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Effectiveness of CFG pile-slab structure on soft soil for supporting high-speed railway embankment

机译:CFG桩板结构在软土地基上对高速铁路路堤的支撑作用

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摘要

The use of cement-fly ash-gravel (CFG) pile-slab structures is a new effective technique for reducing the settlements of soft foundations in China. A comprehensive research was conducted to investigate the effectiveness of a CFG pile-slab structure-supported embankment of the Beijing-Shanghai high-speed railway in China. Firstly, an analytical method was formulated to calculate the settlements of the CFG pile-slab structure-supported embankment. Secondly, mechanical scaling laws were derived for the proposed testing plan at model scale. Model tests were conducted to quantify and to interpret the settlement distributions. Thirdly, the influence of three key factors (pile length, pile diameter, and slab thickness) for the structural form of the CFG pile-slab structure-supported embankment on the settlement distribution were studied using numerical simulations. The maximum settlements of the CFG pile-slab structure-supported embankment in optimizing the structural form were obtained using the above three research methods and then they were compared with each other. The results show that (1) the settlements obtained by the analytical method, the physical model tests, and the numerical simulations showed good concordance with each other; (2) the settlement-controlling effect of the CFG pile-slab structure was able to meet the requirements of high-speed railway construction; (3) the piles and the soil-bearing capacities of the CFG pile-slab structure-supporting embankment could be fully mobilized because of the "load re-distribution" function of the slab; and (4) the affected area of the engineering load had a depth of more than 18.75 m and a horizontal length of 7.5 m near the toe of the embankment slope. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:水泥-粉煤灰-碎石(CFG)桩板结构的使用是减少中国软土地基沉降的一种新的有效技术。进行了一项综合研究,以研究中国京沪高铁CFG桩板结构支撑路堤的有效性。首先,提出了一种分析方法来计算CFG桩板结构支撑路堤的沉降。其次,针对模型规模的拟议测试计划推导了机械定标定律。进行了模型测试以量化和解释沉降分布。第三,利用数值模拟研究了三个关键因素(桩长,桩径和楼板厚度)对CFG桩板结构支撑式路堤的结构形式的影响。利用以上三种研究方法,获得了CFG桩板结构路堤在优化结构形式时的最大沉降量,并进行了比较。结果表明:(1)采用解析法,物理模型试验和数值模拟得到的沉降结果相互吻合。 (2)CFG桩板结构的沉降控制效果能够满足高速铁路建设的要求; (3)CFG桩-平板结构支撑路堤的桩和承土能力由于平板的“荷载重分配”功能而得以充分利用; (4)工程荷载的影响区在路堤坡脚趾附近深度大于18.75m,水平长度为7.5m。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

著录项

  • 来源
    《Soils and foundations》 |2018年第6期|1458-1475|共18页
  • 作者单位

    Hubei Polytech Univ, Sch Civil Engn, Huangshi 435003, Peoples R China;

    Tsinghua Univ, Dept Civil Engn, Beijing 100084, Peoples R China|Kyoto Univ, Dept Civil & Earth Resources Engn, Kyoto 6068501, Japan;

    Kyoto Univ, Dept Civil & Earth Resources Engn, Kyoto 6068501, Japan;

    Hubei Polytech Univ, Sch Civil Engn, Huangshi 435003, Peoples R China;

    Shantou Univ, Coll Engn, Shantou 515063, Peoples R China;

    Shantou Univ, Coll Engn, Shantou 515063, Peoples R China;

    Kyoto Univ, Dept Civil & Earth Resources Engn, Kyoto 6068501, Japan;

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

    CFG pile; Pile-slab structure; Settlement; Model test; Numerical simulation;

    机译:CFG桩;桩板结构;沉降;模型试验;数值模拟;

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