AbstractThe non-equilibrium molecular dynamics method is used in this paper to simulate the nano-scale shear-driven gas flows. The velocity gradients and shear stress profiles across the channel are first sampled according to molecular positions and thermal velocities. The Newton viscosity law is then adopted to obtain the local effective viscosity. By using this method, the distribution of effective viscosity across the channel is achieved for the first time. The effective viscosity in the bulk region of the channel agrees very well with the experimental data at different gas density and wall velocity. However, the local effective viscosity decreases when the fluid approaches the wall, because of the interactions between wall and gas molec...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
A key problem in the prediction of the flow properties of highly confined (nano-scale) fluids is tha...
AbstractThe non-equilibrium molecular dynamics method is used in this paper to simulate the nano-sca...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
The effect of wall roughness on liquid argon shear viscosity and diffusion coefficient in nanochanne...
We investigate the gas flows near to solid surfaces in terms of the local spatial variation in the m...
Molecular dynamics simulations of force-driven nano-channel gas flows show two distinct flow regions...
Three-dimensional molecular dynamics (MD) simulations of nanoscale gas flows are studied to reveal s...
The transport behavior of water molecules inside a model carbon nanotube is investigated by using no...
In molecular dynamics simulations, nanochannel flows are usually driven by a constant force, that ai...
Using non-equilibrium molecular dynamics simulations, we investigate the effect of wall roughness on...
The studies of fluid flows have been lately transferred to a significant extend at the micro- and th...
The molecular mean free path (MFP) of gases in confined geometries is numerically evaluated by means...
In this paper we use molecular dynamics (MD) simulations to study nanochannel flows at low Reynolds ...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
A key problem in the prediction of the flow properties of highly confined (nano-scale) fluids is tha...
AbstractThe non-equilibrium molecular dynamics method is used in this paper to simulate the nano-sca...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
The effect of wall roughness on liquid argon shear viscosity and diffusion coefficient in nanochanne...
We investigate the gas flows near to solid surfaces in terms of the local spatial variation in the m...
Molecular dynamics simulations of force-driven nano-channel gas flows show two distinct flow regions...
Three-dimensional molecular dynamics (MD) simulations of nanoscale gas flows are studied to reveal s...
The transport behavior of water molecules inside a model carbon nanotube is investigated by using no...
In molecular dynamics simulations, nanochannel flows are usually driven by a constant force, that ai...
Using non-equilibrium molecular dynamics simulations, we investigate the effect of wall roughness on...
The studies of fluid flows have been lately transferred to a significant extend at the micro- and th...
The molecular mean free path (MFP) of gases in confined geometries is numerically evaluated by means...
In this paper we use molecular dynamics (MD) simulations to study nanochannel flows at low Reynolds ...
We investigate the hydrodynamic properties of a Lennard-Jones fluid confined to a nanochannel using ...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
A key problem in the prediction of the flow properties of highly confined (nano-scale) fluids is tha...