Thermal Modeling of the Electric Vehicle Fire Hazard Effects on Parking Building

被引:3
作者
Gavryliuk, Andrii [1 ]
Yakovchuk, Roman [2 ]
Ballo, Yaroslav [3 ]
Rudyk, Yuriy [4 ]
机构
[1] Lviv State Univ Life Safety, Doctoral Program, UA-79000 Lvov, Ukraine
[2] Lviv State Univ Life Safety, Dept Civil Protect & Comp Modeling Ecol Geophys P, 35 Kleparivska Str, UA-79000 Lvov, Ukraine
[3] Inst Publ Adm & Res Civil Protect, Fire Protect Res Ctr, Regulatory Tech Support Dept, UA-79000 Kiev, Ukraine
[4] Lviv State Univ Life Safety, Dept Res & Dev, UA-79000 Lvov, Ukraine
关键词
Fire of electric vehicle; Battery failures Electric; vehicle parking Fire hazard; Lithium-ion battery; LITHIUM-ION BATTERY; HEAT-GENERATION; SIMULATION; BEHAVIOR; MODULES; CELLS;
D O I
10.4271/09-11-03-0013
中图分类号
U [交通运输];
学科分类号
08 ; 0823 ;
摘要
The world community is constantly and rapidly moving toward the search for alternative and ecologically clean energy sources, including for transport, and Russia's war against Ukraine only intensified and accelerated such processes. This trend in transport is reflected in the spread of battery-powered electric vehicles (BEVs) with zero emission of harmful gases.Electric cars are experiencing a rapid increase in numbers, accompanied by the emergence of lesser-known risks. Among these hazards are the occurrence of fires in electric vehicles, primarily caused by component failures, notably the widely prevalent lithium-ion batteries.Fires of such cars have a different character compared to fires of vehicles powered by an internal combustion engine vehicle (ICEV). In this study, using the fire dynamics simulator developed by the National Institute of Standards and Technology, a BEV fire was simulated on the example of the Tesla Model S. For this, a description of the objects and their physical characteristics were carried out, the input parameters of the BEV and environmental parameters were set, and a mathematical model of the development dynamics of fire was formed. According to the modeling results, it was found that the minimum fire protection distance from a BEV to the wall of buildings of various functional purposes should be at least 3 m, provided that the free fire development time is 600 s.
引用
收藏
页码:421 / 434
页数:14
相关论文
共 59 条
[51]  
Watanabe N., 2012, 2 INT C FIRES VEHICL, P195
[52]  
Willstrand O., 2020, 202090 RISE
[53]  
Willstrand O., 2020, Toxic Gases from Fire in Electric Vehicles
[54]   The effect of battery design parameters on heat generation and utilization in a Li-ion cell [J].
Wu, Wei ;
Xiao, Xinran ;
Huang, Xiaosong .
ELECTROCHIMICA ACTA, 2012, 83 :227-240
[55]   Failure behaviours of 100% SOC lithium-ion battery modules under different impact loading conditions [J].
Xia, Yong ;
Chen, Guanhua ;
Zhou, Qing ;
Shi, Xiangnan ;
Shi, Fangyuan .
ENGINEERING FAILURE ANALYSIS, 2017, 82 :149-160
[56]   Theoretical and experimental analysis of heat generations of a pouch type LiMn2O4/carbon high power Li-polymer battery [J].
Xiao, Meng ;
Choe, Song-Yul .
JOURNAL OF POWER SOURCES, 2013, 241 :46-55
[57]   Investigation of a vehicle fire caused by manufacturing defect [J].
Zhang, Bin ;
Lu, Zhibao ;
Liu, Zhengang ;
Liang, Guofu ;
Chen, Yingchun .
ENGINEERING FAILURE ANALYSIS, 2018, 91 :28-34
[58]  
Zhang Z.J., 2014, Lithium-Ion Batteries, P409
[59]   Modeling Nail Penetration Process in Large-Format Li-Ion Cells [J].
Zhao, Wei ;
Luo, Gang ;
Wang, Chao-Yang .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2015, 162 (01) :A207-A217