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Three-dimensional numerical simulation of drops suspended in Poiseuille flow at non-zero Reynolds numbers

机译:雷诺数为非零时悬浮在Poiseuille流中的液滴的三维数值模拟

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A finite difference/front tracking method is used to study the motion of three-dimensional deformable drops suspended in plane Poiseuille flow at non-zero Reynolds numbers. A parallel version of the code was used to study the behavior of suspension on a reasonable grid resolution (128×128×128 grids). The viscosity and density of drops are assumed to be equal to that of the suspending medium. The effect of Capillary number, the Reynolds number, and volume fraction are studied in detail. It is found that drops with small deformation behave like rigid particles and migrate to an equilibrium position about half way between the wall and the centerline (the Segre-Silberberg effect). However, for highly deformable drops there is a tendency for drops to migrate to the middle of the channel, and the maximum concentration occurs at the centerline. The concentration profile obtained across the channel is in agreement with that measured by Kowalewski (T. A. Kowalewski, "Concentration and velocity measurement in the flow of droplet suspensions through a tube," Exp. Fluids 2, 213 (1984)) experimentally for viscosity ratios less than or equal to one. The effective viscosity of suspension decreases with Capillary number in agreement with the creeping flow limit. Also, the effective viscosity increases with the Reynolds number of the flow.
机译:一种有限差分/前跟踪方法用于研究悬浮在平面Poiseuille流中的非零雷诺数下的三维可变形液滴的运动。该代码的并行版本用于研究在合理的网格分辨率(128×128×128网格)下的悬浮行为。假定液滴的粘度和密度等于悬浮介质的粘度和密度。详细研究了毛细管数,雷诺数和体积分数的影响。发现具有小变形的液滴的行为类似于刚性颗粒,并迁移到壁和中心线之间大约一半的平衡位置(Segre-Silberberg效应)。但是,对于高度变形的液滴,液滴有可能迁移到通道的中部,并且最大浓度出现在中心线。在整个通道上获得的浓度曲线与Kowalewski(TA Kowalewski,“通过管的液滴悬浮液的流动中的浓度和速度测量”,Exp.Fluids 2,213(1984))在粘度比较小时所测得的一致。等于或等于一。悬浮液的有效粘度随毛细数的增加而降低,与蠕变流量极限一致。而且,有效粘度随着流的雷诺数增加。

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