Journal article
A multiphase electrokinetic flow model for electrolytes with liquid/liquid interfaces
JD Berry, MR Davidson, DJE Harvie
Journal of Computational Physics | ACADEMIC PRESS INC ELSEVIER SCIENCE | Published : 2013
Abstract
A numerical model for electrokinetic flow of multiphase systems with deformable interfaces is presented, based on a combined level set-volume of fluid technique. A new feature is a multiphase formulation of the Nernst-Planck transport equation for advection, diffusion and conduction of individual charge carrier species that ensures their conservation in each fluid phase. The numerical model is validated against the analytical results of Zholkovskij et al. (2002) [1], and results for the problem of two drops coalescing in the presence of mobile charge carriers are presented. The time taken for two drops containing ions to coalesce decreases with increasing ion concentration. © 2013 Elsevier I..
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Funding Acknowledgements
This research was supported by the Australian Research Council Grants Scheme and by computational resources on the National Computational Infrastructure Facility through the National Computational Merit Allocation Scheme.