首页|氢燃料电池汽车氢系统氢气泄漏的燃爆危险性研究

氢燃料电池汽车氢系统氢气泄漏的燃爆危险性研究

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搭建了FCV(氢燃料电池汽车)氢系统氢气泄漏着火试验台架,开展了高压氢气泄漏着火试验与FCV乘员舱内氢气泄漏燃爆数值模拟研究,采集了氢气喷射火形态、火焰长度、典型位置温度及热辐射通量等参数.试验结果表明,0.4 L/0.84 MPa高压氢气经直径 6 mm圆孔水平泄漏的时间仅为 80 ms,氢气着火后的火焰呈水平喷射状,火焰长度达 1.4 m,燃烧时间为0.3 s,且距离泄漏口约1.0 m处的氢气燃烧强度最大,采集的最大热辐射通量为 0.27 kW/m2;数值模拟结果显示,氢气在乘员舱内泄漏着火后,仅28 ms整个乘员舱就被引燃,乘员舱内的最高绝热温度达2 000℃,最大相对压力达0.5 MPa.车载氢系统氢气泄漏燃爆的危险性极大,严重威胁乘员生命安全,FCV应加强安全性能设计,避免此类事故发生.
Study on the risk of hydrogen leakage leading to explosion of FCV hydrogen storage system
The hydrogen leakage and ignition test bench of fuel cell vehicle(FCV)hydrogen storage system was built in this pa-per,and then high-pressure hydrogen leakage ignition experi-ments were carried out.The risk parameters of hydrogen jet flame morphology,flame length,and typical position temperature,ther-mal radiation flux were collected.In addition the numerical simula-tion of hydrogen leakage leading to explosion in the FCV passen-ger compartment was studied.As the result shows,The leakage time of 0.4 L/0.84 MPa high-pressure hydrogen gas through a cir-cular hole with a diameter of 6 mm was only 80 ms.The hydro-gen jet flame length was 1.4 m horizontally burning continuously only for 0.3 second.The highest hydrogen combustion intensity was at a distance of about 1.0 m from the leakage port,and the maximum thermal radiation flux collected was 0.27 kW/m2.The numerical simulation results show that after hydrogen leaking and catching fire in the passenger compartment,the entire cabin was ignited within only 28 ms.The highest temperature in the cabin exceeded to over 2 000℃and the maximum pressure exceeded to over 0.5 MPa.The risk of hydrogen leakage of vehicle hydrogen storage system leading to combustion and explosion is extremely high which seriously endangering the safety of passengers.FCV safety design should be strengthened to avoid such accidents.

FCV hydrogen storage systemhydrogen leakagecombustion risknumerical simulation

张磊、马秋菊、黄昊、张永丰

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应急管理部上海消防研究所,上海 201199

中国矿业大学(北京),北京 100083

车载氢系统 氢气泄漏 燃爆危险性 数值模拟

国家重点研发计划

2021YFB2501500

2024

消防科学与技术
中国消防协会

消防科学与技术

CSTPCD北大核心
影响因子:0.846
ISSN:1009-0029
年,卷(期):2024.43(5)
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