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Analysis and implementation of a parallelization strategy on a Navier--Stokes solver for shear flow simulations

机译:用于剪切流模拟的Navier-Stokes求解器的并行化策略的分析和实现

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摘要

A parallel computational solver for the unsteady incompressible three-dimensional Navier- Stokes equations implemented for the numerical simulation of shear flow cases is presented. The computational algorithms include Fourier expansions in the streamwise and spanwise directions, second-order centered finite differences in the direction orthogonal to the solid walls, third-order Runge--Kutta procedure in time in which both convective and diffusive terms are treated explicitly, the fractional step method is used for time marching. Based on the numerical algorithms implemented within the computational solver, three different (MPI based) parallelization strategies are devised. The three schemes are evaluated with particular attention to the impact of the communications onto the whole computational procedure, and one of them is implemented. Computations are executed on two different parallel machines and results are shown in terms of parallel performance. Processes using different number of processors combined with different number of computational grid points are tested.
机译:提出了一个非稳态不可压缩三维Navier-Stokes方程的并行计算求解器,该方程用于剪切流工况的数值模拟。计算算法包括沿流向和跨度方向的傅立叶展开,与实壁正交的方向的二阶中心有限差分,及时处理对流和扩散项的三阶Runge-Kutta过程,分数步法用于时间前进。基于在计算求解器中实现的数值算法,设计了三种不同的(基于MPI)并行化策略。对这三种方案进行了评估,尤其要注意通信对整个计算过程的影响,并实现其中一种。计算是在两个不同的并行计算机上执行的,结果以并行性能显示。测试使用不同数量的处理器并结合不同数量的计算网格点的过程。

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