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The Reynolds Analogy Applied to a Cylinder Rotating in Air

Published online by Cambridge University Press:  28 July 2016

Y. R. Mayhew*
Affiliation:
Department of Mechanical Engineering, University of Bristol

Extract

When a turbulent fluid flows past a solid surface whose temperature differs from that of the fluid, the shear stress at the surface and the heat flow from it can be related by means of the Reynolds analogy. This analogy has been improved by Prandtl, Taylor, von Kármán and others, and its validity has been tested for flow through tubes and past flat plates by several investigators. In this note the analogy is checked against shear stress data and heat transfer data for a cylinder rotating in “still” air, when the flow is turbulent.

Type
Technical Notes
Copyright
Copyright © Royal Aeronautical Society 1954

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References

1. Theodorsen, T. and Regier, A. (1944). N.A.C.A. Report No. 793, 1944.Google Scholar
2. Mikheev, M. A. (1936). Izv. Energ. Instituta Akademii Nauk, Vol. 4, 1936, and Elements of Heat Transfer, Moscow, 1947.Google Scholar
3. Anderson, J. T. and Saunders, O. A. (1953). Proc. Roy. Soc. A, Vol. 217, 1953, and Ph.D. Thesis by Anderson, J. T., University of London, 1952.Google Scholar
4. Jakob, M. (1950). Heat Transfer, John Wiley, 1950.Google Scholar
5. Reichardt, H. (1940). Zeitschr. f. angew. Math. u. Mech., Vol. 20, 1940. Google Scholar