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A kinetic theory treatment of heat transfer in plane Poiseuille flow with uniform pressurePlane compressible Poiseuille flow with uniform pressure (Couette flow with stationary boundaries) is revisited where the Lees two-steam method with the Enskog equation of change is applied. Single particle velocity distribution functions are chosen, which preserve the essential physical features of this flow with arbitrary but uniform plate temperatures and gas pressure. Lower moments are shown to lead to expressions for the parameter functions, molecular number densities, and temperatures which are entirely in agreement with those obtained in the analysis of Lees for compressible plane Couette flow in the limit of low Mach number and vanishing mean gas velocity. Important simplifications result, which are helpful in gaining insight into the power of kinetic theory in fluid mechanics. The temperature distribution, heat flux, as well as density, are completely determined for the whole range of Knudson numbers from free molecular flow to the continuum regime, when the pressure level is specified.
Document ID
19930009695
Acquisition Source
Legacy CDMS
Document Type
Technical Memorandum (TM)
Authors
Bahrami, Parviz A.
(NASA Ames Research Center Moffett Field, CA, United States)
Date Acquired
September 6, 2013
Publication Date
December 1, 1992
Subject Category
Fluid Mechanics And Heat Transfer
Report/Patent Number
A-93021
NAS 1.15:103993
NASA-TM-103993
Report Number: A-93021
Report Number: NAS 1.15:103993
Report Number: NASA-TM-103993
Accession Number
93N18884
Funding Number(s)
PROJECT: RTOP 505-59-40
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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