Abstract
We study the collapse of an axisymmetric liquid filament both analytically and by means of a numerical model. The liquid filament, also known as ligament, may either collapse stably into a single droplet or break up into multiple droplets. The dynamics of the filament are governed by the viscosity and the aspect ratio, and the initial perturbations of its surface. We find that the instability of long viscous filaments can be completely explained by the Rayleigh-Plateau instability, whereas a low viscous filament can also break up due to end pinching. We analytically derive the transition between stable collapse and breakup in the Ohnesorge number versus aspect ratio phase space. Our result is confirmed by numerical simulations based on the slender jet approximation and explains recent experimental findings by Castrejon-Pita et al. [Phys. Rev. Lett. 108, 074506 (2012)]. (C) 2013 AIP Publishing LLC.
Anno
2013
Autori IAC
Tipo pubblicazione
Altri Autori
Driessen, Theo and Jeurissen, Roger and Wijshoff, Herman and Toschi, Federico and Lohse, Detlef
Editore
American Institute of Physics,
Rivista
Physics of fluids (1994)