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首页> 外文期刊>International journal for uncertainty quantifications >AN OVERVIEW OF NONINTRUSIVE CHARACTERIZATION, PROPAGATION, AND SENSITIVITY ANALYSIS OF UNCERTAINTIES IN COMPUTATIONAL MECHANICS
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AN OVERVIEW OF NONINTRUSIVE CHARACTERIZATION, PROPAGATION, AND SENSITIVITY ANALYSIS OF UNCERTAINTIES IN COMPUTATIONAL MECHANICS

机译:计算力学中非侵入性的非定性,传播和敏感性分析概述

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摘要

In this paper, we offer a short overview of a number of methods that have been reported in the computational-mechanics literature for quantifying uncertainties in engineering applications. Within a probabilistic framework, we describe the characterization of uncertainties using mathematical statistics methods, the propagation of uncertainties through computational models using either Monte Carlo sampling or stochastic expansion methods, and the sensitivity analysis of uncertainties using variance- and differentiation-based methods. We restrict our attention to nonintrusive methods that can be implemented as wrappers around existing computer programs, thus requiring no modification of the source code. We include some recent advances in the propagation and sensitivity analysis of uncertainties that are characterized by arbitrary probability distributions that may exhibit statistical dependence. Finally, we demonstrate the methods integrated in the proposed overview through a nonlinear engineering application relevant to metal forming.
机译:在本文中,我们简要概述了计算力学文献中报告的用于量化工程应用中不确定性的多种方法。在概率框架内,我们使用数学统计方法描述不确定性的特征,使用蒙特卡洛采样或随机扩展方法通过计算模型传播不确定性,并使用基于方差和微分的方法对不确定性进行敏感性分析。我们将注意力集中在可以作为现有计算机程序的包装器实现的非侵入性方法上,因此不需要修改源代码。我们在不确定性的传播和敏感性分析中包括了一些最新进展,这些不确定性的特征在于可能表现出统计依赖性的任意概率分布。最后,我们通过与金属成型相关的非线性工程应用论证了建议的概述中集成的方法。

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