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Short-term and long-term behavior of geosynthetic-reinforced stone columns

机译:土工合成石柱的短期和长期行为

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Stone columns are often used to improve the load-carrying characteristics of weak soils. In very soft soils, however, the bearing capacity of stone columns may not significantly improve the load-carrying characteristics due to the very low confinement of the surrounding soil. In such cases, encased stone columns (ESCs) or horizontally reinforced stone columns (HRSCs) may be used. Although ESCs have been studied extensively, few studies have been done on HRSCs. In addition, very limited studies are available on ESCs and HRSCs under the same conditions. Moreover, no studies have been carried out to compare the long-term and short-term behavior of HRSCs with that of ESCs. In this research, therefore, numerical analyses are performed on various types of reinforced end-bearing stone columns to compare their behavior under both long-term and short-term conditions under various loading conditions. The Advanced Modified Cam-clay model for clay and the Hardening Soil model for stone column materials are used. The results show that with proper reinforcing stone columns, in addition to a considerable reduction in settlement, the consolidation time can be greatly decreased and most of the settlement will occur during the loading period. Also, the consolidation settlement rate may be increased by using a smaller column diameter and a larger area replacement ratio for the unit cell, stiffer geosynthetic reinforcements, and greater values for the internal friction angle of the stone column materials. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:石柱通常用于改善弱土的承载特性。但是,在非常软的土壤中,由于周围土壤的封闭度非常低,石柱的承载力可能不会显着改善其承载特性。在这种情况下,可以使用封闭式石柱(ESC)或水平加固石柱(HRSC)。尽管已经对ESC进行了广泛的研究,但是关于HRSC的研究很少。此外,在相同条件下,关于ESC和HRSC的研究非常有限。此外,还没有进行任何研究来比较HRSC与ESC的长期和短期行为。因此,在这项研究中,对各种类型的增强端承式石柱进行了数值分析,以比较它们在长期和短期条件下在各种荷载条件下的性能。使用用于粘土的Advanced Modified Cam-clay模型和用于石柱材料的Hardening Soil模型。结果表明,采用适当的加固石柱,除了可以大大减少沉降量外,固结时间也可以大大减少,并且大部分沉降都将在加载期间发生。同样,通过使用较小的圆柱直径和较大的晶胞面积置换率,较硬的土工合成材料增强材料和较大的石柱材料内摩擦角值,可以提高固结沉降速率。 (C)2019年由Elsevier B.V.代表日本岩土工程学会制作和主持。

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