Resolving pore-scale transient flow dynamics is crucial to understanding the physics underlying multiphase flow in porous media and informing large-scale predictive models. Surface properties of the porous matrix play an important role in controlling such physics, yet interfacial mechanisms remain poorly understood, in part due to a lack of direct observations. This study reports on an experimental investigation of the pore-scale flow dynamics of liquid CO2 and water in two-dimensional (2D) circular porous micromodels with different surface characteristics employing high-speed microscopic particle image velocimetry (μPIV). The design of the micromodel minimized side boundary effects due to the limited size of the domain. The high-speed μPIV...
Recently, both core- and pore-scale imbibition experiments have shown non-equilibrium dissolution of...
Carbon capture and storage intends to inject anthropogenic carbon dioxide from large point sources i...
Abstract The gravity dominated CO2 injection has received increased attention in the ...
Resolving pore-scale transient flow dynamics is crucial to understanding the physics underlying mult...
Understanding the pore-scale dynamics of two-phase fluid flow in permeable media is important in man...
AbstractWe investigate both drainage and spontaneous imbibition processes at the pore scale using a ...
Wettability is an important factor controlling the displacement of immiscible fluids in porous media...
©2020. The Authors. We investigate the immiscible displacement (drainage) of a wetting fluid in a po...
A novel flow cell has been developed to study the mechanisms of steady state, cocurrent, multiphase ...
Recently, researchers are attracted towards the gas production from hydrate bearing sediments consid...
The CO2 capillary trapping is an important scientific issue in geological carbon sequestration, but ...
Liquid invasion into a porous medium is a phenomenon of great importance in both nature and technolo...
Geological carbon storage in deep aquifers involves displacement of resident brine by supercritical ...
Three-phase flow in porous media is encountered in many applications including subsurface carbon dio...
Micro-fluidic devices have been designed and used to investigate immiscible fluid-fluid displacement...
Recently, both core- and pore-scale imbibition experiments have shown non-equilibrium dissolution of...
Carbon capture and storage intends to inject anthropogenic carbon dioxide from large point sources i...
Abstract The gravity dominated CO2 injection has received increased attention in the ...
Resolving pore-scale transient flow dynamics is crucial to understanding the physics underlying mult...
Understanding the pore-scale dynamics of two-phase fluid flow in permeable media is important in man...
AbstractWe investigate both drainage and spontaneous imbibition processes at the pore scale using a ...
Wettability is an important factor controlling the displacement of immiscible fluids in porous media...
©2020. The Authors. We investigate the immiscible displacement (drainage) of a wetting fluid in a po...
A novel flow cell has been developed to study the mechanisms of steady state, cocurrent, multiphase ...
Recently, researchers are attracted towards the gas production from hydrate bearing sediments consid...
The CO2 capillary trapping is an important scientific issue in geological carbon sequestration, but ...
Liquid invasion into a porous medium is a phenomenon of great importance in both nature and technolo...
Geological carbon storage in deep aquifers involves displacement of resident brine by supercritical ...
Three-phase flow in porous media is encountered in many applications including subsurface carbon dio...
Micro-fluidic devices have been designed and used to investigate immiscible fluid-fluid displacement...
Recently, both core- and pore-scale imbibition experiments have shown non-equilibrium dissolution of...
Carbon capture and storage intends to inject anthropogenic carbon dioxide from large point sources i...
Abstract The gravity dominated CO2 injection has received increased attention in the ...