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Twin tunnel excavation in coarse grained soils: Observations and numerical back-predictions under free field conditions and in presence of a surface structure

机译:粗粒土壤中的双隧道开挖:在自由场条件下和存在表面结构的情况下的观测值和数值反演

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In this paper the effects induced by twin-tunnelling on ground and structure settlements is analysed and discussed. The study refers to the case of the Milan metro-line 5, recently excavated in coarse-grained materials using earth pressure balance machines. Firstly, settlement measurements under free-field conditions are back-interpreted using the classical Gaussian empirical predictions, providing a detailed description of the modification of the subsidence profile due to the second excavation with respect to the single tunnel configuration. The in situ measurement analysis is subsequently extended to explore the evolution of the structural response of a nine-storey reinforced concrete surface building, under-crossed by the metro-line, as observed during the tunnelling activities. In the second part, the paper illustrates a three-dimensional finite element back-analysis of the above case history. The soil mechanical behaviour is described by an advanced constitutive model (named Hardening Soil model with small strain stiffness), the twin-tunnelling is properly schematised taking into account the main aspects of the excavation sequence and the building is modelled in a realistic fashion in terms of geometry, stiffness and weight properties. The computed results, in good agreement with the settlement monitoring data, are capable to capture the interaction phenomena occurring between the twin tunnels during the construction works and to describe the evolution of the deformative mechanisms affecting the building facades. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文分析并讨论了双隧道对地面和结构沉降的影响。该研究以米兰地铁5号线为例,该地铁线最近是使用土压力平衡机以粗粒材料开挖的。首先,使用经典的高斯经验预测对自由场条件下的沉降测量值进行反演,从而详细描述了由于第二次开挖而导致的沉降曲线变化。随后扩展了现场测量分析,以探索在隧道活动期间观察到的九层高的钢筋混凝土表面建筑物的结构响应的演变,该建筑物被地铁线路穿越。在第二部分中,本文说明了上述案例历史记录的三维有限元反向分析。用先进的本构模型(称为具有较小应变刚度的硬化土模型)描述土壤的力学行为,考虑开挖顺序的主要方面对双隧道进行了适当的图解,并以逼真的方式对建筑物进行建模。的几何形状,刚度和重量属性。计算结果与沉降监测数据非常吻合,能够捕捉到施工期间双隧道之间发生的相互作用现象,并描述影响建筑物立面的变形机制的演变。 (C)2015 Elsevier Ltd.保留所有权利。

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