张心悦, 沈婕, 许丹, 张晓平, 王海君, 李方毅, 王浩杰. 2020: 小间距双线隧道土压平衡盾构掘进地表变形规律及控制研究. 工程地质学报, 28(S1): 157-168. DOI: 10.13544/j.cnki.jeg.2020-339
    引用本文: 张心悦, 沈婕, 许丹, 张晓平, 王海君, 李方毅, 王浩杰. 2020: 小间距双线隧道土压平衡盾构掘进地表变形规律及控制研究. 工程地质学报, 28(S1): 157-168. DOI: 10.13544/j.cnki.jeg.2020-339
    ZHANG Xinyue, SHEN Jie, XU Dan, ZHANG Xiaoping, WANG Haijun, LI Fangyi, WANG Haojie. 2020: STUDY ON LAW AND CONTROL MEASURES OF GROUND DEFORMATION DURING EPB SHIELD TUNNELING PROCESS IN SMALL-SPACING DOUBLE-TRACK TUNNELS. JOURNAL OF ENGINEERING GEOLOGY, 28(S1): 157-168. DOI: 10.13544/j.cnki.jeg.2020-339
    Citation: ZHANG Xinyue, SHEN Jie, XU Dan, ZHANG Xiaoping, WANG Haijun, LI Fangyi, WANG Haojie. 2020: STUDY ON LAW AND CONTROL MEASURES OF GROUND DEFORMATION DURING EPB SHIELD TUNNELING PROCESS IN SMALL-SPACING DOUBLE-TRACK TUNNELS. JOURNAL OF ENGINEERING GEOLOGY, 28(S1): 157-168. DOI: 10.13544/j.cnki.jeg.2020-339

    小间距双线隧道土压平衡盾构掘进地表变形规律及控制研究

    STUDY ON LAW AND CONTROL MEASURES OF GROUND DEFORMATION DURING EPB SHIELD TUNNELING PROCESS IN SMALL-SPACING DOUBLE-TRACK TUNNELS

    • 摘要: 土压平衡盾构掘进过程中不可避免地会对隧道周边岩土体带来扰动,引起地表变形,影响周围构/建筑物的安全。本文以广州市轨道交通十八号线陇枕出入场线为例,分析该双线隧道在小间距(最小2.5 m)条件下,土压平衡盾构施工参数以及掘进引起的地表变形数据,研究盾构掘进过程中地表变形规律和变形控制措施。研究结果表明,小间距双线隧道土压平衡盾构掘进过程中:地表变形大致经历了5个发展阶段,主要有4种变形趋势;先掘隧道对后掘隧道地表变形的影响效应与先掘隧道本身的地表变形效应基本一致,显著影响区域位于两隧轴线之间;地表变形的影响因素包括盾构施工参数、掘进段工程地质条件、盾构停机等,采取优化注浆压力、注浆量、土舱压力、掘进速度等盾构施工参数、加固地层、减少盾构停机时间等措施可有效控制地表变形。该研究结果为广州市轨道交通十八号线以及类似小间距盾构掘进施工控制提供了一定的理论依据。

       

      Abstract: It is inevitably that the process of EPB shield tunneling disturbs the rock and soil around tunnel, which has intensively caused ground deformation and threatened the safety of surrounding structures/buildings. To study the law and control measures of ground deformation during the EPB shield tunneling process, this paper, based on the Longzhen Exit and Entry lines of Guangzhou Rail Transit Line 18,analyzed the shield construction parameters and ground deformation data caused by the construction of this small-spacing double-track tunnels. The conclusions are as follows:the ground deformation experiences five development stages with four deformation trends during the EPB shield tunneling process in small-spacing double-track tunnels; the ground deformation effect of the pre-built line on the later-built line is generally consistent with the effect of the pre-built line on itself, while the significant influenced area is between the two tunnel axes; the influence factors of ground deformation include shield construction parameters, engineering geological conditions and shield downtime, so optimizing the shield construction parameters, reinforcing the stratums and reducing shield downtime can effectively control the ground deformation. The research results have provided theoretical basis in area of shield construction control of Guangzhou Rail Transit Line 18 and other relevant small-spacing double-track tunneling projects.

       

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