A pore-scale model is developed to simulate fluid-fluid interfacial area in variably saturated porous media, with a specific focus on incorporating the effects of solid-surface roughness. The model is designed to quantify total (film and meniscus) fluid-fluid interfacial area (A(nw)) over the full range of wetting-phase fluid saturation (S-w) based on the inherent properties of the porous medium. The model employs a triangular pore space bundle-of-cylindrical-capillaries framework, modified with three surface roughness-related parameters. The first parameter (surface roughness factor) represents the overall magnitude of surface roughness, whereas the other two parameters (interface growth factor and critical adsorptive film thickness) refle...
The correct quantification of porosity is essential in all studies pertaining to porous media. A hos...
Experiments were performed on transparent two-dimensional microfluidic porous systems to investigate...
The study of pore level displacement of immiscible fluids has scientific appeal as well as a plethor...
Abstract. A new model for liquid configuration in angular pore space considering both capillary and ...
A thermodynamically based model for predicting two-fluid interfacial area (IFA) within a porous medi...
Information concerning the capillary pressure and relative permeability curves of porous media is r...
Fluid-fluid interfacial area is recognized as an important parameter in understanding various multi...
The principal challenge of upscaling techniques for multi-phase fluid dynamics in porous media is to...
An understanding of the pore-level interactions that affect multi-phase flow in porous media is impo...
A quantitative in situ characterization of the impact of surface roughness on wettability in porous ...
To gain insight in relationships among capillary pressure, interfacial area, saturation, and relativ...
To gain insight in relationships among capillary pressure, interfacial area, saturation, and relativ...
We describe a new approach to modeling the wetting behavior of micro- and nano-textured surfaces wit...
Hypothesis:Wetting phenomena play a key role in flows through porous media. Relative permeabilityand...
© 2018, The Author(s). Wettability, or preferential affinity of a fluid to a solid substrate in the ...
The correct quantification of porosity is essential in all studies pertaining to porous media. A hos...
Experiments were performed on transparent two-dimensional microfluidic porous systems to investigate...
The study of pore level displacement of immiscible fluids has scientific appeal as well as a plethor...
Abstract. A new model for liquid configuration in angular pore space considering both capillary and ...
A thermodynamically based model for predicting two-fluid interfacial area (IFA) within a porous medi...
Information concerning the capillary pressure and relative permeability curves of porous media is r...
Fluid-fluid interfacial area is recognized as an important parameter in understanding various multi...
The principal challenge of upscaling techniques for multi-phase fluid dynamics in porous media is to...
An understanding of the pore-level interactions that affect multi-phase flow in porous media is impo...
A quantitative in situ characterization of the impact of surface roughness on wettability in porous ...
To gain insight in relationships among capillary pressure, interfacial area, saturation, and relativ...
To gain insight in relationships among capillary pressure, interfacial area, saturation, and relativ...
We describe a new approach to modeling the wetting behavior of micro- and nano-textured surfaces wit...
Hypothesis:Wetting phenomena play a key role in flows through porous media. Relative permeabilityand...
© 2018, The Author(s). Wettability, or preferential affinity of a fluid to a solid substrate in the ...
The correct quantification of porosity is essential in all studies pertaining to porous media. A hos...
Experiments were performed on transparent two-dimensional microfluidic porous systems to investigate...
The study of pore level displacement of immiscible fluids has scientific appeal as well as a plethor...