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Civil engineering components for a conceptual elevated light rail transit model with reference to Nelson Mandela Bay

机译:土建工程部件,用于概念性高架轻轨交通模型,参考纳尔逊曼德拉湾

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摘要

The increase of motor vehicles, especially in cities, cause transport problems of traffic congestion, vehicle accidents, air pollution and a lack of public spaces. The increasing number of motor vehicles consumes huge amounts of finite petrol energy and emits large amounts of gases that are harmful to the atmosphere and the natural environment. Therefore, the current road transport network is not a sustainable form of public transport for the future. In order to seek a suitable transportation mode, the Infrastructure and Engineering Business Unit of the Nelson Mandela Bay Municipality (NMBM) did some feasibility studies about light rail transit (LRT) from 1984 to 1988. The NMBM-report (1988: 8) concluded that a LRT system would provide the most suitable and primary mode to serve Nelson Mandela Bay (NMB). Although LRT was regarded as the most suitable primary mode of transport at that time (1988), further studies that were reported in 2006 recommended an alternative public transportation system. This research refers to these studies done for the NMB area and other studies and reports for other areas, but focus on the identification of the most suitable civil engineering components for a conceptual elevated light rail transit (ELRT) model. Electrical driven LRT systems have advantages over internal-combustion driven vehicles in terms of environmental protection. Traditional LRT systems are at ground level and are integrated with the existing road network. Some successful LRT systems indicate that the success of LRT systems is mainly dependent on integration with the existing road network. However, the integration of road transport systems with LRT systems cause increased congestion and accidents. An ELRT system can solve these problems. Bangkok has already built an ELRT system to solve its severe traffic congestion. 4 In order to develop a conceptual ELRT model, this research aimed to determine the most suitable civil engineering components for a conceptual ELRT model, including: (i) the most suitable type of bridge foundation; (ii) the most suitable type bridge girder; (iii) the most suitable type of sleeper; and (iv) whether the track should be a ballasted or non-ballasted type. The grounded theory approach was adopted to build up sets of data from which the most suitable components could be selected. In addition, design analyses were done of the various types of components to determine their suitability for a conceptual ELRT model. Experienced engineers and experts were also consulted to identify the most suitable components. After analyses and selection of the most suitable components, outstanding experts were approached to evaluate the components that showed up as the most suitable through the research. The research results indicated that bored and cast-in-place piles, a double-cell trapezoidal segmental box girder, and twin-block sleepers on a non-ballasted sleeper bed are the most suitable civil engineering components.
机译:机动车辆的增加,特别是在城市中,引起交通拥堵,交通事故,空气污染和公共场所不足的运输问题。越来越多的机动车辆消耗大量的有限汽油能量,并散发大量对大气和自然环境有害的气体。因此,当前的道路运输网络不是未来公共交通的可持续形式。为了寻找合适的运输方式,纳尔逊·曼德拉湾市(NMBM)的基础设施和工程业务部门于1984年至1988年对轻轨交通(LRT)进行了一些可行性研究。NMBM报告(1988:8)得出结论。 LRT系统将为Nelson Mandela Bay(NMB)提供最合适的主要方式。尽管当时轻快铁被认为是最合适的主要交通方式(1988年),但2006年报道的进一步研究建议采用替代性的公共交通系统。这项研究引用了针对NMB领域进行的这些研究以及针对其他领域的其他研究和报告,但重点是为概念性高架轻轨运输(ELRT)模型确定最合适的土木工程组件。电动LRT系统在环境保护方面优于内燃机汽车。传统的轻轨系统在地面上,并与现有的道路网络集成在一起。一些成功的轻轨系统表明轻轨系统的成功主要取决于与现有道路网络的整合。但是,道路运输系统与轻轨系统的集成会导致交通拥堵和事故增加。 ELRT系统可以解决这些问题。曼谷已经建立了ELRT系统来解决严重的交通拥堵。 4为了开发概念性ELRT模型,本研究旨在确定概念性ELRT模型的最合适的土木工程组件,包括:(i)最合适的桥梁基础类型; (ii)最合适的桥型; (iii)最合适的卧铺类型; (iv)轨道应为压载或非压载类型。采用扎根的理论方法来建立数据集,从中可以选择最合适的组件。此外,还对各种类型的组件进行了设计分析,以确定它们是否适合概念性ELRT模型。还请了经验丰富的工程师和专家来确定最合适的组件。在对最合适的组件进行分析和选择之后,请了杰出的专家来评估通过研究显示出最合适的组件。研究结果表明,钻孔和现浇桩,双格梯形分段箱形梁以及非压载卧铺床上的双块枕木是最合适的土木工程组件。

著录项

  • 作者

    Zang Jin;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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