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Validation of nuclear models used in space radiation shielding applications

机译:验证用于空间辐射屏蔽应用的核模型

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A program of verification and validation has been undertaken to assess the applicability of models to space radiation shielding applications and to track progress as these models are developed over time. In this work, simple validation metrics applicable to testing both model accuracy and consistency with experimental data are developed. The developed metrics treat experimental measurement uncertainty as an interval and are therefore applicable to cases in which epistemic uncertainty dominates the experimental data. To demonstrate the applicability of the metrics, nuclear physics models used by NASA for space radiation shielding applications are compared to an experimental database consisting of over 3600 experimental cross sections. A cumulative uncertainty metric is applied to the question of overall model accuracy, while a metric based on the median uncertainty is used to analyze the models from the perspective of model development by examining subsets of the model parameter space.
机译:已经进行了验证和确认计划,以评估模型在空间辐射屏蔽应用中的适用性,并随着这些模型随着时间的发展而跟踪进展。在这项工作中,开发了适用于测试模型准确性和与实验数据的一致性的简单验证指标。所开发的度量标准将实验测量不确定性视为一个间隔,因此适用于认知不确定性主导实验数据的情况。为了证明这些指标的适用性,将美国宇航局用于太空辐射屏蔽应用的核物理模型与一个由3600多个实验截面组成的实验数据库进行了比较。累积不确定性度量应用于总体模型准确性问题,而基于中位数不确定性的度量则用于通过检查模型参数空间的子集从模型开发的角度分析模型。

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