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Bicycle superhighway: An environmentally sustainable policy for urban transport

机译:自行车高速公路:城市交通环境可持续政策

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摘要

Bicycle is a sustainable low-carbon transport mode. However, insufficient or unplanned infrastructure leads to decrease in the share of bicycle in many cities of developing nations. In order to increase the bicycle share and to provide safer, faster and more direct routes, a bicycle superhighway is proposed for urban areas. This study identifies the potential of increase in the bicycle share. For maximum utilization of the new infrastructure, an algorithm is presented to identify the optimum number and locations of the connectors between proposed new infrastructure and existing network. Household income levels are incorporated into the decision making process of individual travellers for a better understanding of the modal shift. A real-world case study of Patna, India is chosen to show the application of the proposed superhighway. It is shown that for Patna, the bicycle share can escalate as high as 48% up from 32% by providing this kind of infrastructure. However, together with bicycles, allowing motorbikes on the superhighway limits the bicycle share to 44%. The increase in bicycle share is mainly a result of people switching from motorbike, public transport and walk to the bicycle. Further, to evaluate the benefits of the bicycle superhighway, this study first extends an emission modelling tool to estimate the time-dependent, vehicle-specific emissions under mixed traffic conditions. Allowing only bicyclists on the superhighway improves congested urban areas, reduces emissions, and increases accessibility. However, allowing motorbikes on the superhighway increases emissions significantly in the central part of the urban area and reduces accessibilities by bicycle mode to education facilities which are undesirable. This study elicits that a physically segregated high-quality bicycle superhighway will not only attract current non-cyclist travellers and increase the share of the bicycle mode, but will also reduce negative transport externalities significantly.
机译:自行车是可持续的低碳运输模式。然而,不足或无计划的基础设施导致自行车在发展中国家许多城市的份额下降。为了增加自行车份额并提供更安全,更快,更直接的路线,为城市地区提出了一条自行车高速公路。本研究确定了自行车份额增加的潜力。为了最大限度地利用新基础设施,提出了一种算法,以识别所提出的新基础设施和现有网络之间连接器的最佳数量和位置。家庭收入水平纳入各个旅行者的决策过程,以更好地了解模态转变。选择了对印度的真正世界案例研究,以展示拟议的高速公路的应用。结果表明,对于髌骨,通过提供这种基础设施,自行车份额可以高达32%的高达48%。然而,与自行车一起,允许高速公路上的摩托车限制自行车的份额为44%。自行车份额的增加主要是人们从摩托车,公共交通工具和步行到自行车的结果。此外,为了评估自行车超高速公路的益处,本研究首先延长了发射建模工具,以估计混合交通条件下的时间依赖于时间,车辆特异性排放量。只有在高速公路上只允许骑自行车的人改善拥挤的城市地区,减少排放,并增加可达性。然而,允许高速公路上的摩托车在市区的中央部分显着提高排放,并通过自行车模式降低了不受欢迎的教育设施的可见性。本研究引发了物理隔离的高品质自行车超高速公路不仅会吸引目前的非骑车人旅客,并增加自行车模式的份额,但也会显着减少负运输外部性。

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