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Structure of a steady drain-hole vortex in a viscous fluid

机译:粘性流体中稳定的排水孔涡流的结构

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We use direct numerical simulations to study a steady bathtub vortex in a cylindrical tank with a central drain-hole, a flat stress-free surface and velocity prescribed at the inlet. We find that the qualitative structure of the meridional flow does not depend on the radial Reynolds number, whereas we observe a weak overall rotation at a low radial Reynolds number and a concentrated vortex above the drain-hole at a high radial Reynolds number. We introduce a simple analytically integrable model that shows the same qualitative dependence on the radial Reynolds number as the simulations and compares favourably with the results for the radial velocity and the azimuthal velocity at the surface. Finally, we describe the height dependence of the radius of the vortex core and the maximum of the azimuthal velocity at a high radial Reynolds number, and we show that the data on the radius of the vortex core and the maximum of the azimuthal velocity as functions of height collapse on single curves by appropriate scaling.
机译:我们使用直接数值模拟来研究圆柱形储罐中的稳定浴缸涡流,该储罐具有中心排水孔,平坦的无应力表面和入口处规定的速度。我们发现子午流的定性结构不取决于径向雷诺数,而在径向雷诺数低的情况下我们观察到整体旋转较弱,而在径向雷诺数较高的情况下在排水孔上方出现了集中涡旋。我们引入了一个简单的可解析模型,该模型显示了与模拟相同的径向雷诺数定性依赖性,并与表面的径向速度和方位角速度的结果进行了比较。最后,我们描述了在高径向雷诺数下,旋涡芯的半径与方位角速度的最大值的高度依赖性,并且我们证明了关于旋涡芯的半径和方位角速度的最大值的数据通过适当的缩放可以使单个曲线上的高度崩溃。

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