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Comprehensive Numerical Modeling and Analysis of a Cell-Based Indirect Internal Reforming Tubular SOFC

机译:基于细胞的间接内改性管状SOFC的综合数值建模与分析

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摘要

A comprehensive numerical model of an indirect internal reforming tubular Solid Oxide Fuel Cell (IIR-T-SOFC) has been developed. Two-dimensional axisymmetry of the velocity, temperature, and mass transfer fields was assumed in the model, but accommodating the peripheral nonuniformity of electric potential and electric current fields in the tubular cell for the case with internal reforming and electrochemical reactions. By using the developed model, it was examined how the thermal field and power generation characteristics of the cell are affected by gas inlet conditions and filling pattern of the reforming catalyst inside the fuel feed tube. In particular, optimization of the catalyst distribution pattern was demonstrated to be effective in the reduction of the maximum temperature and temperature gradient, in the mitigation of the possible appearance of a hot spot and therefore in making the life of a fuel cell longer with little loss of the power generation performance of the cell.
机译:开发了间接内部重整管状固体氧化物燃料电池(IIR-T-SOFC)的综合数值模型。 在模型中假设速度,温度和传质场的二维轴对称,但是在内部重整和电化学反应的情况下容纳管状电池中的电势和电电流场的外围不均匀性。 通过使用开发的模型,检查了电池的热场和发电特性如何受燃料进料管内的重整催化剂的气体入口条件和填充图案的影响。 特别地,证明了催化剂分布图案的优化在减少最大温度和温度梯度的情况下,在可能的外观的减轻时,在可能的出现的缓解中,因此在使燃料电池的寿命较小的情况下减少 细胞的发电性能。

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