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Parallelization of ANDEE Using the UGL1B MPI Interface Library

机译:使用UGL1B MPI接口库对ANDEE进行并行化

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Hybrid parallelization has been enabled for the AFRL hypersonic non-equilibrium flow code ANDEE through the use of the MPI Interface library, UGLIB, and OpenMP directives. ANDEE solves the Navier-Stokes equations with source terms for a reacting multi-species air mixture. The source terms consist of (a) rate of change of species concentration, and (b) energy exchanges between the state-to-state (STS) vibrational quantum energy and the translational energy modes of the select air species. The focus of the study is on the more computationally intensive STS exchanges that account for over 95% of the total CPU time. The speedup results are presented for sample cases with different numbers of quantum energy states. A parallel efficiency greater than 90% was achieved for total chemistry calculations with 10 quantum levels.
机译:通过使用MPI接口库,UGLIB和OpenMP指令,已为AFRL高超音速非平衡流代码ANDEE启用了混合并行化。 ANDEE用反应多种物种空气混合物的源项求解Navier-Stokes方程。源项包括(a)物种浓度的变化率,以及(b)状态到状态(STS)的振动量子能量与所选空气物种的平移能量模式之间的能量交换。该研究的重点是计算量更大的STS交换,这些交换占CPU总时间的95%以上。给出了具有不同数量的量子能态的样品情况的加速结果。在10个量子水平的总化学计算中,平行效率大于90%。

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