CFD modeling of a biogas fuelled SOFC

Mathematical modeling of transport and electrochemical phenomena within SOFCs can lead to improved understanding of the involved physical, electrical, and chemical processes and represents a powerful tool for their development. In this context, the present work illustrates a three-dimensional CFD si...

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Veröffentlicht in:Solid state ionics 2011-06, Vol.192 (1), p.458-463
Hauptverfasser: Vakouftsi, E., Marnellos, G.E., Athanasiou, C., Coutelieris, F.
Format: Artikel
Sprache:eng
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Zusammenfassung:Mathematical modeling of transport and electrochemical phenomena within SOFCs can lead to improved understanding of the involved physical, electrical, and chemical processes and represents a powerful tool for their development. In this context, the present work illustrates a three-dimensional CFD simulation of a planar SOFC unit cell fuelled by modeled biogas/steam mixtures. The simulations estimate the distribution of gas species, the current densities and the potentials, as well as the temperature gradients and confirm that equimolar CH 4/CO 2 biogas leads to improved performance, while minimal steam addition can prevent carbon deposition.
ISSN:0167-2738
1872-7689
DOI:10.1016/j.ssi.2010.05.051