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首页> 外文期刊>Journal of Fuel Cell Science and Technology >Simulation Study for the Optimization of Microtubular Solid Oxide Fuel Cell Bundles
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Simulation Study for the Optimization of Microtubular Solid Oxide Fuel Cell Bundles

机译:优化微管固体氧化物燃料电池组的仿真研究

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摘要

Microtubular solid oxide fuel cells (SOFCs) are shown to be robust under rapid temperature changes and have large electrode area per volume (high volumetric power density). Such features are believed to increase a variety of application. Our study aims to establish a fabrication technique for microtubular SOFC bundles with the volumetric power density of 2 W cm−3 at 0.7 V. So far, we have succeeded to develop a fabrication technology for microtubular SOFC bundles using anode supported tubular SOFCs and cathode matrices with well-controlled microstructures. A key to improve the performance of the microtubular SOFC bundles is to optimize the microstructure of the cathode matrices because it influences a pressure loss for air and electric current collection. In this paper, a simulation study of an air flow, temperature, and potential distributions in the microtubular SOFC bundle was conducted in order to understand the characteristics of the present bundle design. In addition, operating conditions of the microtubular SOFC bundles was discussed for realizing the target power density of 2 W cm−3.
机译:微管固体氧化物燃料电池(SOFC)在快速的温度变化下显示出坚固的性能,并且每体积的电极面积大(高体积功率密度)。据信这种特征增加了各种应用。我们的研究旨在建立在0.7 V时体积功率密度为2 W cm−3的微管SOFC束的制造技术。到目前为止,我们已经成功开发了使用阳极支撑的管SOFC和阴极基体的微管SOFC束的制造技术。具有良好控制的微观结构。改善微管SOFC束性能的关键是优化阴极矩阵的微观结构,因为它会影响空气和电流收集的压力损失。在本文中,对微管SOFC束中的气流,温度和电位分布进行了模拟研究,以了解当前束设计的特征。此外,还讨论了微管SOFC束的工作条件,以实现2 W cm-3的目标功率密度。

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