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Heterogeneous Electrode Designs for Planar SOFC Optimizations

机译:用于平面SOFC优化的异质电极设计

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Suitable porous electrode design may play a significant role in the performance enhancement of solid oxide fuel cells (SOFCs). In this paper, a genetic algorithm optimization method is employed to design electrodes based on a 2-D planar SOFC model development. The objective is to find out suitable porosity and particle size distributions for both anode and cathode electrodes so that the cell performance can be maximized. The results indicate that the optimized heterogeneous electrode may better improve SOFC performance than the homogeneous count-part, particularly under relatively high current density conditions. The optimization results are dependent on the operating conditions. The effects of pressure losses along the anode/cathode channels and inlet fuel compositions are investigated. The proposed approach provides a systematical method for electrode microstructure designs of high performance SOFCs.
机译:合适的多孔电极设计可能在实体氧化物燃料电池(SOFC)的性能增强中起着重要作用。本文采用了基于二维平面SOFC模型开发的基因算法优化方法来设计电极。目的是找出阳极和阴极电极的合适孔隙率和粒度分布,从而可以最大化电池性能。结果表明优化的异构电极可以更好地改善比均匀的计数部分的性能提高,特别是在相对高的电流密度条件下。优化结果取决于操作条件。研究了沿阳极/阴极通道和入口燃料组合物的压力损失的影响。该方法提供了高性能SOFC电极微结构设计的系统方法。

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