English

Vortex motion around a circular cylinder

Fluid Dynamics 2014-03-11 v1

Abstract

The motion of a pair of counter-rotating point vortices placed in a uniform flow around a circular cylinder forms a rich nonlinear system that is often used to model vortex shedding. The phase portrait of the Hamiltonian governing the dynamics of a vortex pair that moves symmetrically with respect to the centerline---a case that can be realized experimentally by placing a splitter plate in the center plane---is presented. The analysis provides new insights and reveals novel dynamical features of the system, such as a nilpotent saddle point at infinity whose homoclinic orbits define the region of nonlinear stability of the so-called F\"oppl equilibrium. It is pointed out that a vortex pair properly placed downstream can overcome the cylinder and move off to infinity upstream. In addition, the nonlinear dynamics resulting from antisymmetric perturbations of the F\"oppl equilibrium is studied and its relevance to vortex shedding discussed.

Keywords

Cite

@article{arxiv.1208.5656,
  title  = {Vortex motion around a circular cylinder},
  author = {G. L. Vasconcelos and M. N. Moura and A. M. J. Schakel},
  journal= {arXiv preprint arXiv:1208.5656},
  year   = {2014}
}

Comments

21 pages, 6 figures

R2 v1 2026-06-21T21:56:19.586Z