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Analysis of the stability of slopes reinforced by roots

机译:根系加固边坡的稳定性分析

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This paper deals with the assessment of vegetation contribution to slope stability, with particular emphasis on the mechanical effects provided by the root system. As is well known the presence of roots within the soil increases, with respect to the case of soil without vegetation, the material effective cohesion with no significant change in its friction angle. Such mechanical effect can be introduced in the Mohr-Coulomb failure law through an "apparent cohesion" term, which adds to the soil effective cohesion. The contribution of root reinforcement to the soil shear strength has been investigated in slope stability finite element analyses, modifying the soil properties of individual slope elements including vegetation. This approach allowed quantification of the effect of the mechanical root reinforcement on the slope factor of safety and assessment of the sensitivity of slope stability to the variation of apparent cohesion and root zone depth assumed in the numerical simulations.
机译:本文着眼于植被对边坡稳定性的贡献的评估,尤其着重于根系提供的机械效应。众所周知,相对于没有植被的土壤,土壤中根的存在增加了,材料的有效内聚力在其摩擦角上没有显着变化。这种机械作用可以通过“表观凝聚力”一词引入到摩尔-库仑破坏定律中,从而增加了土壤的有效凝聚力。在边坡稳定性有限元分析中研究了根部加固对土壤抗剪强度的贡献,从而改变了包括植被在内的各个边坡元素的土壤特性。这种方法可以量化机械根部加固对安全边坡系数的影响,并评估边坡稳定性对数值模拟中假定的表观内聚力和根部区域深度变化的敏感性。

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