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Monitoring, modelling and prediction of segmental lining deformation and ground settlement of an EPB tunnel in different soils

机译:不同土壤中EPB隧道分段衬砌变形及地面沉降的监测,建模与预测

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摘要

In this paper, the deformation characteristics of tunnel lining structures in different soils are studied by theoretical analysis, numerical modelling and field monitoring. The deformation of segmental lining was monitored by distributed optical fiber sensors in the tunnels of Foshan Metro Line 2 during EPB shield tunnelling. The structural deformation characteristics, including the longitudinal strain and curvature, the circumferential and longitudinal joint deformation, the longitudinal settlement, and the circumferential convergence of the tunnel under different ground conditions and at different depths are analysed based on the monitoring data. The optimized conjugate beam method is developed to analyse the lining deformation and the ground settlement. The PLAXIS 3D finite element model is utilized to study the effects of soil properties (cohesion and friction angle), tunnel depth and soil reinforcement on the tunnel lining deformation and ground settlement. Numerical modelling is further applied to simulate and predict the lining deformation of Foshan Metro Line 2 tunnels, which are compared with the monitoring data. The prediction results can effectively help to reduce the risks of large deformation and settlement in weak and soft grounds.
机译:本文通过理论分析,数值建模和现场监测研究了不同土壤中隧道衬砌结构的变形特征。在EPB盾构隧道期间,通过佛山地铁2号线2的隧道中的分布式光纤传感器监测节段衬里的变形。基于监测数据,分析了基于监测数据的结构变形特性,包括纵向应变和曲率,周向和纵向变形,隧道的横向沉降和贯穿隧道周向收敛。开发了优化的共轭光束法以分析衬里变形和地面沉降。 PLAXIS 3D有限元模型用于研究土壤性质(凝聚力和摩擦角),隧道深度和土壤加固对隧道衬砌变形和地面沉降的影响。数字建模进一步应用于模拟和预测佛山地铁线2隧道的衬里变形,与监测数据进行比较。预测结果可以有效地帮助降低弱和软化地的大变形和沉降的风险。

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