首页> 外文期刊>Journal of Mechanics >EQUILIBRIUM POSITION OF A BUOYANT DROP IN COUETTE AND POISEUILLE FLOWS AT FINITE REYNOLDS NUMBERS
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EQUILIBRIUM POSITION OF A BUOYANT DROP IN COUETTE AND POISEUILLE FLOWS AT FINITE REYNOLDS NUMBERS

机译:有限雷诺数下Couete和Poiseuille流动中浮力下降的平衡位置

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The equilibrium position of a deformable drop in Couette and Poiseuille flows is investigated numerically by solving the full Navier-Stokes equations using a finite difference/front tracking method. The objective of this work is to study the motion of a non-neutrally buoyant drop in Couette and Poiseuille flows with different density ratios at finite Reynolds numbers. Couette flow: The equilibrium position of the lighter drops is higher than the heavier drops at each particle Reynolds number. Also, the equilibrium position height increases with increasing the Reynolds number at a fixed density ratio. At this equilibrium distance from the wall, the migration velocity is zero, while the velocity of the drop in the flow direction and rotational velocity of the drop is finite. It is observed that the equilibrium position is independent of the initial position of the drops and depends on the density ratio and the shear Reynolds number. Poiseuille flow: When the drop is slightly buoyant, it moves to an equilibrium position between the wall and the centerline. The equilibrium position is close to the centerline if the drop lags the fluid but close to the wall if the drop leads the fluid. As the Reynolds number increases, the equilibrium position of lighter drops moves slightly closer to the wall and the equilibrium position of heavier drops moves towards the centerline.
机译:通过使用有限差分/前跟踪方法求解完整的Navier-Stokes方程,对Couette流和Poiseuille流中可变形液滴的平衡位置进行了数值研究。这项工作的目的是研究有限雷诺数下具有不同密度比的Couette和Poiseuille流中非中性浮力的运动。 Couette流:在每个粒子雷诺数下,较轻的液滴的平衡位置高于较重的液滴。同样,平衡位置的高度随着固定密度比下雷诺数的增加而增加。在距壁的此平衡距离处,迁移速度为零,而液滴在流动方向上的速度和液滴的旋转速度是有限的。观察到,平衡位置与液滴的初始位置无关,并且取决于密度比和剪切雷诺数。 Poiseuille流动:当液滴稍微浮起时,它将移动到壁和中心线之间的平衡位置。如果液滴滞后于流体,则平衡位置靠近中心线,如果液滴滞后于流体,则平衡位置靠近壁。随着雷诺数增加,较轻的液滴的平衡位置稍微靠近壁,较重的液滴的平衡位置向中心线移动。

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