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Grid-dependence study for simulating propeller crashback using large-eddy simulation with immersed boundary method

机译:用浸没边界法使用大涡模拟模拟螺旋桨克雷什瓦的网格依赖性研究

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Simulating the flow around a propeller using large-eddy simulation (LES) with the immersed boundary (IB) method is challenging and computationally expensive. In this work, we carry out the grid-dependence study of LES with IB for simulating a propeller in crashback mode using four sets of gradually refined grids. The simulation results show that the grid-resolution requirements for accurately predicting different flow quantities are different. Specifically, it is found that the side-force coefficient and the averaged streamwise velocity are less sensitive to grid resolutions as compared with the thrust force coefficient and the turbulence kinetic energy, respectively. Furthermore, it is found that the computed results in the near wake region and the region around the blade are more sensitive to grid resolutions as compared with the far wake region, where the predictions from the four different grids are similar to each other. This suggests that a coarse grid simulation is adequate if only the far wake region is of interest, while a fine grid simulation is required if one cares about the flow around the blade and the flow in the near wake region.
机译:使用浸没边界(IB)方法使用大涡模拟(LES)来模拟螺旋桨周围的流动是具有挑战性的,并且计算昂贵。在这项工作中,我们使用四组逐渐精细的网格来执行LES与IB的网格依赖性研究,用于模拟Crashback模式中的螺旋桨。仿真结果表明,准确预测不同流量的网格分辨率要求是不同的。具体地,发现与推力系数和湍流动能分别相比,侧向力系数和平均流速对网格分辨率不太敏感。此外,发现与远唤醒区域相比,在近唤醒区域和围绕叶片周围的区域的计算结果对网格分辨率更敏感,其中来自四个不同网格的预测彼此类似。这表明,如果只有远唤醒区域感兴趣,则粗略电网模拟是足够的,而如果一个人在围绕叶片周围的流动和靠近唤醒区域中的流动,则需要精细的网格模拟。

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