Publicou 8 edições por ano
ISSN Imprimir: 1065-5131
ISSN On-line: 1563-5074
Indexed in
Numerical Analysis of Heat Transfer for Steady Three-Dimensional Compressible Flow in Long Microchannels
RESUMO
Heat transfer characteristics for compressible flow in microchannels have been infrequently studied both experimentally and numerically. Experimentally, this was due to the difficulties in fabricating micro temperature sensors. Numerically, this was due to the long computational time and large memory required in simulating the full NavierStokes equations three dimensionally.This study develops an efficient three-dimensional numerical procedure to investigate heat transfer characteristics of steady compressible laminar flow in long microchannels.The proposed numerical procedure solves the reduced compressible NavierStokes equations.
Two boundary conditions, a constant wall heat flux and an isothermal wall, were simulated in this study. The local Nusselt number in microchannel flows subject to a constant wall heat flux diminishes considerably along the channel axis.The effect of heat flux on the friction characteristic of microchannel flows was also examined. The effect of pressure ratio on the local Nusselt number was investigated. The local Nusselt number in microchannel flows subject to an isothermal wall was found to behave quite differently compared with that of conventional channel flows. The reasons for the differences were explored and discussed.
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Goldstein R.J., Ibele W.E., Patankar S.V., Simon T.W., Kuehn T.H., Strykowski P.J., Tamma K.K., Heberlein J.V.R., Davidson J.H., Bischof J., Kulacki F.A., Kortshagen U., Garrick S., Srinivasan V., Ghosh K., Mittal R., Heat transfer—A review of 2005 literature, International Journal of Heat and Mass Transfer, 53, 21-22, 2010. Crossref
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Fu-bing Bao , Jian-zhong Lin , Xing Shi , Simulation of gas flow and heat transfer in micro Poiseuille flow, 2008 3rd IEEE International Conference on Nano/Micro Engineered and Molecular Systems, 2008. Crossref