Proceedings Vol. 15 (2009)
ENGINEERING MECHANICS 2009
May 11 – 14, 2009, Svratka, Czech Republic
Copyright © 2009 Institute of Theoretical and Applied Mechanics, Academy of Sciences of the Czech Republic, v.v.i., Prague
ISSN 1805-8248 (printed)
ISSN 1805-8256 (electronic)
list of papers scientific commitee
pages 375 - 382, full text
This paper deals with the analytical solution of gaseous slip flow in a rectangular microchannel. The flow is supposed to be steady, laminar, incompressible and hydrodynamically fully developed. The velocity slip at microchannel walls is expressed by the second-order velocity slip boundary conditions. The results derived using the Fourier method are compared with results obtained by the authors considering the first-order velocity slip boundary conditions.
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