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Investigation of surface and subsurface displacements due to multiple tunnels excavation in urban area

机译:城市多隧道开挖引起的地表和地下位移研究

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摘要

Underground structures are currently widely used and are built as urbanism develops. The interactions between perpendicularly crossing and parallel tunnels in the Tehran region are investigated by using a full three-dimensional (3D) finite difference analysis with elastic-plastic material models. Special attention is paid to the effect of subsequent tunneling on the support system, i.e., the shotcrete lining and rock bolts of the existing tunnel. Eventually, as the tunnels are excavated at certain levels, the interaction between the tunnels will certainly have a significant influence on both stress distribution and consequently deformations. Since multilayer tunneling is a three-dimensional phenomenon in nature, 3D numerical solutions must be utilized for analyzing effect of perpendicularly crossing tunnels at various levels. As Tohid twin tunnels and Line 7 pass beneath the Line 4 metro tunnel, changes in stress distribution, deformations, and surface settlements are studied for various conditions and the results are presented in this paper. Consequently, it is shown that there is a significant interaction between tunnels that necessitate certain preventive measures to maintain a stable tunneling operation.
机译:地下结构目前被广泛使用,并且随着城市主义的发展而建造。通过使用具有弹塑性材料模型的完整三维(3D)有限差分分析,研究了德黑兰地区垂直交叉和平行隧道之间的相互作用。要特别注意后续开挖对支撑系统的影响,即现有隧道的喷射混凝土衬砌和锚杆。最终,随着隧道在一定水平上的开挖,隧道之间的相互作用必将对应力分布和变形产生重大影响。由于多层隧道本质上是一种三维现象,因此必须使用3D数值解来分析垂直交叉隧道在各个级别上的效果。当Tohid双隧道和7号线通过4号线地铁隧道下方时,研究了各种条件下应力分布,变形和表面沉降的变化,并在本文中给出了结果。因此,表明隧道之间存在重大的相互作用,需要采取某些预防措施来维持稳定的隧道作业。

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