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Structural-acoustic optimization of sandwich cylindrical shells for minimum interior sound transmission

机译:夹层圆柱壳的结构声学优化,可最大程度地减少内部声音传递

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摘要

This paper presents an optimization study of cylindrical sandwich shells to minimize the transmitted sound into the interior induced by the exterior acoustic excitations. The boundary elements and finite elements are, respectively, used to model the interior and exterior acoustics and the vibration of the shell. The design parameters of the optimization are the reinforcement angles of the orthotropic composite materials of the skins and core. The sensitivity analysis of the objective function with respect to the design variables is computed by the adjoint-variable technique. The optimizations of the shell at a single frequency and in a band of frequencies are investigated. From the promising optimization results it is seen that the reinforcement angles in the composite sandwich layers are effective structural design parameters to minimize the sound transmission into the interior without giving up the structural rigidity, particularly at low frequencies where the structural damping is not effective. (C) 2008 Elsevier Ltd. All rights reserved.
机译:本文提出了一种圆柱状夹层壳的优化研究,以最大程度地减少外部声激励在室内传播的声音。边界元素和有限元分别用于建模内部和外部声学以及壳体的振动。优化的设计参数是表皮和核心的正交异性复合材料的增强角度。通过伴随变量技术计算目标函数相对于设计变量的敏感性分析。研究了在单个频率和一个频带内的壳的优化。从有希望的优化结果中可以看出,复合夹层中的加固角是有效的结构设计参数,可在不损失结构刚度的情况下最小化声音向内部的传播,特别是在低频处,在结构阻尼无效的情况下。 (C)2008 Elsevier Ltd.保留所有权利。

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