English

Wall forces on a sphere in a rotating liquid-filled cylinder

Fluid Dynamics 2015-06-11 v2

Abstract

We experimentally study the behavior of a particle slightly denser than the surrounding liquid in solid body rotating flow. Earlier work revealed that a heavy particle has an unstable equilibrium point in unbounded rotation flows. In the confinement of the rotational flow by a cylindrical wall a heavy sphere with density 1.05 g/cm3^3 describes an orbital motion in our experiments. This is due to the effect of the wall near the sphere, i.e. a repulsive force (FwF_w). We model FwF_w on the sphere as a function of the distance from the wall (LL): FWL4F_W \propto L^{-4} as proposed by Takemura and Magnaudet (2003). Remarkably, the path from the model including FwF_w reproduce the experimentally measured trajectory. In addition during an orbital motion the particle does not spin around its axis, and we provide a possible explanation for this phenomenon.

Keywords

Cite

@article{arxiv.1209.0531,
  title  = {Wall forces on a sphere in a rotating liquid-filled cylinder},
  author = {Yoshiyuki Tagawa and Jarich van der Molen and Leen van Wijngaarden and Chao Sun},
  journal= {arXiv preprint arXiv:1209.0531},
  year   = {2015}
}

Comments

11 pages, 11 figures

R2 v1 2026-06-21T21:59:18.694Z