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Phase-field modeling of fission gas bubble growth on grain boundaries and triple junctions in UO2 nuclear fuel

机译:UO2核燃料晶界裂变气泡生长的相位场建模

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A phase-field model of fission gas bubble evolution was developed and applied to gain an improved understanding of the microstructure-level processes leading to fission gas release from nuclear fuel, and to inform engineering-scale fission gas release models. The phase-field model accounts for multiple fuel grains and fission gas bubbles and tracks the local concentration of vacancies and gas atoms. The model was used to simulate the growth of grain boundary and triple junction bubbles in a hexagonal periodic 3D grain structure. The fractional coverage of the triple junctions and the number of fully saturated triple junctions (that is, triple junctions fully covered by the gas phase) was calculated, and correlations were developed between these quantities and the grain boundary coverage. The effects of initial triple junction bubble density, vacancy source strength, and bubble semi-dihedral angle on triple junction coverage and saturation were evaluated. High initial triple junction coverage and high bubble semi-dihedral angle can lead to triple junction saturation well before grain boundary percolation. The implications of these findings for engineering-scale fuel performance modeling are discussed.
机译:开发并施加了裂变气泡进化的相位场模型,以提高对导致核燃料裂变气体释放的微观结构水平过程的改进了解,并通知工程级裂变气体释放模型。相场模型占多种燃料颗粒和裂变气泡并跟踪局部空位和气体原子的浓度。该模型用于模拟六边形周期3D晶粒结构中晶界和三射起气泡的生长。计算了三交界点的分数覆盖和完全饱和三交界的数量(即,通过气相完全覆盖的三交界处),并且在这些数量和晶粒边界覆盖之间产生相关性。评价初始三结气泡密度,空位源强度和泡沫半二向二向二向二向二维角度对三重结覆盖和饱和的影响。高初始三相结覆盖率和高气泡半二偏角角度可以在晶界渗透前孔导致三重结饱和度。讨论了这些发现对工程规模燃料性能建模的影响。

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