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Hybrid MPI/OpenMP parallelization of an Euler-Lagrange approach to cavitation modelling

机译:空化建模的Euler-Lagrange方法的混合MPI / OpenMP并行化

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An Euler-Lagrange approach is developed for numerical simulations of cavitating flows. Within this approach the Navier-Stokes equations are solved for the Eulerian liquid/vapor-mixture. Supplementary equations for the bubble size and motion are solved for each of the bubblesuclei, composing a discrete vapor phase. Such an approach is computationally demanding when computational grids with several Mio cells and many ten thousand bubbles are considered. The paper reports the development and verification of an efficient hybrid MPI/OpenMP algorithm for coupled Euler-Lagrange simulations. The proposed algorithm facilitates cavitation predictions for challenging industrial applications, such as cavitating marine propellers, in a reasonable amount of wall-clock time.
机译:开发了一种Euler-Lagrange方法,用于空化流的数值模拟。在这种方法中,求解欧拉液体/蒸气混合物的Navier-Stokes方程。对于每个气泡/核,求解气泡大小和运动的补充方程式,组成一个离散的气相。当考虑具有几个Mio单元和一万个气泡的计算网格时,这种方法在计算上要求很高。本文报道了用于耦合Euler-Lagrange仿真的有效混合MPI / OpenMP算法的开发和验证。所提出的算法有助于在合理的挂钟时间内,针对具有挑战性的工业应用(例如空化螺旋桨)进行空化预测。

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