We study the influence of wettability on the morphology of fluid-fluid displacement through analog porous media in the limit of vanishing flow rates. We introduce an invasion-percolation model that considers cooperative pore filling and corner-flow mechanisms and captures interface motion at the pore scale for all quasistatic flow regimes between strong drainage and strong imbibition. We validate the method against recent experimental observations of wetting transition in microfluidic cells patterned with circular posts and we use it to explore the sensitivity of fluid invasion to wettability heterogeneity, post spacing, and post height. Our model therefore extends the Cieplak-Robbins description of quasistatic fluid invasion by reproducing...
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...
We study the influence of wettability on the morphology of fluid-fluid displacement through analog p...
The unstable fluid–fluid displacement patterns in porous media with rough invasion fronts and trappi...
Multiphase flow in porous media is important in many natural and industrial processes, including geo...
Multiphase flow in porous media is important in many natural and industrial processes, including geo...
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...
International audienceImmiscible two-phase flow through porous media is composed of a series of pore...
International audienceImmiscible two-phase flow through porous media is composed of a series of pore...
Multiphase flow in porous media is important in many natural and industrial processes, including geo...
Liquid invasion into a porous medium is a phenomenon of great importance in both nature and technolo...
Fluid invasion pattern for two-phase flow in porous media is controlled by many factors. In this the...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...
We study the influence of wettability on the morphology of fluid-fluid displacement through analog p...
The unstable fluid–fluid displacement patterns in porous media with rough invasion fronts and trappi...
Multiphase flow in porous media is important in many natural and industrial processes, including geo...
Multiphase flow in porous media is important in many natural and industrial processes, including geo...
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...
International audienceImmiscible two-phase flow through porous media is composed of a series of pore...
International audienceImmiscible two-phase flow through porous media is composed of a series of pore...
Multiphase flow in porous media is important in many natural and industrial processes, including geo...
Liquid invasion into a porous medium is a phenomenon of great importance in both nature and technolo...
Fluid invasion pattern for two-phase flow in porous media is controlled by many factors. In this the...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
Wettability is an important factor which controls the displacement of immiscible fluids in permeable...
We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanism...