首页> 外文期刊>International journal of engineering research in Africa >Numerical Modeling of Horizontally Layered Geosynthetic Reinforced Encased Stone Columns Supporting Embankment on Sabkha Soil
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Numerical Modeling of Horizontally Layered Geosynthetic Reinforced Encased Stone Columns Supporting Embankment on Sabkha Soil

机译:水平分层地质合成增强塞柱散布岩柱土地的数值模拟

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The present research work is concerned with the construction of road embankments on a Sabkha soil in Algeria. This soil is not only soft and very humid during the flooding seasons but also has frequent small areas of very soft soil which are called locally weak zones (LWZ) in the context of this study. LWZ are characterized by low strength and high compressibility. Two-dimensional axisymmetric analyses were carried out using PLAXIS 2D 2017. The study demonstrated that ordinary stone columns (OSC) are ineffective given the nature of these soils due to the excessive bulging caused by the lack of lateral pressure. On the other hand, the reinforced stone columns with external and internal reinforcements called as vertical encasement and horizontal strips (VESC+HRSC) are one of the best improvement methods of locally weak zones (LWZ), especially to increase the stability of embankment on the highway, namely, a much reduced bulging and a reasonable settlement, so that it is possible to build safe and very high embankments (indeed, numerical results showed for a (VESC+HRSC) combination, a vertical settlement of 0.74 m and a lateral deformation of 20.02 mm vs. 1.56 m and 221.16 mm for an OSC). Besides, an extensive parametric study was conducted to investigate the effect of the spacing of the horizontal reinforcing strips and of the column reinforced length. The influence of stone column diameter, depth of locally weak zone, and the effective stiffness of the geosynthetic, on the performance of the (RSC) - embankment composite were also investigated. The computational results are presented in the form of tables and graphs, and compared with previous published results available in the literature.
机译:目前的研究工作涉及阿尔及利亚萨布哈土路堤的建设。在洪水季节期间,这种土壤不仅柔软而且非常潮湿,而且在本研究的背景下常常被称为局部弱区(LWZ)的小区域。 LWZ的特点是低强度和高压缩性。使用Plaxis 2D 2017进行二维轴对称分析。研究表明,由于缺乏横向压力引起的过度凸起,普通石柱(OSC)无效。另一方面,具有外部和内部增强件的加强石柱称为垂直封口和水平条(VESC + HRSC)是局部弱区(LWZ)的最佳改进方法之一,特别是提高堤防的稳定性公路,即大大减少的凸出和合理的沉降,因此可以建立安全且非常高的路堤(实际上,用于(VESC + HRSC)组合的数值结果,垂直沉降为0.74米和横向变形OSC的20.02毫米和221.16毫米)。此外,进行了广泛的参数研究以研究水平加强条和柱增强长度的间距的影响。还研究了石柱直径,局部弱区的深度,以及地质合成的有效刚度的影响,对(RSC) - 路堤复合材料的性能进行了研究。计算结果以表格和图形的形式呈现,并与文献中可用的先前公开的结果进行了比较。

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