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Turbulent flow between a rotating disk and a parallel wallA scalar effective viscosity method is used to calculate the incompressible flow in the gap between two infinite, parallel smooth disks, one of them rotating and the other stationary. The flow is calculated for two values of the gap Reynolds number omega(s squared)/nu, namely 296 and 2852, where omega is the disk angular velocity, s the gap width, and nu the kinematic viscosity of the fluid; and over a range of radial Reynolds number omega(r squared)/nu from 0 to 10 million, where r is the radius from the axis of rotation. A numerical shooting technique is used to match the two boundary-layer flows arising on the disk and wall. Gradual transition is assumed for radial Reynolds numbers from 160,000 to 250,000. The results are in good agreement with Daily and Nece's measurements of velocity profiles and disk friction drag for enclosed rotating disks, and at sufficiently large radius the local skin friction approaches that of turbulent Couette flow.
Document ID
19750052165
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Cooper, P.
(TRW, Inc. Cleveland, Ohio, United States)
Reshotko, E.
(Case-Western-Reserve University Cleveland, Ohio, United States)
Date Acquired
August 8, 2013
Publication Date
May 1, 1975
Publication Information
Publication: AIAA Journal
Volume: 13
Subject Category
Fluid Mechanics And Heat Transfer
Accession Number
75A36237
Funding Number(s)
CONTRACT_GRANT: NGR-36-003-139
Distribution Limits
Public
Copyright
Other

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