Thin porous layers, that have large aspect ratios, are seen in many applications such as hydrogen fuel cells and hygiene products, in which air-water immiscible flow is of great interest. Direct numerical simulations based on Navier-Stokes equation are computationally expensive, and even prohibitive for low capillary number flow such as water flooding in low-temperature polymer electrolyte fuel cells. Alternatively, the pore-network modeling needs much less computational resources, while still retaining essentials of the pore-structure information. In this work, a dynamic pore-network model of air-water flow with phase change has been developed. We focus on drainage processes through thin porous layers, in which liquid water is the nonwetti...
The distribution and migration of liquids in various layers of a PEFC is commonly modelled by the 3D...
A pore-network formulation is presented to model gas diffusion layers (GDLs) in polymer electrolyte ...
Water management remains a critical issue for polymer electrolyte fuel cell performance and durabili...
Thin porous layers, that have large aspect ratios, are seen in many applications such as hydrogen fu...
The pore-scale modeling is a powerful tool for increasing our understanding of water transport in th...
Polymer electrolyte membrane (PEM) fuel cells operate at levels of high humidity, leading to condens...
In the cathode side of a polymer electrolyte fuel cell (PEFC), a micro porous layer (MPL) added betw...
An experimental setup was designed to visualize water percolation inside the porous transport layer,...
In order to model the liquid water transport in the porous materials used in polymer electrolyte mem...
In order to model the liquid water transport in the porous materials used in polymer electrolyte mem...
International audienceThe gas diffusion layer (GDL) is a crucial component as regards the water mana...
A phenomenological transition film evaporation model was introduced to a pore network model with the...
International audienceA pore network model (PNM) is exploited to simulate the liquid water formation...
A pore network model (PNM) aiming at simulating the liquid water pore filling in the cathode gas dif...
Pore network simulation of water condensation in Gas Diffusion Layers of PEM Fuel cells and comparis...
The distribution and migration of liquids in various layers of a PEFC is commonly modelled by the 3D...
A pore-network formulation is presented to model gas diffusion layers (GDLs) in polymer electrolyte ...
Water management remains a critical issue for polymer electrolyte fuel cell performance and durabili...
Thin porous layers, that have large aspect ratios, are seen in many applications such as hydrogen fu...
The pore-scale modeling is a powerful tool for increasing our understanding of water transport in th...
Polymer electrolyte membrane (PEM) fuel cells operate at levels of high humidity, leading to condens...
In the cathode side of a polymer electrolyte fuel cell (PEFC), a micro porous layer (MPL) added betw...
An experimental setup was designed to visualize water percolation inside the porous transport layer,...
In order to model the liquid water transport in the porous materials used in polymer electrolyte mem...
In order to model the liquid water transport in the porous materials used in polymer electrolyte mem...
International audienceThe gas diffusion layer (GDL) is a crucial component as regards the water mana...
A phenomenological transition film evaporation model was introduced to a pore network model with the...
International audienceA pore network model (PNM) is exploited to simulate the liquid water formation...
A pore network model (PNM) aiming at simulating the liquid water pore filling in the cathode gas dif...
Pore network simulation of water condensation in Gas Diffusion Layers of PEM Fuel cells and comparis...
The distribution and migration of liquids in various layers of a PEFC is commonly modelled by the 3D...
A pore-network formulation is presented to model gas diffusion layers (GDLs) in polymer electrolyte ...
Water management remains a critical issue for polymer electrolyte fuel cell performance and durabili...