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Sustainability of Intercity Transportation Infrastructure: Assessing the Energy Consumption and Greenhouse Gas Emissions of High-Speed Rail in the U.S.

机译:城际交通基础设施的可持续性:评估美国高铁的能源消耗和温室气体排放

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摘要

In the U.S., high-speed passenger rail has recently become an active political topic, with multiple corridors currently being considered through federal and state level initiatives. One frequently cited benefit of high-speed rail proposals is that they offer a transition to a more sustainable transportation system with reduced greenhouse gas emissions and fossil energy consumption. This study investigates the feasibility of high-speed rail development as a long-term greenhouse gas emission mitigation strategy while considering major uncertainties in the technological and operational characteristics of intercity travel. First, I develop a general model for evaluating the emissions impact of intercity travel modes. This model incorporates aspects of life-cycle assessment and technological forecasting. The model is then used to compare future scenarios of energy and greenhouse gas emissions associated with the development of high-speed rail and other intercity travel technologies. Three specific rail corridors are evaluated and policy guidelines are developed regarding the emissions impacts of these investments. The results suggest prioritizing high-speed rail investments on short, dense corridors with fewer stops. Likewise, less emphasis should be placed on larger investments that require long construction times due to risks associated with payback of embedded emissions as competing technology improves.
机译:在美国,高速客运铁路最近已成为一个活跃的政治话题,目前正在通过联邦和州一级的倡议考虑修建多条走廊。高铁提案的一个经常被提及的好处是,它们为减少温室气体排放和化石能源消耗的可持续交通系统提供了过渡。这项研究调查了高速铁路发展作为长期温室气体减排战略的可行性,同时考虑了城际旅行的技术和运营特征中的主要不确定因素。首先,我开发了一个通用模型来评估城市间出行方式的排放影响。该模型结合了生命周期评估和技术预测的各个方面。然后,该模型用于比较与高铁和其他城市间出行技术发展相关的未来能源和温室气体排放情景。对三个特定的铁路走廊进行了评估,并针对这些投资的排放影响制定了政策指南。结果表明,优先考虑在短而密集的,停靠点少的走廊上进行高铁投资。同样,由于竞争技术的改进,由于与嵌入式排放的投资回收有关的风险,应减少对需要较长建设时间的大型投资的重视。

著录项

  • 作者

    Burgess, Edward.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Climate Change.;Energy.;Transportation.;Sustainability.
  • 学位 M.S.
  • 年度 2011
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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