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Influences of plant spacing on root tensile strength of Schefflera arboricola and soil shear strength

机译:植物间距对什叶克拉植物植物和土壤剪切强度根抗拉强度的影响

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摘要

Mechanical root reinforcement depends not only on root biomechanical properties but also on root biomass. Although it is known that plant spacing can affect root growth, it is not clear how it affects root tensile strength. We interpreted a set of field data to study the effects of spacing of Schefflera arboricola on root area ratio (RAR), root tensile strength and their combined effects on soil shear strength (also termed root cohesion). S. arboricola was transplanted into compacted silty sand at a spacing of 0.5 m, 0.8 m and 1.1 m. After 20 months of growth in the field, the root systems were excavated for root tensile testing and post-test trait measurements. Plant spacing affected the growth and tensile strength of roots. More closely spaced plants had higher RAR but lower root tensile strength, especially for roots 0.5-2 mm in diameter. According to the existing root breakage and fibre bundle models used in this study, which calculate root cohesion as the product of RAR and root tensile strength, the effects of plant spacing on root cohesion were minimal for most soil depths apart from 0.4- to 0.5-m depth.
机译:机械根部增强不仅取决于根生物力学特性,还取决于根生物法。虽然已知植物间距可以影响根生长,但目前尚不清楚它如何影响根抗拉强度。我们解释了一组现场数据,以研究Schefflera Arboricola间距对根面积比(RAR),根系拉伸强度及其对土壤剪切强度的综合影响(也称为根内凝聚)的影响。将Arboricola移植到压实的粉煤中,间距为0.5μm,0.8m和1.1m。经过20个月的田间成长后,根系系统被挖掘用于根拉伸检测和后检测特征测量。植物间距影响根部的生长和拉伸强度。更紧密间隔的植物具有更高的RAR但较低的根拉伸强度,特别是直径为0.5-2mm的根。根据本研究中使用的现有的根断裂和纤维束模型,该模型将根凝聚力计算为RAR和根抗拉强度的产物,对大多数土壤深度的植物间距对根内粘性的影响最小,除了0.4至0.5- m深度。

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