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首页> 外文期刊>Journal of Vibration and Acoustics >Optimal Stiffener Design for Interior Sound Reduction Using a Topology Optimization Based Approach
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Optimal Stiffener Design for Interior Sound Reduction Using a Topology Optimization Based Approach

机译:基于拓扑优化的方法用于室内隔音的最佳加劲肋设计

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摘要

A topology optimization based approach is proposed to study the optimal configuration of Stiffeners for the interior sound reduction. Since our design target is aimed at reducing the low frequency noise, a coupled acoustic-structural conservative system without damping effect is considered. Modal analysis method is used to evaluate the interior sound level for this coupled system. To formulate the topology optimization problem, a recently introduced Microstructure-based Design Domain Method (MDDM) is employed. Using the MDDM, the optimal Stiffener configurations problem is treated as a material distribution problem and sensitivity analysis of the coupled system is derived analytically. The norm of acoustic excitation is used as the indicator of the interior sound level. The optimal Stiffener design is obtained by solving this topology optimization problem using a sequential convex approximation method. Examples of acoustic box under single frequency excitation and a band of low frequency excitations are presented and discussed.
机译:提出了一种基于拓扑优化的方法来研究用于减震的加强筋的最佳配置。由于我们的设计目标旨在降低低频噪声,因此考虑了无阻尼效应的耦合声学结构保守系统。模态分析方法用于评估此耦合系统的内部声音水平。为了表达拓扑优化问题,采用了最近引入的基于微结构的设计域方法(MDDM)。使用MDDM,将最佳加劲肋配置问题视为材料分布问题,并通过分析得出耦合系统的灵敏度分析。声激发的规范用作内部声级的指标。通过使用顺序凸逼近法解决此拓扑优化问题,可以获得最佳的加劲肋设计。给出并讨论了单频激励和低频激励频带下的声学盒的例子。

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