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PSI Methodologies for Nuclear Data Uncertainty Propagation with CASMO-5M and MCNPX: Results for OECD/NEA UAM Benchmark Phase Ⅰ

机译:利用CASMO-5M和MCNPX进行核数据不确定性传播的PSI方法:OECD / NEA UAM基准第一阶段的结果

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摘要

Capabilities for uncertainty quantification (UQ) with respect to nuclear data have been developed at PSI in the recent years and applied to the UAM benchmark. The guiding principle for the PSI UQ development has been to implement nonintrusive "black box" UQ techniques in state-of-the-art, production-quality codes used already for routine analyses. Two complimentary UQ techniques have been developed thus far: (ⅰ) direct perturbation (DP) and (ⅱ) stochastic sampling (SS). The DP technique is, first and foremost, a robust and veusatile sensitivity coefficient calculation, applicable to all types of input and output. Using standard uncertainty propagation, the sensitivity coefficients are folded with variance/covariance matrices (VCMs) leading to a local first-order UQ method. The complementary SS technique samples uncertain inputs according to their joint probability distributions and provides a global, all-order UQ method. This paper describes both DP and SS implemented in the lattice physics code CASMO-5MX (a special PSI-modified version of CASMO-5M) and a preliminary SS technique implemented in MCNPX, routinely used in criticality safety and fluence analyses. Results are presented for the UAM benchmark exercises Ⅰ-1 (cell) and Ⅰ-2 (assembly).
机译:近年来,PSI已开发出核数据不确定性量化(UQ)的功能,并将其应用于UAM基准。 PSI UQ开发的指导原则是,以已经用于例行分析的最先进的生产质量代码实施非侵入式“黑匣子” UQ技术。迄今为止,已经开发了两种互补的UQ技术:(ⅰ)直接扰动(DP)和(ⅱ)随机采样(SS)。首先,DP技术是一种鲁棒且敏感的灵敏度系数计算,适用于所有类型的输入和输出。使用标准不确定性传播,灵敏度系数与方差/协方差矩阵(VCM)折叠在一起,从而产生局部一阶UQ方法。补充SS技术根据不确定输入的联合概率分布对不确定输入进行采样,并提供了一种全局的,全阶UQ方法。本文描述了用晶格物理学代码CASMO-5MX(CASMO-5M的特殊PSI修改版本)实现的DP和SS,以及用MCNPX实现的常规SS技术(通常用于临界安全性和注量分析)。给出了UAM基准练习Ⅰ-1(单元)和Ⅰ-2(组装)的结果。

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  • 来源
    《Science and technology of nuclear installation》 |2013年第1期|549793.1-549793.15|共15页
  • 作者单位

    Laboratory for Reactor Physics Systems Behaviour, Paul Scherrer Institut, 5232 Villigen, Switzerland;

    Laboratory for Reactor Physics Systems Behaviour, Paul Scherrer Institut, 5232 Villigen, Switzerland;

    Laboratory for Reactor Physics Systems Behaviour, Paul Scherrer Institut, 5232 Villigen, Switzerland;

    Laboratory for Reactor Physics Systems Behaviour, Paul Scherrer Institut, 5232 Villigen, Switzerland;

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