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Tunnel Portal Construction using Sequential Excavation Method: A Case Study

机译:隧道门户施工采用顺序挖掘方法:案例研究

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摘要

Portal excavation in soft rock is one of the most challenging tasks in the construction of underground facilities. Significant convergence, collapses and surface settlement are usually associated with portal construction. Alluvium is loose unconsolidated material and most often tunnels constructed through tend to destabilize. In this study, portal excavation design has been analyzed using the finite element based computer program known as Phase2. The method of top heading and benching was not a suitable approach, keeping in view the previous experience. Subsequently, a different design of sequential excavation method (SEM) was proposed. Minimum convergence, minimum surface settlement, and machinery constraints were considered to be the vital importance for selection of final design. The results of finite element method (FEM) analysis showed that the finally selected SEM design has a roof convergence of 4 mm for the heading and full face excavation has 25 mm. These values were comparable with the ones obtained from a 5-pin convergence station, installed during the portal excavation (0.5 m inside from the portal). No or very little surface settlement was shown by the numerical model and actual field observation. Consequently, a proper SEM design based on numerical modeling allowed a successful construction of a large portal in alluvial deposits.
机译:软岩中的门户挖掘是建造地下设施中最具挑战性的任务之一。显着的收敛性,折叠和表面沉降通常与门户施工相关联。加济uium是松散的不结容物质,并且大多数经常通过倾向于破坏稳定的隧道。在这项研究中,使用称为阶段2的有限元计算机程序分析了门户挖掘设计。顶部标题和台式的方法不是一种合适的方法,保持依据以前的经验。随后,提出了不同设计的顺序挖掘方法(SEM)。最小收敛,最小表面沉降和机械约束被认为是选择最终设计的重要性。有限元方法(FEM)分析的结果表明,最终选择的SEM设计具有4毫米的屋顶收敛,并且全面挖掘具有25毫米。这些值与从5针汇聚站获得的值相当,安装在门户挖掘期间(门户网站内部0.5米)。数值模型和实际场观察显示没有或非常小的表面沉降。因此,基于数值模型的适当SEM设计允许成功构建大型门户在发生冲积沉积物中。

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