Numerical simulation of liquid-liquid plug formation in a T-shaped cylindrical micro-channel

ORAL

Abstract

We present experimental studies and three-dimensional simulations using the code BLUE for different fluid flow rate combinations in a tubular T-junction. All branches have internal diameters equal to 200 $\mu$m. The dispersed phase consists of a water/glycerol solution injected from the side branch of the junction, while the continuous phase is silicon oil injected along the main channel axis. BLUE is a new massively parallel Navier-Stokes solver for multiphase flows. Communication across process threads is handled by MPI message passing procedures. The method for the treatment of the fluid phase interfaces and, in particular, capillary forces 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 rupture or coalescence of fluid interfaces.

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

Authors

  • Maxime Chinaud

    • Department of Chemical Engineering, University College London, Torrington Place, London, WC1E 7JE
    • University College London
  • Eynagelia-Panagiota Roumpea

    • University College London
    • Department of Chemical Engineering, University College London, Torrington Place, London, WC1E 7JE
  • Panagiota Angeli

    • Department of Chemical Engineering, University College London, Torrington Place, London, WC1E 7JE
    • University College London
  • Jalel Chergui

    • LIMSI-CNRS
  • Damir Juric

    • LIMSI-CNRS
  • Seungwon Shin

    • Hongik University, Republic of Korea
  • Lyes Kahouadji

    • Imperial College London
  • Omar Matar

    • Imperial College London