Numerical analyses of the recently proposed micro mixer based on periodic electroosmotic flow through a constriction were conducted. The validity and accuracy of the numerical model developed were verified experimentally. The model allows the prediction of operating parameters such as alternating current (AC) amplitude and frequency for optimum mixing. For accurate simulations of flow behavior such that optimum operating conditions could be determined, the electromigration effect of charged fluorescent dye added to the fluid stream must be considered. This effect, which is generally ignored, can be incorporated in the convection diffusion equation. Important factors that govern the mixing efficiency of the mixer, such as the contact area be...
Experimental studies have been performed to apply electrokinetic instability as a means of fluid mix...
Due to the character of the original source materials and the nature of batch digitization, quality ...
745-753AC electro-osmotic flow is a promising technique in microfluidic manipulation. AC electroosmo...
We present a new approach to enhance mixing in T-type micromixers by introducing a constriction in t...
This paper sets to demonstrate a modeling of electrokinetic mixing employing electroosmotic stationa...
One approach to achieve a homogeneous mixture in microfluidic systems in the quickest time and short...
This paper presents the design and numerical simulation of a T-shape microfluidic electroosmotic mic...
A T-shaped micromixer featuring electroosmotic flow with heterogeneous charged surface patches on th...
In this paper, we present a novel microfluidic mixer with staggered virtual electrode based on light...
We present a micromixer fabricated using MEMS technology which takes advantage of electroosmosis to ...
This paper reports enhancement of mixing process via electroosmotic phenomenon using a microelectrod...
This SAND report describes progress made during a Sandia National Laboratories sponsored graduate fe...
This paper investigates mixing and heat transfer characteristics of mixed electroosmotic–pressure dr...
The purpose of this study is presenting an active micromixer, which is based on AC electro-osmotic f...
ABSTRACT In this study a newly designed microchannel is proposed. This design is comprised of a chan...
Experimental studies have been performed to apply electrokinetic instability as a means of fluid mix...
Due to the character of the original source materials and the nature of batch digitization, quality ...
745-753AC electro-osmotic flow is a promising technique in microfluidic manipulation. AC electroosmo...
We present a new approach to enhance mixing in T-type micromixers by introducing a constriction in t...
This paper sets to demonstrate a modeling of electrokinetic mixing employing electroosmotic stationa...
One approach to achieve a homogeneous mixture in microfluidic systems in the quickest time and short...
This paper presents the design and numerical simulation of a T-shape microfluidic electroosmotic mic...
A T-shaped micromixer featuring electroosmotic flow with heterogeneous charged surface patches on th...
In this paper, we present a novel microfluidic mixer with staggered virtual electrode based on light...
We present a micromixer fabricated using MEMS technology which takes advantage of electroosmosis to ...
This paper reports enhancement of mixing process via electroosmotic phenomenon using a microelectrod...
This SAND report describes progress made during a Sandia National Laboratories sponsored graduate fe...
This paper investigates mixing and heat transfer characteristics of mixed electroosmotic–pressure dr...
The purpose of this study is presenting an active micromixer, which is based on AC electro-osmotic f...
ABSTRACT In this study a newly designed microchannel is proposed. This design is comprised of a chan...
Experimental studies have been performed to apply electrokinetic instability as a means of fluid mix...
Due to the character of the original source materials and the nature of batch digitization, quality ...
745-753AC electro-osmotic flow is a promising technique in microfluidic manipulation. AC electroosmo...