maximum Upper Limit ........Page 13 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 I FIGURE 3.1.5- 1 CORE POWER REDUCTION AFTER CEA DEVIATION*
                                            .         ...........*....... ................I........   ........ ...........
I r.. .. ... .rn -r-r-T-rrr T.........
03
...... 1111rrrIr  
                                                                          -                  ~REGION :OF
-1 1 T r Ir[n[rs 20 A 15 0m 15 t0 t0 5 5 0 0 10 20 30 40 50 60 TIME AFTER DEVIATION, MINUTES* WHEN CORE POWER IS REDUCED TO 35% OF RATED THERMAL POWER PER THIS LIMIT CURVE, FURTHER REDUCTION IS NOT REQUIRED.Page 14 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.7-1 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS IN SERVICE)1.0 m 0.9 +-0.8 -0.7 0.6 w H 0.5 0 0.4 U 0.3 0.2 0.1 A )0 (n:0 0 Z...-0.* -....!.. .....I I 1 I 1 I I I I I-(SEE FOOaTNOT-E-IN -SE-CTION3&#xfd;I-7  
                                                                                            *UNACCEPTABLE 2
-.................
                                                                                              *OPERATION                          -
(350,1:.0) 0 0                100                  200                300                      400                    500              600 COLD LEG TEMPERATURE (fF)
Page 11 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                                             Revision 19 FIGURE 3.1.2-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS CLOSED 7
(500,6.5):
6 REGION OF ACCEPTABLE 5        -OPERATION..I_.
2
                                              ...............
4 (350,4.0) z 0 3 REGION OF UNACCEPTABILE 2
OPERATION
                                                                        .. . .
                                                                .. . . ...     ---------------
                                      ------           I. . .
.............................                       ...........
0         100       200       300               400                   500              600 COLD LEG TEMPERATURE ('F)
Page 12 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                                                                                                                                 Revision 19 FIGURE 3.1.4-1 MTC ACCEPTABLE OPERATION, MODES 1 AND 2 0.L                                                                                       .........................
                                    ''"."         0....                                             :........
                                        - i*  (                                                     ::                       ......   .......                     .00O%,Q
(..
i.------------
                                .... ... i .......... ..........                       .....                       ...........     ......-       ------
0.0 i                                                               (100%.-0.2
            .... ...   ...   .... ... ..........       . --
                                                          --   . . -..........................--.......................................................... *............
    -0.5
            - ..---------      .--..-------        .-...             --- - - - - ...........................................
                                                            ..................                                                       .....................----................. .
    -1.0 0
[.-         . .. ........ ----       .............----
                                                    ---    ...... ............. &#xfd;MT-C-AR EA--O F ...................................................
    -1.5 ACCEPTABLE W
U
    -2.0 L-.
                        . . . . . . . . ...............
                    ....'.                     ------- ------             .. . . . . ............. *............. :...............................     .........................-
    -2.5 0
[.-        .. . . . . . . . . . . . . . . ........ ... . -             .-.-.--   .....
                                                                                    ...
                                                                                    -- i-....
                                                                                      ..- .... i---- ..................-.-------..
                                                                                            --..-----                                                        .. .... ... .... ...
                                                                                                                                                    ..............
    -3.0 0
    -3.5                                            (0100%,4.2
    -4.0
              . .----
              --   .        . ..... . I . . . . . i...                 . .---
                                                                        --     .         -- --------     --------------                      .---..------.----..         .
                                                                                                                                                                              --..
    .a 5
    -45 0              10                20                    30                  40          50                    60        70              80            90            100 CORE POWER LEVEL
(%OF RATED THERMAL POWER)
Maintain Operation within Boundary TECH SPEC 3.1.4 Maximum Upper Limit ........
Page 13 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                                Revision 19 I
FIGURE 3.1.5- 1 CORE POWER REDUCTION AFTER CEA DEVIATION*
A    I    .. . r..
rn
                    .. .-r-r-T-rrr T.........           - 1 1 T r...... Ir[n[rs 20 1111rrrIr 15                                                                            15 0m t0                                                                           t0 5                                                                           5 0
0           10             20         30     40       50             60 TIME AFTER DEVIATION, MINUTES
* WHEN CORE POWER IS REDUCED TO 35% OF RATED THERMAL POWER PER THIS LIMIT CURVE, FURTHER REDUCTION IS NOT REQUIRED.
Page 14 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                                                                                     Revision 19 FIGURE 3.1.7-1 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS IN SERVICE) m 1.0                                                 I  I      1        I        1      I    I        I        I      I 0.9 +-                                             -(SEE FOOaTNOT-E-IN -SE-CTION3&#xfd;I-7-.................
FOR APPLICABILITY FOLLOWING:
FOR APPLICABILITY FOLLOWING:
A REACTOR CUTBACK).A _ C.T .._ A ..)....................  
                                                                    .A_ C.T . ._
.................--
A REACTOR            CUTBACK)                      .................--
---- ---- --GRP4,-POS-=
A. . ).................... ----     ------
(-I2.5-,x-FRA-C.
0.8  -
PWR) -+- 25.5---GRP 5 POS = (172.5 x FRAC. PWR) -64.5... ...........................
0.7                                                GRP4,-POS-= (-I2.5-,x-FRA-C. PWR) -+-25.5---
L-- .... ......................  
GRP 5 POS = (172.5 x FRAC. PWR) - 64.5 0.6 w                              0 H                                          Z 0.5
......-- ----- ------..... ... .------ ---------- ---- ------ ----- -- _ --_ --1 I I I I 1 I GROUP5 GROUP3 GROUP I I i I I I i I I I I I I I I I I I FW* 120 90 60 30 0 FW* 120 90 60 30 0 FW* 120 90 60 30 0 GROUP4 GROUP2 Ft* 10 t0 6+0 3t Ft I1t0 1 0 6+0 30 CEA POSITION (INCHES WITHDRAWN)
                              .. .                  -
*Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).Page 15 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.7-2 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS OUT OF SERVICE)1.0 0.9 0.8 0.7 2 0.6-.-0.5 0 0.4.0.3 0.2 0.1 An t 0.0zV 0-- ---- -------............% ~ ~ ~ ~ --- --- ----------- i. .... ..... ...? .... I ..... ....... ....... :........
0 (n 0
:......(SEE FOOTNOTE-IN-SECTION 3-1-....FOR APPIICABILITY FOLLOWING....E...AC.T..O.R...C....-BAK)  
0.4 U                  :0 0.
-.............-
                                                              ...      ...........................
--- GRP4POS-=
L--
(250.9 y FRAC; PWR-+-9.82-GRP 5 POS (250.9 k FRAC. PWR) -80.18.. ...... ...... ..... ... ....... .... ... ----- ... ..... .. ...-- -... .. ....... ... .... ... ... ... ... --------.... ....----- ----...I I I I I V GROUP5 GROUP3 GROUP 1 I I I I I I I I I I I I I I I I I I FW* 120 90 60 30 0 FW* 120 90 60 30 0 FW* 120 90 60 30 0 GROUP 4 GROUP 2 Ft I t10 t9 60 3+0 Ft
                                                                        --
* 100 6+0 3 CEA POSITION (INCHES WITHDRAWN)
                                                                        ----
*Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).Page 16 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.8-1 PART STRENGTH CEA INSERTION LIMITS VERSUS THERMAL POWER 0.0 2 0 .0 ..... ....: .... ....... .......-- -- --- -- --- -.--- -- --- -. ..--- --.--- -- .-.-- --.-- --.-- --- -10.0 20.0 30.040.0 S 50.0 m 60.0 o INSERTION LIMIT (75.0::INCHES
                                                                          ---  --- .....         .......
: 30. ------ --------------  
                                                                                                        .------ .....................
-------- ------- .....5 90.0 ............  
                                                                                                                    --------     ......
........OPERATION.......
                                                                                                                                      .
.ZO ;UNACCEPTABLE
0.3
: RESTRICTED, 1 0 0 .0 --. .. ..-- ----- ... ..... ....i........................
                              *  - . . . .!.. . . . .     .
-- ----------------  
                                                                                                          ---- ---- - ---   --- -- --_ --_ --
-- -- --- --------- ------- -- -------...  
0.2 0.1 A )        I I     I       I       11    I GROUP I I     GROUP5 i I     I       I           i I GROUP3 I I                     I I             I     I       I         I I         I FW* 120 90       60       30       0   FW* 120       90     60       30         0     FW* 120         90       60       30     0 GROUP4                                         GROUP2 Ft*10                 t0 6+0 3t             Ft         I1t0 1 0 6+0           30 CEA POSITION (INCHES WITHDRAWN)
-- ---- --.............  
*Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).
.....z Z 710.0 -..-----...-
Page 15 of 26
............  
 
---..............
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                                                                                                                     Revision 19 FIGURE 3.1.7-2 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS OUT OF SERVICE) 1.0 0.9                                             % ~i.~. .~.. . .~. ..---. .---         .? .--- . .. --------I............ ....... :........ :......
:- -----------
0.8                                              (SEE FOOTNOTE-IN-SECTION 3-1-....
I .................  
FOR APPIICABILITY FOLLOWING
.......................................
                                                              .... E...AC.T..O.R...C....-BAK) -                                               .............-
1 LONG TERM STEADY STATE INSERTIONTLIMITS!
0.7 2
(112.5 INCHES 130.0. ...........  
0 0.6                                            ---GRP4POS-= (250.9 y FRAC; PWR-+-9.82-GRP 5 POS                         (250.9 k FRAC. PWR) - 80.18
------------  
        -.-        0.              ------
-.........................
                                      - - --    -- -
--------------........  
* 0.5
.............  
                                                              ... . ... . . . . .   .. . . . ... .. . . . . ... . . .. .--
--------------
                                                                                                                        .. ---                       -. .. .. . ...... . .. . .
...........
                                                                                                                                  . .. . . ... .. . ..--
u 3 ~ .. .. ....0 .............i. ......i............
0 0.4
b PiT O -- -- -- -- -.........  
          . 0.3 0zV
-- --- --... ... ... ... ... ... .. -------------..............
                                    .. .. ..    ......
OPERATION ACCEPTABLE 1 4 o .0 -....- -.................... ....... ............ ........ ............------------. .......................... .............. .....150.0 .... I ... ...... .... I .............  
                                                                                                                                                        ..   ...     ...   .
...... I ..... .......1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 FRACTION OF RATED THERMAL POWER Page 17 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.2.3-1 AZIMUTHAL POWER TILT VERSUS THERMAL POWER (COLSS IN SERVICE)20.0 15.0 I-F-F-N 10.0-. .........
0.2        IHN*HHB*
;.. ...... ---------REGION OF..REGION -OF ...............
0.1                                                            ....
UNACCEPTABLE OPERATION--- -------.. ......... ........5.0 T I&#xfd;LCCEPTABLE OPERATION-.I ..0.0 20................
                                                                              .      - - - -- - - - . . ... . . . - - - --- - - -                                     .. .
.0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 CORE POWER LEVEL (% OF RATED THERMAL POWER)Page 18 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT FIGURE 3.2.4-1 COLSS DNBR OPERATING LIMIT ALLOWANCE FOR BOTH CEACs INOPERABLE Revision 19 IN ANY OPERABLE CPC CHANNEL 25 20..........................
Ant          I     I I         I       I V
...................
GROUP3                                                               GROUP 1 I GROUP5 I I I         I         I       I   I       I             I       I           I             I         I             I         I             I         I FW* 120 90     60 30 0 FW* 120 90                             60         30 0 FW* 120 90                                             60           30           0 GROUP 4                                               GROUP 2 Ft It10          t9 60 3+0 Ft* 100 6+0 3 CEA POSITION (INCHES WITHDRAWN)
(95,20)z 0 0 z 15 101-:(80,5)(70,0);5 0...................
*Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).
50 60 70 80 90 100 CORE POWER LEVEL (% OF RATED THERMAL POWER)Page 19 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.2.4-2 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, CEAC(s) OPERABLE)2.5 2.4 ri-w-...............,-iY~i u................................
Page 16 of 26
U l~ l l U m l l... .... 1'IUY ll rrri999II 2.3 UD u 2.2 2.1 ACCEPTABLE OPERATION ANY POWER LEVEL AT LEAST 1 CEAC OPERABLE IN EACH OPERABLE CPC CHANNEL: i:.. ............. ...........-- ------.................  
 
-- --------- --------..................  
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                                                                                                               Revision 19 FIGURE 3.1.8-1 PART STRENGTH CEA INSERTION LIMITS VERSUS THERMAL POWER 0.0 20 .0 10.0     . . . .. .... :.... . . . . . .. -------       .--  .--- . . --
.............  
                                                                        . -.---         . -.
... ... ....... ...... ....... ......(-6.1,2.28)
                                                                                    . ---                       -- ..---   --.---.-.-- -- .--   -- ---   .-- -
-~ ~ ------------------
20.0 30.0
I....,----------.....  
*<      40.0 S   50.0
..... ....: -------........-----la**ACCEPTABLE OPERATION POWER AT OR ABOVE 90%AT LEAST 1 CEAC OPERABLE IN-..---.-...-
: 30.       ------       -------------- --------                                                                 - ------                       .....
.................
m      60.0 o                                                                                          TRANSIE*NT INSERTION LIMIT (75.0::INCHES 10 0.0      --.   ..-----
EACH OPERABLEECPC CIIANNEL:".
                        --  ..         . .. .
*(0.0.,2.00)
                                      ....         . . .. i........................
(-01, 93 UNACCEPT'ABLE
                                                            ------- -----------             -------- --------   -------             ------
.. .... .. .-- --- --- ---------------------------------.. .O P E R A T IO N ..... ..................................  
                                                                                                                          ---------...           -- . . . . .
............
                                                                                                                                              .............
.... .....I .......I .... ...I ..............I .......I .......I ......2.0 1.9 18-0.20 -0.15 -0.10 -0.05 0.00 0.05 CORE AVERAGE ASI 0.10 0.15 0.20 Page 20 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Re FIGURE 3.2.4-3 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL)3.6 .... ... r .... ...........  
z 5
........ ..........  
90.0     ............                                                  ........                   OPERATION.......                               .
.... .. .... r ACCEPTABLE OPERATION ANY POWER LEVEL BOTH CEACs INOPERABLE 3 .5 ...................................  
ZO                      ;UNACCEPTABLE  :
-- --- ---- --- ---- --- ---- ---O E B C ----------------------...............  
* RESTRICTED, Z  u 3710.0
................IN ANY OPERABLE CPC CHANNEL 34 (Ot,341)(01.1,3.4....
          ~0 ..       ......b*......
3 .4 .... .. ........ ..............
                  -..-----...-   PiT          .......i.
.... .. .-- --------. .................
                                    ............     O --      ......i............
] .............  
                                                                  --  --
--... .............  
                                                      ---.............. -- -I .........:-.................
.U (-0.1.3.27) 3 .2 ...................................  
                                                                  -----------               -- ---    --............   ........ -------------........
.............---.................  
                                                                                                                      .......................................
..... ...................................................  
1                  LONG TERM STEADY STATE INSERTIONTLIMITS! (112.5 INCHES
................  
                ...........
.UNACCEPTABLE OPERATION 3 .0 .. ... .I ........ .........
130.0. ------------      -              ......................... -                  -------------........
i ........i .. .......i ....... .. I .........
                                                                                                            .         -
I ....-0.20 -0.15 -0.10 -0.05 0.00 0.05 0.10 0.15 0.20 CORE AVERAGE ASI vision 19 Page 21 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Table 3.3.12-1 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff> 0.98 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours 0.5 hours ONA ONA 4 not on SCS 12 hours 0.5 hours ONA ONA 5 not on SCS 8 hours 0.5 hours ONA ONA 4 & 5 on SCS ONA ONA ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 22 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Table 3.3. 12-2 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.98 Keff > 0.97 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours 1 hour 0.5 hours ONA 4 not on SCS 12 hours 1.5 hours 0.5 hours ONA 5 not on SCS 8 hours 1.5 hours 0.5 hours ONA 4 & 5 on SCS 8 hours 0.5 hours ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 23 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Table 3.3.12-3 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.97 > Keff> 0.96 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours 2.5 hours 1 hour ONA 4 not on SCS 12 hours 2.5 hours 1 hour 0.5 hours 5 not on SCS 8 hours 2.5 hours 1 hour 0.5 hours 4 & 5 on SCS 8 hours 1 hour ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 24 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Table 3.3.12-4 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.96 > Keff> 0.95 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours 3 hours 1 hour 0.5 hours 4 not on SCS 12 hours 3.5 hours 1.5 hours 0.75 hours 5 not on SCS 8 hours 3.5 hours 1.5 hours 0.75 hours 4 & 5 on SCS 8 hours 1.5 hours 0.5 hours ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 25 of 26 PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Table 3.3.12-5 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff < 0.95 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours 4 hours 1.5 hours 1 hour 4 not on SCS 12 hours 4.5 hours 2 hours 1 hour 5 not on SCS 8 hours 4.5 hours 2 hours 1 hour 4 & 5 on SCS 8 hours 2 hours 0.75 hours ONA 6 24 hours 1.5 hours ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 26 of 26}}
                                                                                                                ............                   ...........
                                                                                                                                        -------------
14o.0 -.-...-                                   .. . ..--
                            . . .. .. .. . . .. ................---.....   ............. . .. ....
                                                                      -------.                                           ........................................
                                                                                                                                                              .....
OPERATION ACCEPTABLE 150.0       ....       I ...             .       .     ....           ....               I
                                                                                              .............           .   ..... I. ....               .......
1.0           0.9           0.8           0.7             0.6           0.5             0.4     0.3             0.2             0.1             0.0 FRACTION OF RATED THERMAL POWER Page 17 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                                                         Revision 19 FIGURE 3.2.3-1 AZIMUTHAL POWER TILT VERSUS THERMAL POWER (COLSS IN SERVICE) 20.0 15.0   I-                                 ..REGION -OF...............
UNACCEPTABLE OPERATION F-10.0 F-N              -.  ;..
            .........   ......   ---------  - --- - - - - - -.. . . . . . . . ... .. . . .. .
5.0                                                                       T             I REGION OF &#xfd;LCCEPTABLE OPERATION
                                                                                    -   . I . .
0.0 ................
20 .0       30.0       40.0       50.0           60.0             70.0           80.0   90.0 100.0 CORE POWER LEVEL
(% OF RATED THERMAL POWER)
Page 18 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                                     Revision 19 FIGURE 3.2.4-1 COLSS DNBR OPERATING LIMIT ALLOWANCE FOR BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL 25 (95,20) 20  . .........................
z 0
15        ...................
0 z   101-5                                                           ...................
:(80,5)
(70,0);
0 50                 60               70         80       90                   100 CORE POWER LEVEL
(% OF RATED THERMAL POWER)
Page 19 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                                                                                                       Revision 19 FIGURE 3.2.4-2 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, CEAC(s) OPERABLE) 2.5   ri-w-...............,-iY~i u................................                     U l~   l l   U m l l...       .... 1'IUYll rrri999II ACCEPTABLE OPERATION ANY POWER LEVEL AT LEAST 1 CEAC OPERABLE IN EACH OPERABLE CPC CHANNEL
          ..-
          -- .............
              -----                    ...--      ........
                                                      ---------          --------.................. ............. ............. ...... ....... ......
                                                                      .................
2.4
:                i:
2.3              ~
                    -~     ------------------   I....,----------.....
: - ------............. -----                       . ...
(-6.1,2.28) la
                                                                    *
* 2.2 ACCEPTABLE OPERATION POWER AT OR ABOVE 90%
UD                                                    AT LEAST 1 CEAC OPERABLE IN 2.1                  .................
            -..---.-...-                            EACH OPERABLEECPC CIIANNEL:".
u                                                                                                    *
(0.0.,2.00) 2.0 93... .. . .. .I. *&deg;&deg;
(-01,             ..I . ... . . . . I . .UNACCEPT'ABLE
                                                                              . . . . . . . . . . . . I . . . . . . . I . . .. . . . I . . .   . . .
        ..--
            .---
              . ..---
                  .. -.         --------------------------------..       .O PE RAT ION ..... ..................................                     ..
                                                                                                                                          ............
1.9 18
      -0.20         -0.15                 -0.10                 -0.05                 0.00       0.05             0.10             0.15             0.20 CORE AVERAGE ASI Page 20 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                                                                                                                         Revision 19 FIGURE 3.2.4-3 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL) 3.6   ....       ...     r.         .     .. ...........             ......... .........                         .. ....       ....                 r ACCEPTABLE OPERATION ANY POWER LEVEL BOTH CEACs INOPERABLE 3.5 . .................................. --       ---   ----   --- O----   E--- ---- B---     ---*-----------..--...                ---...       .... . ...
                                                                                                                                                    ---...............
IN ANY OPERABLE CPC CHANNEL 34                                                     (Ot,341)(01.1,3.4....
3 .4   .... .. ........ .............. .... ..               - -------.                          .-- ................. ] ............. --...            ............. .
U                                         (-0.1.3.27) 3 .2     ...................................   .............---.................   ..... ...................................................         ................ .
UNACCEPTABLE OPERATION 3 .0         .. ... . I                 ........                 i
                                                            .........                   i
                                                                                  ........           .. .......
i           ....... I      ..   ......... I . .     .   .
      -0.20             -0.15               -0.10             -0.05                 0.00                 0.05                 0.10                 0.15               0.20 CORE AVERAGE ASI Page 21 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                 Revision 19 Table 3.3.12-1 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff> 0.98 OPERATIONAL                 Number of Operating Charging Pumps MODE                     0               1         2           3 3                     12 hours       0.5 hours   ONA           ONA 4 not on SCS         12 hours       0.5 hours   ONA           ONA 5 not on SCS           8 hours       0.5 hours   ONA           ONA 4 & 5 on SCS           ONA           ONA       ONA           ONA Notes:   SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 22 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                 Revision 19 Table 3.3. 12-2 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.98 &#x17d; Keff > 0.97 OPERATIONAL                   Number of Operating Charging Pumps MODE                     0               1           2           3 3                     12 hours         1 hour     0.5 hours     ONA 4 not on SCS         12 hours       1.5 hours   0.5 hours     ONA 5 not on SCS           8 hours       1.5 hours   0.5 hours     ONA 4 & 5 on SCS           8 hours       0.5 hours     ONA         ONA Notes:   SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 23 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                 Revision 19 Table 3.3.12-3 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.97 > Keff> 0.96 OPERATIONAL                 Number of Operating Charging Pumps MODE                     0               1         2           3 3                     12 hours       2.5 hours   1 hour       ONA 4 not on SCS         12 hours       2.5 hours   1 hour     0.5 hours 5 not on SCS           8 hours       2.5 hours   1 hour     0.5 hours 4 & 5 on SCS           8 hours         1 hour     ONA           ONA Notes:   SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 24 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                   Revision 19 Table 3.3.12-4 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.96 > Keff> 0.95 OPERATIONAL                   Number of Operating Charging Pumps MODE                     0               1           2           3 3                     12 hours         3 hours     1 hour     0.5 hours 4 not on SCS         12 hours       3.5 hours   1.5 hours   0.75 hours 5 not on SCS           8 hours       3.5 hours   1.5 hours   0.75 hours 4 & 5 on SCS           8 hours       1.5 hours   0.5 hours     ONA Notes:   SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 25 of 26
 
PVNGS UNIT 3 CORE OPERATING LIMITS REPORT                   Revision 19 Table 3.3.12-5 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff < 0.95 OPERATIONAL                 Number of Operating Charging Pumps MODE                     0               1           2           3 3                     12 hours       4 hours     1.5 hours     1 hour 4 not on SCS         12 hours       4.5 hours     2 hours     1 hour 5 not on SCS           8 hours       4.5 hours     2 hours     1 hour 4 & 5 on SCS           8 hours       2 hours   0.75 hours     ONA 6                     24 hours       1.5 hours     ONA         ONA Notes:   SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 26 of 26}}

Revision as of 00:03, 14 November 2019

Submittal of Revised Core Operating Limits Reports (Colrs)
ML093290107
Person / Time
Site: Palo Verde  
Issue date: 11/17/2009
From: Weber T
Arizona Public Service Co
To:
Document Control Desk, Office of Nuclear Reactor Regulation
References
102-06095-TNW/REB/CJS
Download: ML093290107 (82)


Text

Technical Specification 5.6.5d Thomas N Weber Mail Station 7636 Palo Verde Nuclear Department Leader, Tel. 623-393-5764 PO Box 52034 Generating Station Regulatory Affairs Fax 623-393-5442 Phoenix, Arizona 85072-2034 102-06095-TNW/REB/CJS November 17, 2009 ATTN: Document Control Desk U.S. Nuclear Regulatory Commission Washington, DC 20555-0001

Dear Sirs:

Subject:

Palo Verde Nuclear Generating Station (PVNGS) Units 1, 2, and 3 Docket Nos. STN 50-528, 50-529, and 50-530 Revised Core Operating Limits Reports (COLRs), Units 1, 2 and 3 Pursuant to PVNGS Technical Specification, Section 5.6.5, enclosed are the revised Core Operating Limits Reports (COLRs). Unit 1 - Revision 20, Unit 2 - Revision 16, and Unit 3 - Revision 19, were made effective October 29, 2009. These revisions include changes resulting from License Amendment No. 174, dated August 26, 2009.

By copy of this letter and the enclosures, these COLR revisions are being provided to the NRC Region IV Administrator and the PVNGS Senior Resident Inspector. This letter does not make any commitments to the NRC. Should you need further information regarding this submittal, please contact Russell A. Stroud, Licensing Section Leader, at (623) 393-5111.

Sincerely, TNW/RAS/CJS/gat -PVNGS Unit 1 Core Operating Limits Report (COLR), Revision 20 -PVNGS Unit 2 Core Operating Limits Report (COLR), Revision 16 -PVNGS Unit 3 Core Operating Limits Report (COLR), Revision 19 cc: E. E. Collins Jr. NRC Region IV Regional Administrator J. R. Hall NRC NRR Project Manager R. I. Treadway NRC Senior Resident Inspector for PVNGS A member of the STARS (Strategic Teaming and Resource Sharing) Alliance Callaway " Comanche Peak " Diablo Canyon " Palo Verde " San Onofre " South Texas " Wolf Creek/( (

Enclosure 1 PVNGS Unit I Core Operating Limits Report (COLR)

Revision 20

PALO VERDE NUCLEAR GENERATING STATION (PVNGS)

UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Effective October 29, 2009 Responsible Engineer Napier, C Digitally signed by Napier, 1 Joseph J(Z71881)

Date DN: cn=Napier, Joseph J Joseph J I(4I Z71881)

ýl Reason: I am the author of tf 86bZment

-this' (Z7188A)V.' Date 2009.10.27 16:17:19 n eDigitally signed by Bodnar, Independent Reviewer Bodnar,d1 Walter S(Z06432)

Date DN: cn=Bodnar, Walter DateW alter S (zo dnart6er2S W Reason: I have reviewed

-this document (Z06432ý ) Date: 2009.10.27 16:22:54 0-7'00o

  • ". Digitally signed by Rowland,

=  !

Responsible Section Leader Rowland James W(Zbyown,

" DN: n=Rowland, James W Date I /(Z80533)

James vv ./IýReason: am approving this document as temporary R*"Reioad-Anrlysis SL (Z8053

_ _ _ - -- ,- -

_ __

.. X Date: 20096"10.27 17:04:16

-0700' Page 1 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table of Contents Description Page Cover Page 1 Table of Contents 2 List of Figures 3 List of Tables 4 Affected Technical Specifications 5 Analytical Methods 6 CORE Operating Limits 3.1.1 Shutdown Margin (SDM) - Reactor Trip Breakers Open 8 3.1.2 Shutdown Margin (SDM) - Reactor Trip Breakers Closed 8 3.1.4 Moderator Temperature Coefficient (MTC) 8 3.1.5 Control Element Assembly (CEA) Alignment 8 3.1.7 Regulating CEA Insertion Limits 8 3.1.8 Part Strength CEA Insertion Limits 9 3.2.1 Linear Heat Rate (LHR) 9 3.2.3 Azimuthal Power Tilt (Tq) 9 3.2.4 Departure From Nucleate Boiling Ratio (DNBR) 9 3.2.5 Axial Shape Index (ASI) 10 3.3.12 Boron Dilution Alarm System (BDAS) 10 3.9.1 Boron Concentration 10 Page 2 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 List of Figures Description Figure 3.1.1-1 Shutdown Margin Versus Cold Leg Temperature 11 Reactor Trip Breakers Open Figure 3.1.2-1 Shutdown Margin Versus Cold Leg Temperature 12 Reactor Trip Breakers Closed Figure 3.1.4-1 MTC Acceptable Operation, Modes 1 and 2 13 Figure 3.1.5-1 Core Power Limit After CEA Deviation 14 Figure 3.1.7-1 CEA Insertion Limits Versus Thermal Power 15 (COLSS in Service)

Figure 3.1.7-2 CEA Insertion Limits Versus Thermal Power 16 (COLSS Out of Service)

Figure 3.1.8-1 Part Strength CEA Insertion Limits Versus Thermal Power 17 Figure 3.2.3-1 Azimuthal Power Tilt Versus Thermal Power 18 (COLSS in Service)

Figure 3.2.4-1 COLSS DNBR Operating Limit Allowance for Both 19 CEACs Inoperable In Any Operable CPC Channel Figure 3.2.4-2 DNBR Margin Operating Limit Based on the Core 20 Protection Calculators (COLSS Out of Service, CEAC(s)

Operable)

Figure 3.2.4-3 DNBR Margin Operating Limit Based on the Core 21 Protection Calculators (COLSS Out of Service, Both CEACs Inoperable In Any Operable CPC Channel)

Page 3 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 List of Tables Description Page Table 3.3.12-1 Required Monitoring Frequencies for Backup Boron 22 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff> 0.98 Table 3.3.12-2 Required Monitoring Frequencies for Backup Boron 23 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.98 > Keff> 0.97 Table 3.3.12-3 Required Monitoring Frequencies for Backup Boron 24 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.97 > Keff > 0.96 Table 3.3.12-4 Required Monitoring Frequencies for Backup Boron 25 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.96 > Keff> 0.95 Table 3.3.12-5 Required Monitoring Frequencies for Backup Boron 26 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff< 0.95 Page 4 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 This Report has been prepared in accordance with the requirements of Technical Specification 5.6.5. The Core Operating Limits have been developed using the NRC approved methodologies specified in Section 5.6.5 b of the Palo Verde Unit 1 Technical Specifications.

AFFECTED PVNGS TECHNICAL SPECIFICATIONS 3.1.1 Shutdown Margin (SDM) - Reactor Trip Breakers Open 3.1.2 Shutdown Margin (SDM) - Reactor Trip Breakers Closed 3.1.4 Moderator Temperature Coefficient (MTC) 3.1.5 Control Element Assembly (CEA) Alignment 3.1.7 Regulating CEA Insertion Limits 3.1.8 Part Strength CEA Insertion Limits 3.2.1 Linear Heat Rate (LHR) 3.2.3 Azimuthal Power Tilt (Tq) 3.2.4 Departure From Nucleate Boiling Ratio (DNBR) 3.2.5 Axial Shape Index (ASI) 3.3.12 Boron Dilution Alarm System (BDAS) 3.9.1 Boron Concentration Page 5 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 ANALYTICAL METHODS The COLR contains the complete identification for each of the Technical Specification referenced topical reports (i.e., report number, title, revision, date, and any supplements) that provide the NRC-approved analytical methods used to determine the core operating limits, described in the following documents::

Title Report No. Rev Date Sump CE Method for Control Element Assembly CENPD- N.A. January N.A.

Ejection Analysis 0190-A 1976 (13-N001-1301-01204-1)

The ROCS and DIT Computer Codes for CENPD- N.A. April N.A.

Nuclear Design 266-P-A 1983 (13-N001-1900-01412-0)

Modified Statistical Combination of CEN- 01-P-A May N.A.

Uncertainties 356(V)-P-A 1988 (13-N001 -1303-01747-2)

System 8 0 TM Inlet Flow Distribution Enclosure N.A. February 1-P (13-N001 -1301-01228-0) 1-P to LD- 1993 82-054 Calculative Methods for the CE Large Break CENPD- N.A. March 4-P-A LOCA Evaluation Model for the Analysis of CE 132 2001 and W Designed NSSS (13-NOO1- 1900-01192-3)

Calculative Methods for the CE Small Break CENPD- N.A. April 2-P-A LOCA Evaluation Model 137-P 1998 (13-NOO - 1900-01185-3)

Fuel Rod Maximum Allowable Pressure CEN-372- N.A. May N.A.

(13-NOO 1-0201-00026-1) P-A 1990 Arizona Public Service Company PWR Reactor NFM-005 N.A. January N.A.

Physics Methodology Using 2006 CASMO-4/SIMULATE-3 (NFM-005)

Technical Description Manual for the CENTS CE-NPD 2 March N.A.

CodeVolume 1 282-P-A 2005 (CENTS-TD MANUAL-VOL 1) Vols. 1 Technical Description Manual for the CENTS CE-NPD 2 March N.A.

Code Volume 2 282-P-A 2005 (CENTS-TD MANUAL-VOL 2) Vols. 2 Page 6 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Title Report No. Rev Date Suppi Technical Description Manual for the CENTS CE-NPD 2 March N.A.

CodeVolume 3 282-P-A 2005 (CENTS-TD MANUAL-VOL 3) Vols. 3 Implementation of ZIRLOTM Cladding Material CENPD- 0 November N.A.

in CE Nuclear Power Fuel Assembly Designs 404-P-A 2001 (13-NOO1 -1900-01329-0)

HERMITE, A Multi-Dimensional Space-Time CENPD- July Kinetics Code for PWR Transients 188-A 1976 (HERMITE-TOPICAL)

TORC Code, A Computer Code for Determin- CENPD- April ing the Thermal Margin of a Reactor Core 161-P-A 1986 (NOO1-1301-01202)

CETOP-D Code Structures and Modeling Meth- CEN- September ods for San Onofre Nuclear Generating Station 160(S)-P 1981 Units 2 and 3, (NOO1-1301-01185)

CPC Methodology Changes for the CPC CEN-3 10- 0 April Improvement Program, (N001-1303-02283) P-A 1986 Loss of Flow, C-E Methods for Loss of Flow CENPD- 0 June Analysis, (NOO1-1301-01203) 183-A 1984 Methodology for Core Designs Containing CENPD- 0 August Erbium Burnable Absorbers 382-P-A 1993 (NOO1-0201-00035)

Verification of the Acceptability of a 1-Pin Bur- CEN-386- 0 August nup Limit of 60 MWD/kgU for Combustion P-A 1992 Engineering 16 x 16 PWR Fuel (NOO 1-0201-00042)

Page 7 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 The cycle-specific operating limits for the specifications listed are presented below.

3.1.1 - Shutdown Margin (SDM) - Reactor Trip Breakers Open The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.1-1.

3.1.2 - Shutdown Margin (SDM) - Reactor Trip Breakers Closed The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.2-1.

3.1.4 - Moderator Temperature Coefficient (MTC)

The moderator temperature coefficient (MTC) shall be within the area of Acceptable Operation shown in Figure 3.1.4-1.

3.1.5 - Control Element Assembly (CEA) Alignment With one or more full-strength or part-strength CEAs misaligned from any other CEAs in its group by more than 6.6 inches, the minimum required MODES 1 and 2 core power reduction is specified in Figure 3.1.5-1. The required power reduction is based on the initial power before reducing power.

3.1.7 - Regulating CEA Insertion Limits With COLSS IN SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limits1 shown in Figure 3.1.7-12; with COLSS OUT OF SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limitsi shown in Figure 3.1.7-2.2 Regulating Groups 1 and 2 CEAs shall be maintained fully withdrawn 3 while in Modes 1 and 2 (except while performing SR 3.1.5.3).

1 A reactor power cutback will cause either (Case 1) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with no sequential insertion of additional Regulating Groups (Groups 1, 2, 3, and 4) or (Case 2) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with all or part of the remaining Regulating Groups (Groups 1, 2, 3, and 4) being sequentially inserted. In either case, the Transient Insertion Limit and withdrawal sequence specified in the CORE OPERATING LIMITS REPORT can be exceeded for up to 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br />.

2 The Separation between Regulating Groups 4 and 5 may be reduced from the 90 inch value specified in Figures 3.1.7-1 and 3.1.7-2 provided that each of the following conditions are satisfied:

a) Regulating Group 4 position is between 60 and 150 inches withdrawn.

b) Regulating Group 5 position is maintained at least 10 inches lower than Page 8 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Regulating Group 4 position.

c) Both Regulating Group 4 and Regulating Group 5 positions are maintained above the Transient Insertion Limit specified in Figure 3.1.7-1 (COLSS In Service) or Figure 3.1.7-2 (COLSS Out of Service).

3 Fully withdrawn - >147.75" (Pulse Counter indication) and >145.25" (RSPT indication) 3.1.8 - Part Strength CEA Insertion Limits The part strength CEA groups shall be limited to the insertion limits shown in Figure 3.1.8-1.

3.2.1 - Linear Heat Rate (LHR)

The linear heat rate limit of 13.1 kW/ft shall be maintained.

3.2.3 - Azimuthal Power Tilt (Tq)

The AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 10% with COLSS IN SERVICE when power is greater than 20% and less than or equal to 50%. Additionally, the AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 5% with COLSS IN SERVICE when power is greater than 50%. See Figure 3.2.3-1.

3.2.4 - Departure From Nucleate Boiling Ratio (DNBR)

COLSS IN SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Maintain COLSS calculated core power less than or equal to COLSS calculated core power operation limit based on DNBR decreased by the allowance shown in Figure 3.2.4-1.

COLSS OUT OF SERVICE and CEAC(s) OPERABLE - Operate within the region of acceptable operation of Figure 3.2.4-2 using any operable CPC channel.

COLSS OUT OF SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Operate within the region of acceptable operation of Figure 3.2.4-3 using any operable CPC channel with both CEACs INOPERABLE.

Page 9 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 3.2.5 - Axial Shape Index (ASI)

The core average AXIAL SHAPE INDEX (ASI) shall be maintained within the following limits:

COLSS OPERABLE

-0.18*< ASI

  • 0.17 for power > 50%

-0.28 < ASI < 0.17 for power >20% and < 50%

COLSS OUT OF SERVICE (CPC)

-0.10 < ASI < 0.10 for power >20%

3.3.12 - Boron Dilution Alarm System (BDAS)

With one or both start-up channel high neutron flux alarms inoperable, the RCS boron concentration shall be determined at the applicable monitoring frequency specified in Tables 3.3.12-1 through 3.3.12-5.

3.9.1 - Boron Concentration The boron concentration of all filled portions of the Reactor Coolant System and the refueling canal shall be maintained at a uniform concentration _Ž3000 ppm.

Page 10 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.1.1-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS OPEN 7 . ......... ... .. .... ......... (50050) 5 ....................------.-- ................--........................ --- --...... ...................... . .......


REGION OF ACCEPTABLE OPERATION z

z Z*3 -- --- --. . . .......

. . . . . . . . . . . . . . ...

---.. .... ........ ...... ...... .......

. . ..... ...--

- --- ---- ...:.. ... .. ....... ..... ..... ...... ....... ....

REGION !OF UNACCEPTABLE OPERATION

- .

0 0 100 200 300 400 500 600 COLD LEG TEMPERATURE ('F)

Page 11 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 I

FIGURE 3.1.2-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS CLOSED 7 ......... ......... I

..

(500,6.5)i 6

REGION OF ACCEPTABLE 5 ............... OPERATION--:-

. 4 (350,4.0) z 03

.......................


REGION OF UNACCEPTABLE 2 .................. -


........................

I.....................

OPERATION

...............................................

0 +/- . .l l .l . .l .ll l l .m .ll l l ..

. l .l l .

. .. l ll..

0 100 200 300 400 500 600 COLD LEG TEMPERATURE ('F)

Page 12 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.1.4-1 MTC ACCEPTABLE OPERATION, MODES I AND 2 0.5

' mI . . . .. I.--

..- . . -. - - - ---- - - - I. .. .. . . . .. . .. .I.. . . . . . .. .. ...

. .... . . . I. . .

."!........ i..... (50%,0.0)


-- --- - -- -- -- . . . . ................. -- - - - -- - - ------ ------

(100%,-0.2

....................

....... _ ...........

' . ..... ..... ............ .............. --. .--....------.-. ---.-.

--.

-

o

-1.0 .........-

U z

-1.5 ............ .......................... -CAREA OF ..................................................

W 0.

<- ACCEPTABLE 0

-2.0 *:OPERATION


............................ ...............

' ............. --. .----

. . .----

. .. .----..............

. . . . . .. . . . . .

F-0


. --. ----------............... I'............. ---.............I............ ..I..........................................

0 -2.5

<

-3.0 .. . . . .. .. . .. .. . .. .. . . . .. . .. -. - . -

. -.. -.. ---. ..- -. . -.....--

... .. . .. .. . . ......

. -.. --........ ...... .........

- -- .....- - -- -

-3.5

... . . . . . . .. . . . . . . . .:............


---- -- .........---- -......... .. .. ......... ...... ........

-4.0 4...........

.. . . i..

. .-----

-- . . i..

--- ------I. . . .-- . ---- . ----

. .i... -- . .---- ------ --. .- -

-4.5 0 10 20 30 40 50 60 70 80 90 100 CORE POWER LEVEL

(% OF RATED THERMAL POWER)

Maintain Operation within Boundary TECH SPEC 3.1.4 Maximum Upper Limit .......

Page 13 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT 1tevision 20 FIGURE 3.1.5-1 CORE POWER REDUCTION AFTER CEA DEVIATION* ASt 20 16 5100% to

>80% RTP 15 15 z

12 12 :580% to

>70% RTP I 0 10 10 8 8 -70% to

>45% RTP 5 5

............


.. .... --------- ---------------- ----------

-<45%RTP

-i 0

i 0 10 20 30 40 50 60 TIME AFTER DEVIATION, MINUTES

  • WHEN CORE POWER IS REDUCED TO 35% OF RATED THERMAL POWER PER THIS LIMIT CURVE, FURTHER REDUCTION IS NOT I

REQUIRED.

Page 14 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.1.7-1 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS IN SERVICE) 1.0

-- ---- ---- - -- -- -----

0.9 - -(SEE FOOTNOTE IN SECTION 31.;7.......-.-

FOR APPLICABILITY FOLLOWING 0.8 -

0.7 -GRP 4-POS-= (-12-.5-xFRAC.PWR)-+-25-5--

GRP 5 POS = (172.5:'x FRAC. PWR) - 64.5 0.6 0!

I .......................................

--- ........I ....... .......... .

05 Uz.

0T.

0

.!......

L 0.3

  • .. . . ................... ................. ....... ........ ......

0.2 I 0.1 -

O0 GROUP5 GROUP3 GROUP I I I I I I I I I I I I I I I I I I I FW* 120 90 60 30 0 FW* 120 90 60 30 0 FW* 120 90 60 30 0 GROUP 4 GROUP 2 F)ýC* 1 P0OTI 34o FIN 1C0 6W0 31DRW CEA POSITION (INCHES WITHDRAWN)

  • Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).

Page 15 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.1.7-2 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS OUT OF SERVICE) 1.0

.. .........iI-------- ....!-- ......

-- -!.. . . . . . . . . . . .---

--.. ----. -...

..- -- ------ ---- .i. . . . ....*

J . . .i. .....

0.9 1 0.8 .............

................. .......-----

-......... .(SEE FOOTNOTE-iN SEC-TION-3;[;7.........7 FOR APPIACABILITY FOLLOWING A: REACTOR CUTBACK) 0.7 0

0.6 ------ - ----GRP-4POS-=(-250.9-X-FRAC.-PWR" +-9.82---

GRP 'PWOS = (250.9 i FRAC. PWR)- 80.18 05

. .... ....i..... ... -- . . .

zz z 0.4 0

U 0.3

... :......*.....*...... *... .......... ....... ........ --

...z,......... ---



...... ..'......

£ ,

0.2

. ..

......... ..--- -- -.-- - .--.....  !  !

..--. '

--- --

.---

-- .-- .I...........

........ - --. . . . . ......

...

-- .

0.1

('n

'J, GROUP5 GROUP3 GROUP I I I I I I I I I I I I- I I I I I I I FW* 120 90 60 30 0OFW* 120 90 60 30 0 FW* 120 90 60 30 0 GROUP 4 GROUP 2 F X%*

10 0 3 g Ft It L0O 6+0 t CEA POSITION (INCHES WITHDRAWN)

  • Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).

Page 16 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.1.8-1 PART STRENGTH CEA INSERTION LIMITS VERSUS THERMAL POWER 0.0 10.0 - ----------- --------- ..................... ----- -- ---- ...........................


...........

20.0 . ........... ........... ----------- .......... --------------------- --------

30.0 . ...................... ---------------- ............. .............................

40.0 . ........... ---------- ............. ------------- --------

z 50.0 - ----------- ---------- ............. ------------- ............. ........

60.0 . ........... ...... ............. .............

0Z 70.0 .......................

!TRANSIENT INSERTION LIMIT (75.0:INCHES) u) I I I I F-

,.n 80.0 zz OT..........I

............. --- IO ............

---

r- 90.0 ......... OPERATION ..................

UNACCEPTABLE RESTRICTED 100.0 L-- . --

. .--.--

. .:.

-- . .-. . . . --

-- . ---

. . .---

. . ----

........--

110.0

..............i...... ------- I------------

........................ ............

.. ......

........ -......

- . * . . . . .. ...-


.6 ...

120.0


LONG TERM STEADY STATE INSERTION:LIMITSI (112.5 INCHES) 130.0 OPERATION ACCEPTABLE 140.0

. . . . I ....- . -.I . . .-.. I I-.. - ..-. J 1.- . . ..- -.. I ... . I . . . .

150.0 1.(0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 FRACTION OF RATED THERMAL POWER Page 17 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.2.3-1 AZIMUTHAL POWER TILT VERSUS THERMAL POWER (COLSS IN SERVICE) 20.0 15.0 -- -- - -RE G I O N OF --------------


-----------------............

UNACCEPTABLE OPERATION F-0 10.0 .. . .. .. . . . . . . . . .. . . . . . . . . .. .. . .. .. . . . . . . . . . . . . . . . . .... .. . . . .. . . . . . . . .. . . .. . .. .. . .. . ..-

z-5.0 REGION OF WLCEPTABLE OPERATION 0.u -

20.0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 CORE POWER LEVEL

(% OF RATED THERMAL POWER)

Page 18 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.2.4-1 COLSS DNBR OPERATING LIMIT ALLOWANCE FOR BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL 25 0

20 ...... ----------


....................

....

/...

15 I- ....................

E0 101- ....................


................. .................... . ...............

5 ....................


(80,5)

............

(70,0):

11 Illlllll 0 I I I 50 60 70 80 90 100 CORE POWER LEVEL

(% OF RATED THERMAL POWER)

Page 19 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.2.4-2 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, CEAC(s) OPERABLE) 2.5 .. .......  !......... I , ,° , ,o., ,,l.. . .l,, . ... l... ... ... . ... .. ..

ACCEPTABLE OPERATION ANY POWER LEVEL AT LEAST 1 CEAC OPERABLE IN EACH OPERABLE CPC CHANNEL

................... .... ........ ... ..--- ---------


. ----- . ... ..........

---..

2.4 (0,06,2.38) (0.1,2.3 8):

. ............... .................

...i ...... ........

2.3

(-0.1,2.28)

... ..............

................. . ................

. ........ -......


z 2.2 ACCEPT~ABLE OPERATION POWER AT OR ABOVE 90%

0 AT LEAST 1 CEAC OPERABLE IN 2.1 ....EACH OPER-ABILE-CPC CHtANNELA'-...... ----------------..

(0.05,2.00)

.......... (... 1193)............ ................. I................. ............. * ' ........ "*0. 12 .01 2.0

-.-.------------- ..................

UNACCEPTABLE

......... ............. OP E RAT ION ....................................

1.9

. . . . . . . .. I . . . . . . .. . I .. . . . . . . I .. . . . . . . . ! . . . .

1.8 i fl i i i fl i 1I i

  • i i ..... II i iI .. . . . I l iI

-0.20 -0.15 -0.10 -0.05 0.00 0.05 0.10 0.15 0.20 CORE AVERAGE ASI Page 20 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 FIGURE 3.2.4-3 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL) 3.6 IIgDHllll Illl l' 'r ' ' . , ., i ACCEPTABLE :OPERATION ANY POWER LEVEL BOTH CEACs INOPERABLE 3.5 I

... . ...--- -- --- -- -- -- ----- ---B:E................. ........

IN ANY OPERABLE CPC CHANNEL

( 1,3.4 1) 3.4 - ---------------  : .........

z 3.3 - --------------- .........

u (-0.i.3.27)

C..)

3.2 P--

UNACCEPTABLE OPERATION

............ . . .

3.1 - --------------

m .. .. .. .... .. .. .. .. I .

. . . . . .. .. 1 . I .. . . . . . . . I .. . .

3.0 .. . . .

. . . .. .. ..

. .. 1 .. .. . .

. . . . . .. . . . .. . 1 . 1 . . . .. . . . .. . . .

-0.20 -0.15 -0.10 -0.05 0.00 0.05 0.10 0.15 0.20 CORE AVERAGE ASI Page 21 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table 3.3.12-1 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff > 0.98 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA 4 & 5 on SCS ONA ONA ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 22 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table 3.3.12-2 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.98 Ž Keff > 0.97 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 23 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table 3.3.12-3 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.97 Ž Keff> 0.96 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 2.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> ONA 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 2.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 2.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 24 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table 3.3.12-4 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.96 > Keff> 0.95 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 3 hours3.472222e-5 days <br />8.333333e-4 hours <br />4.960317e-6 weeks <br />1.1415e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 3.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.75 hours8.680556e-4 days <br />0.0208 hours <br />1.240079e-4 weeks <br />2.85375e-5 months <br /> 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 3.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.75 hours8.680556e-4 days <br />0.0208 hours <br />1.240079e-4 weeks <br />2.85375e-5 months <br /> 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 25 of 26

PVNGS UNIT 1 CORE OPERATING LIMITS REPORT Revision 20 Table 3.3.12-5 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff < 0.95 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 4 hours4.62963e-5 days <br />0.00111 hours <br />6.613757e-6 weeks <br />1.522e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 4.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 4.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br /> 0.75 hours8.680556e-4 days <br />0.0208 hours <br />1.240079e-4 weeks <br />2.85375e-5 months <br /> ONA 6 24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 26 of 26

Enclosure 2 PVNGS Unit 2 Core Operating Limits Report (COLR)

Revision 16

O'Connor, ,

Digitally signed by O'Connor, Tina M(Z06952)

Ti na M ~ J n6ason:oi2 SODN- cn=O'Connor, Tina M (Z06952) attest to the accuracy

[7Cic(* rQ ,/- nd integrity of this document (Z0695 '2 Date: 2009.10.28 05:57:33 -07'00' PALO VERDE NUCLEAR GENERATING STATION (PVNGS)

UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Effective 10/29/2009 Responsible Engineer Foste r, lDigitally signed by Foster, Date

  • Glenn A(Z35831)

' DN: cn=Foster, Glenn A Glenn. A ,(Z35831)

G le

  • e* J

/--,m,,*

A'% f"Rýeason: I am the author of this

,* ),,ý_document, Date: 2009.10.27 16:10:17 (Z. 3 5. 83 -07'00' Independent Reviewer -, .* Digitally signed by Delorenzi,; Delorenzi, Mark J(Z01931)

Date Mark M rk /J DION: cn=Delorenzi, Mark J f'7.*(ZO1931)

Reason: I have reviewed

, thl*; ddument 7 Date: 2009.10.27 16:34:06

.*,am 3l# m -07'00' Responsible Section Leader Date Row Ro la a," ,)

Digitally signed by Rowland,

ýkj\iJames Dv**

W(Z80533)

N: cn=Rowland, James W I A *,(Z80533)

DtaO.I I

  • VV/ ;Reason: Iam approving this James V, 1 documentas temporary

/-.*Rload

. . *A*nlysis SL (Z8053/*/,. Date: 2009610.27 16:50:38

-0700' Page 1 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Table of Contents Description Page Cover Page 1 Table of Contents 2 List of Figures 3 List of Tables 4 Affected Technical Specifications 5 Analytical Methods 6 CORE Operating Limits 3.1.1 Shutdown Margin (SDM) - Reactor Trip Breakers Open 8 3.1.2 Shutdown Margin (SDM) - Reactor Trip Breakers Closed 8 3.1.4 Moderator Temperature Coefficient (MTC) 8 3.1.5 Control Element Assembly (CEA) Alignment 8 3.1.7 Regulating CEA Insertion Limits 8 3.1.8 Part Strength CEA Insertion Limits 9 3.2.1 Linear Heat Rate (LHR) 9 3.2.3 Azimuthal Power Tilt (Tq) 9 3.2.4 Departure From Nucleate Boiling Ratio (DNBR) 9 3.2.5 Axial Shape Index (ASI) 10 3.3.12 Boron Dilution Alarm System (BDAS) 10 3.9.1 Boron Concentration 10 Page 2 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 List of Figures Description Page Figure 3.1.1-1 Shutdown Margin Versus Cold Leg Temperature 11 Reactor Trip Breakers Open Figure 3.1.2-1 Shutdown Margin Versus Cold Leg Temperature 12 Reactor Trip Breakers Closed Figure 3.1.4-1 MTC Acceptable Operation, Modes 1 and 2 13 Figure 3.1.5-1 Core Power Limit After CEA Deviation 14 Figure 3.1.7-1 CEA Insertion Limits Versus Thermal Power 15 (COLSS in Service)

Figure 3.1.7-2 CEA Insertion Limits Versus Thermal Power 16 (COLSS Out of Service)

Figure 3.1.8-1 Part Strength CEA Insertion Limits Versus Thermal Power 17 Figure 3.2.3-1 Azimuthal Power Tilt Versus Thermal Power 18 (COLSS in Service)

Figure 3.2.4-1 COLSS DNBR Operating Limit Allowance for Both 19 CEACs Inoperable In Any Operable CPC Channel Figure 3.2.4-2 DNBR Margin Operating Limit Based on the Core 20 Protection Calculators (COLSS Out of Service, CEAC(s)

Operable)

Figure 3.2.4-3 DNBR Margin Operating Limit Based on the Core 21 Protection Calculators (COLSS Out of Service, Both CEACs Inoperable In Any Operable CPC Channel)

Page 3 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 List of Tables Description Page Table 3.3.12-1 Required Monitoring Frequencies for Backup Boron 22 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff> 0.98 Table 3.3.12-2 Required Monitoring Frequencies for Backup Boron 23 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.98 > Keff> 0.97 Table 3.3.12-3 Required Monitoring Frequencies for Backup Boron 24 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.97 > Keff> 0.96 Table 3.3.12-4 Required Monitoring Frequencies for Backup Boron 25 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.96 > Keff> 0.95 Table 3.3.12-5 Required Monitoring Frequencies for Backup Boron 26 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff< 0.95 Page 4 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 This Report has been prepared in accordance with the requirements of Technical Specification 5.6.5. The Core Operating Limits have been developed using the NRC approved methodologies specified in Section 5.6.5 b of the Palo Verde Unit 2 Technical Specifications.

AFFECTED PVNGS TECHNICAL SPECIFICATIONS 3.1.1 Shutdown Margin (SDM) - Reactor Trip Breakers Open 3.1.2 Shutdown Margin (SDM) - Reactor Trip Breakers Closed 3.1.4 Moderator Temperature Coefficient (MTC) 3.1.5 Control Element Assembly (CEA) Alignment 3.1.7 Regulating CEA Insertion Limits 3.1.8 Part Strength CEA Insertion Limits 3.2.1 Linear Heat Rate (LHR) 3.2.3 Azimuthal Power Tilt (Tq) 3.2.4 Departure From Nucleate Boiling Ratio (DNBR) 3.2.5 Axial Shape Index (ASI) 3.3.12 Boron Dilution Alarm System (BDAS) 3.9.1 Boron Concentration Page 5 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 ANALYTICAL METHODS The COLR contains the complete identification for each of the Technical Specification referenced topical reports (i.e., report number, title, revision, date, and any supplements) that provide the NRC-approved analytical methods used to determine the core operating limits, described in the following documents:

Title Report No. Rev Date SuWpl ement

1) CE Method for Control Element Assem- CENPD- N.A. January N.A.

bly Ejection Analysis (NOO-1301-01204-1) 0190-A 1976

2) The ROCS and DIT Computer Codes for CENPD- N.A. April 1983 N.A.

Nuclear Design (NOO1-1900-01412-0) 266-P-A

3) Modified Statistical Combination of CEN- 01-P-A May 1988 N.A.

Uncertainties (NOO1-1303-01747-2) 356(V)-P-A (ARI) (April 1996)

4) System 8 0 TM Inlet Flow Distribution Enclosure N.A. February 1-P (NOO1-1301-01228-0) 1-P to LD- 1993 82-054
5) Calculative Methods for the CE Large CENPD- N.A. March 2001 4-P-A Break LOCA Evaluation Model for the 132 Analysis of CE and W Designed NSSS (NOOl-1900-01192-3)
6) Calculative Methods for the CE Small CENPD- N.A. April 1998 2-P-A Break LOCA Evaluation Model 137-P (NOO1-1900-01185-3)
7) Fuel Rod Maximum Allowable Pressure CEN-372- N.A. May 1990 N.A.

(NOO1-0201-00026-1) P-A

8) Arizona Public Service Company PWR NFM-005 N.A. January N.A.

Reactor Physics Methodology Using 2006 CASMO-4/SIMULATE-3 (NFM-005)

9) Technical Description Manual for the CE-NPD 2 March 2005 N.A.

CENTS CodeVolume 1 282-P-A (CENTS-TD MANUAL-VOL 1) Vols. I

10) Technical Description Manual for the CE-NPD 2 March 2005 N.A.

CENTS Code Volume 2 282-P-A (CENTS-TD MANUAL-VOL 2) Vols. 2

11) Technical Description Manual for the CE-NPD 2 March 2005 N.A.

CENTS CodeVolume 3 282-P-A (CENTS-TD MANUAL-VOL 3) Vols. 3 Page 6 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Title Report No. Rev Date Sumel ement

12) Implementation of ZIRLOTM Cladding CENPD- 0 November N.A.

Material in CE Nuclear Power Fuel 404-P-A 2001 Assembly Designs (NO01-1900-01329-0)

13) HERMITE, A Multi-Dimensional CENPD- July 1976 Space-Time Kinetics Code for PWR Transients 188-A I
14) TORC Code, A Computer Code for CENPD- April 1986 Determining the Thermal Margin of a 161-P-A Reactor Core.
15) CETOP-D Code Structures and Model- CEN- September ing Methods for San Onofre Nuclear 160(S)-P 1981 Generating Station Units 2 and 3 (NOO 1-1301-01185)
16) CPC Methodology Changes for the CPC CEN-3 10- 0 April Improvement Program (NOO1-1303- P-A 1986 02283)
17) Loss of Flow, C-E Methods for Loss of 0 June Flow Analysis (NOO1-1301-01203)

CENPD-183-A 1984 I

18) Methodology for Core Designs Contain- CENPD- 0 August ing Erbium Burnable Absorbers (NOO 1- 382-P-A 1993 0201-00035)
19) Verification of the Acceptability of a 1- CEN-386- 0 August Pin Burnup Limit of 60 MWD/kgU for P-A 1992 Combustion Engineering 16 x 16 PWR Fuel (NO0 1-0201-00042)

Page 7 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 The cycle-specific operating limits for the specifications listed are presented below.

3.1.1 - Shutdown Margin (SDM) - Reactor Trip Breakers Open The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.1 - 1.

3.1.2 - Shutdown Margin (SDM) - Reactor Trip Breakers Closed The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.2-1.

3.1.4 - Moderator Temperature Coefficient (MTC)

The moderator temperature coefficient (MTC) shall be within the area of Acceptable Operation shown in Figure 3.1.4-1.

3.1.5 - Control Element Assembly (CEA) Alignment With one or more full-strength or part-strength CEAs misaligned from any other CEAs in its group by more than 6.6 inches, the minimum required MODES 1 and 2 core power reduction is specified in Figure 3.1.5-1. The required power reduction is based on the initial power before reducing power.

3.1.7 - Regulating CEA Insertion Limits With COLSS IN SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limits1 shown in Figure 3.1.7-12; with COLSS OUT OF SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limits1 shown in Figure 3.1.7-2.2 Regulating Groups 1 and 2 CEAs shall be maintained fully withdrawn 3 while in Modes 1 and 2 (except while performing SR 3.1.5.3).

1 A reactor power cutback will cause either (Case 1) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with no sequential insertion of additional Regulating Groups (Groups 1, 2, 3, and 4) or (Case 2) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with all or part of the remaining Regulating Groups (Groups 1, 2, 3, and 4) being sequentially inserted. In either case, the Transient Insertion Limit and withdrawal sequence specified in the CORE OPERATING LIMITS REPORT can be exceeded for up to 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br />.

2 The Separation between Regulating Groups 4 and 5 may be reduced from the 90 inch value specified in Figures 3.1.7-1 and 3.1.7-2 provided that each of the following conditions are satisfied:

a) Regulating Group 4 position is between 60 and 150 inches withdrawn.

b) Regulating Group 5 position is maintained at least 10 inches lower than Regulating Group 4 position.

Page 8 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 c) Both Regulating Group 4 and Regulating Group 5 positions are maintained above the Transient Insertion Limit specified in Figure 3.1.7-1 (COLSS In Service) or Figure 3.1.7-2 (COLSS Out of Service).

3 Fully withdrawn - >147.75" (Pulse Counter indication) and >145.25" (RSPT indication) 3.1.8 - Part Strength CEA Insertion Limits The part strength CEA groups shall be limited to the insertion limits shown in Figure 3.1.8-1.

3.2.1 - Linear Heat Rate (LHR)

The linear heat rate limit of 13.1 kW/ft shall be maintained.

3.2.3 - Azimuthal Power Tilt (Tq)

The AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 10% with COLSS IN SERVICE when power is greater than 20% and less than or equal to 50%. Additionally, the AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 5% with COLSS IN SERVICE when power is greater than 50%. See Figure 3.2.3-1.

3.2.4 - Departure From Nucleate Boiling Ratio (DNBR)

COLSS IN SERVICE' and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Maintain COLSS calculated core power less than or equal to COLSS calculated core power operation limit based on.DNBR decreased by the allowance shown in Figure 3.2.4-1.

COLSS OUT OF SERVICE and CEAC(s) OPERABLE - Operate within the region of acceptable operation of Figure 3.2.4-2 using any operable CPC channel.

COLSS OUT OF SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Operate within the region of acceptable operation of Figure 3.2.4-3 using any operable CPC channel with both CEACs INOPERABLE.

Page 9 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 3.2.5 - Axial Shape Index (ASI)

The core average AXIAL SHAPE INDEX (ASI) shall be maintained within the following limits:

COLSS OPERABLE

-0.18*< ASI *0.17 for power > 50%

-0.28 < ASI < 0.17 for power >20% and < 50%

COLSS OUT OF SERVICE (CPC)

-0.10 < ASI < 0.10 for power >20%

3.3.12 - Boron Dilution Alarm System (BDAS)

With one or both start-up channel high neutron flux alarms inoperable, the RCS boron concentration shall be determined at the applicable monitoring frequency specified in Tables 3.3.12-1 through 3.3.12-5.

3.9.1 - Boron Concentration The boron concentration of all filled portions of the Reactor Coolant System and the refueling canal shall be maintained at a uniform concentration >_3000 ppm.

Page 10 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.1-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS OPEN 7 .. . .. ,, , , , .. . . . . . . .. . . . . . . . .. . . . ,. ,. .. .

. .. . . . . . . . . . . ----------------------

.. . . . . . . . . . --------------


. ....

........................ ------- ------

REGION OF ACCEPTABLE/

OPERATION z

z REGIONOF

...................

.......................- ...................

........


--- ------ ---i:*

UNACCEPTABLE OPERATION

- - ................

....

(350,1::.0) o 100 200 300 400 500 600 COLD LEG TEMPERATURE ('F)

Page 11 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.2-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS CLOSED 7I (51 6 ------------- . ......

..............

REGION OF ACCEPTABLE-5 ............... OP E l A TIAo N...,..--..-- ............--...........-------------

.--- -- -------------------- ..............

..............

4 Zg4 (350,4.0)

<

z 03 Z 0

..............

[-,

'REGION OF UNACCEPTABLE 2 ............. ........................

T I -- ..........

OPERATION

....... ...

....

..........----------------

0 .l.ll.l.liL1L i .1 . . . . . . . ...... J.

. . .L..

0 100 200 300 400 500 600 COLD LEG TEMPERATURE ('F)

Page 12 of 26 3

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.4-1 MTC ACCEPTABLE OPERATION, MODES I AND 2 0.5

- "%0.

'ý ,:' . .. * .*' " ' . .' ..... i.. . . ., . ., . .

0.0 (100%,-o.

.............. ............................

-0.5 ............................


....... ............---------------.......

-1.

z o -1.5 .................. ............. MTC..............

- A R EA O F- ...................................................

0

-ACCEPTABLE U

OPEPATION

-2.0

- . . . . ---------- . . . . .. - ...... .....-- _..................

.... .... .... .... . ... .... ....

1 -2.5

. . .--. .- .-. -. . -..-


.. -. -. .- -. -. . . . . . . . . I,--

- - . . .- -. . .-. ... . --------------------------.

.. .....

.. . . . . . . . . . . . . . . ..-

< -3.0

.........


.......... --------------

0 -0%,-3.4)

-3.5 - -- -- ------------.......- -----------

-4.0 I


. .....


. . . . -- ...-----

. . . . . i.-- . .-------

. -- ---- - --------------- --. . . .

-4.5 I I ml 0 10 20 30 40 50 60 70 80 90 100 CORE POWER LEVEL

(% OF RATED THERMAL POWER)

Maintain Operation within Boundary TECH SPEC 3.1.4 Maximum Upper Limit ........

Page 13 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.5-1 CORE POXVER REDUCTION AFTER CEA DEVIATION*

92 ......... 20 ...

16 -100% to

>80% RTP 15 15 z0 r- -

.......... .... .............------

1 . . 12. 80% to ug~

>70% RTP 1o 9---- --- ........- --- 7-----

.....

10 8 -70% to

>45% RTP 6

5 ----------------


--------------

5

!ý45% RTP

- 0-0 ................ ...................

.......................

I

. . . . . . . . . 1 . 1 . . . . . . II . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .

0 10 20 30 40 50 60 TIME AFTER DEVIATION, MINUTES

  • WHEN CORE POWER IS REDUCED TO 35% OF RATED THERMAL POWER PER THIS LIMIT CURVE, FURTHER REDUCTION IS NOT I

REQUIRED.

Page 14 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.7-1 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS IN SERVICE)

, r, I.U 0.9 -- -----


-------- (SEEFOO.TNOT-E IN SEACTI N -31.7---------

FOR XPPLICAýBILi'1Y FOLLOWIMNG::

0.8 A REACTOR CUTBACK) ..................

0.7 . ..... . .... -RP-4-POS=-(72-5--xFRA*C.-PWR) +-25..

R GRP 5 POS = (*72.5::x FRAC. PWR -64.5

,..

< 0.6 z.

.... ...--

.....................


------ ----.. . . . . . .*,.

. .. . ................ ......... ........ . ._:

0.5 J1 0

z 0.4 0

0.3 .. . ..................................... ....... ........

0.2 - . . ,.- -............... .-------- .---- - ...............

-

..................

e* ! *

  • m: :e : *  !  :  :  :  :  : J 0.1 00l GROUP 5 GROUP 3 GROUP I I I I I I I I I I I I I I I I I I I FW* 120 90 60 30 0 FW* 120 90 60 30 0 FW* 120 90 60 30 0 GROUP 4 GROUP 2 Ft 1A0 9P0 6OS 3ITO FN W*ITHD 6A0 3+0 CEA POSITION (INCHES WITHDRAWN)
  • Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).

Page 15 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.7-2 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS OUT OF SERVICE) 1.0 0.9 0.8 -....


----- ..... .(SEE-FOOTNO-T-EIN SECTInON 3i7.1-.7 --

FOR APPLICABILITY FOLLOWI'NG

. ...! . ..... ..... ..*.

. .... i ........ ........ A: --

...... -- ........ .......CUTBACK)

.......

REACTOR i .......i ...... *.......... *.....

............. .......

0.7 2

ii  : i  : i

< 0.6 PGRP4POS-=(250.9-jcFRA-C.PWRt+-9.82-aGRP 5,P08 (250.9 i FRAC. PWR) -80.18 0.5 P:

0 ....... ......

0.4 I .I-z 0

p

...... .. ............ ... . ....... ..................

£ U.J 0.3 . ... m *- --:.. ... . ------ i ........


------. ----.. -------...

,...----..

. . . . . .... . . .*. . ----.

........

... . .--

. .. ....... .

0.2 0.1 nf GROUP5 I I I I I I I GROUP I I 3I I I I GROUP 1 I I I I I FW* 120 90 60 30 0 FW* 120 90 60 30 0 FW* 120 90 60 30 0 GROUP 4 GROUP 2 Ft* A POSII 6N0 N3Co CEA POSITION (INCHES WITHDRAWN)

H FWIt HD 6+A

  • Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).

Page 16 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.1.8-1 PART STRENGTH CEA INSERTION LIMITS VERSUS THERMAL POWER 0.0 10.0 20.0 30.0

" 40.0

..--. -..- -

. .- ------------- ....---....

-- -...- .. . . . . . . -. -. -. - -

-- .... ....... ............. ,*..............: .............. ........... -

50.0 rti 60.0 Z 70.0 *TRANSIEN T INSERTION, LIMIIT (75.0 INCHES}

0 o 80.0

............ *............ :.............. ..... .. ...... --- --------. . ........ ........ .......- ...........


- -------------------.....

< ERA.TIO.N

.............. . . O---------

P-E-RATIO --------- N ........................

u 90.0 UNACCEPTABLE RESTRICTED z 100.0

" 110.0

..-- ...


. . .b ... ..A...... IO N .. -...i....... ...i........... ..OP R ..T. ..-

..... O .--- ....


---..-

......

LONG TERM UN STEADY STATE INSERTIONLIMITSEI RTINACCEPTABLE kSRCE (112.5 INCHESM

............. ............

P ............- -I ..-...---... . ..............

L........................ .............

120.0

. . . . . . . . . . . ... ............ ::........--- .--. i---

. ......................

--... -------...... ...... ...........

... .......................

130.0 140.0

.I .... . . . . l..

. . . . . . -. ----. .-- l.. -. --

. ---- Ii.. --- ---. ...... . . ... ..... . . I -------- ----- ----

1*O

  • VmV0 1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 FRACTION OF RATED THERMAL POWER Page 17 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.2.3-1 AZIMUTHAL POWER TILT VERSUS THERMAL POWER (COLSS IN SERVICE) 20.0 I 1 15.0 ----------

---......... ........ ........ ...R EG ION O F .............--- ...............

UNACCEPTABLE OPERATION e-0 10.0 --- ---- -- ... ... ----- -----

F-5.0 REGION OF ACCEPTABLE OPElRATION

, I I . 1 , , , .

(~ fl I 20.0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 CORE POWER LEVEL

(% OF RATED THERMAL POWER)

Page 18 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.2.4-1 COLSS DNBR OPERATING LIMIT ALLOWANCE FOR BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL 25 (95,20) 20 -

0 15 ........... -----------

z 10 -

0 z

.... --- - (80 )..........................................

---

5 -----------

( 70,0) 0 . . . . . . . . . . . I 1 I . . . . . .

50 60 70 80 90 100 CORE POWER LEVEL

(%OF RATED THERMAL POWER)

Page 19 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.2.4-2 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, CEAC(s) OPERABLE) 2.5 i-I-Iwl S.. ... ... . . ........ ..... .... ....... .. ... .... .. IV l ll l I l l ~l ACCEPTABLE OPERATION ANY POWER LEVEL AT LEAST 1 CEAC OPERABLE IN EACH OPERABLE CPC CHANNEL 2.4 ------------ . .................. ......... --.. --

. -

. ------------------.................. :..... ............- ..............

(006,2 38)(01,3) (0-1,2.38)::

2.3 ------------ .................

(-0.1 2.28)

......... - - -- - - - - - - - - . .................

  • ... ..

2.2 ....... ....... ......- ........ ......... :..................................................... ----------------- --------------

I ACCEPTABLE I OPERATION z ll POWER AT OR ABOVE 9W%

AT LEAST 1 CEAC OPERABLE IN u

2.1 --....-..-------..... -EACH OPERABLE CPC-CIIANNEL" ------------ ..............

  • -

S((.0,0,2.00) 2.0 ýG.-I 1-00y ..............

(119 3) $ ° UNACCEPTARLE 1.9 .. . ............ O PER AT ION ---.................. ................. --------------

1.8 L

-0.2.0 -0.15 -0.10 -0.05 0.00 0.05 0.10 0.15 0.20 CORE AVERAGE ASI Page 20 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 FIGURE 3.2.4-3 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL) 3.6 ACCEPTABLE ::OPERATION ANY POWER LEVEL BOTH CEACs INOPERABLE 3.5 ----------

IN ANY OPERABLE CPC CHANNEL 3.4 ................ ----- r (00(3 4- 1) --

.................... 0.1,3.41)::

0.--------41)

...............


3.3 ................ -----



0.)

(-0.03.27) 3.2 ................ ....- . ......


...--- ..---.....---..-....

..-.--- ... -..- ...... ... ..... ... ...

-- - ---------------

................

UNACCEPTABýLE OPERATION 3.1 ---------------- ---------- ..........

.I 3.0 .... ......... ...1.1 ... ......... ......... ...... ........

-0.20 -0.15 -0.10 -0.05 0.00 0.05 0.10 0.15 0.20 CORE AVERAGE ASI Page 21 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Table 3.3.12-1 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff > 0.98 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA 4 & 5 on SCS ONA ONA ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 22 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Table 3.3.12-2 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.98 Ž Keff > 0.97 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 23 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Table 3.3.12-3 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.97 Ž Keff> 0.96 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 2.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> ONA 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 2.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 2.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 24 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Table 3.3.12-4 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.96 Ž Keff> 0.95 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 3 hours3.472222e-5 days <br />8.333333e-4 hours <br />4.960317e-6 weeks <br />1.1415e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 3.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.75 hours8.680556e-4 days <br />0.0208 hours <br />1.240079e-4 weeks <br />2.85375e-5 months <br /> 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 3.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.75 hours8.680556e-4 days <br />0.0208 hours <br />1.240079e-4 weeks <br />2.85375e-5 months <br /> 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 25 of 26

PVNGS UNIT 2 CORE OPERATING LIMITS REPORT Revision 16 Table 3.3.12-5 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff < 0.95 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 4 hours4.62963e-5 days <br />0.00111 hours <br />6.613757e-6 weeks <br />1.522e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 4.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 4.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br /> 0.75 hours8.680556e-4 days <br />0.0208 hours <br />1.240079e-4 weeks <br />2.85375e-5 months <br /> ONA 6 24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 26 of 26

Enclosure 3 PVNGS Unit 3 Core Operating Limits Report (COLR)

Revision 19

PALO VERDE NUCLEAR GENERATING STATION (PVNGS)

UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Effective Date: October 29, 2009 Responsible Daes bN Engineer apier, !Digitally signed by Napier, JosephJ DNs o Napier, Joseph J(Z71881)

J/ Reason: I am the author of this doc~umentý (Z7 188 )"* Dte: 200ý1,0.27 16:14:33-07'00' Independent Reviewer B odnar, fDigitealysigned by Bodnar, Walter Date Da lter S ,,s'z06432)

(: ... Bodnar, Walter S(Z06432)

W a lter Reason: I have reviewed this

-document"-"

(Z 6432)* Date: 2009:10.27 16:20:09-0700' Responsible Section Leader Aw lan d

  • *v.

. *,*..'*, ]

,0Dgoal,.

  • W(ZS0533) signed by Rowland, James Date W \DN: cn=Rowland, James W Jam . iJ~rr] es

.s(Z0533)VV/f/Re..... I am approving this

  1. /,dgcurntV as temporary Reload (Z80533 n*ys IsD 1 Date:2009.1'0.2717:00:05 -0700O Page 1 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Table of Contents Description Page Cover Page 1 Table of Contents 2 List of Figures 3 List of Tables 4 Affected Technical Specifications 5 Analytical Methods 6 CORE Operating Limits 3.1.1 Shutdown Margin (SDM) - Reactor Trip Breakers Open 8 3.1.2 Shutdown Margin (SDM) - Reactor Trip Breakers Closed 8 3.1.4 Moderator Temperature Coefficient (MTC) 8 3.1.5 Control Element Assembly (CEA) Alignment 8 3.1.7 Regulating CEA Insertion Limits 8 3.1.8 Part Strength CEA Insertion Limits 9 3.2.1 Linear Heat Rate (LHR) 9 3.2.3 Azimuthal Power Tilt (Tq) 9 3.2.4 Departure From Nucleate Boiling Ratio (DNBR) 9 3.2.5 Axial Shape Index (ASI) 10 3.3.12 Boron Dilution Alarm System (BDAS) 10 3.9.1 Boron Concentration 10 Page 2 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 List of Figures Description Page Figure 3.1.1-1 Shutdown Margin Versus Cold Leg Temperature 11 Reactor Trip Breakers Open Figure 3.1.2-1 Shutdown Margin Versus Cold Leg Temperature 12 Reactor Trip Breakers Closed Figure 3.1.4-1 MTC Acceptable Operation, Modes 1 and 2 13 Figure 3.1.5-1 Core Power Limit After CEA Deviation 14 Figure 3.1.7-1 CEA Insertion Limits Versus Thermal Power 15 (COLSS in Service)

Figure 3.1.7-2 CEA Insertion Limits Versus Thermal Power 16 (COLSS Out of Service)

Figure 3.1.8-1 Part Strength CEA Insertion Limits Versus Thermal Power 17 Figure 3.2.3-1 Azimuthal Power Tilt Versus Thermal Power 18 (COLSS in Service)

Figure 3.2.4-1 COLSS DNBR Operating Limit Allowance for Both 19 CEACs Inoperable In Any Operable CPC Channel Figure 3.2.4-2 DNBR Margin Operating Limit Based on the Core 20 Protection Calculators (COLSS Out of Service, CEAC(s)

Operable)

Figure 3.2.4-3 DNBR Margin Operating Limit Based on the Core 21 Protection Calculators (COLSS Out of Service, Both CEACs Inoperable In Any Operable CPC Channel)

Page 3 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 List of Tables Description Page Table 3.3.12-1 Required Monitoring Frequencies for Backup Boron 22 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for Keff> 0.98 Table 3.3.12-2 Required Monitoring Frequencies for Backup Boron 23 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.98 > Keff> 0.97 Table 3.3.12-3 Required Monitoring Frequencies for Backup Boron 24 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.97 > Keff> 0.96 Table 3.3.12-4 Required Monitoring Frequencies for Backup Boron 25 Dilution Detection as a Function of Operating Charging Pumps and Plant Operational Modes for 0.96 > Keff> 0.95 Table 3.3.12-5 Required Monitoring Frequencies for Backup Boron 26 Dilution Detection as a Function of Operating Charging Pumps

'and Plant Operational Modes for Keff< 0.95 Page 4 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 This Report has been prepared in accordance with the requirements of Technical Specification 5.6.5. The Core Operating Limits have been developed using the NRC approved methodologies specified in Section 5.6.5 b of the Palo Verde Unit 1 Technical Specifications.

AFFECTED PVNGS TECHNICAL SPECIFICATIONS 3.1.1 Shutdown Margin (SDM) - Reactor Trip Breakers Open 3.1.2 Shutdown Margin (SDM) - Reactor Trip Breakers Closed 3.1.4 Moderator Temperature Coefficient (MTC) 3.1.5 Control Element Assembly (CEA) Alignment 3.1.7 Regulating CEA Insertion Limits 3.1.8 Part Strength CEA Insertion Limits 3.2.1 Linear Heat Rate (LHR) 3.2.3 Azimuthal Power Tilt (Tq) 3.2.4 Departure From Nucleate Boiling Ratio (DNBR) 3.2.5 Axial Shape Index (ASI) 3.3.12 Boron Dilution Alarm System (BDAS) 3.9.1 Boron Concentration Page 5 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 ANALYTICAL METHODS The COLR contains the complete identification for each of the Technical Specification referenced topical reports (i.e., report number, title, revision, date, and any supplements) that provide the NRC-approved analytical methods used to determine the core operating limits, described in the following documents:

Title Report No. Rev Date Supl CE Method for Control Element Assembly CENPD- N.A. January N.A.

Ejection Analysis 0190-A 1976 (13-NOO1-1301-01204-1)

The ROCS and DIT Computer Codes for CENPD- N.A. April N.A.

Nuclear Design 266-P-A 1983 (13-N001-1900-01412-0)

Modified Statistical Combination of CEN- 01-P-A May N.A.

Uncertainties 356(V)-P-A 1988 (13-NOO1 - 1303-01747-2)

System 8 0 TM Inlet Flow Distribution Enclosure N.A. February 1-P (13-NOO1-1301-01228-0) 1-P to LD- 1993 82-054 Calculative Methods for the CE Large Break CENPD- N.A. March 4-P-A LOCA Evaluation Model for the Analysis of CE. 132 2001 and W Designed NSSS (13-NOO1 - 1900-01192-3)

  • Calculative Methods for the CE Small Break CENPD- N.A. April 2-P-A LOCA Evaluation Model 137-P 1998 (13-NO1 - 1900-01185-3)

Fuel Rod Maximum Allowable Pressure CEN-372- N.A. May N.A.

(13-NOO1-0201-00026-1) P-A 1990 Arizona Public Service Company PWR Reactor NFM-005 N.A. January N.A.

Physics Methodology Using 2006 CASMO-4/SIMULATE-3 (NFM-005)

Technical Description Manual for the CENTS CE-NPD 2 March N.A.

CodeVolume 1 282-P-A 2005 (CENTS-TD MANUAL-VOL 1) Vols. 1 Technical Description Manual for the CENTS CE-NPD 2 March N.A.

Code Volume 2 282-P-A 2005 (CENTS-TD MANUAL-VOL 2) Vols. 2 Page 6 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Title Report No. Rev Date Suppi Technical Description Manual for the CENTS CE-NPD 2 March N.A.

CodeVolume 3 282-P-A 2005 (CENTS-TD MANUAL-VOL 3) Vols. 3 Implementation of ZIRLOTM Cladding Material CENPD- 0 November N.A.

in CE Nuclear Power Fuel Assembly Designs 404-P-A 2001 (13-NOO -1900-01329-0)

HERMITE, A Multi-Dimensional Space-Time CENPD- July Kinetics Code for PWR Transients 188-A 1976 (HERMITE-TOPICAL)

TORC Code, A Computer Code for Determin- CENPD- April ing the Thermal Margin of a Reactor Core 161-P-A 1986 (NOO-1301-01202)

CETOP-D Code Structures and Modeling Meth- CEN- September ods for San Onofre Nuclear Generating Station 160(S)-P 1981 Units 2 and 3, (N001-1301-01185)

CPC Methodology Changes for the CPC CEN-3 10- 0 April Improvement Program, (NOO1-1303-02283) P-A 1986 Loss; of Flow, C-E Methods for Loss of Flow CENPD- 0 June Analysis,. (NOO1-1301-01203) 183-A 1984 Methodology for Core Designs Containing CENPD- 0 August Erbium Burnable Absorbers 382-P-A 1993 (N001-0201-00035)

Verification of the Acceptability of a 1-Pin Bur- CEN-386- 0 August nup Limit of 60 MWD/kgU for Combustion P-A 1992 Engineering 16 x 16 PWR Fuel (NOO1-0201-00042)

Page 7 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 The cycle-specific operating limits for the specifications listed are presented below.

3.1.1 - Shutdown Margin (SDM) - Reactor Trip Breakers Open The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.1 -1.

3.1.2 - Shutdown Margin (SDM) - Reactor Trip Breakers Closed The Shutdown Margin shall be greater than or equal to that shown in Figure 3.1.2-1.

3.1.4 - Moderator Temperature Coefficient (MTC)

The moderator temperature coefficient (MTC) shall be within the area of Acceptable Operation shown in Figure 3.1.4-1.

3.1.5 - Control Element Assembly (CEA) Alignment With one or more full-strength or part-strength CEAs misaligned from any other CEAs in its group by more than 6.6 inches, the minimum required MODES 1 and 2 core power reduction is specified in Figure 3.1.5-1. The required power reduction is based on the initial power before reducing power.

3.1.7 - Regulating CEA Insertion Limits With COLSS IN SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limitsI shown in Figure 3.1.7-12; with COLSS OUT OF SERVICE, regulating CEA groups shall be limited to the withdrawal sequence and to the insertion limits1 shown in Figure 3.1.7-2.2 Regulating Groups 1 and 2 CEAs shall be maintained fully withdrawn 3 while in Modes 1 and 2 (except whileperforming SR 3.1.5.3).

1 A reactor power cutback will cause either (Case 1) Regulating Group 5 or Regulating. Group 4 and 5 to be dropped with no sequential insertion of additional Regulating Groups (Groups 1, 2, 3, and4) or (Case 2) Regulating Group 5 or Regulating Group 4 and 5 to be dropped with all or part. of the remaining Regulating Groups (Groups 1, 2, 3, and 4) being sequentially inserted. In either case, the Transient Insertion Limit and withdrawal sequence specified in the CORE OPERATING LIMITS REPORT can be exceeded for up to 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br />.

2 The Separation between Regulating Groups 4 and 5 may be reduced from the 90 inch value specified in Figures 3.1.7-1 and 3.1.7-2 provided that each of the following conditions are satisfied:

a) Regulating Group 4 position is between 60 and 150 inches withdrawn.

b)' Regulating Gro up 5 position is maintained at least 10 inches lower than Page 8 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Regulating Group 4 position.

c) Both Regulating Group 4 and Regulating Group 5 positions are maintained above the Transient Insertion Limit specified in Figure 3.1.7-1 (COLSS In Service) or Figure 3.1.7-2 (COLSS Out of Service).

3 Fully withdrawn - >147.75" (Pulse Counter indication) and >145.25" (RSPT indication) 3.1.8 - Part Strength CEA Insertion Limits The part strength CEA groups shall be limited to the insertion limits shown in Figure 3.1.8-1.

3.2.1 - Linear Heat Rate (LHR)

The linear heat rate limit of 13.1 kW/ft shall be maintained.

3.2.3 - Azimuthal Power Tilt (T-)

The AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 10% with COLSS IN SERVICE when power is greater than 20% and less than or equal to 50%. Additionally, the AZIMUTHAL POWER TILT (Tq) shall be less than or equal to 5% with COLSS IN SERVICE when power is greater than 50%. See Figure 3.2.3-1.

3.2.4 - Departure From Nucleate Boiling Ratio (DNBR)

COLSS IN SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Maintain COLSS calculated core power less than or equal to COLSS calculated core power operation limit based on DNBR decreased by the allowance shown in Figure 3.2.4-1.

COLSS OUT OF SERVICE and CEAC(s) OPERABLE - Operate within the region of acceptable operation of Figure 3.2.4-2 using any operable CPC channel.

COLSS OUT OF SERVICE and Both CEACs INOPERABLE in Any OPERABLE CPC Channel - Operate within the region of acceptable operation of Figure 3.2.4-3 using any operable CPC channel with both CEACs INOPERABLE.

Page 9 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 3.2.5 - Axial Shape Index (ASI)

The core average AXIAL SHAPE INDEX (ASI) shall be maintained within the following limits:

COLSS OPERABLE

-0.18 < ASI < 0.17 for power > 50%

-0.28 < ASI < 0.17 for power >20% and < 50%

COLSS OUT OF SERVICE (CPC)

-0.10 < ASI < 0.10 for power >20%

3.3.12 - Boron Dilution Alarm System (BDAS)

With one or both start-up channel high neutron flux alarms inoperable, the RCS boron concentration shall be determined at the applicable monitoring frequency specified in Tables 3.3.12-1 through 3.3.12-5.

3.9.1 - Boron Concentration The boron concentration of all filled portions of the Reactor Coolant System and the refueling canal shall be maintained at a uniform concentration > 3000 ppm.

Page 10 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.1-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS OPEN 7

6 . . . . . . . --

..---

-- --- ----- ----- ------- -----


... .......... . . . . ....

. . . . . (. 5. 0 . . . .. . ...

5

  • REGION OF(00)

ACCEPTABLE-OPERATION

.... ........ ............

............

. ...........*....... ................I........ ........ ...........

03

- ~REGION :OF

  • UNACCEPTABLE 2
  • OPERATION -

(350,1:.0) 0 0 100 200 300 400 500 600 COLD LEG TEMPERATURE (fF)

Page 11 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.2-1 SHUTDOWN MARGIN VERSUS COLD LEG TEMPERATURE REACTOR TRIP BREAKERS CLOSED 7

(500,6.5):

6 REGION OF ACCEPTABLE 5 -OPERATION..I_.

2

...............

4 (350,4.0) z 0 3 REGION OF UNACCEPTABILE 2

OPERATION

.. . .

.. . . ... ---------------


I. . .

0 ............................. ...........

0 100 200 300 400 500 600 COLD LEG TEMPERATURE ('F)

Page 12 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.4-1 MTC ACCEPTABLE OPERATION, MODES 1 AND 2 0.5 L .........................

"." 0....  :........

- i* (  :: ...... ....... .00O%,Q

(..

i.------------

.... ... i .......... .......... ..... ........... ......- ------

0.0 i (100%.-0.2

.... ... ... .... ... .......... . --

-- . . -..........................--.......................................................... *............

-0.5

- ..--------- .--..------- .-... --- - - - - ...........................................

.................. .....................----................. .

-1.0 0

[.- . .. ........ ---- .............----

--- ...... ............. ýMT-C-AR EA--O F ...................................................

-1.5 ACCEPTABLE W

U

-2.0 L-.

. . . . . . . . ...............

....'. ------- ------ .. . . . . ............. *............. :............................... .........................-

-2.5 0

[.- .. . . . . . . . . . . . . . . ........ ... . - .-.-.-- .....

...

-- i-....

..- .... i---- ..................-.-------..

--..----- .. .... ... .... ...

..............

-3.0 0

-3.5 (0100%,4.2

-4.0

. .----

-- . . ..... . I . . . . . i... . .---

-- . -- -----. --- -------------- .---..------.----.. .

--..

.a 5

-45 0 10 20 30 40 50 60 70 80 90 100 CORE POWER LEVEL

(%OF RATED THERMAL POWER)

Maintain Operation within Boundary TECH SPEC 3.1.4 Maximum Upper Limit ........

Page 13 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 I

FIGURE 3.1.5- 1 CORE POWER REDUCTION AFTER CEA DEVIATION*

A I .. . r..

rn

.. .-r-r-T-rrr T......... - 1 1 T r...... Ir[n[rs 20 1111rrrIr 15 15 0m t0 t0 5 5 0

0 10 20 30 40 50 60 TIME AFTER DEVIATION, MINUTES

  • WHEN CORE POWER IS REDUCED TO 35% OF RATED THERMAL POWER PER THIS LIMIT CURVE, FURTHER REDUCTION IS NOT REQUIRED.

Page 14 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.7-1 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS IN SERVICE) m 1.0 I I 1 I 1 I I I I I 0.9 +- -(SEE FOOaTNOT-E-IN -SE-CTION3ýI-7-.................

FOR APPLICABILITY FOLLOWING:

.A_ C.T . ._

A REACTOR CUTBACK) .................--

A. . ).................... ---- ------

0.8 -

0.7 GRP4,-POS-= (-I2.5-,x-FRA-C. PWR) -+-25.5---

GRP 5 POS = (172.5 x FRAC. PWR) - 64.5 0.6 w 0 H Z 0.5

.. . -

0 (n 0

0.4 U :0 0.

... ...........................

L--

--


--- --- ..... .......

.------ .....................


......

.

0.3

  • - . . . .!.. . . . . .

---- - --- --- -- --_ --_ --

0.2 0.1 A ) I I I I 11 I GROUP I I GROUP5 i I I I i I GROUP3 I I I I I I I I I I FW* 120 90 60 30 0 FW* 120 90 60 30 0 FW* 120 90 60 30 0 GROUP4 GROUP2 Ft*10 t0 6+0 3t Ft I1t0 1 0 6+0 30 CEA POSITION (INCHES WITHDRAWN)

  • Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).

Page 15 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.7-2 CEA INSERTION LIMITS VERSUS THERMAL POWER (COLSS OUT OF SERVICE) 1.0 0.9  % ~i.~. .~.. . .~. ..---. .--- .? .--- . .. --------I............ ....... :........ :......

0.8 (SEE FOOTNOTE-IN-SECTION 3-1-....

FOR APPIICABILITY FOLLOWING

.... E...AC.T..O.R...C....-BAK) - .............-

0.7 2

0 0.6 ---GRP4POS-= (250.9 y FRAC; PWR-+-9.82-GRP 5 POS (250.9 k FRAC. PWR) - 80.18

-.- 0. ------

- - -- -- -

  • 0.5

... . ... . . . . . .. . . . ... .. . . . . ... . . .. .--

.. --- -. .. .. . ...... . .. . .

. .. . . ... .. . ..--

0 0.4

. 0.3 0zV

.. .. .. ......

.. ... ... .

0.2 IHN*HHB*

0.1 ....

. - - - -- - - - . . ... . . . - - - --- - - - .. .

Ant I I I I I V

GROUP3 GROUP 1 I GROUP5 I I I I I I I I I I I I I I I I I FW* 120 90 60 30 0 FW* 120 90 60 30 0 FW* 120 90 60 30 0 GROUP 4 GROUP 2 Ft It10 t9 60 3+0 Ft* 100 6+0 3 CEA POSITION (INCHES WITHDRAWN)

  • Fully Withdrawn (FW) is defined as > 147.75" (Pulse Counter) and > 145.25" (RSPT).

Page 16 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.1.8-1 PART STRENGTH CEA INSERTION LIMITS VERSUS THERMAL POWER 0.0 20 .0 10.0 . . . .. .... :.... . . . . . .. ------- .-- .--- . . --

. -.--- . -.

. --- -- ..--- --.---.-.-- -- .-- -- --- .-- -

20.0 30.0

  • < 40.0 S 50.0
30. ------ -------------- -------- - ------ .....

m 60.0 o TRANSIE*NT INSERTION LIMIT (75.0::INCHES 10 0.0 --. ..-----

-- .. . .. .

.... . . .. i........................


----------- -------- -------- ------- ------


... -- . . . . .

.............

z 5

90.0 ............ ........ OPERATION....... .

ZO ;UNACCEPTABLE  :

  • RESTRICTED, Z u 3710.0

~0 .. ......b*......

-..-----...- PiT .......i.

............ O -- ......i............

-- --

---.............. -- -I .........:-.................


-- --- --............ ........ -------------........

.......................................

1 LONG TERM STEADY STATE INSERTIONTLIMITS! (112.5 INCHES

...........

130.0. ------------ - ......................... - -------------........

. -

............ ...........


14o.0 -.-...- .. . ..--

. . .. .. .. . . .. ................---..... ............. . .. ....


. ........................................

.....

OPERATION ACCEPTABLE 150.0 .... I ... . . .... .... I

............. . ..... I. .... .......

1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 FRACTION OF RATED THERMAL POWER Page 17 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.2.3-1 AZIMUTHAL POWER TILT VERSUS THERMAL POWER (COLSS IN SERVICE) 20.0 15.0 I- ..REGION -OF...............

UNACCEPTABLE OPERATION F-10.0 F-N -.  ;..

......... ...... --------- - --- - - - - - -.. . . . . . . . ... .. . . .. .

5.0 T I REGION OF ýLCCEPTABLE OPERATION

- . I . .

0.0 ................

20 .0 30.0 40.0 50.0 60.0 70.0 80.0 90.0 100.0 CORE POWER LEVEL

(% OF RATED THERMAL POWER)

Page 18 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.2.4-1 COLSS DNBR OPERATING LIMIT ALLOWANCE FOR BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL 25 (95,20) 20 . .........................

z 0

15 ...................

0 z 101-5 ...................

(80,5)

(70,0);

0 50 60 70 80 90 100 CORE POWER LEVEL

(% OF RATED THERMAL POWER)

Page 19 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.2.4-2 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, CEAC(s) OPERABLE) 2.5 ri-w-...............,-iY~i u................................ U l~ l l U m l l... .... 1'IUYll rrri999II ACCEPTABLE OPERATION ANY POWER LEVEL AT LEAST 1 CEAC OPERABLE IN EACH OPERABLE CPC CHANNEL

..-

-- .............


...-- ........


--------.................. ............. ............. ...... ....... ......

.................

2.4

i:

2.3 ~

-~ ------------------ I....,----------.....

- ------............. ----- . ...

(-6.1,2.28) la

  • 2.2 ACCEPTABLE OPERATION POWER AT OR ABOVE 90%

UD AT LEAST 1 CEAC OPERABLE IN 2.1 .................

-..---.-...- EACH OPERABLEECPC CIIANNEL:".

u *

(0.0.,2.00) 2.0 93... .. . .. .I. *°°

(-01, ..I . ... . . . . I . .UNACCEPT'ABLE

. . . . . . . . . . . . I . . . . . . . I . . .. . . . I . . . . . .

..--

.---

. ..---

.. -. --------------------------------.. .O PE RAT ION ..... .................................. ..

............

1.9 18

-0.20 -0.15 -0.10 -0.05 0.00 0.05 0.10 0.15 0.20 CORE AVERAGE ASI Page 20 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 FIGURE 3.2.4-3 DNBR MARGIN OPERATING LIMIT BASED ON THE CORE PROTECTION CALCULATORS (COLSS OUT OF SERVICE, BOTH CEACs INOPERABLE IN ANY OPERABLE CPC CHANNEL) 3.6 .... ... r. . .. ........... ......... ......... .. .... .... r ACCEPTABLE OPERATION ANY POWER LEVEL BOTH CEACs INOPERABLE 3.5 . .................................. -- --- ---- --- O---- E--- ---- B--- -C --*-----------..--... ---... .... . ...

---...............

IN ANY OPERABLE CPC CHANNEL 34 (Ot,341)(01.1,3.4....

3 .4 .... .. ........ .............. .... .. - -------. .-- ................. ] ............. --... ............. .

U (-0.1.3.27) 3 .2 ................................... .............---................. ..... ................................................... ................ .

UNACCEPTABLE OPERATION 3 .0 .. ... . I ........ i

......... i

........ .. .......

i ....... I .. ......... I . . . .

-0.20 -0.15 -0.10 -0.05 0.00 0.05 0.10 0.15 0.20 CORE AVERAGE ASI Page 21 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Table 3.3.12-1 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff> 0.98 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA 4 & 5 on SCS ONA ONA ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 22 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Table 3.3. 12-2 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.98 Ž Keff > 0.97 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 23 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Table 3.3.12-3 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.97 > Keff> 0.96 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 2.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> ONA 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 2.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 2.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 24 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Table 3.3.12-4 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR 0.96 > Keff> 0.95 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 3 hours3.472222e-5 days <br />8.333333e-4 hours <br />4.960317e-6 weeks <br />1.1415e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 3.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.75 hours8.680556e-4 days <br />0.0208 hours <br />1.240079e-4 weeks <br />2.85375e-5 months <br /> 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 3.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.75 hours8.680556e-4 days <br />0.0208 hours <br />1.240079e-4 weeks <br />2.85375e-5 months <br /> 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 0.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 25 of 26

PVNGS UNIT 3 CORE OPERATING LIMITS REPORT Revision 19 Table 3.3.12-5 REQUIRED MONITORING FREQUENCIES FOR BACKUP BORON DILUTION DETECTION AS A FUNCTION OF OPERATING CHARGING PUMPS AND PLANT OPERATIONAL MODES FOR Keff < 0.95 OPERATIONAL Number of Operating Charging Pumps MODE 0 1 2 3 3 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 4 hours4.62963e-5 days <br />0.00111 hours <br />6.613757e-6 weeks <br />1.522e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 4 not on SCS 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 4.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 5 not on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 4.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br /> 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> 4 & 5 on SCS 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> 2 hours2.314815e-5 days <br />5.555556e-4 hours <br />3.306878e-6 weeks <br />7.61e-7 months <br /> 0.75 hours8.680556e-4 days <br />0.0208 hours <br />1.240079e-4 weeks <br />2.85375e-5 months <br /> ONA 6 24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br /> 1.5 hours5.787037e-5 days <br />0.00139 hours <br />8.267196e-6 weeks <br />1.9025e-6 months <br /> ONA ONA Notes: SCS = Shutdown Cooling System ONA = Operation Not Allowed Page 26 of 26