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Application of the Upper-Bench CD Method in Super Large-Span and Shallow Tunnel: A Case Study of Letuan Tunnel

机译:高位板CD法在超大跨度和浅隧道中的应用 - 以伦敦隧道为例

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In order to keep pace with fast urbanization and explosive growth of highway traffic volume in China, more and more super large-span tunnels are constructed or will be constructed in the coming years. It is of great significance to employ a suitable construction method for ensuring construction safety when tunnelling in a complicated geological environment. Based on the reconstruction and expansion project of Binlai in China, this paper aims at studying deformation behaviors and mechanical properties of super large-span and shallow tunnel constructed using the upper-bench CD method. The study results showed that the crown settlement of the pilot tunnel was larger than that of the rear guide tunnel, and the deformation of rock mass tended to be stable after 60 days of excavation. The structural stress changed greatly in the construction stage, the stress distribution of steel rib was mainly under compression, and the maximum compressive stress of shotcrete appeared at the tunnel vault. The supporting structure was always kept in a safe state, and its safety factor was higher than 1.5. However, the upper-bench CD method has poor performance in controlling surface subsidence and horizontal convergence. The study of this paper provides a new construction method and useful reference for similar super large-span tunnels.
机译:为了跟上中国公路交通量快速的城市化和爆炸性增长,越来越多的大跨度隧道建造或将在未来几年内建造。采用合适的施工方法具有重要意义,以确保在复杂的地质环境中隧道隧穿时确保施工安全性。基于中国Binlai的重建和扩建项目,本文旨在使用上台CD法研究超大跨度和浅隧道的变形行为和力学性能。研究结果表明,先导隧道的冠沉降大于后导隧道的冠状隧道,岩体的变形往往在挖掘60天后稳定。结构压力大大变化,施工阶段,钢肋的应力分布主要是压缩,并且隧道拱顶出现了喷射的最大压缩应力。支撑结构始终保持在安全状态,其安全系数高于1.5。然而,上台CD方法在控制表面沉降和水平收敛方面具有差的性能。本文的研究为类似的超大跨度隧道提供了一种新的施工方法和有用的参考。

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