We study how grain shapes impact multiphase flow in porous media in the quasi-static regime using an extended pore-network model. The algorithm allows the explicit determination of different types of pore-scale instabilities and tracks the interface motion during the fluid-fluid displacement process. It also includes the volume capacitance model, such that both the evolution of capillary pressure signal and sizes of Haines jumps can be captured. Further, it considers the pinning of menisci at sharp edges of grains, through which the distribution of effective contact angles can be obtained. Simulations are carried out across a wide range of wetting conditions for different particle shapes. Our results show that the effective contact angle di...
Liquid invasion into a porous medium is a phenomenon of great importance in both nature and technolo...
International audienceThe effects of wettability on multiphase displacement in porous media have bee...
Many environmental issues deal with the movement of immiscible fluids in the subsurface, e.g., clean...
International audienceWe study how grain shapes impact multiphase flow in porous media in the quasi-...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...
International audienceWe present an interface tracking algorithm that incorporates essential pore-sc...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...
We develop a novel ‘moving-capacitor’ dynamic network model to simulate immiscible fluid–fluid displ...
We develop a novel 'moving-capacitor' dynamic network model to simulate immiscible fluid-fluid displ...
We develop a novel ‘moving-capacitor’ dynamic network model to simulate immiscible fluid–fluid displ...
International audienceThe unstable fluid–fluid displacement patterns in porous media with rough inva...
International audienceThe unstable fluid–fluid displacement patterns in porous media with rough inva...
The unstable fluid–fluid displacement patterns in porous media with rough invasion fronts and trappi...
We study the influence of wettability on the morphology of fluid-fluid displacement through analog p...
We study the influence of wettability on the morphology of fluid-fluid displacement through analog p...
Liquid invasion into a porous medium is a phenomenon of great importance in both nature and technolo...
International audienceThe effects of wettability on multiphase displacement in porous media have bee...
Many environmental issues deal with the movement of immiscible fluids in the subsurface, e.g., clean...
International audienceWe study how grain shapes impact multiphase flow in porous media in the quasi-...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...
International audienceWe present an interface tracking algorithm that incorporates essential pore-sc...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...
We develop a novel ‘moving-capacitor’ dynamic network model to simulate immiscible fluid–fluid displ...
We develop a novel 'moving-capacitor' dynamic network model to simulate immiscible fluid-fluid displ...
We develop a novel ‘moving-capacitor’ dynamic network model to simulate immiscible fluid–fluid displ...
International audienceThe unstable fluid–fluid displacement patterns in porous media with rough inva...
International audienceThe unstable fluid–fluid displacement patterns in porous media with rough inva...
The unstable fluid–fluid displacement patterns in porous media with rough invasion fronts and trappi...
We study the influence of wettability on the morphology of fluid-fluid displacement through analog p...
We study the influence of wettability on the morphology of fluid-fluid displacement through analog p...
Liquid invasion into a porous medium is a phenomenon of great importance in both nature and technolo...
International audienceThe effects of wettability on multiphase displacement in porous media have bee...
Many environmental issues deal with the movement of immiscible fluids in the subsurface, e.g., clean...