[ 1 ] EHRHART B D,BROOKS D M,MUNA A B,et al.Risk
Assessment of Hydrogen Fuel Cell Electric Vehicles in
Tunnels[J].Fire Technology,2020,56(3):891-912.
[ 2 ] DE S M,ROCOURT X,SOCHET I,et al.Hydrogen
Dispersion in a Closed Environment[J].International
Journal of Hydrogen Energy,2019,44(17):9031-9040.
[ 3 ] 卢明,徐晔,肖学章.室内氢气泄漏扩散的数值模拟[J].
中国安全生产科学技术,2011,7(8):29-33.
[ 4 ] VENETSANOS A G,ADAMS P, AZKARATE I,et al.
On the Use of Hydrogen in Confined Spaces:Results
from the Internal Project Inshyde[J].International Journal of Hydrogen Energy,2011,36(3):2693-2699.
[ 5 ] TAKENO K,OKABAYASHI K,KOUCHI A,et al.Concentration Fluctuation and Ignition Characteristics
during Atmospheric Diffusion of Hydrogen Spouted
from High Pressure Storage[J].International Journal
of Hydrogen Energy,2017,42(22):15426-15434.
[ 6 ] OKABAYASHI K,TAGASHIRA K,KAWAZOE K,et
al.Non-steady Characteristics of Dispersion and Ignitability for High-pressurized Hydrogen Jet Discharged
from a Pinhole[J].International Journal of Hydrogen
Energy,2019,44(17):9071-9079.
[ 7 ] WINTERS W S,EVANS G H,RICE S F,et al.An Experimental and Theoretical Study of Heat and Mass
Transfer during the Venting of Gas from Pressure
Vessels[J].International Journal of Heat and Mass
Transfer,2012,55(3):8-18.
[ 8 ] WINTERS W S,HOUF W G.Simulation of Small-scale
Releases from Liquid Hydrogen Storage Systems[J].
International Journal of Hydrogen Energy,2011,36(6):
3913-3921.
[ 9 ] TAKENO K,OKABAYASHI K.KOUCHI A,et al.Dispersion and Explosion Field Tests for 40 MPa Pressurized Hydrogen[J].International Journal of Hydrogen
Energy,2007,32(13):2144-2153.
[10] RUGGLES A J,EKOTO I W.Ignitability and Mixing
of under-expanded Hydrogen Jets[C]//2011 Proceedings of the Fourth International Conference on Hydrogen
Safety.San Francisco:Hydrogen Energy,2011:17549-
17560.
[11] VESER A,KUZNETSOV M,FAST G,et al.The Structure and Flame Propagation Regimes in Turbulent
Hydrogen Jets[J].International Journal of Hydrogen
Energy,2011,36(3):2351-2359.
[12] HOUF W,SCHEFER R.Analytical and Experimental
Investigation of Small-scale Unintended Releases of
Hydrogen[J].International Journal of Hydrogen Energy,
2008,33(4):1435-1444.
[13] MAKAROV D,SHENTSOV V,KUZNETSOV M,et
al.Pressure Peaking Phenomenon:Model Validation
Against Unignited Release and Jet Fire Experiments
[J].International Journal of Hydrogen Energy,2018,
43(19):9454-9469.
[14] WHITELEY M,DUNNETT S,JACKSON L.Failure
Mode and Effect Analysis,and Fault Tree Analysis of Polymer Electrolyte Membrane Fuel Cells[J].International Journal of Hydrogen Energy,2016,41(2):1187-
1202.
[15] COLLONG S,KOUTA R.Fault Tree Analysis of Proton
Exchange Membrane Fuel Cell System Safety[J].International Journal of Hydrogen Energy,2015,40(25):
8248-8260.
[16] PLACED L,KOUTA R.Fault Tree Analysis for PEM
Fuel Cell Degradation Process Modelling[J].International Journal of Hydrogen Energy,2011,36(19):
12393-12405.
[17] 郑进洋,张俊峰,陈霖新,等.氢安全研究现状[J].安全
与环境学报,2016,16(6):144-152.
[18] 沈晓波,章雪凝,刘海峰.高压氢气泄漏相关安全问题
研究与进展[J].化工学报,2021,72(3):1217-1229.
[19] 弗拉基米尔·莫尔科夫.氢安全工程基础[M].吕洪,译.
北京:机械工业出版社,2021.
[20] 冯文,王淑娟,倪维斗,等.氢能的安全性和燃料电池汽
车的氢安全问题[J].太阳能学报,2003(5):677-682.
[21] 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.
[22] 王冰,侍崇诗,黄明宇,等.燃料电池供氢系统的研究进
展[J].现代化工,2018,38(1):35-39,41.
[23] 姜国峰,成波,金哲,等.燃料电池客车氢系统碰撞安全
性仿真分析与评价[J].汽车工程,2010,32(9):774-777,
802.
[24] WATANABE S,TAMURA Y,SUZUKI J.The New Facility for Hydrogen and Fuel Cell Vehicle Safety Evaluation[J].International Journal of Hydrogen Energy,
2007,32(13):891-912.
[25] 李晨.燃料电池汽车车载氢系统安全问题分析[J].时
代汽车,2022(7):125-127.
[26] 刘艳秋,张志芸,张晓瑞,等.氢燃料电池汽车氢系统安
全防控分析[J].客车技术与研究,2017,39(6):13-16.
[27] 王伟,杨君涛,何其泽,等.氢燃料电池应用燃爆风险与
防治研究现状[J].消防科学与技术,2020,39(7):2154-
2161.
[28] 张城兴,付玉生.氢燃料电池汽车车载用氢安全问题
分析及对策研究[J].河南科技,2020(7):139-141.
[29] WILLIAM G,GREG H,ERIK M,et al.Releases from
Hydrogen Fuel-cell Vehicles in Tunnels[J].International Journal of Hydrogen Energy,2012,37(1):715-719.
[30] KHALIL Y F.Risk Quantification Framework of
Hydride-based Hydrogen Storage Systems for Lightduty Vehicles[J].Journal of Loss Prevention in the
Process Industries,2015,38(1):189-198.
[31] 范自盛,潘瑜.基于 FTA 的挂桥管道泄漏风险分析[J].
华北科技学院学报,2020,18(5):66-71.
[32] 赵奕磊,毛宗强,奚树人,等.基于故障树模型的燃料电
池安全性评价[J].清华大学学报(自然科学版),2006,
46(3):425-428,433.
[33] NICHOLSON R S,SHAIN I.Theory of Stationary Electrode Polarography[J].Anal Chem,1964,36:706-723.
[34] 刘堃,杨晓冬,戴超.基于危险度评价和事故树分析的
加氢站安全风险研究[J].中国安全生产科学技术,
2021,17(S1):50-55.
[35] 吴鹏,陈发明,刘健,等.基于模糊综合评价法的公路风
吹雪危险度评价[J].安 全与环境学报,2017,17(6):
2273-2276. |