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Three-dimensional flow separations on a rolling sphere

机译:轧制球体上的三维流动分离

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Experiments are conducted to study the flow separations on a sphere rolling on an inclined plane submerged in water. These experiments are performed at Reynolds numbers Re between 1350 and 1550. The experiments show that the flow separations on the surface of a rolling sphere can be organized into four distinct regions: (i)region of primary separation-I on the front upper sphere and extending below the poles, (ii)region of viscous blockage at the crevice surrounding the point of contact and shear layer separation ahead and at the sides of the viscous blockage, (iii)region of primary separation-II on the rear lower sphere and (iv)secondary separations on the rear upper sphere surface. The ratio of the width of the viscous blockage to the diameter of the sphere is found to be 0.4. Primary separation-I surface is symmetrical about the equatorial plane of the rolling sphere. Primary separation-II from the rear lower sphere surface is asymmetrical about the equator and eddies are shed alternately on either side of the equator from this separation surface. These lower eddies are energetic and dominate the dynamics of the wake. The upper eddy shedding from the primary separation-I surface and the lower eddy shedding from the primary separation-II surface are synchronized.
机译:进行实验,以研究在浸没在水中的倾斜平面上的球体上的流动分离。这些实验在1350和1550之间的雷诺数RE上进行。实验表明,轧制球体表面上的流动分离可以组织成四个不同的区域:(i)前上部球体上的初级分离区域的区域和在杆下方延伸,(ii)围绕接触点和剪切层的裂缝处的粘性堵塞区域和在粘性堵塞的粘性堵塞的侧面,(III)在后下球上的初级分离区域和( iv)后上部球面上的二次分离。发现粘性堵塞宽度与球体直径的比率为0.4。初级分离-i表面围绕滚动球的赤道平面对称。从后下球表面的初级分离-II对赤道而不对称,并且射箭在赤道的任一侧上交替地穿过该分离表面。这些较低的eddies是充满活力的,占据了唤醒的动态。从初级分离-I表面和来自初级分离-II-II表面的下涡流的上涡流进行同步。

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