The CO2 capillary trapping is an important scientific issue in geological carbon sequestration, but few researches focus on the trapping mechanism at pore scale under supercritical CO2 condition. In this study, based on the high-pressure fluids-microscopy-micromodel experimental system, we performed drainage experiment, i.e. supercritical CO2 displacing water, and imbibition experiment, i.e. water displacing CO2, under the conditions of 45℃ and 8.5 MPa. The DSLR camera was used to capture pictures of CO2-water two-phase immiscible flow and the microscopy was used to capture the capillary trapping behavior for the supercritical CO2 at the pore scale. The computational fluid dynamic method was adopted to simulate the two-phase fluid flow proc...
CO2 capture and storage technology is favorable for the reduction of CO2 emissions. In recent years,...
Contrary to report that dynamic capillary pressure effect was insignificant in the supercritical CO2...
Graduation date: 2015Geologic CO₂ sequestration is a climate change mitigation strategy that prevent...
How the wettability of pore surfaces affects supercritical (sc) CO2 capillary trapping in geologic c...
AbstractThe heterogeneous nature of typical sedimentary formations can play a major role in the prop...
Wettability is an important factor controlling the displacement of immiscible fluids in porous media...
Copyright 2018, Society of Petroleum Engineers Wetting properties of various reservoir rocks strongl...
Dissolution trapping is one of the most important mechanisms for geological carbon storage (GCS). Re...
Several numerical studies have demonstrated that the heterogeneous nature of typical sedimentary for...
In modeling of geological carbon storage, dissolution of supercritical CO2 (scCO2) is often assumed ...
Geological carbon storage in deep aquifers involves displacement of resident brine by supercritical ...
AbstractA significant amount of theoretical, numerical and observational work has been published foc...
AbstractWe present experimental results based on computed x-ray microtomography (CMT) for quantifyin...
We describe an imaging and pore-scale modelling study of capillary trapping in the Paaratte Sandston...
Recently, both core- and pore-scale imbibition experiments have shown non-equilibrium dissolution of...
CO2 capture and storage technology is favorable for the reduction of CO2 emissions. In recent years,...
Contrary to report that dynamic capillary pressure effect was insignificant in the supercritical CO2...
Graduation date: 2015Geologic CO₂ sequestration is a climate change mitigation strategy that prevent...
How the wettability of pore surfaces affects supercritical (sc) CO2 capillary trapping in geologic c...
AbstractThe heterogeneous nature of typical sedimentary formations can play a major role in the prop...
Wettability is an important factor controlling the displacement of immiscible fluids in porous media...
Copyright 2018, Society of Petroleum Engineers Wetting properties of various reservoir rocks strongl...
Dissolution trapping is one of the most important mechanisms for geological carbon storage (GCS). Re...
Several numerical studies have demonstrated that the heterogeneous nature of typical sedimentary for...
In modeling of geological carbon storage, dissolution of supercritical CO2 (scCO2) is often assumed ...
Geological carbon storage in deep aquifers involves displacement of resident brine by supercritical ...
AbstractA significant amount of theoretical, numerical and observational work has been published foc...
AbstractWe present experimental results based on computed x-ray microtomography (CMT) for quantifyin...
We describe an imaging and pore-scale modelling study of capillary trapping in the Paaratte Sandston...
Recently, both core- and pore-scale imbibition experiments have shown non-equilibrium dissolution of...
CO2 capture and storage technology is favorable for the reduction of CO2 emissions. In recent years,...
Contrary to report that dynamic capillary pressure effect was insignificant in the supercritical CO2...
Graduation date: 2015Geologic CO₂ sequestration is a climate change mitigation strategy that prevent...