Journal article
Electrolytic drops in an electric field: A numerical study of drop deformation and breakup
R Pillai, JD Berry, DJE Harvie, MR Davidson
Physical Review E Statistical Nonlinear and Soft Matter Physics | AMER PHYSICAL SOC | Published : 2015
Abstract
The deformation and breakup of an axisymmetric, conducting drop suspended in a nonconducting medium and subjected to an external electric field is numerically investigated here using an electrokinetic model. This model uses a combined level set-volume of fluid formulation of the deformable surfaces, along with a multiphase implementation of the Nernst-Planck equation for transport of ions, that allows for varying conductivity inside the drop. A phase diagram, based on a parametric study, is used to characterize the stability conditions. Stable drops with lower ion concentration are characterized by longer drop shapes than those achieved at higher ion concentrations. For higher drop ion conce..
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Funding Acknowledgements
R.P. acknowledges the support of a Melbourne International Research Scholarship (MIRS) during the completion of this work.