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首页> 外文期刊>Tunnelling and underground space technology >Predicted and observed settlements induced by the mechanized tunnel excavation of metro line C near S. Giovanni station in Rome
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Predicted and observed settlements induced by the mechanized tunnel excavation of metro line C near S. Giovanni station in Rome

机译:罗马S.Giovanni站附近地铁C线的机械隧道开挖引起的预测和观测沉降

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摘要

This paper deals with the effects induced by the mechanized excavation of Rome metro line C in the area of an old masonry building, the Carducci school. Class A settlements predictions are obtained performing full 3D soil-tunnel-structure interaction numerical analyses, using a simple elastic perfectly plastic soil constitutive model. The developed model realistically simulates the main excavation and construction features influencing the induced settlements, such as tunnel advancement, front pressure, TBM-EPB design (shield's weight, overcut and conicity), tail void grouting and grout hardening over time. The measured settlements are reported and compared with the results of numerical analyses performed before (class A prediction) and after tunnelling; the latter carried out to implement in the model the front pressure and TBM conicity actual values, both higher than assumed in the design. Since before the excavation the foundations were reinforced with micropiles, and these were not modelled, the comparison between monitoring data and numerical predictions is limited to the settlements outside the building. Monitoring data are also compared with further analyses conducted using small-strain soil stiffness and using a constitutive model able to reproduce the non-linearity of soil behavior (Hardening Soil). The different predictions of the two models are investigated analyzing the vertical strains distributions and the stress paths around the tunnel. Finally, a reasonable interpretation for the remaining differences between numerical results and field data is proposed and used to back-analyze the settlements, obtaining a satisfactory agreement. The results confirm the effectiveness of the proposed 3D numerical approach, associated with relatively simple soil constitutive models, as a tool to predict tunnelling-induced settlements both in the design and the construction phase, independently of the geotechnical context.
机译:本文探讨了罗马地铁C号线在旧砖石建筑Carducci学校附近的机械化开挖引起的影响。使用简单的弹性完美塑性土壤本构模型,进行完整的3D土-隧道-结构相互作用数值分析,即可获得A类沉降预测。所开发的模型真实地模拟了影响诱导沉降的主要开挖和施工特征,例如隧道前进,前压力,TBM-EPB设计(盾构的重量,过挖和锥度),尾部空隙灌浆和水泥浆随时间硬化。报告测量的沉降量,并将其与掘进之前(A类预测)和掘进之后进行的数值分析结果进行比较;后者是为了在模型中实施前压力和TBM锥度实际值,两者均高于设计中的假定值。由于在开挖之前,基础是用微型桩加固的,并且没有进行建模,因此,监测数据和数值预测之间的比较仅限于建筑物外的沉降。还将监测数据与使用小应变土壤刚度以及使用能够再现土壤行为非线性(硬化土壤)的本构模型进行的进一步分析进行比较。通过分析竖向应变分布和隧道周围的应力路径,研究了两种模型的不同预测。最后,对数值结果与现场数据之间的剩余差异提出了合理的解释,并用于对沉降进行反分析,获得了满意的协议。结果证实了与相对简单的土壤本构模型相关的拟议3D数值方法的有效性,该方法可作为预测在设计和施工阶段中隧道引起的沉降的工具,而与岩土环境无关。

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