A network simulator has been used to study two-phase flow in porous media. The medium has been modeled as a bundle of tubes and the capillary forces inside these tubes have been investigated. This has been done by applying well known theory of immiscible flow to tubes of different shapes. How the wettabillity of the media affect the meniscus curvatures have been studied and how this relates to the cross-section geometry and width of a single tube. The tube radius was modeled by a function being narrow in the middle of the tube and wider towards the end. How the menisci was affected by this curvature due to varying radius have been investigated. Different degrees of complexity have been used to see if simple approximations are able to captur...
International audienceTo perform the numerical simulations the phenomenological meniscus model [1] f...
Models of two-phase flow in porous media are of practical interest in many fields of science and eng...
Continuum-scale models for two-phase flow and transport in porous media are based on the empirical c...
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...
Simulation of flow phenomena in porous media occur in many areas of sciences and engineering. It has...
Abstract To gain insight in relationships among capillary pressure, interfacial area, sat-uration, a...
Information concerning the capillary pressure and relative permeability curves of porous media is r...
[1] Pore network models of two-phase flow in porous media are widely used to investigate constitutiv...
We present a numerical scheme to model two-phase flow in porous media where capillary forces dominat...
Two-phase flow in porous media is characterized by fluid-fluid interfaces that separate the fluid ph...
We investigate a two-dimensional network simulator capable of modeling different time dependencies i...
Current theories of two-phase flow in porous media are based on the so-called extended Darcy’s law, ...
Wetting films can develop in the corners of angular pores under strong wetting conditions. Modeling ...
In porous media, pore geometry and wettability are determinant factors for capillary flow in drainag...
International audienceTo perform the numerical simulations the phenomenological meniscus model [1] f...
Models of two-phase flow in porous media are of practical interest in many fields of science and eng...
Continuum-scale models for two-phase flow and transport in porous media are based on the empirical c...
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...
Simulation of flow phenomena in porous media occur in many areas of sciences and engineering. It has...
Abstract To gain insight in relationships among capillary pressure, interfacial area, sat-uration, a...
Information concerning the capillary pressure and relative permeability curves of porous media is r...
[1] Pore network models of two-phase flow in porous media are widely used to investigate constitutiv...
We present a numerical scheme to model two-phase flow in porous media where capillary forces dominat...
Two-phase flow in porous media is characterized by fluid-fluid interfaces that separate the fluid ph...
We investigate a two-dimensional network simulator capable of modeling different time dependencies i...
Current theories of two-phase flow in porous media are based on the so-called extended Darcy’s law, ...
Wetting films can develop in the corners of angular pores under strong wetting conditions. Modeling ...
In porous media, pore geometry and wettability are determinant factors for capillary flow in drainag...
International audienceTo perform the numerical simulations the phenomenological meniscus model [1] f...
Models of two-phase flow in porous media are of practical interest in many fields of science and eng...
Continuum-scale models for two-phase flow and transport in porous media are based on the empirical c...