Dynamics of viscous drops confined in a rough medium

ORAL

Abstract

We focus on the dynamics of viscous and non-wetting "pancake" droplets of oil confined in a vertical Hele-Shaw cell filled with a less viscous surfactant solution. These dense drops settle at constant velocity driven by gravity. The surfactant solution completely wets the walls, and a thin lubrication film separates the drops from the walls. With smooth walls, two main dynamical regimes are characterized as the gap between the walls is varied. Viscous dissipation is found to dominate either in the droplet or in the lubrication film, depending on the ratio of viscosities and length scales. A sharp transition between both regimes is observed and successfully captured by asymptotic models. With rough walls, that transition is dramatically altered. Drops are generally much slower in a rough Hele-Shaw cell, in comparison with a similar smooth cell. Building up on the seminal works of Seiwert et al. (J.F.M. 2011) on film deposition by dip coating on a rough surface, we shed light on the non-trivial friction processes resulting from the interplay of viscous dissipation at the front of the drop, in the lubrication film and in the bulk of the drop.

Authors

  • Ludovic Keiser

    ESPCI Paris, Laboratory PMMH, PSL Research University, Sorbonne Universites, Universite Paris Diderot, PMMH-ESPCI / Total S.A.

  • Armelle Gas

    ESPCI Paris, Laboratory PMMH, PSL Research University, Sorbonne Universites, Universite Paris Diderot

  • Khalil Jaafar

    ESPCI Paris, Laboratory PMMH, PSL Research University, Sorbonne Universites, Universite Paris Diderot

  • José Bico

    ESPCI Paris, Laboratory PMMH, PSL Research University, Sorbonne Universites, Universite Paris Diderot, PMMH-ESPCI

  • Etienne Reyssat

    ESPCI Paris, Laboratory PMMH, PSL Research University, Sorbonne Universites, Universite Paris Diderot, PMMH-ESPCI