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Compressible Large-Eddy Simulation of Diesel Spray Structure using OpenFOAM

机译:使用OpenFoam的柴油喷雾结构的可压缩大型仿真

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The compressible Large-Eddy Simulation (LES) for the diesel spray with OpenFOAM is presented to reduce CPU time by massively parallel computing of the scalar type supercomputer (CRAY XE6) and simulate the development of the non-evaporative and the evaporative spray. The maximum computational speeds are 14 times (128 cores) and 43 times (128 cores) for of the non-evaporative spray and the spray flame with one-step reaction, respectively, compared to the one core simulation. In the spray flame simulation with the reduced reaction mechanism (29 species, 52 reactions), the maximum computational speed is 149 times (512 cores). Then LES of the non-evaporative and the evaporative spray (Spray A) are calculated. The results indicate that the spray tip penetration is well predicted, although the size of the computational domain must be set equal to that of the experiment. In the evaporative spray, the CPU time is 14 hours with 512 cores from the injection start to 5.0 ms under 9,440,000 cells, while the CPU time with one core is 90.5 days. The computational speed is 154 times.
机译:柴油喷雾带有OpenFoam的可压缩大涡模拟(LES),以通过对标量型超级计算机(CRAY XE6)的大规模平行计算来降低CPU时间,并模拟非蒸发和蒸发喷雾的开发。与一个核模拟相比,最​​大计算速度分别为14倍(128芯)和43倍(128个核心),其具有非蒸发喷雾和喷雾火焰,与一步反应相比。在具有减少的反应机制(29种,52个反应)的喷雾火焰模拟中,最大计算速度为149次(512核)。然后计算LES的非蒸发和蒸发喷雾(喷雾A)。结果表明,喷射尖端穿透良好预测,尽管必须设置计算域的大小等于实验的大小。在蒸发喷雾中,CPU时间为14小时,从喷射开始512个核心,在9,440,000个细胞下开始为5.0ms,而一个核心的CPU时间为90.5天。计算速度为154次。

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