Title of article :
Using Burnett Equations to Derive an Analytical Solution to PressureDriven Gas Flow and Heat Transfer in MicroCouette Flow
Author/Authors :
Rahmati ، Ahmad Reza - University of Khashan , Nejati Barzoki ، Faezeh - University of Khashan
Pages :
8
From page :
87
To page :
94
Abstract :
The aim of the present study is deriving an analytical solution to incompressible thermal flow in a microCouette geometry in the presence of a pressure gradient using Burnett equations with first and secondorder slip boundary conditions. The lower plate of the microCouette structure is stationary, whereas the upper plate moves at a constant velocity. Nondimensional axial velocity and temperature profiles were obtained using the slip boundary conditions and were compared with the transition flow regime (0.1≤ Kn ≤10). The results showed that in this regime, rarefaction exerts a considerable effect on both the velocity and the temperature profiles. Because of the presence of the pressure gradient in the direction of the flow, the nondimensional velocity and temperature profiles behave in a parabolic trend and flatten as the Knudsen number increases. The Poiseuille and Nusselt numbers, obtained using the derived analytical solution, decrease with increasing the Knudsen number. In the absence of an axial pressure gradient, the velocity profile behaves linearly and shows good agreement with the results of the previous works.
Keywords :
Burnett equations , Knudsen number , MicroCouette , Pressure gradient , Thermal flow , Transition regime
Journal title :
Journal of Heat and Mass Transfer Research
Serial Year :
2018
Journal title :
Journal of Heat and Mass Transfer Research
Record number :
2451065
Link To Document :
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