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Laminar Horse Shoe Vortex for a Triangular Cylinder Flat Plate Juncture

机译:三角缸平板接头的层状马鞋涡

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Juncture Flows are 3-D flows which occur when fluid, flowing on a flat surface encounters an obstacle on its way. The flow separates from the surface due to the adverse pressure gradient produced by the obstacle and rolls up to form a vortical structure known as "Horse Shoe Vortex". Studies and research is underway to completely identify and understand different hidden features of the horse shoe vortex. In the present study the structure of horse shoe vortex for a Triangular cylinder flat plate juncture is visualized using particle image velocimetry (PIV). The diameter Reynolds number experimented is within the range of 2 000 ≤ Re_A ≤ 8 000. The flow characteristics are studied for the horse shoe vortex and the flow is categorized into different flow regimes. (1) Steady or static vortex system, (2) periodic amalgamating vortex system, and (3) periodic break away vortex system. The range for different vortex systems is also calculated with shedding frequency for the periodic unsteady vortex system. Most importantly the range of Reynolds number for which the above mentioned vortex systems exist is much higher for Sharp leading edge cylinder than for blunt (circular and Elliptical) and flat (Square) leading edge cylinders studied earlier.
机译:接合流量是3-D流动,当流体时,在平坦的表面上流动地遇到障碍物。由于障碍物产生的不利压力梯度并卷起以形成称为“马鞋涡旋”的涡流结构,流动从表面分离。正在进行的研究和研究完全识别和理解马鞋涡旋的不同隐藏特征。在本研究中,使用粒子图像VELOCIMETRY(PIV)可视化三角形圆柱平板平板接头的马蹄形涡旋结构。实验的直径雷诺数在2000≤Re_a≤8000的范围内。研究了马蹄形涡流的流动特性,并且流量分为不同的流动制度。 (1)稳定或静态涡旋系统,(2)定期合并涡流系统,和(3)定期突破涡旋系统。不同涡流系统的范围也以周期性非定常涡流系统的脱落频率计算。最重要的是,对于尖锐的前沿圆柱的存在比尖锐(圆形和椭圆形)和扁平(正方形)前缘气缸更高的雷诺系统的雷诺数的范围远高得多。

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