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Stress-dependent method for calculating the modulus improvement factor in geocell-reinforced soil layers

机译:基于焦孔加固土层计算模量改善因子的应力依赖性方法

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This paper presents an analytical method for determining the modulus improvement factor (MIF) in geocellreinforced soil layers. Using a modified version of the hyperbolic soil model as a constitutive model, the method is developed based on the soil-reinforcement interaction relating nonlinear elastic soil behavior to the linear elastic response of the reinforcement. The proposed method, in an original way, explicitly takes into account the geometry of the geocell pocket, effects of soil and geocell-reinforcement stiffness, compaction-induced stresses, soil strength and strain compatibility. The method can be used both analytically and using simple and presented non-dimensional charts. Parametric analyses show that the reinforcement, soil relation and the stresses induced during the compaction procedure are the major factors influencing MIF. An evaluation using data from several laboratory, full-scale and field experiments in works is presented showing good predictive capability of proposed method. An application procedure for calculating MIF is presented.
机译:本文介绍了一种用于测定地磁面池土壤层中模量改善因子(MIF)的分析方法。使用双曲线模型的改进版本作为本构模型,该方法是基于土壤增强件相互作用与加固的线性弹性响应相关的土壤加固相互作用。以原始方式,该方法明确地考虑了地质蜂窝口袋的几何形状,土壤和地理蜂窝增强刚度,压实诱导的应力,土壤强度和应变相容性。该方法可以在分析和使用简单和呈现的非维图中使用。参数分析表明,压实过程中诱导的增强,土壤关系和应力是影响MIF的主要因素。使用来自若干实验室,全规模和现场实验的数据的评估显示出良好的提出方法的预测能力。提出了一种计算MIF的应用程序。

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