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Centrifuge model tests on the deformation behavior of geosynthetic-encased stone column supported embankment under undrained condition

机译:在未经介绍的条件下,对地球合式体封装石柱的变形行为的离心模型试验

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A series of centrifuge model tests were carried out to investigate the performance of geosynthetic-encased stone columns (GESCs) supported embankment under undrained condition. The influence of stiffness of encasement, basal reinforcement and embankment loading on the deformation behavior of GESCs were also assessed. The centrifuge test results reveal that under undrained condition, compared to ordinary stone column (OSC) supported embankment, the settlement of column has reduced by 50% and 34% when columns were encased with high and low stiffness geogrids respectively. Moreover, under identical embankment loading condition, the stress concentration ratio has increased significantly upon inclusion of basal reinforcement in the GESCs supported embankment. In case of OSCs supported embankment, columns experiences bulging in the top portion, inward bending in the central portion and a noticeable shear at the bottom portion. However, when columns were encased with geogrid layer, bulging in the top portion was significantly reduced but the inward bending of columns were noticed. With the inclusion of basal reinforcement, bending curvature of columns increases thereby inducing higher settlement in columns and relatively lesser settlement in surrounding soil. The differential settlement between the encased column and the surrounding soil under embankment loading has been considerably reduced with the inclusion of basal reinforcement.
机译:进行了一系列离心模型测试,以研究在未经介绍的条件下的土工合成包装的石柱(GESCS)支持的堤防的性能。还评估了外壳刚度,基底加固和堤防负荷对GESC的变形行为的影响。离心机测试结果表明,与不推迟的条件下,与普通石柱(OSC)支持的路堤相比,当柱子分别用高低刚度土工格栅包装时,柱的沉降减少了50%和34%。此外,在相同的堤防负载条件下,在包含基底增强的基座支撑的路堤时,应力浓度比显着增加。在OSC的支撑座的情况下,列在顶部凸出,在中心部分中向内弯曲和底部的明显剪切。然而,当用土工格栅层包裹柱时,顶部的凸出显着减少,但是柱的向内弯曲被注意到。随着基底加固,柱的弯曲曲率增加,从而诱导柱子的较高沉降,以及周围土壤中的相对较小的沉降。随着基础加固的含量大大减少了堤防负荷下的包裹柱和周围土壤之间的差动沉降。

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