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Effect of surfactants on the deformation of single droplet in shear flow studied by dissipative particle dynamics

机译:表面活性剂对通过耗散粒子动力学研究的剪切流动中单液滴变形的影响

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摘要

The behaviour of a single droplet in shear flow is a fundamental problem in immiscible liquid-liquid multiphase fluid systems. In this article, the deformation and inclination angle of single droplet covered with surfactants in shear flow at moderate Reynolds number, when both the inertial effects and interfacial tension are the key governing factors, were simulated by dissipative particle dynamics (DPD). Weber number We was adopted to indicate the force state of the droplet and a linear relationship between the deformation parameter D and We was found when Reynolds number Re is about 1-10, which is similar to the relation of D and Capillary number Ca when Re 1. When the surfactant concentration is lower than the critical micelle concentration (CMC), the distribution of surfactants, the droplet inclination angle and the droplet deformation parameter D were investigated at different surfactant density at interface d(s) and shear rate http://www.w3.org/1999/xlink. When the droplet size is close to the characteristic size of surfactant molecules, phase interfaces of water in oil (W/O) and oil in water (O/W) systems have different microstructures, which result in differences in the surfactant distribution, the droplet inclination angle and deformation of the two systems.
机译:剪切流中的单个液滴的行为是不混溶的液液多相流体系统中的基本问题。在本文中,当惯性效应和界面张力都是关键的控制因素时,覆盖剪切流动中的表面活性剂的单滴的变形和倾斜角度,通过耗散粒子动力学(DPD)模拟。我们被采用的韦伯号来指出液滴的力状态和变形参数D之间的线性关系,并且当Reynolds Number Re约为1-10时发现了,这类似于D和毛细数量CA的关系&& 1.当表面活性剂浓度低于临界胶束浓度(CMC)时,在接口D(S)和剪切速率下,在不同的表面活性剂密度下研究表面活性剂,液滴倾角和液滴变形参数D的分布HTTP:/ /www.w3.org/1999/xlink。当液滴尺寸接近表面活性剂分子的特征尺寸时,油状物(W / O)和水中的水(O / W)系统的相界面具有不同的微观结构,这导致表面活性剂分布的差异,液滴两个系统的倾斜角度和变形。

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