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刘帅君, 王晓东, 王建华, 陈锦剑. 越江隧道临岸段明挖基坑受力变形数值分析[J]. 岩土工程学报, 2013, 35(zk2): 330-334.
引用本文: 刘帅君, 王晓东, 王建华, 陈锦剑. 越江隧道临岸段明挖基坑受力变形数值分析[J]. 岩土工程学报, 2013, 35(zk2): 330-334.
LIU Shuai-jun, WANG Xiao-dong, WANG Jian-hua, CHEN Jin-jian. Numerical analysis of cut-and-cover excavation part of a cross-river tunnel[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(zk2): 330-334.
Citation: LIU Shuai-jun, WANG Xiao-dong, WANG Jian-hua, CHEN Jin-jian. Numerical analysis of cut-and-cover excavation part of a cross-river tunnel[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(zk2): 330-334.

越江隧道临岸段明挖基坑受力变形数值分析

Numerical analysis of cut-and-cover excavation part of a cross-river tunnel

  • 摘要: 越江公路隧道的临岸段包括敞开段和暗埋段,多采用明挖基坑施工。受制于城市的紧张用地,越来越多的临岸段工程位于复杂的建设场地中,且环境保护要求较高。上海打浦路隧道复线工程浦西岸上段地处现有日晖港河道内,地质条件和周边环境复杂。为确保河道内隧道基坑顺利施工,先对日晖港清淤回填加固处理,在回填土中开挖基坑。采用考虑土体HS模型的数值分析方法,对清淤填浜的回填地基土中明挖暗埋隧道的施工过程进行分析,讨论了基坑和周边地层、建构筑物的变形特征。隧道临岸段明挖基坑施工的监测结果表明,围护结构变形、坑外地表沉降和邻近建构筑物位移的计算结果均与实测基本吻合,对现状河道回填加固后再开挖基坑的施工效果良好。

     

    Abstract: The riverside parts of cross-river tunnels, including embedded section and open section, are usually constructed by the excavation method. Limited by the inadequate supply of urban land, the construction field and surrounding environment of such excavation are becoming more and more complex when the cross-river tunnel is built in the center of city. Puxi riverside section of Shanghai Dapu Road double-line tunnel project is located in the present Rihui River where the geological conditions and adjacent underground structures are complex. To ensure the safe construction process of the cut-and-cover tunnel structure, the refilled soil in river channel is improved after the mud layer in the riverbed is removed, and then the open excavation is carriedout in the refilled soil layer. A numerical method, in which hardening-soil model is adopted, is used to analyze the behaviors of the cut-and-cover excavation and to discuss the ground settlement and displacement of adjacent structures. Comparison shows that the predicted value of the retaining structure displacement, ground settlement and motion of adjoining construction are approximately consistent with the measurements. It is also demonstrated that the proposed construction method for such a excavation in refilled river is efficient.

     

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