Phase Averaging on Square Cylinder Wake Based on Wavelet Analysis

Xiaoning Sun, Chengtao Yu, A. Rinoshika, Li Li, Yan Zheng
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Abstract

Phase average techniques based on wavelet multiresolution analysis and continuous wavelet transform are developed to reveal the phase-averaged features of square cylinder wake measured by high-speed PIV. The multi-scale turbulent structures are phase-sorted to give phase-averaged representations of flow field. The phase-averaged measured flow fields suggest that the wake flow rolls up and down and is conveyed downstream together with the corresponding vortices, forming a vortex pair with opposite sense of rotation. The phase-averaged vorticity contours of large-scale flow structures show good correspondence to the topology of phase-averaged measured flow field, suggesting the alternative nature of the vortex street with strong periodicity. The phase averaged intermediate-scale structures tend to be conveyed downstream along streamwise direction, with the rotation sense vary from the first half period to the last half period, implying the nature of Kelvin-Helmholtz vortex.
基于小波分析的方形圆柱尾迹相位平均
提出了基于小波多分辨率分析和连续小波变换的相位平均技术来揭示高速PIV测量的方圆柱尾迹的相位平均特征。对多尺度湍流结构进行了相位排序,给出了流场的相位平均表示。相位平均的实测流场表明,尾流上下翻滚,与相应的涡一起向下游输送,形成一个旋转方向相反的涡对。大尺度流结构的相平均涡度轮廓与相平均实测流场的拓扑结构具有良好的对应关系,表明涡街具有很强的周期性。相位平均的中尺度结构倾向于沿流方向向下游传递,在前半周期和后半周期的旋转意义不同,暗示了Kelvin-Helmholtz涡的性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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