Heat transfer in micro-flows is essential to emerging technologies as advanced microelectronics cooling systems and chemical processes in lab-on-a-chip applications. The present study explores the potential of AC electro-osmotic (ACEO) flow forcing, a promising technique for the actuation and manipulation of micro-flows, for heat-transfer enhancement. Subjects of investigation include the 3D flow structure due to ACEO forcing via an array of electrodes in a micro-channel by way of 3D velocity measurements. Presence and properties of vortical structures of the 3D flow are quantified in laboratory experiments. Typical outcomes of the experimental study result from a number of 3D particle trajectories obtained by using 3D micro-Particle-Tracki...
The application of a nonuniform ac electric field to an electrolyte using coplanar microelectrodes r...
Classically, the configuration of electrodes (conductors) is used as a means to determine AC-electro...
ACEO-induced vortices have been used to manipulate fluids and particles for chemical and biochemical...
Heat transfer in micro-flows is essential to emerging technologies as advanced microelectronics cool...
This paper presents an experimental and numerical study on the vortical structures in AC electro-osm...
This paper presents an experimental validation of a numerical study on the vortical structures in AC...
The three-dimensional (3D) flow due to AC electroosmotic (ACEO) forcing on an array of interdigitate...
Flow forcing by AC electro-osmosis (ACEO) is a promising technique for actuation and manipulation of...
Flow forcing by ac electro-osmosis (ACEO) is a promising technique for the actuation and manipulatio...
AC electrothermal flow (ACEF) is the fluid motion created as a result of Joule heating induced tempe...
The goal of this paper is to validate experimentally the ability to separate or upconcentrate micro ...
The fluid flow behavior in an alternating current (AC) electroosmotic micropumping device has been s...
AC Electrokinetics (ACEK) has attracted much research interest for microfluidic manipulation for the...
The application of a nonuniform ac electric field to an electrolyte using coplanar microelectrodes r...
Classically, the configuration of electrodes (conductors) is used as a means to determine AC-electro...
ACEO-induced vortices have been used to manipulate fluids and particles for chemical and biochemical...
Heat transfer in micro-flows is essential to emerging technologies as advanced microelectronics cool...
This paper presents an experimental and numerical study on the vortical structures in AC electro-osm...
This paper presents an experimental validation of a numerical study on the vortical structures in AC...
The three-dimensional (3D) flow due to AC electroosmotic (ACEO) forcing on an array of interdigitate...
Flow forcing by AC electro-osmosis (ACEO) is a promising technique for actuation and manipulation of...
Flow forcing by ac electro-osmosis (ACEO) is a promising technique for the actuation and manipulatio...
AC electrothermal flow (ACEF) is the fluid motion created as a result of Joule heating induced tempe...
The goal of this paper is to validate experimentally the ability to separate or upconcentrate micro ...
The fluid flow behavior in an alternating current (AC) electroosmotic micropumping device has been s...
AC Electrokinetics (ACEK) has attracted much research interest for microfluidic manipulation for the...
The application of a nonuniform ac electric field to an electrolyte using coplanar microelectrodes r...
Classically, the configuration of electrodes (conductors) is used as a means to determine AC-electro...
ACEO-induced vortices have been used to manipulate fluids and particles for chemical and biochemical...