论文标题
液体界面悬挂液滴的动力学
Dynamics of Hanging Droplets from Liquid Interfaces
论文作者
论文摘要
使用三维数值模拟研究了较重的液滴进入较轻液体的影响。对任何数值模拟的前所未有,我们证明了使用表面张力的较轻的液体表面悬挂着较重的液滴。探索了冲击现象和较重的液滴作为其大小和释放高度的函数的演变。还制定了一个理论模型,以了解与悬挂液滴相关的不同形式的能量的作用。我们在分析上进一步解决了悬挂液的力平衡方程,并证明了从模拟获得的结果与分析溶液非常匹配。这项研究在许多领域提供了机会,包括药物和基因输送,生物分子的封装,微流体,软机器人以及溢油的补救。
The impact of a heavier droplet into a deep pool of lighter liquid is investigated using three-dimensional numerical simulations. Unprecedented to any numerical simulations, we demonstrate that the heavier droplets can hang from the surface of a lighter liquid using surface tension. The impact phenomenon and the evolution of the heavier droplet as a function of its size and release height are explored. A theoretical model is also formulated to understand the role of different forms of energies associated with the hanging droplet. We further solve the force balance equations for the hanging droplets analytically and demonstrate that the results obtained from our simulations match very well with the analytical solution. This research offers opportunities in many areas, including drug and gene delivery, encapsulation of biomolecules, microfluidics, soft robots, and remediation of oil spills.