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Life cycle assessment of a railway tracks substructures: Comparison of ballast and ballastless rail tracks

机译:铁路轨道子结构的生命周期评估:镇流器和碴轨道轨道的比较

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The increase of train speed and axle load is an essential goal to make the railway transport more and more competitive for passengers and freights. On this basis, the unevenness of the railway track is crucial for the safety of the railway due to the high speed of the vehicle. Although ballasted tracks represent by far the most used railway track substructure, in recent years the modernization process has led the development of the ballastless track substructures.In deciding between the use of ballasted or ballastless track substructure there are many important technical, economical and environmental factors that have to be addressed. Based on the above, the principal objective of this study was to evaluate the environmental impact of different railway track substructures including ballast, cast-in sleeper and embedded track systems on the short, medium and long term. To accomplish this task, a life cycle assessment (LCA) was carried out throughout the entire life cycle of the railway infrastructure by using the ReCiPe (H) method. Although such approach is commonly included in the environmental assessment of building products and buildings, it was rarely applied in the analysis of the environmental impacts of railway track substructure.Thus, the result of these LCA showed that ballasted tracks cause the lowest environmental impact for service lives of up to 75 years. On the other hand, the embedded track beds cause the highest environmental impacts, regardless of their service life. The highest contributor for the environmental impacts of the track beds was the steel production.The results of this study will provide relevant environmental information for engineers and decision makers to select the most adequate railway track substructures for addressing issues related to the pursuit of sustainable development.
机译:火车速度和轴承载荷的增加是使铁路运输越来越竞争的乘客和货运的基本目标。在此基础上,由于车辆高速,铁路轨道的不均匀性对于铁路安全至关重要。虽然镇静曲目代表到迄今为止最常用的铁路轨道下部结构,但近年来现代化过程导致了禁止轨道子结构的发展。决定使用镇流器或碴轨道子结构之间的使用有许多重要的技术,经济和环境因素必须解决。基于以上,本研究的主要目的是评估不同铁路轨道子结构的环境影响,包括镇流器,在短期,中长期和长期内的嵌入式轨道系统。为了完成这项任务,通过使用配方(H)方法在铁路基础设施的整个生命周期中进行生命周期评估(LCA)。虽然这种方法通常包括在建筑产品和建筑物的环境评估中,但很少应用于分析铁路轨道子结构的环境影响。这些LCA的结果显示,镇流轨道导致服务的最低环境影响住长达75岁。另一方面,无论他们的使用寿命如何,嵌入式轨道床都会导致环境影响最高。轨道床的环境影响的最高贡献者是钢铁生产。本研究的结果将为工程师和决策者提供相关的环境信息,以选择最适合的铁路轨道子结构,以解决与追求可持续发展有关的问题。

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