|本期目录/Table of Contents|

[1]李介普,古纯霖,赵保頔,等.车用复合材料储氢气瓶火烧试验方法标准对比研究*[J].中国安全生产科学技术,2022,18(1):189-194.[doi:10.11731/j.issn.1673-193x.2022.01.030]
 LI Jiepu,GU Chunlin,ZHAO Baodi,et al.Comparative study on fire test methods standards of composite hydrogen storage cylinders for land vehicles[J].JOURNAL OF SAFETY SCIENCE AND TECHNOLOGY,2022,18(1):189-194.[doi:10.11731/j.issn.1673-193x.2022.01.030]
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车用复合材料储氢气瓶火烧试验方法标准对比研究*
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《中国安全生产科学技术》[ISSN:1673-193X/CN:11-5335/TB]

卷:
18
期数:
2022年1期
页码:
189-194
栏目:
职业安全卫生管理与技术
出版日期:
2022-01-31

文章信息/Info

Title:
Comparative study on fire test methods standards of composite hydrogen storage cylinders for land vehicles
文章编号:
1673-193X(2022)-01-0189-06
作者:
李介普古纯霖赵保頔李翔
(中国特种设备检测研究院,北京 100029)
Author(s):
LI Jiepu GU Chunlin ZHAO Baodi LI Xiang
(China Special Equipment Inspection & Research Institute,Beijing 100029,China)
关键词:
复合材料储氢气瓶火烧试验标准
Keywords:
composite hydrogen storage cylinder fire test standard
分类号:
X933.4
DOI:
10.11731/j.issn.1673-193x.2022.01.030
文献标志码:
A
摘要:
为了明确现有车用复合材料储氢气瓶火烧试验方法有待进一步研究的问题,介绍国内外车用复合材料储氢气瓶的技术规范与标准中的火烧试验方法,采用对比分析的方法,从试验形式、火源设置、温度测量要求、安全防护要求、试验温度要求、试验结果及合格指标等方面,分析各标准中车用复合材料储氢气瓶火烧试验方法的异同。结果表明:国内外标准在车用复合材料储氢气瓶火烧试验的试验形式、通用要求、试验步骤、合格指标等方面的规定有较大差异,需开展进一步研究工作;火烧试验的安全防护装置的结构设计和布置方法应进一步明确;建议开展火烧试验装置的设计研发和大量局部火烧试验研究,验证火烧试验方法中关键参数的设置合理性。
Abstract:
In order to clarify the problems that need to be further studied in the existing fire test methods of composite hydrogen storage cylinders for land vehicles,the fire test methods in the technical regulations and standards of composite hydrogen storage cylinders for land vehicles at home and abroad were introduced.Through the method of comparative analysis,the similarities and differences among the fire test methods of composite hydrogen storage cylinders for land vehicles in various standards were compared and analyzed from the aspects of experiment form,fire source setting,temperature measurement requirements,safety protection requirements,test temperature requirements,test results and qualified indexes,etc.The results showed that there were large differences among various standards at home and abroad in terms of experiment form,general requirements,test procedures,qualified indexes in the fire test methods of composite hydrogen storage cylinders for land vehicles,and further research should be carried out.The structural design and arrangement method of the safety protection device in the fire test should be further clarified.It was recommended to carry out the design and development of the fire test device and a large number of local fire tests to verify the setting rationality of the key parameters in the fire test methods.

参考文献/References:

[1]郑津洋,刘自亮,花争立,等.氢安全研究现状及面临的挑战[J].安全与环境学报,2020,20(1):106-115. ZHENG Jinyang,LIU Ziliang,HUA Zhengli,et al.Research status-in-situ and key challenges in hydrogen safety [J].Journal of Safety and Environment,2020,20(1):106-115.
[2]郑津洋,别海燕,陈虹港,等.纤维缠绕高压氢气瓶火烧温升试验及数值研究[J].太阳能学报,2009,30(7):1000-1006. ZHENG Jinyang,BIE Haiyan,CHEN Honggang,et al.Experimental and simulation study on bonfire test of high-pressure hydrogen storage vessels [J].Acta Energeia Solaris Sinica,2009,30(7):1000-1006.
[3]程崇律.复合材料储氢瓶在火灾条件下的耐火性能数值研究[D].大连:大连理工大学,2019.
[4]BUSTAMANTE VALENCIA L,BLANC-VANNET P,DOMERGUE D.Thermal history resulting in the failure of lightweight fully-wrapped composite pressure vessel for hydrogen in a fire experimental facility [J].Fire Technology,2016,52(2):421-442.
[5]陈明和,胡正云,贾晓龙,等.Ⅳ型车载储氢气瓶关键技术研究进展[J].压力容器,2020,37(11):39-50. CHEN Minghe,HU Zhengyun,JIA Xiaolong,et al.Research progress on key technologies of type Ⅳ vehicle-mounted hydrogen storage vessel [J].Pressure Vessel Technology,2020,37(11):39-50.
[6]RUBAN S,HEUDIER L,JAMOIS D.Fire risk on high-pressure full composite cylinders for automotive applications [J].International Journal of Hydrogen Energy,2012,37(22):17630-17638.
[7]美国机动车工程师学会.Technical information report for fuel systems in fuel cell and other hydrogen vehicles: SAE J2579:2008[S/OL].https://www.sae.org/standards/SAEJ2579.html.
[8]ISO/TC 58/SC 3.Gas cylinders-Refillable composite gas cylinders and tubes: ISO 11119: 2013[S/OL].https://www.iso.org/standard/50523.html.
[9]ISO/TC 197.Gaseous hydrogen and hydrogen Blends-Land vehicle fuel tanks: ISO/TS 15869: 2009[S/OL].https://www.iso.org/committee/54560.html.
[10]ECE/TRANS/WP.29/AC.3/17 HFCV-GTR:2013,Global technical regulation for hydrogen fuel cell vehicles [S/OL].https:// www.unece.org/trans/main/wp29//wp29wgs/wp29gen/wp29glob_registry.html.
[11]全国气瓶标准化技术委员会.车用压缩氢气铝内胆碳纤维全缠绕气瓶: GB/T 35544—2017[S].北京: 中国标准出版社,2018.
[12]中国技术监督情报协会气瓶安全标准化与信息工作委员会.车用压缩氢气塑料内胆碳纤维全缠绕气瓶: T/CATSI 02 007—2020 [S/OL].http://www.ttbz.org.cn/StandardManage/Detail/38988.
[13]SCHEFFLER G W,MCCLORY M,VEENSTRA M.Establishing localized fire test methods and progressing safety standards for FCVs and hydrogen vehicles [C]// SAE 2011 World Congress & Exhibition.Detroit,2011:0215-0220.
[14]欧可升.碳纤维全缠绕复合材料高压储氢气瓶耐局部火烧性能研究[D].杭州:浙江大学,2014.
[15]郑津洋,欧可升,花争立,等.车用高压储氢气瓶局部火烧试验方法研究[J].太阳能学报,2014,35(1):58-63. ZHENG Jinyang,OU Kesheng,HUA Zhengli,et al.Investigation on localized fire test method for on-board high-pressure hydrogen storage tanks [J].Acta Energeia Solaris Sinica,2014,35(1):58-63. [16]别海燕.铝内胆纤维全缠绕高压氢气瓶耐火及抗疲劳性能研究[D].杭州:浙江大学,2011.

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备注/Memo

备注/Memo:
收稿日期: 2021-03-26
* 基金项目: 国家重点研发计划项目(2019YFB1504805);国家市场监督管理总局科技计划项目(2021MK168)
作者简介: 李介普,硕士研究生,工程师,主要研究方向为承压设备安全。
通信作者: 李翔,博士,正高级工程师,主要研究方向为压力容器(气瓶等储氢容器)安全。
更新日期/Last Update: 2022-02-19