土工基础 ›› 2025, Vol. 39 ›› Issue (2): 196-199.

• 工程实录 • 上一篇    下一篇

商业综合体深基坑施工对临近地铁的影响

赵 月   

  1. (山东轨道交通勘察设计院有限公司,济南 250000)
  • 收稿日期:2023-11-10 修回日期:2023-11-23 出版日期:2025-04-30 发布日期:2025-06-03
  • 作者简介:赵月(1989-),女,工程师,研究方向为地铁基坑设计。

Influence of the Deep Excavation Construction of a Commercial Complex on the Adjacent Subway Tunnels

ZHAO Yue   

  1. (Shandong Rail Transit Survey and Design Institute Co. Ltd., Jinan 250000)
  • Received:2023-11-10 Revised:2023-11-23 Online:2025-04-30 Published:2025-06-03

摘要: 城市地铁是解决交通拥堵的重要手段之一,地铁线路数量也代表了城市发展情况。但地铁隧道对周边环境变化较为敏感,所以针对深基坑施工对临近地铁影响研究变得至关重要。以龙湖新东站TOD天街基坑工程为例,通过MIDAS/GTS对基坑开挖过程进行模拟,获得了基坑施工过程中隧道结构受力变形规律,并对隧道结构受力进行验算。结果表明,基坑打设第三道锚索以及打设第四道锚索时地表沉降变化显著,应着重关注该施工步基坑及隧道结构变形;隧道结构最大沉降与最大水平变形量与开挖步数呈线性关系,但最大水平位移变形量更加明显。基坑在满足设计要求的前提下,基坑开挖过程中,隧道管片内力满足原设计极限承载力设计要求。研究结果为临近既有地铁的深基坑施工提供依据,降低基坑施工过程中对周边环境的影响。


关键词: 深基坑, 临近地铁隧道, 有限元分析, 受力变形

Abstract: The urban subway is one of the important means to mitigate the traffic congestion, and the number of subway lines also represents the development status of the city. However, subway tunnels are more sensitive to changes in the surrounding environment, so it is crucial to study the impact of deep excavation construction on nearby subways. This article is based on the TOD Tianjie deep excavation project of Longhu New East Station. The excavation process is simulated using commercial software MIDAS/GTS, and the deformation of the tunnel structure during the deep excavation process is evaluated. The stress of the tunnel structure is checked and predicted. The results indicate that there is a significant change in the surface settlement during the installation of the third and fourth layers of ground anchors at the supporting structure. Special attention should be paid to the deformation of the excavated area and the tunnel structure during this construction phase; The maximum settlement and the maximum horizontal deformation of the tunnel structure are linearly related to the number of excavation steps, but the maximum horizontal displacement deformation is more obvious. To meet the design requirements, the internal force of the tunnel segments during the excavation process meets the original design requirements for the ultimate bearing capacity. The research results provide a basis for the construction of deep excavation adjacent to existing subways and reduce the impact of deep excavation construction on the surrounding environment.

Key words: Deep Excavations, Adjacent Subway Tunnels, Finite Element Analysis, Force and Deformation

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