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Unified computational framework for the efficient solution of n-field coupled problems with monolithic schemes

机译:使用整体方案有效解决n场耦合问题的统一计算框架

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In this paper, we propose and evaluate the performance of a unified computational framework for preconditioning systems of linear equations resulting from the solution of coupled problems with monolithic schemes. The framework is composed by promising, application-specific preconditioners presented previously in the literature with the common feature that they are able to be implemented for a generic coupled problem, involving an arbitrary number of fields, and to be used to solve a variety of applications. The first selected preconditioner is based on a generic block Gauss-Seidel iteration for uncoupling the fields, and standard algebraic multigrid (AMG) methods for solving the resulting uncoupled problems. The second preconditioner is based on the semi-implicit method for pressure-linked equations (SIMPLE) which is extended here to deal with an arbitrary number of fields, and also results in uncoupled problems that can be solved with standard AMG. Finally, a more sophisticated preconditioner is considered which enforces the coupling at all AMG levels, in contrast to the other two techniques which resolve the coupling only at the finest level. Our purpose is to show that these methods perform satisfactory in quite different scenarios apart from their original applications. To this end, we consider three very different coupled problems: thermo-structure interaction, fluid structure interaction and a complex model of the human lung. Numerical results show that these general purpose methods are efficient and scalable in this range of applications. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本文中,我们提出并评估了针对线性方程组预处理系统的统一计算框架的性能,该预处理框架是由整体方案耦合问题的解决方案产生的。该框架由有希望的,特定于应用程序的预处理器组成,该预处理器先前在文献中提供,其共同特征是能够针对涉及任意多个字段的通用耦合问题实现它们,并可以用于解决各种应用程序。首先选择的预处理器基于用于解耦合场的通用块高斯-赛德尔迭代和用于解决由此产生的解耦问题的标准代数多重网格(AMG)方法。第二个预处理器基于压力链接方程的半隐式方法(SIMPLE),在此将其扩展为处理任意数量的字段,并且还会产生可以用标准AMG解决的未耦合问题。最后,与其他两种仅在最佳级别解决耦合问题的技术相比,可以考虑使用一种更为复杂的预处理器来在所有AMG级别强制进行耦合。我们的目的是证明这些方法除了最初的应用之外,在完全不同的场景中表现令人满意。为此,我们考虑了三个非常不同的耦合问题:热结构相互作用,流体结构相互作用和人肺的复杂模型。数值结果表明,这些通用方法在此应用范围内有效且可扩展。 (C)2016 Elsevier B.V.保留所有权利。

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