A fully conjugate heat transfer analysis of gaseous flow, within slip flow regime, in short microchannels is presented. A Navier Stokes code, coupled with Maxwell slip and Smoluchowski temperature jump models, is adopted. The main focus is on the interaction between compressibility and heat transfer; in particular, due to the link between temperature and velocity field in highly compressible flow, it is important to recast the channel performance parameters in order to take into account the flow cooling due to the conversion between internal and kinetic energy. Results are presented for Nusselt number and a corrected heat sink thermal resistance, as well as resulting wall temperature
In this study, slip-flow heat transfer in a laminar, steady state, two-dimensional incompressible fl...
Fluid flow and heat-transfer characteristics in microchannels are investigated using a finite elemen...
ABSTRACT Slip-flow and conjugate heat transfer in rectangular microchannels are studied numerically ...
A fully conjugate heat transfer analysis of gaseous flow, within slip flow regime, in short microcha...
An extended numerical analysis is performed in order to characterize the combined effect of compress...
Analysis is presented for conjugate heat transfer in a parallel-plate microchannel. Axial conduction...
Due to the existence of a velocity slip and temperature jump on the solid walls, the heat transfer i...
A new set of slip boundary conditions is developed to be used beyond the slip flow-early transition ...
In this paper an experimental investigation of convective heat transfer is presented for laminar gas...
A two-dimensional flow and heat transfer model is used to study gas compressibility and rarefaction ...
International audienceThis paper deals with the modelling of weakly rarefied and dilute gas flows in...
This study is focused on the mathematical modelling of gas flow and heat transfer in a microchannel ...
An efficient equivalent porous media model designed to simulate the heat and fluid flow in a gasgas ...
Abstract-Rarefied gas slip microflow and heat transfer in rectangular microchannels and backward fac...
The mechanisms of near-wall velocity slip and their effects on energy conversion of fluid motion in ...
In this study, slip-flow heat transfer in a laminar, steady state, two-dimensional incompressible fl...
Fluid flow and heat-transfer characteristics in microchannels are investigated using a finite elemen...
ABSTRACT Slip-flow and conjugate heat transfer in rectangular microchannels are studied numerically ...
A fully conjugate heat transfer analysis of gaseous flow, within slip flow regime, in short microcha...
An extended numerical analysis is performed in order to characterize the combined effect of compress...
Analysis is presented for conjugate heat transfer in a parallel-plate microchannel. Axial conduction...
Due to the existence of a velocity slip and temperature jump on the solid walls, the heat transfer i...
A new set of slip boundary conditions is developed to be used beyond the slip flow-early transition ...
In this paper an experimental investigation of convective heat transfer is presented for laminar gas...
A two-dimensional flow and heat transfer model is used to study gas compressibility and rarefaction ...
International audienceThis paper deals with the modelling of weakly rarefied and dilute gas flows in...
This study is focused on the mathematical modelling of gas flow and heat transfer in a microchannel ...
An efficient equivalent porous media model designed to simulate the heat and fluid flow in a gasgas ...
Abstract-Rarefied gas slip microflow and heat transfer in rectangular microchannels and backward fac...
The mechanisms of near-wall velocity slip and their effects on energy conversion of fluid motion in ...
In this study, slip-flow heat transfer in a laminar, steady state, two-dimensional incompressible fl...
Fluid flow and heat-transfer characteristics in microchannels are investigated using a finite elemen...
ABSTRACT Slip-flow and conjugate heat transfer in rectangular microchannels are studied numerically ...