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Vehicle lightweighting vs. electrification: Life cycle energy and GHG emissions results for diverse powertrain vehicles

机译:车辆轻量化与电气化:不同动力总成车辆的生命周期能量和温室气体排放结果

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This work assesses the potential of electrified vehicles and mass reduction to reduce life cycle energy and greenhouse gas (GHG) emissions. Life cycle assessment (LCA) is used to account for processes upstream and downstream of the vehicle operation, thereby incorporating regional variation of energy and GHG emissions due to electricity production and distinct energy and GHG emissions due to conventional and lightweight materials. Design harmonization methods developed in previous work are applied to create baseline and lightweight vehicle models of an internal combustion vehicle (ICV), hybrid electric vehicle (HEV) and plug-in hybrid electric vehicle (PHEV). Thus, each vehicle is designed to be functionally equivalent and incorporate the structural support required for heavier powertrains. Lightweight vehicles are designed using body-in-white (BIW) mass reduction scenarios with aluminum and advanced/high strength steel (A/HSS). For the mass reduction scenarios considered in this work, results indicate that the greatest life cycle energy and GHG emissions reductions occur when steel is replaced by aluminum. However, since A/HSS requires less energy to produce as compared to aluminum, the energy and GHG reductions per unit mass removed is greatest for A/HSS. Results of the design harmonization modeling method show that 0.2-0.3 kg of structural support is required per unit increase in powertrain mass, thus extending previous methods.
机译:这项工作评估了电动汽车和减少质量以减少生命周期能量和温室气体(GHG)排放的潜力。生命周期评估(LCA)用于说明车辆运行的上游和下游过程,从而将因发电而产生的能源和温室气体排放与因常规和轻质材料而产生的独特的能源和温室气体排放纳入区域变化。先前工作中开发的设计协调方法被用于创建内燃机车(ICV),混合动力车(HEV)和插电式混合动力车(PHEV)的基准和轻型车辆模型。因此,每辆车在功能上都是等效的,并包含了重型动力总成所需的结构支撑。轻型汽车的设计采用了白车身(BIW)减重方案,并采用了铝和高级/高强度钢(A / HSS)。对于这项工作中考虑的减少质量的方案,结果表明,用铝代替钢可以最大程度地减少生命周期内的能量和减少温室气体的排放。但是,由于与铝相比,A / HSS所需的能源更少,因此,A / HSS去除的每单位质量的能量和温室气体减少最大。设计协调建模方法的结果表明,每增加动力总成质量就需要0.2-0.3 kg的结构支撑,从而扩展了以前的方法。

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