An experimental study of vortex shedding behind linearly tapered cylinders at low Reynolds number
- 1 January 1993
- journal article
- research article
- Published by Cambridge University Press (CUP) in Journal of Fluid Mechanics
- Vol. 246, 163-195
- https://doi.org/10.1017/s0022112093000084
Abstract
Experiments were performed to study vortex shedding behind a linearly tapered cylinder. Four cylinders were used, with taper ratios varying from 50:1 to 100:1. The cylinders were each run at four different velocities, adjusted to cover the range of laminar vortex shedding for a non-tapered cylinder. The flow was confirmed to consist of discrete shedding cells, each with a constant frequency. For a centrespan Reynolds number greater than 100, the dimensionless mean cell length was found to be a constant. Individual cell size was found to be roughly self-similar. New shedding cells were created on the ends of the cylinders, or in regions adjacent to areas not shedding. Successful scalings were found for both the cell shedding frequencies and their differences, the modulation frequencies. The modulation frequencies were found to be constant along the cylinder span. The shedding frequency Strouhal number versus Reynolds number curve was found to have a slightly steeper slope than the Strouhal number curve for a non-tapered cylinder. Vortex shedding was found to begin at a local Reynolds number of about 60, regardless of any other factors. End effects were found to be of little importance. The vortex splits, which form the links between shedding cells, were found to be similar in some respects to those found by earlier investigators. Amplitude results suggested that the splits at different spanwise locations are temporally sequenced by an overall flow mechanism, a supposition confirmed by flow visualization. Wavelet analysis results showed that while the behaviour of the shedding frequencies in time was relatively unaffected by changing taper ratio, the behaviour of the modulation frequency in time was greatly affected. Comparisons with other experiments point out the universality of vortex splitting phenomena.Keywords
This publication has 13 references indexed in Scilit:
- The growth of large scales at defect sites in the plane mixing layerJournal of Fluid Mechanics, 1993
- On cell formation in vortex streetsJournal of Fluid Mechanics, 1991
- Oblique and parallel modes of vortex shedding in the wake of a circular cylinder at low Reynolds numbersJournal of Fluid Mechanics, 1989
- Secondary flows and vortex formation around a circular cylinder in constant-shear flowJournal of Fluid Mechanics, 1989
- Vortex splitting and its consequences in the vortex street wake of cylinders at low Reynolds numberPhysics of Fluids A: Fluid Dynamics, 1989
- Vortex Shedding From Bluff Bodies in a Shear Flow: A ReviewJournal of Fluids Engineering, 1985
- Influence of end plates and free ends on the shedding frequency of circular cylindersJournal of Fluid Mechanics, 1982
- An experimental investigation of the end effects on the wake of a circular cylinder towed through water at low Reynolds numbersJournal of Fluid Mechanics, 1981
- Vortex shedding from bluff bodies in a shear flowJournal of Fluid Mechanics, 1973
- Vortex shedding from slender cones at low Reynolds numbersJournal of Fluid Mechanics, 1969