A one-dimensional, two-phase, transient PEM fuel cell model including gas diffusion layer, cathode catalyst layer and membrane is developed. The electrode is assumed to consist of a network of dispersed Pt/C forming spherically shaped agglomerated zones that are filled with electrolyte. Water is modeled in all three phases: vapor, liquid and dissolved in the ionomer to Capture the effect of dehydration of the ionomer as well as flooding of the porous media. The anode is modeled as a sophisticated spatially reduced interface. Motivated by environmental scanning electron microscope (ESEM) images of contact angles for microscopic water droplets on fibers of the gas diffusion layer, we introduce the feature of immobile saturation. A step change...
It has been reported recently that water flooding in the gas channel (GC) has significant effects on...
Numerical modeling plays an important role in understanding various transport processes in polymer e...
Water management is one issue that must be surpassed to ensure high membrane proton conductivity and...
A two-dimensional along-the-channel CFD (computational fluid dynamic) model, coupled with a two-phas...
In this work, a 3D model of a PEM fuel cell has been developed for water saturation and its effects ...
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...
Most of the voltage losses of proton exchange membrane fuel cells (PEMFC) are due to the sluggish ki...
A previously published computational multi-phase model of a polymer-electrolyte membrane fuel cell c...
A previously published computational multi-phase model of a polymer-electrolyte membrane fuel cell h...
A two-dimensional, along-the-channel, two-phase flow, non-isothermal model is developed which repres...
In this paper we present a one-dimensional transient model for the membrane electrode assembly of a ...
A two-dimensional, along-the-channel, two-phase flow, non-isothermal model is developed which repres...
A two-dimensional, along-the-channel, two-phase flow, non-isothermal model is developed which repres...
A one-dimensional two-phase model is developed to study the dynamic water transport in the porous la...
It has been reported recently that water flooding in the gas channel (GC) has significant effects on...
Numerical modeling plays an important role in understanding various transport processes in polymer e...
Water management is one issue that must be surpassed to ensure high membrane proton conductivity and...
A two-dimensional along-the-channel CFD (computational fluid dynamic) model, coupled with a two-phas...
In this work, a 3D model of a PEM fuel cell has been developed for water saturation and its effects ...
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...
Most of the voltage losses of proton exchange membrane fuel cells (PEMFC) are due to the sluggish ki...
A previously published computational multi-phase model of a polymer-electrolyte membrane fuel cell c...
A previously published computational multi-phase model of a polymer-electrolyte membrane fuel cell h...
A two-dimensional, along-the-channel, two-phase flow, non-isothermal model is developed which repres...
In this paper we present a one-dimensional transient model for the membrane electrode assembly of a ...
A two-dimensional, along-the-channel, two-phase flow, non-isothermal model is developed which repres...
A two-dimensional, along-the-channel, two-phase flow, non-isothermal model is developed which repres...
A one-dimensional two-phase model is developed to study the dynamic water transport in the porous la...
It has been reported recently that water flooding in the gas channel (GC) has significant effects on...
Numerical modeling plays an important role in understanding various transport processes in polymer e...
Water management is one issue that must be surpassed to ensure high membrane proton conductivity and...