We present molecular dynamics simulation results on fluid and transport properties for nanochannel flows. The upper channel wall is constructed from periodic roughness elements and flows are simulated both in longitudinal (ribs) and transverse (grooves) direction and are compared to respective flat-wall channel flows. Various wall/fluid interaction strength ratios are considered for the simulations, covering typical hydrophilic and hydrophobic channels. We show that groove orientation (ribs and grooves) has a primitive effect on flow mainly due to slip length increase in a ribbed-wall channel. The transport properties of the fluid are significantly affected by wall wettability, as, in flows past an hydrophobic wall, the diffusion coefficien...
A two-dimensional molecular dynamics model of the liquid flow inside rough nanochannels is developed...
Nanoscale fluid flow systems involve both microscopic and macroscopic parameters, which may couple w...
The effect of wall roughness on liquid argon shear viscosity and diffusion coefficient in nanochanne...
The effect of a geometrically-rough wall, amplified by its degree of wettability and stiffness on di...
In molecular dynamics simulations, nanochannel flows are usually driven by a constant force, that ai...
A three dimensional Molecular Dynamics simulation method was used to study the effect of different g...
A three dimensional Molecular Dynamics simulation method was used to study the effect of different g...
A three dimensional Molecular Dynamics simulation method was used to study the effect of different g...
The effect of periodic rectangular wall roughness on planar nanochannel flow is investigated by diss...
A three dimensional Molecular Dynamics simulation method was used to study the effect of different g...
In this paper we use molecular dynamics (MD) simulations to study nanochannel flows at low Reynolds ...
The effect of rough-wall/fluid interaction on flow in nanochannels is investigated by NEMD. Hydropho...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
The transitional Reynolds number and range for macrochannel flows are around 1200 and 1000 respectiv...
Abstract. The work presents the results of the simulations of water flows through narrow channels (P...
A two-dimensional molecular dynamics model of the liquid flow inside rough nanochannels is developed...
Nanoscale fluid flow systems involve both microscopic and macroscopic parameters, which may couple w...
The effect of wall roughness on liquid argon shear viscosity and diffusion coefficient in nanochanne...
The effect of a geometrically-rough wall, amplified by its degree of wettability and stiffness on di...
In molecular dynamics simulations, nanochannel flows are usually driven by a constant force, that ai...
A three dimensional Molecular Dynamics simulation method was used to study the effect of different g...
A three dimensional Molecular Dynamics simulation method was used to study the effect of different g...
A three dimensional Molecular Dynamics simulation method was used to study the effect of different g...
The effect of periodic rectangular wall roughness on planar nanochannel flow is investigated by diss...
A three dimensional Molecular Dynamics simulation method was used to study the effect of different g...
In this paper we use molecular dynamics (MD) simulations to study nanochannel flows at low Reynolds ...
The effect of rough-wall/fluid interaction on flow in nanochannels is investigated by NEMD. Hydropho...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
The transitional Reynolds number and range for macrochannel flows are around 1200 and 1000 respectiv...
Abstract. The work presents the results of the simulations of water flows through narrow channels (P...
A two-dimensional molecular dynamics model of the liquid flow inside rough nanochannels is developed...
Nanoscale fluid flow systems involve both microscopic and macroscopic parameters, which may couple w...
The effect of wall roughness on liquid argon shear viscosity and diffusion coefficient in nanochanne...