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An analytical model for bandlimited response of acoustic-structural coupled systems. I. Direct sound field excitation

机译:声学-结构耦合系统的带限响应分析模型。一,直接声场激励

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An analytical model is proposed in this paper for predicting time-averaged energies of boundary structures and enclosed sound field. The sound field is directly driven by an acoustic source and the structures are excited through acoustic-structural coupling. The present model is based on the classical modal coupling method but is developed in such a way to improve the computational efficiency in estimating the bandlimited response of acoustic-structural coupled systems particularly in the medium frequency range where a large number of acoustic and/or structural modes is involved. In this frequency range, one often has to deal with manipulation of large complex matrices in order to obtain full mathematical solutions to the system response using the classical modal coupling method. However, this is avoided if the present bandlimited model is used. This paper describes the mathematical development of the model. Numerical examples for a panel-cavity system are presented and the proposed model is compared with the classical modal coupling method in terms of computational efficiency and accuracy in the prediction of the system energies.
机译:本文提出了一种分析模型,用于预测边界结构和封闭声场的时均能量。声场由声源直接驱动,并且结构通过声-结构耦合被激发。本模型基于经典的模态耦合方法,但是以提高估计声固耦合系统的带限响应的计算效率的方式开发,特别是在大量声学和/或结构声的中频范围内模式涉及。在此频率范围内,通常必须处理大型复杂矩阵,以便使用经典的模态耦合方法获得系统响应的完整数学解。但是,如果使用当前的带宽限制模型,则可以避免这种情况。本文描述了该模型的数学发展。给出了板腔系统的数值示例,并将所提出的模型与经典模态耦合方法进行了比较,在计算效率和系统能量预测的准确性方面。

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