土工基础 ›› 2021, Vol. 35 ›› Issue (3): 375-379.

• 专题论述 • 上一篇    下一篇

基坑开挖及降雨对邻近既有铁路路基影响的数值研究

严博翀,王小珑   

  1. (上海东华地方铁路开发有限公司,上海 200040)
  • 收稿日期:2020-11-28 修回日期:2021-01-17 出版日期:2021-06-25 发布日期:2021-06-26
  • 作者简介:严博翀(1986-),男,工程师,研究方向为工程建设技术。

Numerical Study of the Influence of Deep Excavation and Rainfall on the Adjacent Railway Subgrade

YAN Bochong, WANG Xiaolong   

  1. (Shanghai Donghua Regional Railway Development Co. Ltd, Shanghai 200040)
  • Received:2020-11-28 Revised:2021-01-17 Online:2021-06-25 Published:2021-06-26

摘要: 随着长三角地区基础设施建设的加速发展,在既有铁路线路附近的土建工程越来越多,随之带来的基坑开挖、路基填筑等施工过程会导致邻近铁路路基的变形,影响铁路运营安全。以京沪铁路青阳港航道段改建工程为背景,采用数值分析方法分析基坑开挖和降雨对邻近铁路路基的影响。研究表明,基坑开挖后,基坑周围土体和铁路路基都会产生一定的变形,基坑及围护结构的侧向变形表现为上大下小,呈现类似悬臂梁的变形模式;铁路路基最大位移发生在路基底部。当遭遇下雨等不利条件时,地基表层土体和路基强度会随之减弱,当强度折减系数在0.5~0.6时,铁路路基的整体位移会急剧变大。在实际工程中,必须分阶段严格控制基坑开挖范围,加强过程中轨道监测,严格落实雨中和雨后线路检查制度,保障铁路的运营安全。


关键词: 基坑开挖, 铁路路基, 数值模拟, 降雨影响

Abstract: With an accelerated development of infrastructure construction in Yangtze River Delta, there are more and more engineering projects constructed near the existing railway lines. The related construction processes such as deep excavation and backfill might induce the excessive deformation of the adjacent railway subgrades. This might finally affect the safety operation of these railway lines. Based on the reconstruction project of the Qingyang Port Channel Section of the BeijingShanghai Railway, this paper presents the numerical analysis to evaluate the impact of deep excavation and rainfall on the adjacent railway subgrade. Studies have shown that after the deep excavation, the soil surrounding the excavated area and the railway subgrade will deform to a certain extent. The lateral deformation of the excavation supporting structure demonstrate a pattern of larger at upper portion and smaller at lower portion, which is similar to the deflection in a cantilever beam. The maximum displacement occurs at the bottom of the railroad embankment. When an unfavorable condition, such as rain, is encountered, the strength of the surficial soil of at the excavated area and the roadbed will be weakened. When the strength reduction coefficient is in the range of 0.5~0.6, the overall displacement of the railway roadbed will increase sharply. In actual projects, it is necessary to strictly control the deep excavation area in stages, improving the railroad track monitoring in the process, and strictly implement the rail inspection system during and after the precipitation to ensure the safety of railway operations.

Key words: Deep Excavation, Railway Subgrade, Numerical Simulation, Rainfall Impact

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