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首页> 外文期刊>KSCE journal of civil engineering >3D Discrete Element Method Modelling of Tunnel Construction Impact on an Adjacent Tunnel
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3D Discrete Element Method Modelling of Tunnel Construction Impact on an Adjacent Tunnel

机译:隧道施工对邻近隧道影响的3D离散元建模

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摘要

Closely-spaced side-by-side mechanized twin tunnels are commonly used in urban metro transit systems. The aim of this paper was to investigate the influence of tunnel construction on an adjacent existing tunnel using the 3D discrete element method (DEM) and propose a new method to protect the existing tunnel. The first tunnel at the left side was initially included in the DEM model. The construction of the second adjacent tunnel at the right side was then modelled in phases. Displacement, stress variation, porosity variation, and coordination of surroundings of the first tunnel were investigated. The results showed that the excavation of the second tunnel had a great negative impact on the existing tunnel surroundings when the distance of twin tunnels was less than the diameter of the tunnel. The maximum horizontal displacement occurred at the angle of 45 degrees and was equal to 103 mm. The influenced area of the existing tunnel is the surroundings between the tunnel crown and the spring line on the second tunnel side near the tunnel lining. The composite reinforcement method consists of pasted fiber reinforced plastic (FRP) sheet method and grouting in a specific area; thus, the structure safety and the normal operation of the existing tunnel nearby can be guaranteed. The protective method can give reference for similar project.
机译:在城市地铁运输系统中通常使用间距较小的并排机械化双隧道。本文的目的是使用3D离散元方法(DEM)研究隧道施工对相邻现有隧道的影响,并提出一种保护现有隧道的新方法。左侧的第一个隧道最初包含在DEM模型中。然后,分阶段对右侧第二条相邻隧道的构造进行建模。研究了第一条隧道的位移,应力变化,孔隙率变化以及周围环境的协调性。结果表明,当双隧道的距离小于隧道直径时,第二隧道的开挖对现有隧道环境具有很大的负面影响。最大水平位移发生在45度角处,等于103 mm。既有隧道的影响区域为隧道顶部与隧道衬砌附近的第二隧道侧弹簧线之间的周围环境。复合加固方法包括粘贴纤维增强塑料(FRP)片材方法和在特定区域进行灌浆;这样可以保证附近现有隧道的结构安全和正常运行。保护方法可为类似工程提供参考。

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