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A finite volume method parallelization for the simulation of free surface shallow water flows

机译:有限体积方法并行化,用于模拟自由表面浅水流动

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We construct a parallel algorithm, suitable for distributed memory architectures, of an explicit shock-capturing finite volume method for solving the two-dimensional shallow water equations. The finite volume method is based on the very popular approximate Riemann solver of Roe and is extended to second order spatial accuracy by an appropriate TVD technique. The parallel code is applied to distributed memory architectures using domain decomposition techniques and we investigate its performance on a grid computer and on a Distributed Shared Memory supercomputer. The effectiveness of the parallel algorithm is considered for specific benchmark test cases. The performance of the realization measured in terms of execution time and speedup factors reveals the efficiency of the implementation.
机译:我们构造了一种适用于分布式存储体系结构的并行算法,该算法用于求解二维浅水方程式的显式捕获有限体积方法。有限体积方法是基于非常流行的Roe近似Riemann求解器,并通过适当的TVD技术扩展到二阶空间精度。并行代码使用域分解技术应用于分布式内存体系结构,我们研究了其在网格计算机和分布式共享内存超级计算机上的性能。对于特定的基准测试用例,考虑了并行算法的有效性。根据执行时间和加速因子来衡量的实现性能揭示了实现的效率。

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