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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Interface control domain decomposition methods for heterogeneous problems
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Interface control domain decomposition methods for heterogeneous problems

机译:异构问题的接口控制域分解方法

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摘要

This paper is concerned with the solution of heterogeneous problems by the interface control domain decomposition (ICDD) method, a strategy introduced for the solution of partial differential equations in computational domains partitioned into subdomains that overlap. After reformulating the original boundary value problem by introducing new additional control variables, the unknown traces of the solution at internal subdomain interfaces; the latter are determined by requiring that the (a priori) independent solutions in each subdomain undergo the minimization of a suitable cost functional.We provide an abstract formulation for coupled heterogeneous problems and a general theorem of well-posedness for the associated ICDD problem. Then, we illustrate and validate an efficient algorithm based on the solution of the Schur-complement system restricted solely to the interface control variables by considering two kinds of heterogeneous boundary value problems: the coupling between pure advection and advection-diffusion equations and the coupling between Stokes and Darcy equations. In the latter case, we also compare the ICDD method with a classical approach based on the Beavers-Joseph-Saffman conditions. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:本文关注通过接口控制域分解(ICDD)方法解决异构问题的方法,该方法是针对计算域中划分为重叠子域的偏微分方程的求解而引入的一种策略。在通过引入新的附加控制变量来重新构造原始边值问题之后,内部子域接口处的解的未知迹线;后者是通过要求每个子域中的(先验)独立解经过适当的成本函数的最小化来确定的。我们提供了耦合异质问题的抽象表示形式以及相关ICDD问题的适定性一般定理。然后,我们通过考虑两种非均质边值问题:纯对流和对流扩散方程之间的耦合,以及对流方程之间的耦合,说明并验证了一种仅基于界面控制变量的Schur补码系统解的有效算法。斯托克斯和达西方程式。在后一种情况下,我们还将ICDD方法与基于Beavers-Joseph-Saffman条件的经典方法进行了比较。版权所有(c)2014 John Wiley&Sons,Ltd.

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