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Parameters design of a nonlinear membrane absorber applied to 3D acoustic cavity based on targeted energy transfer (TET)

机译:基于目标能量转移(TET)的3D声腔非线性膜吸收器的参数设计

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The targeted energy transfer (TET) phenomenon is demonstrated and analyzed between an acoustic medium inside a parallelepiped cavity and a thin viscoelastic membrane that is mounted on one wall of the cavity and that is working as a nonlinear absorber or a nonlinear energy sink (NES). Based on a two degrees-of-freedom (DOF) system, which is comprised by an acoustic mode of 3D acoustic cavity and a nonlinear membrane NES, the desired working zone for the membrane NES is defined and the two thresholds of the zone are obtained. In this paper, we investigate a parameter analysis of a nonlinear membrane absorber based on TET technique to design the NES. The physical parameters of the membrane and the place of the membrane on the wall of the cavity are studied. It can finally allow us to determine where is the better place for the membrane NES and which parameter affects mainly the desired working zone for the membrane NES that has to be used for reducing low frequency resonances inside a given acoustic cavity. Numerical simulations are preformed to validate the TET phenomenon and the results of the parameter analysis. (C) 2016 Institute of Noise Control Engineering.
机译:在平行六面体腔体内部的声学介质与安装在腔体壁上并用作非线性吸收器或非线性能量吸收器(NES)的粘弹性薄膜之间,演示并分析了目标能量转移(TET)现象。 。基于由3D声腔和非线性膜NES的声模组成的两自由度(DOF)系统,为膜NES定义了所需的工作区域并获得了该区域的两个阈值。在本文中,我们研究了基于TET技术的非线性膜吸收器的参数分析,以设计NES。研究了膜的物理参数以及膜在腔壁上的位置。最终,它可以使我们确定在哪里更好地放置膜NES,哪个参数主要影响膜NES的所需工作区域,必须使用该区域来减少给定声腔内的低频共振。进行了数值模拟,以验证TET现象和参数分析的结果。 (C)2016噪声控制工程研究所。

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