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The effect of flow distributors on the liquid water distribution and performance of a PEM fuel cell
Annasaheb S. Bansode, ,
Published in
2012
Volume: 37
   
Issue: 22
Pages: 17158 - 17171
Abstract
Water management is one of the important factors which determine the performance of a Proton Exchange Membrane (PEM) fuel cell using hydrogen as fuel. For developing efficient water management systems, it is important to know the potential locations of formation and the nature of distribution of liquid water in the fuel cell. In the present study a PEM fuel cell with three different types of flow distributors are modeled and numerically simulated to find out the water formation and distribution characteristics. The model is validated by comparing the simulated polarization curve to experimental data. It is found that the type of flow distributor used plays a major role in determining the distribution of liquid water in the cell. A parallel flow distributor exhibits poor water removal capabilities whereas a serpentine flow distributor exhibits better water removal. A mixed flow distributor is found to give better water distribution characteristics compared to the parallel and serpentine distributors. Further the effect of liquid water formation and distribution on the species transport, temperature distribution and current generation are also investigated. Copyright © 2012, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights.
About the journal
JournalInternational Journal of Hydrogen Energy
ISSN03603199
Open AccessNo
Concepts (23)
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    Current generation
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    DISTRIBUTION CHARACTERISTICS
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    FLOW DISTRIBUTORS
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    LIQUID WATER
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    MIXED FLOWS
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    Pem fuel cell
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    POLARIZATION CURVES
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    Serpentine flow
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    Species transport
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    TWO-PHASE MODELING
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    Water distributions
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    WATER FORMATION
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    WATER MANAGEMENT SYSTEMS
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    WATER REMOVAL
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    Computer simulation
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    Flow control
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    Hydrogen
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    Proton exchange membrane fuel cells (pemfc)
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    Serpentine
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    Water conservation
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    Water management
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    Water supply systems
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    Liquids