A multi-scale synchrotron-based X-ray microtomographic dataset of residually trapped air after gravity-driven brine imbibition was acquired for three samples with differing pore topologies and morphologies; image volumes were reconstructed with voxel sizes from 4.44 µm down to 0.64 µm. Capillary pressure distributions among the population of trapped ganglia were investigated by calculating interfacial curvature in order to assess the potential for remobilization of residually-trapped non-wetting ganglia due to differences in capillary pressure presented by neighbor ganglia. For each sample, sintered glass beads, Boise sandstone and Fontainebleau sandstone, sub-volumes with different voxel sizes were analyzed to quantify air/brine interfaces...
A decrease in reservoir pressure can lead to remobilization of residually trapped CO2. In this study...
Multiphase flow in porous rock is of vital importance to several issues facing the world at present....
Synchrotron-based X-ray microtomography (micro CT) at the Advanced Light Source (ALS) line 8.3.2 at ...
A multi-scale synchrotron-based X-ray microtomographic dataset of residually trapped air after gravi...
This thesis presents the first method for the imaging of multiple fluid phases at conditions represe...
The experimental determination of capillary pressure drainage curves at the pore scale is of vital i...
The experimental determination of capillary pressure drainage curves at the pore scale is of vital i...
This is the publisher’s final pdf. The published article is copyrighted by the American Geophysical ...
AbstractEntrapment of the non-wetting phase in porous media has been observed in a variety of fields...
© 2018 Institute of Physics Publishing. All rights reserved. The study deals with the features of th...
Understanding the pore-scale dynamics of two-phase fluid flow in permeable media is important in man...
AbstractWe use micro-CT scanning to image, at the pore-scale, CO2 and brine in the pore-space of a c...
This study utilizes synchrotron X-ray micro-tomography and pore scale modeling to investigate the pr...
Graduation date: 2009Recent advances in imaging technology and numerical modeling have greatly enhan...
With a global shift in energy trends towards greener and more sustainable fuels, a rapid change is r...
A decrease in reservoir pressure can lead to remobilization of residually trapped CO2. In this study...
Multiphase flow in porous rock is of vital importance to several issues facing the world at present....
Synchrotron-based X-ray microtomography (micro CT) at the Advanced Light Source (ALS) line 8.3.2 at ...
A multi-scale synchrotron-based X-ray microtomographic dataset of residually trapped air after gravi...
This thesis presents the first method for the imaging of multiple fluid phases at conditions represe...
The experimental determination of capillary pressure drainage curves at the pore scale is of vital i...
The experimental determination of capillary pressure drainage curves at the pore scale is of vital i...
This is the publisher’s final pdf. The published article is copyrighted by the American Geophysical ...
AbstractEntrapment of the non-wetting phase in porous media has been observed in a variety of fields...
© 2018 Institute of Physics Publishing. All rights reserved. The study deals with the features of th...
Understanding the pore-scale dynamics of two-phase fluid flow in permeable media is important in man...
AbstractWe use micro-CT scanning to image, at the pore-scale, CO2 and brine in the pore-space of a c...
This study utilizes synchrotron X-ray micro-tomography and pore scale modeling to investigate the pr...
Graduation date: 2009Recent advances in imaging technology and numerical modeling have greatly enhan...
With a global shift in energy trends towards greener and more sustainable fuels, a rapid change is r...
A decrease in reservoir pressure can lead to remobilization of residually trapped CO2. In this study...
Multiphase flow in porous rock is of vital importance to several issues facing the world at present....
Synchrotron-based X-ray microtomography (micro CT) at the Advanced Light Source (ALS) line 8.3.2 at ...