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首页> 外文期刊>Journal of Fluid Mechanics >Experimental investigation of freely falling thin disks. Part 1. The flow structures and Reynolds number effects on the zigzag motion
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Experimental investigation of freely falling thin disks. Part 1. The flow structures and Reynolds number effects on the zigzag motion

机译:自由下落的薄盘的实验研究。第1部分。流动结构和雷诺数对之字形运动的影响

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This paper describes an experimental investigation of the dynamics of a freely falling thin circular disk in still water. The flow patterns of the disk zigzag motion are studied using dye visualization and particle image velocimetry. Time-resolved disk motions with six degrees of freedom are obtained with a stereoscopic vision method. The flow separation and vortex shedding are found to change with the Reynolds number, Re. At high Reynolds numbers a new dipole vortex is shed that is significantly different from Kármán-type vortices. The vortical structures are mainly composed of leading-edge vortices, a counter-rotating vortex pair and secondary trailing-edge vortices. The amplitude of the horizontal oscillation is also dependent on the Reynolds number with a critical Reynolds number Re_(cr) ≈ 2000, where the oscillatory amplitude is proportional to Re for Re < Re_(cr), but becomes invariant for Re > Re_(cr). Threedimensional dipolar vortices were also observed experimentally.
机译:本文描述了在静止水中自由下落的薄圆盘动力学的实验研究。使用染料可视化和粒子图像测速技术研究了磁盘之字形运动的流动模式。使用立体视觉方法可以获得具有六个自由度的时间分辨的磁盘运动。发现流分离和涡旋脱落随雷诺数Re改变。在高雷诺数下,会产生一个新的偶极子涡,它与卡尔曼型涡明显不同。涡旋结构主要由前缘涡旋,反向旋转涡旋对和次级后缘涡旋组成。水平振荡的幅度还取决于具有雷诺数Re_(cr)≈2000的雷诺数,其中当Re Re_(cr )。还通过实验观察到三维偶极涡旋。

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