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Real-World Fuel Consumption, Fuel Cost and Exhaust Emissions of Different Bus Powertrain Technologies

机译:现实世界燃料消耗,燃料成本和不同公交车动力总成技术的排放

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摘要

Air quality in urban areas is strongly influenced by exhaust emitted by the public transport fleet. The aim of this study was to analyze benefits in the fuel consumption, fuel costs and exhaust emissions when replacing baseline diesel fueled EURO III city buses by the compressed natural gas (CNG)-fueled EURO V buses and by hydraulic series hybrid diesel-fueled EURO V buses. Real-world measurements were performed on the regular bus route to access realistic energy consumption and exhaust emissions. Instantaneous gaseous emission (CO2, CO, NOx and THC) were measured together with the instantaneous PM10 mass emission. Innovativeness of the presented approach thus arises from the systematic comparison of different powertrain technologies under real-world drive cycles and measuring time traces of not only gaseous but also of PM10 mass emissions. Furthermore, lumped cycle averaged emissions are interpreted and explained by typical powertrain performance parameters and exhaust emission time traces. Cumulative results indicate that application of the CNG fueled buses does not necessary reduce CO2 emissions compared to diesel-fueled buses whereas reduction in fuel costs is evident. Additionally, it is shown that hybrid operation of the hydraulic series hybrid diesel-fueled bus resulted in higher fuel consumption due to poorly optimized hybrid topology and control strategy. Furthermore, analyses of the time traces point out inadequate lambda control of CNG-fueled buses and nucleation mode-based particle number emissions during deceleration.
机译:城市地区的空气质量受到公共交通船队排放的尾气的影响。本研究的目的是分析燃料消耗,燃料成本和废气排放中的益处,当更换基线柴油时,通过压缩天然气(CNG)欧洲三世城市公共汽车(CNG) - 加油欧式V巴士和液压串联柴油欧元v公共汽车。在常规公交线路上进行现实世界测量,以获得现实能源消耗和废气排放。与瞬时PM10批量发射一起测量瞬时气态发射(CO2,CO,NOx和THC)。因此,呈现的方法的创新因现实世界驱动循环下的不同动力总成技术的系统比较,并测量不仅具有气态但PM10批量排放的时间痕迹。此外,通过典型的动力总成参数和排气发射时间迹线解释和解释集总循环平均排放。累积结果表明,与柴油燃料的总线相比,CNG燃料总线的应用不需要减少二氧化碳排放,而燃料成本降低是显而易见的。另外,由于混合动力拓扑和控制策略差,液压串联混合柴油燃料总线的混合操作导致燃料消耗较高。此外,时间迹线的分析指出了在减速期间对CNG燃料总线和基于成核模式的粒子数排放不充分的Lambda控制。

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