Microstructural topology optimization with respect to sound power radiation

Microstructural topology optimization with respect to sound power radiation

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Article ID: iaor2013674
Volume: 47
Issue: 2
Start Page Number: 191
End Page Number: 206
Publication Date: Feb 2013
Journal: Structural and Multidisciplinary Optimization
Authors: ,
Keywords: design, simulation
Abstract:

The paper deals with the problem of topological design of microstructure with respect to minimization of the sound power radiation from a vibrating macrostructure. The macrostructure is excited at a single or a band of excitation frequencies by a time‐harmonic mechanical loading with prescribed amplitude and spatial distribution. The structural damping is considered to be proportional damping. The sound power is calculated using a high frequency approximation formulation and thus the sensitivity analysis may be performed in a very efficient manner. The microstructure composed of two different solid isotropic materials is assumed to be identical from point to point at the macro‐level which implies that the interface between the structure and the acoustic medium is unchanged during the design process. The equivalent material properties of the macrostructure are calculated using homogenization method and the bi‐material SIMP model is employed to achieve zero‐one design at the micro‐scale. Numerical examples are given to validate the model developed. Some interesting features of acoustic microstructure topology optimization are revealed and discussed.

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