Purpose – Joule heating effect is a pervasive phenomenon in electro-osmotic flow because of the applied electric field and fluid electrical resistivity across the microchannels. Its effect in electro-osmotic flow field is an important mechanism to control the flow inside the microchannels and it includes numerous applications. Design/methodology/approach – This research article details the numerical investigation on alterations in the profile of stream wise velocity of simple Couette-electroosmotic flow and pressure driven electro-osmotic Couette flow by the dynamic viscosity variations happened due to the Joule heating effect throughout the dielectric fluid usually observed in various microfluidic devices. Findings – The advantages of the ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
The present article studies theoretically the electrokinetic pumping of nanofluids with heat and mas...
Background: The motion of fluids through the micro-tube, micro-channel, membranes, porous material a...
Microfluidic technology involving multidisciplinary studies including MEMS, chemistry, physics, flui...
Background: The motion of fluids through the micro-tube, micro-channel, membranes, porous material a...
Electro-osmotic flow, that is, the motion of a polar fluid in microducts induced by an external elec...
Electro-osmotic flow, that is, the motion of a polar fluid in microducts induced by an external elec...
Microfluidic devices have become a powerful tool for chemical and biological applications in the pas...
This study sought out to more clearly understand the relationship between Joule heating and fluid fl...
This study sought out to more clearly understand the relationship between Joule heating and fluid fl...
Electroosmotic flow is the transport method of choice in microfluidic devices over traditional press...
Joule heating is inevitable when an electric field is applied across a conducting medium. It would ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
The present article studies theoretically the electrokinetic pumping of nanofluids with heat and mas...
Background: The motion of fluids through the micro-tube, micro-channel, membranes, porous material a...
Microfluidic technology involving multidisciplinary studies including MEMS, chemistry, physics, flui...
Background: The motion of fluids through the micro-tube, micro-channel, membranes, porous material a...
Electro-osmotic flow, that is, the motion of a polar fluid in microducts induced by an external elec...
Electro-osmotic flow, that is, the motion of a polar fluid in microducts induced by an external elec...
Microfluidic devices have become a powerful tool for chemical and biological applications in the pas...
This study sought out to more clearly understand the relationship between Joule heating and fluid fl...
This study sought out to more clearly understand the relationship between Joule heating and fluid fl...
Electroosmotic flow is the transport method of choice in microfluidic devices over traditional press...
Joule heating is inevitable when an electric field is applied across a conducting medium. It would ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
The present article studies theoretically the electrokinetic pumping of nanofluids with heat and mas...