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车用燃料电池散热性能实验研究

白静 郑慧凡 范惠芳 崔四齐 许闯 张毅 关斯泽 杨涵斐 贾一飞 耿树伟

储能科学与技术2024,Vol.13Issue(2):390-395,6.
储能科学与技术2024,Vol.13Issue(2):390-395,6.DOI:10.19799/j.cnki.2095-4239.2023.0560

车用燃料电池散热性能实验研究

Experimental study on heat dissipation performance of automotive fuel cells

白静 1郑慧凡 1范惠芳 1崔四齐 1许闯 1张毅 1关斯泽 1杨涵斐 1贾一飞 1耿树伟1

作者信息

  • 1. 中原工学院能源与环境学院,河南 郑州 451191
  • 折叠

摘要

Abstract

The proton exchange membrane fuel cell(PEMFC)serves as a widely used power generation device in transportation,energy storage,aerospace,and military applications owing to its high energy-efficient conversion rate,clean operation,and reliability.To address the challenges of PEMFC,specifically its high heat dissipation density,high heat generation,and low heat dissipation efficiency,an experimental bench for an automotive fuel cell heat dissipation system was constructed.This system incorporated four different flow heat exchangers,catering to a 15 kW PEMFC with a heat dissipation issue.The experimental setup employed two-phase cooling mediums,namely HFE-7100 and an aqueous ethylene glycol solution.The investigation focused on their thermal performance and system energy efficiency rating under different process heat exchangers and various medium flow rates at 35℃.The results showed that under the same flow path,HFE-7100 two-phase cooling medium exhibited an improved heat dissipation rate between 81.2%and 98.8%,with a system energy efficiency ratio(EER)improvement rate between 68.2%and 88.6%compared with ethylene glycol aqueous liquid cooling.Among the four different flow paths,flow path 3 demonstrated the best system heat dissipation and EER.Specifically,HFE-7100 two-phase cooling achieved heat dissipation and system EER of 14.4 kW and 20.5 kW/kW,while ethylene glycol aqueous liquid cooling reached 7.7 kW and 12.1 kW/kW,respectively.At a cooling medium flow rate of 4 L/min,the system exhibited better energy-saving effects,with the two-phase and liquid-cooling heat dissipation system EER reaching 20.9 and 10.5 kW/kW,respectively.

关键词

质子交换膜燃料电池/不同流程换热器/两相冷却工质/EER

Key words

proton exchange membrane fuel cell/heat exchangers for different process/two-phase cooling medium/EER

分类

信息技术与安全科学

引用本文复制引用

白静,郑慧凡,范惠芳,崔四齐,许闯,张毅,关斯泽,杨涵斐,贾一飞,耿树伟..车用燃料电池散热性能实验研究[J].储能科学与技术,2024,13(2):390-395,6.

基金项目

国家自然科学基金项目(52076219),河南省科技攻关项目(202102310556). (52076219)

储能科学与技术

OA北大核心CSTPCD

2095-4239

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