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NUMERICAL STUDY ON THERMOELECTRIC PERFORMANCE OF CROSS-FLOW PLANAR SOLID OXIDE FUEL CELL

机译:横流平面固体氧化物燃料电池热电性能的数值研究

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This paper investigates the thermoelectric characteristics of cross-flow planar type solid oxide fuel cell (SOFC) with natural gas as fuel by using a three-dimensional numerical model. The results reveal that temperature and reactant concentration increase gradually along the direction of fuel gas flow, and the reactant concentration increases in the first and subsequently decreases. In addition, the lower the temperature, the higher ideal electromotive force is as well as the less actual output electromotive force. The hydrogen concentration is positively correlated with the current density and the ideal electromotive force. However, increasing the mass flow continuously beyond the reasonable range can decrease the current and electrochemical reaction intensity. Variation in wall thickness was also simulated and found that increasing the thickness would result in higher intensity of electrochemical reaction and increased current density but at the cost of low efficiency in SOFC. Thus an optimal design can make a balance between fuel utilization and output power of SOFC.
机译:本文利用三维数值模型研究了以天然气为燃料的错流平面型固体氧化物燃料电池(SOFC)的热电特性。结果表明,温度和反应物浓度沿燃料气体的流动方向逐渐增加,反应物浓度先增加然后减少。另外,温度越低,理想电动势越高,实际输出电动势越小。氢浓度与电流密度和理想电动势呈正相关。但是,将质量流量连续增加到合理范围之外会降低电流和电化学反应强度。还模拟了壁厚的变化,发现增加厚度将导致较高的电化学反应强度和增加的电流密度,但以SOFC效率低为代价。因此,最佳设计可以在燃料利用率和SOFC的输出功率之间取得平衡。

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