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Differential settlement remediation for new shield metro tunnel in soft soils using corrective grouting method: case study

机译:使用矫正灌浆方法对软土新盾构地铁隧道进行差异结算修复:案例研究

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摘要

In the Yangtze River Delta of China, a large number of metro tunnels have been constructed in soft soils. The excessive and differential tunnel settlement may impair the serviceability of the metro system. The treatment of such excessive and differential settlement in rheologic and sensitive soft soils is a challenge because the tunnel may incur a larger settlement due to construction disturbances. In this paper, a case study of the differential settlement treatment of the new shield tunnel of Ningbo Metro line 2 is presented. A maximum tunnel settlement of 214 mm was observed several months after construction of the tunnel was completed. To uplift the deviated tunnel axis, a grouting and lifting measure named "bottom grouting, inner support, real-time monitoring and immediate adjusting" is proposed. The settlement treatment section is successfully uplifted with an average value of 30 mm, and the maximum final uplift amount of the tunnel is 41 mm, which reached the target value of uplift. The maximum convergence deformation caused by the grouting is 10 mm, which is less than the maximum acceptable deviation, i.e., 15.5 mm. The corrective grouting method and the valuable monitoring data presented in this study can provide a reference for projects with similar problems in the future.
机译:在中国的长江三角洲,柔软的土壤中建造了大量的地铁隧道。过度和差分隧道沉降可能会损害地铁系统的可维护性。这种在流变学和敏感的软土中这种过度和差异沉降的治疗是一项挑战,因为隧道可能由于施工干扰而产生更大的沉降。本文介绍了宁波地铁2号线新盾构隧道差动沉降处理的案例研究。在隧道建设完成后,观察到214毫米的最大隧道沉降。提出提出偏离偏移的隧道轴,提出了名为“底部灌浆,内部支持,实时监测和立即调节”的灌浆和提升措施。沉降处理部分成功提升,平均值为30毫米,隧道的最大最终隆起量为41毫米,达到隆起的目标值。由灌浆引起的最大收敛变形是10mm,其小于最大可接受偏差,即15.5毫米。本研究中展示的矫正灌浆方法和有价值的监测数据可以为未来具有类似问题的项目提供参考。

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