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A new approach for estimating internal stability of reinforced soil structures

机译:估计加筋土结构内部稳定性的新方法

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The current practice for designing reinforced soil structures involves the use of empirical or semi-empirical methods to estimate the maximum reinforcement loads using different variants of tributary area method. As the soil-reinforcement interaction is not explicitly captured in these methods, a number of limitations exist in estimating the maximum reinforcement load and pullout resistance. This paper presents a new method called the soil-reinforcement interaction method to assess the internal stability of reinforced soil structures. As a part of its derivation, a more refined interface friction model was developed that accounts for the increased friction from soil dilation and subsequent reduction in friction with displacement. By combining the interface friction model and reinforcement stiffness, an analytical model was developed to relate the displacement, strain, force, and mobilized frictional length for a given reinforcement. Using this model, an approach was developed to assess the internal stability of reinforced soil structures. The method allows estimation of the factor of safety against internal failure by considering the soil-reinforcement interaction and boundary conditions. To demonstrate the applicability of this method, several reported pullout tests and three full-scale reinforced walls are modeled.
机译:设计加筋土结构的当前实践包括使用经验或半经验方法来估算支流面积方法的不同变体的最大加筋荷载。由于在这些方法中未明确捕获土壤与钢筋之间的相互作用,因此在估算最大钢筋载荷和抗拔强度时存在许多限制。本文提出了一种新的方法,称为土壤-钢筋相互作用法,以评估加筋土结构的内部稳定性。作为其推导的一部分,开发了一种更完善的界面摩擦模型,该模型考虑了土壤膨胀引起的摩擦增加以及随位移而减小的摩擦。通过结合界面摩擦模型和钢筋刚度,开发了一个分析模型来关联给定钢筋的位移,应变,力和动员摩擦长度。使用该模型,开发了一种方法来评估加筋土壤结构的内部稳定性。该方法可以通过考虑土-筋相互作用和边界条件来估计防止内部破坏的安全系数。为了证明该方法的适用性,对几个报告的拉拔试验和三个全尺寸钢筋墙进行了建模。

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