The electrohydrodynamics of millimetric droplets under the influence of slowly varying electric fields is considered. Strong electric fields applied on liquids induce forces driving fluid motion. This effect can be used, among others, in on-demand droplet generators. In this work, we discuss a convection-conduction model for the simulation of droplet motion in strong electric fields. The model focuses on robustness with respect to topology changes and on dynamic charging effects in liquids. We illustrate the model with the simulation of electrically driven droplet generation. The simulated dynamics for droplets with different conductivities are compared with experiments
Ranging from raindrops in thunderclouds, to electrosprays in mass spectrometry to printing and coati...
Electrical actuation of liquid droplets at the microscale offers promising applications in the field...
In this paper, electrohydrodynamics (EHD) deformation of a droplet in a highly confined domain is st...
An electrohydrodynamic model for the simulation of droplet formation, detachment and motion in an el...
This work focuses on the numerical study of electrohydrodynamic multiphase fluid flow problems. Liqu...
Fluid motion induced by strong electric fields affects many engineering applications.On the surface ...
An electrohydrodynamic model for the simulation of droplet formation, mo- tion and detachment in an...
A linear dynamic model of water droplet deformation in the presence of an electric field has been de...
This work focuses on numerical simulations of water droplet deformations under the influence of tran...
The electrohydrodynamics of a sessile droplet under the influence of periodic and steady electric fi...
This dissertation is targeted at the development of new approaches for enhanced electrical control o...
Droplets on insulators in outdoor high-voltage equipment move and leave water films on the insulatin...
In this study, the electrohydrodynamics of viscous droplets in a confined domain under the action of...
We evaluate the feasibility of manipulating droplets in two dimensions by exploiting Coulombic force...
We evaluate the feasibility of manipulating droplets in two dimensions by exploiting Coulombic force...
Ranging from raindrops in thunderclouds, to electrosprays in mass spectrometry to printing and coati...
Electrical actuation of liquid droplets at the microscale offers promising applications in the field...
In this paper, electrohydrodynamics (EHD) deformation of a droplet in a highly confined domain is st...
An electrohydrodynamic model for the simulation of droplet formation, detachment and motion in an el...
This work focuses on the numerical study of electrohydrodynamic multiphase fluid flow problems. Liqu...
Fluid motion induced by strong electric fields affects many engineering applications.On the surface ...
An electrohydrodynamic model for the simulation of droplet formation, mo- tion and detachment in an...
A linear dynamic model of water droplet deformation in the presence of an electric field has been de...
This work focuses on numerical simulations of water droplet deformations under the influence of tran...
The electrohydrodynamics of a sessile droplet under the influence of periodic and steady electric fi...
This dissertation is targeted at the development of new approaches for enhanced electrical control o...
Droplets on insulators in outdoor high-voltage equipment move and leave water films on the insulatin...
In this study, the electrohydrodynamics of viscous droplets in a confined domain under the action of...
We evaluate the feasibility of manipulating droplets in two dimensions by exploiting Coulombic force...
We evaluate the feasibility of manipulating droplets in two dimensions by exploiting Coulombic force...
Ranging from raindrops in thunderclouds, to electrosprays in mass spectrometry to printing and coati...
Electrical actuation of liquid droplets at the microscale offers promising applications in the field...
In this paper, electrohydrodynamics (EHD) deformation of a droplet in a highly confined domain is st...