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An iterative domain decomposition, spectral finite element method on non-conforming meshes suitable for high frequency Helmholtz problems

机译:一种迭代域分解,光谱有限元方法对高频亥姆霍兹问题的非符合网格上的谱有限元方法

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The purpose of this research is to describe an efficient iterative method suitable for obtaining high accuracy solutions to high frequency time-harmonic scattering problems. The method allows for both refinement of local polynomial degree and non-conforming mesh refinement, including multiple hanging nodes per edge. Rather than globally assemble the finite element system, we describe an iterative domain decomposition method which can use element-wise fast solvers for elements of large degree. Since continuity between elements is enforced through moment equations, the resulting constraint equations are hierarchical. We show that, for high frequency problems, a subset of these constraints should be directly enforced, providing the coarse space in the dual-primal domain decomposition method. The subset of constraints is chosen based on a dispersion criterion involving mesh size and wavenumber. By increasing the size of the coarse space according to this criterion, the number of iterations in the domain decomposition method depends only weakly on the wavenumber. We demonstrate this convergence behaviour on standard domain decomposition test problems and conclude the paper with application of the method to electromagnetic problems in two dimensions. These examples include beam steering by lenses and photonic crystal waveguides, as well as radar cross section computation for dielectric, perfect electric conductor, and electromagnetic cloak scatterers. (C) 2018 Elsevier Inc. All rights reserved.
机译:该研究的目的是描述一种适用于获得高频率时间谐波散射问题的高精度解决方案的有效迭代方法。该方法允许局部多项式程度和非符合网格细化的细化,包括每个边缘的多个悬挂节点。我们不是全局组装有限元系统,我们描述了一种迭代域分解方法,可以使用元素的快速求解器来具有大程度的元素。由于元素之间的连续性通过时刻方程强制执行,因此得到的约束方程是分层的。我们表明,对于高频问题,应直接强制执行这些约束的子集,在双原始域分解方法中提供粗糙空间。基于涉及网格尺寸和波数的色散标准来选择约束子集。通过增加根据该标准的粗糙空间的大小,域分解方法中的迭代的数量仅取决于波数在波数上。我们展示了标准域分解试验问题的这种收敛行为,并在两个维度中使用该方法的应用方法结束了纸张。这些实施例包括透镜和光子晶体波导的光束转向,以及用于电介质,完美的电导体和电磁裂缝散射仪的雷达横截面计算。 (c)2018年Elsevier Inc.保留所有权利。

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