Analysis of the influence of super large area and super deep foundation pit excavation construction on surrounding subways

Liang-Tao Xie, Shaoqing Liu
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Abstract

The shortest distance from the deep foundation pit envelope of the project to the subway station building is only 7.7 meters, and the deepest excavation depth of the foundation pit is about 24 meters. The surrounding environment of the foundation pit is complex, involving many buildings, the construction is difficult, and there is a great risk of construction safety. The effective control of the structural deformation of the existing subway station is the key to selecting the underground enclosure structure and construction process of the surrounding post-construction projects. Combined with the actual situation of the project, the three-dimensional numerical analysis method is used to analyze the impact of the construction of the foundation pit of the building on its adjacent structures in detail, and the relevant treatment measures are proposed. The research shows that the unloading effect caused by the large-scale excavation causes the soil outside the pit to move towards the inside of the pit. Under the influence of the soil deformation transfer effect, the Beiguan Station of the R1 line subway produces certain rebound, settlement and horizontal displacement, but the values of each deformation index are within the deformation control standard, the numerical analysis considering the influence of small soil strain can better reflect the influence of foundation pit excavation on the displacement, deformation and internal force of the existing structure. It can better match the actual engineering experience.
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超大面积超深基坑开挖施工对周边地铁的影响分析
本工程深基坑围护结构至地铁站建筑的最短距离仅为7.7米,基坑最深开挖深度约为24米。基坑周边环境复杂,涉及建筑物多,施工难度大,存在很大的施工安全风险。现有地铁车站结构变形的有效控制是地下围护结构选择和周边后期工程施工过程的关键。结合工程实际情况,采用三维数值分析方法,详细分析了该建筑基坑施工对其相邻结构的影响,并提出了相应的处理措施。研究表明,大规模开挖引起的卸荷效应导致基坑外土体向基坑内移动。R1线地铁北关站在土体变形传递效应的影响下,产生一定的回弹、沉降和水平位移,但各变形指标值均在变形控制标准范围内,考虑小土应变影响的数值分析能较好地反映基坑开挖对既有结构位移、变形和内力的影响。它可以更好地匹配实际的工程经验。
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