Biological mechanisms offer significant improvement in the efficiency of next generation energv systems. Motivated by new developments in distensible pumping systems, ionic electro-kinetic manipulation and nanoscale liquids(“nanofluids"), in the present study a mathematical model is developed to simulate the entropy generation and electro-osmotic transport of nanofluids in a curved deformable microchannel driven by peristaltic transport. Both thermal and species (nano-particle) buoyancy effects are included and Soret and Dufour cross-diffusion effects. The appropriate conservation equations are normalized with scaled variables and the resulting dimensionless nonlinear boundary value problem is solved in a transformed coordinate system. Simp...
Motivated by applications in bio-thermal-inspired smart electro-osmotic nanofluid micro-pumps, a mat...
A theoretical and a mathematical model is presented to determine the entropy generation on electro-k...
Motivated by new developments in electromagnetic nano/microfluidic energy systems, in this chapter a...
Biological mechanisms offer significant improvement in the efficiency of next generation energv syst...
Biomimetic designs are increasingly filtering into new areas of technology in recent years. Such sys...
Microscale heat sinks based on channels or pipes are designed to restrict the temperatures of microe...
The present article studies theoretically the electrokinetic pumping of nanofluids with heat and mas...
Biomimetic designs are increasingly filtering into new areas of technology in recent years. Such sys...
Emerging systems in microfluidics are embracing bio-inspired designs in which boundaries are flexibl...
Electro-osmotic peristaltic transport of aqueous nanofluids in a two-dimensional micro-channel is ex...
This paper resigns to study effects of electro-kinetic force due to presence of electrical charge la...
A theoretical analysis is presented in this work to assess the influence of nanofluids on thermally ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
The hydrodynamic and thermal behavior of the electroosmotic flow of power-law nanofluid is studied. ...
In the present study, the heat transfer characteristics of thermally developing magnetohydroclynamic...
Motivated by applications in bio-thermal-inspired smart electro-osmotic nanofluid micro-pumps, a mat...
A theoretical and a mathematical model is presented to determine the entropy generation on electro-k...
Motivated by new developments in electromagnetic nano/microfluidic energy systems, in this chapter a...
Biological mechanisms offer significant improvement in the efficiency of next generation energv syst...
Biomimetic designs are increasingly filtering into new areas of technology in recent years. Such sys...
Microscale heat sinks based on channels or pipes are designed to restrict the temperatures of microe...
The present article studies theoretically the electrokinetic pumping of nanofluids with heat and mas...
Biomimetic designs are increasingly filtering into new areas of technology in recent years. Such sys...
Emerging systems in microfluidics are embracing bio-inspired designs in which boundaries are flexibl...
Electro-osmotic peristaltic transport of aqueous nanofluids in a two-dimensional micro-channel is ex...
This paper resigns to study effects of electro-kinetic force due to presence of electrical charge la...
A theoretical analysis is presented in this work to assess the influence of nanofluids on thermally ...
A mathematical model is developed to investigate the combined viscous electro-osmotic flow and heat ...
The hydrodynamic and thermal behavior of the electroosmotic flow of power-law nanofluid is studied. ...
In the present study, the heat transfer characteristics of thermally developing magnetohydroclynamic...
Motivated by applications in bio-thermal-inspired smart electro-osmotic nanofluid micro-pumps, a mat...
A theoretical and a mathematical model is presented to determine the entropy generation on electro-k...
Motivated by new developments in electromagnetic nano/microfluidic energy systems, in this chapter a...