English

Self-similar impulsive capillary waves on a ligament

Fluid Dynamics 2015-06-11 v1

Abstract

We study the short-time dynamics of a liquid ligament, held between two solid cylinders, when one is impulsively accelerated along its axis. A set of one-dimensional equations in the slender-slope approximation is used to describe the dynamics, including surface tension and viscous effects. An exact self-similar solution to the linearized equations is successfully compared to experiments made with millimetric ligaments. Another non-linear self-similar solution of the full set of equations is found numerically. Both the linear and non-linear solutions show that the axial depth at which the liquid is affected by the motion of the cylinder scales like t\sqrt{t}. The non-linear solution presents the peculiar feature that there exists a maximum driving velocity UU^\star above which the solution disappears, a phenomenon probably related to the de-pinning of the contact line observed in experiments for large pulling velocities.

Keywords

Cite

@article{arxiv.1502.07846,
  title  = {Self-similar impulsive capillary waves on a ligament},
  author = {Laurent Duchemin and Stéphane Le Dizès and Lionel Vincent and Emmanuel Villermaux},
  journal= {arXiv preprint arXiv:1502.07846},
  year   = {2015}
}
R2 v1 2026-06-22T08:39:33.039Z