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Updated: Apr 17, 2026

Microfluidic Devices for Characterizing Pore-scale Event Processes in Porous Media for Oil Recovery Applications
Published on: January 16, 2018
Droplet fragmentation: 3D imaging of a previously unidentified pore-scale process during multiphase flow in porous
Tannaz Pak1, Ian B Butler2, Sebastian Geiger3
1School of Geosciences, The University of Edinburgh, Edinburgh EH9 3FE, United Kingdom; International Centre for Carbonate Reservoirs, Edinburgh EH9 3FE, United Kingdom; and t.pak@tees.ac.uk.
Abstract:
Using X-ray computed microtomography, we have visualized and quantified the in situ structure of a trapped nonwetting phase (oil) in a highly heterogeneous carbonate rock after injecting a wetting phase (brine) at low and high capillary numbers. We imaged the process of capillary desaturation in 3D and demonstrated its impacts on the trapped nonwetting phase cluster size distribution. We have identified a previously unidentified pore-scale event during capillary desaturation. This pore-scale event, described as droplet fragmentation of the nonwetting phase, occurs in larger pores. It increases volumetric production of the nonwetting phase after capillary trapping and enlarges the fluid-fluid interface, which can enhance mass transfer between the phases. Droplet fragmentation therefore has implications for a range of multiphase flow processes in natural and engineered porous media with complex heterogeneous pore spaces.

