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汽车安全与节能学报 ›› 2025, Vol. 16 ›› Issue (6): 905-913.DOI: 10.3969/j.issn.1674-8484.2025.06.010

• 汽车节能与环保 • 上一篇    下一篇

质子交换膜燃料电池散热优化及废热—储氢系统耦合

郎冬余1(), 包钢1, 张树2, 于震宇2, 孙嘉鸿2, 谢华清2,*()   

  1. 1.沈阳特种设备检测研究院,沈阳 110035,中国
    2.东北大学冶金学院,沈阳 110819,中国
  • 收稿日期:2025-08-04 修回日期:2025-11-10 出版日期:2025-12-31 发布日期:2026-01-12
  • 通讯作者: * 谢华清,副教授,E-mail:xiehq@mail.neu.edu.cn
  • 作者简介:郎冬余(1986—),女(汉),辽宁,高级工程师。E-mail:langdongyu@163.com
  • 基金资助:
    国家自然科学基金资助项目(52476181)

Optimization of heat dissipation in proton exchange membrane fuel cells and coupling of waste heat-hydrogen storage system

LANG Dongyu1(), BAO Gang1, ZHANG Shu2, YU Zhenyu2, SUN Jiahong2, XIE Huaqing2,*()   

  1. 1. Shenyang Institute of Special Equipment Inspection and Research, Shenyang, 110035, China
    2. Northeastern University, School of Metallurgy, Shenyang 110819, China
  • Received:2025-08-04 Revised:2025-11-10 Online:2025-12-31 Published:2026-01-12

摘要: 为了减少质子交换膜燃料电池(PEMFC)运行中废热影响性能,并提高能量利用率,在传统的单直流冷却通道的基础上,对PEMFC的输出特性与冷却条件进行了数值优化,构建了PEMFC与金属氢化物储氢反应器的热能耦合模型。结果表明:PEMFC在333 K、1.41 A/cm2的工况下,输出达561.2 W;最佳冷却条件(燃料电池产生的热量可完全驱动储氢反应器放氢)为:进水温度330 K、流速15 cm/s。在第334~3 615 s之间,该系统稳定运行,储氢罐温度维持在314 K,总供电量0.78 kWh。因而,优化PEMFC运行参数,可实现发电与储氢系统的高效热耦合。

关键词: 质子交换膜燃料电池(PEMFC), 金属氢化物储氢反应器, 输出特性, 耦合系统, 废热利用

Abstract:

In order to reduce the impact of waste heat on performance in the operation of proton exchange membrane fuel cells (PEMFCs) and to improve energy utilization efficiency during the operation of the PEMFC, the numerical optimizations of PEMFC’s output characteristics and cooling conditions were carried out based on the traditional single direct current cooling channel, with a thermal coupling model being established between PEMFC and metal hydride hydrogen storage reactor. The results show that PEMFC achieves an output of 561.2 W under the operating conditions of 333 K and 1.41 A/cm2; the optimal cooling conditions, where the heat generated by the fuel cell can fully drive hydrogen release from the hydrogen storage reactor, are an inlet water temperature of 330 K and a flow rate of 15 cm/s. The system operates stably, the temperature of the hydrogen storage tank is maintained at 314 K, and the total power supply reaches 0.78 kWh during the period from 334 s to 3 615 s. Therefore, optimizing the operating parameters of PEMFC enables efficient thermal coupling between the power generation and hydrogen storage systems.

Key words: proton exchange membrane fuel cells (PEMFCs), metal hydride hydrogen storage reactors, output characteristics, coupling systems, waste heat utilization

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