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Fuel consumption and exhaust emissions of diesel vehicles in worldwide harmonized light vehicles test cycles and their sensitivities to eco-driving factors

机译:在全球统一的轻型汽车测试周期中,柴油车辆的燃料消耗和尾气排放及其对生态驾驶因素的敏感性

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Large amounts of fossil fuels are consumed by motor vehicles annually, and hazardous exhaust emissions from the motor vehicles have caused serious problems to environment and human health. Eco-driving can effectively improve the fuel economy and decrease the exhaust emissions, which makes it vital to analyze the fuel consumption and exhaust emissions at given driving cycle, and investigate their sensitivities to eco-driving factors. In this paper, the fuel consumption and exhaust emissions of a Euro-6 compliant light-duty diesel vehicle were tested in Worldwide Harmonized Light Vehicles Test Cycles on a chassis dynamometer; further, the sensitivities of the eco-driving factors that influence the fuel economy and exhaust emissions were analyzed using validated vehicle model. For the vehicle model simulation, the effect of the coolant temperature on fuel consumption and exhaust emission only considered its effect on lubricating oil viscosity. The results showed that vehicle acceleration and velocity dominates the fuel consumption rates in Worldwide Harmonized Light Vehicles Test Cycles, where more than 50% of the exhaust emissions was emitted in the first 300 s; also, fuel economy and exhaust emission factors showed a significant dependency on the road grade, coolant temperature, vehicle velocity and mass. For the driver-controllable factors, high vehicle velocity and low road grade (via route-choice) were recommended to achieve low fuel consumption and exhaust emissions.
机译:机动车每年消耗大量化石燃料,并且机动车的有害废气排放已经对环境和人类健康造成严重问题。生态驾驶可以有效改善燃油经济性并减少尾气排放,这对于分析给定驾驶周期的燃油消耗和尾气排放,并研究其对生态驾驶因素的敏感性至关重要。在本文中,在底盘测功机上的“全球协调轻型车辆测试周期”中测试了符合Euro-6的轻型柴油车辆的燃料消耗和废气排放。此外,使用经过验证的车辆模型分析了影响燃油经济性和尾气排放的生态驾驶因素的敏感性。对于车辆模型仿真,冷却液温度对燃油消耗和废气排放的影响仅考虑了其对润滑油粘度的影响。结果表明,在全球协调一致的轻型车辆测试周期中,车辆的加速度和速度是燃油消耗率的主要因素,在前300 s中,有超过50%的废气排放被排放。同样,燃油经济性和废气排放因子也显着依赖于道路坡度,冷却液温度,车速和质量。对于驾驶员可控制的因素,建议使用较高的车速和较低的道路坡度(通过路线选择)以实现较低的燃油消耗和废气排放。

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