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首页> 外文期刊>Journal of Materials Science >Critical assessment of UO _2 classical potentials for thermal conductivity calculations
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Critical assessment of UO _2 classical potentials for thermal conductivity calculations

机译:对UO _2经典电势的临界评估,用于热导率计算

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摘要

This article reviews the thermal transport properties as predicted by 26 classical interatomic potentials for uranium dioxide, an important nuclear fuel material, determined using a lattice dynamics-based method. The calculations reveal structural instabilities for multiple potentials, as well as the presence of lower energy structures even for potentials in which the fluorite structure is stable. Both rigid atom and shell model potentials are considered, and general trends in their representation of the thermal conductivity are identified. Reviewed classical potentials predict thermal conductivity in the range of ~5-22 W/mK, compared to the experimental value of 8.9 W/mK. The quality of the anharmonicity correction that is based on the correlation between thermal expansion and thermal conductivity is investigated, and it found to generally improve thermal conductivities results.
机译:本文回顾了使用基于晶格动力学的方法测定的26种经典铀原子间势所预测的热输运性质,即二氧化铀是一种重要的核燃料材料。该计算揭示了多个电势的结构不稳定性,以及甚至对于萤石结构稳定的电势也存在较低能量的结构。考虑了刚性原子和壳模型电势,并确定了它们在热导率表示中的一般趋势。复习的经典电势预测的导热系数约为5-22 W / mK,而实验值为8.9 W / mK。研究了基于热膨胀和热导率之间相关性的非谐波校正的质量,发现它总体上改善了热导率结果。

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