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Real World Fuel Consumption and Emissions From LDVs and HDVs

机译:LDVS和HDVS的真实世界燃料消耗和排放

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Real world emission and energy consumption behavior from vehicles is a key element for meeting air quality and greenhouse gas (GHG) targets for any country. While CO2 fleet targets for vehicles are defined on basis of standardized test procedures, in real driving conditions manifold parameters show large variabilities. Main differences are Driving cycle Vehicle loading and driving resistances Ambient temperature levels, start conditions and trip length Gear shift behavior of the drivers Power demand from auxiliaries Fuel quality For the upcoming update of the Handbook Emission Factors for Road Transport (HBEFA 4.1) we have performed analysis, measurements and simulations to elaborate real world energy consumption values for 2-wheelers, passenger cars (PC), light commercial vehicles (LCVs) and heavy duty vehicles (HDVs), so called emission factors (EF). EFs show fuel consumption or emission level in [g/km] and [#/km] for fuel, gaseous exhaust gas components and also for the particle number (PN). EFs are provided for a lot of different traffic situations covering stopandgo up to highway for different road gradient categories. EFs are different for each vehicle category and for each powertrain technology and emission standard (from EURO 0 gasoline PC to EURO VI HDV with CNG engine). To produce the EFs, vehicle tests from chassis dyno and from on-board measurements were collected in all European labs to set up models for all vehicle segments in the passenger cars and heavy duty emission model (PHEM). The models for PC and LCVs were based on weight and road load data available from the type approval test, the worldwide harmonized light vehicles test procedure (WLTP), and then calibrated in a stepwise approach to consider all influences in real world driving. Finally, the results for new vehicle fleet fuel consumption values were compared with data from the fuel consumption monitoring data base. For HDVs, the models are based on data from the development of the HDV CO2 determination method (Regulation (EU) 2017/2400, “VECTO”). The methods and also the results in terms of differences between real world and type approval for loading, road load, energy consumption and emission levels are described in this paper.
机译:来自车辆的现实世界排放和能源消耗行为是满足任何国家的空气质量和温室气体(GHG)目标的关键要素。虽然基于标准化测试程序定义了车辆的CO2车队目标,但在实际驾驶条件下,歧管参数显示出大的变量。主要差异是驾驶循环车载装载和驱动电阻环境温度水平,启动条件和跳闸长度换档行为从辅助的辅助电力需求的燃料质量,即将更新的公路运输(HBEFA 4.1)的手册排放因子更新分析,测量和模拟,为阐述2轮车,乘用车(PC),轻型商用车辆(LCV)和重型车辆(HDV)的乘客汽车(PC)和重型车辆(HDV),所谓的排放因子(EF)。 EFS为燃料,气态废气组分以及颗粒数(PN)显示燃料消耗或发射水平和[/ km]。为许多不同的交通情况提供EFS,涵盖了距离不同的道路梯度类别的高速公路。每个车辆类别和每个动力总成技术和排放标准的EFS(从欧元0汽油PC与CNG发动机的欧元VI HDV)不同。为了生产EFS,在所有欧洲实验室中收集了从底盘Dyno和车载测量的车辆测试,为乘用车和重型排放模型(PHEM)中的所有车辆区段建立模型。 PC和LCV的型号基于类型批准测试提供的重量和道路载荷数据,全球协调轻型车辆测试程序(WLTP),然后以逐步的方法校准,以考虑现实世界驾驶中的所有影响。最后,与来自燃料消耗监测数据库的数据进行比较了新车队燃料消耗值的结果。对于HDV,该模型基于来自HDV CO2确定方法的开发(调节(欧盟)2017/2400,“vecto”)的数据。本文描述了现实世界与型号批准,加载,道路载荷,能耗和发射水平之间的差异方面的方法。

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