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Real-world comparison of probe vehicle emissions and fuel consumption using diesel and 5 biodiesel (B5) blend.ud

机译:使用柴油和5%生物柴油(B5)混合物对探测车辆排放和燃料消耗进行实际比较。 ud

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摘要

An instrumented EURO I Ford Mondeo was used to perform a real-world comparison of vehicle exhaust (carbon dioxide, carbon monoxide, hydrocarbons and oxides of nitrogen) emissions and fuel consumption for diesel and 5% biodiesel in diesel blend (B5) fuels. Data were collected on multiple replicates of three standardised on-road journeys: (1) A simple urban route; (2) A combined urban/inter-urban route; and, (3) An urban route subject to significant traffic management. At the total journey measurement level, data collected here indicate that replacing diesel with a B5 substitute could result in significant increases in both NOx emissions (8-13%) and fuel consumption (7-8%). However, statistical analysis of probe vehicle data demonstrated the limitations of comparisons based on such total journey measurements, i.e., methods analogous to those used in conventional dynamometer/drive cycle fuel comparison studies. Here, methods based on the comparison of speed/acceleration emissions and fuel consumption maps are presented. Significant variations across the speed/acceleration surface indicated that direct emission and fuel consumption impacts were highly dependent on the journey/drive cycle employed. The emission and fuel consumption maps were used both as descriptive tools to characterise impacts and predictive tools to estimate journey-specific emission and fuel consumption effects.
机译:使用仪表化的EURO I Ford Mondeo对柴油和5%混合柴油(B5)燃料中的柴油和5%生物柴油的车辆废气(二氧化碳,一氧化碳,碳氢化合物和氮氧化物)的排放和燃料消耗进行了真实的比较。收集了三个标准化公路旅行的多个重复数据:(1)一条简单的城市路线; (2)城市/城市间的联合路线; (3)受到重大交通管理的城市路线。在总行程测量级别,此处收集的数据表明,用B5替代品替代柴油可能会导致NOx排放量(8-13%)和燃料消耗量(7-8%)显着增加。然而,对探测车辆数据的统计分析证明了基于这种总行程测量的比较的局限性,即与常规测功机/驾驶循环燃料比较研究中使用的方法类似的方法。在此,提出了基于速度/加速排放和燃油消耗图比较的方法。整个速度/加速度表面的显着变化表明,直接排放和燃料消耗的影响在很大程度上取决于所采用的行程/驾驶周期。排放和燃料消耗图既用作描述影响的描述工具,又用作估计特定旅程排放和燃料消耗影响的预测工具。

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