Experimental studies have been performed to apply electrokinetic instability as a means of fluid mixing. A time-periodic electric field is introduced to excite the instability in a cross channel. It is generated by the sum of a static field and an alternating field. The characteristics of instability have been considered with the frequency of applied electric field as a key parameter. Through the frequency sweeping from 0. 1 Hz to 50 Hz, it has been found that the instability is most enhanced when the period of the applied electric field is close to half of the period of instability in the form of a sinusoidal wave generated under a the static electric field. This fact may be explained based on the concept of hydrodynamic resonance. The deg...
This paper reports enhancement of mixing process via electroosmotic phenomenon using a microelectrod...
Two-fluid mixing is an essential process in many microfluidic or “lab-on-a-chip ” devices for variou...
In the present study, we aim to highlight the interactions between fluid rheology and interfacial el...
Experimental studies have been performed to apply electrokinetic instability as a means of fluid mix...
We present simple effective micromixer designs utilizing electrokinetic instability (EKI) with downs...
We investigate electrostatically induced hydrodynamics in stratified flows. Vertical electric fields...
Numerical analyses of the recently proposed micro mixer based on periodic electroosmotic flow throug...
We present a new approach to enhance mixing in T-type micromixers by introducing a constriction in t...
In the present study we investigate electrostatic stabilization mechanisms acting on stratified flui...
It is shown theoretically that an electric field can be used to control and suppress the classical R...
745-753AC electro-osmotic flow is a promising technique in microfluidic manipulation. AC electroosmo...
In the last decade, the interfacial instability and mixing enhancement in microfluidic flow systems ...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
Mixing of fluids is of great value in many applications. Oscillatory and pulsatile flows can enhance...
Mixing and chaotic advection are studied in a liquid electrolyte set in motion by an electrical curr...
This paper reports enhancement of mixing process via electroosmotic phenomenon using a microelectrod...
Two-fluid mixing is an essential process in many microfluidic or “lab-on-a-chip ” devices for variou...
In the present study, we aim to highlight the interactions between fluid rheology and interfacial el...
Experimental studies have been performed to apply electrokinetic instability as a means of fluid mix...
We present simple effective micromixer designs utilizing electrokinetic instability (EKI) with downs...
We investigate electrostatically induced hydrodynamics in stratified flows. Vertical electric fields...
Numerical analyses of the recently proposed micro mixer based on periodic electroosmotic flow throug...
We present a new approach to enhance mixing in T-type micromixers by introducing a constriction in t...
In the present study we investigate electrostatic stabilization mechanisms acting on stratified flui...
It is shown theoretically that an electric field can be used to control and suppress the classical R...
745-753AC electro-osmotic flow is a promising technique in microfluidic manipulation. AC electroosmo...
In the last decade, the interfacial instability and mixing enhancement in microfluidic flow systems ...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
Mixing of fluids is of great value in many applications. Oscillatory and pulsatile flows can enhance...
Mixing and chaotic advection are studied in a liquid electrolyte set in motion by an electrical curr...
This paper reports enhancement of mixing process via electroosmotic phenomenon using a microelectrod...
Two-fluid mixing is an essential process in many microfluidic or “lab-on-a-chip ” devices for variou...
In the present study, we aim to highlight the interactions between fluid rheology and interfacial el...