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Three-Dimensional Finite Element Modelling of Soil Arching in Pile-Supported Geogrid-Reinforced Embankments

机译:桩支护地理钢筋膨胀路堤土壤拱纹三维有限元建模

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Soil arching has a significant effect on the behaviour of pile-supported geogrid-reinforced embankments due to its complex mechanics. In this study, a three-dimensional finite-element model was established to investigate the development of soil arching during the construction and static loading test on an embankment. The model was verified by comparing the variations in earth pressure on the pile cap with the measured data from well-instrumented full-scale model tests. A good agreement was found between the computed and measured data. The experimental and numerical results consistently showed that the arch foot moves from the edge to the centre of the pile-cap under static loading. Finally, the stress contours are presented to illustrate the development of soil arching during the processes of embankment construction and static loading.
机译:土壤拱形由于其复杂的力学而对桩支撑的地理格栅增强堤的行为具有显着影响。在这项研究中,建立了三维有限元模型,以研究施工施工和静电载荷试验期间土拱的发展。通过比较桩帽对桩帽的变化来验证模型,从乐于仪表的全规模模型测试中测量数据。计算和测量数据之间存在良好的一致性。实验性和数值结果一致地表明拱脚脚在静电负载下从边缘移动到桩帽的中心。最后,提出了应力轮廓以说明在堤防结构和静载荷过程中的土壤拱形的发展。

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