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Hydrodynamic assist and the dynamic contact angle in the coalescence of liquid drops

机译:液滴聚结中的流体动力辅助和动态接触角

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The coalescence of two viscous liquid drops in an inviscid gas or in a vacuum is studied using the interface formation model. In the very early stages of coalescence during the formation of the 'liquid-bridge' connecting the two drops, this model predicts a moving contact line and a dynamic contact angle. This paper examines the dynamic evolution of this contact angle, and for small Reynolds number and small Capillary number, relevant particularly in micro-fluidics, a non-linear differential equation is derived for the contact angle and solved computationally. It is found that the contact angle evolution can only be evaluated by determining information about the flow away from the contact line. This is a manifestation of so-called hydrodynamic assist, studied experimentally in the context of curtain coating by Blake et al. (1999 Experimental evidence of non-local hydrodynamic influence on the dynamic contact angle. Phys. Fluids, 11, 1995-2007). For small Capillary number and small Reynolds number, the free-surface evolution is determined for the coalescence of two cylinders of equal radius. Finally, some comments are made on experiments in coalescence, as well as on issues arising in a computational solution of the full model described here.
机译:使用界面形成模型研究了粘性气体或真空中两个粘性液滴的聚结。在连接两个液滴的“液桥”形成过程中,在聚结的早期阶段,该模型预测了移动的接触线和动态的接触角。本文研究了这种接触角的动态变化,对于小雷诺数和小毛细管数,特别是在微流体领域中,得出了接触角的非线性微分方程,并进行了计算求解。已经发现,只能通过确定关于离开接触线的流动的信息来评估接触角的演变。这是所谓的流体动力辅助的一种表现形式,由布莱克等人在幕涂过程中进行了实验研究。 (1999年,非局部流体动力学对动态接触角的影响的实验证据,《流体力学》,第11期,1995-2007年)。对于较小的毛细管数和较小的雷诺数,对于两个等半径的圆柱体的合并确定自由表面演变。最后,对合并实验以及此处描述的完整模型的计算解决方案中出现的问题进行了一些评论。

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