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Root Tensile Resistance of Selected Pennisetum Species and Shear Strength of Root-Permeated Soil

机译:根渗透土物种和根渗透土壤剪切强度的根拉伸抗性

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It is widely recognized that vegetation plays a significant role in contrasting slope instability through the root reinforcement. The main objectives of this paper are to evaluate the root tensile of selected Pennisetum species, namely, P. pedicellatum (PPd) and P. polystachion (PPl), and to determine the soil shear strength of root-permeated soil from these species. The selected species were initially planted in the polybags using the hydroseeding technique. A mineral fertilizer of NPK ratio 10?:?8?:?10 was adopted in the hydroseeding mixture. Routine watering program was applied twice a day throughout growth observation for six months. Four replications were prepared for each species including a set of control polybags, which contained only soil for reference and comparison. The results of root tensile tests revealed the significant relationships between root diameter and tensile force. In comparison, the PPl was still indicated by higher values of root tensile force than PPd. The presence of roots clearly has contributed to the shear stress of root-permeated soils. The root density based on root biomass measurement attributed to the higher value of peak shear stress as achieved by PPl than PPd. The combined effects of root tensile and the soil shear strengths of this selected species can be used as biological materials in slope protection against erosion.
机译:众所周知,植被在通过根加强件对比斜坡不稳定性中起着重要作用。本文的主要目的是评估所选的彭尼察姆物种的根拉伸,即P. Pedicellatum(PPD)和P. polysachion(PPL),并确定这些物种的根渗透土壤的土壤剪切强度。使用加氢技术最初将所选物种植入聚外。 NPK比率10的矿物肥料10?:?8?:α在水萃取混合物中采用。常规浇水计划在整个生长观察中每天施用两次,六个月。为每种物种制备四种复制,包括一组控制聚外,其仅包含土壤以供参考和比较。根拉伸试验的结果揭示了根直径和拉伸力之间的显着关系。相比之下,PPL仍然由高于PPD的根拉伸力的较高值表示。根部存在显然有助于根渗透土壤的剪切应力。基于根生物量测量的根密度归因于PPL而不是PPD实现的峰值剪切应力的较高值。该选定物种的根拉伸和土壤剪切强度的组合效果可用作抗腐蚀坡保护的生物材料。

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