Turbulent energy dissipation in a wake

Author:

Browne L. W. B.,Antonia R. A.,Shah D. A.

Abstract

The average turbulent energy dissipation is often estimated by assuming isotropy and measuring the temporal derivative of the longitudinal velocity fluctuation. In this paper, the nine major terms that make up the total dissipation have been measured in the self-preserving region of a cylinder wake for a small turbulence Reynolds number. The results indicate that local isotropy is not satisfied; the isotropic dissipation, computed by assuming isotropic relations, being smaller than the total dissipation by about 45% on the wake centreline and by about 80% near the wake edge. Indirect verification of the dissipation measurements is provided by the budget of the turbulent kinetic energy. This budget leads to a plausible distribution for the pressure diffusion term, obtained by difference.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference31 articles.

1. Browne, L. W. B. & Antonia, R. A. 1986 Reynolds shear stress and heat flux measurements in a cylinder wake.Phys. Fluids 29,709–713.

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4. Wygnanski, I. & Fiedler, H. 1969 Some measurements in the self-preserving jet.J. Fluid Mech. 38,577–612.

5. Champagne, F. H. 1978 The fine-scale structure of the turbulent velocity field J. Fluid Mech. 86,67–108.

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