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Parallel Overlapping Mechanism Between Communication and Computation of the Lattice Boltzmann Method

机译:格子Boltzmann方法的通信与计算之间的并行重叠机制

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The lattice Boltzmann Method (LBM), different from classical numerical methods of continuum mechanics, is derived from molecular dynamics. The LBM has the following main advantages: including a simple algorithm, the direct solver for pressure, easy treatment of complicated boundary conditions and particularly parallel suitability. The most common models include the Single-Relaxation-Time (SRT) and Multiple-Relaxation-Time (MRT) collision models. In a conventional parallel computing model of LBM, communication and computing are performed individually. When the communication is performed, the computing is waiting in MPI processes. This will waste some waiting time. Therefore, the communication and computing overlapping parallel model was proposed. By the architecture of 'Ziqiang 4000' supercomputer at Shanghai University, the hybrid MPI and OpenMP parallel model is proposed. The numerical results show that the presented model has better computational efficiency.
机译:格子玻尔兹曼方法(LBM)与分子力学的经典数值方法不同。 LBM具有以下主要优点:包括简单的算法,压力的直接求解器,易于处理复杂的边界条件以及特别是并行适用性。最常见的模型包括单松弛时间(SRT)和多松弛时间(MRT)碰撞模型。在LBM的常规并行计算模型中,通信和计算是单独执行的。执行通信时,计算正在MPI进程中等待。这会浪费一些等待时间。因此,提出了通信与计算重叠并行模型。根据上海大学“自强4000”超级计算机的体系结构,提出了MPI和OpenMP混合并行模型。数值结果表明,该模型具有较好的计算效率。

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