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首页> 外文期刊>Journal of Computational Physics >Multitrace/singletrace formulations and Domain Decomposition Methods for the solution of Helmholtz transmission problems for bounded composite scatterers
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Multitrace/singletrace formulations and Domain Decomposition Methods for the solution of Helmholtz transmission problems for bounded composite scatterers

机译:用于界面复合散射仪亥姆霍兹传动问题解决方案的多立体/单态配方和域分解方法

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摘要

AbstractWe present Nystr?m discretizations of multitrace/singletrace formulations and non-overlapping Domain Decomposition Methods (DDM) for the solution of Helmholtz transmission problems for bounded composite scatterers with piecewise constant material properties. We investigate the performance of DDM with both classical Robin and optimized transmission boundary conditions. The optimized transmission boundary conditions incorporate square root Fourier multiplier approximations of Dirichlet to Neumann operators. While the multitrace/singletrace formulations as well as the DDM that use classical Robin transmission conditions are not particularly well suited for Krylov subspace iterative solutions of high-contrast high-frequency Helmholtz transmission problems, we provide ample numerical evidence that DDM with optimized transmission conditions constitute efficient computational alternatives for these type of applications. In the case of large numbers of subdomains with different material properties, we show that the associated DDM linear system can be efficiently solved via hierarchical Schur complements elimination.]]>
机译:<![cdata [ Abstract 我们呈现NYSTR?M用于解决有界限的Helmholtz传输问题的非重叠域分解方法(DDM)的NYSTR?M离散化具有分段恒定材料特性的复合散射体。我们调查DDM与经典罗宾和优化的传输边界条件的性能。优化的传输边界条件包括Dirichlet到Neumann运算符的Square Roder乘器近似。虽然使用经典Robin传输条件的多态/单态配方以及使用经典罗宾传输条件的DDM并不特别适用于Krylov子空间迭代解决方案的高对比度高频亥姆霍兹传输问题,但我们提供了充分的数值证据,即DDM具有优化的传输条件构成这些类型的应用的有效计算替代方案。在具有不同材料特性的大量子域的情况下,我们表明,可以通过分层SCUR补充消除可以有效地解决相关的DDM线性系统。 ]]>

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