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Simulation of branching blood flows on parallel computers.

机译:在并行计算机上模拟分支血流。

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We present a fully parallel nonlinearly implicit algorithm for the numerical simulation of some branching blood flow problems, which require efficient and robust solver technologies in order to handle the high nonlinearity and the complex geometry. Parallel processing is necessary because of the large number of mesh points needed to accurately discretize the system of differential equations. In this paper we introduce a parallel Newton-Krylov-Schwarz based implicit method, and software for distributed memory parallel computers, for solving the nonlinear algebraic systems arising from a Q2-Q1 finite element discretization of the incompressible Navier-Stokes equations that we use to model the blood flow in the left anterior descending coronary artery.
机译:我们提出了一种完全并行的非线性隐式算法,用于某些分支血流问题的数值模拟,这些算法需要有效而强大的求解器技术才能处理高非线性和复杂几何形状。并行处理是必要的,因为要精确离散化微分方程组需要大量的网格点。在本文中,我们介绍了一种基于并行Newton-Krylov-Schwarz的隐式方法,以及一种用于分布式存储并行计算机的软件,用于解决由不可压缩的Navier-Stokes方程的Q2-Q1有限元离散化产生的非线性代数系统。模拟左冠状动脉前降支的血流。

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