We investigate the gas flows near to solid surfaces in terms of the local spatial variation in the molecular mean free path (MFP). Molecular dynamics (MD) is the appropriate scientific tool for obtaining molecularly-accurate dynamic information in micro and nano-scale gas flows, and has been used to evaluate the molecular mean free path of gases. In the calibration procedure, the viscosity of a gas in the homogeneous case can be recovered in our MD simulations and reach good agreement with the theoretical prediction and data from NIST. In surface-bounded gas flows, if the collisions between gas molecules and walls are counted, a spatially-varying mean free path is presented, and for the first time we have observed that the distribution of ...
Molecular dynamics simulations of force-driven nano-channel gas flows show two distinct flow regions...
AbstractThe non-equilibrium molecular dynamics method is used in this paper to simulate the nano-sca...
Three-dimensional molecular dynamics (MD) simulations of nanoscale gas flows are studied to reveal s...
We investigate the gas flows near to solid surfaces in terms of the local spatial variation in the m...
The molecular mean free path (MFP) of gases in confined geometries is numerically evaluated by means...
A key parameter for micro-gas-flows, the mean free path, is investigated in this paper. The mean fre...
We investigate whether a power-law form of probability distribution function better describes the fr...
Average distance traveled by gas molecules between intermolecular collisions, known as the mean free...
We propose a power-law based effective mean free path (MFP) model so that the Navier-Stokes-Fourier ...
We investigate whether a power-law form of probability distribution function better describes the fr...
This paper aims to settle disputes in the literature about the spatial variation of the molecular me...
We investigate the thermodynamically non-equilibrium gas dynamics by measuring molecular free path d...
International audienceIn this paper, we use molecular dynamics (MD) simulations to study the mean fr...
We investigate a power-law form for the probability distribution function of free paths of dilute ga...
In this paper we propose a model for micro gas flows consisting of the Navier-Stokes-Fourier equatio...
Molecular dynamics simulations of force-driven nano-channel gas flows show two distinct flow regions...
AbstractThe non-equilibrium molecular dynamics method is used in this paper to simulate the nano-sca...
Three-dimensional molecular dynamics (MD) simulations of nanoscale gas flows are studied to reveal s...
We investigate the gas flows near to solid surfaces in terms of the local spatial variation in the m...
The molecular mean free path (MFP) of gases in confined geometries is numerically evaluated by means...
A key parameter for micro-gas-flows, the mean free path, is investigated in this paper. The mean fre...
We investigate whether a power-law form of probability distribution function better describes the fr...
Average distance traveled by gas molecules between intermolecular collisions, known as the mean free...
We propose a power-law based effective mean free path (MFP) model so that the Navier-Stokes-Fourier ...
We investigate whether a power-law form of probability distribution function better describes the fr...
This paper aims to settle disputes in the literature about the spatial variation of the molecular me...
We investigate the thermodynamically non-equilibrium gas dynamics by measuring molecular free path d...
International audienceIn this paper, we use molecular dynamics (MD) simulations to study the mean fr...
We investigate a power-law form for the probability distribution function of free paths of dilute ga...
In this paper we propose a model for micro gas flows consisting of the Navier-Stokes-Fourier equatio...
Molecular dynamics simulations of force-driven nano-channel gas flows show two distinct flow regions...
AbstractThe non-equilibrium molecular dynamics method is used in this paper to simulate the nano-sca...
Three-dimensional molecular dynamics (MD) simulations of nanoscale gas flows are studied to reveal s...