In this paper, we study the influence of sample geometry on the measurement of pressure-saturation relationships, by analyzing the drainage of a two-phase flow from a quasi-2-D random porous medium. The medium is transparent, which allows for the direct visualization of the invasion pattern during flow, and is initially saturated with a viscous liquid (a dyed glycerol-water mix). As the pressure in the liquid is gradually reduced, air penetrates from an open inlet, displacing the liquid which leaves the system from an outlet on the opposite side. Pressure measurements and images of the flow are recorded and the pressure-saturation relationship is computed. We show that this relationship depends on the system size and aspect ratio. The effec...
We investigate and characterize the influence of capillary end effects on steady-state relative perm...
The capillary pressure-saturation curve is widely used to characterize hydraulic properties of porou...
In this work, we provide a physically-consistent modeling approach for two-phase porous media flow, ...
International audienceIn this paper we study the influence of sample geometry on the measurement of ...
International audienceWe report on results from primary drainage experiments on quasi-twodimensional...
Abstract: Two-phase flow and capillarity phenomenon in porous solids are well known in physics and ...
Standard models of two-phase flow in porous media have been shown to exhibit several shortcomings th...
We present direct simulations of several experiments with different geometries using Volume of Fluid...
We present direct simulations of several experiments with different geometries using Volume of Fluid...
Capillary pressure–saturation relationship plays an important role in the description of two-phase f...
Experiments were performed on transparent two-dimensional microfluidic porous systems to investigate...
To gain insight in relationships among capillary pressure, interfacial area, saturation, and relativ...
We experimentally and numerically study the influence of gravity and finite-size effects onthe press...
Using transparent microfluidic cells to study the two-phase properties of a synthetic porous medium,...
To gain insight in relationships among capillary pressure, interfacial area, saturation, and relativ...
We investigate and characterize the influence of capillary end effects on steady-state relative perm...
The capillary pressure-saturation curve is widely used to characterize hydraulic properties of porou...
In this work, we provide a physically-consistent modeling approach for two-phase porous media flow, ...
International audienceIn this paper we study the influence of sample geometry on the measurement of ...
International audienceWe report on results from primary drainage experiments on quasi-twodimensional...
Abstract: Two-phase flow and capillarity phenomenon in porous solids are well known in physics and ...
Standard models of two-phase flow in porous media have been shown to exhibit several shortcomings th...
We present direct simulations of several experiments with different geometries using Volume of Fluid...
We present direct simulations of several experiments with different geometries using Volume of Fluid...
Capillary pressure–saturation relationship plays an important role in the description of two-phase f...
Experiments were performed on transparent two-dimensional microfluidic porous systems to investigate...
To gain insight in relationships among capillary pressure, interfacial area, saturation, and relativ...
We experimentally and numerically study the influence of gravity and finite-size effects onthe press...
Using transparent microfluidic cells to study the two-phase properties of a synthetic porous medium,...
To gain insight in relationships among capillary pressure, interfacial area, saturation, and relativ...
We investigate and characterize the influence of capillary end effects on steady-state relative perm...
The capillary pressure-saturation curve is widely used to characterize hydraulic properties of porou...
In this work, we provide a physically-consistent modeling approach for two-phase porous media flow, ...