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Numerical Study on Effects of the Number of Reinforcement Layers for Reinforced-sand Retaining Wall

机译:增强砂挡墙钢筋数量效应的数值研究

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In order to investigate effects of the number of reinforcement layers on the deformation and failure of reinforced-sand retaining walls, results from plane strain laboratory model tests are simulated by a nonlinear FEM analyses incorporating an elasto-plastic constitutive for sand. The constitutive model takes into account the effects of the following factors for sand: (a) pre-peak work-hardening and post-peak work-softening; (b) effects of stress history and stress path; (c) the confining pressure dependency and strength anisotropy; (d) the stress-dilatancy characteristics; and (e) strain localization into a shear band(s). The results indicate that load-settlement relationships obtained by the FEM analyses generally agree well with those from the physical experiments. It is found that the peak footing load increases significantly with the increase of the number of reinforcement layers, despite the total tensile stiffness of all the reinforcements in each model remains the same. In addition, the results also indicate that the progressive failure of reinforced-sand retaining walls with a development of shear bands is reasonably simulated by the proposed FEM analyses, and the effects of the reinforcement layers can be well understood.
机译:为了研究增强层的数量对增强砂挡土墙的变形和失效的影响,由不含弹性塑料本构型用于沙子的非线性有限元分析模拟了来自平面应变实验室模型试验的结果。本构模型考虑了以下因素对砂的影响:(a)预峰值工作 - 硬化和后峰值工作软化; (b)应力历史和应力路径的影响; (c)限制压力依赖性和强度各向异性; (d)应力膨胀特征; (E)将剪切带的应变定位成剪切带。结果表明,由有限元分析获得的负载沉降关系通常与物理实验中的那些相同。结果发现,随着加强层的数量的增加,峰值距离随着加强层的数量的增加而增加,尽管每个模型中所有增强剂的总张力刚度保持不变。另外,结果还表明,通过所提出的有限元分析合理地模拟了具有剪切带的增强砂挡土墙的逐渐失效,并且可以很好地理解加强层的效果。

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