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首页> 外文期刊>Proceedings of the Institutuion Civil Engineers >Improved performance of geosynthetics enhanced ballast: laboratory and numerical studies
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Improved performance of geosynthetics enhanced ballast: laboratory and numerical studies

机译:土工合成材料增强压载物的性能:实验室和数值研究

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摘要

Ballasted rail tracks form one of the most important worldwide transportation modes in terms of traffic tonnage, serving the needs of bulk freight and passenger movement. High impact and cyclic loads can cause a significant deformation leading to poor track geometry. In order to mitigate these problems, the concept of the inclusion of geosynthetics in rail tracks is introduced. This paper presents the current state-of-the-art knowledge of rail track geomechanics, including results obtained from laboratory testing, field investigations and numerical modelling to study the load–deformation behaviour of ballast improved by geosynthetics. The shear stress–strain and deformation behaviour of geosynthetic-reinforced ballast are investigated in the laboratory using a large-scale direct shear test device, a track process simulation apparatus and a drop-weight impact testing equipment. Computational modelling using the discrete-element method is employed to simulate geosynthetic-reinforced ballasted tracks, capturing the discrete nature of ballast aggregates when subjected to various types of loading and boundary conditions. Discrete-element modelling is also used to conduct micromechanical analysis at the interface between ballast and geogrid, providing further insight into the behaviour of ballast subjected to cyclic loadings. These results provide promising approaches to incorporate into existing track design routines catering for future high-speed trains and heavier heavy hauls.
机译:就交通吨位而言,压载铁路轨道是全球最重要的运输方式之一,可满足散货和旅客运输的需求。高冲击力和周期性载荷会导致明显的变形,从而导致不良的轨道几何形状。为了减轻这些问题,引入了在轨道中包括土工合成材料的概念。本文介绍了轨道地质力学的最新知识,包括从实验室测试,现场调查和数值模型获得的结果,以研究通过土工合成材料改良的道ball的荷载-变形行为。在实验室中,使用大型直接剪切试验设备,轨道过程模拟设备和落锤冲击试验设备,对土工合成纤维增强道ast的剪切应力-应变和变形行为进行了研究。采用离散元素方法进行计算建模,以模拟土工合成材料加固的压载轨道,在承受各种类型的载荷和边界条件时捕获压载骨料的离散性质。离散元素建模还用于在压载物与土工格栅之间的界面处进行微机械分析,从而进一步了解承受循环载荷的压载物的行为。这些结果提供了有希望的方法,可以将其纳入现有的轨道设计程序中,以适应未来的高速列车和较重的重载。

著录项

  • 来源
    《Proceedings of the Institutuion Civil Engineers》 |2018年第gi4期|202-222|共21页
  • 作者单位

    Centre for Geomechanics and Railway Engineering Faculty of Engineering and Information Sciences University of Wollongong Wollongong NSW Australia;

    Research Director and Distinguished Professor of Civil Engineering Centre for Geomechanics and Railway Engineering Faculty of Engineering ARC Centre for Excellence for Geotechnical Science and Engineering University of Wollongong Wollongong NSW Australia;

    Associate Research Fellow Centre for Geomechanics and Railway Engineering Faculty of Engineering and Information Sciences ARC Centre of Excellence for Geotechnical Science and Engineering University of Wollongong Wollongong NSW Australia;

    Centre for Geomechanics and Railway Engineering Faculty of Engineering and Information Sciences ARC Centre of Excellence for Geotechnical Science and Engineering University of Wollongong Wollongong NSW Australia;

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

    computational mechanics; geotextiles; membranes geogrids; railway tracks;

    机译:计算力学;土工布;膜和土工格栅;铁路轨道;

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