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Study of a 5 kW PEMFC Using Experimental Design and Statistical Analysis Techniques

机译:使用实验设计和统计分析技术研究5 kW PEMFC

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Within the framework of the French inter lab SPACT project (Fuel Cell Systems for Transportation Applications), the behavior of a 5 kW PEM fuel cell stack, fed by humidified hydrogen and compressed air, is investigated in a test platform at Belfort, France. A set of polarization curves are recorded, under various conditions of stack temperature, gas pressure, and stoichiometry rates, in order to obtain a kind of cartography, representing the static stack performance. Initially, the tests are defined considering experimental design techniques. In order to study the relative impacts of the physical factors on the fuel cell voltage, some polarization curve results are selected from the static tests available applying experimental design methodology. First, several analyses are used to estimate the impact of the stack temperature, gas pressure, and stoichiometry rate on the fuel cell voltage. Statistical sensitivity analyses (ANOVA) are used to compute, from the available data, the effects and respective contributions of the various physical factors on the stack voltage. The potential for the detection of any interactions between the different parameters is shown. Also, some graphic representations are used to display the results of the statistical analyses made for different current values of the polarization curves. Then, the experimental design method and its associated statistical tools are employed in order to identify the influence of the stack temperature and gas pressure on the fuel cell voltage. Moreover, it is shown how it is possible to reduce the number of experiments needed and how certain optimizations of the fuel cell operating parameters leading to higher performances can be achieved. The work presented aims at showing the suitability of the experimental design method for the characterization, analysis, and improvement of a complex system like a fuel cell generator. The future outlook is proposed in the final part of the paper. The methodologies developed for the analysis of the tests performed on the 5 kW stack could also be used to study different fuel cells and phenomena. For instance, the roles of additional physical parameters, linked with the gas humidification process, could be considered.
机译:在法国实验室间SPACT项目(运输应用燃料电池系统)的框架内,在法国Belfort的测试平台上研究了5 kW PEM燃料电池堆(由加湿氢气和压缩空气供给)的性能。在烟囱温度,气压和化学计量比的各种条件下记录一组极化曲线,以获得代表静态烟囱性能的一种制图法。最初,测试是根据实验设计技术定义的。为了研究物理因素对燃料电池电压的相对影响,从极化试验结果中选择了一些极化曲线结果,这些结果可通过实验设计方法获得。首先,使用几种分析方法来估算燃料电池组温度,气压和化学计量比对燃料电池电压的影响。统计灵敏度分析(ANOVA)用于从可用数据中计算各种物理因素对堆电压的影响和各自的贡献。显示了检测不同参数之间任何相互作用的潜力。而且,一些图形表示用于显示针对极化曲线的不同电流值进行的统计分析的结果。然后,采用实验设计方法及其相关的统计工具来确定堆温度和气压对燃料电池电压的影响。此外,示出了如何能够减少所需的实验数量以及如何实现导致更高性能的燃料电池运行参数的某些优化。提出的工作旨在表明实验设计方法对燃料电池发生器等复杂系统的特性,分析和改进的适用性。本文的最后部分提出了对未来的展望。为分析在5 kW烟囱上进行的测试而开发的方法还可以用于研究不同的燃料电池和现象。例如,可以考虑与气体加湿过程相关的其他物理参数的作用。

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