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ON THE IMPORTANCE OF SECOND-ORDER RESPONSE SENSITIVITIES TO NUCLEAR DATA IN REACTOR PHYSICS UNCERTAINTY ANALYSIS

机译:关于二阶响应敏感性对反应物理不确定性分析中的二阶响应敏感度对核数据的重要性

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This invited keynote presentation compares the relative importance of 1~(st)-order versus 2~(nd)-order sensitivities of the leakage response of an OECD/NEA benchmark (polyethylene-reflected plutonium sphere) to the nuclear data characterizing this benchmark. The imprecisely known parameters underlying the neutron transport computational model for this benchmark include 180 group-averaged total microscopic cross sections, 21600 group-averaged scattering microscopic cross sections, 60 parameters describing the fission process, 30 parameters describing the fission spectrum, 10 parameters describing the system’s sources, and 6 isotopic number densities. Thus, this benchmark comprises 21886 1st-order sensitivities of the leakage response with respect to the model parameters, and 478,996,996 2nd-order sensitivities, of which 239,509,441 are distinct. The exact deterministic computation of all of these 1st- and 2nd-order sensitivities was made possible by the application of the Second-Order Adjoint Sensitivity Analysis Methodology (2~(nd)-ASAM) developed by Cacuci. Thousands (out of the 32 400 elements) of the 2~(nd)-order sensitivities of the leakage response with respect to the total cross sections turned out to be significantly larger than the largest corresponding 1st-order sensitivities, contrary to some previously held beliefs in the reactor physics community. Hence, it will be shown that neglecting the 2nd-order sensitivities to total cross sections would cause very large non-conservative errors by under-reporting the response’s variance and expected value. The 2nd-order sensitivities also cause the response distribution to be skewed towards positive values relative to the expected value, which, in turn, is significantly larger than the computed value of the leakage response. The result presented in this paper also underscore the need for obtaining reliable cross section covariance data, which are not available at this time.
机译:这邀请的主题演示表比较了OECD / NEA基准(聚乙烯反射钚球体)对特征这一基准的核数据的漏响应的1〜(ST)的相对重要性与2〜(nd)的敏感性。用于该基准测试的中子传输计算模型的不切实际的已知参数包括180个群平均总微观横截面,21600组平均散射微观横截面,描述裂变过程的60参数,描述裂变谱的30个参数,10参数描述了10个参数系统的来源和6个同位素数量密度。因此,该基准测试包括关于模型参数的泄漏响应的21886第1次敏感性,以及478,996,996个2nd令人感应性,其中239,509,441是不同的。通过应用由Cacuci开发的二阶伴奏灵敏度分析方法(2〜(nd)-asam),可以实现所有这一项和2nd敏感性的确切确定性计算。对于总横截面的泄漏响应的2〜(ND)呼吸敏感性的数千(32个400元素)结果明显大于最大的相应的第1次敏感性,与先前持有的相反反应堆物理界的信仰。因此,将显示忽略截至总横截面的2nd级敏感性会通过报告响应的方差和预期值来引起非常大的非保守误差。 2ND级敏感性也使响应分布相对于预期值倾斜朝向正值,又大于泄漏响应的计算值。本文提出的结果还强调了获取此时不可用的可靠横截面协方差数据的必要性。

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