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Role of vegetation on slope stability under transient unsaturated conditions

机译:植被对短暂不饱和条件下坡度稳定性的作用

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摘要

We examine the role of vegetation on the stability of shallow soils under unsaturated transient regime. Two main positive effects of the vegetation on slope stability are discussed: i) a geo-mechanical effect, i.e., the reinforcement of soil by plant roots; ii) a soil-hydrological effect, i.e., the soil suction regime affected by root water uptake. The root distribution is assessed by an eco-hydrological model, which predicts the root density as function of local climatic conditions in growing season and soil hydrological properties. The predicted root distribution is employed for assessing the vertical variability of both the apparent soil cohesion provided by roots and the root water uptake. A one-dimensional model of vertical soil water dynamics is employed for simulating soil suction regime, assumed representative of well-drained soils on steep forested plane slopes. The geo-mechanical and the soil-hydrological effects on slope stability are examined with an infinite slope stability model, generalized for unsaturated conditions. We show that in the case of a loamy-sand soil under a Mediterranean climatic regime, the geo-mechanical effect tends to be more relevant than the soil-hydrological effect during the rainy season, within depths up to twice the average root depth.
机译:我们研究了植被对不饱和瞬态制度下浅层土壤稳定性的作用。讨论了植被对坡度稳定性的两个主要积极作用:i)地质机械效应,即通过植物根部加固土壤; ii)土壤 - 水文效应,即根水摄取影响的土壤吸力制度。通过生态水文模型评估根本分布,其预测生长季节和土壤水文特性的局部气候条件的功能。预测的根部分布用于评估由根和根水摄取提供的表观土粘性的垂直变异性。采用垂直土水动力学的一维模型模拟土壤吸力制度,假设在陡峭的森林平面坡上的排水良好的土壤中代表。用无限斜坡稳定性模型检查对坡稳定性的地球机械和土壤水文效应,用于不饱和条件。我们表明,在地中海气候制度下的壤土土壤的情况下,地理机械效果往往比雨季的土壤 - 水文效应更加相关,在平均根深度的深度达到两倍。

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