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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Parametric design sensitivity analysis of high-frequency structural-acoustic problems using energy finite element method
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Parametric design sensitivity analysis of high-frequency structural-acoustic problems using energy finite element method

机译:高频结构声学问题的参数设计灵敏度分析的能量有限元方法

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摘要

A design sensitivity analysis of high-frequency structural-acoustic problems is formulated and presented. The energy finite element method (EFEM) is used to predict structural-acoustic responses in the high frequency range. where the coupling between structural junctions and the structural-acoustic interface are modelled using power transfer coefficients. The continuum design sensitivity formulation is derived from the governing equation of EFEM and the discrete method is applied in the variation of the structural-structural and structural-acoustic coupling matrices. The direct differentiation and adjoint variable method are both developed for the sensitivity analysis, where the difficult), of the adjoint variable method is overcome by solving a transposed system equation. Parametric design variables such as panel thickness and material damping are considered for sensitivity analysis. and numerical sensitivity results show excellent agreement as compared to analytical finite difference results. Copyright (C) 2004 John Wiley Sons, Ltd.
机译:提出并提出了高频结构声学问题的设计灵敏度分析。能量有限元方法(EFEM)用于预测高频范围内的结构声响应。其中,结构交界处和结构声界面之间的耦合是使用功率传递系数建模的。从EFEM的控制方程中得出连续设计灵敏度公式,并将离散方法应用于结构-结构和结构-声耦合矩阵的变化。同时开发了直接微分法和伴随变量法,用于灵敏度分析,其中,通过求解转置系统方程可以克服伴随变量法的困难。敏感性分析考虑了参数设计变量,例如面板厚度和材料阻尼。数值灵敏度结果与分析有限差分结果相比具有极好的一致性。版权所有(C)2004 John Wiley Sons,Ltd.

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