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Mass transfer in hydrogen-fed anode-supported SOFCs

机译:氢供阳极负载的SOFC中的传质

摘要

A comprehensive numerical study of the mass-transfer mechanisms inside the anode of a hydrogen-fed Solid-Oxide Fuel-Cell (SOFC) is presented. The study is based on a detailed mathematical model of the channel and anode, using for the latter the equations of the Dusty Gas Model (DGM) to describe masstransfer in the porous medium. The physical meaning and relative importance of the fluxes present in the DGM have been researched; the outcome is a better understanding of the physical phenomena involved in the several species transfer to and from the reaction layer. The relevance of the convective flux and the contribution of the pressure-driven DGM one in the SOFC anode has been numerically and analytically estimated for the most common SOFC operating conditions; it has been found that these fluxes may not be negligible in many cases.
机译:提出了氢供料固体氧化物燃料电池(SOFC)阳极内部传质机理的综合数值研究。该研究基于通道和阳极的详细数学模型,对于后者,使用了Dusty Gas Model(DGM)方程来描述多孔介质中的传质。研究了DGM中存在的助焊剂的物理意义和相对重要性。结果是更好地了解了与反应层之间转移的几种物质所涉及的物理现象。对于最常见的SOFC操作条件,已经通过数值和分析方法估算了SOFC阳极中对流通量的相关性和压力驱动的DGM 1的贡献。已经发现这些通量在许多情况下可能是不可忽略的。

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