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Experimental and analytical investigations on bearing capacity of strip footing in reinforced sand backfills and flexible retaining wall

机译:钢筋砂回填和柔性挡土墙中条形基础承载力的试验和分析研究

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摘要

This study focuses on the experimental and analytical investigations of small-scale physical model tests. For this purpose, a set of tests were conducted with and without reinforcement on the top of the backfill. The specimens were different in terms of parameters like the number of geotextile layers, the vertical distance between layers and the strip footing distance from the wall. Soil failure in the bearing capacity step and the backfill shear zones was analysed using particle image velocimetry methods. Bearing capacity of the strip footings was studied using analytical procedures. The results indicate that a reinforcing top zone of the flexible retaining structures may be more appropriate than unreinforced case. The ultimate bearing capacity and wall deflection can be significantly improved by increasing the number of reinforcement layers. When the three layers of reinforcement are used, there is an optimum vertical spacing of the layers at which the bearing capacity is the greatest (h/H = 0.12, d/H = 0.33 and u = B). The study shows that the analytical solution and the results from the experimental models are in good agreement.
机译:这项研究的重点是小型物理模型测试的实验和分析研究。为此,在回填的顶部进行了有无加固的一组测试。样品在诸如土工布层数,层之间的垂直距离以及带材距墙的基础距离等参数方面有所不同。使用颗粒图像测速法分析了承载力步骤和回填剪切区中的土壤破坏。使用分析程序研究了带状基础的承载力。结果表明,柔性保持结构的顶部加固区域可能比未加固情况更合适。通过增加加强层的数量,可以显着提高极限承载力和壁挠度。当使用三层增强层时,在承载力最大的层之间存在最佳的垂直间距(h / H = 0.12,d / H = 0.33和u = B)。研究表明,解析解与实验模型的结果吻合良好。

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