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Methodology for Radiological Risk Assessment of Deep Borehole Disposal Operations
Methodology for Radiological Risk Assessment of Deep Borehole Disposal Operations
Deep Borehole Safety Analysis
Deep Borehole Safety Analysis
Data Report on Corrosion Testing of Stainless Steel SNF Storage Canisters
Data Report on Corrosion Testing of Stainless Steel SNF Storage Canisters
Deep Borehole Disposal Safety Case
Deep Borehole Disposal Safety Case
Emplacement Mode Hazard Identification and Analysis
Emplacement Mode Hazard Identification and Analysis
Generic Deep Geologic Disposal Safety Case, Rev 1
Generic Deep Geologic Disposal Safety Case, Rev 1
GENERIC DEEP GEOLOGIC DISPOSAL SAFETY CASE, Annotated Outline
GENERIC DEEP GEOLOGIC DISPOSAL SAFETY CASE, Annotated Outline
A Safety Framework for Disposal of Heat-Generating Waste in Salt: Annotated Outline
A Safety Framework for Disposal of Heat-Generating Waste in Salt: Annotated Outline
FY20 STATUS REPORT- SNF INTERIM STORAGE CANISTER CORROSION AND SURFACE ENVIRONMENT INVESTIGATIONS
FY20 STATUS REPORT- SNF INTERIM STORAGE CANISTER CORROSION AND SURFACE ENVIRONMENT INVESTIGATIONS
Implementation of Small Diameter Borehole Thermal Experiments at WIPP
Implementation of Small Diameter Borehole Thermal Experiments at WIPP
Sensitivity of Spent Fuel Temperatures to Variable Canister Backfills
Sensitivity of Spent Fuel Temperatures to Variable Canister Backfills
Analysis of Dust Samples Collected from an In-Service Interim Storage System at the Maine Yankee Nuclear Site
Analysis of Dust Samples Collected from an In-Service Interim Storage System at the Maine Yankee Nuclear Site
Status Update on the Canister Deposition Field Demonstration
Status Update on the Canister Deposition Field Demonstration
Preclosure Risk Assessment for Deep Borehole Disposal
Preclosure Risk Assessment for Deep Borehole Disposal
Technical Work Plan: Environmental Degradation of Materials Relevant to Interim Storage and Permanent Disposal of Used Nuclear Fuel
Technical Work Plan: Environmental Degradation of Materials Relevant to Interim Storage and Permanent Disposal of Used Nuclear Fuel
Preliminary Test Design and Plan for a Canister Deposition Field Demonstration
Preliminary Test Design and Plan for a Canister Deposition Field Demonstration
UNF-ST&DARDS Documentation Release 3.0
UNF-ST&DARDS Documentation Release 3.0
Materials for Consideration in Standardized Canister Design Activities??
Materials for Consideration in Standardized Canister Design Activities??
M3SF-21PN020401053- COBRA-SFS Version 6.1 User Guide- A Thermal Hydraulic Analysis Code for Spent Fuel Storage and Transpor
M3SF-21PN020401053- COBRA-SFS Version 6.1 User Guide- A Thermal Hydraulic Analysis Code for Spent Fuel Storage and Transpor
Mothers for Nuclear Flyer
Mothers for Nuclear Flyer
Mothers for Nuclear Informational Flyer
Socio-technical multi-criteria evaluation of long-term spent nuclear fuel management strategies: A framework and method
Socio-technical multi-criteria evaluation of long-term spent nuclear fuel management strategies: A framework and method
In the absence of a federal geologic repository or consolidated, interim storage in the United States, commercial spent fuel will remain stranded at some 75 sites across the country. Currently, these include 18 “orphaned sites” where spent fuel has been left at decommissioned reactor sites.
Interim Storage, Environmental Justice, and Generational Equity
Interim Storage, Environmental Justice, and Generational Equity
With the termination of the Yucca Mountain project, which was proposed to be our nation’s first repository for the disposal of military and civilian spent nuclear fuel and high-level radioactive waste, the future of nuclear waste management and disposal in this country became increasingly uncertain. Interim storage has been advocated by many as a temporary solution while a permanent solution is studied for potentially several more decades to come.
Interim Storage, Environmental Justice, and Generational Equity
Interim Storage, Environmental Justice, and Generational Equity
With the termination of the Yucca Mountain project, which was proposed to be our nation’s first repository for the disposal of military and civilian spent nuclear fuel and high-level radioactive waste, the future of nuclear waste management and disposal in this country became increasingly uncertain. Interim storage has been advocated by many as a temporary solution while a permanent solution is studied for potentially several more decades to come.