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Performance of geogrid-encased stone columns in soft ground: full-scale load tests

机译:土工格栅包裹的石柱在软土地基中的性能:满载测试

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摘要

The geogrid-encased stone column (GESC) system, which increases the confinement effect, has been developed to improve the load-carrying capacity of stone columns. This paper presents the results of an investigation on improvement in load-carrying capacity and settlement reduction of a GESC using field-scale load tests. Also, the effect of the geogrid encasement length and column strain is investigated. In addition, isolated GESC behaviour was compared to rammed-aggregate pier (RAP) and conventional stone column (CSC) behaviour. The results show that additional confinement provided by the geogrid encasement increased the stiffness of the stone column and reduced the settlement of the soft ground. Also, bulging of the GESC was observed to occur directly beneath the base of the geogrid encasement. The improvement in the performance of GESC was found to be significant, even with partial encasement.
机译:为了提高石柱的承载能力,开发了土工格栅石柱系统(GESC),该系统增加了约束效果。本文介绍了使用现场规模的载荷测试提高GESC的承载能力和减少沉降的研究结果。此外,还研究了土工格栅包裹长度和柱应变的影响。此外,将孤立的GESC行为与夯实集料墩(RAP)和常规石柱(CSC)行为进行了比较。结果表明,土工格栅包裹提供的额外限制增加了石柱的刚度并减少了软土地基的沉降。此外,观察到GESC的膨胀直接发生在土工格栅外壳底部的下方。发现即使有部分包装,GSEC的性能也有显着提高。

著录项

  • 来源
    《Geosynthetics International》 |2012年第6期|p.480-490|共11页
  • 作者

    C. Yoo 1; D. Lee 2;

  • 作者单位

    1: 1 Professor, Department of Civil and Environmental Engineering, Sungkyunkwan University, 300 Chun-Chun Dong, Jan-An Gu, Suwon, Kyong-Gi Do, Korea 440-746, Telephone:+82–31–290–7518, Telefax:+82-31-290-7549, E-mail: csyoo@skku.edu;

    2: 2 Senior Researcher, Geotechnical Engineering Division, Korea Institute of Construction Technology, 1190 Simindae-Ro, Ilsanseo-Gu, Goyang, Gyeonggi-Do, Korea 411-712, Telephone:+82-31-9100-528, Telefax:+82-31-9100–561, E-mail: dylee@kict.re.kr;

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

    KEYWORDS: Geosynthetics, Stone column, Geogrid encasement, Field load test, Bulging, Improvement;

    机译:关键字:土工合成材料;石柱;土工格栅外壳;现场载荷试验;膨胀;改进;

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