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Development of Modelling and Testing for Analysis of Degradation in Solid Oxide Fuel Cells

机译:固体氧化物燃料电池降解分析的建模和测试开发

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The ability to predict the lifetime performance of an SOFC can give guidelines for where improvements and alterations can be made in terms of production, operating parameters and cell design. This study focuses on continuous degradation mechanisms and the impact they have on the components of a single repeating unit level, i.e. the anode, cathode, electrolyte, metal interconnect and sealants. Currently the model being developed deals specifically with anode and electrolyte degradation. Depending on operating conditions, SOFC cells suffer from Ni particle agglomeration, coarsening, and volatilisation which lead to increased overpotential in the anode. A loss in the ionic conductivity in the electrolyte is also observed. Matlab® coding has been developed to outline the loss of performance in a single repeating unit for a given set of operating parameters. These equations will be tested against real life data to establish their validity and, where necessary, adjusted for accuracy.
机译:预测SOFC使用寿命的能力可以为在生产,操作参数和电池设计方面可以进行改进和更改的地方提供指导。这项研究的重点是连续降解机理及其对单个重复单元水平的组成部分(即阳极,阴极,电解质,金属互连和密封剂)的影响。目前,正在开发的模型专门处理阳极和电解质的降解。根据工作条件,SOFC电池会遭受Ni粒子的团聚,粗化和挥发,这会导致阳极中的超电势增加。还观察到电解质中离子电导率的损失。已经开发出Matlab®编码,以概述给定一组操作参数在单个重复单元中的性能损失。这些方程式将针对实际数据进行测试,以确定其有效性,并在必要时进行准确性调整。

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