Title of article :
Analytical solution of a fully developed isothermal non-ideal gaseous slip flow in microchannels
Author/Authors :
Motamedian, Mahdi Department of Mechanical Engineering - University of Kashan, Kashan, Iran , Rahmati, Ahmad Reza Department of Mechanical Engineering - University of Kashan, Kashan, Iran
Pages :
11
From page :
126
To page :
136
Abstract :
In this paper, the fully developed non-ideal gaseous slip flow in circular, parallel plates, and rectangular microchannels is analyzed analytically by using Navier-Stokes equations to obtain the analytical exact solution. Van der Waals equation is used as the state equation of non-ideal gas. It is assumed that the flow is isothermal, incompressible, steady state, two-dimensional and fully developed, slip flow regime with consideration the first and second orders boundary conditions. It is developed the models for predicting the local and mean velocity, normalized Poiseuille number, and the ratio of density for the first and second orders boundary conditions. The results show that the rarefication process and Poiseuille number are a function of the Knudsen number and the cross-section geometry and Poiseuille number is independent of fluid material properties, velocity, and temperature. Also, for circular microchannel, the rarefication process occurs faster than the others.
Keywords :
Analytical solution , Microchannel , Non-ideal gaseous slip
Journal title :
Transport Phenomena in Nano and Micro Scales
Serial Year :
2020
Record number :
2573670
Link To Document :
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