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首页> 外文期刊>Arabian journal of geosciences >Enhancement of river bank shear strength parameters using Vetiver grass root system
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Enhancement of river bank shear strength parameters using Vetiver grass root system

机译:使用香根草根系加强河岸剪切强度参数

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摘要

Vegetation has been used as a bioengineering tool for erosion control and slope stabilization for years. It is accepted that the efficiency of different species of vegetation for slope stabilization is not the same. In this paper, the morphological properties of the Vetiver grass root system including root area ratio (RAR), root diameter ratio (RDR), root diameter and density ratio (RDDR), and root length density (RLD) in a clayey soil are investigated. Also, the effects of morphological characteristics of Vetiver grass root system on the soil shear strength parameters including soil cohesion (C) and soil internal friction factor (phi) are studied. The results showed that RAR, RDDR, and RLD decrease as the soil depth increases. Also, RDR was found to be correlated to the soil depth. The maximum RAR value was found to be 7.99% which is much higher than those reported by previous researchers for other plants used for soil protection. The maximum RDR, RDDI, and RLD values were 72.7, 4.4, and 0.1%, respectively. The results show that among the four root morphological traits studied, RAR and RLD are better correlated to C and co, respectively. Furthermore, it is found that the plant density is not a significant parameter in the soil reinforcement in the range of densities studied here. Moreover, Vetiver grass roots can increase the soil cohesion and soil internal friction factor up to 119.6% and 81.96%, respectively. Based on regression analysis, some empirical equation are presented for calculation of the soil shear strength parameters as functions of the morphological characteristics of Vetiver grass root. These findings can be used by ecologists for better management of natural waterways by means of a low-cost environmentally friendly technique.
机译:植被已被用作侵蚀控制和坡度稳定的生物工程工具多年。接受坡度稳定植被的不同种类植被的效率不一样。在本文中,研究了包括根面积比(RAR),根直径比(RDR),根直径和密度比(RDDR),以及粘土土壤中的根部长度(RLD)的转移草根系统的形态学性质。此外,研究了丙酮草根系形态特征对土壤剪切强度参数的影响,包括土壤内聚力(C)和土壤内部摩擦因子(PHI)。随着土壤深度的增加,结果表明RAR,RDDR和RLD减少。此外,发现RDR被认为与土壤深度相关。最大RAR值被发现为7.99%,高于以前研究人员报告的其他植物用于土壤保护的7.99%。最大RDR,RDDI和RLD值分别为72.7,4.4和0.1%。结果表明,在研究的四根根形态特征中,RAR和RLD分别与C和CO更好。此外,发现植物密度在这里研究的密度范围内的土壤增强中不是一个重要的参数。此外,甜菜草根部可分别将土壤内聚力和土壤内部摩擦因子增加到119.6%和81.96%。基于回归分析,提出了一些经验方程,用于计算土壤剪切强度参数作为丙酮草根的形态特征的函数。这些发现可以通过生态学家使用,以通过低成本环境友好的技术更好地管理天然水道。

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