Behavior of Sand Compaction Columns Installed in Cohesionless Deposits

N. Aarthi
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引用次数: 1

Abstract

A critical appraisal of the reviewed literature revealed that there are very limited studies available on the strength characteristics focusing on the load-settlement behavior of sand compaction columns (SCCs) when installed in cohesionless deposits. The method, though contemporary to the reputed stone column technique, is not yet studied rigorously in the available past studies, more precisely on the load-bearing characteristics when compared to the latter. Therefore the present study focuses on studying the behavior of multiple column composite foundation supported by sand compaction columns installed in loose to medium dense sands on a lab-scale numerical model. The study is carried out using commercially available finite element (FE) code 3D PLAXIS. Spacing to diameter ratio (S/D) ranging from 1.5 to 3.5 and initial relative density (RD) from 30 to 60% was adopted to study the changes in the load-settlement behavior of the improved deposit. Extending the FE model to further parametric study, the effect of angle of internal friction of the column sand and diameter of the column on the bearing capacity and settlement characteristics were analysed with and without normalization. From the results obtained, it is found that, for the considered FE model, the improved deposit with 3D spacing between the SCCs behaves distinctly different from all other cases analyzed.
无黏性沉积物中压砂柱的性能
对文献综述的批判性评价表明,当安装在无黏性沉积物中时,关于砂压实柱(SCCs)的荷载沉降行为的强度特征研究非常有限。这种方法虽然与著名的石柱技术同时代,但在过去的研究中尚未得到严格的研究,与后者相比,更精确地研究了承重特性。因此,本研究重点研究了在松散至中密砂土中安装压砂柱支撑的多柱复合地基的室内数值模型。该研究是使用市售的有限元(FE)代码3D PLAXIS进行的。采用距径比(S/D)为1.5 ~ 3.5,初始相对密度(RD)为30 ~ 60%,研究了改良后沉积物荷载沉降特性的变化。将有限元模型扩展到进一步的参数化研究中,分析了柱砂内摩擦角和柱直径对柱砂承载力和沉降特性的影响。结果表明,在考虑的有限元模型中,随着SCCs之间的三维间距,改进后的沉积物的行为与分析的所有其他情况明显不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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