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Spectral and condition number estimates of the acoustic single-layer operator for low-frequency multiple scattering in dilute media

机译:稀薄介质中低频多重散射的声学单层算子的谱和条件数估计

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The aim of this paper is to develop an analysis of the distribution of the eigenvalues of the acoustic single-layer potential for various low frequency two-dimensional multiple scattering problems. The obstacles are supposed to be distant (dilute media). In [25], it is shown that an approach based on the Gershgorin disks provides limited spectral information. We therefore introduce an alternative approach by applying the power iteration method to the limit matrix (associated with the zero order spatial modes) which results in satisfactory estimates. All these approximations are built for circular cylinders and formally extended to ellipses and rectangles for linear boundary element methods with non uniform meshes. This study is completed in [26] by spectral estimates for the case of close obstacles.
机译:本文的目的是对各种低频二维多重散射问题的声学单层电势的特征值分布进行分析。障碍物应该是遥远的(稀释介质)。在[25]中,表明基于Gershgorin磁盘的方法只能提供有限的光谱信息。因此,我们通过将幂迭代方法应用于极限矩阵(与零阶空间模式相关联)来引入一种替代方法,从而获得令人满意的估计值。所有这些近似值都是为圆柱体构建的,对于具有非均匀网格的线性边界元素方法,形式上可以扩展为椭圆和矩形。这项研究在[26]中通过光谱估计完成,用于接近障碍物的情况。

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