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The Fuel Economy of Hybrid Buses: The Role of Ancillaries in Real Urban Driving

机译:混合动力公交车的燃油经济性:辅助设备在实际城市驾驶中的作用

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In the present context of the global economic crisis and environmental emergency, transport science is asked to find innovative solutions to turn traditional vehicles into fuel-saving and eco-friendly devices. In the last few years, hybrid vehicles have been shown to have potential benefits in this sense. In this paper, the fuel economy of series hybrid-electric and hybrid-mechanical buses is simulated in two real driving situations: cold and hot weather driving in the city of Taranto, in Southern Italy. The numerical analysis is carried out by an inverse dynamic approach, where the bus speed is given as a velocity pattern measured in the field tests performed on one of the city bus routes. The city of Taranto drive schedule is simulated in a typical tempered climate condition and with a hot temperature, when the air conditioning system must be switched on for passenger comfort. The fuel consumptions of hybrid-electric and hybrid-mechanical buses are compared to each other and with a traditional bus powered by a diesel engine. It is shown that the series hybrid-electric vehicle outperforms both the traditional and the mechanical hybrid vehicles in the cold weather driving simulation, reducing the fuel consumption by about 35% with respect to the traditional diesel bus. However, it is also shown that the performance of the hybrid-electric bus gets dramatically worse when the air-cooling system is continuously turned on. In this situation, the fuel consumption of the three different technologies for city buses under investigation is comparable.
机译:在当前全球经济危机和环境紧急情况的背景下,运输科学被要求找到创新的解决方案,以将传统车辆转变为节油和环保设备。在过去的几年中,从这个意义上讲,混合动力汽车具有潜在的优势。在本文中,模拟了两种混合动力电动和混合动力机械公交车的燃油经济性:两种实际驾驶情况:意大利南部塔兰托市的冷热天气驾驶。数值分析是通过逆动态方法进行的,其中,将公交车速度作为在对其中一条城市公交路线进行的现场测试中测得的速度模式给出。当必须打开空调系统以提高乘客舒适度时,塔兰托市的驾驶时间表是在典型的温和气候条件和高温下模拟的。混合动力巴士和混合动力巴士的油耗相互比较,并与柴油发动机驱动的传统巴士进行了比较。结果表明,在寒冷天气驾驶模拟中,该系列混合动力汽车的性能优于传统和机械混合动力汽车,与传统的柴油客车相比,其燃油消耗降低了约35%。然而,还显示出,当空气冷却系统连续开启时,混合动力公交车的性能会大大恶化。在这种情况下,所研究的城市公交车的三种不同技术的油耗是可比的。

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