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Influence of interfacial slip on the suspension rheology of a dilute emulsion of surfactant-laden deformable drops in linear flows

机译:界面滑动对线性流动稀释乳液稀释乳液的悬浮流变的影响

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摘要

The present study deals with the effect of interfacial slip on the deformation and emulsion rheology of a dilute suspension of droplets in a linear flow. The droplets are laden with surfactants that are bulk-insoluble and get transported only along the interface. An asymptotic approach is adopted for the present analysis in order to tackle the nonlinearity present due to deformation of droplets. The analysis is carried out for two different limiting scenarios, namely, surface diffusion-dominated-surfactant transport and surface convection-dominated surfactant transport. For either of the limiting cases, we look into the droplet dynamics for two commonly encountered bulk flows-uniaxial extensional and simple shear flow. Under the assumption of negligible fluid inertia in either phase, it is shown that slip at the droplet interface significantly affects the surfactant-induced Marangoni stress and hence droplet deformation and emulsion rheology. The presence of interfacial slip not only brings about a decrease in the droplet deformation but also reduces the effective viscosity of the emulsion. The fall in both droplet deformation and effective viscosity is found to be more severe for the limiting case of surface convection-dominated surfactant transport. For the case of an imposed simple shear flow, the normal stress differences generated due to droplet deformation are affected as well due to the presence of interfacial slip. Published by AIP Publishing.
机译:本研究涉及界面滑动对线性流动液滴稀释悬浮液的变形和乳液流变的影响。液滴载有表面活性剂,该表面活性剂是散装不溶于不溶性的,并且仅沿界面运输。采用对本分析采用渐近方法,以便在由于液滴变形而引起的非线性。对两种不同的限制场景进行分析,即表面扩散支配 - 表面活性剂传输和表面对焦占状活性剂转运。对于任何一个限制性案例,我们研究两个通常遇到的散装流动的液滴动力学 - 单轴伸缩和简单的剪切流程。在任一相中可忽略不计的流体惯量的假设下,显示液滴接口的滑动显着影响表面活性剂诱导的Marangoni应力,因此液滴变形和乳液流变。界面滑移的存在不仅引起液滴变形的减少,而且还降低了乳液的有效粘度。对于表面对流统治的表面活性剂转运的限制情况,发现滴注液体变形和有效粘度的落入液滴变形和有效粘度。对于施加简单的剪切流的情况,由于存在界面滑动,由于液滴变形而产生的正常应力差异也受到影响。通过AIP发布发布。

著录项

  • 来源
    《Physics of fluids》 |2018年第3期|共20页
  • 作者单位

    Indian Inst Technol Dept Mech Engn Kharagpur 721302 W Bengal India;

    Indian Inst Technol Dept Mech Engn Kharagpur 721302 W Bengal India;

    Indian Inst Technol Dept Mech Engn Kharagpur 721302 W Bengal India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

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