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Stochastic Response Analysis of a Built-Up Vibro-Acoustic System with Parameter Uncertainties

机译:具有参数不确定性的内置振动声系统的随机响应分析

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In this paper, the quantification of uncertainty effects on stochastic responses of interior vibro-acoustic interaction systems with moderate geometry complexities and uncertain design parameters is investigated. A variational-based stochastic model is developed to predict the vibro-acoustic responses submitted to probabilistic parameters, and it is illustrated by application to a built-up system consisting of an irregular acoustic cavity backed up a plate assembly. The model is derived from the combination of the multi-domain Rayleigh Ritz approach, used to solve the deterministic structural acoustic equations, together with the generalized polynomial chaos expansion (gPCE) to represent propagation of uncertainty and estimate the statistical characteristics of the responses. Benchmark comparisons are made with the Monte Carlo simulations (MCS) to demonstrate the tremendous computational advantage of the present methodology. Uncertainty analysis is performed to ascertain the influence of random parameters on responses. The results reveal that system uncertainty is significant enough to affect the vibro-acoustic behaviors and hence the consideration of input uncertainties is necessary in analyses and designs to ensure the sustainable system performance.
机译:本文研究了具有中等几何复杂性和不确定设计参数的内部振动声相互作用系统对内部振动声相互作用系统的不确定反应的定量。开发了一种变分的随机模型以预测提交给概率参数的振动声反应,并且通过应用于由备份板组件的不规则声腔组成的内置系统来说明。该模型源自多域瑞利丽思方法的组合,用于解决确定性结构声学方程,与广义多项式混沌扩展(GPCE)一起表示不确定性的传播和估计响应的统计特征。基准比较是用蒙特卡罗模拟(MCS)进行的,以证明当前方法的巨大计算优势。进行不确定性分析以确定随机参数对响应的影响。结果表明,系统不确定性足以影响振动声学行为,因此在分析和设计中需要考虑输入不确定性,以确保可持续的系统性能。

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