Relaxing wakes behind surface-mounted obstacles in rough wall boundary layers
- 29 August 1979
- journal article
- research article
- Published by Cambridge University Press (CUP) in Journal of Fluid Mechanics
- Vol. 93 (04) , 631-659
- https://doi.org/10.1017/s0022112079001968
Abstract
Detailed measurements in the wakes behind two-dimensional square section blocks (height h) mounted in thick rough wall boundary layers (height δ) are presented for cases in which h/δ [Lt ] 1. The data provides some insight into the relaxing flow downstream of reattachment, confirming the conclusion of Bradshaw & Wong (1972) that reattaching flows are surprisingly complicated and involve considerable distortion of the separated shear layer. In particular, the measurements show that eddy length scales are considerably reduced and, since the flow eventually relaxes to a boundary layer similar to that upstream, turbulence models based on eddy viscosity concepts cannot, in principle, be expected to be satisfactory. Using the present data this is demonstrated by a more detailed comparison with the theoretical predictions of Counihan, Hunt & Jackson (1974) than has been previously possible. It is shown that, whilst their theory does not predict the behaviour of the turbulent stresses, it does give reasonable agreement with the mean velocity perturbations at least in the near wake −10 < x/h < 30. Except in the near wall region, where the roughness provides the dominant length scale, it is argued that the rate at which the perturbation flow decays is governed largely by the amount by which the separated shear layer is distorted prior to reattachment, which in turn is determined by, say, a turbulence Reynolds number of the body, (hU/v0)h, or, in other words, by the characteristics of the upstream flow at, say, the body height.Keywords
This publication has 15 references indexed in Scilit:
- The development and structure of simulated neutrally stable atmospheric boundary layersJournal of Industrial Aerodynamics, 1979
- A note on two-dimensional fence flows, with emphasis on wall constraintJournal of Wind Engineering and Industrial Aerodynamics, 1978
- Measurements of turbulent flow downstream of a rearward-facing stepJournal of Fluid Mechanics, 1978
- Cross-wire anemometry in high intensity turbulenceJournal of Fluid Mechanics, 1975
- Review—Complex Turbulent FlowsJournal of Fluids Engineering, 1975
- Wakes behind two-dimensional surface obstacles in turbulent boundary layersJournal of Fluid Mechanics, 1974
- The reattachment and relaxation of a turbulent shear layerJournal of Fluid Mechanics, 1972
- The determination of the rate of dissipation in turbulent pipe flowJournal of Fluid Mechanics, 1971
- An improved method of simulating an atmospheric boundary layer in a wind tunnelAtmospheric Environment (1967), 1969
- The form drag of two-dimensional bluff-plates immersed in turbulent boundary layersJournal of Fluid Mechanics, 1968