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Bearing capacity of footing supported by geogrid encased stone columns on soft soil

机译:土工格栅包裹石柱在软土上支撑的地基承载力

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摘要

The stone columns are increasingly being used as a soil improvement method for supporting a wide variety of structures (such as road embankment, buildings, storage tanks etc.) especially built on soft soil. Soil improvement by the stone column method overcomes the settlement problem and low stability. Nevertheless, stone column in very soft soils may not be functional due to insufficient lateral confinement. The required lateral confinement can be overcome by encasing the stone column with a suitable geosynthetic. Encasement of stone columns with geogrid is one of the ideal forms of improving the performance of stone columns. This paper presents the results of a series of experimental tests and numerical analysis to investigate the behavior of stone columns with and without geogrid encasement in soft clay deposits. A total of six small scale laboratory tests were carried out using circular footing with diameters of 0.05 m and 0.1 m. In addition, a well-known available software program called PLAXIS was used to numerical analysis, which was validated by the experimental tests. After good validation, detailed of parametric studies were performed. Different parameters such as bearing capacity of stone columns with and without geogrid encasement, stiffness of geogrid encasement, depth of encasement from ground level, diameter of stone columns, internal friction angle of crushed stone and lateral bulging of stone columns were analyzed. As a result of this study, stone column method can be used in the improvement of soft ground and clear development in the bearing capacity of the stone column occurs due to geogrid encasement. Moreover, the bearing capacity is effected from the diameter of the stone column, the angle of internal friction, rigidity of the encasement, and depth of encasement. Lateral bulging is minimized by geogrid encasement and effected from geogrid rigidity, depth of encasement and diameter of the stone column.
机译:石柱越来越多地用作土壤改良方法,以支撑各种结构(例如路堤,建筑物,储罐等),尤其是在软土上建造的结构。用石柱法改良土壤克服了沉降问题和低稳定性。但是,由于侧向约束不足,在非常软的土壤中的石柱可能无法正常工作。可以通过用合适的土工合成材料包裹石柱来克服所需的侧向约束。用土工格栅包裹石柱是改善石柱性能的理想形式之一。本文介绍了一系列实验测试和数值分析的结果,以研究在软粘土沉积物中有无土工格栅包裹的石柱的行为。使用直径为0.05 m和0.1 m的圆形底座进行了总共六个小规模的实验室测试。此外,使用众所周知的称为PLAXIS的软件程序进行了数值分析,并通过实验测试对其进行了验证。经过良好的验证后,进行了详细的参数研究。分析了不同参数,例如带或不带土工格栅的石柱的承载力,土工格栅的刚度,从地平面的包裹深度,石柱的直径,碎石的内摩擦角和石柱的横向凸起。这项研究的结果是,石柱法可用于改善软土地基,并且由于土工格栅的包裹,石柱的承载力有了明显的发展。而且,承载能力受石柱直径,内摩擦角,外壳的刚度和外壳深度的影响。土工格栅的包裹可最大程度地减少横向凸出,并受土工格栅的刚性,包裹深度和石柱直径的影响。

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