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薄刚性结构表面和薄膜的均匀化模型。

Homogenization models for thin rigid structured surfaces and films.

作者信息

Marigo Jean-Jacques, Maurel Agnès

机构信息

Laboratoire de Mécanique du Solide, CNRS, Ecole Polytechnique, Route de Saclay, 91128 Palaiseau, France.

Institu Langevin, CNRS, ESPCI ParisTech, 1, rue Jussieu, 7500 Paris, France.

出版信息

J Acoust Soc Am. 2016 Jul;140(1):260. doi: 10.1121/1.4954756.

Abstract

A homogenization method for thin microstructured surfaces and films is presented. In both cases, sound hard materials are considered, associated with Neumann boundary conditions and the wave equation in the time domain is examined. For a structured surface, a boundary condition is obtained on an equivalent flat wall, which links the acoustic velocity to its normal and tangential derivatives (of the Myers type). For a structured film, jump conditions are obtained for the acoustic pressure and the normal velocity across an equivalent interface (of the Ventcels type). This interface homogenization is based on a matched asymptotic expansion technique, and differs slightly from the classical homogenization, which is known to fail for small structuration thicknesses. In order to get insight into what causes this failure, a two-step homogenization is proposed, mixing classical homogenization and matched asymptotic expansion. Results of the two homogenizations are analyzed in light of the associated elementary problems, which correspond to problems of fluid mechanics, namely, potential flows around rigid obstacles.

摘要

提出了一种用于薄微结构表面和薄膜的均匀化方法。在这两种情况下,均考虑声硬材料,并结合诺伊曼边界条件,研究时域中的波动方程。对于结构化表面,在等效平壁上获得一个边界条件,该条件将声速与其法向和切向导数(迈尔斯型)联系起来。对于结构化薄膜,在等效界面(文策尔型)上获得声压和法向速度的跃变条件。这种界面均匀化基于匹配渐近展开技术,与经典均匀化略有不同,已知经典均匀化在结构厚度较小时会失效。为了深入了解导致这种失效的原因,提出了一种两步均匀化方法,将经典均匀化与匹配渐近展开相结合。根据相关的基本问题对两种均匀化的结果进行了分析,这些基本问题对应于流体力学问题,即刚性障碍物周围的势流问题。

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