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Dynamics of a Water Droplet over a Sessile Oil Droplet: Compound Droplets Satisfying a Neumann Condition

机译:柄口油滴水滴动力学:满足Neumann条件的复合液滴

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We report the dynamics of compound droplets with a denser liquid (water) droplet over a less dense sessile droplet (mineral oil) that satisfies the Neumann condition. For a fixed size of an oil droplet, depending on the size of the water droplet, either it attains the axisymmetric position or tends to migrate toward the edge of the oil droplet. For a water droplet-to-oil droplet at volume ratio V-w/V-o >= 0.05, stable axisymmetric configuration is achieved; for V-w/V-o < 0.05, migration of water droplet is observed. The stability and migration of water droplets of size above and below critical size, respectively, are explained using the force balance at the three-phase contact line and film tension. The larger and smaller droplets that initially attain the axisymmetric position or some radial position, respectively, evaporate continuously and thus migrate toward the edge of the oil droplet. The radial location and migration of the water droplets of different initial sizes with respect to time are studied. Experiments with water droplets on a flat oil-air interface did not show Migration, which signified the role of the curved oil-air interface for droplet migration. Finally, coalescence of water droplets of size above the critical size at the axisymmetric position is demonstrated. Our compound droplet studies could be beneficial for applications involving droplet transport where contamination due to direct contact and pinning of droplets on solid surfaces is of concern. Migration and coalescence of water droplets on curved oil air Interfaces, could open new frontiers in chemical and biological applications including multiphase processing and biological interaction of cells and atmospheric chemistry.
机译:我们在满足Neumann病情的较少致密的畸形液滴(矿物油)上用密集液体(水)液滴报告复合液滴的动态。对于油滴的固定尺寸,取决于水滴的尺寸,它可以达到轴对称位置或倾向于朝向油滴的边缘迁移。对于体积比V-W / V-O> = 0.05的水滴 - 油滴,实现了稳定的轴对称配置;对于V-W / V-O <0.05,观察到水滴的迁移。使用三相接触线和薄膜张力的力平衡来解释尺寸高于和尺寸以下尺寸的水滴的稳定性和迁移。最初且较小的液滴分别达到轴对称位置或一些径向位置,连续蒸发,从而朝向油滴的边缘迁移。研究了不同初始尺寸的水滴的径向位置和迁移。扁平油气界面上的水滴的实验没有显示迁移,这意味着曲线迁移的弯曲油空间的作用。最后,证明了轴对称位置处临界尺寸高于轴对称位置的尺寸的聚结。我们的复合液滴研究对于涉及液滴传输的应用可能是有益的,其中由于固体表面上的液滴引起的污染是关注的。弯曲油空气界面上的水滴的迁移和聚结,可以在化学和生物应用中开放新的前沿,包括细胞和大气化学的多相加工和生物相互作用。

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