Equation for General Description of Power Behaviour in Fuel Cells

M. J. Lavorante, A. Sanguinetti, H. Fasoli, R. M. Aiello
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引用次数: 4

Abstract

The analytical development of an equation that allows representing the general behavior of electrochemical cells and, in particular, proton exchange membrane fuel cells is presented in this work. The statement from which the proposed equation emerged was made by Rysselberghe where electrolytic cells work as power supply and around which an electrical current moves out of equilibrium. The data used to test the equation were taken from discharged slopes of PEM fuel cells constructed in the Institute of Scientific and Technical Research for the Defense with researchers from the Army Engineering Faculty and from literature. The equation Pr=Ir(2-Ir) makes it clear that the relative power (Pr) is a quadratic function of the relative current (Ir) and shows a correlation coefficient close to 0.99 with respect to the experimental results of all data analyzed. It is important to remark that the parameters by which the prototypes were constructed were different: the amount and type of catalysts used, the active area, the material of bipolar plates, the type of electrolyte, the number of unit cells, and the different working conditions. In all cases and in spite of all the differences, which are very significant, the parametric equation proposed fits very well.
燃料电池功率行为的一般描述方程
这项工作介绍了一个方程的分析发展,该方程可以代表电化学电池,特别是质子交换膜燃料电池的一般行为。Rysselberghe提出了该方程,其中电解池作为电源,电流在电解池周围失去平衡。用于测试方程的数据取自国防科学技术研究所与陆军工程学院的研究人员共同建造的PEM燃料电池的放电斜率和文献。方程Pr=Ir(2-Ir)清楚地表明,相对功率(Pr)是相对电流(Ir)的二次函数,并且相对于所分析的所有数据的实验结果显示出接近0.99的相关系数。需要注意的是,构建原型的参数是不同的:所用催化剂的量和类型、活性面积、双极板的材料、电解质的类型、单元电池的数量和不同的工作条件。在所有情况下,尽管存在非常显著的差异,但所提出的参数方程非常适合。
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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21 weeks
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