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首页> 外文期刊>Journal of power sources >Numerical Analysis Of Electrical Power Generation And Internal Reforming Characteristics In Seal-less Disk-type Solid Oxide Fuel Cells
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Numerical Analysis Of Electrical Power Generation And Internal Reforming Characteristics In Seal-less Disk-type Solid Oxide Fuel Cells

机译:无密封盘形固体氧化物燃料电池发电及内部重整特性的数值分析

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摘要

For seal-less type solid oxide fuel cells, its power generation characteristics and distribution of the gas composition depend on not only the electrochemical reaction, but also complex kinetics and transport phenomena, because the internal reforming reaction and the water-gas shift reaction take place together with reverse diffusion of the ambient gas from the surroundings of the cell. The purpose of this paper is to theoretically explain the experimental results of the anodic concentration profile of gaseous species previously reported in a practical seal-less disk-type cell which used pre-reforming methane with steam as a fuel. A numerical model that takes into account the transport phenomena of the gaseous species and the internal reforming reaction with the water-gas shift reaction together with the assumption of the cell outlet boundary condition was constructed to numerically analyse the gas composition distribution and power generation characteristics. Numerical analyses by the model were conducted for the several cases reported as the experiment. The calculated results in the anode gas concentration profile and in the voltage-current characteristics show good agreement with the experimental data in every case, and then the validity of the simulation model was verified. Therefore, the model is useful for a seal-less disk-type cell which is operated by a fuel including non-reformed methane.
机译:对于无密封式固体氧化物燃料电池,由于其内部重整反应和水煤气变换反应的发生,其发电特性和气体成分分布不仅取决于电化学反应,还取决于复杂的动力学和传输现象。以及周围气体从电池周围环境的反向扩散。本文的目的是从理论上解释以前在实用的无密封盘式电池中报告的气态物种阳极浓度分布的实验结果,该电池使用甲烷和蒸汽作为燃料进行预重整。建立了考虑气态物质的传输现象和内部重整反应以及水煤气变换反应以及细胞出口边界条件的假设的数值模型,以对气体成分分布和发电特性进行数值分析。通过模型对报告为实验的几种情况进行了数值分析。在每种情况下,阳极气体浓度曲线和电压-电流特性的计算结果均与实验数据吻合良好,从而验证了仿真模型的有效性。因此,该模型对于由包括未重整甲烷的燃料操作的无密封盘式电池是有用的。

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