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Slow motion of a circular cylinder in a plane Poiseuille flow in a microchannel

机译:圆柱在微通道中的平面泊肃叶流中的慢运动

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The slow motion of a circular cylinder in a plane Poiseuille flow in a microchannel is analyzed for a wide range of cylinder radii and positions across the channel. The cylinder translates parallel to the channel walls and rotates about its axis. The Stokes approximation is used and the problem is solved analytically using the Papkovich-Fadle eigenfunction expansion and the least-squares method. The stream function and the pressure distribution of the flow field are obtained as results. The force and moment exerted on the cylinder, and the pressure change far from the cylinder, are calculated and shown as functions of the size and location of the cylinder. The results confirm some reciprocal relations exactly. In particular, the translational and rotational velocities of the drifting cylinder in the existing Poiseuille flow are determined. The induced pressure change, when the cylinder drifts in the Poiseuille flow, is also calculated. Some typical streamline patterns, depending on the size and location of the cylinder, are shown and discussed. When the cylinder translates and/or rotates in the channel blocked at infinity, a series of Moffatt eddies appears far from the cylinder in the channel, as expected. (C) 2014 AIP Publishing LLC.
机译:分析了圆柱体在微通道中平面Poiseuille流中的慢速运动,以分析圆柱体半径和整个通道中的位置。圆柱体平行于通道壁平移并绕其轴线旋转。使用斯托克斯近似,并使用Papkovich-Fadle本征函数展开和最小二乘法来分析解决问题。结果获得了流函数和流场的压力分布。计算并显示施加在气缸上的力和力矩,以及远离气缸的压力变化,并显示为气缸尺寸和位置的函数。结果确切证实了一些相互关系。特别地,确定了在现有的泊肃叶流中的漂移筒的平移和旋转速度。当圆柱体在Poiseuille流中漂移时,也会计算出引起的压力变化。显示和讨论了一些典型的流线型,具体取决于圆柱的大小和位置。当圆柱体在无限远处阻塞的通道中平移和/或旋转时,如预期的那样,一系列莫菲特涡流出现在远离圆柱体的通道中。 (C)2014 AIP Publishing LLC。

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