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Investigation of water droplet kinetics and optimization of channel geometry for PEM fuel cell cathodes
Authors:Nawaz Akhtar  Arshad Qureshi  Joachim Scholta  Christoph Hartnig  Matthias Messerschmidt  Werner Lehnert
Affiliation:1. Department of Electrochemical Processes and Modeling, ZSW, Helmholtzstraße 8, 89081 Ulm, Germany;2. Department of Mechanical Engineering, University of Engineering & Technology, Lahore-31, Pakistan
Abstract:The kinetics and transport mechanisms of water droplets in model flow field channels of a low temperature polymer electrolyte fuel cell were investigated. The pressure drop at different air flows was measured for different channel geometries in a graphite plate as employed for fuel cell bipolar plates. The minimum air flow required for the movement of a water droplet in the flow channel was identified. From the experimental findings, recommendations for the development of flow fields with high condensate removal capabilities combined with low pressure differences were drawn to allow for an efficient operation of PEM fuel cells.
Keywords:PEMFC  Fuel cells  Flow field design  Water transport  Two-phase flow
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