English

Levitation of a drop over a moving surface

Fluid Dynamics 2015-06-16 v1

Abstract

We investigate the levitation of a drop gently deposited onto the inner wall of a rotating hollow cylinder. For a sufficient velocity of the wall, the drop steadily levitates over a thin air film and reaches a stable angular position in the cylinder, where the drag and lift balance the weight of the drop. Interferometric measurement yields the three-dimensional (3D) air film thickness under the drop and reveals the asymmetry of the profile along the direction of the wall motion. A two-dimensional (2D) model is presented which explains the levitation mechanism, captures the main characteristics of the air film shape and predicts two asymptotic regimes for the film thickness h0h_0: For large drops h0\ca2/3κb1h_0\sim\ca^{2/3}\kappa_b^{-1}, as in the Bretherton problem, where \ca\ca is the capillary number based on the air viscosity and κb\kappa_b is the curvature at the bottom of the drop. For small drops h0\ca4/5(aκb)4/5κb1h_0\sim\ca^{4/5}(a\kappa_b)^{4/5}\kappa_b^{-1}, where aa is the capillary length.

Keywords

Cite

@article{arxiv.1306.1634,
  title  = {Levitation of a drop over a moving surface},
  author = {Henri Lhuissier and Yoshiyuki Tagawa and Tuan Tran and Chao Sun},
  journal= {arXiv preprint arXiv:1306.1634},
  year   = {2015}
}

Comments

submitted to JFM Rapids

R2 v1 2026-06-22T00:29:41.998Z