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dc.creatorHafsia, A.en
dc.creatorBariza, Z.en
dc.creatorDjamel, H.en
dc.creatorHocine, B. M.en
dc.creatorAndreadis, G. M.en
dc.creatorSoumia, A.en
dc.date.accessioned2015-11-23T10:29:25Z
dc.date.available2015-11-23T10:29:25Z
dc.date.issued2011
dc.identifier10.1016/j.egypro.2011.05.074
dc.identifier.issn18766102
dc.identifier.urihttp://hdl.handle.net/11615/28300
dc.description.abstractIn the present work the effect of various heat sources on the temperature field within an Anode Supported Planar Solid Oxide Fuel Cell (ASP-SOFC) is studied. In order to describe the thermal behavior within the SOFC during its operation, the coupling of the mass and energy transport phenomena along with the electrochemistry is required. More precisely, the subject of the present analysis is the visualization of the temperature field and the location of the highest temperatures within an ASP-SOFC fed with hydrogen and air. The studied parameters are: i) the temperature values of the reactants and ii) the different types of the heat sources; due to the over potentials, the Joule effect and the water formation. The complex system of the governing equations is numerically solved with the finite differences method and the temperature field within each domain of the ASP-SOFC is calculated via a mathematical model implemented in FORTRAN language. The mathematical model predictions for the temperature gradient within the ASP-SOFC under the influence of the studied parameters are thoroughly discussed. © 2010 Published by Elsevier Ltd.en
dc.source.urihttp://www.scopus.com/inward/record.url?eid=2-s2.0-79960260632&partnerID=40&md5=d49cd32ab3c0ce3af91c86614461ee0b
dc.subjectFuel cellen
dc.subjectHeaten
dc.subjectHeat sourceen
dc.subjectSOFCen
dc.subjectTemperatureen
dc.subjectAnode-supporteden
dc.subjectFinite differenceen
dc.subjectGoverning equationsen
dc.subjectHeat productionen
dc.subjectHeat sourcesen
dc.subjectHighest temperatureen
dc.subjectJoule effectsen
dc.subjectMass and energy transporten
dc.subjectOver potentialen
dc.subjectPlanar solidsen
dc.subjectTemperature fielden
dc.subjectTemperature gradienten
dc.subjectTemperature valuesen
dc.subjectThermal behaviorsen
dc.subjectWater formationen
dc.subjectMathematical modelsen
dc.subjectVisualizationen
dc.subjectSolid oxide fuel cells (SOFC)en
dc.titleSOFC fuel cell heat production: Analysisen
dc.typeconferenceItemen


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