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On the Development of Turbulent Wakes From Vortex Streets

Roshko, Anatol (1953) On the Development of Turbulent Wakes From Vortex Streets. National Advisory Committee for Aeronautics , Washington, DC. http://resolver.caltech.edu/CaltechAUTHORS:20141114-105935749

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Abstract

Wake development behind circular cylinders at Reynolds numbers from 40 to 10,000 was investigated in a low-speed wind tunnel. Standard hotwire techniques were used to study the velocity fluctuations. The Reynolds number range of periodic vortex shedding is divided into two distinct subranges. At R = 40 to 150, called the stable range, regular vortex streets are formed and no turbulent motion is developed. The range R = 150 to 300 is a transition range to a regime called the irregular range, in which turbulent velocity fluctuations accompany the periodic formation of vortices. The turbulence is initiated by laminar-turbulent transition in the free layers which spring from the separation points on the cylinder. This transition first occurs in the range R = 150 to 300. Spectrum and statistical measurements were made to study the velocity fluctuations. In the stable range the vortices decay by viscous diffusion. In the irregular range the diffusion is turbulent and the wake becomes fully turbulent in 40 to 50 diameters downstream. It was found that in the stable range the vortex street has a periodic spanwise structure. The dependence of shedding frequency on velocity was successfully used to measure flow velocity. Measurements in the wake of a ring showed that an annular vortex street is developed.


Item Type:Report or Paper (Technical Report)
Related URLs:
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http://hdl.handle.net/2060/19930083620PublisherReport
http://resolver.caltech.edu/CaltechAUTHORS:ROSnacarpt1191Related ItemLater Version
Additional Information:NACA TN 2913
Group:GALCIT
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Record Number:CaltechAUTHORS:20141114-105935749
Persistent URL:http://resolver.caltech.edu/CaltechAUTHORS:20141114-105935749
Usage Policy:No commercial reproduction, distribution, display or performance rights in this work are provided.
ID Code:51769
Collection:CaltechAUTHORS
Deposited By: Kristin Buxton
Deposited On:14 Nov 2014 22:06
Last Modified:20 Sep 2016 20:45

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