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首页> 外文期刊>Journal of Vibration and Acoustics >Structural-Acoustic Coupling Analysis of Two Cavities Connected by Boundary Structures and Small Holes
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Structural-Acoustic Coupling Analysis of Two Cavities Connected by Boundary Structures and Small Holes

机译:边界结构与小孔连接的两个空腔的结构声耦合分析

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摘要

In some passenger vehicles, unexpected acoustic modes in the low-frequency range may be observed that cannot be explained by the conventional vibro-acoustic coupling analysis. It is because these methods only use the dynamic characteristics of a vehicle structure and its compartment cavity. However, some small holes or gaps existing at the boundaries between the compartment cavity and the trunk cavity of the vehicles change the modal characteristics of a coupled system. In this paper, a new analytical method is presented to investigate the structural-acoustic coupling characteristics of two cavities connected by small holes and in-between boundary structures. Small holes are modeled as an equivalent mass-spring-damper system in the analysis. A theoretical formulation for vibro-acoustic characteristics of this system is made, and the modal expansion method is used to obtain eigenvalues and their mode shapes. The validity of the proposed method is successfully examined by comparing the results of the analytical predictions with those of experiments.
机译:在某些乘用车中,可能会观察到低频范围内的意外声学模式,这是常规的振动声耦合分析无法解释的。这是因为这些方法仅利用了车辆结构及其车厢腔的动态特性。然而,在车辆的车厢腔和行李箱腔之间的边界处存在的一些小孔或间隙改变了耦合系统的模态特性。本文提出了一种新的分析方法,以研究由小孔和边界结构之间连接的两个空腔的结构-声耦合特性。在分析中,将小孔建模为等效的质量-弹簧-阻尼器系统。对该系统的振动声特性进行了理论上的阐述,并采用模态展开法获得了特征值及其模态形状。通过将分析预测结果与实验结果进行比较,成功地检验了所提方法的有效性。

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