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Solving the cardiac bidomain equations for discontinuous conductivities

机译:求解非连续电导率的心脏双域方程

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摘要

Fast simulations of cardiac electrical phenomena demand fast matrix solvers for both the elliptic and parabolic parts of the bidomain equations. It is well known that fast matrix solvers for the elliptic part must address multiple physical scales in order to show robust behavior. Recent research on finding the proper solution method for the bidomain equations has addressed this issue whereby multigrid preconditioned conjugate gradients has been used as a solver. In this paper, a more robust multigrid method, called Black Box Multigrid, is presented as an alternative to conventional geometric multigrid, and the effect of discontinuities on solver performance for the elliptic and parabolic part is investigated. Test problems with discontinuities arising from inserted plunge electrodes and naturally occurring myocardial discontinuities are considered. For these problems, we explore the advantages to using a more advanced multigrid method like Black Box Multigrid over conventional geometric multigrid. Results will indicate that for certain discontinuous bidomain problems Black Box Multigrid provides 60% faster simulations than using conventional geometric multigrid. Also, for the problems examined, it will be shown that a direct usage of conventional multigrid leads to faster simulations than an indirect usage of conventional multigrid as a preconditioner unless there are sharp discontinuities.
机译:心脏电现象的快速仿真要求双域方程的椭圆和抛物线部分都具有快速矩阵求解器。众所周知,椭圆部分的快速矩阵求解器必须处理多个物理比例,以便表现出鲁棒的性能。为双域方程找到合适的求解方法的最新研究已经解决了这个问题,在该问题中,将多网格预处理共轭梯度用作求解器。在本文中,提出了一种更强大的多重网格方法,称为Black Box多重网格,以替代常规的几何多重网格,并研究了不连续性对椭圆和抛物线部分的求解器性能的影响。考虑插入电极插入引起的不连续性和自然发生的心肌不连续性的测试问题。针对这些问题,我们探索了使用比传统几何多重网格更先进的多重网格方法(如黑匣子多重网格)的优势。结果将表明,对于某些不连续的双域问题,Black Box Multigrid的仿真速度比使用常规几何Multigrid快60%。而且,对于所检查的问题,将显示出,与直接使用常规多网格作为预处理器相比,直接使用常规多网格导致的仿真更快,除非存在明显的不连续性。

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