In this study, we present a rigorous mathematical model, to treat prediction and analysis of proton exchange membrane fuel cells gas concentration and current density distribution in mass transfer area and chemical reaction area performed in 3-D geometry. The model is based on the solution of the co
Assisted water management in a PEMFC with a modified flow field and its effect on performance
โ Scribed by Natthawoot Bunmark; Sunun Limtrakul; Michael W. Fowler; Terdthai Vatanatham; Jeff Gostick
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 856 KB
- Volume
- 35
- Category
- Article
- ISSN
- 0360-3199
No coin nor oath required. For personal study only.
โฆ Synopsis
This work designed and tested innovative flow channels in order to improve water management in a polymer electrolyte membrane fuel cell (PEMFC). The design employed slanted channels with an angle of 20 in a flow plate to collect the liquid water that permeated from the gas diffusion layers. The effects of orientations of the slanted channels in up-slanted and down-slanted directions and relative humidity levels on the cell performance were investigated. The experimental results showed that modifying the anode flow field using down-slanted channels provided higher cell performance. Water concentration at the gas diffusion layer is reduced resulting in more back diffusion of water from the cathode to anode, thus inducing membrane hydration and improving the conductivity. Promotion of water removal by applying down-slanted channels in the cathode side did not improve the performance. This work has demonstrated that channel cross-section design alone could improve the PEM fuel cell performance. The anode downslanted cell indeed improved the performances at extremely wet condition and the power was equally good as that without modified flow channel at less wet condition.
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