We present an interface tracking algorithm that incorporates essential pore-scale invasion mechanisms for simulating multiphase flow in porous media in capillary dominated regime. The algorithm allows the capture of the actual shape of porous medium with complex geometrical features, including both convex and concave particles or irregular channels. It also incorporates the sharp edge pinning effect such that pinning of menisci at corners can be naturally taken into account. We firstly conduct simulations under imbibition and drainage conditions in a single junction micro-model and in disordered porous media for validation. It is shown that the invasion mechanisms at pore scale are accurately captured, and the macroscopic invasion morpholog...
International audienceImmiscible two-phase flow through porous media is composed of a series of pore...
Fluid invasion pattern for two-phase flow in porous media is controlled by many factors. In this the...
International audienceUnderstanding multiphase flow in porous media is of tremendous importance for ...
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...
International audienceWe study how grain shapes impact multiphase flow in porous media in the quasi-...
We study how grain shapes impact multiphase flow in porous media in the quasi-static regime using an...
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...
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...
Liquid invasion into a porous medium is a phenomenon of great importance in both nature and technolo...
Abstract Wettability, or preferential affinity of a fluid to a solid substrate in the presence of an...
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...
Fluid invasion pattern for two-phase flow in porous media is controlled by many factors. In this the...
International audienceUnderstanding multiphase flow in porous media is of tremendous importance for ...
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...
International audienceWe study how grain shapes impact multiphase flow in porous media in the quasi-...
We study how grain shapes impact multiphase flow in porous media in the quasi-static regime using an...
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...
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...
Liquid invasion into a porous medium is a phenomenon of great importance in both nature and technolo...
Abstract Wettability, or preferential affinity of a fluid to a solid substrate in the presence of an...
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...
Fluid invasion pattern for two-phase flow in porous media is controlled by many factors. In this the...
International audienceUnderstanding multiphase flow in porous media is of tremendous importance for ...