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Analysis of a Fuel Cell Durability Test Based on Design of Experiment Approach

机译:基于实验方法设计的燃料电池耐久性试验分析

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摘要

The results of a durability test performed during 1000 h on a proton exchange or polymer electrolyte membrane (PEM) fuel cell are analyzed using some well-suited design of experiment techniques. The response surface methodology is adopted to model the performance degradation over ageing time from various load current-–fuel cell voltage curves recorded at regular time-spaced intervals and for various air utilization rates. The dual response surface approach is employed to determine the most convenient operating conditions for the cells (load current and air stoichiometry rate levels), leading to a tradeoff between elevated electrical efficiency and low voltage variability versus ageing time and cell positions in the stack. In addition, some electrochemical impedance spectra are used to provide some physical interpretations and to corroborate the observations made from the static measurements. The work shows notably the benefit of using some variable stoichiometry rates through ageing time to get high-power levels and stable performances as well.
机译:使用一些非常合适的实验技术设计,分析了在质子交换或聚合物电解质膜(PEM)燃料电池上1000小时内进行的耐久性测试的结果。采用响应面方法从在固定的时间间隔和各种空气利用率下记录的各种负载电流-燃料电池电压曲线中,模拟了老化期间性能下降的情况。采用双响应表面方法来确定电池最方便的工作条件(负载电流和空气化学计量比水平),从而在提高的电效率和低电压可变性与老化时间和电池组中的电池位置之间进行权衡。另外,一些电化学阻抗谱用于提供一些物理解释并证实从静态测量中得出的观察结果。这项工作特别显示了在老化时间内使用一些可变的化学计量比以获得高功率水平和稳定性能的好处。

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