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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Variance-based sensitivity analysis applied to the hydrogen migration and redistribution model in Bison. Part II: Uncertainty quantification and optimization
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Variance-based sensitivity analysis applied to the hydrogen migration and redistribution model in Bison. Part II: Uncertainty quantification and optimization

机译:基于方差的敏感性分析应用于北美野牛的氢迁移和再分配模型。 第二部分:不确定性量化和优化

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We demonstrate a global sensitivity and uncertainty analysis approach to quantify the impact of uncertainty in the hydrogen migration and redistribution models implemented in the U.S. Department of Energy Office of Nuclear Energy fuel performance code Bison. In this study, we provide a brief description of the physical phenomena studied and the sensitivity analysis methods used. To identify the key parameters related to the hydrogen migration and redistribution model in Bison, we study the impact of the variance of the model parameters on the amount of hydrides formed near the outer surface of the nuclear fuel cladding, where hydrides are more likely to form, under the normal operation conditions of a light water reactor. To quantify the impact of the input variance of the parameters on the output variations, we compute the variance-based indices (Sobol indices) and the Pearson correlation coefficients. The results of this work show that the activation energy for the terminal solid solubility of hydride precipitation, the hydrogen heat of transport and the activation energy for hydrogen diffusivity are the key parameters. An optimized set of these parameters was then determined as an attempt to increase the accuracy of Bison predictions by decreasing the root mean square error of the predictions versus experimental results, using a basin-hopping optimization framework. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们展示了全局敏感性和不确定分析方法,以量化不确定性在美国能源燃料绩效代码北美能源办公室实施的氢迁移和再分配模型中的影响。在这项研究中,我们提供所研究的物理现象的简要描述和所使用的灵敏度分析方法。为了识别与北野的氢迁移和再分配模型相关的关键参数,我们研究了模型参数方差对核燃料包层外表面附近形成的氢化物量的影响,其中氢化物更容易形成,在轻水反应器的正常运行条件下。为了量化参数对输出变化的输入方差的影响,我们计算基于方差的索引(Sobol指数)和Pearson相关系数。本作作品的结果表明,氢化物沉淀的末端固体溶解度的激活能量,运输氢和氢扩散率的活化能量是关键参数。然后将优化的这些参数集确定为通过降低预测与实验结果的均方根误差来提高光秃秃的预测的精度,使用盆地跳跃优化框架来提高光秃秃的预测。 (c)2019 Elsevier B.v.保留所有权利。

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