首页> 外文会议>International conference on fuel cell science, engineering, and technology;FuelCell2010 >AN ELECTROCHEMICAL MODEL OF A SOLID OXIDE FUEL CELL USING EXPERIMENTAL DATA FOR VALIDATION OF MATERIAL PROPERTIES
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AN ELECTROCHEMICAL MODEL OF A SOLID OXIDE FUEL CELL USING EXPERIMENTAL DATA FOR VALIDATION OF MATERIAL PROPERTIES

机译:利用实验数据验证固体氧化物燃料电池的电化学模型

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This paper reports an electrochemical model of a Solid Oxide Fuel Cell where the model is compared against experimental data using the results from a button cell electrical test. The model fits the experimental data reasonably well using material properties found in the literature. Some of the material properties were used as fitted parameters to improve the fit, and their values compared with reported measured values. Further, cell polarization losses are explored to determine which one influences the voltage-current density characteristics the most. In comparing the material properties found in the literature with the one appropriate for the model curve fit to the experimental results, some discrepancies were observed. Hence, a better methodology is needed to understand the actual cell behavior and where improvements are needed. The method developed here is very useful for a commercial supplier of Solid Oxide Fuel Cells where button cells taken from a batch can be used to determine how good the cells are before they are installed in a stack.
机译:本文报告了固体氧化物燃料电池的电化学模型,其中使用纽扣电池电气测试的结果将模型与实验数据进行了比较。该模型使用文献中发现的材料特性合理地拟合了实验数据。一些材料特性被用作拟合参数以改善拟合度,并将它们的值与报告的测量值进行比较。此外,探索了电池极化损耗以确定哪一个对电压电流密度特性的影响最大。在将文献中发现的材料特性与适合模型曲线的材料特性与实验结果进行比较的过程中,观察到一些差异。因此,需要一种更好的方法来了解实际的电池行为以及需要改进的地方。对于固体氧化物燃料电池的商业供应商而言,这里开发的方法非常有用,在该供应商中,可以从一批中取出纽扣电池来确定电池在堆放之前的质量。

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