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Physics of Fluids, ISSN 1070-6631, 2015, Volume 27, Issue 9, p. 92106
The interaction and coalescence of a freely suspended drop pair, aligned in a uniform DC electric field is investigated using experiments, analytical theory,... 
INTERPARTICLE FORCE | MECHANICS | FILM | PHYSICS, FLUIDS & PLASMAS | ELECTRIC-FIELD | COALESCENCE | BEHAVIOR | CRUDE OIL-EMULSIONS | WATER DROPS | BREAKUP | DISINTEGRATION | Coalescing | Conductors | Dielectrics | Mathematical analysis | Electric fields | Boundary element method
Journal Article
Soft Matter, ISSN 1744-683X, 2/2018, Volume 14, Issue 9, pp. 1719 - 1736
Journal Article
SOFT MATTER, ISSN 1744-683X, 9/2019, Volume 15, Issue 35, pp. 6994 - 717
Journal Article
Journal of Fluid Mechanics, ISSN 0022-1120, 02/2020, Volume 884
Past experimental studies have indicated that the Rayleigh fission of a charged drop occurs via the formation of a jet followed by emission of progeny... 
Axial stress | Surface charge | Momentum | Drops (liquids) | Experiments | Convection | Relaxation time | Current carriers | Charge simulation | Progeny | Offspring | Numerical analysis | Simulation | Dynamics | Scaling | Droplets | Boundary element method
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 07/2015, Volume 130, pp. 239 - 253
Temporal instability of a cylindrical capillary jet is analyzed numerically for different liquid Reynolds numbers (Re=1,10,100),disturbance wave numbers... 
Temporal instability | Satellite drop formation | Growth rate | Drop size | Level Set Method | Level set method
Journal Article
Chemical Engineering Research and Design, ISSN 0263-8762, 12/2019, Volume 152, pp. 216 - 225
[Display omitted] •Brine conductivity can change the critical capillary number for non-coalescence.•Frequency has no effect on the coalescence pattern of two... 
Electrocoalescence | Water-in-oil | Cone angle | Non-coalescence | Capillary number | ENGINEERING, CHEMICAL | OIL | INTERFACIAL-TENSION | WATER DROPLETS | Insulation | Separation | Electric contacts | Dimpling | Water drops | Waveforms | Contact angle | Heat conductivity | Coalescing | Aqueous solutions | Castor oil | Droplets | Electric fields | Destabilization
Journal Article
Physics of Fluids, ISSN 1070-6631, 03/2012, Volume 24, Issue 3, pp. 032105 - 032105-21
A detailed nonlinear analysis of the deformation and breakup of a perfect dielectric (PD) drop, suspended in another perfect dielectric fluid, in the presence... 
SHAPE | MECHANICS | MAGNETIC-FIELDS | PHYSICS, FLUIDS & PLASMAS | STABILITY | FLUID DROP | WATER DROPS | AQUEOUS DROPS | FLOWS | CONDUCTING DROP | PAIRS
Journal Article
Journal of Fluid Mechanics, ISSN 0022-1120, 01/2019, Volume 859, pp. 839 - 850
The effect of an electric field on the coalescence of two water drops suspended in an insulating oil is investigated. We report four new results. (i) The cone... 
drops and bubbles | drops | electrohydrodynamic effects | MECHANICS | PHYSICS, FLUIDS & PLASMAS | COALESCENCE | ELECTRIC-FIELDS | Dimpling | Electric bridges | Water drops | Conductivity | Boundary integral method | Experiments | Bridges | Coalescing | Oil | Mathematical analysis | Castor oil | Dependence | Droplets | Coalescence | Electric fields | Silicones
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 07/2016, Volume 148, pp. 238 - 255
The present work on radial electric field induced jet breakup is an extension of our recent work (Lakdawala et al., 2015b) on surface tension force induced jet... 
Electrified jet | Temporal instability | Satellite drop formation | Growth rate | Drop size | STRATIFIED-FLOW | INSTABILITY | ELECTROHYDRODYNAMICS | STABILITY | VOLUME | SIMULATION | DROP | ENGINEERING, CHEMICAL | FLUID | CONDUCTING LIQUIDS | CAPILLARY | Electric fields | Mechanical engineering | Analysis | Methods | Fluid dynamics | Satellites | Computational fluid dynamics | Fluid flow | Mathematical models | Formations | Breakup | Electrostatics
Journal Article
Physics of Fluids, ISSN 1070-6631, 12/2018, Volume 30, Issue 12, p. 122105
A conducting charged drop, when subjected to a small amplitude perturbation, becomes unstable when the surface charge exceeds its Rayleigh limit. On the other... 
POTENTIAL FLOW | MECHANICS | SHAPES | PHYSICS, FLUIDS & PLASMAS | STABILITY | Charging | Surface charge | Amplitudes | Deformation mechanisms | Oscillations | Electric fields | Quadrupoles | Potential flow | Axisymmetric flow
Journal Article
Journal of Fluid Mechanics, ISSN 0022-1120, 08/2014, Volume 754, Issue 3, pp. 550 - 589
A conducting drop suspended in a viscous dielectric and subjected to a uniform DC electric field deforms to a steady-state shape when the electric stress and... 
breakup/coalescence | drops | electrohydrodynamic effects | MAGNETIC-FIELDS | PHYSICS, FLUIDS & PLASMAS | STABILITY | LIQUID | AQUEOUS DROPS | MECHANICS | ELECTROHYDRODYNAMIC DEFORMATION | VISCOUS DROP | FLUID | LEAKY DIELECTRIC DROP | CHARGED DROPS | WATER DROPS | Viscosity | Fluid mechanics | Electric fields | Stresses | Conduction | Axisymmetric | Numerical analysis | Disintegration | Breakup | Lobes
Journal Article
Journal of Physics Condensed Matter, ISSN 0953-8984, 01/2019, Volume 31, Issue 3, p. 035101
We suggest that non-uniform electric fields that are commonly used to study vesicle dielectrophoresis can be employed in hitherto relatively unexplored areas... 
entropic and enthalpic tension | deformation | quadrupole field | electrohydrodynamic | vesicles | PHYSICS, CONDENSED MATTER | electrohydrodynamics | DIELECTROPHORETIC FORCE | DROP | Physics - Soft Condensed Matter
Journal Article
Journal of Applied Physics, ISSN 0021-8979, 02/2017, Volume 121, Issue 5
The study explores the stable levitation and self-organization of charged multi-drop assemblies in a large sized quadrupole trap both experimentally and... 
Formulations | Simulation | Computer simulation | Dependence | Levitation | Droplets | Numerical prediction | Quadrupoles
Journal Article
Chemical Engineering Research and Design, ISSN 0263-8762, 02/2020, Volume 154, pp. 273 - 282
[Display omitted] •Electrocoalescence process is optimized with respect to electrode configuration.•Electrocoalescence process is optimized for insulated and... 
Electrode configuration | Electric field | COMSOL simulation | Electrocoalescer | Electrostatic | DROPS | CRUDE-OIL-EMULSIONS | BEHAVIOR | RESOLUTION | ENGINEERING, CHEMICAL | ELECTROCOALESCENCE | DESTABILIZATION | DEMULSIFICATION | WATER | Measurement | Coalescing | Separation | Reactors | Blood vessels | Boundary conditions | Residence time distribution | Electrostatics | Electric fields | Design optimization
Journal Article
Colloids and Surfaces A: Physicochemical and Engineering Aspects, ISSN 0927-7757, 05/2019, Volume 569, pp. 179 - 189
[Display omitted] Polysiloxane microcapsules have emerged as a model system to understand capsule formation and mechanical properties, owing to the simplicity... 
Membrane microstructure | Polysiloxane microcapsules | Hairy growth | Membrane formation | Electrodeformation | FILMS | CAPSULES | DYNAMICS | CHEMISTRY, PHYSICAL | DROP | Mechanical properties | Siloxanes | Analysis | Methods
Journal Article
Soft matter, ISSN 1744-683X, 02/2018, Volume 14, Issue 9, pp. 1719 - 1736
The axisymmetric electrohydrodynamic deformation of an elastic capsule with a capacitive membrane obeying the Skalak law under a uniform AC electric field is... 
Journal Article