The First-Order Comprehensive Sensitivity Analysis Methodology (1st-CASAM) for Scalar-Valued Responses: I. Theory

D. Cacuci
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引用次数: 3

Abstract

This work presents the first-order comprehensive adjoint sensitivity analysis methodology (1st-CASAM) for computing efficiently, exactly, and exhaustively, the first-order sensitivities of scalar-valued responses (results of interest) of coupled nonlinear physical systems characterized by imprecisely known model parameters, boundaries and interfaces between the coupled systems. The 1st-CASAM highlights the conclusion that response sensitivities to the imprecisely known domain boundaries and interfaces can arise both from the definition of the system’s response as well as from the equations, interfaces and boundary conditions defining the model and its imprecisely known domain. By enabling, in premiere, the exact computations of sensitivities to interface and boundary parameters and conditions, the 1st-CASAM enables the quantification of the effects of manufacturing tolerances on the responses of physical and engineering systems. Ongoing research will generalize the methodology presented in this work, aiming at computing exactly and efficiently higher-order response sensitivities for coupled systems involving imprecisely known interfaces, parameters, and boundaries.
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标量值响应的一阶综合灵敏度分析方法(1st CASAM):I.理论
本文提出了一阶综合伴随灵敏度分析方法(1st-CASAM),用于高效、准确、详尽地计算以模型参数、耦合系统之间的边界和界面不精确为特征的耦合非线性物理系统的标量值响应(感兴趣的结果)的一阶灵敏度。第一次CASAM强调了这样一个结论,即对不精确已知的域边界和界面的响应敏感性既可以来自系统响应的定义,也可以来自定义模型及其不精确已知域的方程、界面和边界条件。通过首次精确计算界面和边界参数及条件的灵敏度,第一个CASAM能够量化制造公差对物理和工程系统响应的影响。正在进行的研究将推广这项工作中提出的方法,旨在准确有效地计算涉及不精确已知界面、参数和边界的耦合系统的高阶响应灵敏度。
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