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Design and construction of a deep excavation in soft soils adjacent to the Shanghai Metro tunnels

机译:上海地铁隧道软土深基坑的设计与施工

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摘要

This paper presents the design and construction of a deep excavation for building foundations in saturated soil. This deep excavation was of particular interest because it was located above and beside the Shanghai Metro tunnels. The twin Shanghai Metro tunnels had to be in full operation during the deep excavation. Potential large deformation of the twin tunnels was one of the main concerns during the design and construction for the deep excavation. The paper discusses in detail the criteria and measures for controlling the soil and tunnel deformation. The measures included cast-in-place concrete diaphragm walls with bracing structural members, pumping consolidation, cement-soil mix pile systems, and rational excavation procedures. A simplified theoretical method was proposed to estimate the increment in undrained shear strength in a soft clay layer due to pumping consolidation. Furthermore, conventional finite element methods were used to predict the soil vertical and horizontal displacements induced by the excavation. Using the design and construction methods discussed in the paper, the settlement and horizontal displacement of the tunnels were successfully controlled within 5.0 mm and 9.0 mm, respectively. The curvature of longitudinal deformation curve of the tunnels was less than 1/15 000. The horizontal displacement of the braced diaphragm walls was less than 0.12% of the total excavation depth.
机译:本文介绍了在饱和土壤中建筑基础的深基坑的设计和施工。这种深基坑特别有趣,因为它位于上海地铁隧道的上方和旁边。在深挖过程中,上海地铁的双隧道必须全部投入运营。在深基坑的设计和施工过程中,双隧道的潜在大变形是主要问题之一。本文详细讨论了控制土壤和隧道变形的标准和措施。措施包括采用带支撑结构构件的现浇混凝土隔板墙,泵送加固,水泥-土拌和桩系统以及合理的开挖程序。提出了一种简化的理论方法来估算由于泵送固结引起的软粘土层不排水抗剪强度的增加。此外,传统的有限元方法被用来预测开挖引起的土壤垂直和水平位移。使用本文讨论的设计和施工方法,隧道的沉降和水平位移分别成功控制在5.0 mm和9.0 mm之内。隧道的纵向变形曲线的曲率小于1/15000。支撑的隔板墙的水平位移小于总开挖深度的0.12%。

著录项

  • 作者

    Tham LG; Zhou J; Yue ZQ; Hu ZF;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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