Equilibrium turbulent boundary layers

Author:

Mellor G. L.,Gibson D. M.

Abstract

Empirical information is extracted from constant-pressure flows and, on this basis alone, the equations of motion are solved for flows where the pressure gradient parameter, β = δ*(dp/dx)/τ0 is held constant. The experimental defect profiles of Clauser and the near-separating profile of Stratford are predicted quite well.The present work is an extension of the work of Clauser and Townsend in that a particular form for an effective or eddy viscosity is hypothesized. Here, however, a continuous, and analytically precise family of defect profiles are calculated for the entire range, −0·5 ≤ β ≤ ∞. The solutions span the whole profile with the exception of the viscous sublayer.A detailed consideration of the viscous sublayer and a comparative examination of various eddy viscosity hypotheses are included in a companion paper.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference17 articles.

1. Rotta, J. 1950 Über die Theorie der tubulenten Grenzschichten,Mitt. Max-Planck-Inst., Gottingen, No. 1; translated as (1953): On the theory of the turbulent boundary layer. Nat. Adv. Comm. Aero., Wash., Tech. Mem. no. 1344.

2. Ludwig, H. & Tillman, W. 1950 Investigation of the wall shearing stress in turbulent boundary layers.NACA TM no. 1285.

3. Townsend, A. A. 1961 Equilibrium layers and wall turbulence.J. Fluid Mech. 11,97–120.

4. Mellor, G. L. 1966 The effect of pressure gradients on the flow near a smooth wall.J. Fluid Mech.,24,265.

5. Coles, D. 1957 Remarks on the equilibrium turbulent boundary layer.J. Aero. Sci. 24,495–506.

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