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The effective use of excess capacity for low carbon urban transport futures

机译:有效利用过剩产能实现低碳城市交通的未来

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A reduction in emissions from transport is essential and requires a system wide approach, inclusive of technological and behavioural changes. Defining capacity in urban transport as the space through which transport demand can be met, the research explores where there is excess capacity in the system and how this could be used to reduce emissions. Capacity may be physical capacity in the roadspace or seats within vehicles, or temporal capacity, where there are fluctuations in the use of the system, such as peak and off-peak flows. This is complementary to the International Energy Agency (IEA)'s definition of urban transport energy efficiency as maximising travel activity whilst minimising energy consumption through a range of approaches and techniques. This paper proposes that interventions designed to enable behavioural change could reduce emissions by changing the way that the urban transport system is used. Drawing on the literature, this work demonstrates how effective use of excess capacity might be facilitated through measures such as smarter choices programmes and the application of intelligent transport systems (ITS). Case studies are provided as examples of ways that urban transport infrastructure can be adapted for more efficient use, including shared space projects and the 'complete streets' policy in New York City. The paper concludes by presenting the potential impacts of effective use of excess capacity for reducing urban transport emissions as demonstrated through the case studies.
机译:减少运输中的排放是必不可少的,并且需要采用全系统的方法,包括技术和行为上的变化。研究将城市交通能力定义为可以满足交通需求的空间,该研究探索了系统中哪里有多余的容量以及如何将其用于减少排放。通行能力可以是道路空间或车辆内座位的物理通行能力,也可以是系统使用存在波动(例如高峰和非高峰流量)的临时通行能力。这是对国际能源署(IEA)关于城市交通运输能源效率的定义的补充,该定义是通过多种方法和技术使旅行活动最大化,同时使能源消耗最小化。本文提出,旨在实现行为改变的干预措施可以通过改变城市交通系统的使用方式来减少排放。借鉴文献,这项工作表明如何通过诸如更明智的选择程序和智能运输系统(ITS)的应用等措施来促进过剩容量的有效利用。提供了案例研究,以举例说明如何使城市交通基础设施适应更有效的利用,包括共享空间项目和纽约市的“整条街道”政策。最后,通过案例研究证明,提出了有效利用过剩容量来减少城市交通排放的潜在影响。

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