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首页> 外文期刊>Canadian Geotechnical Journal >Analysis of plant root–induced preferential flow and pore-water pressure variation by a dual-permeability model
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Analysis of plant root–induced preferential flow and pore-water pressure variation by a dual-permeability model

机译:双渗透模型分析植物根系诱导的优先流量和孔隙水压变化

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摘要

Vegetation can affect slope hydrology and stability via plant transpiration and induced matric suction. Previous work suggested that the presence of plant roots would induce preferential flow, and its effects may be more significant when the planting density is high. However, there is a lack of numerical studies on how planting density affects soil pore-water pressure and shear strength during heavy rainfall. This study aims to investigate the impact of plant root–induced preferential flow on hydromechanical processes of vegetated soils under different planting densities. Two modelling approaches, namely single- and dual-permeability models, were integrated with an infinite slope stability approach to simulate pore-water pressure dynamics and slope stability. Laboratory tests on soils with two different planting densities for a plant species, Schefflera heptaphylla, were conducted for numerical simulations. The single-permeability model overestimated the pore-water pressure in shallow soil and underestimated the infiltration depth. The dual-permeability model, which is able to model the effects of preferential flow, can better capture the observations of rapid increase of pore-water pressure and deeper pressure response in the vegetated soil. However, caution should be taken on the choice of pore-water pressure when using the dual-permeability model to assess the factor of safety. The dual-permeability model using the pore-water pressure in the preferential flow domain and that in the matrix domain would result in a lower and higher factor of safety, respectively.
机译:植被通过植物蒸腾和诱导的原料吸力会影响坡度水文和稳定性。以前的工作表明,植物根部的存在会诱导优先流量,并且当种植密度高时,其效果可能更为显着。然而,缺乏关于种植密度如何影响重度降雨期间的土壤孔隙水压和剪切强度的数值研究。本研究旨在探讨植物根系诱导的优先流量对不同种植密度下植物土壤流体机械过程的影响。两个建模方法,即单一和双渗透性模型,与模拟孔隙水压力动力学和斜坡稳定性的无限坡度稳定性方法集成。对植物物种的两种不同种植密度的土壤进行实验室测试,用于数值模拟。单渗透性模型高估浅层土壤中的孔隙水压,低估了渗透深度。双渗透模型,能够模拟优先流量的影响,可以更好地捕获植被土壤中孔隙水压力和更深压力响应的快速增加观察。然而,在使用双渗透性模型以评估安全因子时,应注意选择孔隙压力。使用优先流动域中的孔隙水压力的双渗透性模型以及基质结构域中的孔隙水平将导致安全的较低和更高的安全系数。

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