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A Multiphase Approach To The Stability Analysis Of Reinforced Earth Structures Accounting For A Soil-strip Failure Condition

机译:考虑土条破坏条件的加筋土结构稳定性分析的多阶段方法

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A multiphase model, developed in the context of elastoplasticity, is applied to the simulation and design of reinforced earth retaining structures. The main feature of this model is to combine the advantage of a homogenization approach, as regards its computational efficiency, with the ability to account for a specific failure condition at the interface between the soil and the reinforcing strips, which may have a decisive influence on the behavior of the structure. A particular emphasis is put on the stability analysis of this kind of reinforced soil structures, formulated within the framework of the yield design theory. Making use of a generalized rigid block failure mechanism, the stability of a reinforced earth retaining wall is investigated by means of the kinematic approach, leading to upper bound estimates for the stability factor of the structure, which are then favorably compared with the results of an elastoplastic analysis. Special attention is paid to assessing in a quantitative way how a specific soil-strip failure condition affects the stability of the reinforced earth structure as a whole.
机译:在弹塑性的背景下开发的多相模型被用于模拟和设计加筋土工结构。该模型的主要特征是将均质化方法的优势(就其计算效率而言)与考虑土壤和增强条之间界面处的特定破坏条件的能力相结合,这可能对决定性因素产生决定性影响。结构的行为。特别强调的是在屈服设计理论框架内制定的这种加筋土结构的稳定性分析。利用广义刚性块破坏机制,通过运动学方法研究了加筋土挡土墙的稳定性,得出了结构稳定系数的上限估计值,然后将其与实测结果进行了比较。弹塑性分析。特别注意以定量方式评估特定的土条破坏条件如何影响整个加筋土结构的稳定性。

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