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可溶性表面活性剂对软凝胶涂层壁分层流稳定性的影响。

Effect of soluble surfactants on the stability of stratified flows through soft-gel-coated walls.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Madras, Chennai 600 036, India.

出版信息

Phys Rev E. 2018 Aug;98(2-1):023106. doi: 10.1103/PhysRevE.98.023106.

Abstract

The effect of a soluble surfactant on the linear stability of layered two-phase Poiseuille flows through soft-gel-coated parallel walls is studied in this paper. The focus is on determining the effect of the elastohydrodynamic coupling between the fluids and the soft-gel layers on the various flow instabilities. The fluids are assumed Newtonian and incompressible, while the soft gels are modeled as linear viscoelastic solids. The effect of a soluble surfactant on the different instabilities is specifically investigated. The soft-gel-coated plates are maintained at two different solute concentrations. The dynamics of the soluble surfactant in the fluids is captured using a species transport equation. A linear stability analysis is carried out to identify different instabilities in the system. The linearized governing equations are solved numerically using a Chebyshev spectral Collocation technique. The effect of deformability of the soft gels on three distinct instability modes, (a) a liquid-liquid long-wave mode, (b) a liquid-liquid short-wave mode, and (c) a liquid-liquid Marangoni short-wave mode, is analyzed. An analytical expression for the growth rate is obtained in the long-wave length limit using an asymptotic analysis. From the long-wave analysis a stability map is obtained, in which dominant effects in different regions are identified. The Marangoni stresses can either stabilize or destabilize the interfacial instability depending on the direction of mass transfer. They have a predominantly stabilizing effect on the interfacial instability when the mass transfer is from the more viscous broader fluid to the less viscous thinner fluid. Placing a gel closer to the more viscous fluid has a stabilizing effect on this instability. The Marangoni stresses and soft-gel layers can have opposing effects on the stability of the long-wave mode. The dominant of these two opposing effects is determined by the prevailing parameters. Insights into the dominant physical causes of different instabilities are presented.

摘要

本文研究了一种可溶性表面活性剂对软凝胶包覆平行壁层流两相泊谡叶流动线性稳定性的影响。重点是确定流体和软凝胶层之间的弹性流体动力耦合对各种流动不稳定性的影响。假设流体为牛顿型不可压缩的,而软凝胶则建模为线性粘弹性固体。特别研究了可溶性表面活性剂对不同不稳定性的影响。软凝胶包覆的板保持在两种不同的溶质浓度下。使用物种输运方程来捕获流体中可溶性表面活性剂的动力学。采用线性稳定性分析来识别系统中的不同不稳定性。用 Chebyshev 谱配置技术对线性化控制方程进行数值求解。分析了软凝胶的变形对三种不同不稳定性模式的影响:(a)液-液长波模式;(b)液-液短波模式;和(c)液-液 Marangoni 短波模式。通过渐近分析,在长波极限下得到了增长率的解析表达式。从长波分析得到了稳定性图,其中确定了不同区域的主要影响。取决于传质方向,Marangoni 应力可以稳定或不稳定界面不稳定性。当质量从较粘稠的较宽流体向较稀的较薄流体转移时,它们对界面不稳定性具有主要的稳定作用。将凝胶更靠近较粘稠的流体具有对这种不稳定性的稳定作用。Marangoni 应力和软凝胶层对长波模式的稳定性可能具有相反的影响。这两种相反影响的主导作用取决于主要参数。提出了对不同不稳定性的主要物理原因的深入了解。

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