Effects of Current Collector on Internal Visualization of Solid Oxide Cells

Ko Yoshiga, Takeaki Okamoto, Yuya Tachikawa, Kazunari Sasaki
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Abstract

Visualization of reactions occurring inside a solid oxide cell (SOC) during operation is difficult due to the limitation of the operatable temperature to use various sensors and measurement equipment. Therefore, we are investigating a visualization method to combine three-dimensional simulation with in-operando temperature observation inside SOCs. In this study, we focused on evaluating the effect of a current collector shape on the cell performance and temperature distribution. As a result, we confirmed that the effects of several current collector shape modifications appeared in the temperature distribution. Based on the calculated temperature and current density distributions, we proposed an appropriate current collector shape for observing the temperature distribution inside the cell by experiment. Using the practical observation setup model considered in this study, the influence of sulfur poisoning on the temperature distribution was also calculated and evaluated.
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集流器对固体氧化物电池内部可视化的影响
由于使用各种传感器和测量设备的可操作温度的限制,在运行过程中,固体氧化物电池(SOC)内部发生的反应很难可视化。因此,我们正在研究一种将三维模拟与运行中温度观测相结合的可视化方法。在这项研究中,我们着重于评估电流收集器形状对电池性能和温度分布的影响。结果证实了几种集电极形状的改变对温度分布的影响。在计算温度和电流密度分布的基础上,提出了适合于实验观察电池内部温度分布的集流器形状。利用本文考虑的实际观测设置模型,计算并评价了硫中毒对温度分布的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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