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Wake flow modification behind a square cylinder using control rods

机译:使用控制杆的方形圆筒后面的唤醒流程修改

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摘要

In the present study, flow behind a square cylinder is investigated using control rods. The control rods are placed in the shear layer and studied using particle image velocimetry, hotwire anemometry and flow visualization techniques. Experiments are conducted in a low-speed wind tunnel for three different Reynolds numbers 485, 805 and 1290. However, detailed analysis of flow is only presented at a Reynolds number of 485. The aim is to modify the wake behind a square cylinder for possible suppression of vortex Street and drag reduction. The control rod diameter is kept constant as 0.2 times of the cylinder diameter. Depending upon the gap between control rods and the cylinder, the flow structure, vortex dynamics, the distance of the shear layer roll up behind the cylinder is modified. An attempt is made to correlate the different flow structures with corresponding drag forces. Several parameters such as time-averaged drag coefficient, Strouhal number, recirculation length, fluctuating velocity, turbulence intensity, and Reynolds stress are measured. To understand the flow phenomena and its intricate structure, flow visualization images are also captured in the same setup with smoke visualization. Maximum up to 22% drag reduction is observed at a particular control rod position.
机译:在本研究中,使用控制杆研究了方形圆筒后面的流动。将控制杆放置在剪切层中,并使用颗粒图像速度,Hotwire风速和流量可视化技术研究。实验在低速风洞中进行三个不同的雷诺数485,805和1290.然而,仅在雷诺数的485中呈现的流动的详细分析。目的是改变方形气缸后面的唤醒抑制涡旋街和减阻。控制杆直径保持恒定为圆柱直径的0.2倍。根据控制杆和气缸之间的间隙,流动结构,涡旋动力学,剪切层卷起圆柱体后面的距离被修改。尝试将不同的流量结构与相应的阻力相关联。测量诸如时间平均阻力系数,斯特鲁姆数,再循环长度,波动速度,湍流强度和雷诺应力的几个参数。要了解流量现象及其复杂结构,还在具有烟雾可视化的同一设置中捕获流量可视化图像。在特定控制杆位置观察到最大可阻力降低。

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