ISSN 1000-3665 CN 11-2202/P

    纵向非均质场地盾构隧道变形破坏机理

    Deformation and failure mechanism of shield tunnels in longitudinally heterogeneous ground

    • 摘要: 针对非均匀土层诱发的场地地震动放大与变形不协调,进而加剧盾构隧道地震响应和变形模式演变这一关键问题,本文以长江下游某过江隧道工程为背景,考虑河床土体动力非线性及管片精细化拼装,建立了纵向长度为500 m的三维精细化有限元模型。系统探讨了地震波特性、相邻土层剪切波速比等因素对穿越纵向非均质场地隧道破坏机理与变形模式的影响。研究表明:在地震作用下,隧道呈现显著的纵向不协调变形,纵向张开量与错台量的峰值集中于土层交界面附近的软土侧;隧道在该处呈现极其明显的“S”型弯曲变形,受地层突变显著影响的区域分布于交界面向软土侧延伸的5倍隧道直径(5D)范围内。此外,管片混凝土损伤呈现非对称性演化,软土段损伤主要集中于截面共轭方向,而硬土段则聚焦于拱脚附近。研究成果可为非均质场地越江隧道的抗震设计提供参考依据。

       

      Abstract: Aiming at the critical issue of seismic response aggravation and deformation pattern evolution in shield tunnels caused by non-homogeneous soil-induced ground motion amplification and deformation non-uniformity, this study takes a cross-river tunnel project in the lower reaches of the Yangtze River as the engineering background. Considering the dynamic nonlinearity of riverbed soil and the refined assembly of segments, a 3D refined finite element model with a longitudinal length of 500 m was established. The effects of seismic wave characteristics and the shear wave velocity ratio of adjacent soil layers on the failure mechanism and deformation mode of tunnels crossing longitudinally heterogeneous ground were systematically investigated. The results indicate that: under seismic action, the tunnel exhibits significant longitudinal non-uniform deformation, with the peaks of longitudinal joint opening and staggering concentrated on the soft soil side near the strata interface. The tunnel manifests a distinct "S-shaped" bending deformation at the interface, and the zone significantly affected by the abrupt change in strata extends to a range of 5 times the tunnel diameter (5D) into the soft soil side. Furthermore, the damage to the segmental concrete evolves asymmetrically: damage in the soft soil section is primarily concentrated in the conjugate directions of the cross-section, whereas in the stiff soil section, it is focused near the arch springings. The research findings provide a reference for the anti-seismic design of cross-river tunnels in heterogeneous ground.

       

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