首页> 外文期刊>International journal of hydrogen energy >Analysis of thermal balance in high-temperature proton exchange membrane fuel cells with short stacks via in situ monitoring with a flexible micro sensor
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Analysis of thermal balance in high-temperature proton exchange membrane fuel cells with short stacks via in situ monitoring with a flexible micro sensor

机译:通过柔性微传感器原位监测分析短堆高温质子交换膜燃料电池的热平衡

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摘要

The heat produced from the electrochemical reaction in a fuel cell is worth studying, the heat recycled make the fuel cell more efficiency, especially in a high-temperature proton exchange membrane fuel cell (HTPEMFC). In low temperature PEMFC system, the heat is removed by cooling system avoid the membrane degradation exceed 100℃. But in HTPEMFC system, the membrane can afford higher temperature (T_g 420℃), means the cooling system could be removing and through changing the inside flow field to uniform the unit cell temperature in stack. In this study, a 50-100 W HTPEMFC stack is demonstrated and a micro sensor was integrated with the HTPEMFC stack for in situ measurements during the experiments. The results show that when the stack is operated at low and high current loads, the heat generation from the fuel cell causes noticeable changes in the cell temperature, especially in the middle of the stack. In the middle cell of the stack, the temperature exceeds the operating temperature (160℃) by 10-30℃ when the current increases. Moreover, changing the flow field to counter-flow or co-flow with U-or Z-type flow fields causes changes to the thermal balance in the stack. The performance, however, remains almost the same for each type of flow field when there is no water affecting the HTPEMFC, even though the change in thermal balance in the stack still occurs. The results of the micro sensor in situ monitoring for each type of flow field displayed higher temperatures on the middle cells. If the waste heat is appropriately used, the high-temperature fuel cell will then be more efficient than the low-temperature fuel cell. The results also show that, in the HTPEMFC stack, the heat generated from the fuel cell can be reused in other ways.
机译:燃料电池中电化学反应产生的热量值得研究,循环利用的热量使燃料电池效率更高,尤其是在高温质子交换膜燃料电池(HTPEMFC)中。在低温PEMFC系统中,热量通过冷却系统带走,避免膜降解超过100℃。但是在HTPEMFC系统中,膜可以承受更高的温度(T_g 420℃),这意味着冷却系统可以通过移除和改变内部流场来使堆叠中的晶胞温度均匀化。在这项研究中,展示了一个50-100 W的HTPEMFC电池组,并将微传感器与HTPEMFC电池组集成在一起,以便在实验过程中进行现场测量。结果表明,当电池堆在低电流和高电流负载下运行时,燃料电池产生的热量会引起电池温度发生明显变化,尤其是在电池堆中间。当电流增加时,在电池组的中间电池中,温度比工作温度(160℃)高10-30℃。此外,将流场改变为与U型或Z型流场逆流或并流会导致烟囱中的热平衡发生变化。但是,当没有水影响HTPEMFC时,即使流堆中的热平衡仍然发生变化,每种流场的性能也几乎保持不变。对每种流场进行微传感器现场监测的结果显示,中间电池的温度较高。如果适当地利用废热,则高温燃料电池将比低温燃料电池更有效。结果还表明,在HTPEMFC电池堆中,燃料电池产生的热量可以其他方式重复利用。

著录项

  • 来源
    《International journal of hydrogen energy》 |2014年第25期|13681-13686|共6页
  • 作者单位

    Dept. of Mechanical Engineering, Yuan-Ze University, Taiwan, ROC,Fuel Cell Center, Yuan-Ze University, Taiwan, ROC,No. 135, Yuandong Rd., Zhongli City, Taoyuan County 320, Taiwan, ROC;

    Dept. of Mechanical Engineering, Yuan-Ze University, Taiwan, ROC;

    Dept. of Mechanical Engineering, Yuan-Ze University, Taiwan, ROC;

    Dept. of Mechanical Engineering, Yuan-Ze University, Taiwan, ROC;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flow field; Fuel cell stack; Thermal analysis;

    机译:流场燃料电池堆;热分析;
  • 入库时间 2022-08-18 00:24:19

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