The vortex street in the wake of a vibrating cylinder
- 12 September 1972
- journal article
- research article
- Published by Cambridge University Press (CUP) in Journal of Fluid Mechanics
- Vol. 55 (1) , 31-48
- https://doi.org/10.1017/s0022112072001636
Abstract
The von Kármán vortex streets formed in the wakes of vibrating smooth cylinders and cables were studied using a hot-wire anemometer and flow visualization by fog injection in a wind tunnel. All the experiments took place in the flow regime where the vibration and vortex-shedding frequencies lock together, or synchronize, to control the formation of the wake. Since the flow in the vortex formation region is fundamental to further understanding of the interaction between a vibrating bluff obstacle and its wake, detailed measurements were made of the formation-region flow for Reynolds numbers between 120 and 350. The formationregion length is shown to be a fundamental parameter for the wake, and is dependent on a shedding parameterSt* related to the natureally occurring Strouhal number for the von Kármán street. The effects of vibration amplitude and frequency on the mean and fluctuating velocity fields in the wake become apparent when the downstream displacement is scaled with the formation length. The von Kármán vortex street behind a vibrating cylinder is divided into three predominant flow regimes: the formation, stable and unstable regions. Fundamental differences exist in the vortex streets generated behind stationary and vibrating cylinders, but many classical characteristics, including the manner of vortex breakdown in the unstable region, are shared by the two systems.Keywords
This publication has 17 references indexed in Scilit:
- Closure to “Discussion of ‘Flow Near Self-Excited and Forced Vibrating Circular Cylinders’” (1972, ASME J. Eng. Ind., 94, p. 547)Journal of Engineering for Industry, 1972
- Flow Near Self-Excited and Forced Vibrating Circular CylindersJournal of Engineering for Industry, 1972
- The Unsteady Wake of an Oscillating Cylinder at Low Reynolds NumberJournal of Applied Mechanics, 1971
- Vortex Shedding From Smooth Cylinders and Stranded CablesJournal of Basic Engineering, 1971
- On the phenomenon of vortex street breakdownJournal of Fluid Mechanics, 1971
- Flow Separation on a Vibrating Circular CylinderPhysics of Fluids, 1969
- The Unsteady Flow and Wake Near an Oscillating CylinderJournal of Basic Engineering, 1969
- Smoke observations of the wake of a group of three cylinders at low Reynolds numberJournal of Fluid Mechanics, 1968
- Surface and Wake Flow Phenomena of the Vortex-Excited Oscillation of a Circular CylinderJournal of Engineering for Industry, 1967
- Suppression of Vortex Shedding and Turbulence behind Oscillating CylindersPhysics of Fluids, 1967