Effect of Marangoni stress on the bulk rheology of a dilute emulsion of surfactant-laden deformable droplets in linear flows
Shubhadeep Mandal, Sayan Das, Suman Chakraborty

TL;DR
This study analytically examines how surfactant-induced Marangoni stresses influence the deformation and rheology of dilute emulsions with deformable droplets in linear flows, highlighting the effects of surfactant distribution and viscosity ratios.
Contribution
It provides a novel asymptotic analysis of surfactant effects on droplet deformation and bulk rheology in dilute emulsions under linear flows, considering surfactant transport dominated by surface diffusion.
Findings
Increased surfactant non-uniformity raises droplet deformation.
Higher viscosity ratios lead to more aligned droplets in shear flow.
Surfactant distribution significantly affects effective viscosity and deformation.
Abstract
In the present study we analytically investigate the deformation and bulk rheology of a dilute emulsion of surfactant-laden droplets suspended in a linear flow. We use an asymptotic approach to predict the effect of surfactant distribution on the deformation of a single droplet as well as the effective shear and extensional viscosity for the dilute emulsion. The non-uniform distribution of surfactants due to the bulk flow results in the generation of a Marangoni stress which affects both the deformation as well as the bulk rheology of the suspension. The present analysis is done for the limiting case when the surfactant transport is dominated by the surface diffusion relative to surface convection. As an example, we have used two commonly encountered bulk flows, namely, uniaxial extensional flow and simple shear flow. With the assumption of negligible inertial forces present in either…
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