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首页> 外文期刊>Journal of Fluid Mechanics >Axisymmetric propagating vortices in the flow between a stationary and a rotating disk enclosed by a cylinder
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Axisymmetric propagating vortices in the flow between a stationary and a rotating disk enclosed by a cylinder

机译:圆柱体包围的固定盘与旋转盘之间的流动中的轴对称传播涡

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摘要

The destabilization of the stationary basic flow occurring between two disks enclosed by a cylinder is studied experimentally when the radius of the disks is large compared to the spacing. In the explored range of the cell aspect ratio, when one disk only is rotating, circular vortices propagating to the centre are observed above a critical angular velocity. These structures occur naturally but can also be forced by small modulations of the angular velocity of the disk. For each rotation rate the dispersion relation of the instability is experimentally reconstructed from visualizations and it is shown that this dispersion relation can be scaled by the boundary layer thickness measured over the disk at rest. The bifurcation is found to be of supercritical nature. The effect of the forcing amplitude is in favour of a linear convective nature of this instability of the non-parallel inward flow existing above the stationary disk. The most unstable temporal frequency is found to be about four times the frequency of the rotating disk. The evolution of the threshold of this primary instability is described for different aspect ratios of the cell. Finally, two sets of experiments made under transient conditions are presented: one in order to investigate further a possible convective/absolute transition for the instability, and the other to compare with the impulsive spin-down-to-rest experiments of Savas (1983).
机译:当圆盘的半径比间距大时,通过实验研究了在两个圆柱体包围的圆盘之间发生的静态基本流量的失稳问题。在细胞纵横比的探索范围内,当仅一个圆盘旋转时,在临界角速度以上会观察到传播到中心的圆形涡旋。这些结构是自然形成的,但也可以通过磁盘角速度的较小调制来强制执行。对于每个转速,通过可视化从实验上重建了不稳定性的弥散关系,结果表明,该弥散关系可以通过静止时在磁盘上测量的边界层厚度来缩放。发现分叉具有超临界性质。强迫振幅的作用有利于存在于固定盘上方的非平行向内流动的这种不稳定性的线性对流性质。发现最不稳定的时间频率约为转盘频率的四倍。针对单元的不同长宽比,描述了该主要不稳定性阈值的演变。最后,提出了两组在瞬态条件下进行的实验:一组用于进一步研究不稳定性的可能的对流/绝对过渡,另一组与Savas(1983)的脉冲自旋降速至静止实验进行比较。

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