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Low Reynolds number modeling of turbulent flows with and without wall transpirationA full Reynolds-stress closure that is capable of describing the flow all the way to the wall is formulated. The closure is based on the conventional high Reynolds number form of the redistribution model, the inclusion of molecular diffusion, and a modified dissipation model to account for viscous effects near a wall. Two dissipation models are investigated along with two gradient diffusion and two redistribution models. Their respective effects on the calculated flow properties are assessed by comparing them with the data of fully developed turbulent flows and a developing pipe flow with wall transpiration. The near-wall behavior is very well predicted; however, the wall correction to the redistribution modeling is found to have little effect on the calculated results. The overall behavior of the fully developed turbulent flows is best described by a nonisotropic gradient diffusion model, a return-to-isotropy redistribution model, and a dissipation model that accounts for viscous behavior near a wall. This same closure also gives the best prediction of the axial pressure drop behavior along a pipe with a uniform wall suction. Furthermore, the near-wall behavior of such a flow is very well predicted by this closure.
Document ID
19880034756
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
So, Ronald M. C.
(Arizona State Univ. Tempe, AZ, United States)
Yoo, Geun Jong
(Arizona State University Tempe, United States)
Date Acquired
August 13, 2013
Publication Date
December 1, 1987
Publication Information
Publication: AIAA Journal
Volume: 25
ISSN: 0001-1452
Subject Category
Fluid Mechanics And Heat Transfer
Accession Number
88A21983
Funding Number(s)
CONTRACT_GRANT: N60530-85-C-0191
CONTRACT_GRANT: NAG3-167
Distribution Limits
Public
Copyright
Other

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