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The use of modal tailoring to minimize the radiated sound power of vibrating shells: Theory and experiment

机译:使用模态剪裁以最小化振动壳的辐射声功率:理论和实验

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摘要

A numerical design tool is presented for minimizing radiated sound power from a vibrating shell structure using a material tailoring approach. A finite element method using shell elements is used to predict the vibration response of the shell. The sound power generated by the shell under a harmonic force input is computed with a lumped parameter/wave superposition method. A simulated annealing algorithm is used to find optimal point mass distributions for minimum sound power. It is shown that optimal designs are achieved through converting certain mode shapes of the shell into "weak radiators", i.e., modes with low net volume velocities. Close agreement is found between predicted noise levels and experimental measurements, thus providing initial validation of the method as an effective means of finding optimal structural designs for minimum sound power. (C) 1998 Academic Press. [References: 25]
机译:提出了一种数值设计工具,可使用材料定制方法将振动壳体结构的辐射声功率降至最低。使用壳单元的有限元方法用于预测壳的振动响应。用集总参数/波叠加法计算壳体在谐波力输入下产生的声功率。模拟退火算法用于找到最小声功率的最佳点质量分布。结果表明,通过将壳体的某些模式形状转换为“弱辐射体”,即具有低净体积速度的模式,可以实现最佳设计。在预测的噪声水平和实验测量值之间发现了紧密的一致性,从而提供了对该方法的初步验证,作为寻找最小声功率的最佳结构设计的有效手段。 (C)1998年学术出版社。 [参考:25]

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