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Wavelet multi-resolution analysis on wake flows behind three-dimensional bluff bodies

机译:三维钝体后尾流的小波多分辨率分析

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In order to improve the aerodynamic performance of external side mirror of race car, the wake flow around three-dimensional bluff body is studied in this study. Firstly, the high-speed PIV was applied to measure turbulent wakes generated by asymmetric side mirror (called CT-cylinder) and semi-cylinder at a Reynolds number of 6,240 in the circulating water channel. These flow fields were evaluated by time-averaged, instantaneous and phase-averaged flow structures and the FFT analysis. And then, one- and two-dimensional wavelet multi-resolution techniques were used to analyze the instantaneous velocity and vorticity data in order to obtain the turbulent structures of various scales. It is found that the CT-cylinder generates smaller separation region and lower Reynolds shear stresses than that of semi-cylinder, and produces the asymmetric flow structure and aerodynamic downforce. In the wake of CT-cylinder, the size or shape of the vortices shed from upper and lower side is different and the vorticity of upper side is larger than that of lower side, causing asymmetry and high-intensity vertical velocity fluctuation. The most contribution to the Reynolds shear stress come from large-scale structures and account about 82.0 % for CT-cylinder wakes and 78.6 % for semi-cylinder wake. The relatively small-scale structures make less contribution to Reynolds shear stresses.
机译:为了提高赛车后视镜的空气动力学性能,本文研究了三维钝体周围的尾流。首先,将高速PIV用于测量循环水通道中雷诺数为6,240的非对称侧镜(称为CT圆柱)和半圆柱产生的湍流尾流。通过时间平均,瞬时和相位平均的流动结构以及FFT分析来评估这些流场。然后,利用一维和二维小波多分辨率技术分析瞬时速度和涡度数据,以获得各种尺度的湍流结构。发现与半圆柱体相比,CT圆柱体产生的分离区域更小,雷诺剪切应力更低,并产生不对称的流动结构和空气动力下压力。在CT圆柱之后,上下涡流的大小或形状是不同的,并且上涡流大于下涡流,这导致不对称性和高强度的垂直速度波动。雷诺剪切应力的最大贡献来自大型结构,占CT圆柱尾流的82.0%,半圆柱尾流的78.6%。相对较小的结构对雷诺剪切应力的贡献较小。

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