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Topology Optimization of Vibrating Bi-Material Structures with Respect to Sound Radiation

机译:关于声辐射的振动双材料结构的拓扑优化

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This paper deals with topological design optimization of vibrating bi-material elastic structures of given volume, domain and boundary conditions, with the objective of minimizing the sound power radiated from the structural surfaces into a surrounding acoustic medium. The structural vibrations are excited by a time-harmonic mechanical loading with prescribed forcing frequency and amplitude, and structural damping is not considered. It is assumed that air is the acoustic medium and that a feedback coupling between the acoustic medium and the structure can be neglected. Certain conditions are assumed, where the sound power radiated from the structural surface can be estimated by using a simplified approach instead of solving the Helmholz integral equation. This implies that the computational cost of the structural-acoustical analysis can be considerably reduced. Numerical results are presented for plate and pipe-like structures with different sets of boundary conditions.
机译:本文涉及诸如给定体积,域和边界条件的振动双材料弹性结构的拓扑设计优化,目的是最小化从结构表面辐射到周围的声学介质中的声音。结构振动是通过规定强制频率和幅度的时谐机械负载激发,并且不考虑结构阻尼。假设空气是声学介质,并且可以忽略声介质和结构之间的反馈耦合。假设某些条件,其中可以通过使用简化的方法来估计从结构表面辐射的声音,而不是求解亥姆霍尔斯积分方程。这意味着可以显着降低结构声学分析的计算成本。用不同的边界条件呈现具有不同边界条件的板和管状结构的数值结果。

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