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Experimental and numerical investigation of slope stabilization by stone columns.

机译:石柱稳定边坡的试验与数值研究。

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In this study, an investigation has been performed on a small-scaled laboratory model and its numerical model by the code of PLAXIS to see the effect of stone columns (SCs) placed vertically in a soft soil slope in terms of slope stability, bearing capacity, and settlements. Also, several hypothetical cases have been examined by the code. Effect of s/D ratios (distance between the vertical axes of SCs/diameter of SCs) was also investigated on slope stability, ultimate bearing capacity, and settlement of a footing rested on top of the slope on the laboratory model. Firstly, ultimate bearing capacity and settlement properties of soil were determined for unreinforced soil that is no SCs were considered. Then, some values of soil were determined after the installation of stone columns with various ratios of s/D. The ratios of s/D were 2, 3, 3.5, and 4. The tests carried out on the laboratory model were simulated and numerically analyzed in two dimensions under plain-strain conditions by Mohr-Coulomb model. In the analyses, PLAXIS computer code, which is based on finite elements method, has been employed. Then, a parametric investigation was carried out to see the effect of SCs on the stability of the slope. In the parametric investigation, several hypothetical cases that were one layer of soil and two layers of soil with the presence of water in the reservoir side of the slopes were examined. The analyses in the investigation were performed by the PLAXIS code for various slope angles beta , ratios of c/( gamma H), and ratios of s/D. From the test results of the laboratory model, and the results obtained from the numerical analyses, it was observed that the bearing capacity of the footing constructed on the top of the slope in soft soil was increased; settlements were decreased after the improvement with SCs. From the analyses performed, it was found that the SCs increased the stability of slope 1.18- to 1.62-fold as a relative effect of different parameters.
机译:在这项研究中,已经通过PLAXIS代码对小型实验室模型及其数值模型进行了研究,以观察石柱(SCs)垂直放置在软土坡中对边坡稳定性,承载力的影响。和定居点。此外,该代码检查了一些假设的情况。在实验室模型上,还研究了S / D比(SC的垂直轴之间的距离/ SC的直径)对边坡稳定性,极限承载力以及位于边坡顶部的立脚沉降的影响。首先,确定了未考虑SC的未加筋土的极限承载力和沉降特性。然后,在以不同的s / D比安装石柱后,确定一些土壤值。 s / D的比率分别为2、3、3.5和4。在实验室模型上进行的试验在Mohr-Coulomb模型下在普通应变条件下进行了二维模拟和数值分析。在分析中,采用了基于有限元法的PLAXIS计算机代码。然后,进行了参数研究,以了解南南合作对边坡稳定性的影响。在参数研究中,研究了几个假想的案例,即斜坡的水库一侧有一层土壤和两层有水的土壤。调查中的分析是通过PLAXIS代码针对各种斜角β,c /(γH)的比值和s / D的比值进行的。从实验室模型的测试结果,以及从数值分析获得的结果,可以看出,在软土中,斜坡顶部构造的基脚的承载力有所增加; SC改善后,定居点减少。从进行的分析中发现,由于不同参数的相对影响,SC将边坡的稳定性提高了1.18-至1.62倍。

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