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动力荷载作用下铁路过渡段工作特性分析
引用本文:胡汉兵.动力荷载作用下铁路过渡段工作特性分析[J].水利水电快报,2008,29(8):43-50.
作者姓名:胡汉兵
作者单位:长江科学院,湖北,武汉,430010;水利部岩土力学与工程重点实验室,湖北,武汉,430010
摘    要:铁路路堤与桥、涵等结构物之间的过渡段处易出现明显的差异沉降,形成“跳车”,地基土体的固结和蠕变并不能完全解释这个现象。以往研究表明,过渡段处轨道顶面的不平顺和轨道基础刚度差异会导致轮轨动力荷载增大,进而引起轨道基础的附加压缩。首先确定了过渡段地基刚度的变化规律;然后采用动力计算模型分析了过渡段处的轮轨动力荷载,结果表明列车通过该过渡段时会产生很明显的动力荷载,最大可达列车静轮载的1.5倍。此外,计算还显示动力荷载主要由轨道沉降差和结构物刚度所控制;最后,采用压密模型对动力荷载下轨道基础的附加压缩量进行了预测。

关 键 词:过渡段  动力荷载  刚度  压密  路堤  结构物

Analysis on Behavior of Railway Transition Zones under Dynamic Loading
HU Han-bing.Analysis on Behavior of Railway Transition Zones under Dynamic Loading[J].Express Water Resources & Hydropower Information,2008,29(8):43-50.
Authors:HU Han-bing
Affiliation:HU Han-bing (1. Changjiang River Scientific Research Institute of CWRC, Wuhan 430010, China; 2.Key Laboratory of Geotechnical Mechanics & Engineering of MWR, Wuhan 430010, China)
Abstract:Railway transition zones between the embankment and fixed structures like bridges and culverts are one of the main concerns of the railway administrations. Differential settlements usually occur at these places, forming dips at the end of structures and leading to bad driving conditions (i. e. low safety and comfort). More importantly they cause a lot of additional maintenance, which cost a lot of money and reduce the availability of railway infrastructures. Even after regular maintenance, the problem occurs periodically. The differential settlements due to subsoil consolidation and creep cannot fully explain the excessive maintenance. Therefore, a better understanding of the behaviour of transition zones is required to obtain knowledge on mechanisms governing the high maintenance requirement of railway transition zones. Based on a review of available literature and relevant theories, it is expected that an uneven track surface and subgrade stiffness difference at transitions result in high vertical accelerations and large dynamic wheel-loads, and these effects have influences on the degree of rail foundation compaction. It is widely believed these effects might be responsible for the excessive maintenance requirement of railway transition zones. Therefore, the purpose of this study is to investigate the behaviour of a railway transition zone under dynamic loading of a train passage, determine the amplitude of dynamic axle forces and estimate the additional densification of ballast induced by the dynamic loads for the studied transition zone. This study is based on a real case of an existing railway transition zone between normal embankment and a concrete culvert. The transition is situated along the Utrecht-Rotterdam/the Hague railway line in the western part of the Netherlands. As a prerequisite of dynamic simulations, and one of the commonly believed major causes of high wheel-rail force and track degradation at transition zones, the subgrade stiffness variation of the transition zone was determined first
Keywords:transition zone  dynamic load  stiffness  densification  embankment  structure
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