Third Order Adjoint Sensitivity and Uncertainty Analysis of an OECD/NEA Reactor Physics Benchmark: II. Computed Sensitivities

R. Fang, D. Cacuci
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引用次数: 9

Abstract

This work presents the results of the exact computation of (180)3 = 5,832,000 third-order mixed sensitivities of the leakage response of a polyethylene-reflected plutonium (PERP) experimental benchmark with respect to the benchmark’s 180 microscopic total cross sections. This computation was made possible by applying the Third-Order Adjoint Sensitivity Analysis Methodology developed by Cacuci. The numerical results obtained in this work revealed that many of the 3rd-order sensitivities are significantly larger than their corresponding 1st- and 2nd-order ones, which is contrary to the widely held belief that higher-order sensitivities are all much smaller and hence less important than the first-order ones, for reactor physics systems. In particular, the largest 3rd-order relative sensitivity is the mixed sensitivity of the PERP leakage response with respect to the lowest energy-group (30) total cross sections of 1H (“isotope 6”) and 239Pu (“isotope 1”). These two isotopes are shown in this work to be the two most important parameters affecting the PERP benchmark’s leakage response. By comparison, the largest 1st-order sensitivity is that of the PERP leakage response with respect to the lowest energy-group total cross section of isotope 1H, having the value , while the largest 2nd-order sensitivity is . The 3rd-order sensitivity analysis presented in this work is the first ever such analysis in the field of reactor physics. The consequences of the results presented in this work on the uncertainty analysis of the PERP benchmark’s leakage response will be presented in a subsequent work.
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OECD/NEA反应堆物理基准的三阶伴随灵敏度和不确定性分析:2。计算敏感性
本文介绍了聚乙烯反射钚(PERP)实验基准泄漏响应的(180)3 = 5,832,000三阶混合灵敏度相对于基准的180个微观总截面的精确计算结果。这种计算是通过应用cacucci提出的三阶伴随灵敏度分析方法实现的。在这项工作中获得的数值结果表明,许多三阶灵敏度明显大于相应的一阶和二阶灵敏度,这与人们普遍认为的高阶灵敏度都要小得多,因此比一阶灵敏度不重要的观点相反,对于反应堆物理系统。特别是,最大的三阶相对灵敏度是PERP泄漏响应相对于1H(“同位素6”)和239Pu(“同位素1”)的最低能族(30)总截面的混合灵敏度。这两种同位素是影响PERP基准泄漏响应的两个最重要的参数。相比之下,PERP泄漏响应对同位素1H最低能族总截面的一阶灵敏度最大,为,二阶灵敏度最大为。本文中提出的三阶灵敏度分析是反应堆物理领域的首次此类分析。本工作中提出的结果对PERP基准泄漏响应的不确定性分析的影响将在后续工作中提出。
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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