Numerical simulations of pendant droplets

ORAL

Abstract

We simulate the evolution of a three-dimensional pendant droplet through pinch-off using a new parallel two-phase flow solver called BLUE. The parallelization of the code is based on the technique of algebraic domain decomposition where the velocity field is solved by a parallel GMRes method for the viscous terms and the pressure by a parallel multigrid/GMRes method. Communication is handled by MPI message passing procedures. The method for the treatment of the fluid interfaces uses a hybrid Front Tracking/Level Set technique which defines the interface both by a discontinuous density field as well as by a local triangular Lagrangian mesh. This structure allows the interface to undergo large deformations including the rupture and coalescence of fluid interfaces.

*EPSRC Programme Grant, MEMPHIS, EP/K0039761/1

Authors

  • Carlos Pena

    • Universitat Jaume I, Spain
  • Lyes Kahouadji

    • Imperial College London
  • Omar Matar

    • Imperial College London
  • Jalel Chergui

    • LIMSI-CNRS
  • Damir Juric

    • LIMSI-CNRS
  • Seungwon Shin

    • Hongik University, Republic of Korea