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Potential for mitigating greenhouse gases through expanding public transport services: A case study for Gauteng Province, South Africa

机译:通过扩大公共交通服务减少温室气体的潜力:以南非豪登省为例

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摘要

South Africa's Province of Gauteng is a fast growing megacity region including the cities of Johannesburg and Tshwane. Increasing population and prosperity lead to a steadily growing energy demand and thereby increasing greenhouse gas (GHG) emissions. One third of the province's final energy consumption comes from the transport sector, dominated by motorized individual transport. Due to the limited financial resources to fund public transport initiatives, the most cost-effective means to reach the GHG mitigation targets are intended, without jeopardizing the economic growth. Recently, a bus rapid transit (BRT) system (Rea Vaya) and a rapid rail link (Gautrain) have been introduced to enforce the public transport system. In this paper, we investigate planned and possible future network expansions of the BRT and the Gautrain in terms of transport performance, costs of network expansions and GHG mitigation potential. Based on a trip rate model, we show that extensions of the current network can increase passenger numbers significantly (between 320% and 660% between 2013 and 2040 depending on the framework conditions). However, despite these expansions, the modal share of the BRT and the Gautrain in total passenger-kilometres travelled remains below 4% until 2040. This results in a decrease of cumulated GHG emissions of less than 1% until 2040 and relatively high GHG mitigation costs (4948-30045 ZAR_(2013)/t CO_2e). Nevertheless, a better integration of all public transport systems can increase the attractiveness of the services, which can result in a higher modal shift from private cars and thereby higher GHG emissions reductions at lower costs.
机译:南非的豪登省是一个快速发展的特大城市地区,包括约翰内斯堡和茨瓦尼等城市。人口和繁荣的增加导致能源需求稳定增长,从而增加了温室气体(GHG)排放。全省最终能源消耗的三分之一来自交通运输部门,其中以机动化个人运输为主。由于用于公共交通计划的资金资源有限,因此打算在不危害经济增长的前提下,以最具成本效益的方式实现温室气体减排目标。最近,已经引入了公共汽车快速运输(BRT)系统(Rea Vaya)和快速铁路(Gautrain)来实施公共交通系统。在本文中,我们从运输性能,网络扩展成本和温室气体减排潜力方面研究了BRT和Gautrain的计划中以及未来可能的网络扩展。基于出行率模型,我们显示出当前网络的扩展可以显着增加乘客人数(2013年至2040年之间,视框架条件而定,介于320%至660%之间)。然而,尽管进行了这些扩展,但到2040年,BRT和Gautrain的出行方式在旅客总公里数中所占的比重仍低于4%。这导致到2040年,累计的GHG排放量减少不到1%,并且温室气体减排成本相对较高(4948-30045 ZAR_(2013)/ t CO_2e)。然而,更好地整合所有公共交通系统可以提高服务的吸引力,这可以导致更高的模式从私家车转向,从而以更低的成本实现更高的温室气体减排量。

著录项

  • 来源
    《Transportation Research》 |2014年第10期|57-69|共13页
  • 作者单位

    Institute of Energy Economics and the Rational Use of Energy (IER), University of Stuttgart, Hessbruehlstr. 49a, D-70565 Stuttgart, Germany;

    Institute of Energy Economics and the Rational Use of Energy (IER), University of Stuttgart, Hessbruehlstr. 49a, D-70565 Stuttgart, Germany;

    Institute of Energy Economics and the Rational Use of Energy (IER), University of Stuttgart, Hessbruehlstr. 49a, D-70565 Stuttgart, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Public transport; Greenhouse gas emissions; Mitigation costs; BRT; Rapid rail; Megacity;

    机译:公共交通;温室气体排放;缓解成本;BRT;快速铁路;大城市;

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