Cai Liping, Shi Kang, Jiang Feng, Chen Guanyi, Xiao Zhiyong, Zheng Chengcheng, Zhang Shuai, Wu Yue
Shandong University of Science and Technology, Qingdao, 266590, China.
Qingdao City University, Qingdao, 266106, China.
Sci Rep. 2024 Jan 2;14(1):265. doi: 10.1038/s41598-023-50855-1.
Earth pressure shields are widely used in tunnel construction due to their low environmental impact and mechanized operations. However, ensuring the stability of the excavation surface during the construction process is crucial. Any instability in the excavation surface can lead to soil destruction, such as body collapse or surface uplift. Additionally, the tunneling process can cause deformation disturbances to nearby buildings. In the case of Beijing Metro Line 17, detailed survey data and construction monitoring data were collected through field surveys and tests. The study combined theoretical analysis and numerical simulations to investigate the impact of shield tunneling in clay layers on neighboring buildings. The focus was on analyzing the physical deformation and the response law of influencing factors, such as stratum parameters and engineering effects on surface settlement, building inclination, and distortion. Furthermore, sensitivity analysis of the deformation impact was conducted, and corresponding measures for deformation control were proposed.
土压盾构由于其对环境影响小且作业机械化,在隧道施工中被广泛应用。然而,在施工过程中确保开挖面的稳定性至关重要。开挖面的任何不稳定都可能导致土体破坏,如土体坍塌或地面隆起。此外,隧道施工过程可能会对附近建筑物造成变形扰动。以北京地铁17号线为例,通过现场调查和测试收集了详细的勘测数据和施工监测数据。该研究结合理论分析和数值模拟,探讨了黏土地层中盾构隧道施工对邻近建筑物的影响。重点分析了物理变形以及地层参数等影响因素对地表沉降、建筑物倾斜和变形的响应规律及工程效应。此外,还进行了变形影响的敏感性分析,并提出了相应的变形控制措施。