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Evaluation and strategy of different data parallel implementation methods of a stiff chemical non-equilibrium flow solver

机译:刚性化学非平衡流求解器的不同数据并行实现方法的评估和策略

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The primary focus of current research concerns three different parallelization implemen- tation methods of a widely used semi-implicit chemically non-equilibrium reactive Euler equations solver on the Vector Parallel Processor (VPP) computer. The main objective is to reduce the relative cost of the convection term calculation and the chemical term computation, and also to optimize the global cost of the numerical simulation by parallel implementation. Three different data parallel methods' two methods based on Domain Decomposition Method (DDM) and one method on Multiblock Structured Algorithm (MSA) are outlined. The characteristics of the three methods are commented on, such as vectorization index, data communication process and parallel I/O. The approaches of the current practical research provide insight into important issues of parallel computing for common applications. Finally, a summary of the parallelization strategy is presented and conclusions are drawn.
机译:当前研究的主要重点是在矢量并行处理器(VPP)计算机上广泛使用的半隐式化学非平衡反应性Euler方程求解器的三种不同的并行化实现方法。主要目的是减少对流项计算和化学项计算的相对成本,并通过并行实现来优化数值模拟的整体成本。概述了三种不同的数据并行方法:基于域分解方法(DDM)的两种方法和基于多块结构算法(MSA)的一种方法。评述了三种方法的特点,如矢量化索引,数据通信过程和并行I / O。当前的实践研究方法为常见应用程序的并行计算的重要问题提供了见解。最后,对并行化策略进行了总结,并得出了结论。

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