The conceptual design is presented for a facility to transfer spent nuclear fuel from shipping casks to dry storage containers, and to safely store those containers at ICPP at INEL. The spent fuels to be handled at the new facility are identified and overall design and operating criteria established. Physical configuration of the facility and the systems used to handle the SNF are described. Detailed cost estimate for design and construction of the facility is presented
A conceptual design has been developed for a spent fuel dry storage cask that employs depleted urani...
In 1977 the Spent Fuel Handling and Packaging Program (SFHPP) was initiated by the Department of Ene...
A process description and system flow sheets have been prepared to support the design/build package ...
DESIGN OF DRY CASK STORAGE FOR SERPONG MULTI PURPOSE REACTOR SPENT NUCLEAR FUEL. The spent nuclear f...
This Conceptual Design Report provides the technical basis for the Spent Nuclear Fuels Project, Cani...
A spent nuclear fuels (SNF) repackaging and storage facility was designed for the Idaho National Eng...
This report evaluates existing capabilities at the INL to determine if a practical and cost effectiv...
The CPP-603 Underwater Fuel Storage Facility (UFSF) Site Integrated Stabilization Management Plan (S...
The Sub-project W379, ''Spent Nuclear Fuel Canister Storage Building (CSB),'' was established as par...
The purpose of this analysis is to demonstrate the design of the naval spent nuclear fuel (SNF) wast...
This study of the design basis capacity of process systems was prepared by Fluor Federal Services fo...
The Department of Energy (DOE) has received spent nuclear fuel (SNF) at the Idaho Chemical Processin...
In the planning and management of the interim storage of spent nuclear fuel, the technical and econo...
Non-commercial Spent Nuclear Fuel (SNF) owned by the Department of Energy presents some unique chall...
Metallic uranium Spent Nuclear Fuel (SNF) is currently stored within two water filled pools, 105-KE ...
A conceptual design has been developed for a spent fuel dry storage cask that employs depleted urani...
In 1977 the Spent Fuel Handling and Packaging Program (SFHPP) was initiated by the Department of Ene...
A process description and system flow sheets have been prepared to support the design/build package ...
DESIGN OF DRY CASK STORAGE FOR SERPONG MULTI PURPOSE REACTOR SPENT NUCLEAR FUEL. The spent nuclear f...
This Conceptual Design Report provides the technical basis for the Spent Nuclear Fuels Project, Cani...
A spent nuclear fuels (SNF) repackaging and storage facility was designed for the Idaho National Eng...
This report evaluates existing capabilities at the INL to determine if a practical and cost effectiv...
The CPP-603 Underwater Fuel Storage Facility (UFSF) Site Integrated Stabilization Management Plan (S...
The Sub-project W379, ''Spent Nuclear Fuel Canister Storage Building (CSB),'' was established as par...
The purpose of this analysis is to demonstrate the design of the naval spent nuclear fuel (SNF) wast...
This study of the design basis capacity of process systems was prepared by Fluor Federal Services fo...
The Department of Energy (DOE) has received spent nuclear fuel (SNF) at the Idaho Chemical Processin...
In the planning and management of the interim storage of spent nuclear fuel, the technical and econo...
Non-commercial Spent Nuclear Fuel (SNF) owned by the Department of Energy presents some unique chall...
Metallic uranium Spent Nuclear Fuel (SNF) is currently stored within two water filled pools, 105-KE ...
A conceptual design has been developed for a spent fuel dry storage cask that employs depleted urani...
In 1977 the Spent Fuel Handling and Packaging Program (SFHPP) was initiated by the Department of Ene...
A process description and system flow sheets have been prepared to support the design/build package ...