Satellite-droplet formation regimes in the natural breakup of clean and surfactant-laden liquid threads

ORAL

Abstract

We report a numerical study of the natural breakup of Newtonian liquid threads whose cylindrical interface is coated with insoluble surfactants. A parametric study is performed to quantify the influence of the Laplace number, La, and the elasticity parameter, β, on the volume of the satellite droplet formed just prior to pinch-off, Vsat, on the mass of surfactant trapped at its surface, Σsat, on the break-up time, and on its shape. For a clean interface, we provide a new scaling law for the satellite volume normalized with the total volume, namely Vsat = 0.00421 La1.64, valid for 0.05<La<1. When La<0.05, Vsat becomes negligible, and for La>10 it reaches a plateau of about 3%. In the surfactant-laden case, for La>7.5, Vsat displays a local minimum in β, but has small relative variations around the 3%, while the mass of surfactant increases monotonously. For 1.69<La<7.5, there is a discontinuous transition at β = βc(La), in Vsat and Σsat.

*AMC and AS thank the Spanish MINECO for its support through projects DPI2015-71901-REDT and DPI2017-88201-C3-3-R. AMC also acknowledges support from the Spanish MECD through the grant FPU16/02562, and to its associated program Ayudas a la Movilidad 2017 during his stay at TIPs-ULB, Brussels. JRR and BS thank the FRS-FNRS for financial support.

Presenters

  • Alejandro Martínez-Calvo

    • Grupo de Mecánica de Fluidos, Universidad Carlos III De Madrid

Authors

  • Alejandro Martínez-Calvo

    • Grupo de Mecánica de Fluidos, Universidad Carlos III De Madrid
  • Javier Rivero-Rodriguez

    • TIPs, Université Libre de Bruxelles
  • Benoit Scheid

    • TIPs, Universite Libre de Bruxelles, Belgium
    • TIPs, Université Libre de Bruxelles
  • Alejandro Sevilla

    • Grupo de Mecánica de Fluidos, Universidad Carlos III De Madrid
    • Universidad Carlos III de Madrid