Configurational analysis of uranium-doped thorium dioxide
Ashley E. Shields, Sergio E. Ruiz‐Hernandez, Nora H. de Leeuw
Abstract
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Ashley E. Shields, Sergio E. Ruiz‐Hernandez, Nora H. de Leeuw
Abstract
Open-access reader
While thorium dioxide is already used industrially in high temperature applications, more insight is needed about the behaviour of the material as part of a mixed-oxide (MOX) nuclear fuel, incorporating uranium. We have developed a new interatomic potential model, commensurate with a prominent existing UO 2 potential, to conduct configurational analyses of uranium-doped ThO 2 supercells. Using the GULP and Site Occupancy Disorder (SOD) computational codes, we have analysed the distribution of low concentrations of uranium in the bulk material, but have not observed the formation of uranium clusters or a single dominant configuration.
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While thorium dioxide is already used industrially in high temperature applications, more insight is needed about the behaviour of the material as part of a mixed-oxide (MOX) nuclear fuel, incorporating uranium. We have developed a new interatomic potential model, commensurate with a prominent existing UO 2 potential, to conduct configurational analyses of uranium-doped ThO 2 supercells. Using the GULP and Site Occupancy Disorder (SOD) computational codes, we have analysed the distribution of low concentrations of uranium in the bulk material, but have not observed the formation of uranium clusters or a single dominant configuration.
Key concepts: MOX fuel, Uranium, Uranium dioxide, Uranium oxide, Thorium, Thorium dioxide, Depleted uranium, Actinide