Two-dimensional turbulent wakes

Author:

Gartshore Ian S.

Abstract

The equations of mean motion indicate that two-dimensional turbulent wakes, when subjected to appropriately tailored adverse pressure gradients, can be self-preserving. An experimental examination of two nearly self-preserving wakes is reported here. Mean velocity, longitudinal and lateral turbulence intensity, inter-mittency and shear stress distributions have been measured and are compared with Townsend's data from the small-deficit undistorted wake. In comparison with the undistorted case, the present wakes have slightly lower turbulent intensities and significantly lower shear stresses, all quantities being non-dimensionalized by a local velocity scale taken as the maximum mean velocity deficit. A consideration of the reasons for the shear stress reduction leads to an expression from which the shear stresses in any symmetrical free equilibrium shear flow can be found. This relationship is used to calculate the rate of growth in the measured wakes, with reasonable success.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference11 articles.

1. Gartshore, I. S. 1965 An experimental examination of the large-eddy equilibrium hypothesis.J. Fluid Mech. 24,89.

2. Newman, B. G. 1965 Turbulent jets and wakes in a pressure gradient. Proc. G.M. Conference, Detroit. Elsevier Publishing Co.

3. Townsend, A. A. 1949 The fully developed turbulent wake of a circular cylinder.Aust. J. Sci. Res. 2,451.

4. Keffer, J. F. 1965 The uniform distortion of a turbulent wake.J. Fluid Mech. 22,135.

5. Clauser, F. M. 1956 The turbulent boundary layer. Advances in Applied Mechanics , vol. 4.New York:Academic Press.

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