The present work presents a three-dimensional, non-isothermal computational model of PEMFC, implemented in the CFD code Fluent. The model accounts for all major transport phenomena, including: water and proton transport through the membrane; electrochemical reaction; transport of electrons; transport and phase change of water in the gas diffusion electrodes; diffusion of multi-component gas mixtures in the electrodes; and mass transport in the gas flow channels. First, the polarization behavior or steady state performance of the PEMFC has been simulated and then the transient response subjected to a variable load has been studied. In the steady state analysis, the polarization curves, obtained by single phase and two-phase numerical simulat...
A quasi three-dimensional dynamic model of a proton exchange membrane fuel cell (PEMFC) has been dev...
This paper presents a comprehensive three–dimensional, multi–phase, non-isothermal model of a Proton...
A two-dimensional, steady-state and isothermal model of the proton electrolyte membrane (PEM) fuel c...
ASME Paper EFC2007-39158 The present work presents a three-dimensional, non-isothermal computational...
A transient, multi-dimensional model has been developed to simulate proton exchange membrane (PEM) f...
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...
A two-dimensional two-phase and non-isothermal model is presented to simulate a complete proton exch...
A three-dimensional, computational fluid dynamics (CFD) model of a PEM fuel cell is presented. The m...
The present work gets insights into the mass transport phenomena taking place in hydrogen PEMFC with...
The objective of the current study is to highlight possible limitations and difficulties associated ...
A computational fluid dynamics model for high-temperature polymer electrolyte fuel cells (PEFC) is d...
The present work gets insights into the mass transport phenomena taking place in hydrogen PEMFC with...
The present work gets insights into the mass transport phenomena taking place in hydrogen PEMFC with...
Modern technological advancements in our lifestyle have caused a significant increase in the consump...
A quasi three-dimensional dynamic model of a proton exchange membrane fuel cell (PEMFC) has been dev...
This paper presents a comprehensive three–dimensional, multi–phase, non-isothermal model of a Proton...
A two-dimensional, steady-state and isothermal model of the proton electrolyte membrane (PEM) fuel c...
ASME Paper EFC2007-39158 The present work presents a three-dimensional, non-isothermal computational...
A transient, multi-dimensional model has been developed to simulate proton exchange membrane (PEM) f...
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...
A two-dimensional two-phase and non-isothermal model is presented to simulate a complete proton exch...
A three-dimensional, computational fluid dynamics (CFD) model of a PEM fuel cell is presented. The m...
The present work gets insights into the mass transport phenomena taking place in hydrogen PEMFC with...
The objective of the current study is to highlight possible limitations and difficulties associated ...
A computational fluid dynamics model for high-temperature polymer electrolyte fuel cells (PEFC) is d...
The present work gets insights into the mass transport phenomena taking place in hydrogen PEMFC with...
The present work gets insights into the mass transport phenomena taking place in hydrogen PEMFC with...
Modern technological advancements in our lifestyle have caused a significant increase in the consump...
A quasi three-dimensional dynamic model of a proton exchange membrane fuel cell (PEMFC) has been dev...
This paper presents a comprehensive three–dimensional, multi–phase, non-isothermal model of a Proton...
A two-dimensional, steady-state and isothermal model of the proton electrolyte membrane (PEM) fuel c...