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Effects of root spatial distribution on the elastic-plastic properties of soil-root blocks

机译:根系空间分布对土块体弹塑性特性的影响

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摘要

Plant roots significantly influence soil properties, especially in soil beyond the limited area surrounding the main root stem. Some bias results may be generated if plastic properties of soil are merely used in evaluating slope stability without considering the effects of plant roots. In this research, effects of root spatial distribution on the elastic-plastic characteristics of soil-root blocks were examined. Triaxial tests and the Duncan-Chang model were used to analyze the correlation between root spatial characteristics and soil elastic-plastic properties. Safety factors of vegetated slopes were calculated to investigate the effect of roots on slope stability. The limit stress of remoulded soil was 103.52% to 231.61% greater than undisturbed soil in shallow soil layers. Increased root quantity led to an increased the failure ratio of soil bulk and the initial tangent modulus increased with root diameter. When calculating the safety factor of vegetated slopes, soil indexes for soil beyond the small cylinder surrounding the main stem should be properly considered to avoid safety factor overestimation.
机译:植物根系显着影响土壤特性,尤其是在主根茎周围有限区域之外的土壤中。如果仅将土壤的塑性特性用于评估边坡稳定性而不考虑植物根系的影响,则可能会产生一些偏差结果。在这项研究中,研究了根系空间分布对土块体弹塑性特性的影响。利用三轴试验和邓肯-张模型分析了根系空间特征与土壤弹塑性之间的关系。计算了植被斜坡的安全系数,以研究根系对斜坡稳定性的影响。重塑土的极限应力比浅土层的原状土大103.52%至231.61%。根系数量的增加导致土体破坏率的增加,初始切线模量随根系直径的增加而增加。在计算植被坡的安全系数时,应适当考虑主茎周围小圆柱以外的土壤的土壤指数,以避免高估安全系数。

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