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Parallel, multi-zone, multi-block solver to study arterial branches in human vascular system

机译:平行,多区,多块求解器,用于研究人血管系统中的动脉分支

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The unsteady, three-dimensional, incompressible NavierStokes equations are solved numerically to study arterial branches in human vascular system. The solver is capable of dealing with moving boundaries and moving grids. It is designed to handle complex, three-dimensional vascular Systems. The computational domain is divided into multiple block subdomains. At each cross section the plane is divided into twelve sub-zones to allow flexibility for handling complex geometries and, if needed, appropriate parallel data partitioning. A second-order in time and third-order upwind finite volume method for solving time-accurate incompressible flows based on pseudo-compressibility and dual time-stepping technique is used. For parallel execution, the flow domain is partitioned. Communication between the subdomains of the flow on Riken's VPP/700E supercomputer is implemented using MPI message-passing library. The code is capable of running on both shared and/or distributed memory architectures.
机译:不稳定的三维不可压缩的Navierstokes方程在数值上进行解决,以研究人血管系统中的动脉分支。求解器能够处理移动边界和移动网格。它旨在处理复杂的三维血管系统。计算域分为多个块子域。在每个横截面,该平面被分成12个子区域,以允许灵活地处理复杂的几何形状,并且如果需要,适当的并行数据分区。使用基于伪压缩性和双时间级步骤技术的求解时间准确的不可压缩流的二阶时间和三阶UPUND有限体积方法。有关并行执行,流程域将被分区。使用MPI消息传递库实现Riken的VPP / 700E超级计算机上的流程子域之间的通信。代码能够在共享和/或分布式内存架构上运行。

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