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许四法, 周奇辉, 郑文豪, 朱永强, 王哲. 基坑施工对邻近运营隧道变形影响全过程实测分析[J]. 岩土工程学报, 2021, 43(5): 804-812. DOI: 10.11779/CJGE202105003
引用本文: 许四法, 周奇辉, 郑文豪, 朱永强, 王哲. 基坑施工对邻近运营隧道变形影响全过程实测分析[J]. 岩土工程学报, 2021, 43(5): 804-812. DOI: 10.11779/CJGE202105003
XU Si-fa, ZHOU Qi-hui, ZHENG Wen-hao, ZHU Yong-qiang, WANG Zhe. Influences of construction of foundation pits on deformation of adjacent operating tunnels in whole process based on monitoring data[J]. Chinese Journal of Geotechnical Engineering, 2021, 43(5): 804-812. DOI: 10.11779/CJGE202105003
Citation: XU Si-fa, ZHOU Qi-hui, ZHENG Wen-hao, ZHU Yong-qiang, WANG Zhe. Influences of construction of foundation pits on deformation of adjacent operating tunnels in whole process based on monitoring data[J]. Chinese Journal of Geotechnical Engineering, 2021, 43(5): 804-812. DOI: 10.11779/CJGE202105003

基坑施工对邻近运营隧道变形影响全过程实测分析

Influences of construction of foundation pits on deformation of adjacent operating tunnels in whole process based on monitoring data

  • 摘要: 既有运营地铁隧道因邻近基坑施工发生变形,对地铁隧道正常使用和安全运营带来不利影响。根据基坑施工期间邻近运营地铁隧道变形监测数据,对隧道变形从基坑围护结构施工开始至开挖结束进行了全过程分析。研究结果发现:TRD施工对邻近隧道存在挤土作用,隧道呈现“水平收缩,竖向拉伸”变形模式;三轴水泥搅拌桩施工引起隧道向基坑方向位移;地下连续墙施工对邻近隧道相当于侧向卸荷作用,隧道呈现“水平拉伸,竖向收缩”变形模式。围护结构与基坑开挖施工间隙产生的道床沉降量占总道床沉降量比例最大,达到了70.24%;隧道水平位移在围护结构施工阶段增加量最为突出,占总水平位移量43.81%;隧道收敛在基坑开挖阶段增加量最大,占总隧道收敛量的55.26%。建议类似工程根据隧道变形发展规律,制定不同施工阶段变形控制措施,使邻近隧道各项变形处于安全、可控范围。

     

    Abstract: Due to the deformation of operating subway tunnels near foundation pit, the normal use and safe operation of subway tunnels are adversely affected. Based on the monitoring data of deformation of a subway tunnel near operation during the construction of foundation pits, the whole process of tunnel deformation from the envelope construction of foundation pits to the end of excavation is analyzed. The results show that the TRD construction has a soil-squeezing effect on the adjacent tunnel, and the tunnel presents a deformation mode of "horizontal contraction and vertical stretch". The displacement of the tunnel towards the foundation pit is caused by the construction of three-axis cement mixing pile. The construction of underground diaphragm wall is equivalent to the unloading effect on the adjacent tunnel, and the tunnel presents the deformation mode of "horizontal stretching, vertical contraction ". The settlement of ballast bed generated by the gap between enclosure structures and excavation of the foundation pit accounts for the largest proportion of the total ballast bed settlement, reaching 70.24%. The increment of horizontal displacement of the tunnel is the most prominent in the construction stage of the envelope, accounting for 43.81% of the total horizontal displacement. The increment of tunnel convergence is the largest in the excavation stage of the foundation pit, accounting for 55.26% of the total tunnel convergence. It is suggested that the deformation control measures at different construction stages should be formulated according to the development law of tunnel deformation in similar projects, so that the deformation of the adjacent tunnels can be in a safe and controllable range.

     

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