大断面小间距下穿地铁隧道围岩稳定性控制

Huaibao Chu, Chang Wang, Xiaolin Yang, Haixia Wei, S. Yan, Shuanjie Li
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引用次数: 0

摘要

随着中国城市化进程的加快,出现了大量大断面小净距地铁隧道。由于围岩力学特性的复杂性和不确定性,地铁隧道易发生失稳破坏。以郑州地铁5号线穿越京广南高速既有隧道为例,分析了隧道围岩应力特征及地面沉降规律。根据数值模拟结果和现场监测数据,提出了围岩稳定控制措施和修正的围岩压力理论公式。主要贡献如下:(1)隧道外拱脚处水平应力最大,内拱脚处竖向应力最大。(2)随着隧道净空间距的增大,地面沉降减小,且第一隧道上方的地面沉降略大于第二隧道上方。(3)以CRD法K2开挖顺序和3.4 m的合理净距为最优施工方案,可有效提高围岩稳定性。(4)基于数值模拟结果和现场监测数据的修正SRP理论公式,可为该下穿隧道及其他类似隧道的SRS控制提供理论指导。
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Stability Control for Surrounding Rock of Undercrossing Subway Tunnels with Large Section and Small Clear Spacing
With the acceleration of urbanization in China, there are lots of subway tunnels with large section and small clear spacing (LSSCS). Due to the complexity and uncertainty of mechanical characteristics of surrounding rock, subway tunnels with LSSCS are prone to instability and failure. The tunnel of Zhengzhou Subway Line 5 crossing under the existing tunnel of South Jingguang Expressway is selected to analyze the stress characteristics of surrounding rock and the law of ground settlement. Based on the results of numerical simulation and field monitoring data, stability control measures for surrounding rock and modified theoretical formulas of surrounding rock pressure (SRP) are proposed. The main contributions are as follows: (1) The maximum horizontal stress is found at the outer arch foot of the tunnel, and the maximum vertical stress is found at the inner arch foot. (2) With the increase of the tunnel clear spacing, the ground settlement decreases, and the ground settlement above the first tunnel is a little lager than that above the latter tunnel. (3) The excavation sequence of K2 in CRD method and the reasonable clear spacing of 3.4 m can be used as the optimal construction scheme to effectively improve the surrounding rock stability (SRS). (4) The modified theoretical formulas of SRP based on numerical simulation results and field monitoring data can provide theoretical guidance for controlling the SRS of this undercrossing tunnel and other similar tunnels.
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