Transitioning to High Assay Low Enriched Uranium-fueled reactors will alter the material requirements of the current nuclear fuel cycle, in terms of the mass of enriched uranium and Separative Work Unit capacity. This work simulates multiple fuel cycle scenarios using Cyclus to compare how the type of the advanced reactor deployed and the energy growth demand affect the material requirements of the transition to High Assay Low Enriched Uranium-fueled reactors. Fuel cycle scenarios considered include the current fleet of Light Water Reactors in the U.S. as well as a no-growth and a 1% growth transition to either the Ultra Safe Nuclear Corporation Micro Modular Reactor or the X-energy Xe-100 reactor from the current fleet of U.S. Light Water ...
The paper presents the results of a case study on evaluating performance and sustainability metrics ...
The Nuclear Fuel Cycle Evaluation and Screening Study was chartered by the DOE in order to weigh the...
Small modular reactors (SMRs) with power levels much smaller than the currently standard 1000- to 16...
Transitioning to High Assay Low Enriched Uranium-fueled reactors will alter the material requirement...
International organizations regularly produce global energy demand scenarios. To account for the inc...
International audienceSmall modular reactors (SMRs) are on the rise, especially because of their exp...
International audienceInternational organizations regularly produce global energy demand scenarios. ...
International audienceMany international organizations regularly produce global energy demand scenar...
There is a continued interest within the nuclear industry towards improving the fuel cycle, mostly i...
Small modular reactors (SMRs) are currently being considered as future investments for commercial en...
The following report provides a rich resource of information for exploring fuel cycle characteristic...
A model is provided to determine the amounts of various fuel streams required to supply energy from ...
The present United States nuclear fuel cycle faces challenges that hinder the expansion of nuclear e...
Equilibrium fuel cycle characteristics of a light water reactor (LWR) with enriched uranium supply w...
This paper examines the time-dependent dynamics of transitioning from a once-through fuel cycle to a...
The paper presents the results of a case study on evaluating performance and sustainability metrics ...
The Nuclear Fuel Cycle Evaluation and Screening Study was chartered by the DOE in order to weigh the...
Small modular reactors (SMRs) with power levels much smaller than the currently standard 1000- to 16...
Transitioning to High Assay Low Enriched Uranium-fueled reactors will alter the material requirement...
International organizations regularly produce global energy demand scenarios. To account for the inc...
International audienceSmall modular reactors (SMRs) are on the rise, especially because of their exp...
International audienceInternational organizations regularly produce global energy demand scenarios. ...
International audienceMany international organizations regularly produce global energy demand scenar...
There is a continued interest within the nuclear industry towards improving the fuel cycle, mostly i...
Small modular reactors (SMRs) are currently being considered as future investments for commercial en...
The following report provides a rich resource of information for exploring fuel cycle characteristic...
A model is provided to determine the amounts of various fuel streams required to supply energy from ...
The present United States nuclear fuel cycle faces challenges that hinder the expansion of nuclear e...
Equilibrium fuel cycle characteristics of a light water reactor (LWR) with enriched uranium supply w...
This paper examines the time-dependent dynamics of transitioning from a once-through fuel cycle to a...
The paper presents the results of a case study on evaluating performance and sustainability metrics ...
The Nuclear Fuel Cycle Evaluation and Screening Study was chartered by the DOE in order to weigh the...
Small modular reactors (SMRs) with power levels much smaller than the currently standard 1000- to 16...