两个近接触凸声亚波长谐振器之间的相互作用

Haigang Li, Yan Zhao
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引用次数: 1

摘要

明尼阿特共振是一种低频共振,其波长比谐振器的尺寸大得多。当两个相邻的气泡靠近时,研究它们之间的相互作用是很有趣的。由于气泡通常是可压缩的,因此本文主要研究任意形状的两种一般凸谐振子的谐振模态,以推广Ammari, Davies, Yu在[4]中使用双球坐标考虑一对球形谐振子的结果。结合[4,5]中Helmholtz方程的层势法和[26,30]中梯度估计的椭圆理论,计算了耦合$C^{2,\alpha}$谐振器的电容系数,并给出了两种不同谐振模式的前阶渐近行为,揭示了谐振频率与几何性质(如凸度、体积和曲率)的关系。同时给出了分散压力梯度的爆破速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Interaction Between Two Close-To-Touching Convex Acoustic Subwavelength Resonators
The Minneart resonance is a low frequency resonance in which the wavelength is much larger than the size of the resonators. It is interesting to study the interaction between two adjacent bubbles when they are brought close together. Because the bubbles are usually compressible, in this paper we mainly investigate resonant modes of two general convex resonators with arbitrary shapes to extend the results of Ammari, Davies, Yu in [4], where a pair of spherical resonators are considered by using bispherical coordinates. We combine the layer potential method for Helmholtz equation in [4,5] and the elliptic theory for gradient estimates in [26,30] to calculate the capacitance coefficients for the coupled $C^{2,\alpha}$ resonators, then show the leading-order asymptotic behaviors of two different resonant modes and reveal the dependance of the resonant frequencies on their geometric properties, such as convexity, volumes and curvatures. By the way, the blow-up rates of gradient of the scattered pressure are also presented.
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