In this paper we present an in-depth analysis and analytical solution for time periodic hydrodynamic flow (driven by a time-dependent pressure gradient and electric field) of viscoelastic fluid through cylindrical micro- and nanochannels. Particularly, we solve the linearized Poisson–Boltzmann equation, together with the incompressible Cauchy momentum equation under no-slip boundary conditions for viscoelastic fluid in the case of a combination of time periodic pressure-driven and electro-osmotic flow. The resulting solutions allow us to predict the electrical current and solution flow rate. As expected from the assumption of linear viscoelasticity, the results satisfy the Onsager reciprocal relation, which is important since it enables an ...
This thesis presents an effort to understand electrokinetic energy conversion systems which are base...
Theoretical studies of micro-electro-mechanical systems (MEMS) provide an important insight into th...
The electroosmotic flow (EOF) of viscoelastic fluid in a long nanoslit is numerically studied to inv...
We present an in-depth analysis and analytical solution for AC hydrodynamic flow (driven by a timede...
In this work, we present a series of solutions for combined electro-osmotic and pressure-driven flow...
In this work, we present a series of solutions for combined electro-osmotic and pressure-driven flow...
In the present work, we attempt to analyze the electroosmotic flow of a viscoelastic fluid, followin...
Electroosmotic flow (EOF) is of utmost significance due to its numerous practical uses in controllin...
In this paper, the electrokinetic energy conversion (EKEC) efficiency, streaming potential of viscoe...
In the present study, we aim to highlight the interactions between fluid rheology and interfacial el...
We report a mechanism of massive augmentations in energy harvesting capabilities of nanofluidic devi...
A theoretical description of the electrokinetic flow of non-Newtonian fluids through slit and cylind...
The electro-osmotic peristaltic flow of a viscoelastic fluid through a cylindrical micro-channel is ...
The analytical solution for heat transfer in a dynamic and thermally fully developed channel flow of...
Emerging systems in microfluidics are embracing bio-inspired designs in which boundaries are flexibl...
This thesis presents an effort to understand electrokinetic energy conversion systems which are base...
Theoretical studies of micro-electro-mechanical systems (MEMS) provide an important insight into th...
The electroosmotic flow (EOF) of viscoelastic fluid in a long nanoslit is numerically studied to inv...
We present an in-depth analysis and analytical solution for AC hydrodynamic flow (driven by a timede...
In this work, we present a series of solutions for combined electro-osmotic and pressure-driven flow...
In this work, we present a series of solutions for combined electro-osmotic and pressure-driven flow...
In the present work, we attempt to analyze the electroosmotic flow of a viscoelastic fluid, followin...
Electroosmotic flow (EOF) is of utmost significance due to its numerous practical uses in controllin...
In this paper, the electrokinetic energy conversion (EKEC) efficiency, streaming potential of viscoe...
In the present study, we aim to highlight the interactions between fluid rheology and interfacial el...
We report a mechanism of massive augmentations in energy harvesting capabilities of nanofluidic devi...
A theoretical description of the electrokinetic flow of non-Newtonian fluids through slit and cylind...
The electro-osmotic peristaltic flow of a viscoelastic fluid through a cylindrical micro-channel is ...
The analytical solution for heat transfer in a dynamic and thermally fully developed channel flow of...
Emerging systems in microfluidics are embracing bio-inspired designs in which boundaries are flexibl...
This thesis presents an effort to understand electrokinetic energy conversion systems which are base...
Theoretical studies of micro-electro-mechanical systems (MEMS) provide an important insight into th...
The electroosmotic flow (EOF) of viscoelastic fluid in a long nanoslit is numerically studied to inv...