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Axi-symmetric Analysis of Geosynthetic-reinforced Granular Fill-soft Soil System with Group of Stone Columns

机译:群石柱群的土工增强粒状填充软土系统轴对称分析

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The paper presents a mechanical model to predict the behavior of geosynthetic-reinforced granular fill resting over soft soil improved with group of stone columns subjected to circular or axi-symmetric loading. The saturated soft soil has been idealized by spring-dashpot system. Pasternak shear layer and rough elastic membrane represent the granular fill and geosynthetic reinforcement layer, respectively. The stone columns are idealized by stiffer springs. The nonlinear behavior of granular fill and soft soil is considered. Consolidation of the soft soil due to inclusion of stone columns has also been included in the model. The results obtained by using the present model when compared with the reported results obtained from laboratory model tests shows very good agreement. The effectiveness of geosynthetic reinforcement to reduce the maximum and differential settlement and transfer the stress from soft soil to stone columns is highlighted. It is observed that the reduction of settlement and stress transfer process are greatly influenced by stiffness and spacing of the stone columns. It has been further observed that for both geosynthetic-reinforced and unreinforced cases, the maximum settlement does not change if the ratio between spacing and diameter of stone columns is greater than 4.
机译:本文提出了一种力学模型,以预测在圆形或轴对称荷载作用下的石柱组对软土上的土工增强颗粒填料的作用。弹簧-阻尼系统已使饱和的软土理想化。 Pasternak剪切层和粗糙的弹性膜分别代表颗粒填料和土工合成材料增强层。石柱通过较硬的弹簧来理想化。考虑了颗粒状填充物和软土的非线性行为。该模型还包括由于包含石柱而引起的软土固结。与实验室模型测试获得的报告结果相比,使用本模型获得的结果显示出很好的一致性。突出了土工合成材料在减少最大和差异沉降以及将应力从软土传递到石柱上的有效性。可以看出,沉降的减少和应力传递过程受石柱刚度和间距的影响很大。进一步观察到,对于土工合成材料加筋和未加筋的情况,如果石柱的间距与直径之比大于4,则最大沉降不会改变。

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