A process description and system flow sheets have been prepared to support the design/build package for the Shippingport Spent Fuel Canister drying and inerting process skid. A process flow diagram was prepared to show the general steps to dry and inert the Shippingport fuel loaded into SSFCs for transport and dry storage. Flow sheets have been prepared to show the flows and conditions for the various steps of the drying and inerting process. Calculations and data supporting the development of the flow sheets are included
In refueling development studies performed on PL-3 Phase I design, several methods of fuel transfer,...
This system design description (SDD) is for the Cold Vacuum Drying (CVD) Facility overhead crane and...
The purpose of these calculations is to develop the material balances for documentation of the Canis...
This specification establishes the performance requirements and basic design requirements imposed on...
In 1978 and 1979, a total of 72 blanket fuel assemblies (BFAs), irradiated during the operating cycl...
The SSFC Design Report Describes A spent fuel canister for Shippingport Core 2 blanket fuel assembli...
The conceptual design is presented for a facility to transfer spent nuclear fuel from shipping casks...
SRTC is developing technology for direct disposal of aluminum spent nuclear fuel (SNF). The developm...
This study of the design basis capacity of process systems was prepared by Fluor Federal Services fo...
The simulation tool of spent fuel transportation plan is being developed to support the development ...
The potential need for a dry transfer system (DTS) to enable retrieval of used nuclear fuel (UNF) fo...
This document provides the System Design Description (SDD) for the Cold Vacuum Drying Facility (CVDF...
The Assembly Transfer System (ATS) receives, cools, and opens rail and truck transportation casks fr...
>The Piqua-Elk River spent fuel shipping cask, designed to transport 19 fuel assemblies from either ...
This document provides the System Design Description (SDD) for the Cold Vacuum Drying Facility (CVDF...
In refueling development studies performed on PL-3 Phase I design, several methods of fuel transfer,...
This system design description (SDD) is for the Cold Vacuum Drying (CVD) Facility overhead crane and...
The purpose of these calculations is to develop the material balances for documentation of the Canis...
This specification establishes the performance requirements and basic design requirements imposed on...
In 1978 and 1979, a total of 72 blanket fuel assemblies (BFAs), irradiated during the operating cycl...
The SSFC Design Report Describes A spent fuel canister for Shippingport Core 2 blanket fuel assembli...
The conceptual design is presented for a facility to transfer spent nuclear fuel from shipping casks...
SRTC is developing technology for direct disposal of aluminum spent nuclear fuel (SNF). The developm...
This study of the design basis capacity of process systems was prepared by Fluor Federal Services fo...
The simulation tool of spent fuel transportation plan is being developed to support the development ...
The potential need for a dry transfer system (DTS) to enable retrieval of used nuclear fuel (UNF) fo...
This document provides the System Design Description (SDD) for the Cold Vacuum Drying Facility (CVDF...
The Assembly Transfer System (ATS) receives, cools, and opens rail and truck transportation casks fr...
>The Piqua-Elk River spent fuel shipping cask, designed to transport 19 fuel assemblies from either ...
This document provides the System Design Description (SDD) for the Cold Vacuum Drying Facility (CVDF...
In refueling development studies performed on PL-3 Phase I design, several methods of fuel transfer,...
This system design description (SDD) is for the Cold Vacuum Drying (CVD) Facility overhead crane and...
The purpose of these calculations is to develop the material balances for documentation of the Canis...