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Large-Eddy Simulation of Pseudo-Shock Wave in a Square Duct

机译:方管伪冲击波的大涡模拟

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摘要

Large-eddy simulation (LES) of Pseudo-Shock Wave (PSW) in a square duct was perfomed to study the three-dimensional turbulent structure. A flow with the PSW in the square section duct produced by the high back pressure was reproduced using LES. The inflow Mach number was 2.5 and the inflow boundary layer of 4.2mm thick. The incoming boundary layer for a square duct was established using the multi reseating method. The Mach number distribution, schlieren image, wall pressure, and velocity data obtained from the LES were compared with the past experimental data. The shock train structure observed in the experiment was well reproduced by the LES. The averaged wall pressure and streamwise velocity distributions agreed well between the LES and the experiments. Also, the distributions of intensity and spatial correlation of velocity fluctuation reasonably agreed between the LES and the experiment, although some differences were observed in the velocity fluctuation intensity distribution at the position of front shock wave.
机译:进行了方管内的伪冲击波(PSW)的大涡模拟(LES)研究三维湍流结构。使用LES再现了由高背压在方形截面管道中产生PSW的流动。流入马赫数为2.5,流入边界层为4.2mm厚。方管的进入边界层是使用多重置换方法建立的。从LES获得的马赫数分布,纹影图像,壁压和速度数据与过去的实验数据进行了比较。 LES很好地再现了实验中观察到的冲击波结构。 LES和实验之间的平均壁压和水流速度分布非常吻合。此外,尽管在前激波位置处的速度波动强度分布中观察到一些差异,但LES和实验之间的强度分布和速度波动的空间相关性合理地一致。

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