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首页> 外文期刊>Journal of Mechanical Science and Technology >Experimental investigation of dynamic responses of a transparent PEM fuel cell to step changes in cell current density with operating temperature
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Experimental investigation of dynamic responses of a transparent PEM fuel cell to step changes in cell current density with operating temperature

机译:透明PEM燃料电池对工作电流随工作​​温度的阶跃变化动态响应的实验研究

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摘要

The dynamic responses of a proton exchange membrane fuel cell (PEMFC) are closely related to the novel water management technique used for the efficient operation of automotive PEMFCs. In order to better understand the dynamic water transport during cell transients, this paper presents an experimental investigation of the transient response of a cell under fully humidified conditions. The cell dynamic performance was measured by employing a transparent cell and investigated with visualization images of the water distribution in the flow channels. Furthermore, the effect of the operating temperature on the cell transients was examined. The results show that the cell dynamic behavior for the tested operating temperature (30-50℃) conditions is mainly governed by water transport characteristics related to cathode flooding. Also, we show that the time needed for the cell to reach steady-state after a current density step increase is retarded due to excessive water accumulation inside the cell at lower operating temperatures.
机译:质子交换膜燃料电池(PEMFC)的动态响应与用于汽车PEMFC高效运行的新型水管理技术密切相关。为了更好地了解细胞瞬态过程中的动态水传输,本文提出了在完全湿润条件下细胞瞬态响应的实验研究。通过使用透明池测量池动态性能,并用流动通道中水分布的可视化图像进行调查。此外,检查了工作温度对细胞瞬态的影响。结果表明,在测试的工作温度(30-50℃)条件下,电池的动态行为主要受与阴极溢流有关的水传输特性的控制。此外,我们显示出电流密度阶跃增加后,电池达到稳态所需的时间因在较低的工作温度下电池内部过多的水积聚而受到延迟。

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