Hostname: page-component-8448b6f56d-wq2xx Total loading time: 0 Render date: 2024-04-18T10:07:32.865Z Has data issue: false hasContentIssue false

An Investigation of the Effects of Incidence on the Flow Around a Square Section Cylinder

Published online by Cambridge University Press:  07 June 2016

E.D. Obasaju*
Affiliation:
Department of Aeronautics, Imperial College, London
Get access

Summary

A study has been made of the changes that take place in the flow around a square section cylinder as the angle of incidence is increased from 0° to 45°. Measurements of the Strouhal number, S, and the vortex longitudinal spacing, a/d, are presented and used to estimate the vortex strength, , and vortex street spacing ratio, b/a. is found to vary between about 1.2 and 1.7 depending on incidence, and is given approximately by 0.52(1 - Cpb)/2πS, where Cpb is the mean base pressure coefficient. As the incidence is increased from 0°, S at first decreases slightly and then rises sharply to a maximum at 13.5° incidence, which is the incidence where reattachment of the shear layer, in some mean sense, is expected to commence. The spectra of pressure and velocity fluctuations were measured and subharmonic peaks were found in both spectra at 5° and 10° incidence. It is suggested that they may have been caused by an interaction between a vortex and a trailing edge corner. The degree of organisation of the vortex shedding process was estimated by calculating the sharpness factor, Q, of the spectral peaks at the vortex shedding frequency. In general Q fluctuated with changes in incidence. High values of Q occurred at angles of incidence where the rate of change of the mean base pressure coefficient with incidence is very small whereas low values occurred where the flow is changing to a different state.

Type
Research Article
Copyright
Copyright © Royal Aeronautical Society. 1983

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

1 Bearman, P.W. and Obasaju, E.D. An experimental study of pressure fluctuations on fixed and oscillating square section cylinders. Journal of Fluid Mechanics, Vol. 119, pp 297-321, 1982 CrossRefGoogle Scholar
2 Chaplin, J.R. Flow-induced forces and wake dynamics of cylindrical bodies. Ph.D. thesis, Dept of Civil Engineering, University of Bristol, UK, 1970 Google Scholar
3 Lee, B.E. The effect of turbulence on the surface pressure field on a square prism. Journal of Fluid Mechanics, Vol. 69, pp 263-282, 1975 CrossRefGoogle Scholar
4 Obasaju, E.D. On the effects of end plates on the mean forces on square section cylinders. Journal of Industrial Aerodynamics, Vol. 5, pp 179-186, 1979 CrossRefGoogle Scholar
5 Pocha, J.J. On unsteady flow past cylinders of square cross-section. Ph.D. thesis, Dept of Aeronautics, Queen Mary College, London University, 1971 Google Scholar
6 Vickery, B.J. Fluctuating lift and drag on a long cylinder of square cross-section in smooth and in turbulent stream. Journal of Fluid Mechanics, Vol. 25, pp 481-494, 1966 CrossRefGoogle Scholar
7 Wilkinson, R.H. Fluctuating pressures on an oscillating square prism. Part 1: Chordwise distribution of fluctuating pressure. Aeronautical Quarterly, Vol. 32, pp 97-110, 1981 CrossRefGoogle Scholar
8 Parkinson, G.V. and Brooks, N.P.H. On the aeroelastic instability of bluff cylinders. Trans. ASME, Journal of Applied Mechanics, Vol. 28, pp 252-258, 1961 CrossRefGoogle Scholar
9 Bearman, P.W. and Trueman, D.M. An investigation of the flow around rectangular cylinders. Aeronautical Quarterly, Vol. 23, pp 229-237, 1972 CrossRefGoogle Scholar
10 Engineering Sciences Data Unit Data Sheet 71016, 1971 Google Scholar
11 Maskell, E.C. A theory of blockage effects on bluff bodies and stalled wings in a closed wind tunnel. A.R.C., R and M, No 3400, 1963 Google Scholar
12 Rockwell, D. and Knisley, C. The organised nature of flow impingement upon a corner. Journal of Fluid Mechanics, Vol. 93, pp 413-432, 1979 CrossRefGoogle Scholar
13 Bloor, M.S. and Gerrard, J.H. Measurements on turbulent vortices in a cylinder wake. Proceedings of the Royal Society, London, Series A, Vol. 294, pp 319-342, 1966 Google Scholar
14 Berger, E. and Wille, R. Periodic flow phenomena. Annual Review of Fluid Mechanics, Vol. 4, pp 313-340, 1972 CrossRefGoogle Scholar
15 Fage, A. and Johansen, F.C. On the flow of air behind an inclined flat plate of infinite span. A.R.C., R and M 1104, 1927 Google Scholar
16 Obasaju, E.D. Pressure fluctuations on stationary and oscillating square section cylinders. Ph.D. thesis, Dept of Aeronautics, Imperial College, London University, 1977 Google Scholar