This article presents analytical expressions of velocity and mass flow rate in terms of Fourier series for gaseous slip flows in long, straight, and uniform rectangular microchannels in the case of different first-order slip boundary conditions on each wall of the microchannels. The derived velocity expressions were in good agreement with those presented by Ebert and Sparrow (J Basic Eng 87:1018, 1965), when the slip boundary conditions on each wall of the microchannels were identical. The computed first-order dimensionless mass flow rate was also in very good agreement with the dimensionless mass flow rate for the planar channel reported by Arkilic et al. (J Microelectromec Syst 6:167, 1997) as the channel aspect ratio approached zero. Usi...
Micro-scale fluid dynamics has received intensive interest due to the emergence of Micro-Electro-Mec...
International audienceThe mass flow rate through microchannels with rectangular cross section is mea...
We present an analytical model predicting the experimentally observed gas mass flow rate in rectangu...
International audienceAn analytical slip-flow model based on second-order boundary conditions was pr...
International audience7 This article extends in various directions our previous studies related to g...
The behavior of a rarefied, compressible flow in long, constant cross section channels provides an o...
[[abstract]]The present work studies numerically gas flaw in microchannels. The working fluids art n...
This paper presents an experimental study of rarefied gas flow in a trapezoidal microchannel with a ...
he behavior of a rarefied, compressible flow in long, constant cross section channels provides an op...
This paper is aimed at investigating the hydrodynamic entrance region of microchannels, within the s...
International audienceAn analytical approach has been developed to take account of the influence of ...
International audienceAn analytical approach has been developed to take account of the influence of ...
An experimental and 3D numerical study of gaseous slip flow through a converging microchannel is pre...
This paper presents experimental and three-dimensional numerical study of gaseous slip flow through ...
The assumption that a liquid adheres to a solid boundary ("no-slip" boundary condition) is one of th...
Micro-scale fluid dynamics has received intensive interest due to the emergence of Micro-Electro-Mec...
International audienceThe mass flow rate through microchannels with rectangular cross section is mea...
We present an analytical model predicting the experimentally observed gas mass flow rate in rectangu...
International audienceAn analytical slip-flow model based on second-order boundary conditions was pr...
International audience7 This article extends in various directions our previous studies related to g...
The behavior of a rarefied, compressible flow in long, constant cross section channels provides an o...
[[abstract]]The present work studies numerically gas flaw in microchannels. The working fluids art n...
This paper presents an experimental study of rarefied gas flow in a trapezoidal microchannel with a ...
he behavior of a rarefied, compressible flow in long, constant cross section channels provides an op...
This paper is aimed at investigating the hydrodynamic entrance region of microchannels, within the s...
International audienceAn analytical approach has been developed to take account of the influence of ...
International audienceAn analytical approach has been developed to take account of the influence of ...
An experimental and 3D numerical study of gaseous slip flow through a converging microchannel is pre...
This paper presents experimental and three-dimensional numerical study of gaseous slip flow through ...
The assumption that a liquid adheres to a solid boundary ("no-slip" boundary condition) is one of th...
Micro-scale fluid dynamics has received intensive interest due to the emergence of Micro-Electro-Mec...
International audienceThe mass flow rate through microchannels with rectangular cross section is mea...
We present an analytical model predicting the experimentally observed gas mass flow rate in rectangu...