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UNCERTAINTY AND SENSITIVITY ANALYSIS IN CRITICALITY CALCULATIONS WITH PERTURBATION THEORY AND SAMPLING

机译:扰动理论与抽样临界计算中的不确定性与敏感性分析

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The paper presents uncertainty and sensitivity analyses in criticality calculations with respect to nuclear data performed with the SCALE module TSUNAMI based on general perturbation theory, and the tools SAMPLER, to be available with the next SCALE release, and XSUSA; the latter are based on a random sampling approach. The investigation mainly uses one-dimensional systems where computation times are low; nevertheless, results are given also for critical assemblies in three-dimensional representation. Results from the three tools are compared for a variety of output quantities, namely multiplication factors, reactivity effects, and one-group cross sections. The arrangements under consideration cover a wide variety of fuel and coolant materials with very different neutron spectra. For all systems and all output quantities considered, excellent agreement is obtained with all the tools. The sampling-based results are practically identical; deviations between the TSUNAMI and the sampling-based results are generally very low, too, with rare exceptions where the deviations are slightly larger than the 95% confidence interval of the sampling methods. In total, the results from the different methods appear to be completely consistent.
机译:本文介绍了基于普通扰动理论的规模模块海啸进行了核数据的关键性计算中的不确定性和敏感性分析,以及工具采样器,可用下一个比例释放和Xsusa;后者基于随机抽样方法。调查主要使用计算时间低的一维系统;然而,结果也用于三维表示中的关键组件。三种工具的结果与各种输出量,即乘法因子,反应性效应和单组横截面进行比较。正在考虑的安排涵盖了各种各样的燃料和冷却剂材料,具有非常不同的中子谱。对于所有系统和所有输出量,所有工具都可以获得优秀的协议。基于采样的结果实际上是相同的;海啸与基于采样的结果之间的偏差也通常非常低,罕见的例外情况下,偏差略大于采样方法的95%置信区间。总共,来自不同方法的结果似乎是完全一致的。

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