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Quantification of mechanical and hydric components of soil reinforcement by plant roots

机译:用植物根定量土壤强化的机械和水力成分

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The use of vegetation to stabilize slopes with regard to shallow landslides is an ecological and economic alternative to traditional solutions of civil engineering. This study aims at quantifying the effect of soil water content on the reinforcement of soil by plant roots and determines how soil water content influences the failure modes of roots during shear. Direct shear box tests were performed on three species used in hillslope reforestation programs in Yunnan, China. Reinforcement was quantified and divided into a hydric component corresponding to the effect of water removal and a mechanical component reflecting the influence of roots on apparent cohesion and friction angle. It was shown that the hydric component of reinforcement can be of the same order as the mechanical component and that root system architectural traits influence the type of mechanical reinforcement (cohesive or frictional). We also demonstrate the potential development of matric suction effects on the shear strength of soil.
机译:使用植被来稳定浅层滑坡的边坡是土木工程传统解决方案的一种生态和经济替代方案。这项研究旨在量化土壤水分对植物根系对土壤增强的影响,并确定土壤水分如何影响剪切过程中根系的破坏模式。对中国云南山坡造林计划中使用的三种树种进行了直接剪切箱测试。对增强材料进行量化,并将其分为与脱水效果相对应的水力成分和反映根部对表观内聚力和摩擦角的影响的机械成分。结果表明,增强材料的水力成分可以与机械成分的数量级相同,并且根系体系结构特征会影响机械增强材料的类型(内聚或摩擦)。我们还证明了基质吸力对土壤剪切强度的潜在发展。

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