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首页> 外文期刊>Journal of Computational and Applied Mathematics >Optimized Schwarz methods with Ventcell transmission conditions for model problems with continuously variable coefficients
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Optimized Schwarz methods with Ventcell transmission conditions for model problems with continuously variable coefficients

机译:具有VentCell传输条件的优化Schwarz方法,用于连续变量系数模型问题

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摘要

The Ventcell transmission conditions can enhance greatly the convergence of subdomain iterations using optimization-based parameters. However, such optimization can now only be performed for model problems with constant coefficients and thus forms a gap between the theoretical analysis and the applications where the model problems are seldom to be constant coefficients. In this paper, we close this gap by a rigorous analysis on the optimized Schwarz methods with Ventcell transmission conditions for a model problem where the reaction term varies parallel to the interface continuously. We obtain the asymptotically optimal transmission parameters by optimizing a convergence factor that is obtained using the technique of separation of variables other than the often-used Fourier transform, and then the corresponding convergence factor estimate follows. We at last validate the theoretical findings by numerical experiments. (C) 2017 Elsevier B.V. All rights reserved.
机译:VentCell传输条件可以使用基于优化的参数来提高子域迭代的大大增强。 然而,现在只能对具有恒定系数的模型问题执行这种优化,因此在理论分析和模型问题很少是恒定系数之间的应用之间形成间隙。 在本文中,我们通过对具有VentCell传输条件的优化Schwarz方法对模型问题的优化Schwarz方法进行了严格的分析来缩小这种差距,其中反应术语连续地平行于界面。 我们通过优化使用除经常使用的傅里叶变换之外的变量的分离技术获得的收敛因素来获得渐近最佳传输参数,然后跟随相应的收敛因子估计。 我们最后通过数值实验验证了理论发现。 (c)2017年Elsevier B.V.保留所有权利。

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