In this paper, energy and exergy analyses for a 1.2 kWp Nexa PEM fuel cell unit in a solar-based hydrogen production system is undertaken to investigate the performance of the system for different operating conditions using experimental setup and thermodynamic model. From the model results, it is found that there are reductions in energy and exergy efficiencies (about 14%) with increase in cur-rent density. These are consistent with the experimental data for the same operating conditions. A parametric study on the system and its parameters is undertaken to investigate the changes in the efficiencies for variations in temperature, pressure and anode stoichiometry. The energy and exergy efficiencies increase with pressure by 23% and 15%, resp...
In recent years, growing attention has been given to new alternative energy sources and exergy analy...
WOS: 000245093800031In this study, we deal with the exergoeconomic analysis of a proton exchange mem...
Water and heat management are the most critical issues for the performance of proton exchange membra...
In this paper, energy and exergy analyses for a 1.2 kWp Nexa PEM fuel cell unit in a solar-based hyd...
In this study, energy and exergy analyses of a 1 kW Horizon H-1000 XP Proton Exchange Membrane (PEM)...
WOS: 000300470000061In this study, a comprehensive performance analysis of a transportation system p...
WOS: 000236746700003In this paper we investigate the effects of thermodynamic irreversibilities on t...
This paper presents an exergoeconomic model of a proton-exchange membrane (PEM) fuel cell stack. The...
WOS: 000425565700023This study presents the performance of a proton exchange membrane (PEM) fuel cel...
High-temperature proton exchange membrane fuel cell (HT-PEMFC), which operates between 160 degrees C...
AbstractA proposed electric vehicle using proton exchange membrane (PEM) as clean energy have been a...
In this paper, a theoretical model of a PEMFC with heat recovery system (PEMFC-HR) for preheating it...
A mathematical model of a proton exchange membrane fuel cell (PEMFC) was developed to investigate th...
Hydrogen production by a proton exchange membrane (PEM) electrolyzer provides a promising way to sto...
In this thesis the performance of high temperature fuel cell systems is studied using a new method o...
In recent years, growing attention has been given to new alternative energy sources and exergy analy...
WOS: 000245093800031In this study, we deal with the exergoeconomic analysis of a proton exchange mem...
Water and heat management are the most critical issues for the performance of proton exchange membra...
In this paper, energy and exergy analyses for a 1.2 kWp Nexa PEM fuel cell unit in a solar-based hyd...
In this study, energy and exergy analyses of a 1 kW Horizon H-1000 XP Proton Exchange Membrane (PEM)...
WOS: 000300470000061In this study, a comprehensive performance analysis of a transportation system p...
WOS: 000236746700003In this paper we investigate the effects of thermodynamic irreversibilities on t...
This paper presents an exergoeconomic model of a proton-exchange membrane (PEM) fuel cell stack. The...
WOS: 000425565700023This study presents the performance of a proton exchange membrane (PEM) fuel cel...
High-temperature proton exchange membrane fuel cell (HT-PEMFC), which operates between 160 degrees C...
AbstractA proposed electric vehicle using proton exchange membrane (PEM) as clean energy have been a...
In this paper, a theoretical model of a PEMFC with heat recovery system (PEMFC-HR) for preheating it...
A mathematical model of a proton exchange membrane fuel cell (PEMFC) was developed to investigate th...
Hydrogen production by a proton exchange membrane (PEM) electrolyzer provides a promising way to sto...
In this thesis the performance of high temperature fuel cell systems is studied using a new method o...
In recent years, growing attention has been given to new alternative energy sources and exergy analy...
WOS: 000245093800031In this study, we deal with the exergoeconomic analysis of a proton exchange mem...
Water and heat management are the most critical issues for the performance of proton exchange membra...