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Optimal sizing of a fuel processor for auxiliary power applications of a fuel cell-powered passenger car

机译:燃料电池供电乘用车辅助电力应用的燃料处理器的最佳施胶

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摘要

The present study considers the optimal sizing of a three-way hybrid powertrain consisting of a compact reformer, a compact battery and a low temperature PEM fuel cell stack serving as the main power unit. A simulation model consisting of the relevant characteristic parameters of the three power sources has been developed and has been used to study the fuel utilization features of the hybrid powertrain while going through the NEDC driving cycle with a given auxiliary power requirement. The optimality is based on minimizing fuel cost while having an assured range of 500 km under practical driving conditions and a further 100 km under reduced auxiliary power usage. It is shown that for performance characteristics of Toyota Mirai and for average auxiliary power consumption of 5 kW, a smaller NiMH battery size of 1.3 kWh together with a fuel processor of 5.6 kW constant output would be optimal with a further requirement of 25% more hydrogen and 33 kg of ethanol to be carried on-board. Substantial reductions in vehicle mass and fuel load can be achieved for more modest performance characteristics and auxiliary power consumption. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本研究考虑了由一种紧凑的重整器,紧凑型电池和作为主电源单元的低温PEM燃料电池堆组成的三通混合动力动力系统的最佳尺寸。已经开发了一种模拟模型,该模拟模型已经开发出三个电源的相关特征参数,并且已用于研究混合动力系的燃料利用特征,同时通过给定的辅助电源要求进行NEDC驾驶循环。最优性基于最小化燃料成本,同时在实际驾驶条件下具有500km的保证范围,并且在减少辅助功率使用下进一步100km。结果表明,对于丰田Mirai的性能特性和5 kW的平均辅助功耗为5 kW,较小的NiMH电池尺寸为1.3千瓦时,燃料处理器为5.6 kW恒定输出,进一步要求25%的氢气将是最佳的和33千克乙醇在板上携带。可以实现车辆质量和燃料载荷的大量减少,以实现更适度的性能特性和辅助功耗。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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