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On the parallelization of unsteady BEM problems with variable mesh size

机译:可变网格尺寸的非定常BEM问题的并行化

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This paper presents code acceleration strategies for a boundary element method (BEM) simulation of an unsteady free-surface problem with a variable mesh size. The evolution of the film and droplet field emanating from a classical swirl injectorozzle is used as a test case for the methodology. The unsteady free-surface problem (dynamic grid problem) presents challenges for load balancing the inversion of a matrix that is changing size with time. Since inversion of the matrix of linear equation coefficients represents the dominant computational cost for large problems, the parallelization of the second-order BEM code is implemented using a portable computation library, ScaLAPACK. A different processor grid topology using ScaLAPACK has been implemented and compared to the recommendation of ScaLAPACK guide. Implementation of ScaLAPACK in the solver routine of BEM has been successful and a significant simulation time reduction is demonstrated on an Opteron Dual Processor high-performance computing cluster employing two processors per node.
机译:本文提出了一种具有可变网格大小的非稳态自由表面问题的边界元方法(BEM)仿真的代码加速策略。从经典的旋流注射器/喷嘴散发的薄膜和液滴场的演变被用作该方法的测试案例。不稳定的自由表面问题(动态网格问题)为负载平衡随时间变化的矩阵求逆提供了挑战。由于线性方程系数矩阵的求逆表示大问题的主要计算成本,因此使用便携式计算库ScaLAPACK实现了二阶BEM代码的并行化。已经实现了使用ScaLAPACK的不同处理器网格拓扑,并将其与ScaLAPACK指南的建议进行了比较。在BEM的求解器例程中成功实现ScaLAPACK,并且在每个节点使用两个处理器的Opteron双处理器高性能计算集群上,可以显着减少仿真时间。

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