The stability of the electroosmotic flow of electrolyte-dielectric viscous liquids under the influence of the DC and AC electric fields along with the external pressure gradient is studied theoretically. Liquids are bounded by two infinite parallel plates. The lower wall bordering the electrolyte is assumed to be a charged surface, and the upper wall is electrically isolated. The charge at the lower boundary is assumed to be immobile, while the surface charge at the free surface is assumed to be mobile. In this paper, we study the micro- and nanosized liquid layers. The mathematical model is described by a nonlinear system of the Nernst-Planck-Poisson-Stokes partial differential equations with the appropriate boundary conditions on the soli...
Most solid substances will acquire surface electric charges when brought into contact with a liquid ...
Electrohydrodynamics (EHD) describes the area of research, which studies the interactions of fluid m...
Diffusioosmotic flows of electrolyte solutions in slit nanochannels with homogeneous surface charges...
The two-phase microflow of conductive (electrolyte) and non-conductive (dielectric) viscous liquids ...
The present work considers stability of two-phase dielectric/electrolyte system, consisting of two i...
Instabilities of the interface between two thin liquid films under DC electroosmotic flow are invest...
This paper investigates analytically and experimentally electrohydrodynamic instability of the inter...
This paper investigates analytically and experimentally electrohydrodynamic instability of the inter...
We investigate the electrostatic stabilization of a viscous thin film wetting the underside of a hor...
We consider the stability of a thin liquid film with a free charged surface resting on a solid charg...
The electrohydrodynamic and stress instability of the interface between two viscous fluids with diff...
In this work, a non-isothermal electroosmotic flow of two immiscible fluids within a uniform microca...
Multiphase flow control is a challenging task in microfluidic systems. Application of such ideas in ...
The stability of the interface between two dielectric fluids confined between parallel plates subjec...
We present a linear stability analysis of parallel electroosmotic flow in a slot geometry. A spatial...
Most solid substances will acquire surface electric charges when brought into contact with a liquid ...
Electrohydrodynamics (EHD) describes the area of research, which studies the interactions of fluid m...
Diffusioosmotic flows of electrolyte solutions in slit nanochannels with homogeneous surface charges...
The two-phase microflow of conductive (electrolyte) and non-conductive (dielectric) viscous liquids ...
The present work considers stability of two-phase dielectric/electrolyte system, consisting of two i...
Instabilities of the interface between two thin liquid films under DC electroosmotic flow are invest...
This paper investigates analytically and experimentally electrohydrodynamic instability of the inter...
This paper investigates analytically and experimentally electrohydrodynamic instability of the inter...
We investigate the electrostatic stabilization of a viscous thin film wetting the underside of a hor...
We consider the stability of a thin liquid film with a free charged surface resting on a solid charg...
The electrohydrodynamic and stress instability of the interface between two viscous fluids with diff...
In this work, a non-isothermal electroosmotic flow of two immiscible fluids within a uniform microca...
Multiphase flow control is a challenging task in microfluidic systems. Application of such ideas in ...
The stability of the interface between two dielectric fluids confined between parallel plates subjec...
We present a linear stability analysis of parallel electroosmotic flow in a slot geometry. A spatial...
Most solid substances will acquire surface electric charges when brought into contact with a liquid ...
Electrohydrodynamics (EHD) describes the area of research, which studies the interactions of fluid m...
Diffusioosmotic flows of electrolyte solutions in slit nanochannels with homogeneous surface charges...