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Numerical experiments of soil nails in loose fill slopes subjected to rainfall infiltration effects

机译:降雨作用下松散填土边坡土钉的数值试验

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Finite difference analyses were conducted to explore the possible behaviour of soil nails in loose fill slopes which were formed by strain-softening materials. Numerical models simulating a 20 m high 35° loose fill slope were set up. With the use of an undrained strain-softening soil model, the behaviour of a loose fill slope reinforced with soil nails subjected to rainfall infiltration was studied. Results indicated that soil nails together with a proper facing structure may reduce the deformation of a loose fill slope caused by rainfall infiltration and hence maintain the stability of the slope. Tensile forces in the soil nails were mobilised through the effective connections between the facing structure and the nail heads when a potential slide was being initiated. Through this mechanism, the development of a flow slide at shallow depths could be avoided by the pull out resistance between the soil and the nails at deeper locations of the slope. Results also showed that, if the soil nails were not connected to a facing structure or nail heads at the slope surface, a global failure mechanism involving the development of a flow slide could be observed, which was similar to that of a loose fill slope without soil nails.
机译:进行了有限差分分析,以探索在由应变软化材料形成的松散填充斜坡中土钉的可能行为。建立了模拟20 m高35°松散填充坡度的数值模型。利用不排水的应变软化土模型,研究了受到降雨渗透作用的土钉加固的松散填充边坡的行为。结果表明,土钉与适当的饰面结构一起可以减少由于降雨入渗引起的松散填土边坡的变形,从而保持边坡的稳定性。当潜在的滑动开始时,土钉中的拉伸力通过饰面结构和钉头之间的有效连接而动员。通过这种机制,可以通过在斜坡的较深位置处的土壤与钉子之间的拉出阻力来避免在较浅深度处形成水滑道。结果还表明,如果土钉未连接到斜坡表面上的饰面结构或钉头,则可以观察到涉及流动滑坡发展的整体破坏机制,这与没有填充土坡的情况相似。土钉子。

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