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Passive control on flow structure around a wall-mounted low aspect ratio circular cylinder by using an inclined hole

机译:利用倾斜孔对壁挂式低纵横比圆柱体周围的流动结构进行被动控制

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To control and reduce the rear separation region and the vortex of the free-end surface, a passive flow control method that is to use an inclined flow controlling hole (FCH) passing through the free-end surface to the side of the rear surface was proposed for a low aspect ratio (=1) circular cylinder. The high-speed PIV (Particle Image Velocimetry) measurements were performed at Reynolds number of 8,570 in a circulation water tunnel in order to compare the flow characteristics between the controlling and no-controlling wakes. Furthermore, to study the position effect of the FCH, there kinds of the FCH models were tested. It was found that the fluid flows from the large rear recirculation zone upwards to the small recirculation zone on the free end surface through the FCH. The size of rear recirculation zone was reduced by the FCH cylinders with h = 50 mm, and the FCH cylinders with h = 20 and 35 mm effectively diminished the separation region of the free end surface. Meanwhile, vorticity, Reynolds shear stresses and turbulent kinetic energy were also decreased by the FCH cylinders with h = 50 mm comparing with the standard cylinder and other FCH models. Spectral analyses suggest that the dominate frequency of vortex shedding from the cylinder surface increases.
机译:为了控制和减小后分离区域和自由端表面的旋涡,一种被动流动控制方法是使用穿过自由端表面到达后表面一侧的倾斜流动控制孔(FCH)。建议用于低纵横比(= 1)的圆柱体。为了比较控制尾流和非控制尾流的流动特性,在循环水隧道中以雷诺数8,570进行了高速PIV(颗粒图像测速)测量。此外,为了研究FCH的位置效应,测试了各种FCH模型。已经发现,流体从较大的后再循环区通过FCH向上流到自由端面上的小的再循环区。 h = 50 mm的FCH圆柱减少了后再循环区的尺寸,h = 20和35 mm的FCH圆柱有效地减小了自由端面的分离区域。同时,与标准圆筒和其他FCH模型相比,h = 50 mm的FCH圆筒也降低了涡度,雷诺剪切应力和湍流动能。频谱分析表明,从圆柱表面脱落的涡流的主要频率增加。

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