• Title of article

    Characterization of the crossover from capillary invasion to viscous fingering to fracturing during drainage in a vertical 2D porous medium

  • Author/Authors

    Islam، نويسنده , , Amina and Chevalier، نويسنده , , Sylvie and Ben Salem، نويسنده , , Imen and Bernabe، نويسنده , , Yves and Juanes، نويسنده , , Ruben and Sassi، نويسنده , , Mohamed، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    13
  • From page
    279
  • To page
    291
  • Abstract
    We experimentally studied the displacement of a viscous wetting fluid (water) by an inviscid non-wetting fluid (air) injected at the bottom of a vertical Hele-Shaw cell filled with glass microbeads. In order to cover a wide parameter space, the permeability of the porous medium was varied by using different bead size ranges and diverse air flow rates were generated by means of a syringe pump. A LED light table was used to back illuminate the experimental cell, allowing a high speed camera to capture images of the drainage process at equal time intervals. The invasion occurred in intermittent bursts. Image processing of the bursts and fractal analysis showed successive transitions from capillary invasion to viscous fingering to fracturing during the same experiment, dependent on the medium permeability, the air injection flow rate, and the vertical position in the cell. The interplay between the capillary, viscous and gravity forces determines the nature of the invasion pattern and the transitions, from capillary invasion to viscous fingering with decreasing fluid pressure on one hand and from viscous fingering to fracturing with decreasing effective overburden pressure on the other hand.
  • Keywords
    Drainage visualization , Gravity effects , capillary number , CO2 geological storage , Transitions in drainage patterns , fractal analysis
  • Journal title
    International Journal of Multiphase Flow
  • Serial Year
    2014
  • Journal title
    International Journal of Multiphase Flow
  • Record number

    1411548