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Coupling effects of boundary restraining stiffness and tension force on sound attenuation of a cavity-backed membrane duct silencer

机译:边界约束刚度和张力对腔背式膜管消声器声音衰减的耦合作用

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In this paper, the vibro-acoustic model for predicting the sound attenuation performance of a cavity backed membrane duct silencer is established via an improved Fourier series method, in which the membrane vibration and cavity acoustic fields are both constructed as the superposition of standard Fourier series and supplementary polynomials to tackle the differential discontinuity issues encountered at such elastic edge restraint and/or coupling interface. The energy formulation is employed to describe the whole structural-acoustic interaction among the membrane vibration, cavity sound field as well as the sound propagation in duct environment. The coupled system response under the upstream plane wave excitation is then solved through the Rayleigh-Ritz procedure. Numerical examples are then presented to illustrate the correctness and effectiveness of the proposed model. The predicted results from the current method are compared with those derived from other approach and experimental measurement available in literature, satisfactory agreements are observed for these validation studies. Based the model established, the coupling effects of boundary restraining stiffness and tensile force on the sound attenuation performance of such cavity-backed membrane duct silencer are discussed and analyzed, the results show that there exists an optimal window of these two parameters matching. This work can provide some useful insight for the effective design of such membrane silencing system. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文通过改进的傅里叶级数方法建立了预测腔体背衬式膜导管消声器声衰减性能的振动声学模型,其中膜振动和腔体声场均作为标准傅里叶级数的叠加而建立。以及多项式,以解决在这种弹性边缘约束和/或耦合界面处遇到的微分不连续性问题。能量公式用于描述膜振动,腔体声场以及管道环境中的声传播之间的整个结构-声相互作用。然后通过瑞利-里兹程序求解上游平面波激励下的耦合系统响应。数值例子说明了所提模型的正确性和有效性。将当前方法的预测结果与其他方法和文献中提供的实验测量结果进行比较,对于这些验证研究观察到令人满意的协议。在建立模型的基础上,讨论并分析了边界约束刚度和拉力对这种背腔式膜管消声器的声衰减性能的耦合作用,结果表明,这两个参数的匹配存在一个最佳窗口。这项工作可以为这种膜消音系统的有效设计提供一些有用的见识。 (C)2016 Elsevier Ltd.保留所有权利。

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