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A Multi-Scale Heart Simulation on Massively Parallel Computers

机译:大规模并行计算机上的多尺度心脏仿真

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摘要

To understand the macroscopic function of the human heart based on sub-cellular microscopic events, multiscale analysis is indispensable. Our heart simulator uses the so-called homogenization method, where both the human heart and the myocardial cells are modeled and solved simultaneously by the finite element method. Because the contraction and deformation of each finite element in the heart model are governed by their respective cell model, the NDOF of all the cells becomes prohibitively large. Furthermore, the phenomena are highly nonlinear and transient. This challenging problem has been tackled by our group for many years, and a novel algorithm to accelerate the computation was implemented in the code. We have recently tested its performance using the T2K Open Supercomputer (Tokyo). A pulsation of the heart with a total NDOF of 160 million was successfully simulated using 6144 CPU cores in ten hours. Scalability and other computational performances were measured and are discussed.
机译:要了解基于亚细胞微观事件的人类心脏的宏观功能,多尺度分析必不可少。我们的心脏模拟器使用所谓的均质化方法,即通过有限元方法同时对人的心脏和心肌细胞进行建模和求解。由于心脏模型中每个有限元的收缩和变形都受它们各自的单元格模型支配,因此所有单元格的NDOF都变得过大。此外,该现象是高度非线性和瞬态的。我们小组已经解决了这个具有挑战性的问题很多年了,并且在代码中实现了一种新的算法来加速计算。我们最近使用T2K开放式超级计算机(东京)测试了它的性能。在十个小时内使用6144个CPU内核成功模拟了总NDOF为1.6亿的心脏搏动。测量和讨论了可伸缩性和其他计算性能。

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