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Comparison Of Analytical Method, 3d Finite Element Model With Experimental Subsidence Measurements Resulting From The Extension Of The Milan Underground

机译:米兰地铁扩建导致的分析方法,3d有限元模型与实验沉降测量的比较

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The construction of shallow tunnels induces a state of strain in the soil around the excavation that could cause damaging differential displacements in existing structures near the tunnel. In the last decades several empirical, analytical and numerical approaches have been presented by different authors in the scientific literature with a purpose toward estimating maximum surface displacements along the tunnel axis and the surface-area extension affected by deformation phenomena. This paper reports the results of a study carried out to estimate the values of the surface settlements induced by the excavation (with an EPB-S shield machine) of the new extension of line 1 of the Metropolitana Milanese, constructed in an alluvial sandy area of the Padana Plain. In particular, the purpose of this study has been to compare the vertical surface displacements monitored during the advancing excavation to the settlements estimated by using analytical and empirical formulations and by setting up a three-dimensional finite element model that could simulate, step by step, the different tunnel excavation and supporting phases.
机译:浅埋隧道的建设会在开挖周围的土壤中产生应变状态,这可能会导致隧道附近现有结构的破坏性位移发生破坏。在过去的几十年中,不同的作者在科学文献中提出了几种经验,分析和数值方法,目的是估计沿隧道轴线的最大表面位移和受变形现象影响的表面区域扩展。本文报告了一项研究结果,该研究结果估计了米兰大都会(Metropolitana Milanese)1号线新扩建工程的开挖(使用EPB-S盾构机)引起的地面沉降值。帕达纳平原。尤其是,本研究的目的是将行进开挖期间监测的垂直表面位移与通过使用分析和经验公式以及通过建立可逐步模拟的三维有限元模型估算的沉降量进行比较。不同的隧道开挖和支护阶段。

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