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Centrifuge modeling of geosynthetic-encased stone column-supported embankment over soft clay

机译:柔软粘土的地球合式体封装石柱支撑堤的离心机建模

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Geosynthetic-encased stone column (GESC) has been proven as an effective alternative to reinforcing soft soils. In this paper, a series of centrifuge model tests were conducted to investigate the performance of GESC-supported embankment over soft clay by varying the stiffness of encasement material. The enhancement in the performance of stone columns encased with geosynthetic materials was quantified by comparing the test with ordinary stone columns (OSCs) under identical test conditions. The test results reveal that by encasing stone columns with geosynthetic material, a significant reduction in the ground settlement, relatively faster dissipation of excess pore pressure and enhanced stress concentration ratio was noticed. Moreover, with the increase in the encasement stiffness from 450 kN/m to 3300 kN/m, the stress concentration ratio increased from 4 to 6.5, which signifies the importance of encasement stiffness. In addition, a relatively lower value of soil arching ratio observed for GESCs compared to OSCs indicate the formation of a relatively strong soil arch in the GESC-supported embankment. Interestingly, under embankment loading, GESCs fail by bending while OSCs fail by bulging. The stress reduction method can be used to calculate the settlement of GESC-supported embankment with larger stress reduction factor than that in the OSC-supported embankment. Finally, the limitation of the construction of the embankment at 1 g was addressed.
机译:被证明是根本包裹的石柱(GESC)作为加强软土壤的有效替代方案。在本文中,通过改变口服材料的刚度来研究一系列离心模型试验以研究GESC支持的电粘土对软粘土的性能。通过在相同的试验条件下将试验与普通石柱(OSC)进行比较,量化了用地质合成材料包装的石柱的性能的增强。测试结果表明,通过用地磁材料包装石柱,对地面沉降显着降低,对过量的孔隙压力的速度相对较快地耗散,并注意到增强的应力浓度比。此外,随着450kN / m至3300kn / m的封装刚度的增加,应力浓度比从4到6.5增加,这表示了口服刚度的重要性。此外,与OSC相比,针对GESC观察到的土壤拱形比例的相对较低的值表明GESC支持的堤防中相对强大的土拱形成。有趣的是,在路堤时,GESCS通过弯曲而失败,而OSC通过凸出失败。压力还原方法可用于计算GESC支持的路堤的沉降,其应力减少比在OSC支撑的路堤中的较大应力降低。最后,解决了1克堤防结构的限制。

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