AbstractWe use micro-CT scanning to image, at the pore-scale, CO2 and brine in the pore-space of a carbonate rock. This technique is used for the examination of capillary trapping and for contact angle measurement. In the capillary trapping study the larger residual ganglia obeyed a power law size distribution, with a power law exponent of 2.287 ± 0.009, whereas smaller ganglia were underrepresented. Measurement of contact angle revealed the system to be weakly water wet at reservoir conditions, with a contact angle of 45 ± 6o. This distribution of contact angles can be explained by surface roughness heterogeneity at a range of length scales
We study the in situ distributions of contact angle and oil/brine interface curvature measured withi...
AbstractGeological carbon dioxide storage must be designed such that the CO2 cannot escape from the ...
In situ wettability measurements in hydrocarbon reservoir rocks have only been possible recently. Th...
AbstractWe use micro-CT scanning to image, at the pore-scale, CO2 and brine in the pore-space of a c...
This thesis presents the first method for the imaging of multiple fluid phases at conditions represe...
AbstractContact angle is a principal control of the flow of multiple fluid phases through porous med...
We describe an imaging and pore-scale modelling study of capillary trapping in the Paaratte Sandston...
Contact angle is a principal control of the flow of multiple fluid phases through porous media; howe...
The pore-level two-phase fluids flow mechanism needs to be understood for geological CO2 sequestrati...
AbstractContact angle is a principal control of the flow of multiple fluid phases through porous med...
Multiphase flow in porous media is strongly influenced by the wettability of the system, which affec...
Multiphase flow in porous media is strongly influenced by the wettability of the system, which affec...
Multiphase flow in porous media is strongly influenced by the wettability of the system, which affec...
Multiphase flow in porous media is strongly influenced by the wettability of the system, which affec...
With a global shift in energy trends towards greener and more sustainable fuels, a rapid change is r...
We study the in situ distributions of contact angle and oil/brine interface curvature measured withi...
AbstractGeological carbon dioxide storage must be designed such that the CO2 cannot escape from the ...
In situ wettability measurements in hydrocarbon reservoir rocks have only been possible recently. Th...
AbstractWe use micro-CT scanning to image, at the pore-scale, CO2 and brine in the pore-space of a c...
This thesis presents the first method for the imaging of multiple fluid phases at conditions represe...
AbstractContact angle is a principal control of the flow of multiple fluid phases through porous med...
We describe an imaging and pore-scale modelling study of capillary trapping in the Paaratte Sandston...
Contact angle is a principal control of the flow of multiple fluid phases through porous media; howe...
The pore-level two-phase fluids flow mechanism needs to be understood for geological CO2 sequestrati...
AbstractContact angle is a principal control of the flow of multiple fluid phases through porous med...
Multiphase flow in porous media is strongly influenced by the wettability of the system, which affec...
Multiphase flow in porous media is strongly influenced by the wettability of the system, which affec...
Multiphase flow in porous media is strongly influenced by the wettability of the system, which affec...
Multiphase flow in porous media is strongly influenced by the wettability of the system, which affec...
With a global shift in energy trends towards greener and more sustainable fuels, a rapid change is r...
We study the in situ distributions of contact angle and oil/brine interface curvature measured withi...
AbstractGeological carbon dioxide storage must be designed such that the CO2 cannot escape from the ...
In situ wettability measurements in hydrocarbon reservoir rocks have only been possible recently. Th...