A computer code for optimizing the neutronics model parameters based on results of reactor physics experiments

A. Andrianov, O. Andrianova, Yury A. Korovin, Iliya S. Kuptsov, Anastasiya A. Spiridonova
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引用次数: 0

Abstract

The paper describes in brief the functional capabilities of a computer code for optimizing the neutronics model parameters (neutron data, technological parameters, and their covariance matrices) based on results of reactor physics experiments using conditional nonlinear multi-parameter optimization algorithms. The code’s application scope includes adjustment of neutron constants, technological parameters and their covariance matrices based on integral measurement results, formulation of requiremen117198ts with respect to the neutron data uncertainties for achieving the target accuracies in calculation of the reactor functionals, and estimation of the reactor performance prediction accuracy, as well as the informativity and similarity metrics of reactor physics experiments with respect to each other and in relation to the target reactor system. The paper also considers some examples of using the code to refine the neutronics models of nuclear reactor and fuel cycle systems based on results of reactor physics experiments.
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根据反应堆物理实验结果优化中子模型参数的计算机代码
本文简要介绍了基于反应堆物理实验结果,利用条件非线性多参数优化算法对中子模型参数(中子数据、技术参数及其协方差矩阵)进行优化的计算机代码的功能。该代码的应用范围包括:根据积分测量结果调整中子常数、技术参数及其协方差矩阵;制定与中子数据不确定性相关的要求 117198t,以实现反应堆功能计算的目标精度;估算反应堆性能预测精度;以及反应堆物理实验相互之间以及与目标反应堆系统相关的信息性和相似性指标。论文还考虑了根据反应堆物理实验结果使用该代码完善核反应堆和燃料循环系统中子模型的一些实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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