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Well-to-wheel driving cycle simulations for freight transportation: battery and hydrogen fuel cell electric vehicles

机译:货运运输井的转向架驾驶循环模拟:电池和氢气电池电动车

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This work presents a comparison of battery and hydrogen fuel cell electric vehicles for road freight transportation. The methodology is the Well-to-Wheel analysis applied to standard driving cycles simulation in order to evaluate the complete energy and environmental balances. The two categories of electric vehicles considered in the work can be powered either by electricity coming from the grid (comparing current grid and long-term full renewable scenarios) or by hydrogen generated from a range of possible pathways (including centralized or distributed production from either fossil fuels or renewables and storage/transport in gaseous or liquid form). Their payload (kg) and specific energy consumption (Wh/kg/km) is calculated vs. the necessity to sustain a given driving cycle (assuming the EPA HUDDS or the ETC cycle) as a function of the driving range. Results show that both electric and fuel cell vehicles are competitive for the application in terms of energy consumption and emissions. Advantages for battery vehicles are present when fed by electricity from local RES, but with the disadvantage of a significant reduction in payload, a drawback for successful commercial applications.
机译:这项工作提出了电池和氢气燃料电池电动车辆进行公路货运的比较。该方法是应用于标准驾驶循环模拟的良好转向轮分析,以评估完整的能量和环境余额。在工作中考虑的两类电动车辆可以通过来自网格(比较电网和长期完全可再生场景)的电力或由一系列可能的途径产生的氢气(包括集中式或分布式生产)供电。化石燃料或可再生能源和液体形式的储存/运输)。它们的有效载荷(kg)和特定的能量消耗(Wh / kg / km)是计算的必要性,以作为驱动范围的函数维持给定的驾驶循环(假设EPA HUDDS或ETC循环)。结果表明,在能源消耗和排放方面,电气和燃料电池车辆对应用具有竞争力。当通过来自本地RES的电力供给电池时,存在电池车辆的优点,但随着有效载荷的显着降低的缺点,成功商业应用的缺点。

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