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A Mitigation Technique to Reduce Ground Settlements Induced by Tunnelling Using Diaphragm Walls

机译:一种减少技术的方法,以减少地下连续墙引起的地面沉降

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摘要

Ground movements due to the excavation of shallow tunnels may cause damage or loss of functionality to nearby buildings: embedded diaphragm walls pre-installed between the tunnel and the building can be effective in reducing these movements thus preventing damage on existing structures. Plane strain finite element analyses are first presented in the paper in which a continuous diaphragm made by adjacent panels was modelled to evaluate the effects of different geometrical and mechanical parameters. For a limited set of these parameters, 3D FE analyses were also performed maintaining a plane strain excavation scheme to evaluate the effectiveness of an infinite diaphragm made by closely spaced piles. A 3D study is finally presented in which the horizontal diaphragm length needed to attain the same efficiency provided by an infinite diaphragm is evaluated. Completion of tunnel construction was assumed in both 2D and 3D studies.
机译:由于浅隧道的开挖而引起的地面运动可能会对附近的建筑物造成损害或功能丧失:预先安装在隧道与建筑物之间的嵌入式隔板墙可以有效地减少这些运动,从而防止对现有结构的破坏。本文首先提出了平面应变有限元分析,其中对由相邻面板制成的连续膜片进行建模,以评估不同几何和机械参数的影响。对于这些参数的有限集合,还进行了3D FE分析,以维持平面应变开挖方案,以评估由紧密间隔的桩制成的无限隔膜的有效性。最后提出了3D研究,其中评估了获得无限膜片所提供的相同效率所需的水平膜片长度。在2D和3D研究中均假定完成了隧道建设。

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