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Analysis on Deformation and Stress Characteristics of a Multibraced Pit-in-Pit Excavation in a Subway Transfer Station

机译:地铁转移站多纤维坑内挖掘机挖掘变形和应力特性分析

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As an important part of subway transfer station construction, pit-in-pit (PIP) excavation has always been a key object of monitoring and control. In this study, taking the PIP excavation project of Hefei metro line 4 and line 7 transfer station as the background, combined with on-site monitoring and numerical simulation, the variation law of lateral wall displacement, ground surface settlement, and strut force during the PIP excavation were analyzed. The results showed that the maximum lateral deformation of the pile caused by the excavation of the external pit accounted for 80%–90% of the total deformation and the surface settlement accounted for 70% of the total settlement. The excavation of the inner pit only made the maximum lateral wall displacement of the outer pit and the surface settlement behind the wall increase slightly, the growth rate tended to zero, and the maximum lateral deformation depth was all above the excavation surface, which indicated that, for this project, the inner excavation had little effect on the outer pit retaining structure. In addition, the increased exposure time of the soil at the bottom of the pit and the presence of the corner effect will cause the further development of the structure displacement and the surface settlement. Based on strut force measurements, using the tributary area load distribution procedure, it was obtained that 0.3γHe was used as the upper limit index of strut force in the region, where γ is the weight of the soil and He is the excavation depth of the foundation pit. The research conclusions were helpful for the construction and sustainable development of the PIP project.
机译:作为地铁传输站建设的重要组成部分,坑内坑(PIP)挖掘一直是监控和控制的关键对象。在这项研究中,采用合肥地铁4号线的PIP开挖工程和第7行转移站作为背景,结合现场监测和数值模拟,横向壁位移,地面沉降和支柱的变化定律分析了PIP挖掘。结果表明,外部坑开挖引起的桩的最大横向变形占总变形的80%-90%,表面沉降占总沉降的70%。内坑的挖掘仅使外凹坑的最大横向壁位移和壁后面的表面沉降略微增加,生长速率趋于为零,并且最大横向变形深度都在挖掘表面上方,这表明了这一点为该项目,内部挖掘对外坑保持结构几乎没有影响。此外,凹坑底部的土壤的曝光时间增加以及角效应的存在将导致结构位移和表面沉降的进一步发展。基于支柱力测量,使用支流面积负荷分布程序,得到0.3γHE被用作该区域中支柱力的上限指数,其中γ是土壤的重量,他是挖掘深度基坑。研究结论有助于对PIP项目的建设和可持续发展。

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