隧道施工诱发古滑坡复活综合形变监测与特征分析

Comprehensive Deformation Monitoring and Characteristic Analysis of Ancient Landslide Reactivation Induced by Tunnel Construction

  • 摘要: 识别隧道开挖诱发的滑坡变形特征,是揭示隧道-滑坡相互作用机制的关键。以西南山区某高速公路隧道开挖诱发古滑坡复活为例,在现场调查的基础上,综合采用数值模拟、DS-InSAR时序监测与地表原位监测技术,对该古滑坡复活后的变形特征进行系统分析。结果表明:(1)滑坡体在空间上呈现显著的分区性,变形主要集中于滑坡Ⅰ区隧道上侧区域,滑坡Ⅰ区地表位移从后缘向前缘呈递减趋势,滑坡Ⅱ区位移整体变化不大。(2)在时间演化上,滑坡变形经历“缓慢蠕变—加速变形—局部复活”的阶段,2015年7月—10月期间,隧道右洞上方坡体表出现明显加速变形趋势。(3)数值模拟、InSAR解译与原位监测所得变形趋势高度一致,隧道开挖造成的卸荷效应是诱发古滑坡复活的直接原因。

     

    Abstract: Identifying the deformation characteristics of an ancient landslide induced by tunnel excavation is crucial for revealing the tunnel-landslide interaction mechanism. In this study, a ancient landslide reactivated by a highway tunnel excavation in a mountainous region of Southwest China was taken as a case study. Based on field investigation, the deformation characteristics of the reactivated landslide were systematically analyzed by integrating numerical simulation, Distributed Scatterer Interferometric Synthetic Aperture Radar (DS-InSAR) time-series monitoring, and in-situ surface monitoring techniques. The results indicate that: (1) Spatially, the landslide body exhibits significant zonation. The deformation is mainly concentrated in the area of Landslide Zone I above the tunnel, where surface displacement shows a decreasing trend from top to bottom, while the displacement in ZoneⅡ remains relatively stable. (2) In terms of temporal evolution, the landslide deformation undergoes stages of "slow creep - accelerated deformation - local reactivation" . Specifically, from July to October 2015, the displacement of the slope body above the right tunnel exhibits a distinct trend of accelerated deformation. (3) The results from numerical simulation, InSAR interpretation, and in-situ monitoring are highly consistent regarding deformation trends. The unloading effect caused by tunnel excavation is identified as the direct cause for the reactivation of the ancient landslide.

     

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