ML20128G942
| ML20128G942 | |
| Person / Time | |
|---|---|
| Site: | Westinghouse |
| Issue date: | 09/30/1996 |
| From: | Robert Williams WESTINGHOUSE ELECTRIC COMPANY, DIV OF CBS CORP. |
| To: | Gaskin C NRC OFFICE OF NUCLEAR MATERIAL SAFETY & SAFEGUARDS (NMSS) |
| References | |
| CON-NRC-96-048, CON-NRC-96-48 NUDOCS 9610090184 | |
| Download: ML20128G942 (4) | |
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Westinghouse Commercial Nuclear Drawer R Electric Corporation Fuel Division fe$$Ile*2e7 NRC-96-048 September 30,1996 U.S. Nuclear Regulatory Commission ATTN:
Mr. Charles Gaskin Licensing Section 1, Licensing Branch FCS&S Division, NMSS 11555 Rockville Pike Mail Stop T8D14 Rockville, MD 20852-2738
Dear Mr. Gaskin:
SUIUECT: CII ANGED PAGES; LICENSE NUMBER SNM-1107; DOCKET 70-1151 The Westinghouse Electric Corporation hereby submits Revision 4.0 of pages iii,6.11 and 6.12 for the Application for Renewal of a Special Nuclear Materials License for the Commercial Nuclear Fuel Division at the Columbia, South Carolina Fuel Fabrication Facility.
If you have any questions, please contact me at (803) 776-2610, Extension 3393.
Sincerely, WESTINGIIOUSE ELECTRIC CORPORATION Robert A, Williams, Licensing Project Manager Westinghouse Columbia Plant Docket 70-1151 License SNM-1107 Attachment K'((IO 9610090184 960930 PDR ADOCK 07001151
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REVISION RECORD 4
REVISION DATE OF PAGES NUMBER REVISION REVISED REVISION REASOli 1.0 30APR95 All Update to current operations.
2.0 28JUN96 iii, 6.8 Clarify Criticality Safety Basis for the compaction operation.
3.0 30AUG96 iii,1.7,1.9,12.6,12.7 Incorporate Safety Condition S-3 into Application; correct reference to Figure 1.3 instead of 2.3, to reflect expansion of the CAA in order to eliminate need for gate.
4.0 30SEP96 iii, 6.11, 6.12 Clarification of Criticality Safety Basis for the Pellet Stripping System Equipment and Hoods & Containment.
Docket No.
70-1151 Initial Submittal Date:
30APR90 Page No.
iii License No. SNM-1107 Revision Submittal Date: 30SEP96 Revision No. 4.0
o AREA PROCESS CRITICALITY EVALUATION OR OR SAFETY BOUNDING SYSTEM EQUIPMENT BASIS ASSUMl"TIONS Pellet Stripping Geometry a lieterogeneous UO2 System Equipment
= $_10 wt. % 110 Equivalent 2
. Partial Reflection Pellet Coating System Geometry
= lieterogeneous UO2
= Optimum 110 Moderation 2
a Partial Reflection Rod Loading System Geometry a tieterogeneous UO2
= Optimum 110 Moderation 2
a Partial Reflection inspection Geometry
= lieterogeneous UO2
= Optimum 110 Moderation 2
= Partial Reflection URRS Advanced Wastewater Concentration a llomogeneous UO 2 Waste Treatment Treatment System Mass
= 5 wt. % U
= Partial Reflection Storage Tanks Concentration
= llomogeneous UO2 Mass
= 5 wt. % U
= Partial Reflection Ammonia Recovery Concentration
= Ilomogeneous UO2 System Mass e 5 wt. % U e Partial Reflection UN Bulk Storage Tank Concentration
= Ilomogeneous UN System
= s 15 gms. U235 / liter
= Partial Reflection Storage Pad Geometry a tiomogeneous UN Concentration
= s 23 gms. U235 /1 ter
. Full Concrete Reflection On 5 Sides and Partial Reflection On 1 Side Miscellaneous Laboratories Geometry
= lieterogeneous UO2 Mass e Optimum 110 Moderation 2
= Partial Reflection Ventilation Systems Geometry
= liomogeneous UO2 Mass
= Optimum 110 Moderation 2
= Partial Reflection Docket No.
70-1151 Initial Submittal Date:
30APR90 Page No.
6.11 License No. SNM-1107 Revision Submittal Date: 30SEP96 Revision No. 4.0
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4 AREA PROCESS CRITICALITY EVALUATION OR OR SAFETY BOUNDING i
SYSTEM EQUIPMENT BASIS ASSUMPTIONS Ventilation Systems Moderation
= Homogeneous UO2 Mass a s10 wt. % H O Equivalent 2
a Partial Reflection Scrubber Systems Geometry
= Homogeneous UO 2
Concentration
= Optimum 110 Moderation 2
a Partial Reflection 1
iloods &
Geometry
= Hetrogeneous UO2 Containment Mass
= s10 wt. % 110 Equivalent 2
Heterogeneous Mat'I.
= Partial Reflection Hoods &
Geometry
= Homogeneous UO2 Containment Mass
= Optimum H O Moderation 2
flomogeneous Mat'l.
- Partial Reflection d
Storage Wet Material Geometry e Homogeneous UO2 Containers
= Optimum 110 Moderation 2
= Full Reflection i
Dry Material Geometry
= Homogeneous UO2 Containers Moderation a s10 wt. % 110 Equivalent 2
= Partial Reflection Wet Material Geometry a Heterogeneous UO2 Containers
= Optimum H O Moderation 2
= Partial Reflection Dry Material Geometry a lieterogeneous UO 2 Containers Moderation a s10 wt. % 110 Equivalent 2
= Panial Reflection Rod Storage Geometry a tieterogeneous UO2
= Full Interstitial Moderation
= Full Reflection Fuel Assembly Geometry
= Heterogeneous UO2 Storage Neutron Absorber
= Full Interstitial Moderation
= Full Reflection Pellet Cabinets Geometry
. Heterogeneous UO2 Neutron Absorber a Full Interstitial Moderation
= Partial Reflection Docket No.
70-1151 Initial Submittal Date:
30APR90 Page No.
6.12 License No. SNM-1107 Revision Submittal Date: 30SEP96 Revision No. 4.0