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  4. Effects of baffle-blocked flow channel on reactant transport and cell performance of a proton exchange membrane fuel cell
 
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Effects of baffle-blocked flow channel on reactant transport and cell performance of a proton exchange membrane fuel cell

Resource
Journal of Power Sources 142 (1-2): 125-133
Journal
Journal of Power Sources
Journal Issue
142
Pages
125-133
Date Issued
2005
Date
2005
Author(s)
Liu, Hui-Chung
Yan, Wei-Mon
Soong, Chyi-Yeou
Chen, Falin  
DOI
10.1016/j.jpowsour.2004.09.037
URI
http://ntur.lib.ntu.edu.tw//handle/246246/120094
https://www.scopus.com/inward/record.uri?eid=2-s2.0-15344346247&doi=10.1016%2fj.jpowsour.2004.09.037&partnerID=40&md5=2ae4e57a6001b97a8e1c0119fd4a3621
Abstract
The objective of the present study is to investigate the application of the baffle-blocked flow channels for enhancement of reactant transport and cell performance of a proton exchange membrane fuel cell (PEMFC). It is expected that due to the blockage effects in the presence of the baffles, more fuel gas in the flow channel can be forced into the gas diffuser layer to enhance the chemical reactions and then augment the performance of the PEMFC systems. The effects of liquid water formation on the reactant gas transport are taken into account in the present modeling. Predictions show that the local transport of the reactant gas, local current density generation, and the cell performance can be enhanced by the presence of the baffles. A physical interpretation for the difference in the baffle effects at high and low operating voltages is presented. The results reveal that, at low voltage conditions, the liquid water effect is especially significant and should be considered in the modeling. The cell performance can be enhanced at a higher air velocity on the cathode side, by which the cell performance can be enhanced and occurrence of the mass transport loss can be delayed with the limiting current density raised considerably. © 2004 Elsevier B.V. All rights reserved.
Subjects
Baffles; Proton exchange membrane fuel cell; Reactant transport
SDGs

[SDGs]SDG6

Other Subjects
Current density; Electroosmosis; Evaporation; Gas fuels; Heat convection; Mass transfer; Mathematical models; Reaction kinetics; Baffles; Flow channels; Proton exchange membrane fuel cell (PEMFC); Reactant transport; Fuel cells
Type
journal article
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(MD5):68ebf9aa854440356a81bc781ef59c0c

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