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Three-dimensional wavelet analysis on turbulent structure of dune wake flow

机译:沙丘尾流湍流结构的三维小波分析

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摘要

The three-dimensional (3D) turbulent structure was simulated by large eddy simulation (LES), and then the numerical result was validated by PIV experiment. In order to give a detailed description of dune wake flow, the instantaneous velocity, vorticity, and pressure were decomposed into the large-, intermediate-and relatively small-scale components by 3D wavelet multi-resolution technique. To get a further understanding of coherent structure, the decomposed wavelet components were employed to calculate Q-criterion. It was found that the rollers and horse-shoe structures in the separation bubble were mainly contributed from large-scale structures and it made the most significance to the vorticity concentration. The observations of intermediate-scale horse-shoe structures indicated that the coherent structure was the combined effect of large-and intermediate-scale structures. Besides, from the visualization of 3D streamlines and pressure iso-surfaces, the separation bubble and pressure distribution are found to be dominated by large-scale structure.
机译:通过大涡模拟(LES)对三维(3D)湍流结构进行了模拟,然后通过PIV实验验证了数值结果。为了详细描述沙丘尾流,通过3D小波多分辨率技术将瞬时速度,涡度和压力分解为大,中和相对小比例的分量。为了进一步了解相干结构,使用分解后的小波分量来计算Q准则。结果发现,分离气泡中的辊和马蹄形结构主要是由大型结构贡献的,对涡旋浓度的影响最大。对中等规模的马蹄形结构的观察表明,相干结构是大中型结构的综合作用。此外,从3D流线和压力等值面的可视化中,发现分离气泡和压力分布受大型结构支配。

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