This paper aims to settle disputes in the literature about the spatial variation of the molecular mean free path (MFP) in confined geometries. The MFP of a gas is determined by using both molecular dynamics (MD) and the direct simulation Monte Carlo (DSMC) technique. In spatially-homogeneous cases, the numerical results exactly recover the kinetic theory predictions of a constant MFP. However, in microchannels, the MFP is found to vary near to the bounding walls and reduce at the surfaces to half of its bulk value as long as collisions between gas molecules and wall atoms are taken into account in the calculation of the MFP
We study the deviations for the results of the properties of a hard-sphere gas near the walls of a m...
In this paper we propose a model for micro gas flows consisting of the Navier-Stokes-Fourier equatio...
The interaction of a dilute monatomic gas with a solid surface is studied byMolecular Dynamics (MD) ...
This paper aims to settle disputes in the literature about the spatial variation of the molecular me...
The molecular mean free path (MFP) of gases in confined geometries is numerically evaluated by means...
Average distance traveled by gas molecules between intermolecular collisions, known as the mean free...
We investigate the gas flows near to solid surfaces in terms of the local spatial variation in the m...
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...
We investigate a power-law form for the probability distribution function of free paths of dilute ga...
We investigate whether a power-law form of probability distribution function better describes the fr...
We investigate the thermodynamically non-equilibrium gas dynamics by measuring molecular free path d...
This paper presents studies on the characteristics of gas molecular mean freepath in nanopores by mo...
Abstract: This paper presents studies on the characteristics of gas molecular mean free path in nano...
We present the results of investigations into the distribution of molecular free paths in rarefied g...
We study the deviations for the results of the properties of a hard-sphere gas near the walls of a m...
In this paper we propose a model for micro gas flows consisting of the Navier-Stokes-Fourier equatio...
The interaction of a dilute monatomic gas with a solid surface is studied byMolecular Dynamics (MD) ...
This paper aims to settle disputes in the literature about the spatial variation of the molecular me...
The molecular mean free path (MFP) of gases in confined geometries is numerically evaluated by means...
Average distance traveled by gas molecules between intermolecular collisions, known as the mean free...
We investigate the gas flows near to solid surfaces in terms of the local spatial variation in the m...
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...
We investigate a power-law form for the probability distribution function of free paths of dilute ga...
We investigate whether a power-law form of probability distribution function better describes the fr...
We investigate the thermodynamically non-equilibrium gas dynamics by measuring molecular free path d...
This paper presents studies on the characteristics of gas molecular mean freepath in nanopores by mo...
Abstract: This paper presents studies on the characteristics of gas molecular mean free path in nano...
We present the results of investigations into the distribution of molecular free paths in rarefied g...
We study the deviations for the results of the properties of a hard-sphere gas near the walls of a m...
In this paper we propose a model for micro gas flows consisting of the Navier-Stokes-Fourier equatio...
The interaction of a dilute monatomic gas with a solid surface is studied byMolecular Dynamics (MD) ...