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SHEAR STRENGTH OF A SOIL CONTAINING VEGETATION ROOTS

机译:含植被根系的抗剪强度

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References(26) Vegetation can significantly contribute to stabilise sloping terrain by reinforcing the soil: this reinforcement depends on the morphological characteristics of the root systems and the tensile strength of single roots. This paper describes an investigation on the reinforcing effect of soil-root matrix in the laboratory using a modified large shear box apparatus (300 mm×300 mm). Four different species of plant namely Vertiveria zizanoides, Leucaena leucocephala, Bixa orellana and Bauhinia purpurea were planted in special boxes containing residual soil compacted to a known density. The results show that roots significantly contribute to the increase in soil shear strength. The presence of the roots only affects the apparent cohesion of the soil and no significant change in angle of friction is observed. L. leucocephala shows the outstanding increase in its root strength in which the strength varies with depth and time e.g., under soil suction-free condition (matric suction=0), the roots have increased the cohesion by 116.6% (0.1 m), 225.0% (0.3 m) and 413.4% (0.5 m) after six months of growth. In twelve months, it is observed that the increase in cohesion is more than three-fold of the six months growth period at 0.1 m depth. The results also indicate that shear strength is influenced by root profile and to some extent, the physiological parameters of the plants.
机译:参考文献(26)植被可以通过加固土壤来显着稳定斜坡地形:这种加固取决于根系的形态特征和单根的抗张强度。本文介绍了使用改良的大型剪切箱装置(300 mm×300 mm)在实验室中研究土壤根系基质的效果。四种不同的植物,分别是Vertiveria zizanoides,Leucaena leucocephala,Bixa orellana和紫荆花,种植在装有压缩至已知密度的残留土壤的特殊盒子中。结果表明,根显着促进了土壤抗剪强度的提高。根部的存在仅影响土壤的表观凝聚力,并且未观察到摩擦角的显着变化。 L. leucocephala的根系强度显着增加,强度随深度和时间而变化,例如,在无土壤抽吸条件下(基质吸力= 0),根系的内聚力提高了116.6%(0.1 m),225.0六个月的增长后,分别为(0.3 m)和413.4%(0.5 m)。在十二个月内,观察到在0.1 m深度处,内聚力的增加是六个月生长期的三倍以上。结果还表明,剪切强度受根系轮廓的影响,并且在一定程度上受植物的生理参数的影响。

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