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Nonlinear dynamics of a two-dimensional viscous drop under shear flow

机译:剪切流作用下二维粘性降的非线性动力学

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The dynamics of a viscous drop moving along a substrate under the influence of shear flow in a parallel-walled channel is investigated. A front tracking numerical method is used to simulate a drop with moving contact lines. A Navier slip boundary condition is applied to relax the contact line singularity. Steady state solutions are observed for small Reynolds and capillary number. Unsteady solutions are obtained with increasing Reynolds or capillary number. For large values of the parameters, the interface appears to rupture, but for intermediate parameter values, time periodic drop interface oscillations are possible as the drop is moving along the bottom channel wall. These different states are identified in the Reynolds number-capillary number plane for a specific range of physical parameters. The effects of density and viscosity ratio are also illustrated. (c) 2006 American Institute of Physics.
机译:研究了在平行壁通道中剪切流的作用下,沿基材运动的粘性液滴的动力学。前跟踪数值方法用于模拟带有移动接触线的液滴。应用Navier滑移边界条件以放松接触线的奇点。对于小的雷诺数和毛细管数,可以观察到稳态溶液。随着雷诺数或毛细管数的增加,获得的溶液不稳定。对于较大的参数值,界面似乎会破裂,但对于中间参数值,由于水滴沿底部通道壁移动,可能会出现周期性的水滴界面振荡。对于特定范围的物理参数,在雷诺数-毛细管数平面中标识了这些不同的状态。还说明了密度和粘度比的影响。 (c)2006年美国物理研究所。

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