Resonant Modal Approximation of Time-Domain Elastic Scattering from Nano-Bubbles in Elastic Materials

Bochao Chen, Yixian Gao, Yong Li, Hongyu Liu
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Abstract

Multiscale Modeling &Simulation, Volume 22, Issue 2, Page 713-751, June 2024.
Abstract. This paper is devoted to establishing the resonant modal expansion of the low-frequency part of the scattered field for acoustic bubbles embedded in elastic materials. Due to the nanobubble with damping, the Minnaert resonance can be induced at certain discrete resonant frequencies, which forms the fundamental basis of effectively constructing elastic metamaterials via the composite material theory. There are two major contributions in this work. First, we ansatz a special form of the density, approximate the incident field with a finite number of modes, and then obtain an expansion with a finite number of modes for the acoustic-elastic wave scattering in the time-harmonic regime. Second, we show that the low-frequency part of the scattered field in the time domain can be well approximated by using the modal expansion with sharp error estimates. Interestingly, we find that the 0th mode is the main contribution to reconstruct the information of the low-frequency part of the scattered field.
弹性材料中纳米气泡时域弹性散射的共振模态近似方法
多尺度建模与仿真》,第 22 卷第 2 期,第 713-751 页,2024 年 6 月。 摘要本文致力于建立嵌入弹性材料中的声学气泡的散射场低频部分的共振模态展开。由于纳米气泡具有阻尼,因此可以在某些离散的共振频率上诱发 Minnaert 共振,这构成了通过复合材料理论有效构建弹性超材料的根本基础。这项工作有两大贡献。首先,我们对密度的一种特殊形式进行了反演,用有限模数对入射场进行了近似,然后得到了时谐制度下声弹性波散射的有限模数展开。其次,我们证明了时域中散射场的低频部分可以通过模态扩展得到很好的近似,并且误差估计值很小。有趣的是,我们发现第 0 模是重建散射场低频部分信息的主要贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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