Deformation and breakup dynamics of droplets within a tapered channel
arXiv:2108.01993 · doi:10.1063/5.0057501
Abstract
In this paper we numerically investigate the breakup dynamics of droplets in an emulsion flowing in a tapered microchannel with a narrow constriction. The mesoscale approach for multicomponent fluids with near contact interactions is shown to capture the deformation and breakup dynamics of droplets interacting within the constriction, in agreement with experimental evidences. In addition, it permits to investigate in detail the hydrodynamic phenomena occurring during the breakup stages. Finally, a suitable deformation parameter is introduced and analyzed to characterize the state of deformation of the system by inspecting pairs of interacting droplets flowing in the narrow channel.
References in corpus (5)
- Mesoscale modeling of near-contact interactions for complex flowing interfaces
- Elucidating the mechanism of step-emulsification
- Modeling pattern formation in soft flowing crystals
- Shear dynamics of polydisperse double emulsions
- Wet to dry self-transitions in dense emulsions: from order to disorder and back