In this work, an accurate and computationally fast model for liquid water transport within a proton exchange membrane fuel cell (PEMFC) electrode is developed by lumping the space-dependence of the relevant variables. Capillarity is considered as the main transport mechanism within the gas diffusion layer (GDL). The novelty of the model lies in the coupled simulation of the water transport at the interface between gas diffusion layer and gas flow channel (GFC). This is achieved with a phenomenological description of the process that allows its simulation with relative simplicity. Moreover, a detailed two dimensional visualization of such interface is achieved via geometric simulation of water droplets formation, growth, coalescence and deta...
\u3cp\u3eWe present a macrohomogeneous two-phase model of a proton exchange membrane fuel cell (PEMF...
Improved modeling of the membrane electrode assembly (MEA) and operation is essential to optimize pr...
Improved modeling of the membrane electrode assembly (MEA) and operation is essential to optimize pr...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
Proton exchange membrane fuel cell (PEMFC) is clean electrochemical energy generation device that ge...
Proton exchange membrane fuel cell (PEMFC) is clean electrochemical energy generation device that ge...
The research and the development of PEMFC systems is an ongoing process with an increasing demand fo...
The research and the development of PEMFC systems is an ongoing process with an increasing demand fo...
Improved modeling of the membrane electrode assembly (MEA) and operation is essential to optimize pr...
\u3cp\u3eWe present a macrohomogeneous two-phase model of a proton exchange membrane fuel cell (PEMF...
Improved modeling of the membrane electrode assembly (MEA) and operation is essential to optimize pr...
Improved modeling of the membrane electrode assembly (MEA) and operation is essential to optimize pr...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
In this work, an accurate and computationally fast model for liquid water transport within a proton ...
Proton exchange membrane fuel cell (PEMFC) is clean electrochemical energy generation device that ge...
Proton exchange membrane fuel cell (PEMFC) is clean electrochemical energy generation device that ge...
The research and the development of PEMFC systems is an ongoing process with an increasing demand fo...
The research and the development of PEMFC systems is an ongoing process with an increasing demand fo...
Improved modeling of the membrane electrode assembly (MEA) and operation is essential to optimize pr...
\u3cp\u3eWe present a macrohomogeneous two-phase model of a proton exchange membrane fuel cell (PEMF...
Improved modeling of the membrane electrode assembly (MEA) and operation is essential to optimize pr...
Improved modeling of the membrane electrode assembly (MEA) and operation is essential to optimize pr...