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Generalized Model for Geosynthetic-Reinforced Granular Fill-Soft Soil with Stone Columns

机译:土工合成石颗粒填充软土的广义模型

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This paper pertains to the development of a mechanical model to predict the behavior of a geosynthetic-reinforced granular fill over soft soil improved with stone columns. The saturated soft soil has been idealized by Kelvin-Voight model to represent its consolidation behavior. The stone columns are idealized by stiffer springs. Pasternak shear layer and rough elastic membrane represent the granular fill and geosynthetic reinforcement layer, respectively. The nonlinear behavior of the granular fill and the soft soil is considered. Effect of consolidation of the soft soil due to inclusion of the stone columns has also been included in the model. Plane strain conditions are considered for the loading and reinforced foundation soil system. An iterative finite difference scheme is applied for obtaining the solution, and results are presented in nondimensional form. Comparison between the results from the present study and the analytical solution using theory of elasticity shows reasonable agreement. The advantage of using geosynthetic reinforcement is highlighted. Results indicate that inclusion of the geosynthetic layer effectively reduces the settlement. Nonlinearity in the behavior of the soft soil and the granular fill is reduced due to the use of geosynthetic reinforcement layer.
机译:本文涉及一种力学模型的开发,以预测用石柱改良的软土上的土工合成纤维增强的颗粒填充的行为。饱和软土已通过Kelvin-Voight模型进行了理想化处理,以表示其固结特性。石柱通过较硬的弹簧来理想化。 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。考虑粒状填料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的影响。对于加载和加筋的基础土系统,要考虑平面应变条件。应用迭代有限差分方案获得解,结果以无量纲形式表示。本研究结果与使用弹性理论的解析解之间的比较显示出合理的一致性。突出了使用土工合成材料增强材料的优势。结果表明,包含土工合成材料层可有效减少沉降。由于使用了土工合成的增强层,软土和粒状填充物的非线性降低了。

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