Jayaprakash K S, Banerjee U, Sen A K
Department of Mechanical Engineering, Indian Institute of Technology Madras , Chennai-600036, India.
Langmuir. 2016 Mar 1;32(8):2136-43. doi: 10.1021/acs.langmuir.5b04116. Epub 2016 Feb 12.
We report the dynamics of aqueous droplets of different size and viscosity at the interface of a coflowing stream of immiscible oils (i.e., primary and secondary continuous phases) in a microchannel, at low Re. The lateral migration of droplets introduced into the primary continuous phase toward the interface and subsequent selective migration of droplets across the interface into the secondary continuous phase is investigated. The interplay between the competing noninertial lift and interfacial tension forces, which govern the interfacial migration of the droplets, is presented and discussed. The velocity and strain rate profiles, and interface location, which are critical for calculating the lift force and migration behavior of droplets, are presented. The trajectories of droplets of different size and viscosity in the primary continuous phase are obtained for different interface locations. During interfacial migration, the deformation behavior of droplets of different viscosities is studied. Finally, sorting of droplets based on size contrast is demonstrated and sorting efficiency is found. A new paradigm of migration and sorting of droplets is reported, which could find importance in chemical and biological applications.
我们报告了在微通道中低雷诺数下,不同大小和粘度的水滴在不混溶油(即主连续相和次连续相)并流流的界面处的动力学。研究了引入主连续相的水滴向界面的横向迁移以及随后水滴穿过界面进入次连续相的选择性迁移。介绍并讨论了控制水滴界面迁移的竞争性非惯性升力和界面张力之间的相互作用。给出了对于计算水滴升力和迁移行为至关重要的速度和应变率分布以及界面位置。针对不同的界面位置,获得了主连续相中不同大小和粘度水滴的轨迹。在界面迁移过程中,研究了不同粘度水滴的变形行为。最后,展示了基于尺寸对比的水滴分选,并得出了分选效率。报道了一种新的水滴迁移和分选模式,这在化学和生物应用中可能具有重要意义。