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Wavelet multi-resolution analysis on vortical structures of a dune wake based on large eddy simulation

机译:基于大涡模拟的沙丘尾涡结构小波多分辨率分析

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The three-dimensional orthogonal wavelet multi-resolution technique was applied to analyze flow structures of various scales behind a dune model The three-dimensional dune wake flow was evaluated by using large eddy simulation (LES) at a Reynolds number of 5530. The instantaneous velocity and vorticity were decomposed into the large-, intermediate- and relatively small-scale components by the wavelet multi-resolution technique. The coherent structure are visualized by Q-criterion. It is found that the rollers and horse-shoe structure in the separation bubble are mainly contributed from large-scale structures, furthermore, some horse-shoe structures can be clearly identified by intermediate-scale structures, the coherent structures are the combined effect of large-scale and intermediate-scale structures. The velocity and vorticity of large-scale structure dominate the dune wake flow and the vorticity concentration makes main contribution, and the intermediate-scale as well as the relatively small-scale ones tends to become more active as the flow flows downstream.
机译:应用了三维正交小波多分辨率技术,分析了DUNE模型后面的各种尺度的流动结构,通过在雷诺数为5530的雷诺数来评估三维沙丘唤醒流程。瞬时速度通过小波多分辨率技术将涡度分解成大,中间和相对小的组件。通过Q标准可视化相干结构。结果发现分离气泡中的辊和马鞋结构主要从大规模结构贡献,此外,可以通过中间尺度结构清楚地识别一些马蹄结构,相干结构是大的效果-scale和中间尺度结构。大规模结构的速度和涡度主导了沙丘唤醒流程,涡旋浓度产生主要贡献,中间尺度以及相对小的范围以及相对小的范围趋于变得更加活跃,因为流动下游流动流动。

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