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Non-Fourier Heat Transport in Microscale and Nanoscale Gas Flows

Authors
Myong, R. S.
Issue Date
2010
Publisher
AMER SOC MECHANICAL ENGINEERS
Keywords
Microscale/nanoscale heat transport; non-Fourier law; moment method
Citation
MNHMT2009, VOL 1, v.1, pp 113 - 117
Pages
5
Indexed
SCOPUS
Journal Title
MNHMT2009, VOL 1
Volume
1
Start Page
113
End Page
117
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/26063
DOI
10.1115/MNHMT2009-18279
ISSN
0000-0000
Abstract
It is known that heat transport in microscale and nanoscale gas flows may deviate from the classical law of Fourier. A more sophisticated model may be needed to describe the gaseous and thermal transport in these cases. In this work, computationally efficient nonlinear coupled constitutive relations are presented and their properties in states removed far from thermal nonequilibrium are examined. In order to validate the new model, the force-driven Poiseuille gas flow in microchannel is considered. The emphasis will be placed on how coupled and nonlinear relationship affects the prediction of gas flow and heat transfer in microsystem.
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Myong, Rho Shin
대학원 (기계항공우주공학부)
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