A two-fluid electroosmotic flow in a microchannel is studied by considering full hydrodynamic and electrostatic interactions on the interface. Jumps in electrical potential and in charge density across the interface, in particular, are found to create counterintuitive flow behavior through the electrostatic interaction of the interface with the external field imposed. The interfacial electrostatic effects are shown to induce flow reversal within physically reasonable parametric ranges. It is also shown that the electrostatic properties of the interface must be carefully considered in electroosmotic pumping lest the nonconducting fluid should stay stationary or flow in an unintended direction. A formula for quantitative control of electroosm...
This paper investigates analytically and experimentally electrohydrodynamic instability of the inter...
Most solid substances will acquire surface electric charges when brought into contact with a liquid ...
This paper presents a mathematical model to describe a three-fluid electroosmotic focusing/pumping t...
This paper presents an experimental investigation of the pressure-driven two-fluid flow in microchan...
In this work, a non-isothermal electroosmotic flow of two immiscible fluids within a uniform microca...
In this study, the isothermal electroosmotic flow of two immiscible electrical conducting fluids wit...
We report a novel concept to control the interface location of a pressure-driven multi-phase flow in...
109 p.In the first part of this project, the stratified two-fluid flow in microchannel under pressur...
A quantitative theory is proposed for the analysis of steady electroosmotically driven flows within ...
The electrohydrodynamic and stress instability of the interface between two viscous fluids with diff...
This paper investigates analytically and experimentally electrohydrodynamic instability of the inter...
Multiphase flow control is a challenging task in microfluidic systems. Application of such ideas in ...
The Oscillatory electroosmotic flow (OEOF) in power law fluids through a microchannel is studied num...
A quantitative theory is proposed for the analysis of steady electroosmotically driven flows within ...
This study is motivated by the need to develop a semi analytical model for predicting the stratified...
This paper investigates analytically and experimentally electrohydrodynamic instability of the inter...
Most solid substances will acquire surface electric charges when brought into contact with a liquid ...
This paper presents a mathematical model to describe a three-fluid electroosmotic focusing/pumping t...
This paper presents an experimental investigation of the pressure-driven two-fluid flow in microchan...
In this work, a non-isothermal electroosmotic flow of two immiscible fluids within a uniform microca...
In this study, the isothermal electroosmotic flow of two immiscible electrical conducting fluids wit...
We report a novel concept to control the interface location of a pressure-driven multi-phase flow in...
109 p.In the first part of this project, the stratified two-fluid flow in microchannel under pressur...
A quantitative theory is proposed for the analysis of steady electroosmotically driven flows within ...
The electrohydrodynamic and stress instability of the interface between two viscous fluids with diff...
This paper investigates analytically and experimentally electrohydrodynamic instability of the inter...
Multiphase flow control is a challenging task in microfluidic systems. Application of such ideas in ...
The Oscillatory electroosmotic flow (OEOF) in power law fluids through a microchannel is studied num...
A quantitative theory is proposed for the analysis of steady electroosmotically driven flows within ...
This study is motivated by the need to develop a semi analytical model for predicting the stratified...
This paper investigates analytically and experimentally electrohydrodynamic instability of the inter...
Most solid substances will acquire surface electric charges when brought into contact with a liquid ...
This paper presents a mathematical model to describe a three-fluid electroosmotic focusing/pumping t...