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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Study of thermodynamic properties of U1-yPuyO2 MOX fuel using classical molecular Monte Carlo simulations
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Study of thermodynamic properties of U1-yPuyO2 MOX fuel using classical molecular Monte Carlo simulations

机译:使用经典分子蒙特卡罗模拟U1-YPUYO2 MOX燃料的热力学性能研究

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The molecular Monte Carlo method, combined with the CRG interatomic potential, is used for the first time to investigate stoichiometric mixed oxides U1-yPuyO2 (with y in the range 0-1). The implementation of this Monte Carlo method for mixed oxides simulation was carried out involving two algorithms, with and without cation exchange. The use of these two Monte Carlo algorithms allowed us to test the effect of the substitutional disorder implied by the coexistence of two types of cations. Structural, thermodynamic, and mechanical properties of the stoichiometric mixed oxides fuel U1-yPuyO2 have been investigated over a wide temperature range (from 300 K to the melting temperature) and plutonium content (from 0 to 100 atom %). Our study shows that the exploration of cationic configurations through the cation exchange algorithm is required for a complete description of the mixed oxides fuel properties, especially for the atomic structural properties. Concerning thermodynamic properties, the evolution of the computed specific heat as a function of temperature exhibits one peak for all plutonium contents around 2300 K, i.e. at similar to 0.8 T-m (T-m is the melting temperature). The same behavior is observed for the linear thermal expansion coefficient. These peaks, also observed in previous studies, are related to the Bredig transition known to occur around 0.8 T-m. A good agreement between our results, experiments, and previous calculations is found for temperatures up to about 2100 K. Above this temperature, our calculations show a behavior different from experimental recommendations. (C) 2020 Elsevier B.V. All rights reserved.
机译:分子蒙特卡罗法,与CRG原子间作用势相结合,用于在第一时间(在范围0-1其中y)调查化学计量混合氧化物U1-yPuyO2。这蒙特卡罗方法混合氧化物仿真的实现进行了涉及两种算法,有和没有阳离子交换。使用这两种蒙特卡罗算法,让我们来测试由2种阳离子的共存所隐含的替代性疾病的效果。结构,热力学和化学计量混合氧化物燃料U1-yPuyO2的机械特性进行了研究在宽的温度范围(从300K到熔融温度)和钚含量(从0到100原子%)。我们的研究表明,阳离子配置的通过阳离子交换算法勘探是所必需的混合氧化物燃料特性的完整描述,特别是对原子结构特性。关于热力学性质,计算出的比热的演变作为温度显示出的函数周边2300 K,即,所有的钚含量以类似于0.8 T-M的一个峰(T-m是熔融温度)。被观察到的线性热膨胀系数相同的行为。这些峰,在以前的研究中也观察到,涉及已知发生0.8左右T-M的Bredig过渡。我们的研究结果,实验,和以前的计算之间的吻合发现了温度高达约2100 K.高于这个温度,我们的计算表明,从实验的建议行为不同。 (c)2020 Elsevier B.v.保留所有权利。

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