动力传动系统
推进
环境科学
温室气体
欧洲联盟
环境经济学
电池(电)
高效能源利用
电动汽车
氢燃料车
汽车工程
钥匙(锁)
电动汽车
公共交通
总拥有成本
市场渗透
组分(热力学)
成本效益
业务
可再生能源
燃料效率
经济效益
计算机科学
市场份额
氢燃料
电力航天器推进
成本分析
全球变暖潜力
氢
欧洲市场
情景分析
运输工程
作者
Pier Paolo Brancaleoni,Andrea Nicolò Damiani Ferretti,Enrico Corti,Francesco Bellucci,Davide Moro
标识
DOI:10.1016/j.ijhydene.2026.153615
摘要
The decarbonization of urban public transport is a key objective of European climate and energy policies, driving the adoption of alternative propulsion technologies for city buses. Battery-electric and hydrogen-based powertrains are among the most promising solutions for greenhouse gases abatement, however, even economic competitiveness, which depends on technology evolution, energy costs, and vehicle design characteristics, must be evaluated. This paper presents a Total Cost of Ownership (TCO) analysis of urban buses equipped with four different propulsion systems: battery electric, and three hydrogen-based concepts. The analysis is performed for the whole European market under three temporal scenarios: 2024, 2030, and 2050. Key factors such as vehicle mass and the number of major component replacements over the vehicle lifetime are explicitly considered. The results indicate that the most cost-effective powertrain varies across scenarios, demonstrating that no single technology is universally optimal, emphasizing the importance of scenario-dependent evaluations for strategic planning.
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