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Hydrogen fuel cell hybrid scooter (HFCHS) with plug-in features on Birmingham campus

机译:伯明翰校园的带插件功能的氢燃料电池混合动力踏板车(HFCHS)

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摘要

A commercially available 'pure' lead-acid battery electric scooter (GoPed) was converted to a hydrogen fuel cell battery hybrid scooter (HFCHS) in views of investigating the effect of hybridisation on driving duty cycles, range, performance, recharging times, well-to-wheel CO_2 footprint and overall running costs. The HFCHS with plug-in features consisted mainly of a 500 W hydrogen PEM Fuel Cell stack connected to four 12 V 9 Ah lead-acid batteries and two hydrogen metal-hydride canisters supplying pure hydrogen (99.999%) and also acting as heat sink (due to endothermic hydrogen desorption process). In this study, the HFCHS urban driving cycle was compared with that of a conventional petrol and 'pure' battery electric scooter. The energy consumed by the HFCHS was 0.11 kWh/km, with an associated running cost of £0.01/km, a well-to-wheel CO_2 of 9.37 g CO_2/km and a maximum range of 15 miles. It was shown that the HFCHS gave better energy efficiencies and speeds compared to battery and petrol powered GoPed scooters alone.
机译:考虑到研究混合动力对驱动占空比,范围,性能,充电时间,良好行驶的影响,将市售的“纯”铅酸电池电动踏板车(GoPed)转换为氢燃料电池混合动力踏板车(HFCHS)。减少二氧化碳的排放量和总体运行成本。具有插入功能的HFCHS主要由连接到四个12 V 9 Ah铅酸电池的500 W氢PEM燃料电池堆和两个提供纯氢(99.999%)并用作散热器的氢金属氢化物罐组成( (由于吸热氢解吸过程)。在这项研究中,将HFCHS城市驾驶周期与传统的汽油和“纯”电池电动踏板车进行了比较。 HFCHS消耗的能量为0.11 kWh / km,相关的运行成本为£ 0.01 / km,轮到轮的CO_2为9.37 g CO_2 / km,最大行驶距离为15英里。结果表明,与仅由电池和汽油驱动的GoPed踏板车相比,HFCHS的能源效率和速度更高。

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