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Influence of plant root system morphology and architectural traits on soil shear resistance

机译:植物根系形态和建筑特性对土壤抗剪性的影响

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Vegetation can be used to stabilise slopes with regard to shallow landslides, but the optimal plant architecture for conferring resistance is not known. This study aims at identifying root morphological traits which confer the most resistance to soil during shearing. Three species used for slope stabilisation (Ricinus communis L., Jatropha curcas L. and Rhus chinensis Mill.) were grown for 10 months in large shear boxes filled with silty clay similar to that found in Yunnan, China. Direct shear tests were then performed and compared to fallow soil. Root systems were excavated and a large number of traits measured. Shear strength and deformation energy were enhanced by the presence of roots. Regardless of confining pressure, R. communis conferred most resistance due to its taprooted system with many vertical roots. J. curcas possessed oblique and vertical roots which created fragile zones throughout the soil profile. The least efficient root system was R. chinensis which possessed many horizontal lateral roots. Soil mechanical properties were most influenced by (i) density of roots crossing the shear plane, (ii) branching density throughout the soil profile, (iii) total length of coarse roots above the shear plane and (iv) total volume of coarse roots and fine root density below the shear plane. During failure, fine, short and branched roots slipped through soil rather than breaking. Root morphological traits such as density, branching, length, volume, inclination and orientation influence significantly soil mechanical properties.
机译:可以使用植被来稳定浅层滑坡的坡度,但是尚不知道用于赋予抗性的最佳植物结构。这项研究旨在确定在剪切过程中赋予土壤最大抗性的根系形态特征。在装有粉质粘土的大型剪切箱中,与中国云南相似的三个稳定坡度的物种(Ricinus communis L.,麻风树麻疯树和Rhus chinensis Mill。)生长了10个月。然后进行直接剪切试验,并与休耕土进行比较。挖掘根系并测量大量性状。根的存在增强了剪切强度和变形能。不论局限压力如何,由于其根系多根且具有许多垂直根,该小种被赋予最大的抵抗力。 J. curcas的斜根和垂直根在整个土壤剖面中都形成了脆弱区域。效率最低的根系是中华稻,其具有许多水平侧根。土壤力学特性受(i)穿过剪切面的根的密度,(ii)整个土壤剖面中的分支密度,(iii)剪切面以上的粗根的总长度和(iv)粗根的总体积和剪切面以下的细根密度。在破坏过程中,细,短而分支的根部穿过土壤而不是折断。根的形态特征,例如密度,分支,长度,体积,倾角和方向,都会显着影响土壤的机械性能。

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