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Real-world fuel efficiency and emissions from an urban diesel bus engine under transient operating conditions

机译:瞬态运行条件下城市柴油客车发动机的实际燃油效率和排放

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摘要

Until recently, heavy-duty vehicle (HDV) engines were subjected to pollutant emissions type-approval tests, which were developed on engine test benches under standardised driving cycles. However, these results do not reflect engine behaviour under real-world driving conditions. In this context, experimental measurements were conducted on a diesel Euro V bus under urban off-cycle conditions in Madrid (Spain). The main objective was to create efficiency and emissions engine maps by combining transient-state engine data obtained directly from portable emission measurement system (PEMS) and on-board diagnostic (OBD) data acquisition systems. The engine maps were used to evaluate engine performance in real-world conditions, and to create a model that allows for second-by-second prediction of the engine fuel consumption and emissions. Owing to the variability of transient-state engine data, this work proposed an engine map development method, consisting of grouping the measured data into grids by engine speed and torque ranges, and then averaging them to obtain a single value per grid.The results showed that the Euro V diesel bus engine operates in urban off-cycle conditions with a brake thermal efficiency (BTE) of 41%, a brake-specific fuel consumption (BSFC) of 205 g/kWh, and a carbon dioxide (CO2) energy-emission factor of 637 g/kWh. The NOx energy-emission factor was 80% higher than the levels in the Euro V Standard.This work demonstrated that the grid engine maps model has the potential to predict second-by-second fuel consumption and CO2 emissions, with a relative total error of less than 5%. Therefore, this approach could be useful for accurately simulating engine or vehicle performance for any operation scenarios at a microscopic level, provided engine torque and engine speed data from the bus are available.
机译:直到最近,重型汽车(HDV)发动机都经过污染物排放类型认可测试,该测试是在发动机测试台上以标准行驶周期开发的。但是,这些结果不能反映实际驾驶条件下的发动机性能。在这种情况下,实验测量是在马德里(西班牙)的城市非循环条件下在柴油V型巴士上进行的。主要目标是通过结合直接从便携式排放测量系统(PEMS)和车载诊断(OBD)数据采集系统获得的瞬态发动机数据来创建效率和排放发动机图。发动机图用于评估实际条件下的发动机性能,并创建一个模型,以便对发动机的油耗和排放进行每秒的预测。由于瞬态发动机数据的可变性,这项工作提出了一种发动机图开发方法,该方法包括根据发动机转速和扭矩范围将测量数据分组到网格中,然后将其平均以获得每个网格的单个值。欧V柴油客车发动机在城市非循环条件下运行,制动热效率(BTE)为41%,制动比油耗(BSFC)为205 g / kWh,二氧化碳(CO2)能耗为-排放因子为637 g / kWh。 NOx的能量排放因子比欧盟V标准高80%。这项工作表明,Grid Engine映射模型具有预测每秒燃油消耗和CO2排放的潜力,相对总误差为少于5%。因此,这种方法对于在微观水平上的任何操作情况下准确地模拟发动机或车辆性能可能是有用的,前提是可以从公共汽车获得发动机扭矩和发动机速度数据。

著录项

  • 来源
    《Applied Energy》 |2020年第1期|114442.1-114442.19|共19页
  • 作者

  • 作者单位

    Univ Politecn Madrid Univ Inst Automobile Res INSIA Madrid 28031 Spain|Univ Tecn Norte Fac Appl Sci Ibarra 100105 Ecuador;

    Univ Politecn Madrid Univ Inst Automobile Res INSIA Madrid 28031 Spain|Univ Politecn Madrid Dept Energy & Fuels Min & Energy Engn Sch Madrid 28003 Spain;

    Univ Politecn Madrid Univ Inst Automobile Res INSIA Madrid 28031 Spain;

    Univ Politecn Madrid Univ Inst Automobile Res INSIA Madrid 28031 Spain|Univ Politecn Madrid Dept Energy Engn Ind Engn Sch E-28006 Madrid Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Engine maps; Portable emissions measurement system (PEMS); On-board Diagnostic (OBD); Fuel efficiency; Emissions; Urban diesel bus;

    机译:引擎图;便携式排放物测量系统(PEMS);车载诊断(OBD);燃油效率;排放物;市区柴油客车;

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