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Effects of heat sources on the performance of a planar solid oxide fuel cell

机译:热源对平面固体氧化物燃料电池性能的影响

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This paper presents an analysis of the effects of heat sources on performance of a planar anode-supported solid oxide fuel cell (SOFC). Heat sources in SOFCs include ohmic heat losses, heat released by chemical and electrochemical processes and radiation. We take into account the first three types of heat source here while neglecting the last type as it is supposed to be negligibly small. The cell is working under conditions of direct internal reforming of methane and with co-flow configuration. The composite electrodes are dis-cretized allowing the heat source associated with the electrochemical processes to be implemented in a layer of finite thickness. Two cases are investigated, one where the electrochemical heat source is implemented on the anode side (base case) and another where it is implemented on the cathode side.rnResults for temperature, current density and chemical species distribution of the base case are shown and discussed. Moreover, the effects of magnitude and location of the heat sources are discussed. The results show that including ohmic heating in the cell model does have a significant effect on the predicted cell performance. Comparisons between the two cases indicate that the location of the electrochemical heat source does not affect the cell performance.
机译:本文介绍了热源对平面阳极支撑固体氧化物燃料电池(SOFC)性能的影响的分析。 SOFC中的热源包括欧姆热损失,化学和电化学过程释放的热量以及辐射。我们在这里考虑了前三种类型的热源,而忽略了后一种类型,因为后者应该很小。电解池在甲烷内部直接重整和并流配置下工作。复合电极离散,允许与电化学过程相关的热源以有限的厚度实现。研究了两种情况,一种情况是在阳极侧(基体)使用电化学热源,另一种情况是在阴极侧方使用电化学热源。rn显示并讨论了基本壳体的温度,电流密度和化学物质分布的结果。此外,讨论了热源的大小和位置的影响。结果表明,在电池模型中包括欧姆加热确实会对预测的电池性能产生重大影响。两种情况之间的比较表明,电化学热源的位置不影响电池性能。

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