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Three-dimensional numerical simulation of a mechanized twin tunnels in soft ground

机译:机械化双软隧道的三维数值模拟

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The increase in transportation in large cities makes it necessary to construct of twin tunnels at shallow depths. Thus, the prediction of the influence of a new tunnel construction on an already existing one plays a key role in the optimal design and construction of close parallel shield tunnels in order to avoid any damage to the existing tunnel during and after excavation of the new tunnel. Most of the reported cases in the literature on parallel mechanized excavation of twin tunnels have focused on the effects of the ground condition, tunnel size, tunnel depth, surface loads, and relative position between the two tunnels on tunnel behaviour. The numerical investigation performed in this study, using the FLAC~(3D) finite difference element programme, has made it possible to include the influence of the construction process between the two tunnels. The structural forces induced in both tunnels and the development of the displacement field in the surrounding ground have been highlighted. The results of the numerical analysis have indicated a great impact of a new tunnel construction on an existing tunnel. The influence of the lagged distance between the two tunnels faces has also been highlighted. Generally, the simultaneous excavation of twin tunnels causes smaller structural forces and lining displacements than those induced in the case of twin tunnels excavated at a large lagged distance. However, the simultaneous excavation of twin tunnels could result in a higher settlement above the two tunnels.
机译:大城市交通的增加使得有必要在浅深度建造双隧道。因此,对新隧道施工对已经存在的隧道的影响的预测在密闭平行盾构隧道的最佳设计和施工中起着关键作用,以避免在开挖新隧道期间和之后对现有隧道造成任何损害。 。在双隧道平行机械化开挖文献中,大多数已报道的案例都集中在地面状况,隧道尺寸,隧道深度,地表荷载以及两个隧道之间的相对位置对隧道性能的影响上。在这项研究中,使用FLAC〜(3D)有限差分单元程序进行的数值研究使包括两个隧道之间的施工过程的影响成为可能。隧道中引起的结构力和周围地面位移场的发展都得到了强调。数值分析结果表明,新建隧道对现有隧道的影响很大。还突出了两个隧道面之间的滞后距离的影响。通常,与在大的滞后距离开挖的双隧道相比,双隧道的同时开挖引起的结构力和衬砌位移较小。但是,同时开挖双隧道可能导致两条隧道上方更高的沉降。

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