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Simulation and Investigation of Electrical Performance and Gas Pressure Distributions in a Planar SOFC

机译:平面SOFC中电气性能和气体压力分布的仿真与调查

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A computational two-dimensional model has been developed to simulate the electrical performance and gas pressure distributions in electrodes and gas channels of the planar SOFC designed by IPPE. The SOFC includes a three-layer cell (anode, electrolyte and cathode) enclosed by metallic interconnects which contain ribs functioning as contacts for current collectors above and below. The SOFC is divided into uniform unit cells in a horizontal plane. The unit cell is characterized by essentially non-uniform boundary conditions which are formulated. For the unit cell governing equations for electric potentials and partial pressures of fuel and air components were solved numerically using the finite-difference method. Gas component migration processes were described in the frame of "dusty-gas model". The model developed was used to investigate the influence of an interconnect design on SOFC electrical performance. The results of the investigation are presented in this work.
机译:已经开发了一种计算二维模型来模拟由IPPE设计的平面SOFC的电极和气体通道中的电气性能和气体压力分布。 SOFC包括由金属互连包围的三层电池(阳极,电解质和阴极),该金属互连包含作为用于上方和下方的集电器的触点的肋。将SOFC分成水平平面中的均匀单元电池。单位电池的特征在于配制的基本上不均匀的边界条件。对于用于电势的单元电池和燃料和空气部件的部分压力的单元电池,使用有限差异方法在数值上进行了数量的解决方法。在“尘埃气体模型”的框架中描述了气体组分迁移过程。该模型用于研究互连设计对SOFC电性能的影响。调查结果在这项工作中提出。

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