Performance of the suspension method in large cross-section shallow-buried tunnels

Guoqing Cai , Xinxiang Zou , Qiang Zhang , Rui Yang , Tianchi Wu , Jiguang Li
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Abstract

Large cross-section tunnel construction induces ground surface settlements, potentially endangering both subterranean projects and nearby above-ground structures. A novel tunnel construction method, known as the suspension method, is introduced in this paper to mitigate surface settlement. The suspension method employs vertical tie rods to establish a structural connection between the initial tunnel support system and the surface steel beam, thereby exerting effective control settlements. To analyze the performance of the proposed method, systematic numerical simulations were conducted based on the practical engineering of Harbin Subway Line 3. The surface settlement and vault settlement characteristics during construction are investigated. The results show a gradual increment in both surface and vault settlement throughout the construction process, culminating in a stabilized state upon the completion of construction. In addition, compared to the double-side drift method and the Cross Diaphragm Method (CRD) method, the suspension method can obviously reduce the surface settlement and vault settlement. Moreover, the surface settlements and the axial force of tie rods were continuously monitored during the construction process at the trial tunnel block. These specific monitoring measurements are illustrated in comparison to numerical analysis results. The monitored results show great agreement with the numerical predictions, confirming the success of the project. This research can serve as a valuable practical reference for similar projects, offering insights and guidance for addressing ground surface settlements and enhancing construction safety in the domain of large cross-section tunneling.
悬架法在大断面浅埋隧道中的性能研究
大断面隧道施工引起地表沉降,对地下工程和附近的地上构筑物都有潜在的危害。本文介绍了一种新的隧道施工方法,即悬架法,以减轻地表沉降。悬架法采用竖向拉杆在初始隧道支护体系与面钢梁之间建立结构连接,有效控制沉降。为了分析该方法的性能,以哈尔滨地铁3号线为例进行了系统的数值模拟。研究了施工过程中地表沉降和拱顶沉降特征。结果表明,在整个施工过程中,地表和拱顶沉降均逐渐增加,并在施工完成时达到稳定状态。此外,与双侧漂移法和交叉隔膜法(CRD)相比,悬架法可以明显减少地表沉降和拱顶沉降。在试验隧道块体施工过程中,对地面沉降和拉杆轴力进行了连续监测。这些具体的监测测量与数值分析结果进行了比较。监测结果与数值预测结果吻合较好,证实了工程的成功。本研究可为类似工程提供有价值的实践参考,为大断面隧道领域解决地表沉降问题,提高施工安全性提供参考和指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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