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Three-Dimensional Numerical Analysis of Ground Surface Settlement induced by the Excavation of Shield Tunnels

机译:盾构隧道开挖引起的地表沉降三维数值分析

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When a shield machine pushes forward it causes the internal structure of the ground to change. Such changes take place on the vertical, lateral, and longitudinal dimensions, and is in essence a three dimensional problem. This study used the Taipei Metro system's double shield tunnels as an example and simulated the excavation conditions of single and double shield tunnels. A three-dimensional analysis model was created using a finite element program, PLAXIS 3D Tunnel. The relationship between tunnel contraction percentage in three dimensional analysis, ground loss used by empirical methods, and ground surface settlements caused by shield tunnel construction were investigated. The relationship between ground loss and tunnel contraction percentage could be represented by a linear equation. Moreover, dual-tunnel combinations were attempted as well as a ground surface settlement curve approximation and comparison on a double shield tunnel. Other than discussing the difference between 2D and 3D tunnel behaviors, suggestions were made for the normalization relationships of ID and 3D single tunnel contraction percentages and maximum ground surface settlements, which can provide a reference for the analysis and design of similar projects in the future.
机译:当盾构机向前推动时,会导致地面的内部结构发生变化。这种变化发生在垂直,横向和纵向尺寸上,并且本质上是一个三维问题。本研究以台北地铁系统的双盾隧道为例,模拟了单双盾隧道的开挖条件。使用有限元程序PLAXIS 3D Tunnel创建了三维分析模型。研究了三维分析中的隧道收缩率,经验法使用的地面损失与盾构隧道施工引起的地表沉降之间的关系。地面损耗与隧道收缩率之间的关系可以用线性方程表示。此外,还尝试了双隧道组合,以及双屏蔽隧道上的地面沉降曲线逼近和比较。除了讨论2D和3D隧道行为之间的差异外,还对ID和3D单隧道收缩率与最大地面沉降的归一化关系提出了建议,这可为将来类似项目的分析和设计提供参考。

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