首页> 外文会议>International conference on the physics of reactors;PHYSOR 2012 >STATISTICAL UNCERTAINTY ANALISIS APPLIED TO THE DRAGONv4 CODE LATTICE CALCULATIONS AND BASED ON JENDL-4 COVARIANCE DATA
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STATISTICAL UNCERTAINTY ANALISIS APPLIED TO THE DRAGONv4 CODE LATTICE CALCULATIONS AND BASED ON JENDL-4 COVARIANCE DATA

机译:基于JENDL-4协方差数据的DRAGONv4代码格计算中的统计不确定性分析

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In this paper, multi-group microscopic cross-section uncertainty is propagated through the DRAGON (Version 4) lattice code, in order to perform uncertainty analysis on k_∞and 2-group homogenized macroscopic cross-sections predictions. A statistical methodology is employed for such purposes, where cross-sections of certain isotopes of various elements belonging to the 172 groups DRAGLIB library format, are considered as normal random variables. This library is based on JENDL-4 data, because JENDL-4 contains the largest amount of isotopic covariance matrixes among the different major nuclear data libraries. The aim is to propagate multi-group nuclide uncertainty by running the DRAGONv4 code 500 times, and to assess the output uncertainty of a test case corresponding to a 17×17 PWR fuel assembly segment without poison. The chosen sampling strategy for the current study is Latin Hypercube Sampling (LHS). The quasi-random LHS allows a much better coverage of the input uncertainties than simple random sampling (SRS) because it densely stratifies across the range of each input probability distribution. Output uncertainty assessment is based on the tolerance limits concept, where the sample formed by the code calculations infers to cover 95% of the output population with at least a 95% of confidence. This analysis is the first attempt to propagate parameter uncertainties of modern multi-group libraries, which are used to feed advanced lattice codes that perform state of the art resonant self-shielding calculations such as DRAG0Nv4.
机译:本文通过DRAGON(第4版)晶格代码传播多组微观截面的不确定度,以便对k_∞和2组均化的宏观截面预测进行不确定性分析。为此目的采用统计方法,其中将属于172组DRAGLIB库格式的各种元素的某些同位素的横截面视为正常随机变量。该库基于JENDL-4数据,因为JENDL-4包含不同主要核数据库中最多的同位素协方差矩阵。目的是通过运行DRAGONv4代码500次来传播多组核素不确定性,并评估对应于无毒17×17 PWR燃料组件段的测试用例的输出不确定性。当前研究选择的抽样策略是拉丁超立方体抽样(LHS)。与简单随机抽样(SRS)相比,准随机LHS可以更好地覆盖输入不确定性,因为它在每个输入概率分布的范围内进行了密集分层。输出不确定性评估基于公差极限概念,其中通过代码计算形成的样本推断出至少95%的置信度可以覆盖95%的输出总体。这种分析是传播现代多组库参数不确定性的首次尝试,该库用于馈送执行最新的共振自屏蔽计算(例如DRAG0Nv4)的高级晶格代码。

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