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Migration of a droplet in a cylindrical tube in the creeping flow regime

机译:在爬行流动状态下侧筒迁移液滴

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The migration of a neutrally buoyant droplet in a tube containing another immiscible liquid is investigated numerically in the creeping flow regime. A fully developed velocity profile is imposed at the inlet of the tube. The interface between the two immiscible fluids is captured using a coupled level-set and volume-of-fluid approach. The deformation and breakup dynamics of the droplet are investigated in terms of three dimensionless parameters, namely, the ratio between the radius of the undeformed droplet and the radius of the capillary tube, the viscosity ratio between the dispersed and the continuous phases, and the capillary number that measures the relative importance of the viscous force over the surface tension force. It has been observed that the droplet, while traversing through the tube, either approaches a steady bulletlike shape or develops a prominent reentrant cavity at its rear. Depending on the initial droplet size, there exists a critical capillary number for every flow configuration beyond which the drop fails to maintain a steady shape and breaks into fragments. The deformation and breakup phenomena depend primarily on the droplet size, the viscosity ratio, and the capillary number. Special attention has been given to the case where the drop diameter is comparable with the tube diameter. A thorough computational study has been conducted to find the critical capillary number for a range of droplets of varied sizes suspended in systems having different viscosity ratios.
机译:在爬行流动状态下数量地研究了在含有另一种不混溶的液体的管中的中性浮力液滴的迁移。完全开发的速度曲线施加在管的入口处。使用耦合的水平设定和流体体积方法捕获两个不混溶的流体之间的界面。根据三维的参数研究液滴的变形和分离动力,即,未变形液滴半径与毛细管的半径之间的比率,分散和连续阶段之间的粘度比和毛细管测量粘性力对表面张力力相对重要性的数字。已经观察到液滴,同时穿过管,无论是接近稳定的子弹状形状,也可以在后部发出突出的倒排腔。根据初始液滴尺寸,每个流量配置存在临界毛细数量,其下降不能保持稳定的形状并突破成碎片。变形和分解现象主要取决于液滴尺寸,粘度比和毛细数量。已经对落帘直径与管直径相当的情况进行了特别的注意。已经进行了彻底的计算研究以找到悬浮在具有不同粘度比的系统中的各种尺寸范围的临界毛细管数。

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