Temperature Behavior in Headlights: A Comparative Analysis between Battery Electric Vehicles and Internal Combustion Engine Vehicles

被引:1
|
作者
Schluerscheid, Tabea [1 ,2 ]
Khanh, Tran Quoc [1 ]
Buck, Alexander [2 ]
Weber, Stefan [2 ]
机构
[1] Tech Univ Darmstadt, Lab Adapt Lighting Syst & Visual Proc, Hsch Str 4a, D-64289 Darmstadt, Germany
[2] BMW Grp, Knorrstr 148, D-80788 Munich, Germany
来源
APPLIED SCIENCES-BASEL | 2024年 / 14卷 / 15期
关键词
road environments; headlight; temperature behavior; battery electric vehicles; internal combustion engine vehicles;
D O I
10.3390/app14156654
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In the context of a global shift towards renewable energies and climate change mitigation, the market for electric vehicles has experienced a remarkable upswing, with battery electric vehicles (BEVs) leading this transformative wave. The appeal of BEVs lies in their ability to significantly curtail CO2 emissions by supplanting the traditional internal combustion engine (ICE) with an electric motor. This pivotal change in vehicular technology extends its influence to various subsystems, including automotive lighting. Headlights are particularly sensitive to the thermal environment they operate in, which can profoundly affect their functionality and durability. The removal of an ICE in BEVs typically results in a reduction in heat exposure to headlight components, prompting a potential reevaluation of their design. This article presents a comprehensive analysis of temperature distributions within headlight units, comparing BEVs and ICE vehicles. The study encompasses a robust dataset of nearly 30,000 vehicles from around the globe, taking into account the impact of ambient temperature on headlight operation. The investigation delineates the distinct thermal behaviors of the two vehicle categories and offers strategic recommendations for conceptual modifications of headlights in BEVs. These adjustments are aimed at enhancing headlight efficacy, prolonging lifespan, and furthering the sustainability objectives of electric mobility.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Development and comparative analysis between battery electric vehicles (BEV) and fuel cell electric vehicles (FCEV)
    Togun, Hussein
    Basem, Ali
    Abdulrazzaq, Tuqa
    Biswas, Nirmalendu
    Abed, Azher M.
    Dhabab, Jameel M.
    Chattopadhyay, Anirban
    Slimi, Khalifa
    Paul, Dipankar
    Barmavatu, Praveen
    Chrouda, Amani
    APPLIED ENERGY, 2025, 388
  • [22] Technological forecasting for fuel cell electric vehicle: A comparison with electric vehicles and internal combustion engine vehicles
    Sinigaglia, Tiago
    Martins, Mario Eduardo Santos
    Siluk, Julio Cezar Mairesse
    WORLD PATENT INFORMATION, 2022, 71
  • [23] On the source of metals and the environmental sustainability of battery electric vehicles versus internal combustion engine vehicles: The lithium production case study
    Guzm, Juan Ignacio
    Faundez, Patricio
    Jara, Jose Joaquin
    Retamal, Candelaria
    JOURNAL OF CLEANER PRODUCTION, 2022, 376
  • [24] Comparison of frontal crash compatibility metrics between battery-electric and internal-combustion-engine passenger vehicles
    Mueller, Becky C.
    Brumbelow, Matthew L.
    Bragg, Haden
    Jermakian, Jessica S.
    TRAFFIC INJURY PREVENTION, 2024, 25 (05) : 750 - 756
  • [25] Electrifying Green Logistics: A Comparative Life Cycle Assessment of Electric and Internal Combustion Engine Vehicles
    Oliveri, Ludovica Maria
    D'Urso, Diego
    Trapani, Natalia
    Chiacchio, Ferdinando
    ENERGIES, 2023, 16 (23)
  • [26] Design fire scenarios for hazard assessment of modern battery electric and internal combustion engine passenger vehicles
    Hodges, Jonathan L.
    Salvi, Urvin
    Kapahi, Anil
    FIRE SAFETY JOURNAL, 2024, 146
  • [27] Cradle-to-gate greenhouse gas emissions of battery electric and internal combustion engine vehicles in China
    Qiao, Qinyu
    Zhao, Fuquan
    Liu, Zongwei
    Jiang, Shuhua
    Hao, Han
    APPLIED ENERGY, 2017, 204 : 1399 - 1411
  • [28] Life cycle analysis of internal combustion engine, electric and fuel cell vehicles for China
    Wang, Dawei
    Zamel, Nada
    Jiao, Kui
    Zhou, Yibo
    Yu, Shuhai
    Du, Qing
    Yin, Yan
    ENERGY, 2013, 59 : 402 - 412
  • [29] Electromobility: The Spreading of Electric Cars Versus Internal Combustion Engine Vehicles
    Kocsis, Denes
    Kiss, Judit T.
    Beller, Gabor
    Arpad, Istvan
    VEHICLE AND AUTOMOTIVE ENGINEERING 4, VAE2022, 2023, : 330 - 338
  • [30] Thermal anaysis of an electric water pump for internal combustion engine vehicles
    Lim, D. H.
    Kim, S. C.
    Kim, M. S.
    INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY, 2013, 14 (04) : 579 - 585