Impact of Increased Tire Pressure on Fuel Consumption and Environment for Fuel-Cell-Assisted Shared Bicycles

IF 0.2 Q4 ENERGY & FUELS Journal of The Japan Institute of Energy Pub Date : 2021-08-20 DOI:10.3775/jie.100.116
Emi Hosobuchi, Chiharu Misaki, N. Katayama, K. Dowaki
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引用次数: 1

Abstract

This study evaluated the use of a fuel-cell-assisted bicycle (H-bike) in bicycle sharing. Two pertinent issues arise. First, the number of start-stops and distance traveled lead to power consumption levels so high that they exceed those of households. Second, the H-bikes are 3 kg heavier than conventional bicycles. Reduction in rolling resistance due to increased tire pressures may afford a solution to these problems. The purpose of this study was to investigate whether increasing the tire pressure can reduce the amount of energy consumed and eliminate the impact of increased weight. Energy consumption was evaluated with a bicycle-riding experiment; the net impact of increased weight on energy consumption and the environment following the spike in tire pressure was assessed. Life-cycle assessment was performed using the CML model to estimate the abiotic resource depletion potential (ADP) and the global warming potential (GWP). Results showed that increasing the tire pressure reduced fuel consumption in bicycle-sharing systems by more than 10%. The 3-kg weight gain did not affect energy consumption, and the ADP and GWP were approximately 10% and 20% lower for the H-bike. Thus, H-bikes have more environmental benefits than conventional bicycles, and considering tire pressure in bicycle sharing makes sense.
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增加胎压对燃料电池助力共享单车油耗和环境的影响
本研究评估了燃料电池辅助自行车(H-bike)在自行车共享中的应用。出现了两个相关问题。首先,启停次数和行驶距离导致电力消耗水平如此之高,以至于超过了家庭用电量。其次,h型自行车比传统自行车重3公斤。由于轮胎压力增加而减少滚动阻力可能为这些问题提供解决方案。本研究的目的是调查是否增加轮胎压力可以减少能量消耗和消除重量增加的影响。以自行车骑行实验为例,对能耗进行评价;评估了轮胎压力激增后体重增加对能源消耗和环境的净影响。采用CML模型进行生命周期评估,估算非生物资源耗竭潜力(ADP)和全球变暖潜力(GWP)。结果表明,增加轮胎压力可使共享单车系统的油耗降低10%以上。3公斤的体重增加并没有影响能量消耗,而H-bike的ADP和GWP分别降低了大约10%和20%。因此,h型自行车比传统自行车有更多的环境效益,在共享单车中考虑轮胎压力是有道理的。
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0.60
自引率
0.00%
发文量
46
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