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Characteristics and structure of turbulent 3D offset jets

机译:湍流3D偏移射流的特征和结构

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Three-dimensional turbulent offset jets were investigated using a particle image velocimetry technique. The measurements were performed at three different exit Reynolds numbers and for four offset heights. The results in the early region of flow development clearly show significant effects of Reynolds number and offset height on the decay of maximum mean velocity and growth of the shear layer. On the contrary, the decay and spread rates were found to be nearly independent of offset height at larger downstream distances. The decay rates of 1.18 ± 0.03 as well as the spread rates of 0.055 ± 0.001 and 0.250 ± 0.005 obtained, respectively, in the wall-normal and lateral directions fall in the range of values reported in previous studies. The locations of the maximum mean velocities increased nearly linearly with streamwise distance in the self-similar region. Analysis from two-point velocity correlations revealed substantially larger structures in the outer layer and self-similar region than in the inner layer and developing region. It was also observed that the hairpin vortices in the inner regions of the wall jets are inclined at angles of 11.2° + 0.6°, which are in good agreement with reported values in boundary layer studies.
机译:使用粒子图像测速技术研究了三维湍流偏移射流。在三个不同的出口雷诺数和四个偏移高度下进行测量。流动发展的早期区域的结果清楚地表明,雷诺数和偏移高度对最大平均速度的衰减和剪切层的生长有显着影响。相反,在较大的下游距离处,衰减和扩展速率几乎与偏移高度无关。在壁法线方向和横向方向上分别获得1.18±0.03的衰减率以及0.055±0.001和0.250±0.005的扩散率都落在先前研究报告的值范围内。在自相似区域中,最大平均速度的位置几乎随着流向的距离线性增加。从两点速度相关性的分析表明,外层和自相似区域的结构要比内层和显影区域大得多。还观察到,壁射流内部区域的发夹涡旋以11.2°+ 0.6°的角度倾斜,这与边界层研究中报道的值非常吻合。

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