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Design of sequential excavation method for large span urban tunnelsin soft ground - Niayesh tunnel

机译:大跨度城市软弱隧道隧道开挖方法设计-尼亚什隧道

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摘要

Modern tunnel design and construction requires appropriate techniques and technologies during all phases of a tunnel project. Selecting a suitable excavation procedure for large span urban tunnel projects in soft ground is a key factor for successful construction of the project. The costs and time for tunnel construction are strongly influenced by the choice of the excavation procedure. This research focuses on the selection of excavation method, excavation sequence and optimum trailing distance between different excavation stages in soft ground urban tunnelling. Considering soft ground condition and the big cross section of the Niayesh urban road tunnel project, sequential excavation method (SEM) was selected for tunnel construction. In this phase, Central Diaphragm (CD) and Side wall Drift (SD) methods were proposed for tunnel construction and appropriate method was selected based on its potential to limit surface settlements. Then, different excavation sequences considering side wall drift method were planned and modelled using three dimensional finite element method and optimal excavation sequence was selected. Finally, the trailing distance between different excavation stages were analysed numerically and the optimal distance with minimum surface settlement was determined.
机译:现代隧道的设计和施工在隧道项目的所有阶段都需要适当的技术。为软土地基上的大跨度城市隧道项目选择合适的开挖程序是项目成功建设的关键因素。开挖程序的选择对隧道施工的成本和时间有很大的影响。本研究着眼于软土城市隧道开挖方法的选择,开挖顺序和不同开挖阶段之间的最佳牵引距离。考虑到软弱的条件和尼亚耶什城市道路隧道项目的大断面,选择了顺序开挖法(SEM)进行隧道施工。在这一阶段,建议采用中央膜片(CD)和侧壁漂移(SD)方法进行隧道施工,并根据其限制地表沉降的潜力选择合适的方法。然后,利用三维有限元方法对考虑侧壁漂移法的不同开挖顺序进行了规划和建模,并选择了最佳开挖顺序。最后,数值分析了不同开挖阶段之间的拖曳距离,并确定了具有最小表面沉降的最佳距离。

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