Design of acoustic coatings with symmetric and asymmetric resonant inclusions

Alexander McIntosh, G. S. Sharma, Alex Skvortsov, I. MacGillivray, N. Kessissoglou
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Abstract

An acoustic coating for underwater applications, designed using periodically distributed cavities and hard spherical particles embedded in a soft matrix, is herein modelled as monopolar and dipolar scatterers positioned along the centre of a sound hard duct. Modified equations of motion for the scatterers account for resonance phenomena as well as multiple scattering of waves by a lattice. Combinations of monopolar and dipolar scatterers in the direction of the incident sound field are considered. The acoustic performance of the various coating designs composed of symmetric and asymmetric resonant inclusions are compared. The influence of asymmetry in coating designs, arising from variation in scatterer size and material distribution, on effective material properties and Willing coupling are reported.
设计带有对称和非对称共振夹杂物的声学涂层
一种用于水下应用的声学涂层是利用周期性分布的空腔和嵌入软基质中的硬质球形颗粒设计的,本文将其模拟为沿着声硬质管道中心定位的单极和双极散射体。修改后的散射体运动方程考虑了共振现象以及晶格对波的多重散射。考虑了入射声场方向上单极和双极散射体的组合。比较了由对称和不对称共振夹杂物组成的各种涂层设计的声学性能。报告了由于散射体尺寸和材料分布的变化而导致的涂层设计不对称对有效材料特性和威灵耦合的影响。
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