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管飞. 上软下硬土层中某深大基坑的优化设计[J]. 岩土工程学报, 2012, 34(suppl): 581-584.
引用本文: 管飞. 上软下硬土层中某深大基坑的优化设计[J]. 岩土工程学报, 2012, 34(suppl): 581-584.
GUAN Fei. Optimal design of a ultra-large deep excavation in complicated clay[J]. Chinese Journal of Geotechnical Engineering, 2012, 34(suppl): 581-584.
Citation: GUAN Fei. Optimal design of a ultra-large deep excavation in complicated clay[J]. Chinese Journal of Geotechnical Engineering, 2012, 34(suppl): 581-584.

上软下硬土层中某深大基坑的优化设计

Optimal design of a ultra-large deep excavation in complicated clay

  • 摘要: 通过认真研究场地的工程地质和水文地质特点、基坑的几何特征、基坑周围的环境保护要求和基坑施工的工期造价要求等相关条件,进行有针对性的优化设计。考虑场地土层上软下硬的特点,采用复合土钉墙围护浅层土体,降低基坑第一道支撑的标高,从而只用一道支撑。采用可形成开敞空间的圆环型支撑体系与钻孔灌注桩组成基坑的围护结构。分别采用同济启明星和Plaxis二维有限元软件对基坑围护结构进行了计算,施工过程中进行了全程监测,计算结果和监测数据反馈均说明该优化方案的合理性和有效性,可为类似工程参考。

     

    Abstract: For the optimization design it is crucial to comprehensively study geotechnical investigation reports, geometric parameters of excavations, protection requirements of surrounding environment budget and time limit for the project. In this case, the composite soil-nailing wall is adopted to stabilize the shallow soil layers so that the floor numbers of bracing system can be reduced to only one considering the hardpan under soft soil. Circular reinforced concrete bracings which can form open construction space and cast-in place piles are used together to constitute the retaining structure system. The deformation and stability of the excavation are analyzed by adopting Tongji Qistar and Plaxis 2D. The monitoring work is carried out during the whole construction process. The rationality and effectiveness of the optimized scheme are tested by the results of the analysis and the monitoring data and can be used for similar projects.

     

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