Category of Content
Siting Experience Documents Only
Publication Date
Subject Matter
Update to Thermodynamic Database Development and Sorption Database Integration
Update to Thermodynamic Database Development and Sorption Database Integration
Consensus on Salt Field Test Design
Consensus on Salt Field Test Design
Mechanical Behavior of the Near-field Host Rock Surrounding Excavations
Mechanical Behavior of the Near-field Host Rock Surrounding Excavations
International Collaborations on Engineered Barrier Systems: Experimental and Modeling Investigations Report
International Collaborations on Engineered Barrier Systems: Experimental and Modeling Investigations Report
Argillite Disposal R&D International Collaborations interim report - 2019
Argillite Disposal R&D International Collaborations interim report - 2019
Investigation of Coupled THMC Processes and Reactive Transport FY14 Progress
Investigation of Coupled THMC Processes and Reactive Transport FY14 Progress
Argillite Disposal R&D – LANL (FY19)
Argillite Disposal R&D – LANL (FY19)
Draft Test Plan for Brine Migration Experimental Studies in Run-of-Mine Salt Backfill
Draft Test Plan for Brine Migration Experimental Studies in Run-of-Mine Salt Backfill
EBS Model Development and Evaluation Report
EBS Model Development and Evaluation Report
ADVANCED NUCLEAR FUEL CYCLE EFFECTS ON THE TREATMENT OF UNCERTAINTY IN THE LONG TERM ASSESSMENT OF GEOLOGIC DISPOSAL SYSTEMS EBS INPUT?
ADVANCED NUCLEAR FUEL CYCLE EFFECTS ON THE TREATMENT OF UNCERTAINTY IN THE LONG TERM ASSESSMENT OF GEOLOGIC DISPOSAL SYSTEMS EBS INPUT?
ANL Mixed Potential Model with Experimental Results: Implementation of Noble Metal Particle Catalysis Module
ANL Mixed Potential Model with Experimental Results: Implementation of Noble Metal Particle Catalysis Module
Experimental Investigation of Two-Phase Flow in Rock Salt
Experimental Investigation of Two-Phase Flow in Rock Salt
An Updated Analysis of Clad Degradation
An Updated Analysis of Clad Degradation
An Updated Analysis of Clad Degradation
An Updated Analysis of Clad Degradation
ADVANCED NUCLEAR FUEL CYCLE EFFECTS ON THE TREATMENT OF UNCERTAINTY IN THE LONG-TERM ASSESSMENT OF GEOLOGIC DISPOSAL SYSTEMS – NATURAL SYSTEM INPUT
ADVANCED NUCLEAR FUEL CYCLE EFFECTS ON THE TREATMENT OF UNCERTAINTY IN THE LONG-TERM ASSESSMENT OF GEOLOGIC DISPOSAL SYSTEMS – NATURAL SYSTEM INPUT
FY15 Report on Lab Thermomechanical Testing
FY15 Report on Lab Thermomechanical Testing
FY12 Sensitivity Studies Using the UFD Clay Generic Disposal System Model
FY12 Sensitivity Studies Using the UFD Clay Generic Disposal System Model
Experiments and Modeling in Support of Generic Salt Repository Science
Experiments and Modeling in Support of Generic Salt Repository Science
Analysis of Data From Salt Reconsolidation Experiments at SNL in FY12 and FY13
Analysis of Data From Salt Reconsolidation Experiments at SNL in FY12 and FY13
Survey of National Programs for Managing High-Level Radioactive Waste and Spent Nuclear Fuel: 2022 Update
Survey of National Programs for Managing High-Level Radioactive Waste and Spent Nuclear Fuel: 2022 Update
In October 2009, the U.S. Nuclear Waste Technical Review Board (Board or NWTRB) published Survey of National Programs for Managing High-Level Radioactive Waste and Spent Nuclear Fuel. For each of the 13 national programs studied, the report catalogued 15 institutional arrangements that had been set in place and 15 technical approaches that had been taken to design repository systems for the long-term management of high-activity radioactive waste.
Getting to the Core of the Nuclear Fuel Cycle: From the mining of uranium to the disposal of nuclear waste
Getting to the Core of the Nuclear Fuel Cycle: From the mining of uranium to the disposal of nuclear waste
This brochure shortly describes the various steps of the nuclear fuel cycle by covering areas from mining and milling to disposal of spent fuel and other radioactive waste.
Gateway for Accelerated Innovation in Nuclear (GAIN) Website
Gateway for Accelerated Innovation in Nuclear (GAIN) Website
Website for Gateway for Accelerated Innovation in Nuclear (GAIN).
The mission of the Department of Energy Office of Nuclear Energy (DOE-NE) is to advance nuclear power as a resource capable of meeting the nation's energy, environmental and national security needs by resolving technical, cost, safety, proliferation resistance, and security barriers through research, development and demonstration ﴾RD&D﴿.