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Scaling of impulsively started, incompressible, laminar round jets and pipe flows
The scaling law of transient and steady, laminar, incompressible round jets is deduced from numerical solutions of the complete Navier-Stokes equations for 70 less than or equal Re less than or equal 500, and the results are compared with available experimental data. It is found that the axial length scale is DRE and the time scale D2/v. The same scales are shown to apply also to the entrance and fully developed regions of transient and steady pipe flows for Re greater than 10.
Scaling of impulsively started, incompressible, laminar round jets and pipe flows
The scaling law of transient and steady, laminar, incompressible round jets is deduced from numerical solutions of the complete Navier-Stokes equations for 70 less than or equal Re less than or equal 500, and the results are compared with available experimental data. It is found that the axial length scale is DRE and the time scale D2/v. The same scales are shown to apply also to the entrance and fully developed regions of transient and steady pipe flows for Re greater than 10.
Scaling of impulsively started, incompressible, laminar round jets and pipe flows
Skalierung von stossweise erzeugten inkompressiblen laminaren runden Strahlen und Stroemungen in Rohrleitungen
Kuo, T.W. (author) / Syed, S.A. (author) / Bracco, F.V. (author)
AIAA Journal ; 24 ; 424-428
1986
5 Seiten, 6 Bilder, 9 Quellen
Article (Journal)
English
Characteristics of Recirculation Zone Structure behind an Impulsively Started Circular Cylinder
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