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首页> 外文期刊>Journal of Vibration and Acoustics >Reduction of Hybrid FE-SEA Model for the Mid-Frequency Vibration of Vibro-Acoustic Systems Using Dynamic Condensation Approach
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Reduction of Hybrid FE-SEA Model for the Mid-Frequency Vibration of Vibro-Acoustic Systems Using Dynamic Condensation Approach

机译:动态冷凝法减少振动声系统中频振动的混合FE-SEA模型

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摘要

In this paper, an improved hybrid finite element (FE)-statistical energy analysis (SEA) method is proposed for the mid-frequency vibration of vibro-acoustic systems. Within the framework of the hybrid FE-SEA method, the present method reduces the size of the total dynamic matrix of a vibro-acoustic system by employing dynamic condensation to reduce the order of the dynamic matrix of the acoustic cavity. A fast algorithm is introduced to obtain the dynamic flexibility matrix of the slave degrees-of-freedom (DOFs) of the acoustic cavity FE model, thereby avoiding the direct inverse computation of a large dynamic stiffness matrix at each frequency point of interest. The first numerical example illustrates the validity and efficiency of the present method, while the convergence and accuracy analysis of the proposed method is investigated numerically by the second example.
机译:针对振动声系统的中频振动,提出了一种改进的混合有限元统计能量分析方法。在混合FE-SEA方法的框架内,本方法通过采用动态压缩来减小声腔动态矩阵的阶数,从而减小了振动声学系统的总动态矩阵的大小。引入了一种快速算法来获得声腔有限元模型的从自由度(DOF)的动态柔韧性矩阵,从而避免了在每个感兴趣的频率点上对大型动态刚度矩阵进行直接逆计算。第一个数值例子说明了本方法的有效性和有效性,而第二个例子则对所提方法的收敛性和准确性分析进行了数值研究。

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