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某紧临地铁车站土岩基坑设计与变形规律研究
引用本文:金雪峰.某紧临地铁车站土岩基坑设计与变形规律研究[J].地下空间与工程学报,2021,17(3):815-824.
作者姓名:金雪峰
作者单位:广州市天作建筑规划设计有限公司,广州 510623
摘    要:广州某紧临地铁车站土岩组合深基坑,开挖深度大,周边环境复杂,变形控制要求非常严格。依据实际监测数据,详细分析了基坑施工各阶段的围护结构变形、土岩体侧移、支撑轴力、锚索拉力及周边环境沉降的变化规律。分析结果表明:围护墙与外侧土岩体最大水平位移均发生在土岩结合面附近;基坑开挖结束至底板施工期间,围护墙及外侧土岩体水平变形呈蠕变特点;地下室采用的“复合墙”及跳仓法施工技术,使施工完毕后的围护墙、土岩体水平位移均发生了明显回弹,最大水平位移约为开挖至基底时的40%~60%;开挖引起的周边地面沉降最大值发生在离坑边0.5倍开挖深度附近,沉降值约为邻近围护墙最大水平位移的0.47倍;条件允许时,土岩组合基坑可优先采用支撑+锚索组合支护方案。本工程的监测数据相互印证,揭示了该土岩深基坑在各种条件下的实际工作状况,可为类似情况深基坑的设计与施工提供参考。

关 键 词:土岩组合基坑  监测数据  围护结构变形  土岩体侧移  回弹
收稿时间:2020-04-22

Study on Design and Deformation Law of Soil-rock Composite Foundation Pit Close to Metro Station
Jin Xuefeng.Study on Design and Deformation Law of Soil-rock Composite Foundation Pit Close to Metro Station[J].Chinese Journal of Underground Space and Engineering,2021,17(3):815-824.
Authors:Jin Xuefeng
Abstract:A deep foundation pit of soil-rock combination adjacent to metro station is located in Guangzhou. The excavation depth is large, and the surrounding environment is complex, and the deformation control requirements are very strict. Based on the actual monitoring data, the variation laws of surrounding structure deformation, lateral displacement of soil and rock mass, support axial force, anchor cable tension and surrounding environment settlement in each stage of foundation pit construction were analyzed in detail. The results show that the maximum horizontal displacement of the retaining wall and the surrounding soil and rock mass occurs near the soil-rock interface; from the end of foundation pit excavation to the construction of floor, the horizontal deformation of retaining wall and lateral soil and rock mass presents creep characteristics; the construction technology of "composite wall" and the hopping method adopted in basement make the horizontal displacement of retaining wall, soil, and rock mass rebound obviously after construction, and the maximum horizontal displacement is about 40%~60% when the basement is excavated; the maximum ground subsidence caused by excavation occurs near the excavation depth of 0.5 times from the pit edge, and the settlement value is about 0.47 times of the maximum horizontal displacement of the adjacent retaining wall. If the conditions permit, the support + anchor cable combination support scheme can be preferred for the soil-rock composite foundation pit. The monitoring data of this project confirm each other and reveal the actual working conditions of this deep foundation pit under various conditions, which can provide reference for the design and construction of similar deep foundation pit.
Keywords:soil-rock combination foundation pit  monitoring data  deformation of retaining wall  lateral displacement of soil and rock mass  rebound deformation  
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