用CINEL代码生成热散射定律

G. Noguere, S. Xu, L. Desgrange, J. Boucher, E. Bourasseau, G. Carlot, A. Filhol, J. Ollivier, T. Hansen, V. Nassif, I. Ouente Orench, C. Colin, L. Laversenne, J. Zanotti, Q. Berrod
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引用次数: 1

摘要

热散射定律(TSL)考虑了材料中结合的同位素的晶体结构和原子运动。本文介绍了CINEL代码,该代码用于为核反应堆中感兴趣的固体、液体和自由气体材料生成温度相关的TSL。CINEL能够在高斯-非相干近似下从材料的声子态密度(PDOS)计算出TSL。PDOS可以通过理论方法(例如从头算密度泛函理论和分子动力学)或实验结果获得。在这项工作中,PDOS在ENDF/BVIII中提出。0和NJOY-NCrystal库用于数值验证目的。CINEL结果与这些数据库中报告的结果一致,即使在具有新混合弹性格式的TSL的特定情况下也是如此。Python使用JupyterLab接口提供的编码灵活性允许研究文献中报道的物理模型的局限性,例如UO2的四位点模型,Fm3m结构中氧原子的非调和行为,Zry4样品中的织体以及液态水的旋转-平移扩散模型中的跳跃修正。图形处理单元(GPU)的使用是在几分钟内执行计算的必要条件。CINEL代码的性能用具有Fm3m结构的锕系氧化物(UO2, ThO2, NpO2和PuO2),低富集燃料(UMo),包层(Zry4)和减速剂(H2O,特别强调冰)的结果来说明。
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Generation of thermal scattering laws with the CINEL code
The thermal scattering laws (TSL) take into account the crystalline structure and atomic motions of isotopes bound in materials. This paper presents the CINEL code, which was developed to generate temperature-dependent TSL for solid, liquid and free gas materials of interest for nuclear reactors. CINEL is able to calculate TSL from the phonon density of states (PDOS) of materials under the Gaussian-Incoherent approximations. The PDOS can be obtained by using theoretical approaches (e.g., ab initio density functional theory and molecular dynamics) or experimental results. In this work, the PDOS presented in the ENDF/BVIII.0 and NJOY-NCrystal libraries were used for numerical validation purposes. The CINEL results are in good agreement with those reported in these databases, even in the specific cases of TSL with the newly mixed elastic format. The coding flexibility offered by Python using the JupyterLab interface allowed to investigate limits of physical models reported in the literature, such as a four-site model for UO2, anharmonic behaviors of oxygen atoms bound in a Fm3m structure, texture in Zry4 samples and jump corrections in a roto-translational diffusion model for liquid water. The use of graphic processing units (GPU) is a necessity to perform calculations in a few minutes. The performances of the CINEL code is illustrated with the results obtained on actinide oxides having a Fm3m structure (UO2, ThO2, NpO2 and PuO2), low enriched fuel (UMo), cladding (Zry4) and moderators (H2O with a specific emphasis on ice).
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