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地铁中间风井深基坑围护结构变形规律分析 被引量:5
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作者 李阳 漆泰岳 王睿 《铁道建筑》 北大核心 2014年第2期38-40,共3页
以成都地区砂卵石地层一地铁风井深基坑工程为背景,采用现场监测与三维数值模拟相结合的方法,研究了开挖过程中地铁风井深基坑围护结构的变形规律。将数值计算值与实测值进行了比较,两者的水平位移变化趋势基本一致,钢支撑轴力比较接近... 以成都地区砂卵石地层一地铁风井深基坑工程为背景,采用现场监测与三维数值模拟相结合的方法,研究了开挖过程中地铁风井深基坑围护结构的变形规律。将数值计算值与实测值进行了比较,两者的水平位移变化趋势基本一致,钢支撑轴力比较接近,表明所建模型用来研究深基坑的变形规律是可行的,该深基坑工程采用的围护结构设计和施工方案能够确保基坑开挖安全。 展开更多
关键词 深基坑 变形规律现场监测 数值模拟
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某大型基坑施工临近既有轨道交通隧道结构监测实例分析
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作者 刘健 《城市情报》 2022年第4期109-111,共3页
随着城市轨道交通线网的不断发展,地铁保护区的施工项目也越来越多,大型基坑施工的安全风险级别高,受到各方的高度关注。本文以某大型基坑施工临近既有轨道交通隧道结构为例,对项目开展的基坑监测及地铁隧道专项监测情况进行论述与分析... 随着城市轨道交通线网的不断发展,地铁保护区的施工项目也越来越多,大型基坑施工的安全风险级别高,受到各方的高度关注。本文以某大型基坑施工临近既有轨道交通隧道结构为例,对项目开展的基坑监测及地铁隧道专项监测情况进行论述与分析,研究基坑及隧道变形规律,也为类似工程地铁保护区监测提供经验。 展开更多
关键词 大型基坑 临近既有轨道交通 监测变形规律
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Analysis of mechanical behaviors of big pipe roof for shallow buried large-span tunnel
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作者 Li Jian Tan Zhongsheng +1 位作者 Yu Yu Guo Xiaohong 《Engineering Sciences》 EI 2013年第6期32-37,共6页
A series of researches on mechanical behaviors of big pipe roof for shallow large-span loess tunnel were carried out based on the Wenxiang tunnel in Zhengzhou—Xi'an Special Passenger Railway. The longitudinal def... A series of researches on mechanical behaviors of big pipe roof for shallow large-span loess tunnel were carried out based on the Wenxiang tunnel in Zhengzhou—Xi'an Special Passenger Railway. The longitudinal deformations of the pipe roofs were monitored and the mechanical behaviors of the pipe roofs were analyzed at the test section. A new double-parameter elastic foundation beam model for pipe roof in shallow tunnels was put forward in Wenxiang tunnel. The measured values and the calculation results agreed well with each other,revealing the force-deformation law of big pipe roof in loess tunnel:At about 15 m in front of the excavating face,the pipe roof starts to bear the load;at about 15 m behind the excavating face,the force of the pipe roof tends to be stabilized;the longitudinal deformation of the whole pipe roofs is groove-shaped distribution,and the largest force of pipe roofs is at the excavating face. Simultaneously,the results also indicate that mechanical behaviors of pipe roof closely relate to the location of the excavation face,the footage of the tunnelling cycle and the mechanics parameters of pipe roof and rock. The conclusions can be reference for the design parameter optimization and the construction scheme selection of pipe roofs,and have been verified by the result of numerical analysis software FLAC3Dand deformation monitoring. 展开更多
关键词 shallow burying mining underpass construction loess tunnel pipe roof deformation monitoring mechanical behavior
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