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A parametric study of geosynthetic-reinforced column-supported embankments

机译:土工合成材料加筋柱支撑路堤的参数研究

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This paper presents an extensive parametric study for geosynthetic-reinforced column-supported (GRCS) embankments. The analysis was carried out using the finite-element method based on the coupled-hydraulic modelling, incorporating the full geometry of the embankment and strain-softening behaviour of deep cement mixed (DCM) columns. The influencing factors considered in the parametric study were elastic modulus of DCM columns, area replacement ratio (ARR) based on spacing and diameter of DCM columns, elastic modulus and permeability of soft foundation soil, stiffness of the geosynthetic reinforcement, thickness of the platform layer and friction angle of the fill material. Embankment behaviour during the parametric study was investigated by comparing maximum total and differential settlements, maximum tension in the geosynthetic, maximum lateral deformation of columns, efficiency coefficient of columns and arching ratio. The influencing factors were ranked based on their degree of influence on the behaviour of the embankment. Results show that column spacing and diameter, which control the ARR, and elastic modulus of soft soil were the most important design parameters to be considered in GRCS design procedures. In comparison with an unreinforced column-supported embankment, by using a geosynthetic layer, lateral deformations can be reduced by about 10 times and differential settlements at the base of the embankment can be reduced by about three times. In addition, numerical results show that a thin platform layer was more efficient in transferring the embankment load to columns than a thick platform layer.
机译:本文对土工合成材料加筋柱支撑(GRCS)路堤进行了广泛的参数研究。分析是使用基于耦合液压模型的有限元方法进行的,结合了路堤的完整几何形状和深层水泥混合(DCM)柱的应变软化行为。参数研究中考虑的影响因素包括DCM柱的弹性模量,基于DCM柱的间距和直径的面积替代率(ARR),软基础土的弹性模量和渗透性,土工合成材料的刚度,平台层的厚度和填充材料的摩擦角。通过比较最大的总沉降量和差异沉降量,土工合成材料中的最大张力,最大的侧向变形,圆柱的效率系数和拱形比,研究了参数研究期间的路堤行为。根据影响因素对路堤行为的影响程度对影响因素进行排序。结果表明,控制ARR的柱间距和直径以及软土的弹性模量是GRCS设计程序中要考虑的最重要的设计参数。与未增强的柱支撑路堤相比,通过使用土工合成材料层,横向变形可减少约10倍,路堤底部的不均匀沉降可减少约3倍。此外,数值结果表明,较厚的平台层,较薄的平台层在将路堤荷载转移到立柱方面更有效。

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