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Life Cycle Assessment of Vehicle Lightweighting: A Physics-Based Model To Estimate Use-Phase Fuel Consumption of Electrified Vehicles

机译:车辆轻量化的生命周期评估:一种基于物理模型的电动汽车使用阶段燃料消耗量估算

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摘要

Assessing the life-cycle benefits of vehicle lightweighting requires a quantitative description of mass-induced fuel consumption (MIF) and fuel reduction values (FRVs). We have extended our physics-based model of MIF and FRVs for internal combustion engine vehicles (ICEVs) to electrified vehicles (EVs) including hybrid electric vehicles (HEVs), plug-in hybrid electric vehicles (PHEVs), and battery electric vehicles (BEVs). We illustrate the utility of the model by calculating MIFs and FRVs for 37 EVs and 13 ICEVs. BEVs have much smaller MIF and FRVs, both in the range 0.04-0.07 L_e/(100 km 100 kg), than those for ICEVs which are in the ranges 0.19-0.32 and 0.16-0.22 L/(100 km 100 kg), respectively. The MIF and FRVs for HEVs and PHEVs mostly lie between those for ICEVs and BEVs. Powertrain resizing increases the FRVs for ICEVs, HEVs and PHEVs. Lightweighting EVs is less effective in reducing greenhouse gas emissions than lightweighting ICEVs, however the benefits differ substantially for different vehicle models. The physics-based approach outlined here enables model specific assessments for ICEVs, HEVs, PHEVs, and BEVs required to determine the optimal strategy for maximizing the life-cycle benefits of lightweighting the light-duty vehicle fleet.
机译:要评估车辆轻量化的生命周期效益,需要对质量引起的燃油消耗(MIF)和燃油减少值(FRV)进行定量描述。我们将基于物理的内燃机汽车(ICEV)的MIF和FRV模型扩展到了电动汽车(EV),包括混合动力汽车(HEV),插电式混合动力汽车(PHEV)和电池电动汽车(BEV) )。我们通过计算37辆EV和13辆ICEV的MIF和FRV来说明该模型的实用性。 BEV的MIF和FRV分别小于0.04-0.07 L_e /(100 km 100 kg),ICEF的MIF和FRV分别小于0.19-0.32和0.16-0.22 L / e((100 km 100 kg)) 。混合动力汽车和插电式混合动力汽车的MIF和FRV大多位于ICEV和BEV的MIF和FRV之间。调整动力总成大小会增加ICEV,HEV和PHEV的FRV。轻型电动汽车在减少温室气体排放方面不如轻型ICEV电动汽车有效,但是对于不同的车型,其收益却大不相同。此处概述的基于物理的方法可对ICEV,HEV,PHEV和BEV进行模型特定的评估,从而确定最佳策略,以最大限度地减轻轻型车队的生命周期收益。

著录项

  • 来源
    《Environmental Science & Technology》 |2016年第20期|11226-11233|共8页
  • 作者单位

    Materials and Manufacturing R&A Department, Ford Motor Company, Dearborn, Michigan 48121-2053, United States;

    Materials and Manufacturing R&A Department, Ford Motor Company, Dearborn, Michigan 48121-2053, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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