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The engulfment of aqueous droplets on perfectly wetting oil layers

机译:在完美润湿油层上的液滴吞吐

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Place a droplet of mineral oil on water and the oil will spread to cover the water surface in a thin film. In this paper we study the everted problem: an aqueous droplet deposited onto a deep layer of silicone oil. As it is energetically favourable for the oil phase to spread to cover the droplet surface completely, the droplet is ultimately engulfed in the oil layer. We present a detailed study of engulfment dynamics, from the instant the droplet impacts the oil surface until it finally sediments into the less dense oil. We study a broad range of droplet sizes (micrometric to millimetric) and oil kinematic viscosities (10(2)-10(5) cSt), corresponding to a viscosity-dominated parameter regime. We find that droplet engulfment involves the rapid submersion of the droplet driven by capillary forces in the oil surface, followed by the much slower peeling of the droplet from the interface, to which it is adhered via a thin cloaking layer of oil formed during the earlier stage. The later peeling stage is driven by a combination of geometric constraints at the apparent contact line and gravity pulling on the droplet. Gravitational effects are therefore essential to complete engulfment, even for micrometric droplets. Furthermore, the opposing effects of geometry and gravity result in the longest engulfment times for droplets of intermediate size. Experiments at fixed droplet size reveal a power law dependence of engulfment time on oil kinematic viscosity, which we argue reflects the dynamical formation of the oil cloaking layer.
机译:在水上滴一滴矿物油,油会扩散成薄膜覆盖水面。在本文中,我们研究了外翻问题:一个水滴沉积在硅油的深层上。由于油相在能量上有利于扩散,从而完全覆盖液滴表面,因此液滴最终被吞没在油层中。我们对吞没动力学进行了详细研究,从液滴撞击油表面的那一刻起,直到它最终沉积到密度较低的油中。我们研究了广泛的液滴尺寸(微米到毫米)和油的运动粘度(10(2)-10(5)cSt),对应于以粘度为主的参数区域。我们发现,液滴吞没包括液滴在油表面毛细力驱动下的快速浸没,随后液滴从界面上的剥离速度要慢得多,液滴通过早期形成的薄薄的油膜粘附在界面上。后期剥离阶段由表观接触线处的几何约束和液滴上的重力拉动的组合驱动。因此,重力效应对于完全吞没至关重要,即使对于微米级液滴也是如此。此外,几何形状和重力的相反影响导致中等大小的液滴吞没时间最长。在固定液滴尺寸下的实验揭示了油液运动粘度对吞没时间的幂律依赖性,我们认为这反映了油液隐形层的动态形成。

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