A two-dimensional study of an idealised fibrous medium representing the gas diffusion layer of a PEMFC is conducted using computational fluid dynamics. Beginning with an isotropic case the medium is compressed uni-directionally to observe the effects on single and multiphase flow. Relations between the compression ratio and the permeability of the medium are deduced and key parameters dictating the changes in flow are elucidated. The main conclusions are that whilst compression reduces the absolute permeability of an isotropic medium, the creation of anisotropic geometry results in preferential liquid water pathways. The most important parameter for capillary flow, in uniformly hydrophobic media, is the minimum fibre spacing normal to the f...
Among the parameters to take into account in the design of a proton exchange membrane fuel cell (PEM...
A key performance limitation in the polymer electrolyte fuel cell (PEFC), manifested in terms of mas...
Pore network modeling is used to model water invasion and multiphase transport through compressed PE...
A three-dimensional, multicomponent, two-fluid model developed in the commercial CFD package CFX 13 ...
Due to the low-temperature operation of Polymer Electrolyte Membrane fuel cell (PEMFC), liquid water...
A three-dimensional, multi-component, two-fluid model developed in the commercial CFD package CFX 13...
One of the main obstacles to overcome regarding the uptake of renewable energy technologies, specifi...
Liquid-gas two-phase flow in the gas diffusion layer (GDL) of proton exchange membrane fuel cells is...
The final publication is available at Elsevier via http://dx.doi.org/10.1016/j.jpowsour.2009.04.052 ...
The effects of inhomogeneous compression of gas diffusion layers (GDLs) on local transport phenomena...
The presence of excess liquid water in the gas diffusion layers GDLs of polymer electrolyte membra...
A two-phase polymer electrolyte membrane fuel cell model has been developed to investigate transport...
A two dimensional, half-cell, non-isothermal, multi-phase model of a polymer electrolyte fuel cell (...
International audienceThe gas diffusion layer (GDL) is an essential component for a proton exchange ...
In Polymer Electrolyte Fuel Cells (PEFCs) the reaction- and product-gases and liquids are transporte...
Among the parameters to take into account in the design of a proton exchange membrane fuel cell (PEM...
A key performance limitation in the polymer electrolyte fuel cell (PEFC), manifested in terms of mas...
Pore network modeling is used to model water invasion and multiphase transport through compressed PE...
A three-dimensional, multicomponent, two-fluid model developed in the commercial CFD package CFX 13 ...
Due to the low-temperature operation of Polymer Electrolyte Membrane fuel cell (PEMFC), liquid water...
A three-dimensional, multi-component, two-fluid model developed in the commercial CFD package CFX 13...
One of the main obstacles to overcome regarding the uptake of renewable energy technologies, specifi...
Liquid-gas two-phase flow in the gas diffusion layer (GDL) of proton exchange membrane fuel cells is...
The final publication is available at Elsevier via http://dx.doi.org/10.1016/j.jpowsour.2009.04.052 ...
The effects of inhomogeneous compression of gas diffusion layers (GDLs) on local transport phenomena...
The presence of excess liquid water in the gas diffusion layers GDLs of polymer electrolyte membra...
A two-phase polymer electrolyte membrane fuel cell model has been developed to investigate transport...
A two dimensional, half-cell, non-isothermal, multi-phase model of a polymer electrolyte fuel cell (...
International audienceThe gas diffusion layer (GDL) is an essential component for a proton exchange ...
In Polymer Electrolyte Fuel Cells (PEFCs) the reaction- and product-gases and liquids are transporte...
Among the parameters to take into account in the design of a proton exchange membrane fuel cell (PEM...
A key performance limitation in the polymer electrolyte fuel cell (PEFC), manifested in terms of mas...
Pore network modeling is used to model water invasion and multiphase transport through compressed PE...