LR-N05-0357, Core Operating Limits Report - Cycle 13, Revision 1: Difference between revisions

From kanterella
Jump to navigation Jump to search
(Created page by program invented by StriderTol)
 
(StriderTol Bot change)
 
(One intermediate revision by the same user not shown)
Line 16: Line 16:


=Text=
=Text=
{{#Wiki_filter:PSEG Nuclear LLC P.O. Box 236, Hancocks Bridge, New Jersey 08038-0236 SJUL 1 4 2005 o PSEG ANuiclear LLC LR-N05-0357 United States Nuclear Regulatory Commission Document Control Desk Washington, DC 20555 CORE OPERATING LIMITS REPORT- CYCLE 13, REVISION 1 HOPE CREEK GENERATING STATION FACILITY OPERATING LICENSE NPF-57 DOCKET NO. 50-354 In accordance with section 6.9.1.9 of the Hope Creek Technical Specifications, PSEG Nuclear LLC submits Revision 1 of the Core Operating Limits Report (COLR) for Hope Creek Cycle 13 (NFS-0243, Rev. 1) in Attachment I to this letter.
{{#Wiki_filter:PSEG Nuclear LLC P.O. Box 236, Hancocks Bridge, New Jersey 08038-0236 o PSEG ANuiclear LLC SJUL 1 4 2005 LR-N05-0357 United States Nuclear Regulatory Commission Document Control Desk Washington, DC 20555 CORE OPERATING LIMITS REPORT-CYCLE 13, REVISION 1 HOPE CREEK GENERATING STATION FACILITY OPERATING LICENSE NPF-57 DOCKET NO. 50-354 In accordance with section 6.9.1.9 of the Hope Creek Technical Specifications, PSEG Nuclear LLC submits Revision 1 of the Core Operating Limits Report (COLR) for Hope Creek Cycle 13 (NFS-0243, Rev. 1) in Attachment I to this letter.
Should you have any questions, please contact Mr. Paul Duke at (856) 339-1466.
Should you have any questions, please contact Mr. Paul Duke at (856) 339-1466.
Sincerely, Darin Benyak Director - Regulatory Assurance Attachment A S0l 95-2168 REV. 7(99
Sincerely, Darin Benyak Director - Regulatory Assurance Attachment A S0l 95-2168 REV. 7(99


Document Control Desk                                 JUL 1425 LR-N05-0357 C   Mr. S. Collins, Administrator- Region I U. S. Nuclear Regulatory Commission 475 Allendale Road King of Prussia, PA 19406 Mr. S. Bailey, Licensing Project Manager - Hope Creek U. S. Nuclear Regulatory Commission Mail Stop 0861 Washington, DC 20555 USNRC Senior Resident Inspector - Hope Creek (X24)
Document Control Desk JUL 14 25 LR-N05-0357 C
Mr. S. Collins, Administrator-Region I U. S. Nuclear Regulatory Commission 475 Allendale Road King of Prussia, PA 19406 Mr. S. Bailey, Licensing Project Manager - Hope Creek U. S. Nuclear Regulatory Commission Mail Stop 0861 Washington, DC 20555 USNRC Senior Resident Inspector - Hope Creek (X24)
Mr. K. Tosch, Manager IV Bureau of Nuclear Engineering PO Box 415 Trenton, NJ 08625
Mr. K. Tosch, Manager IV Bureau of Nuclear Engineering PO Box 415 Trenton, NJ 08625


Attachment I                 LR-NO5-0357 NFS-0243, Rev. 1
Attachment I LR-NO5-0357 NFS-0243, Rev. 1


        - -
NFS-0243 Revision 1 l Hope Creek Generating Station Core Operating Limits Report Cycle 13/ Reload 12 Effective Date: o 2zu /0 s Prepared By:
NFS-0243 Revision 1 l Hope Creek Generating Station Core Operating Limits Report Cycle 13/ Reload 12 Effective Date: o 2zu /0 s Prepared By:   AtWAd         2d 7      A               D           Date  S Steven G. Bier, Nuclear Fuels Staff Engineer                             I Reviewed By: -        -      4                         DELte: s/roJ Shie-Jeng Pag, Celear Fuehs Senior Engineer                               I.
AtWAd 7
Concurrence By:     ki         Cv                       Date: S l/ '    Z Donald V. Nltig n, Supervisor Hope Creek eoator & Safety Analysis N-V~VV\.A~~l44 Approved By:_                                            Date:   S/hO /2s Michael M. Mannion, Manager Nuclear Fuels/Reactor Engineering Page I of 28
2d A
D Steven G. Bier, Nuclear Fuels Staff Engineer Date S I
Reviewed By:
4 DE Shie-Jeng Pag, Celear Fuehs Senior Engineer Lte:
s/roJ I.
Concurrence By:
ki Cv Date:
S l/
Z Donald V. Nltig n, Supervisor Hope Creek eoator & Safety Analysis N-V~VV\\. A~~l44 Date:
S/hO /2s Approved By:_
Michael M. Mannion, Manager Nuclear Fuels/Reactor Engineering Page I of 28


NFS-0243 Revision 1 Table of Contents Section   Description                                           Page
NFS-0243 Revision 1 Table of Contents Section Description Page


==1.0 INTRODUCTION==
==1.0 INTRODUCTION==
5 2.0 TECHNICAL SPECIFICATIONS THAT REFERENCE THE COLR               6 2.1 AVERAGE PLANAR LINEAR HEAT GENERATION RATE                 7 2.2 MINIMUM CRITICAL POWER RATIO                             12 2.3 LINEAR HEAT GENERATION RATE                               20 2.4 OPRM TRIP SETPOINT                                       25
5 2.0 TECHNICAL SPECIFICATIONS THAT REFERENCE THE COLR 6
2.1 AVERAGE PLANAR LINEAR HEAT GENERATION RATE 7
2.2 MINIMUM CRITICAL POWER RATIO 12 2.3 LINEAR HEAT GENERATION RATE 20 2.4 OPRM TRIP SETPOINT 25


==3.0 REFERENCES==
==3.0 REFERENCES==
26 Appendix A: Method of Core Average Scram Speed Calculation         27 Page 2 of 28
26 Appendix A: Method of Core Average Scram Speed Calculation 27 Page 2 of 28


NFS-0243 Revision 1 List of Tables Table         Description                                                     Page Table 2.1- 1: APLHGR Data for GEl4 Fuel (Two Recirculation Loop Operation)         8 Table 2.1- 2: APLHGR Data for GE14 Fuel (Single Recirculation Loop Operation) 8 Table 2.1- 3: APLHGR Data for SVEA-96+ Fuel (Two Recirculation Loop Operation) 9 Table 2.1- 4: APLHGR Data for SVEA-96+ Fuel (Single Recirculation Loop Operation)9 Table 2.2- 1: Cycle 13 MCPR Operating limits: Cycle Exposure < 8693 MWd/MYU_ 13 Table 2.2- 2: Cycle 13 MCPR Operating limits: Cycle Exposure > 8693 MWd/MYU_ 14 Table 2.2- 3: Kf Multiplier Data                                                 19 Table 2.3- 1: LHGR Limit for GE14 (Two Recirculation Loop Operation) _    _    21 Table 2.3- 2: LHGR Limit for GE14 (Single Recirculation Loop Operation)           21 Table 2.3- 3: LHGR Limit for SVEA-96+ (Two Recirculation Loop Operation)         22 Table 2.3- 4: LHGR Limit for SVEA-96+ (Single Recirculation Loop Operation)       22 Page 3 of 28
NFS-0243 Revision 1 List of Tables Table Description Page Table 2.1-1: APLHGR Data for GEl4 Fuel (Two Recirculation Loop Operation) 8 Table 2.1-2: APLHGR Data for GE14 Fuel (Single Recirculation Loop Operation) 8 Table 2.1-3: APLHGR Data for SVEA-96+ Fuel (Two Recirculation Loop Operation) 9 Table 2.1-4: APLHGR Data for SVEA-96+ Fuel (Single Recirculation Loop Operation)9 Table 2.2-1: Cycle 13 MCPR Operating limits: Cycle Exposure < 8693 MWd/MYU_ 13 Table 2.2-2: Cycle 13 MCPR Operating limits: Cycle Exposure > 8693 MWd/MYU_ 14 Table 2.2-3: Kf Multiplier Data 19 Table 2.3-1: LHGR Limit for GE14 (Two Recirculation Loop Operation) 21 Table 2.3-2: LHGR Limit for GE14 (Single Recirculation Loop Operation) 21 Table 2.3-3: LHGR Limit for SVEA-96+ (Two Recirculation Loop Operation) 22 Table 2.3-4: LHGR Limit for SVEA-96+ (Single Recirculation Loop Operation) 22 Page 3 of 28


NFS-0243 Revision 1 List of Figures Figures         Description                                                     Page Figure 2.1 - 1: APLHGR Limit for Fuel Bundle GE14                                 10 Figure 2.1- 2: APLHGR Limit for Fuel Bundle SVEA-96+                               11 Figure 2.2-1: Rated Power MCPR Limit: GE14, Cycle Exposure < 8693 MWD/MTU         15 Figure 2.2-2: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure < 8693 MWD/MTU _ 16 Figure 2.2-3: Rated Power MCPR Limit: GE14, Cycle Exposure > 8693 MWD/MTU         17 Figure 2.2-4: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure > 8693 MWD/MTU     18 Figure 2.2-5 KfMultiplier Curve                                                   19 Figure 2.3-1: LHGRLimit for GE14                                                   23 Figure 2.3- 2: LHGR Limit for SVEA-96+                                             24 Page 4 of 28
NFS-0243 Revision 1 List of Figures Figures Description Page Figure 2.1 - 1: APLHGR Limit for Fuel Bundle GE14 10 Figure 2.1-2: APLHGR Limit for Fuel Bundle SVEA-96+
11 Figure 2.2-1: Rated Power MCPR Limit: GE14, Cycle Exposure < 8693 MWD/MTU 15 Figure 2.2-2: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure < 8693 MWD/MTU _ 16 Figure 2.2-3: Rated Power MCPR Limit: GE14, Cycle Exposure > 8693 MWD/MTU 17 Figure 2.2-4: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure > 8693 MWD/MTU 18 Figure 2.2-5 KfMultiplier Curve 19 Figure 2.3-1: LHGRLimit for GE14 23 Figure 2.3-2: LHGR Limit for SVEA-96+
24 Page 4 of 28


NFS-0243 Revision 1
NFS-0243 Revision 1


==1.0     INTRODUCTION==
==1.0 INTRODUCTION==
 
The purpose of this report is to provide the Core Operating Limits for Hope Creek Generation Station Unit I Cycle 13/ Reload 12 operation. In addition, this report will provide information on Oscillation Power Range Monitor (OPRM) setpoint, single recirculation loop operation, average scram speed and determination of the Core Maximum Fraction of Limiting Power Density. Finally, this report also provides a reference to the most recent revision of the implemented approved methodology. The limits presented here correspond to the core thermal limits for Average Planar Linear Heat Generation Rate (APLHGR), Minimum Critical Power Ratio (MCPR), MCPR Flow Adjustment Factor (Kr) and Linear Heat Generation Rate (LHGR).
The purpose of this report is to provide the Core Operating Limits for Hope Creek Generation Station Unit I Cycle 13/ Reload 12 operation. In addition, this report will provide information on Oscillation Power Range Monitor (OPRM) setpoint, single recirculation loop operation, average scram speed and determination of the Core Maximum Fraction of Limiting Power Density. Finally, this report also provides a reference to the most recent revision of the implemented approved methodology. The limits presented here correspond to the core thermal limits for Average Planar Linear Heat Generation Rate (APLHGR), Minimum Critical Power Ratio (MCPR), MCPR Flow Adjustment Factor (Kr) and Linear Heat Generation Rate (LHGR).
These operating limit values have been determined using NRC approved methods contained in GESTAR-Il [1], NEDE-2401 1-P-A (Revision 14) and are established such that all applicable fuel thermal-mechanical, core thermal-hydraulic, ECCS, and nuclear limits such as shutdown margin, and transient and accident analysis limits are met.
These operating limit values have been determined using NRC approved methods contained in GESTAR-Il [1], NEDE-2401 1-P-A (Revision 14) and are established such that all applicable fuel thermal-mechanical, core thermal-hydraulic, ECCS, and nuclear limits such as shutdown margin, and transient and accident analysis limits are met.
Line 55: Line 69:
Page 5 of 28
Page 5 of 28


NFS-0243 Revision 1 l 2.0     TECHNICAL SPECIFICATIONS THAT REFERENCE THE COLR The TECHNICAL SPECIFICATIONS THAT REFERENCE THE COLR presented in this section are referenced by the Hope Creek Technical Specifications.
NFS-0243 Revision 1 l 2.0 TECHNICAL SPECIFICATIONS THAT REFERENCE THE COLR The TECHNICAL SPECIFICATIONS THAT REFERENCE THE COLR presented in this section are referenced by the Hope Creek Technical Specifications.
Tech. Spec.                   Title 2.1                           Safety Limit Bases 3/4.2.1                       Average Planar Linear Generation Rate 3/4.2.3                       Minimum Critical Power Ratio 3/4.2.4                       Linear Heat Generation Rate 3/4.3.11                       Oscillation Power Range Monitor 3/4.4.1                       Recirculation System Recirculation Loops 3/4.2.1 Bases                 Average Planar Linear Heat Generation Rate 6.9.1.9                       Administrative Controls, Core Operating Limits Report Page 6 of 28
Tech. Spec.
Title 2.1 Safety Limit Bases 3/4.2.1 Average Planar Linear Generation Rate 3/4.2.3 Minimum Critical Power Ratio 3/4.2.4 Linear Heat Generation Rate 3/4.3.11 Oscillation Power Range Monitor 3/4.4.1 Recirculation System Recirculation Loops 3/4.2.1 Bases Average Planar Linear Heat Generation Rate 6.9.1.9 Administrative Controls, Core Operating Limits Report Page 6 of 28


NFS-0243 Revision 1 2.1     AVERAGE PLANAR LINEAR HEAT GENERATION RATE LIMITING CONDITION FOR OPERATION:
NFS-0243 Revision 1 2.1 AVERAGE PLANAR LINEAR HEAT GENERATION RATE LIMITING CONDITION FOR OPERATION:
All AVERAGE PLANAR LINEAR HEAT GENERATION RATES (APLHGRs) shall be less than or equal to the limits specified in Table 2.1-1 and Table 2.1-3.
All AVERAGE PLANAR LINEAR HEAT GENERATION RATES (APLHGRs) shall be less than or equal to the limits specified in Table 2.1-1 and Table 2.1-3.
When the Technical Specification Section 3/4.4.1 ACTION statement a.l.d is entered from that section's LCO, reduce the APLHGR limits to the values specified in Tables 2.1-2 and 2.1-4.
When the Technical Specification Section 3/4.4.1 ACTION statement a.l.d is entered from that section's LCO, reduce the APLHGR limits to the values specified in Tables 2.1-2 and 2.1-4.
Line 64: Line 79:
Page 7 of 28
Page 7 of 28


NFS-0243 Revision 1 I Tablc 2.1- 1: APLHGR Data for GE14 Fuel (Two Recirculation Loop Operation)
NFS-0243 Revision 1 I Tablc 2.1-1: APLHGR Data for GE14 Fuel (Two Recirculation Loop Operation)
Bundle Types: GEl 4-P 1OCNAB402-4G6.0/1 6G4.0-1 OOT-1 50-T6-2757 GE1 4-P1 OCNAB402-5G6.0/1 4G4.0-1 00T-1 50-T6-2758 Average Planar Exposure               APLHGR Limit MWD/STU             MWD/MTU                   Kw/ft 0.00                 0.00                   12.82 19130               21090                   12.82 57610               63500                     8.00 63500               70000                     5.00 Table 2.1- 2: APLHGR Data for GE14 Fuel (Single Recirculation Loop Operation)
Bundle Types: GEl 4-P 1 OCNAB402-4G6.0/1 6G4.0-1 OOT-1 50-T6-2757 GE1 4-P1 OCNAB402-5G6.0/1 4G4.0-1 00T-1 50-T6-2758 Average Planar Exposure APLHGR Limit MWD/STU MWD/MTU Kw/ft 0.00 0.00 12.82 19130 21090 12.82 57610 63500 8.00 63500 70000 5.00 Table 2.1-2: APLHGR Data for GE14 Fuel (Single Recirculation Loop Operation)
Bundle Types: GE14-P1 OCNAB402-4G6.0/1 6G4.0-1 0OT-150-T6-2757 GEI 4-PI OCNAB402-5G6.0/1 4G4.0-1 00T-1 50-T6-2758 Average Planar Exposure                 APLHGR Limit MWD/STU             MWD/MTU                   Kw/ft 0.00                 0.00                   10.25 19130               21090                   10.25 57610               63500                     6.40 63500               70000                     4.00 Page 8 of 28
Bundle Types: GE14-P1 OCNAB402-4G6.0/1 6G4.0-1 0OT-150-T6-2757 GEI 4-PI OCNAB402-5G6.0/1 4G4.0-1 00T-1 50-T6-2758 Average Planar Exposure APLHGR Limit MWD/STU MWD/MTU Kw/ft 0.00 0.00 10.25 19130 21090 10.25 57610 63500 6.40 63500 70000 4.00 Page 8 of 28


NFS-0243 Revision I I Table 2.1- 3: APLHGR Data for SVE A-96+ Fuel (Two Recirculation Loop Operation)
NFS-0243 Revision I I Table 2.1-3: APLHGR Data for SVE A-96+ Fuel (Two Recirculation Loop Operation)
Bundle Types: SVEA96-P IOCASB326-1 I GZ-568U-4WR-1 50-T6-2654 SVEA96-P1OCASB326-11 G4.5-568U-4WR-150-T6-2655 SVEA96-P IOCASB360-12GZ-568U-4WR-150-T6-2656 SVEA96-PI OCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-P1 OCASB361 -14GZ-568U4WR-150-T6-2658 SVEA96-P 1OCASB360-12G5.5/2G2.5-568U-4WR-150-T6-2659 Average Planar Exposure             APLHGR Limit M'WD/STU             MW\RD/MTU               IKw/ft 0.00                 0.00                 12.85 3340                 3680                 12.85 14510               16000                 10.97 58970                 65000                 7.24 Table 2.1- 4: APLHGR Data for SVEA-96+ Fuel (Single Recirculation Loop Operation)
Bundle Types: SVEA96-P I OCASB326-1 I GZ-568U-4WR-1 50-T6-2654 SVEA96-P1OCASB326-11 G4.5-568U-4WR-150-T6-2655 SVEA96-P IOCASB360-12GZ-568U-4WR-150-T6-2656 SVEA96-PI OCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-P1 OCASB361 -14GZ-568U4WR-150-T6-2658 SVEA96-P 1 OCASB360-12G5.5/2G2.5-568U-4WR-150-T6-2659 Average Planar Exposure APLHGR Limit M'WD/STU MW\\RD/MTU IKw/ft 0.00 0.00 12.85 3340 3680 12.85 14510 16000 10.97 58970 65000 7.24 Table 2.1-4: APLHGR Data for SVEA-96+ Fuel (Single Recirculation Loop Operation)
Bundle Types: SVEA96-P 1OCASB326-11 GZ-568U-4WR-150-T6-2654 SVEA96-P1 OCASB326-1 1G4.5-568U-4WR-150-T6-2655 SVEA96-PlOCASB360-12GZ-568U-4WR-150-T6-2656 SVEA96-PlOCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-P1 OCASB361 -14GZ-568U-4WR-150-T6-2658 SVEA96-P1 OCASB360-12G5.5/2G2.5-568U-4WR-150-T6-2659 Average Planar Exposure               APLHGR Limit MVVD/STU             MWD/MTU                 Kw/ft 0.00                 0.00                 10.28 3340                 3680                 10.28 14510               16000                   8.77 58970               65000                   5.79 Page 9 of 28
Bundle Types: SVEA96-P 1 OCASB326-11 GZ-568U-4WR-150-T6-2654 SVEA96-P1 OCASB326-1 1 G4.5-568U-4WR-150-T6-2655 SVEA96-PlOCASB360-12GZ-568U-4WR-150-T6-2656 SVEA96-PlOCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-P1 OCASB361 -14GZ-568U-4WR-150-T6-2658 SVEA96-P1 OCASB360-12G5.5/2G2.5-568U-4WR-150-T6-2659 Average Planar Exposure APLHGR Limit MVVD/STU MWD/MTU Kw/ft 0.00 0.00 10.28 3340 3680 10.28 14510 16000 8.77 58970 65000 5.79 Page 9 of 28


NFS-0243 Revision I I 14.00 12.00 cat 600 0
NFS-0243 Revision I I 14.00 12.00 cat 600 4.00 0
4.00 4.00 aoo0 0 10000                 30000       40000               *;uoo Awm~ugEqmrn6xpe (adz^ )
4.00 aoo0 0
Figure 2.1- 1: APLHGR Limit for GE14 Fuel Page 10 of 28
10000 30000 40000 Awm~ugEqmrn6xpe (adz^  
)
*;uoo Figure 2.1-1: APLHGR Limit for GE14 Fuel Page 10 of 28


NFS-0243 Revision 1 l 0     20000       30000       40000                     70000 ANwFlmmrED     nWDMM Figure 2.1- 2: APLHGR Limit for SVEA-96+ Fuel Page 11 of 28
NFS-0243 Revision 1 l 0
20000 30000 40000 ANwFlmmrED nWDMM 70000 Figure 2.1-2: APLHGR Limit for SVEA-96+ Fuel Page 11 of 28


NFS-0243 Revision I 2.2     MINIMUM CRITICAL POWER RATIO LIMITING CONDITION FOR OPERATION The MINIMUM CRITICAL POWER RATIO (MCPR) shall be equal to or greater than the MCPR limit as computed from the following steps:
NFS-0243 Revision I 2.2 MINIMUM CRITICAL POWER RATIO LIMITING CONDITION FOR OPERATION The MINIMUM CRITICAL POWER RATIO (MCPR) shall be equal to or greater than the MCPR limit as computed from the following steps:
: 1. Determine T as defined in Appendix A.
: 1. Determine T as defined in Appendix A.
: 2. Linearly interpolate a MCPR value as a function of T from the MCPR value at X=
: 2. Linearly interpolate a MCPR value as a function of T from the MCPR value at X =
0 and the MCPR value at T = I as specified in Table 2.2-1 and Table 2.2-2. The obtained value shall be checked with the value as shown in Figures 2.2-1 to 2.2-4.
0 and the MCPR value at T = I as specified in Table 2.2-1 and Table 2.2-2. The obtained value shall be checked with the value as shown in Figures 2.2-1 to 2.2-4.
A conservative penalty has been added to the MCPR Operating Limit values for GE14 fuel in Table 2.2-1 and Table 2.2-2 (also reflected in Figure 2.2-1 and Figure 2.2-3) to account for a non-conforming condition identified in the critical power correlation for GE14 fuel as documented in corrective action order number 70047609.
A conservative penalty has been added to the MCPR Operating Limit values for GE14 fuel in Table 2.2-1 and Table 2.2-2 (also reflected in Figure 2.2-1 and Figure 2.2-3) to account for a non-conforming condition identified in the critical power correlation for GE14 fuel as documented in corrective action order number 70047609.
Line 87: Line 105:
Note that the MCPR limit is a function of core average scram speed (X), cycle exposure, EOC-RPT operability, reactor coolant recirculation loop operation condition and main turbine bypass operability.
Note that the MCPR limit is a function of core average scram speed (X), cycle exposure, EOC-RPT operability, reactor coolant recirculation loop operation condition and main turbine bypass operability.
EOC-RPT system operability is defined by Hope Creek Technical Specification 3.3.4.2.
EOC-RPT system operability is defined by Hope Creek Technical Specification 3.3.4.2.
Reactor coolant recirculation . loop operation condition is defined by Hope Creek Technical Specification 3.4.1.1.
Reactor coolant recirculation. loop operation condition is defined by Hope Creek Technical Specification 3.4.1.1.
Main Turbine Bypass operability is defined by Hope Creek Technical Specification 3.7.7.
Main Turbine Bypass operability is defined by Hope Creek Technical Specification 3.7.7.
Page 12 of 28
Page 12 of 28


NES-0243 Revision 1 l Table 2.2- 1: Cycle 13 MCPR Operating limits:
NES-0243 Revision 1 l Table 2.2-1: Cycle 13 MCPR Operating limits:
Cycle Exposure < 8693 MWd/MTU Main Turbine Bypass Operable Cycle Exposure
Cycle Exposure < 8693 MWd/MTU Main Turbine Bypass Operable Cycle Exposure
* 8693 MWd/MTU (7886 MWd/STU)
* 8693 MWd/MTU (7886 MWd/STU)
Conditions                   Limit                 GE14(1"'                 SVEA-96+( 2 )
Conditions Limit GE14(1"'
Option A (T   = 1)           Rated Power                   1.60                       1.47 EOC-RPT Operable Option B   (T = 0)             Rated Power                   1.47                       1.36 EOC-RPT Operable Option A   (T = 1)           Rated Power                   1.62                       1.48 EOC-RPT Inoperable Option B (r = 0)               Rated Power                   1.50                       1.37 EOC-RPT Inoperable
SVEA-96+(2 )
Option A (T = 1)
Rated Power 1.60 1.47 EOC-RPT Operable Option B (T = 0)
Rated Power 1.47 1.36 EOC-RPT Operable Option A (T = 1)
Rated Power 1.62 1.48 EOC-RPT Inoperable Option B (r = 0)
Rated Power 1.50 1.37 EOC-RPT Inoperable
: 1. GE14 fuel design:
: 1. GE14 fuel design:
GE14-P lOCNAB402-4G6.0/16G4.0-1OOT-150-T6-2757 GE14-PIOCNAB402-5G6.0/14G4.0-lOOT-150-T6-2758
GE14-P lOCNAB402-4G6.0/16G4.0-1OOT-150-T6-2757 GE14-PIOCNAB402-5G6.0/14G4.0-lOOT-150-T6-2758
: 2. SVEA-96+ fuel design:
: 2. SVEA-96+ fuel design:
SVEA96-PIOCASB326-I IGZ-568U-4WR-150-T6-2654 SVEA96-P 1OCASB326- I G4.5-568U-4WR-150-T6-2655 SVEA96-P1 OCASB360-12GZ-568U-4WR-150-T6-2656 SVEA96-P1OCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-PlOCASB361-14GZ-568U-4WR-150-T6-2658 SVEA96-PlOCASB360-12G5.5/2G2.5-568U-4WR-150-T6-2659
SVEA96-PIOCASB326-I IGZ-568U-4WR-150-T6-2654 SVEA96-P 1 OCASB326-I G4.5-568U-4WR-150-T6-2655 SVEA96-P1 OCASB360-12GZ-568U-4WR-150-T6-2656 SVEA96-P1OCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-PlOCASB361-14GZ-568U-4WR-150-T6-2658 SVEA96-PlOCASB360-12G5.5/2G2.5-568U-4WR-150-T6-2659
: 3. As stated in section 2.2, a conservative MCPR penalty has been applied to the value for GE14 fuel to account for a non-conforming condition identified in the critical power correlation for GE14 fuel, as documented in corrective action order number 70047609.
: 3. As stated in section 2.2, a conservative MCPR penalty has been applied to the value for GE14 fuel to account for a non-conforming condition identified in the critical power correlation for GE14 fuel, as documented in corrective action order number 70047609.
Page 13 of 28
Page 13 of 28


NFS-0243 Revision I I Table 2.2- 2: Cycle 13 MCPR Operating limits:
NFS-0243 Revision I I Table 2.2-2: Cycle 13 MCPR Operating limits:
Cycle Exposure > 8693 M d'/MTU Main Turbine Bypass Operable Creel W.> -.-
Cycle Exposure > 8693 M d'/MTU Main Turbine Bypass Operable Creel Thrnnviirp> R6Q'A Af'UAMTIrTJ oRRh Af' Wf/IT77)
Thrnnviirp>
W.> -.-
                      --  a-.
a-.
R6Q'A Af'UAMTIrTJ
avo --
                                    - avo-- ,,  ,, -,, v   A       ,
v A
oRRh
v -
                                                                      -- v-Af',Wf/IT77)
,,,..,s v s
                                                                                ,, .. ,s v   s Conditions                     Limit                 GE14(l"   3                   SVEA-96+(2 )
Conditions Limit GE14(l" 3
Option A (T   =   1)           Rated Power                   1.72                             1.60 EOC-RPT Operable Option B   (T =0)               Rated Power                   1.53                             1.43 EOC-RPT Operable Option A ('r = 1)               Rated Power                   1.75                             1.60 EOC-RPT Inoperable Option B   (T =0)               Rated Power                   1.56                             1.43 EOC-RPT Inoperable
SVEA-96+(2 )
Option A (T = 1)
Rated Power 1.72 1.60 EOC-RPT Operable Option B (T =0)
Rated Power 1.53 1.43 EOC-RPT Operable Option A ('r = 1)
Rated Power 1.75 1.60 EOC-RPT Inoperable Option B (T =0)
Rated Power 1.56 1.43 EOC-RPT Inoperable
: 1. GE14 fuel design:
: 1. GE14 fuel design:
GE14-P IOCNAB402-4G6.0/16G4.0-1 OOT-150-T6-2757 GE14-P 1OCNAB402-5G6.0/14G4.0-1 OOT-150-T6-2758
GE14-P IOCNAB402-4G6.0/16G4.0-1 OOT-150-T6-2757 GE14-P 1 OCNAB402-5G6.0/14G4.0-1 OOT-150-T6-2758
: 2. SVEA-96+ fuel design:
: 2. SVEA-96+ fuel design:
SVEA96-PIOCASB326-1 lGZ-568U-4WR-150-T6-2654 SVEA96-PI OCASB326-1 I G4.5-568U-4WR-150-T6-2655 SVEA96-P IOCASB360-12GZ-568UV4WR-150-T6-2656 SVEA96-P 1OCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-PI OCASB361 -14GZ-568U-4WR-150-T6-2658 SVEA96-P I OCASB360-12G5.5/2G2.5-568U4WR-150-T6-2659
SVEA96-PIOCASB326-1 lGZ-568U-4WR-150-T6-2654 SVEA96-PI OCASB326-1 I G4.5-568U-4WR-150-T6-2655 SVEA96-P IOCASB360-12GZ-568UV4WR-150-T6-2656 SVEA96-P 1 OCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-PI OCASB361 -14GZ-568U-4WR-150-T6-2658 SVEA96-P I OCASB360-12G5.5/2G2.5-568U4WR-150-T6-2659
: 3. As stated in section 2.2, a conservative MCPR penalty has been applied to the value for GEI4 to
: 3.
    - account for a non-conforming condition identified in the critical power correlation for GE14 fuel,.
As stated in section 2.2, a conservative MCPR penalty has been applied to the value for GEI4 to
- account for a non-conforming condition identified in the critical power correlation for GE14 fuel,.
as documented in corrective action order number 70047609.
as documented in corrective action order number 70047609.
Page 14 of 28
Page 14 of 28


NFS-0243 Revision 1 I 1.80 1.75
NFS-0243 Revision 1 I 1.80 1.75
.=   1.70 E
.=
1.70 E
.= 1.65 C'4 c-o 1.60 U
.= 1.65 C'4 c-o 1.60 U
: 1.55 1.50 1.45 4-0.00     0.10     0.20   0.30 0.40     0.50     0.60   0.70   0.80   0.90   1.00 Tau (Scram Speed)
1.55 1.50 1.45 4-0.00 0.10 0.20 0.30 0.40 0.50 0.60 0.70 0.80 0.90 1.00 Tau (Scram Speed)
Figure 2.2-1: Rated Power MCPR Limit: GE14, Cycle Exposure s 8693 MWD/MTU Page 15 of 28
Figure 2.2-1: Rated Power MCPR Limit: GE14, Cycle Exposure s 8693 MWD/MTU Page 15 of 28


NFS-0243 Revision I I 1.65     _I           I       i     I Main Turbine Bypass Operable Two Loop Operation 1.60 Fuel Type: SVTEA-96+
NFS-0243 Revision I I 1.65 1.60 1.55 0.4
Exposure <= 8693 MWID/MTU
.E-1.50 1.
. 1.55                      (7886 MWD/STU) 0.4
r-o 1.45 U
.E- 1.50 1.
1.40 1.35 1.30
r-
_I I
i I
Main Turbine Bypass Operable Two Loop Operation Fuel Type: SVTEA-96+
Exposure <= 8693 MWID/MTU (7886 MWD/STU)
[EOC-RPT Inoperable -
[EOC-RPT Inoperable -
o 1.45 U
EOC-RPT Operable 0.00 0.10 0.20 030 0.40 0.50 0.60 0.70 0.80 0.90 1.00 Tau (Scram Speed)
;    1.40 EOC-RPT Operable 1.35 1.30 0.00   0.10     0.20     030   0.40   0.50   0.60   0.70     0.80   0.90   1.00 Tau (Scram Speed)
Figure 2.2-2: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure
Figure 2.2-2: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure
* 8693 MWD/MTU Page 16 of 28
* 8693 MWD/MTU Page 16 of 28


NFS-0243 Revision I l 1.80 1.75
NFS-0243 Revision I l 1.80 1.75 1.70 tz
. 1.70
.E 1.65 o 1.60 Q
._
1.55 1.50 1.45 0.00 0.10 0.20 0.30 0.40 0.50 0.60 0.70 0.80 0.90 1.00 Tau (Scram Speed)
tz
.E 1.65 o   1.60 Q
: 1.55 1.50 1.45 0.00     0.10     0.20   0.30   0.40     0.50   0.60   0.70     0.80 0.90     1.00 Tau (Scram Speed)
Figure 2.2-3: Rated Power MCPR Limit: GE14, Cycle Exposure > 8693 MWD/MTU Page 17 of 28
Figure 2.2-3: Rated Power MCPR Limit: GE14, Cycle Exposure > 8693 MWD/MTU Page 17 of 28


NFS-0243 Revision 1 l 1.65               II           iI Main Turbine Bypass Operable Two Loop Operation         _                EO i rT Inoperable 1.60 Fuel Type: SVEA-96+
NFS-0243 Revision 1 l 1.65 1.60 1.55
Exposure > 8693 MAID/JMTU
._ 1.50 o 1.45 U
. 1.55                    (7886 MWD/STUD)   -  =__
1.40 1.35 II iI Main Turbine Bypass Operable Two Loop Operation i
  ._
EO rT Inoperable Fuel Type: SVEA-96+
._ 1.50 I               Tp    -
Exposure > 8693 MAID/JMTU (7886 MWD/STUD)  
o 1.45 I-EO-RPT Operable U
=__
1.40
Tp I
                  . _I I I_==
I-EO-RPT Operable
1.35 130 0.00   0.10     0.20     0.30 0.40     0.50     0.60     0.70 0.80     0.90   1.00 Tau (Scram Speed)
. _ I I I_==
Note The same rated power MCPR operating limit is applied to both EOC-RPT Operable and EOC-RPT Inoperable for SVEA-96+ under the condition of Cycle Exposure > 8693 MWD/MTU, Main Turbine Bypass Operable and Two Loop Operation. .            .. - .
130 0.00 0.10 0.20 0.30 0.40 0.50 0.60 0.70 0.80 0.90 1.00 Tau (Scram Speed)
Note The same rated power MCPR operating limit is applied to both EOC-RPT Operable and EOC-RPT Inoperable for SVEA-96+ under the condition of Cycle Exposure > 8693 MWD/MTU, Main Turbine Bypass Operable and Two Loop Operation.
Figure 2.24: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure > 8693 MWDJMTU Page 18 of 28
Figure 2.24: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure > 8693 MWDJMTU Page 18 of 28


NFS-0243 Revision 1 l Table 2.2- 3: Kr Multiplier Data Initial Flow                             Kr
NFS-0243 Revision 1 l Table 2.2-3: Kr Multiplier Data Initial Flow Kr
(% Rated Flow)                       Multiplier 25.00                           1.2532 82.404                           1.0000 105.00                           1.0000 1.30 1.30125     19o                         FlowLimiters 1.25 1.15 1.10   -
(% Rated Flow)
E 1.05 1.00                   -                      -
Multiplier 25.00 1.2532 82.404 1.0000 105.00 1.0000 1.30 1.30125 19o FlowLimiters 1.25 1.15 1.10 E 1.05 1.00 0.95  
0.95               -  -E     (2.404,1.0000) 0.901 0.85                                         _
-E (2.404,1.0000) 0.901 0.85 0.80  
0.80                                   -
.20.00 40.00 60.00 80.00 100.00 120.00 Core Flow (% Rated)
    .20.00     40.00     60.00     80.00     100.00   120.00 Core Flow (%Rated)
Figure 2.2-5 Kr Multiplier Curve Page 19 of 28
Figure 2.2-5 Kr Multiplier Curve Page 19 of 28


NFS-0243 Revision 1 I 2.3     LINEAR HEAT GENERATION RATE LIMITING CONDITION FOR OPERATION The LINEAR HEAT GENERATION RATE (LHGR) shall not exceed the limit specified in Table 2.3-1 and Table 2.3-3.
NFS-0243 Revision 1 I 2.3 LINEAR HEAT GENERATION RATE LIMITING CONDITION FOR OPERATION The LINEAR HEAT GENERATION RATE (LHGR) shall not exceed the limit specified in Table 2.3-1 and Table 2.3-3.
When the Technical Specification Section 3/4.4.1 ACTION statement a.l.e is entered from that section's LCO, reduce the LHGR limits to a value specified in Table 2.3-2 and Table 2.3-4.
When the Technical Specification Section 3/4.4.1 ACTION statement a.l.e is entered from that section's LCO, reduce the LHGR limits to a value specified in Table 2.3-2 and Table 2.3-4.
When hand calculations are required, all LHGRs for each type of fuel as a function of Peak Pellet Exposure shall not exceed the limits specified in Figure 2.3-1 and Figure 2.3-2.
When hand calculations are required, all LHGRs for each type of fuel as a function of Peak Pellet Exposure shall not exceed the limits specified in Figure 2.3-1 and Figure 2.3-2.
Line 173: Line 202:
Page 20 of 28
Page 20 of 28


NFS-0243 Revision I I Table 2.3- 1: LHGR Limit for GE14 (Two Recirculation Loop Operation)
NFS-0243 Revision I I Table 2.3-1: LHGR Limit for GE14 (Two Recirculation Loop Operation)
Peak Pellet Exposure         LHIGR Limit MWD/lMTU                   (kW / ft)
Peak Pellet Exposure LHIGR Limit MWD/lMTU (kW / ft)
(MWD/STU)                     GE14 0
(MWD/STU)
(0)                       13.4 16000 (14510)                     13.4 63500 (57610)                       8.0 70000 (63500)                       5.0 Table 2.3- 2: LHGR Limit for GE14 (Single Recirculation Loop Operation)
GE14 0
Peak Pellet Exposure         LHGR Limit MWD/MTU                     (kW / ft)
(0) 13.4 16000 (14510) 13.4 63500 (57610) 8.0 70000 (63500) 5.0 Table 2.3-2: LHGR Limit for GE14 (Single Recirculation Loop Operation)
(MWD/STU)                     GE14 0
Peak Pellet Exposure LHGR Limit MWD/MTU (kW / ft)
(0)                       10.7 16000 (14510)                     10.7 63500 (57610)                       6.4 70000 (63500)                       4.0 Page 21 of 28
(MWD/STU)
GE14 0
(0) 10.7 16000 (14510) 10.7 63500 (57610) 6.4 70000 (63500) 4.0 Page 21 of 28


NFS-0243 Revision 1 I Table 2.3- 3: LHGR Limit for SVEA-96+ (Two Recirculation Loop Operation)
NFS-0243 Revision 1 I Table 2.3-3: LHGR Limit for SVEA-96+ (Two Recirculation Loop Operation)
Peak Pellet Exposure         LHGR Limit MWD/MTU                     (ICM7 / ft)
Peak Pellet Exposure LHGR Limit MWD/MTU (ICM7 / ft)
(MWD/STU)                 SVEA-96+
(MWD/STU)
0 (0)                       13.4 16000 (14510)                     10.9 65000 (58970)                       7.2 Table 2.3- 4: LHGR Limit for SVEA-96+ (Single Recirculation Loop Operation)*
SVEA-96+
Peak Pellet Exposure         LHGR Limit MWDJ/ITU                   (kW / ft)
0 (0) 13.4 16000 (14510) 10.9 65000 (58970) 7.2 Table 2.3-4: LHGR Limit for SVEA-96+ (Single Recirculation Loop Operation)*
(MWD/STU)                 SAEA-96+
Peak Pellet Exposure LHGR Limit MWDJ/ITU (kW / ft)
0 (0)                       10.7 16000 (14510)                       8.7 65000 (58970)                       5.7 Page 22 of 28
(MWD/STU)
SAEA-96+
0 (0) 10.7 16000 (14510) 8.7 65000 (58970) 5.7 Page 22 of 28


NFS-0243 Revision 1 l 16.00 TtdeGpe4 14.00 l l l l                                     II            I I II
NFS-0243 Revision 1 l c:
                            -- lIIIIX;L-                                 - - - IIz4zf- - - - - -IT c:
16.00 14.00 TtdeGpe4 l l l l I I I II II IIz4zf
Gw_ _ _ _    -*-Tw Fo ircalbcn LapI________;-
-- lIIIIX;L-  
10.00.
- - - - - - - - -IT 10.00. Gw _
4.00 _ _ _ _             ;SrCdelbr~abcnW                 ____a___p__
-*-Tw Fo ircalbcn LapI________;-
zoo _                 1111__                           _ _              ___
4.00 _ _ _ _  
am Z_
;SrCdelbr~abcnW
0         10000           20000         30000       40000                             70IOO PcikPc1dethpuW DMft)
____a___p__
Figure 2.3- 1: LHGR Limit for GE14 Page 23 of 28
zoo _
1111__
am _
Z IOO 0
10000 20000 30000 40000 PcikPc1dethpuW DMft) 70 Figure 2.3-1: LHGR Limit for GE14 Page 23 of 28


NFS-0243 Revision I I 16.00 14.00 12.00
NFS-0243 Revision I I 16.00 14.00 12.00 600 400 2.00 0.00 0
  ._
10000 20000 30000 40000 ftAkPeid qtEuow(MYMM 7000 Figure 2.3-2: LHGR Limit for SVEA-96+
,      600 400 0.00 2.00 0 10000   20000       30000       40000               7000 ftAkPeid qtEuow(MYMM Figure 2.3- 2: LHGR Limit for SVEA-96+
Page 24 of 28
Page 24 of 28


NFS-0243 Revision 1 l 2.4   OPRM TRIP SETPOINT LIMITING CONDITION FOR OPERATION Four channels of the OPRM instrumentation shall be OPERABLE. Each OPRM channel period based algorithm amplitude trip setpoint (Sp) shall be less than or equal to the Allowable Value of 1.07.
NFS-0243 Revision 1 l 2.4 OPRM TRIP SETPOINT LIMITING CONDITION FOR OPERATION Four channels of the OPRM instrumentation shall be OPERABLE. Each OPRM channel period based algorithm amplitude trip setpoint (Sp) shall be less than or equal to the Allowable Value of 1.07.
Page 25 of 28
Page 25 of 28


Line 210: Line 246:


==3.0 REFERENCES==
==3.0 REFERENCES==
: 1. Nuclear Fuel Section Design Input File HCG.5-0002,"General Electric Standard Application for Reactor Fuel," General Electric Company, NEDE-2401 1 -P-A-14, and the U.S. Supplement NEDE-2401 I-P-A-14-US.
: 1.
: 2. Nuclear Fuel Section Vendor Technical Document, NFVD-GE-2004-009-01, "Supplemental Reload Licensing Report for Hope Creek Unit 1 Reload 12 Cycle 13" GE Nuclear Energy 0000-0031-0596-SRLR, Rev. 1, December 2004.
Nuclear Fuel Section Design Input File HCG.5-0002,"General Electric Standard Application for Reactor Fuel," General Electric Company, NEDE-2401 1 -P-A-14, and the U.S. Supplement NEDE-2401 I-P-A-14-US.
: 3. Nuclear Fuel Section Design Input File HCG.5-0020, "Fuel Bundle Information Report for Hope Creek Unit 1 Reload 12 Cycle 13," 0000-0031-0596-FBIR, December 2004.
: 2.
: 4. Nuclear Fuel Section Design Input File HCG.5-0024, "Cycle 13 Attachment to NC.NF-AP.ZZ-6004(Q) OPRM Setpoint," December 2004.
Nuclear Fuel Section Vendor Technical Document, NFVD-GE-2004-009-01, "Supplemental Reload Licensing Report for Hope Creek Unit 1 Reload 12 Cycle 13" GE Nuclear Energy 0000-0031-0596-SRLR, Rev. 1, December 2004.
: 3.
Nuclear Fuel Section Design Input File HCG.5-0020, "Fuel Bundle Information Report for Hope Creek Unit 1 Reload 12 Cycle 13," 0000-0031-0596-FBIR, December 2004.
: 4.
Nuclear Fuel Section Design Input File HCG.5-0024, "Cycle 13 Attachment to NC.NF-AP.ZZ-6004(Q) OPRM Setpoint," December 2004.
Page 26 of 28
Page 26 of 28


NFS-0243 Revision 1 I Appendix A: Method of Core Average Scram Speed Calculation Page 27 of 28
NFS-0243 Revision 1 I Appendix A: Method of Core Average Scram Speed Calculation Page 27 of 28


NFS-0243 Revision 1 l Method of Core Average Scram Speed, V, Calculation T is defined as T=(Tave   TB )
NFS-0243 Revision 1 l Method of Core Average Scram Speed, V, Calculation T is defined as T=(Tave TB )
TA -TB where:
TA -TB where:
TA   =0.86 seconds, control rod average scram insertion time limit to notch 39 per Specification 3.1.3.3 TB     0.6 72 +1.65 n       l (0.016) nn Dil ZNITI ave     n ZN, n = number of surveillance tests performed to date in cycle, N, = number of active control rods measured in the i h surveillance test, TV = average scram time to notch 39 of all rods measured in the ih surveillance test, and N. = total number of active rods measured in Specification 4.1 .3.2.a.
TA =0.86 seconds, control rod average scram insertion time limit to notch 39 per Specification 3.1.3.3 TB 0.6 72+1.65 n l (0.016)
If Tave < TB, set r = 0 to apply Option B OLMCPR.
Dil nn ZNITI ave n
ZN, n = number of surveillance tests performed to date in cycle, N, = number of active control rods measured in the i h surveillance test, TV = average scram time to notch 39 of all rods measured in the ih surveillance test, and N. = total number of active rods measured in Specification 4.1.3.2.a.
If Tave < TB, set r = 0 to apply Option B OLMCPR.
T shall be 1.0 (-r = 1.0) prior to performance of the initial scram time measurements for the cycle in accordance with Specification 4.1.3.2.
T shall be 1.0 (-r = 1.0) prior to performance of the initial scram time measurements for the cycle in accordance with Specification 4.1.3.2.
Page 28 of 28}}
Page 28 of 28}}

Latest revision as of 17:18, 15 January 2025

Core Operating Limits Report - Cycle 13, Revision 1
ML052010253
Person / Time
Site: Hope Creek PSEG icon.png
Issue date: 07/14/2005
From: Benyak D
Public Service Enterprise Group
To:
Document Control Desk, Office of Nuclear Reactor Regulation
References
LR-N05-0357
Download: ML052010253 (31)


Text

PSEG Nuclear LLC P.O. Box 236, Hancocks Bridge, New Jersey 08038-0236 o PSEG ANuiclear LLC SJUL 1 4 2005 LR-N05-0357 United States Nuclear Regulatory Commission Document Control Desk Washington, DC 20555 CORE OPERATING LIMITS REPORT-CYCLE 13, REVISION 1 HOPE CREEK GENERATING STATION FACILITY OPERATING LICENSE NPF-57 DOCKET NO. 50-354 In accordance with section 6.9.1.9 of the Hope Creek Technical Specifications, PSEG Nuclear LLC submits Revision 1 of the Core Operating Limits Report (COLR) for Hope Creek Cycle 13 (NFS-0243, Rev. 1) in Attachment I to this letter.

Should you have any questions, please contact Mr. Paul Duke at (856) 339-1466.

Sincerely, Darin Benyak Director - Regulatory Assurance Attachment A S0l 95-2168 REV. 7(99

Document Control Desk JUL 14 25 LR-N05-0357 C

Mr. S. Collins, Administrator-Region I U. S. Nuclear Regulatory Commission 475 Allendale Road King of Prussia, PA 19406 Mr. S. Bailey, Licensing Project Manager - Hope Creek U. S. Nuclear Regulatory Commission Mail Stop 0861 Washington, DC 20555 USNRC Senior Resident Inspector - Hope Creek (X24)

Mr. K. Tosch, Manager IV Bureau of Nuclear Engineering PO Box 415 Trenton, NJ 08625

Attachment I LR-NO5-0357 NFS-0243, Rev. 1

NFS-0243 Revision 1 l Hope Creek Generating Station Core Operating Limits Report Cycle 13/ Reload 12 Effective Date: o 2zu /0 s Prepared By:

AtWAd 7

2d A

D Steven G. Bier, Nuclear Fuels Staff Engineer Date S I

Reviewed By:

4 DE Shie-Jeng Pag, Celear Fuehs Senior Engineer Lte:

s/roJ I.

Concurrence By:

ki Cv Date:

S l/

Z Donald V. Nltig n, Supervisor Hope Creek eoator & Safety Analysis N-V~VV\\. A~~l44 Date:

S/hO /2s Approved By:_

Michael M. Mannion, Manager Nuclear Fuels/Reactor Engineering Page I of 28

NFS-0243 Revision 1 Table of Contents Section Description Page

1.0 INTRODUCTION

5 2.0 TECHNICAL SPECIFICATIONS THAT REFERENCE THE COLR 6

2.1 AVERAGE PLANAR LINEAR HEAT GENERATION RATE 7

2.2 MINIMUM CRITICAL POWER RATIO 12 2.3 LINEAR HEAT GENERATION RATE 20 2.4 OPRM TRIP SETPOINT 25

3.0 REFERENCES

26 Appendix A: Method of Core Average Scram Speed Calculation 27 Page 2 of 28

NFS-0243 Revision 1 List of Tables Table Description Page Table 2.1-1: APLHGR Data for GEl4 Fuel (Two Recirculation Loop Operation) 8 Table 2.1-2: APLHGR Data for GE14 Fuel (Single Recirculation Loop Operation) 8 Table 2.1-3: APLHGR Data for SVEA-96+ Fuel (Two Recirculation Loop Operation) 9 Table 2.1-4: APLHGR Data for SVEA-96+ Fuel (Single Recirculation Loop Operation)9 Table 2.2-1: Cycle 13 MCPR Operating limits: Cycle Exposure < 8693 MWd/MYU_ 13 Table 2.2-2: Cycle 13 MCPR Operating limits: Cycle Exposure > 8693 MWd/MYU_ 14 Table 2.2-3: Kf Multiplier Data 19 Table 2.3-1: LHGR Limit for GE14 (Two Recirculation Loop Operation) 21 Table 2.3-2: LHGR Limit for GE14 (Single Recirculation Loop Operation) 21 Table 2.3-3: LHGR Limit for SVEA-96+ (Two Recirculation Loop Operation) 22 Table 2.3-4: LHGR Limit for SVEA-96+ (Single Recirculation Loop Operation) 22 Page 3 of 28

NFS-0243 Revision 1 List of Figures Figures Description Page Figure 2.1 - 1: APLHGR Limit for Fuel Bundle GE14 10 Figure 2.1-2: APLHGR Limit for Fuel Bundle SVEA-96+

11 Figure 2.2-1: Rated Power MCPR Limit: GE14, Cycle Exposure < 8693 MWD/MTU 15 Figure 2.2-2: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure < 8693 MWD/MTU _ 16 Figure 2.2-3: Rated Power MCPR Limit: GE14, Cycle Exposure > 8693 MWD/MTU 17 Figure 2.2-4: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure > 8693 MWD/MTU 18 Figure 2.2-5 KfMultiplier Curve 19 Figure 2.3-1: LHGRLimit for GE14 23 Figure 2.3-2: LHGR Limit for SVEA-96+

24 Page 4 of 28

NFS-0243 Revision 1

1.0 INTRODUCTION

The purpose of this report is to provide the Core Operating Limits for Hope Creek Generation Station Unit I Cycle 13/ Reload 12 operation. In addition, this report will provide information on Oscillation Power Range Monitor (OPRM) setpoint, single recirculation loop operation, average scram speed and determination of the Core Maximum Fraction of Limiting Power Density. Finally, this report also provides a reference to the most recent revision of the implemented approved methodology. The limits presented here correspond to the core thermal limits for Average Planar Linear Heat Generation Rate (APLHGR), Minimum Critical Power Ratio (MCPR), MCPR Flow Adjustment Factor (Kr) and Linear Heat Generation Rate (LHGR).

These operating limit values have been determined using NRC approved methods contained in GESTAR-Il [1], NEDE-2401 1-P-A (Revision 14) and are established such that all applicable fuel thermal-mechanical, core thermal-hydraulic, ECCS, and nuclear limits such as shutdown margin, and transient and accident analysis limits are met.

Hope Creek Technical Specifications Section 3.2 references this report as the source for certain LIMITING CONDITIONS FOR OPERATION. These are included in Section 2 of this document. Hope Creek Technical Specification 6.9.1.9 also requires that this report, including any mid cycle revisions, shall be provided, upon issuance, to the NRC.

In addition, the operating limit LCO values in section 2.2 MINIMUM CRITICAL POWER RATIO include a conservative penalty to account for the potential effects of condition being evaluated or pending resolution through the corrective action program. The conservative penalty is associated with a non-conforming condition identified in the critical power correlation for GE14 fuel. This non-conforming condition is documented in corrective action order number 70047609.

This document is specific to Hope Creek Generating Station Unit 1 Cycle 13 / Reload 12 and shall not be applicable to any other core or cycle design. The thermal limits contained in this report are applicable whether the Crossflowm correction factor is applied or not applied.

This report is applicable for Cycle 13 operation from the date of issuance through the end of effective full power capability or a cycle exposure of 11938 MWd/M7U (10830 MWd/IST),

whichever occurs first [2]. End of effective full power capability is reached when 100%

rated power can no longer be maintained by increasing core flow (up to 105% of rated core flow), at rated feedwater temperatures, in the all-rods-out configuration.

Page 5 of 28

NFS-0243 Revision 1 l 2.0 TECHNICAL SPECIFICATIONS THAT REFERENCE THE COLR The TECHNICAL SPECIFICATIONS THAT REFERENCE THE COLR presented in this section are referenced by the Hope Creek Technical Specifications.

Tech. Spec.

Title 2.1 Safety Limit Bases 3/4.2.1 Average Planar Linear Generation Rate 3/4.2.3 Minimum Critical Power Ratio 3/4.2.4 Linear Heat Generation Rate 3/4.3.11 Oscillation Power Range Monitor 3/4.4.1 Recirculation System Recirculation Loops 3/4.2.1 Bases Average Planar Linear Heat Generation Rate 6.9.1.9 Administrative Controls, Core Operating Limits Report Page 6 of 28

NFS-0243 Revision 1 2.1 AVERAGE PLANAR LINEAR HEAT GENERATION RATE LIMITING CONDITION FOR OPERATION:

All AVERAGE PLANAR LINEAR HEAT GENERATION RATES (APLHGRs) shall be less than or equal to the limits specified in Table 2.1-1 and Table 2.1-3.

When the Technical Specification Section 3/4.4.1 ACTION statement a.l.d is entered from that section's LCO, reduce the APLHGR limits to the values specified in Tables 2.1-2 and 2.1-4.

When hand calculations are required, all APLHGRs for each type of fuel as a function of AVERAGE EXPOSURE shall not exceed the limits specified in Figures 2.1-1 and 2.1-2.

Page 7 of 28

NFS-0243 Revision 1 I Tablc 2.1-1: APLHGR Data for GE14 Fuel (Two Recirculation Loop Operation)

Bundle Types: GEl 4-P 1 OCNAB402-4G6.0/1 6G4.0-1 OOT-1 50-T6-2757 GE1 4-P1 OCNAB402-5G6.0/1 4G4.0-1 00T-1 50-T6-2758 Average Planar Exposure APLHGR Limit MWD/STU MWD/MTU Kw/ft 0.00 0.00 12.82 19130 21090 12.82 57610 63500 8.00 63500 70000 5.00 Table 2.1-2: APLHGR Data for GE14 Fuel (Single Recirculation Loop Operation)

Bundle Types: GE14-P1 OCNAB402-4G6.0/1 6G4.0-1 0OT-150-T6-2757 GEI 4-PI OCNAB402-5G6.0/1 4G4.0-1 00T-1 50-T6-2758 Average Planar Exposure APLHGR Limit MWD/STU MWD/MTU Kw/ft 0.00 0.00 10.25 19130 21090 10.25 57610 63500 6.40 63500 70000 4.00 Page 8 of 28

NFS-0243 Revision I I Table 2.1-3: APLHGR Data for SVE A-96+ Fuel (Two Recirculation Loop Operation)

Bundle Types: SVEA96-P I OCASB326-1 I GZ-568U-4WR-1 50-T6-2654 SVEA96-P1OCASB326-11 G4.5-568U-4WR-150-T6-2655 SVEA96-P IOCASB360-12GZ-568U-4WR-150-T6-2656 SVEA96-PI OCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-P1 OCASB361 -14GZ-568U4WR-150-T6-2658 SVEA96-P 1 OCASB360-12G5.5/2G2.5-568U-4WR-150-T6-2659 Average Planar Exposure APLHGR Limit M'WD/STU MW\\RD/MTU IKw/ft 0.00 0.00 12.85 3340 3680 12.85 14510 16000 10.97 58970 65000 7.24 Table 2.1-4: APLHGR Data for SVEA-96+ Fuel (Single Recirculation Loop Operation)

Bundle Types: SVEA96-P 1 OCASB326-11 GZ-568U-4WR-150-T6-2654 SVEA96-P1 OCASB326-1 1 G4.5-568U-4WR-150-T6-2655 SVEA96-PlOCASB360-12GZ-568U-4WR-150-T6-2656 SVEA96-PlOCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-P1 OCASB361 -14GZ-568U-4WR-150-T6-2658 SVEA96-P1 OCASB360-12G5.5/2G2.5-568U-4WR-150-T6-2659 Average Planar Exposure APLHGR Limit MVVD/STU MWD/MTU Kw/ft 0.00 0.00 10.28 3340 3680 10.28 14510 16000 8.77 58970 65000 5.79 Page 9 of 28

NFS-0243 Revision I I 14.00 12.00 cat 600 4.00 0

4.00 aoo0 0

10000 30000 40000 Awm~ugEqmrn6xpe (adz^

)

  • uoo Figure 2.1-1
    APLHGR Limit for GE14 Fuel Page 10 of 28

NFS-0243 Revision 1 l 0

20000 30000 40000 ANwFlmmrED nWDMM 70000 Figure 2.1-2: APLHGR Limit for SVEA-96+ Fuel Page 11 of 28

NFS-0243 Revision I 2.2 MINIMUM CRITICAL POWER RATIO LIMITING CONDITION FOR OPERATION The MINIMUM CRITICAL POWER RATIO (MCPR) shall be equal to or greater than the MCPR limit as computed from the following steps:

1. Determine T as defined in Appendix A.
2. Linearly interpolate a MCPR value as a function of T from the MCPR value at X =

0 and the MCPR value at T = I as specified in Table 2.2-1 and Table 2.2-2. The obtained value shall be checked with the value as shown in Figures 2.2-1 to 2.2-4.

A conservative penalty has been added to the MCPR Operating Limit values for GE14 fuel in Table 2.2-1 and Table 2.2-2 (also reflected in Figure 2.2-1 and Figure 2.2-3) to account for a non-conforming condition identified in the critical power correlation for GE14 fuel as documented in corrective action order number 70047609.

3. When in single loop operation, add 0.02 to the MCPR value obtained from Step 2.
4. For core flow correction, first obtain Kf value by linearly interpolating from Table 2.2-3 and check the result with the curve shown in Figure 2.2-5. Multiply the MCPR value obtained from Step 2 (or Step 3 as required) by the Kf value.

Note that the MCPR limit is a function of core average scram speed (X), cycle exposure, EOC-RPT operability, reactor coolant recirculation loop operation condition and main turbine bypass operability.

EOC-RPT system operability is defined by Hope Creek Technical Specification 3.3.4.2.

Reactor coolant recirculation. loop operation condition is defined by Hope Creek Technical Specification 3.4.1.1.

Main Turbine Bypass operability is defined by Hope Creek Technical Specification 3.7.7.

Page 12 of 28

NES-0243 Revision 1 l Table 2.2-1: Cycle 13 MCPR Operating limits:

Cycle Exposure < 8693 MWd/MTU Main Turbine Bypass Operable Cycle Exposure

  • 8693 MWd/MTU (7886 MWd/STU)

Conditions Limit GE14(1"'

SVEA-96+(2 )

Option A (T = 1)

Rated Power 1.60 1.47 EOC-RPT Operable Option B (T = 0)

Rated Power 1.47 1.36 EOC-RPT Operable Option A (T = 1)

Rated Power 1.62 1.48 EOC-RPT Inoperable Option B (r = 0)

Rated Power 1.50 1.37 EOC-RPT Inoperable

1. GE14 fuel design:

GE14-P lOCNAB402-4G6.0/16G4.0-1OOT-150-T6-2757 GE14-PIOCNAB402-5G6.0/14G4.0-lOOT-150-T6-2758

2. SVEA-96+ fuel design:

SVEA96-PIOCASB326-I IGZ-568U-4WR-150-T6-2654 SVEA96-P 1 OCASB326-I G4.5-568U-4WR-150-T6-2655 SVEA96-P1 OCASB360-12GZ-568U-4WR-150-T6-2656 SVEA96-P1OCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-PlOCASB361-14GZ-568U-4WR-150-T6-2658 SVEA96-PlOCASB360-12G5.5/2G2.5-568U-4WR-150-T6-2659

3. As stated in section 2.2, a conservative MCPR penalty has been applied to the value for GE14 fuel to account for a non-conforming condition identified in the critical power correlation for GE14 fuel, as documented in corrective action order number 70047609.

Page 13 of 28

NFS-0243 Revision I I Table 2.2-2: Cycle 13 MCPR Operating limits:

Cycle Exposure > 8693 M d'/MTU Main Turbine Bypass Operable Creel Thrnnviirp> R6Q'A Af'UAMTIrTJ oRRh Af' Wf/IT77)

W.> -.-

a-.

avo --

v A

v -

,,,..,s v s

Conditions Limit GE14(l" 3

SVEA-96+(2 )

Option A (T = 1)

Rated Power 1.72 1.60 EOC-RPT Operable Option B (T =0)

Rated Power 1.53 1.43 EOC-RPT Operable Option A ('r = 1)

Rated Power 1.75 1.60 EOC-RPT Inoperable Option B (T =0)

Rated Power 1.56 1.43 EOC-RPT Inoperable

1. GE14 fuel design:

GE14-P IOCNAB402-4G6.0/16G4.0-1 OOT-150-T6-2757 GE14-P 1 OCNAB402-5G6.0/14G4.0-1 OOT-150-T6-2758

2. SVEA-96+ fuel design:

SVEA96-PIOCASB326-1 lGZ-568U-4WR-150-T6-2654 SVEA96-PI OCASB326-1 I G4.5-568U-4WR-150-T6-2655 SVEA96-P IOCASB360-12GZ-568UV4WR-150-T6-2656 SVEA96-P 1 OCASB360-12G5.0-568U-4WR-150-T6-2657 SVEA96-PI OCASB361 -14GZ-568U-4WR-150-T6-2658 SVEA96-P I OCASB360-12G5.5/2G2.5-568U4WR-150-T6-2659

3.

As stated in section 2.2, a conservative MCPR penalty has been applied to the value for GEI4 to

- account for a non-conforming condition identified in the critical power correlation for GE14 fuel,.

as documented in corrective action order number 70047609.

Page 14 of 28

NFS-0243 Revision 1 I 1.80 1.75

.=

1.70 E

.= 1.65 C'4 c-o 1.60 U

1.55 1.50 1.45 4-0.00 0.10 0.20 0.30 0.40 0.50 0.60 0.70 0.80 0.90 1.00 Tau (Scram Speed)

Figure 2.2-1: Rated Power MCPR Limit: GE14, Cycle Exposure s 8693 MWD/MTU Page 15 of 28

NFS-0243 Revision I I 1.65 1.60 1.55 0.4

.E-1.50 1.

r-o 1.45 U

1.40 1.35 1.30

_I I

i I

Main Turbine Bypass Operable Two Loop Operation Fuel Type: SVTEA-96+

Exposure <= 8693 MWID/MTU (7886 MWD/STU)

[EOC-RPT Inoperable -

EOC-RPT Operable 0.00 0.10 0.20 030 0.40 0.50 0.60 0.70 0.80 0.90 1.00 Tau (Scram Speed)

Figure 2.2-2: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure

  • 8693 MWD/MTU Page 16 of 28

NFS-0243 Revision I l 1.80 1.75 1.70 tz

.E 1.65 o 1.60 Q

1.55 1.50 1.45 0.00 0.10 0.20 0.30 0.40 0.50 0.60 0.70 0.80 0.90 1.00 Tau (Scram Speed)

Figure 2.2-3: Rated Power MCPR Limit: GE14, Cycle Exposure > 8693 MWD/MTU Page 17 of 28

NFS-0243 Revision 1 l 1.65 1.60 1.55

._ 1.50 o 1.45 U

1.40 1.35 II iI Main Turbine Bypass Operable Two Loop Operation i

EO rT Inoperable Fuel Type: SVEA-96+

Exposure > 8693 MAID/JMTU (7886 MWD/STUD)

=__

Tp I

I-EO-RPT Operable

. _ I I I_==

130 0.00 0.10 0.20 0.30 0.40 0.50 0.60 0.70 0.80 0.90 1.00 Tau (Scram Speed)

Note The same rated power MCPR operating limit is applied to both EOC-RPT Operable and EOC-RPT Inoperable for SVEA-96+ under the condition of Cycle Exposure > 8693 MWD/MTU, Main Turbine Bypass Operable and Two Loop Operation.

Figure 2.24: Rated Power MCPR Limit: SVEA-96+, Cycle Exposure > 8693 MWDJMTU Page 18 of 28

NFS-0243 Revision 1 l Table 2.2-3: Kr Multiplier Data Initial Flow Kr

(% Rated Flow)

Multiplier 25.00 1.2532 82.404 1.0000 105.00 1.0000 1.30 1.30125 19o FlowLimiters 1.25 1.15 1.10 E 1.05 1.00 0.95

-E (2.404,1.0000) 0.901 0.85 0.80

.20.00 40.00 60.00 80.00 100.00 120.00 Core Flow (% Rated)

Figure 2.2-5 Kr Multiplier Curve Page 19 of 28

NFS-0243 Revision 1 I 2.3 LINEAR HEAT GENERATION RATE LIMITING CONDITION FOR OPERATION The LINEAR HEAT GENERATION RATE (LHGR) shall not exceed the limit specified in Table 2.3-1 and Table 2.3-3.

When the Technical Specification Section 3/4.4.1 ACTION statement a.l.e is entered from that section's LCO, reduce the LHGR limits to a value specified in Table 2.3-2 and Table 2.3-4.

When hand calculations are required, all LHGRs for each type of fuel as a function of Peak Pellet Exposure shall not exceed the limits specified in Figure 2.3-1 and Figure 2.3-2.

The CORE MAXIMUM FRACTION OF LIMITING POWER DENSITY as implemented in Technical Specification Section 3/4.2.2 shall use a FRACTION OF LIMITING POWER DENSITY that is based on a specified LHGR equal to the exposure dependent LHGR in Table 2.3-1 through Table 2.3-4 for both GE14 and SVEA-96+ fuel assemblies.

Page 20 of 28

NFS-0243 Revision I I Table 2.3-1: LHGR Limit for GE14 (Two Recirculation Loop Operation)

Peak Pellet Exposure LHIGR Limit MWD/lMTU (kW / ft)

(MWD/STU)

GE14 0

(0) 13.4 16000 (14510) 13.4 63500 (57610) 8.0 70000 (63500) 5.0 Table 2.3-2: LHGR Limit for GE14 (Single Recirculation Loop Operation)

Peak Pellet Exposure LHGR Limit MWD/MTU (kW / ft)

(MWD/STU)

GE14 0

(0) 10.7 16000 (14510) 10.7 63500 (57610) 6.4 70000 (63500) 4.0 Page 21 of 28

NFS-0243 Revision 1 I Table 2.3-3: LHGR Limit for SVEA-96+ (Two Recirculation Loop Operation)

Peak Pellet Exposure LHGR Limit MWD/MTU (ICM7 / ft)

(MWD/STU)

SVEA-96+

0 (0) 13.4 16000 (14510) 10.9 65000 (58970) 7.2 Table 2.3-4: LHGR Limit for SVEA-96+ (Single Recirculation Loop Operation)*

Peak Pellet Exposure LHGR Limit MWDJ/ITU (kW / ft)

(MWD/STU)

SAEA-96+

0 (0) 10.7 16000 (14510) 8.7 65000 (58970) 5.7 Page 22 of 28

NFS-0243 Revision 1 l c:

16.00 14.00 TtdeGpe4 l l l l I I I II II IIz4zf

-- lIIIIX;L-

- - - - - - - - -IT 10.00. Gw _

-*-Tw Fo ircalbcn LapI________;-

4.00 _ _ _ _

SrCdelbr~abcnW

____a___p__

zoo _

1111__

am _

Z IOO 0

10000 20000 30000 40000 PcikPc1dethpuW DMft) 70 Figure 2.3-1: LHGR Limit for GE14 Page 23 of 28

NFS-0243 Revision I I 16.00 14.00 12.00 600 400 2.00 0.00 0

10000 20000 30000 40000 ftAkPeid qtEuow(MYMM 7000 Figure 2.3-2: LHGR Limit for SVEA-96+

Page 24 of 28

NFS-0243 Revision 1 l 2.4 OPRM TRIP SETPOINT LIMITING CONDITION FOR OPERATION Four channels of the OPRM instrumentation shall be OPERABLE. Each OPRM channel period based algorithm amplitude trip setpoint (Sp) shall be less than or equal to the Allowable Value of 1.07.

Page 25 of 28

NFS-0243 Revision 1

3.0 REFERENCES

1.

Nuclear Fuel Section Design Input File HCG.5-0002,"General Electric Standard Application for Reactor Fuel," General Electric Company, NEDE-2401 1 -P-A-14, and the U.S. Supplement NEDE-2401 I-P-A-14-US.

2.

Nuclear Fuel Section Vendor Technical Document, NFVD-GE-2004-009-01, "Supplemental Reload Licensing Report for Hope Creek Unit 1 Reload 12 Cycle 13" GE Nuclear Energy 0000-0031-0596-SRLR, Rev. 1, December 2004.

3.

Nuclear Fuel Section Design Input File HCG.5-0020, "Fuel Bundle Information Report for Hope Creek Unit 1 Reload 12 Cycle 13," 0000-0031-0596-FBIR, December 2004.

4.

Nuclear Fuel Section Design Input File HCG.5-0024, "Cycle 13 Attachment to NC.NF-AP.ZZ-6004(Q) OPRM Setpoint," December 2004.

Page 26 of 28

NFS-0243 Revision 1 I Appendix A: Method of Core Average Scram Speed Calculation Page 27 of 28

NFS-0243 Revision 1 l Method of Core Average Scram Speed, V, Calculation T is defined as T=(Tave TB )

TA -TB where:

TA =0.86 seconds, control rod average scram insertion time limit to notch 39 per Specification 3.1.3.3 TB 0.6 72+1.65 n l (0.016)

Dil nn ZNITI ave n

ZN, n = number of surveillance tests performed to date in cycle, N, = number of active control rods measured in the i h surveillance test, TV = average scram time to notch 39 of all rods measured in the ih surveillance test, and N. = total number of active rods measured in Specification 4.1.3.2.a.

If Tave < TB, set r = 0 to apply Option B OLMCPR.

T shall be 1.0 (-r = 1.0) prior to performance of the initial scram time measurements for the cycle in accordance with Specification 4.1.3.2.

Page 28 of 28