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Use of unsaturated small-strain soil stiffness to the design of wall deflection and ground movement adjacent to deep excavation

机译:利用非饱和小应变土刚度设计深基坑附近的墙体挠度和地面运动

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摘要

Small-strain soil stiffness is an important parameter for the design of wall deflection and ground movements around deep excavations in urban cities. However, the use of unsaturated small-strain soil stiffness in the design of excavation is rarely reported, although the ground condition often becomes unsaturated due to de-watering. The objective of this technical communication is to report and illustrate the effects of suction-dependent small strain soil stiffness on the design of wall deflection and ground movements due to a 15-m deep excavation in unsaturated soils in Tianjin, China. A small-strain stiffness model for unsaturated soils incorporated into the Hardening Soil-Small Strain (HSS) model was adopted. Two analyses, with and without considering suction-dependent small-strain soil stiffness, were carried out to provide design and construction guidelines to control the progress of excavation. By comparing the measured data with the two different analyses, it is clear that the analysis without considering unsaturated small-strain soil stiffness significantly overestimated the deflection of pile wall by 85%, ground surface settlement by 55% and basement heave by 40%. On the contrary, by considering unsaturated soil stiffness, more accurate predictions were obtained to save construction time and to reduce construction costs.
机译:小应变土的刚度是设计城市深挖周围的墙体挠度和地面运动的重要参数。然而,尽管开挖时地面条件经常变得不饱和,但很少有人报道在开挖设计中使用不饱和小应变土刚度。本技术交流的目的是报告和说明在天津,中国非饱和土中深15 m深开挖引起的依赖于吸力的小应变土刚度对墙体挠度和地面运动设计的影响。采用了一种将非饱和土的小应变刚度模型并入“硬化土小应变”(HSS)模型。进行了两个分析,考虑和不考虑依赖于吸力的小应变土的刚度,以提供控制开挖进度的设计和施工指南。通过将实测数据与两种不同的分析进行比较,可以清楚地看到,不考虑非饱和小应变土刚度的分析显着高估了桩壁挠度85%,地表沉降55%和地基隆起40%。相反,通过考虑非饱和土的刚度,可以得到更准确的预测,从而节省了施工时间并降低了施工成本。

著录项

  • 来源
    《Computers and Geotechnics》 |2020年第3期|103375.1-103375.8|共8页
  • 作者

  • 作者单位

    Hong Kong Univ Sci & Technol Dept Civil & Environm Engn Hong Kong Peoples R China;

    Tianjin Univ Sch Civil Engn Tianjin Peoples R China;

    Hong Kong Polytech Univ Dept Civil & Environm Engn Hong Kong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Deep excavation; Stiffness; Suction;

    机译:深基坑;刚性;吸力;

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