土工基础 ›› 2026, Vol. 40 ›› Issue (2): 198-201.

• 工程实录 • 上一篇    下一篇

降雨诱发某高速公路隧道口边坡变形破坏过程分析

刘 斌   

  1. (中交二航局第四工程有限公司,安徽芜湖 241000)
  • 收稿日期:2024-09-27 修回日期:2024-10-16 出版日期:2026-04-30 发布日期:2026-04-22
  • 作者简介:刘斌(1972-),男,工程师,研究方向为工程安全与风险防控。

Analysis of Deformation and Failure Process of a Highway Tunnel Slope Induced by Rainfall

LIU Bin   

  • Received:2024-09-27 Revised:2024-10-16 Online:2026-04-30 Published:2026-04-22

摘要: 高速公路隧道口边坡受隧道开挖扰动和降雨入渗等因素影响,其变形与稳定一直是安全施工关注的重点。以广西某高速隧道口边坡的变形破坏为例,通过现场地质灾害调查,明晰了隧道口边坡的主要地层岩性与地质结构、边坡拉裂与变形、隧道坍塌等特征,并结合监测数据,给出了对象工程变形破坏的主要影响因素。采用数值模拟,再现了降雨诱发下的隧道口边坡变形破坏过程,分析了其变形破坏范围,发展演化过程和安全系数,并与现场破坏形态和模式进行了对比论证,认为其变形破坏过程为:隧道开挖-边坡变形-临界破坏-降雨入渗-坡体弱化-节理张拉滑移-边坡变形破坏-附加外力-隧道坍塌冒顶。

关键词: 隧道口边坡, 变形破坏, 降雨, 节理裂隙, 数值模拟

Abstract: Due to the influence of tunnel excavation disturbance and rainfall infiltration, the deformation and stability of a tunnel entrance slope of the expressway have always been the focus of safety construction. The case history of the deformation and failure of a high-speed tunnel entrance slope in Guangxi is presented in this paper. Throughout the on-site geological hazard investigation, the main stratigraphic lithology and geological structure of the tunnel entrance slope, slope cracking and deformation, tunnel collapse and other characteristics are obtained and well understood. Combined with the monitoring data, the main influencing factors of the deformation and failure of the object project are proposed. The numerical simulation is used to reproduce the deformation and failure process of the tunnel entrance slope induced by rainfall. The range of deformation and failure, development and evolution process and safety factors are analyzed, and compared with the field failure mode observed. It is considered that the deformation and failure process is tunnel excavation-slope deformation-critical failure-rainfall infiltration-slope weakening-joint tension slip-slope deformation and failure-additional external force-tunnel collapse and roof fall.

Key words: Tunnel Entrance Slope, Deformation and Failure, Rainfall, Joint Fissure, Numerical Simulation

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