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| document type = Report, Technical | | document type = Report, Technical | ||
| page count = 66 | | page count = 66 | ||
| project = EPID:L-2018-LLA-0292 | | project = CAC:001028, EPID:L-2018-LLA-0292 | ||
| stage = Other | | stage = Other | ||
}} | }} | ||
=Text= | =Text= | ||
{{#Wiki_filter:PROPOSED CERTIFICATE OF COMPLIANCE NO. 1014 APPENDIX B-100U APPROVED CONTENTS AND DESIGN FEATURES FOR THE HI-STORM 100 CASK SYSTEM (MODEL NO. 100U ADDITION) | {{#Wiki_filter:PROPOSED CERTIFICATE OF COMPLIANCE NO. 1014 APPENDIX B-100U APPROVED CONTENTS AND DESIGN FEATURES FOR THE HI-STORM 100 CASK SYSTEM (MODEL NO. 100U ADDITION) | ||
TABLE OF CONTENTS 1.0 DEFINITIONS ........................................................................................................ 1-1 2.0 APPROVED CONTENTS ...................................................................................... 2-1 2.1 | Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 1-1 TABLE OF CONTENTS 1.0 DEFINITIONS........................................................................................................ 1-1 2.0 APPROVED CONTENTS...................................................................................... 2-1 2.1 Fuel Specifications and Loading Conditions...................................................... 2-1 2.2 Violations........................................................................................................... 2-2 2.3 Not Used........................................................................................................... 2-2 2.4 Decay Heat, Burnup, and Cooling Time Limits for ZR-Clad Fuel..................... 2-25 3.0 DESIGN FEATURES............................................................................................. 3-1 3.1 Site.................................................................................................................... 3-1 3.2 Design Features Important for Criticality Control............................................... 3-1 3.3 Codes and Standards........................................................................................ 3-2 3.4 Site Specific Parameters and Analyses............................................................. 3-7 3.5 Not Used......................................................................................................... 3-10 3.6 Forced Helium Dehydration System................................................................ 3-11 3.7 Deleted............................................................................................................ 3-13 3.8 Combustible Gas Monitoring During MPC Lid Welding and Cutting................ 3-14 3.9 Corrosion Mitigation Measures........................................................................ 3-15 3.10 Periodic Corrosion Inspections for Underground Systems.............................. 3-16 Table 3-1 Not Used................................................................................................. 3-4 Table 3-2 Applicable Code Paragraphs for Underground VVMs............................. 3-5 Table 3-3 Load Combinations for the Top Surface Pad, VVM Interface Pad, Support Foundation Pad, and the Retaining Wall Per ACI-318 (2005)................. 3-8 Table 3-4 Values of Principal Design Parameters for the Underground ISFSI....................................................................................................... 3-8 | ||
Definitions 1.0 | Definitions 1.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 1-1 1.0 Definitions Refer to Appendix A for Definitions. | ||
Certificate of Compliance No. 1014 | |||
Approved Contents 2.0 2.0 | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-1 2.0 APPROVED CONTENTS 2.1 Fuel Specifications and Loading Conditions 2.1.1 Fuel To Be Stored In The HI-STORM SFSC System Model 100U | ||
: a. INTACT FUEL ASSEMBLIES, and NON-FUEL HARDWARE meeting the limits specified in Table 2.1-1 and other referenced tables may be stored. | : a. | ||
: b. For MPCs partially loaded with stainless steel clad fuel assemblies, all remaining fuel assemblies in the MPC shall meet the decay heat generation limit for the stainless steel clad fuel assemblies. | INTACT FUEL ASSEMBLIES, and NON-FUEL HARDWARE meeting the limits specified in Table 2.1-1 and other referenced tables may be stored. | ||
: c. For MPCs partially loaded with array/class 6x6A, 6x6B, 6x6C, 7x7A, or 8x8A fuel assemblies, all remaining ZR clad INTACT FUEL ASSEMBLIES in the MPC shall meet the decay heat generation limits for the 6x6A, 6x6B, 6x6C, 7x7A and 8x8A fuel assemblies. | : b. | ||
: d. All BWR fuel assemblies may be stored with or without ZR channels with the exception of array/class 10x10D and 10x10E fuel assemblies, which may be stored with or without ZR or stainless steel channels. | For MPCs partially loaded with stainless steel clad fuel assemblies, all remaining fuel assemblies in the MPC shall meet the decay heat generation limit for the stainless steel clad fuel assemblies. | ||
: c. | |||
For MPCs partially loaded with array/class 6x6A, 6x6B, 6x6C, 7x7A, or 8x8A fuel assemblies, all remaining ZR clad INTACT FUEL ASSEMBLIES in the MPC shall meet the decay heat generation limits for the 6x6A, 6x6B, 6x6C, 7x7A and 8x8A fuel assemblies. | |||
: d. | |||
All BWR fuel assemblies may be stored with or without ZR channels with the exception of array/class 10x10D and 10x10E fuel assemblies, which may be stored with or without ZR or stainless steel channels. | |||
2.1.2 Uniform Fuel Loading Any authorized fuel assembly may be stored in any fuel storage location, subject to other restrictions related to NON-FUEL HARDWARE specified in the CoC. | 2.1.2 Uniform Fuel Loading Any authorized fuel assembly may be stored in any fuel storage location, subject to other restrictions related to NON-FUEL HARDWARE specified in the CoC. | ||
(continued) | (continued) | ||
Approved Contents 2.0 2.0 Approved Contents 2.1 Fuel Specifications and Loading Conditions (contd) 2.1.3 Regionalized Fuel Loading Users may choose to store fuel using regionalized loading in lieu of uniform loading to allow higher heat emitting fuel assemblies to be stored than would otherwise be able to be stored using uniform loading. | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-2 2.0 Approved Contents 2.1 Fuel Specifications and Loading Conditions (contd) 2.1.3 Regionalized Fuel Loading Users may choose to store fuel using regionalized loading in lieu of uniform loading to allow higher heat emitting fuel assemblies to be stored than would otherwise be able to be stored using uniform loading. | ||
Regionalized loading is limited to those fuel assemblies with ZR cladding. | Regionalized loading is limited to those fuel assemblies with ZR cladding. | ||
Figures 2.1-1 through 2.1-4 define the regions for the MPC-24, MPC-24E, MPC-32, MPC-68 models, respectively1. Fuel assembly burnup, decay heat, and cooling time limits for regionalized loading are specified in Section 2.4.2. Fuel assemblies used in regionalized loading shall meet all other applicable limits specified in Tables 2.1-1 through 2.1-3. | Figures 2.1-1 through 2.1-4 define the regions for the MPC-24, MPC-24E, MPC-32, MPC-68 models, respectively1. Fuel assembly burnup, decay heat, and cooling time limits for regionalized loading are specified in Section 2.4.2. Fuel assemblies used in regionalized loading shall meet all other applicable limits specified in Tables 2.1-1 through 2.1-3. | ||
| Line 42: | Line 44: | ||
2.2.2 Within 24 hours, notify the NRC Operations Center. | 2.2.2 Within 24 hours, notify the NRC Operations Center. | ||
2.2.3 Within 30 days, submit a special report which describes the cause of the violation, and actions taken to restore compliance and prevent recurrence. | 2.2.3 Within 30 days, submit a special report which describes the cause of the violation, and actions taken to restore compliance and prevent recurrence. | ||
2.3 | 2.3 Not Used 1 | ||
These figures are only intended to distinguish the fuel loading regions. Other details of the basket design are illustrative and may not reflect the actual basket design details. | These figures are only intended to distinguish the fuel loading regions. Other details of the basket design are illustrative and may not reflect the actual basket design details. | ||
The design drawings should be consulted for basket design details. | The design drawings should be consulted for basket design details. | ||
Approved Contents 2.0 | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-3 Figure 2.1-1 Fuel Loading Regions - MPC-24 | ||
Approved Contents 2.0 | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-4 Figure 2.1-2 Fuel Loading Regions - MPC-24E | ||
Approved Contents 2.0 | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-5 Figure 2.1-3 Fuel Loading Regions - MPC-32 | ||
Approved Contents 2.0 | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-6 Figure 2.1-4 Fuel Loading Regions - MPC-68 | ||
Approved Contents 2.0 Table 2.1-1 (page 1 of 8) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-7 Table 2.1-1 (page 1 of 8) | ||
Fuel Assembly Limits I. MPC MODEL: MPC-24 A. Allowable Contents | Fuel Assembly Limits I. MPC MODEL: MPC-24 A. Allowable Contents | ||
: 1. Uranium oxide, PWR INTACT FUEL ASSEMBLIES listed in Table 2.1-2, with or without NON-FUEL HARDWARE and meeting the following specifications (Note 1): | : 1. Uranium oxide, PWR INTACT FUEL ASSEMBLIES listed in Table 2.1-2, with or without NON-FUEL HARDWARE and meeting the following specifications (Note 1): | ||
: a. Cladding Type: | : a. Cladding Type: | ||
: b. Initial Enrichment: | ZR or Stainless Steel (SS) as specified in Table 2.1-2 for the applicable fuel assembly array/class. | ||
: b. Initial Enrichment: | |||
As specified in Table 2.1-2 for the applicable fuel assembly array/class. | |||
: c. Post-irradiation Cooling Time and Average Burnup Per Assembly: | : c. Post-irradiation Cooling Time and Average Burnup Per Assembly: | ||
: i. Array/Classes | : i. Array/Classes 14x14D,14x14E, and 15x15G Cooling time 8 years and an average burnup 40,000 MWD/MTU. | ||
ii. All Other Array/Classes Cooling time and average burnup as specified in Section 2.4. | |||
ii. NON-FUEL HARDWARE | ii. NON-FUEL HARDWARE As specified in Table 2.1-4. | ||
Approved Contents 2.0 Table 2.1-1 (page 2 of 8) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-8 Table 2.1-1 (page 2 of 8) | ||
Fuel Assembly Limits I. MPC MODEL: MPC-24 (continued) | Fuel Assembly Limits I. MPC MODEL: MPC-24 (continued) | ||
A. Allowable Contents (continued) | A. Allowable Contents (continued) | ||
: d. Decay Heat Per Fuel Storage Location: | : d. Decay Heat Per Fuel Storage Location: | ||
: i. Array/Classes 14x14D, | : i. Array/Classes 14x14D, 14x14E, and 15x15G 710 Watts ii. All Other Array/Classes As specified in Section 2.4. | ||
: e. Fuel Assembly Length: | : e. Fuel Assembly Length: | ||
: f. Fuel Assembly Width: | 176.8 inches (nominal design) | ||
: g. Fuel Assembly Weight: | : f. Fuel Assembly Width: | ||
8.54 inches (nominal design) | |||
: g. Fuel Assembly Weight: | |||
1720 lbs (including NON-FUEL HARDWARE) for assemblies that do not require fuel spacers, otherwise 1680 lbs (including NON-FUEL HARDWARE) | |||
B. Quantity per MPC: Up to 24 fuel assemblies. | B. Quantity per MPC: Up to 24 fuel assemblies. | ||
C. One NSA is authorized for loading into the MPC-24. | C. One NSA is authorized for loading into the MPC-24. | ||
Note 1: | Note 1: | ||
Fuel assemblies containing BPRAs, TPDs, WABAs, water displacement guide tube plugs, orifice rod assemblies, or vibration suppressor inserts, with or without ITTRs, may be stored in any fuel storage location. Fuel assemblies containing APSRs or NSAs may only be loaded in fuel storage locations 9, 10, 15, and/or 16. Fuel assemblies containing CRAs, RCCAs, CEAs may only be stored in fuel storage locations 4, 5, 8 - 11, 14 - 17, 20 and/or 21 (see Figure 2.1-1). These requirements are in addition to any other requirements specified for uniform or regionalized fuel loading. | |||
Approved Contents 2.0 Table 2.1-1 (page 3 of 8) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-9 Table 2.1-1 (page 3 of 8) | ||
Fuel Assembly Limits II. MPC MODEL: MPC-68 A. Allowable Contents | Fuel Assembly Limits II. MPC MODEL: MPC-68 A. Allowable Contents | ||
: 1. Uranium oxide or MOX BWR INTACT FUEL ASSEMBLIES listed in Table 2.1-3, with or without channels and meeting the following specifications: | : 1. Uranium oxide or MOX BWR INTACT FUEL ASSEMBLIES listed in Table 2.1-3, with or without channels and meeting the following specifications: | ||
: a. Cladding Type: | : a. Cladding Type: | ||
: b. Maximum PLANAR-AVERAGE | ZR or Stainless Steel (SS) as specified in Table 2.1-3 for the applicable fuel assembly array/class | ||
: c. Initial Maximum Rod Enrichment | : b. Maximum PLANAR-AVERAGE INITIAL ENRICHMENT: | ||
As specified in Table 2.1-3 for the applicable fuel assembly array/class. | |||
: c. Initial Maximum Rod Enrichment As specified in Table 2.1-3 for the applicable fuel assembly array/class. | |||
: d. Post-irradiation Cooling Time and Average Burnup Per Assembly | : d. Post-irradiation Cooling Time and Average Burnup Per Assembly | ||
: i. Array/Classes 6x6A, 6x6B, | : i. Array/Classes 6x6A, 6x6B, 6x6C, 7x7A, and 8x8A Cooling time 18 years and an average burnup 30,000 MWD/MTU (or MWD/MTIHM). | ||
ii. Array/Class 8x8F | ii. Array/Class 8x8F Cooling time 10 years and an average burnup 27,500 MWD/MTU. | ||
iii. Array/Classes 10x10D | iii. Array/Classes 10x10D and 10x10E Cooling time 10 years and an average burnup 22,500 MWD/MTU. | ||
iv. All Other Array/Classes | iv. All Other Array/Classes As specified in Section 2.4. | ||
Approved Contents 2.0 Table 2.1-1 (page 4 of 8) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-10 Table 2.1-1 (page 4 of 8) | ||
Fuel Assembly Limits II. MPC MODEL: MPC-68 (continued) | Fuel Assembly Limits II. MPC MODEL: MPC-68 (continued) | ||
A. Allowable Contents (continued) | A. Allowable Contents (continued) | ||
: e. Decay Heat Per Assembly | : e. Decay Heat Per Assembly | ||
: i. Array/Classes 6x6A, 6X6B, | : i. Array/Classes 6x6A, 6X6B, 6x6C, 7x7A, and 8x8A 115 Watts ii. Array/Class 8x8F 183.5 Watts iii. Array/Classes 10x10D and 10x10E 95 Watts iv. All Other Array/Classes As specified in Section 2.4. | ||
: f. Fuel Assembly Length | : f. Fuel Assembly Length | ||
: i. Array/Class 6x6A, 6x6B, | : i. Array/Class 6x6A, 6x6B, 6x6C, 7x7A, or 8x8A 135.0 inches (nominal design) ii. All Other Array/Classes 176.5 inches (nominal design) | ||
: g. Fuel Assembly Width | : g. Fuel Assembly Width | ||
: i. Array/Class 6x6A, 6x6B, | : i. Array/Class 6x6A, 6x6B, 6x6C, 7x7A, or 8x8A 4.70 inches (nominal design) ii. All Other Array/Classes 5.85 inches (nominal design) | ||
: h. Fuel Assembly Weight | : h. Fuel Assembly Weight | ||
: i. Array/Class 6x6A, 6x6B, | : i. Array/Class 6x6A, 6x6B, 6x6C, 7x7A, or 8x8A 400 lbs, including channels ii. All Other Array/Classes 730 lbs, including channels B. Quantity per MPC: Up to 68 fuel assemblies. | ||
C. Dresden Unit 1 fuel assemblies with one Antimony-Beryllium neutron source are authorized for loading. The Antimony-Beryllium source material shall be in a water rod location. | C. Dresden Unit 1 fuel assemblies with one Antimony-Beryllium neutron source are authorized for loading. The Antimony-Beryllium source material shall be in a water rod location. | ||
D. Array/Class 10x10D and 10x10E fuel assemblies in stainless steel channels must be stored in fuel storage locations 19 - 22, 28 - 31, 38 -41, and/or 47 - 50 (see Figure 2.1-4). | D. Array/Class 10x10D and 10x10E fuel assemblies in stainless steel channels must be stored in fuel storage locations 19 - 22, 28 - 31, 38 -41, and/or 47 - 50 (see Figure 2.1-4). | ||
Approved Contents 2.0 Table 2.1-1 (page 5 of 8) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-11 Table 2.1-1 (page 5 of 8) | ||
Fuel Assembly Limits III. MPC MODEL: MPC-24E A. Allowable Contents | Fuel Assembly Limits III. MPC MODEL: MPC-24E A. Allowable Contents | ||
: 1. Uranium oxide, PWR INTACT FUEL ASSEMBLIES listed in Table 2.1-2, with or without NON-FUEL HARDWARE and meeting the following specifications (Note 1): | : 1. Uranium oxide, PWR INTACT FUEL ASSEMBLIES listed in Table 2.1-2, with or without NON-FUEL HARDWARE and meeting the following specifications (Note 1): | ||
: a. Cladding Type: | : a. Cladding Type: | ||
: b. Initial Enrichment: | ZR or Stainless Steel (SS) as specified in Table 2.1-2 for the applicable fuel assembly array/class | ||
: b. Initial Enrichment: | |||
As specified in Table 2.1-2 for the applicable fuel assembly array/class. | |||
: c. Post-irradiation Cooling Time and Average Burnup Per Assembly: | : c. Post-irradiation Cooling Time and Average Burnup Per Assembly: | ||
: i. Array/Classes 14x14D, | : i. Array/Classes 14x14D, 14x14E, and 15x15G Cooling time 8 years and an average burnup 40,000 MWD/MTU. | ||
ii. All Other Array/Classes | ii. All Other Array/Classes As specified in Section 2.4. | ||
iii. NON-FUEL HARDWARE | iii. NON-FUEL HARDWARE As specified in Table 2.1-4. | ||
Approved Contents 2.0 Table 2.1-1 (page 6 of 8) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-12 Table 2.1-1 (page 6 of 8) | ||
Fuel Assembly Limits III. MPC MODEL: MPC-24E (continued) | Fuel Assembly Limits III. MPC MODEL: MPC-24E (continued) | ||
A. Allowable Contents (continued) | A. Allowable Contents (continued) | ||
: d. Decay Heat Per Fuel Storage Location: | : d. Decay Heat Per Fuel Storage Location: | ||
: i. Array/Classes 14x14D, | : i. Array/Classes 14x14D, 14x14E, and 15x15G 710 Watts. | ||
ii. All other Array/Classes As specified in Section 2.4. | |||
: e. Fuel Assembly Length: | : e. Fuel Assembly Length: | ||
: f. Fuel Assembly Width: | 176.8 inches (nominal design) | ||
: g. Fuel Assembly Weight: | : f. Fuel Assembly Width: | ||
8.54 inches (nominal design) | |||
: g. Fuel Assembly Weight: | |||
1,720 lbs (including NON-FUEL HARDWARE) for assemblies that do not require fuel spacers, otherwise, 1,680 lbs (including NON-FUEL HARDWARE) | |||
B. Quantity per MPC: Up to 24 fuel assemblies. | B. Quantity per MPC: Up to 24 fuel assemblies. | ||
C. One NSA is permitted for loading. | C. One NSA is permitted for loading. | ||
Note 1: Fuel assemblies containing BPRAs, TPDs, WABAs, water displacement guide tube plugs, orifice rod assemblies, or vibration suppressor inserts, with or without ITTRs, may be stored in any fuel storage location. Fuel assemblies containing APSRs or NSAs may only be loaded in fuel storage locations 9, 10, 15, and/or 16 (see Figure 2.1-2). Fuel assemblies containing CRAs, RCCAs, or CEAs may only be stored in fuel storage locations 4, 5, 8 - 11, 14 - 17, 20 and/or 21 (see Figure 2.1-2). These requirements are in addition to any other requirements specified for uniform or regionalized fuel loading. | Note 1: Fuel assemblies containing BPRAs, TPDs, WABAs, water displacement guide tube plugs, orifice rod assemblies, or vibration suppressor inserts, with or without ITTRs, may be stored in any fuel storage location. Fuel assemblies containing APSRs or NSAs may only be loaded in fuel storage locations 9, 10, 15, and/or 16 (see Figure 2.1-2). Fuel assemblies containing CRAs, RCCAs, or CEAs may only be stored in fuel storage locations 4, 5, 8 - 11, 14 - 17, 20 and/or 21 (see Figure 2.1-2). These requirements are in addition to any other requirements specified for uniform or regionalized fuel loading. | ||
Approved Contents 2.0 Table 2.1-1 (page 7 of 8) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-13 Table 2.1-1 (page 7 of 8) | ||
Fuel Assembly Limits IV. MPC MODEL: MPC-32 A. Allowable Contents | Fuel Assembly Limits IV. MPC MODEL: MPC-32 A. Allowable Contents | ||
: 1. Uranium oxide, PWR INTACT FUEL ASSEMBLIES listed in Table 2.1-2, with or without NON-FUEL HARDWARE and meeting the following specifications (Note 1): | : 1. Uranium oxide, PWR INTACT FUEL ASSEMBLIES listed in Table 2.1-2, with or without NON-FUEL HARDWARE and meeting the following specifications (Note 1): | ||
: a. Cladding Type: | : a. Cladding Type: | ||
: b. Initial Enrichment: | ZR or Stainless Steel (SS) as specified in Table 2.1-2 for the applicable fuel assembly array/class | ||
: b. Initial Enrichment: | |||
As specified in Table 2.1-2 for the applicable fuel assembly array/class. | |||
: c. Post-irradiation Cooling Time and Average Burnup Per Assembly: | : c. Post-irradiation Cooling Time and Average Burnup Per Assembly: | ||
: i. Array/Classes 14x14D, | : i. Array/Classes 14x14D, 14x14E, and 15x15G Cooling time 9 years and an average burnup 30,000 MWD/MTU or cooling time 20 years and an average burnup 40,000 MWD/MTU. | ||
ii. All Other Array/Classes | ii. All Other Array/Classes As specified in Section 2.4. | ||
iii. NON-FUEL HARDWARE | iii. NON-FUEL HARDWARE As specified in Table 2.1-4. | ||
Approved Contents 2.0 Table 2.1-1 (page 8 of 8) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-14 Table 2.1-1 (page 8 of 8) | ||
Fuel Assembly Limits IV. MPC MODEL: MPC-32 (continued) | Fuel Assembly Limits IV. MPC MODEL: MPC-32 (continued) | ||
A. Allowable Contents (continued) | A. Allowable Contents (continued) | ||
: d. Decay Heat Per Fuel Storage Location: | : d. Decay Heat Per Fuel Storage Location: | ||
: i. Array/Classes 14x14D, | : i. Array/Classes 14x14D, 14x14E, and 15x15G 500 Watts. | ||
ii. All Other Array/Classes As specified in Section 2.4. | |||
: e. Fuel Assembly Length | : e. Fuel Assembly Length 176.8 inches (nominal design) | ||
: f. Fuel Assembly Width | : f. Fuel Assembly Width 8.54 inches (nominal design) | ||
: g. Fuel Assembly Weight | : g. Fuel Assembly Weight 1,720 lbs (including NON-FUEL HARDWARE) for assemblies that do not require fuel spacers, otherwise, 1,680 lbs (including NON-FUEL HARDWARE) | ||
B. Quantity per MPC: Up to 32 fuel assemblies. | B. Quantity per MPC: Up to 32 fuel assemblies. | ||
C. One NSA is permitted for loading. | C. One NSA is permitted for loading. | ||
Note 1: Fuel assemblies containing BPRAs, TPDs, WABAs, water displacement guide tube plugs, orifice rod assemblies, or vibration suppressor inserts, with or without ITTRs, may be stored in any fuel storage location. Fuel assemblies containing NSAs may only be loaded in fuel storage locations 13, 14, 19 and/or 20 (see Figure 2.1-3). Fuel assemblies containing CRAs, RCCAs, CEAs or APSRs may only be loaded in fuel storage locations 7, 8, 12-15, 18-21, 25 and/or 26 (see Figure 2.1-3). These requirements are in addition to any other requirements specified for uniform or regionalized fuel loading. | Note 1: Fuel assemblies containing BPRAs, TPDs, WABAs, water displacement guide tube plugs, orifice rod assemblies, or vibration suppressor inserts, with or without ITTRs, may be stored in any fuel storage location. Fuel assemblies containing NSAs may only be loaded in fuel storage locations 13, 14, 19 and/or 20 (see Figure 2.1-3). Fuel assemblies containing CRAs, RCCAs, CEAs or APSRs may only be loaded in fuel storage locations 7, 8, 12-15, 18-21, 25 and/or 26 (see Figure 2.1-3). These requirements are in addition to any other requirements specified for uniform or regionalized fuel loading. | ||
Approved Contents 2.0 Table 2.1-2 (page 1 of 5) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-15 Table 2.1-2 (page 1 of 5) | ||
PWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | PWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | ||
Fuel Assembly 14x14A | Fuel Assembly Array/Class 14x14A 14x14B 14x14C 14x14D 14x14E Clad Material ZR ZR ZR SS SS Design Initial U (kg/assy.) (Note 3) 365 412 438 400 206 Initial Enrichment (MPC-24 and 24E without soluble boron credit) (wt % | ||
Initial Enrichment (MPC-24 and 24E | 235U) 4.6 (24) 5.0 (24E) 4.6 (24) 5.0 (24E) 4.6 (24) 5.0 (24E) 4.0 (24) 5.0 (24E) 5.0 (24) 5.0 (24E) | ||
Initial Enrichment (MPC-24, 24E, or 32, with soluble boron credit - see Note 5) | |||
Initial Enrichment (MPC-24, 24E, or 32, with soluble 5.0 | (wt % 235U) 5.0 5.0 5.0 5.0 5.0 No. of Fuel Rod Locations 179 179 176 180 173 Fuel Rod Clad O.D. (in.) | ||
0.400 0.417 0.440 0.422 0.3415 Fuel Rod Clad I.D. | |||
No. of Fuel Rod 179 | (in.) | ||
0.3514 0.3734 0.3880 0.3890 0.3175 Fuel Pellet Dia. | |||
0.3514 | (in.)(Note 7) 0.3444 0.3659 0.3805 0.3835 0.3130 Fuel Rod Pitch (in.) | ||
Fuel Pellet Dia. | 0.556 0.556 0.580 0.556 Note 6 Active Fuel Length (in.) | ||
0.3444 | 150 150 150 144 102 No. of Guide and/or Instrument Tubes 17 17 5 (Note 4) 16 0 | ||
Fuel Rod Pitch (in.) | Guide/Instrument Tube Thickness (in.) | ||
No. of Guide and/or Instrument | 0.017 0.017 0.038 0.0145 N/A | ||
Approved Contents 2.0 Table 2.1-2 (page 2 of 5) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-16 Table 2.1-2 (page 2 of 5) | ||
PWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | PWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | ||
Fuel Assembly 15x15A | Fuel Assembly Array/Class 15x15A 15x15B 15x15C 15x15D 15x15E 15x15F Clad Material ZR ZR ZR ZR ZR ZR Design Initial U (kg/assy.) (Note 3) | ||
< 473 | |||
Initial Enrichment (MPC-24 and 24E | < 473 | ||
< 473 | |||
Initial Enrichment (MPC-24, 24E, or 32 with soluble | < 495 | ||
No. of Fuel Rod 204 | < 495 | ||
< 495 Initial Enrichment (MPC-24 and 24E without soluble boron credit) | |||
(wt % 235U) | |||
< 4.1 (24) | |||
< 4.5 (24E) | |||
< 4.1 (24) | |||
< 4.5 (24E) | |||
< 4.1 (24) | |||
< 4.5 (24E) | |||
< 4.1 (24) | |||
No. of Guide and/or Instrument | < 4.5 (24E) | ||
< 4.1 (24) | |||
< 4.5 (24E) | |||
< 4.1 (24) | |||
< 4.5 (24E) | |||
Initial Enrichment (MPC-24, 24E, or 32 with soluble boron credit - see Note 5)(wt % 235U) | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 No. of Fuel Rod Locations 204 204 204 208 208 208 Fuel Rod Clad O.D. (in.) | |||
> 0.418 | |||
> 0.420 | |||
> 0.417 | |||
> 0.430 | |||
> 0.428 | |||
> 0.428 Fuel Rod Clad I.D. | |||
(in.) | |||
< 0.3660 | |||
< 0.3736 | |||
< 0.3640 | |||
< 0.3800 | |||
< 0.3790 | |||
< 0.3820 Fuel Pellet Dia. | |||
(in.) (Note 7) | |||
< 0.3580 | |||
< 0.3671 | |||
< 0.3570 | |||
< 0.3735 | |||
< 0.3707 | |||
< 0.3742 Fuel Rod Pitch (in.) | |||
< 0.550 | |||
< 0.563 | |||
< 0.563 | |||
< 0.568 | |||
< 0.568 | |||
< 0.568 Active Fuel Length (in.) | |||
< 150 | |||
< 150 | |||
< 150 | |||
< 150 | |||
< 150 | |||
< 150 No. of Guide and/or Instrument Tubes 21 21 21 17 17 17 Guide/Instrument Tube Thickness (in.) | |||
> 0.0165 | |||
> 0.015 | |||
> 0.0165 | |||
> 0.0150 | |||
> 0.0140 | |||
> 0.0140 | |||
Approved Contents 2.0 Table 2.1-2 (page 3 of 5) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-17 Table 2.1-2 (page 3 of 5) | ||
PWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | PWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | ||
Fuel Assembly 15x15G | Fuel Assembly Array/ Class 15x15G 15x15H 16x16A 16x16B 16x16C Clad Material SS ZR ZR ZR ZR Design Initial U (kg/assy.)(Note 3) | ||
< 420 | |||
< 495 | |||
< 448 | |||
< 427 | |||
< 426 Initial Enrichment (MPC-24and 24E without soluble boron credit) | |||
Initial Enrichment (MPC-24, 24E, or 32 with soluble | (wt % 235U) | ||
No. of Fuel Rod 204 | < 4.0 (24) | ||
< 4.5 (24E) | |||
< 3.8 (24) | |||
< 4.2 (24E) | |||
< 4.6 (24) | |||
< 5.0 (24E) | |||
< 4.6 (24) | |||
< 5.0 (24E/24EF) | |||
< 4.6 (24) | |||
< 5.0 (24E/24EF) | |||
No. of Guide and/or Instrument | Initial Enrichment (MPC-24, 24E, or 32 with soluble boron credit - see Note 5) (wt % 235U) | ||
< 5.0 | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 No. of Fuel Rod Locations 204 208 236 236 235 Fuel Rod Clad O.D. (in.) | |||
> 0.422 | |||
> 0.414 | |||
> 0.382 | |||
> 0.374 | |||
> 0.374 Fuel Rod Clad I.D. | |||
(in.) | |||
< 0.3890 | |||
< 0.3700 | |||
< 0.3350 | |||
< 0.3290 | |||
< 0.3290 Fuel Pellet Dia. | |||
(in.) (Note 7) | |||
< 0.3825 | |||
< 0.3622 | |||
< 0.3255 | |||
< 0.3225 | |||
< 0.3225 Fuel Rod Pitch (in.) | |||
< 0.563 | |||
< 0.568 | |||
< 0.506 | |||
< 0.506 | |||
< 0.485 Active Fuel Length (in.) | |||
< 144 | |||
< 150 | |||
< 150 | |||
< 150 | |||
< 150 No. of Guide and/or Instrument Tubes 21 17 5 (Note 4) 5 (Note 4) 21 Guide/Instrument Tube Thickness (in.) | |||
> 0.0145 | |||
> 0.0140 | |||
> 0.0350 | |||
> 0.0400 | |||
> 0.0157 | |||
Approved Contents 2.0 Table 2.1-2 (page 4 of 5) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-18 Table 2.1-2 (page 4 of 5) | ||
PWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | PWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | ||
Fuel Assembly 17x17A | Fuel Assembly Array/ Class 17x17A 17x17B 17x17C Clad Material ZR ZR ZR Design Initial U (kg/assy.)(Note 3) | ||
< 433 | |||
Initial Enrichment | < 474 | ||
< 480 Initial Enrichment (MPC-24and 24E without soluble boron credit) | |||
(wt % 235U) | |||
Initial Enrichment (MPC-24, 24E, or 32 with soluble | < 4.0 (24) | ||
No. of Fuel Rod 264 | < 4.4 (24E) | ||
< 4.0 (24) | |||
< 4.4 (24E) | |||
< 4.0 (24) | |||
< 4.4 (24E) | |||
Initial Enrichment (MPC-24, 24E, or 32 with soluble boron credit - see Note 5) (wt % 235U) | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 No. of Fuel Rod Locations 264 264 264 Fuel Rod Clad O.D. (in.) | |||
> 0.360 | |||
No. of Guide and/or Instrument | > 0.372 | ||
> 0.377 Fuel Rod Clad I.D. | |||
(in.) | |||
< 0.3150 | |||
< 0.3310 | |||
< 0.3330 Fuel Pellet Dia. | |||
(in.) (Note 7) | |||
< 0.3088 | |||
< 0.3232 | |||
< 0.3252 Fuel Rod Pitch (in.) | |||
< 0.496 | |||
< 0.496 | |||
< 0.502 Active Fuel Length (in.) | |||
< 150 | |||
< 150 | |||
< 150 No. of Guide and/or Instrument Tubes 25 25 25 Guide/Instrument Tube Thickness (in.) | |||
> 0.016 | |||
> 0.014 | |||
> 0.020 | |||
Approved Contents 2.0 Table 2.1-2 (page 5 of 5) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-19 Table 2.1-2 (page 5 of 5) | ||
PWR FUEL ASSEMBLY CHARACTERISTICS Notes: | PWR FUEL ASSEMBLY CHARACTERISTICS Notes: | ||
: 1. All dimensions are design nominal values. Maximum and minimum dimensions are specified to bound variations in design nominal values among fuel assemblies within a given array/class. | : 1. All dimensions are design nominal values. Maximum and minimum dimensions are specified to bound variations in design nominal values among fuel assemblies within a given array/class. | ||
| Line 245: | Line 353: | ||
: 6. This fuel assembly array/class includes only the Indian Point Unit 1 fuel assembly. | : 6. This fuel assembly array/class includes only the Indian Point Unit 1 fuel assembly. | ||
This fuel assembly has two pitches in different sectors of the assembly. These pitches are 0.441 inches and 0.453 inches. | This fuel assembly has two pitches in different sectors of the assembly. These pitches are 0.441 inches and 0.453 inches. | ||
: 7. Annular fuel pellets are allowed in the top and bottom 12" of the active fuel length. | : 7. Annular fuel pellets are allowed in the top and bottom 12" of the active fuel length. | ||
Approved Contents 2.0 Table 2.1-3 (page 1 of 5) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-20 Table 2.1-3 (page 1 of 5) | ||
BWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | BWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | ||
Fuel Assembly 6x6A | Fuel Assembly Array/Class 6x6A 6x6B 6x6C 7x7A 7x7B 8x8A Clad Material ZR ZR ZR ZR ZR ZR Design Initial U (kg/assy.) (Note 3) | ||
< 110 | |||
< 110 | |||
< 110 | |||
< 100 | |||
No. of Fuel Rod | < 198 | ||
Fuel Rod Clad | < 120 Maximum PLANAR-AVERAGE INITIAL ENRICHMENT (wt.% 235U) | ||
< 2.7 | |||
< 2.7 for the UO2 rods. | |||
See Note 4 for MOX rods | |||
< 2.7 | |||
< 2.7 | |||
< 4.2 | |||
< 2.7 Initial Maximum Rod Enrichment (wt.% 235U) | |||
< 4.0 | |||
< 4.0 | |||
No. of Water Rods 1 or 0 | < 4.0 | ||
< 5.5 | |||
< 5.0 | |||
< 4.0 No. of Fuel Rod Locations 35 or 36 35 or 36 (up to 9 MOX rods) 36 49 49 63 or 64 Fuel Rod Clad O.D. (in.) | |||
> 0.5550 | |||
> 0.5625 | |||
> 0.5630 | |||
> 0.4860 | |||
> 0.5630 | |||
> 0.4120 Fuel Rod Clad I.D. | |||
(in.) | |||
< 0.5105 | |||
< 0.4945 | |||
< 0.4990 | |||
< 0.4204 | |||
< 0.4990 | |||
< 0.3620 Fuel Pellet Dia. | |||
(in.) | |||
< 0.4980 | |||
< 0.4820 | |||
< 0.4880 | |||
< 0.4110 | |||
< 0.4910 | |||
< 0.3580 Fuel Rod Pitch (in.) | |||
< 0.710 | |||
< 0.710 | |||
< 0.740 | |||
< 0.631 | |||
< 0.738 | |||
< 0.523 Active Fuel Length (in.) | |||
< 120 | |||
< 120 | |||
< 77.5 | |||
< 80 | |||
< 150 | |||
< 120 No. of Water Rods (Note 11) 1 or 0 1 or 0 0 | |||
0 0 | |||
1 or 0 Water Rod Thickness (in.) | |||
> 0 | |||
> 0 N/A N/A N/A | |||
> 0 Channel Thickness (in.) | |||
< 0.060 | |||
< 0.060 | |||
< 0.060 | |||
< 0.060 | |||
< 0.120 | |||
< 0.100 | |||
Approved Contents 2.0 Table 2.1-3 (2 of 5) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-21 Table 2.1-3 (2 of 5) | ||
BWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | BWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | ||
Fuel Assembly 8x8B | Fuel Assembly Array/Class 8x8B 8x8C 8x8D 8x8E 8x8F 9x9A Clad Material ZR ZR ZR ZR ZR ZR Design Initial U (kg/assy.) (Note 3) | ||
< 192 | |||
Maximum PLANAR-AVERAGE INITIAL | < 190 | ||
< 190 | |||
No. of Fuel Rod | < 190 | ||
Fuel Rod Clad | < 191 | ||
< 180 Maximum PLANAR-AVERAGE INITIAL ENRICHMENT (wt.% 235U) | |||
< 4.2 | |||
< 4.2 | |||
< 4.2 | |||
< 4.2 | |||
< 4.0 | |||
< 4.2 Initial Maximum Rod Enrichment (wt.% 235U) | |||
< 5.0 | |||
< 5.0 | |||
No. of Water Rods | < 5.0 | ||
Water Rod | < 5.0 | ||
< 5.0 | |||
< 5.0 No. of Fuel Rod Locations 63 or 64 62 60 or 61 59 64 74/66 (Note 5) | |||
Fuel Rod Clad O.D. (in.) | |||
> 0.4840 | |||
> 0.4830 | |||
> 0.4830 | |||
> 0.4930 | |||
> 0.4576 | |||
> 0.4400 Fuel Rod Clad I.D. | |||
(in.) | |||
< 0.4295 | |||
< 0.4250 | |||
< 0.4230 | |||
< 0.4250 | |||
< 0.3996 | |||
< 0.3840 Fuel Pellet Dia. | |||
(in.) | |||
< 0.4195 | |||
< 0.4160 | |||
< 0.4140 | |||
< 0.4160 | |||
< 0.3913 | |||
< 0.3760 Fuel Rod Pitch (in.) | |||
< 0.642 | |||
< 0.641 | |||
< 0.640 | |||
< 0.640 | |||
< 0.609 | |||
< 0.566 Design Active Fuel Length (in.) | |||
< 150 | |||
< 150 | |||
< 150 | |||
< 150 | |||
< 150 | |||
< 150 No. of Water Rods (Note 11) 1 or 0 2 | |||
1 - 4 (Note 7) 5 N/A (Note 12) 2 Water Rod Thickness (in.) | |||
> 0.034 | |||
> 0.00 | |||
> 0.00 | |||
> 0.034 | |||
> 0.0315 | |||
> 0.00 Channel Thickness (in.) | |||
< 0.120 | |||
< 0.120 | |||
< 0.120 | |||
< 0.100 | |||
< 0.055 | |||
< 0.120 | |||
Approved Contents 2.0 Table 2.1-3 (page 3 of 5) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-22 Table 2.1-3 (page 3 of 5) | ||
BWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | BWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | ||
Fuel Assembly | Fuel Assembly Array/Class 9x9B 9x9C 9x9D 9x9E (Note 13) 9x9F (Note 13) 9x9G Clad Material ZR ZR ZR ZR ZR ZR Design Initial U (kg/assy.)(Note 3) | ||
Clad Material | < 180 | ||
< 182 | |||
< 182 | |||
No. of Fuel Rod | < 183 | ||
< 183 | |||
< 164 Maximum PLANAR-AVERAGE INITIAL ENRICHMENT (wt.% 235U) | |||
< 4.2 | |||
< 4.2 | |||
No. of Water Rods | < 4.2 | ||
( | < 4.0 | ||
< 4.0 | |||
< 4.2 Initial Maximum Rod Enrichment (wt.% 235U) | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 No. of Fuel Rod Locations 72 80 79 76 76 72 Fuel Rod Clad O.D. (in.) | |||
> 0.4330 | |||
> 0.4230 | |||
> 0.4240 | |||
> 0.4170 | |||
> 0.4430 | |||
> 0.4240 Fuel Rod Clad I.D. | |||
(in.) | |||
< 0.3810 | |||
< 0.3640 | |||
< 0.3640 | |||
< 0.3640 | |||
< 0.3860 | |||
< 0.3640 Fuel Pellet Dia. | |||
(in.) | |||
< 0.3740 | |||
< 0.3565 | |||
< 0.3565 | |||
< 0.3530 | |||
< 0.3745 | |||
< 0.3565 Fuel Rod Pitch (in.) | |||
< 0.572 | |||
< 0.572 | |||
< 0.572 | |||
< 0.572 | |||
< 0.572 | |||
< 0.572 Design Active Fuel Length (in.) | |||
< 150 | |||
< 150 | |||
< 150 | |||
< 150 | |||
< 150 | |||
< 150 No. of Water Rods (Note 11) 1 (Note 6) 1 2 | |||
5 5 | |||
1 (Note 6) | |||
Water Rod Thickness (in.) | |||
> 0.00 | |||
> 0.020 | |||
> 0.0300 | |||
> 0.0120 | |||
> 0.0120 | |||
> 0.0320 Channel Thickness (in.) | |||
< 0.120 | |||
< 0.100 | |||
< 0.100 | |||
< 0.120 | |||
< 0.120 | |||
< 0.120 | |||
Approved Contents 2.0 Table 2.1-3 (page 4 of 5) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-23 Table 2.1-3 (page 4 of 5) | ||
BWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | BWR FUEL ASSEMBLY CHARACTERISTICS (Note 1) | ||
Fuel Assembly Array/Class | Fuel Assembly Array/Class 10x10A 10x10B 10x10C 10x10D 10x10E Clad Material ZR ZR ZR SS SS Design Initial U (kg/assy.) | ||
(Note 3) | |||
Maximum PLANAR-AVERAGE INITIAL | < 188 | ||
< 188 | |||
< 179 | |||
< 125 | |||
No. of Fuel Rod Locations | < 125 Maximum PLANAR-AVERAGE INITIAL ENRICHMENT (wt.% 235U) | ||
Fuel Rod Clad O.D. (in.) | < 4.2 | ||
< 4.2 | |||
No. of Water Rods (Note 11) | < 4.2 | ||
< 4.0 | |||
< 4.0 Initial Maximum Rod Enrichment (wt.% 235U) | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 | |||
< 5.0 No. of Fuel Rod Locations 92/78 (Note 8) 91/83 (Note 9) 96 100 96 Fuel Rod Clad O.D. (in.) | |||
> 0.4040 | |||
> 0.3957 | |||
> 0.3780 | |||
> 0.3960 | |||
> 0.3940 Fuel Rod Clad I.D. (in.) | |||
< 0.3520 | |||
< 0.3480 | |||
< 0.3294 | |||
< 0.3560 | |||
< 0.3500 Fuel Pellet Dia. (in.) | |||
< 0.3455 | |||
< 0.3420 | |||
< 0.3224 | |||
< 0.3500 | |||
< 0.3430 Fuel Rod Pitch (in.) | |||
< 0.510 | |||
< 0.510 | |||
< 0.488 | |||
< 0.565 | |||
< 0.557 Design Active Fuel Length (in.) | |||
< 150 | |||
< 150 | |||
< 150 | |||
< 83 | |||
< 83 No. of Water Rods (Note 11) 2 1 (Note 6) 5 (Note 10) 0 4 | |||
Water Rod Thickness (in.) | |||
> 0.0300 | |||
> 0.00 | |||
> 0.031 N/A | |||
> 0.022 Channel Thickness (in.) | |||
< 0.120 | |||
< 0.120 | |||
< 0.055 | |||
< 0.080 | |||
< 0.080 | |||
Approved Contents 2.0 Table 2.1-3 (page 5 of 5) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-24 Table 2.1-3 (page 5 of 5) | ||
BWR FUEL ASSEMBLY CHARACTERISTICS Notes: | BWR FUEL ASSEMBLY CHARACTERISTICS Notes: | ||
: 1. | : 1. | ||
: 2. | All dimensions are design nominal values. Maximum and minimum dimensions are specified to bound variations in design nominal values among fuel assemblies within a given array/class. | ||
: 3. | : 2. | ||
: 4. | Not Used. | ||
: 3. | |||
Design initial uranium weight is the nominal uranium weight specified for each assembly by the fuel manufacturer or reactor user. For each BWR fuel assembly, the total uranium weight limit specified in this table may be increased up to 1.5 percent for comparison with users fuel records to account for manufacturer tolerances. | |||
: 4. | |||
< 0.635 wt. % 235U and < 1.578 wt. % total fissile plutonium (239Pu and 241Pu), | |||
(wt. % of total fuel weight, i.e., UO2 plus PuO2). | (wt. % of total fuel weight, i.e., UO2 plus PuO2). | ||
: 5. | : 5. | ||
: 6. | This assembly class contains 74 total rods; 66 full length rods and 8 partial length rods. | ||
: 7. | : 6. | ||
: 8. | Square, replacing nine fuel rods. | ||
: 9. | : 7. | ||
: 10. One diamond-shaped water rod replacing the four center fuel rods and four rectangular water rods dividing the assembly into four quadrants. | Variable. | ||
: 11. These rods may also be sealed at both ends and contain Zr material in lieu of water. | : 8. | ||
: 12. This assembly is known as QUAD+. It has four rectangular water cross segments dividing the assembly into four quadrants. | This assembly contains 92 total fuel rods; 78 full length rods and 14 partial length rods. | ||
: 13. For the SPC 9x9-5 fuel assembly, each fuel rod must meet either the 9x9E or the 9x9F set of limits for clad O.D., clad I.D., and pellet diameter. | : 9. | ||
This assembly class contains 91 total fuel rods; 83 full length rods and 8 partial length rods. | |||
: 10. | |||
One diamond-shaped water rod replacing the four center fuel rods and four rectangular water rods dividing the assembly into four quadrants. | |||
: 11. | |||
These rods may also be sealed at both ends and contain Zr material in lieu of water. | |||
: 12. | |||
This assembly is known as QUAD+. It has four rectangular water cross segments dividing the assembly into four quadrants. | |||
: 13. | |||
For the SPC 9x9-5 fuel assembly, each fuel rod must meet either the 9x9E or the 9x9F set of limits for clad O.D., clad I.D., and pellet diameter. | |||
Approved Contents 2.0 Table 2.1-4 NON-FUEL HARDWARE COOLING AND AVERAGE BURNUP (Notes 1, 2, 3, and 8) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-25 Table 2.1-4 NON-FUEL HARDWARE COOLING AND AVERAGE BURNUP (Notes 1, 2, 3, and 8) | ||
Post- | Post-irradiation Cooling Time (years) | ||
( | INSERTS (Note 4) | ||
(MWD/MTU) | BURNUP (MWD/MTU) | ||
NSA or GUIDE TUBE HARDWARE (Note 5) | |||
BURNUP (MWD/MTU) | |||
CONTROL COMPONENT (Note 6) | |||
BURNUP (MWD/MTU) | |||
APSR BURNUP (MWD/MTU) | |||
> 3 | |||
< 24,635 NA (Note 7) | |||
NA NA | |||
> 4 | |||
< 30,000 | |||
< 20,000 NA NA | |||
> 5 | |||
Notes: 1. Burnups for NON-FUEL HARDWARE are to be determined based on the burnup and uranium mass of the fuel assemblies in which the component was inserted during reactor operation. | < 36,748 | ||
: 2. Linear interpolation between points is permitted, except that NSA or Guide Tube Hardware and APSR burnups > 180,000 MWD/MTU and < 630,000 MWD/MTU must be cooled > 14 years and > 11 years, respectively. | < 25,000 | ||
: 3. Applicable to uniform loading and regionalized loading. | < 630,000 | ||
: 4. Includes Burnable Poison Rod Assemblies (BPRAs), Wet Annular Burnable Absorbers (WABAs), and vibration suppressor inserts. | < 45,000 | ||
: 5. Includes Thimble Plug Devices (TPDs), water displacement guide tube plugs, and orifice rod assemblies. | > 6 | ||
: 6. Includes Control Rod Assemblies (CRAs), Control Element Assemblies (CEAs), and Rod Cluster Control Assemblies (RCCAs). | < 44,102 | ||
: 7. NA means not authorized for loading at this cooling time. | < 30,000 | ||
: 8. Non-fuel hardware burnup and cooling times are not applicable to ITTRs since they are installed post irradiation. | < 54,500 | ||
> 7 | |||
< 52,900 | |||
< 40,000 | |||
< 68,000 | |||
> 8 | |||
< 60,000 | |||
< 45,000 | |||
< 83,000 | |||
> 9 | |||
< 50,000 | |||
< 111,000 | |||
> 10 | |||
< 60,000 | |||
< 180,000 | |||
> 11 | |||
< 75,000 | |||
< 630,000 | |||
> 12 | |||
< 90,000 | |||
> 13 | |||
< 180,000 | |||
> 14 | |||
< 630,000 Notes: 1. | |||
Burnups for NON-FUEL HARDWARE are to be determined based on the burnup and uranium mass of the fuel assemblies in which the component was inserted during reactor operation. | |||
: 2. | |||
Linear interpolation between points is permitted, except that NSA or Guide Tube Hardware and APSR burnups > 180,000 MWD/MTU and < 630,000 MWD/MTU must be cooled > 14 years and > 11 years, respectively. | |||
: 3. | |||
Applicable to uniform loading and regionalized loading. | |||
: 4. | |||
Includes Burnable Poison Rod Assemblies (BPRAs), Wet Annular Burnable Absorbers (WABAs), and vibration suppressor inserts. | |||
: 5. | |||
Includes Thimble Plug Devices (TPDs), water displacement guide tube plugs, and orifice rod assemblies. | |||
: 6. | |||
Includes Control Rod Assemblies (CRAs), Control Element Assemblies (CEAs), and Rod Cluster Control Assemblies (RCCAs). | |||
: 7. | |||
NA means not authorized for loading at this cooling time. | |||
: 8. | |||
Non-fuel hardware burnup and cooling times are not applicable to ITTRs since they are installed post irradiation. | |||
Approved Contents 2.0 2.4 | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-26 2.4 Decay Heat, Burnup, and Cooling Time Limits for ZR-Clad Fuel This section provides the limits on ZR-clad fuel assembly decay heat, burnup, and cooling time for storage in the HI-STORM 100 System Model 100U. The method to calculate the limits and verify compliance, including examples, is provided in Chapter 12 of the HI-STORM 100 FSAR. | ||
2.4.1 Uniform Fuel Loading Decay Heat Limits for ZR-clad fuel Table 2.4-1 provides the maximum allowable decay heat per fuel storage location for ZR-clad fuel in uniform fuel loading for each MPC model. | 2.4.1 Uniform Fuel Loading Decay Heat Limits for ZR-clad fuel Table 2.4-1 provides the maximum allowable decay heat per fuel storage location for ZR-clad fuel in uniform fuel loading for each MPC model. | ||
Table 2.4-1 Maximum Allowable Decay Heat per Fuel Storage Location (Uniform Loading, ZR-Clad) | Table 2.4-1 Maximum Allowable Decay Heat per Fuel Storage Location (Uniform Loading, ZR-Clad) | ||
MPC Model | MPC Model Decay Heat per Fuel Storage Location (kW) | ||
Intact Fuel Assemblies MPC-24 | Intact Fuel Assemblies MPC-24 | ||
< 1.266 MPC-24E | |||
< 1.266 MPC-32 | |||
< 0.949 MPC-68 | |||
< 0.447 | |||
Approved Contents 2.0 2.4.2 Regionalized Fuel Loading Decay Heat Limits for ZR-Clad Fuel (INTACT FUEL only) | Approved Contents 2.0 Certificate of Compliance No. 1014 Amendment No. 14 Appendix B-100U 2-27 2.4.2 Regionalized Fuel Loading Decay Heat Limits for ZR-Clad Fuel (INTACT FUEL only) | ||
The maximum allowable decay heat per fuel storage location for fuel in regionalized loading is determined using the following equations: | The maximum allowable decay heat per fuel storage location for fuel in regionalized loading is determined using the following equations: | ||
Q(X) = 2 x | Q(X) = 2 x | ||