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Stress Dilatancy andReinforcement Loadof Vertical-Reinforced Soil Composite: Analytical Method

机译:竖向加筋土复合材料的应力剪胀与加筋荷载:解析法

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摘要

A straightforward analytical method is proposed to calculate the reinforcement loads of vertical-reinforced soil composites before the strength of soil is fully mobilized. The method assumes compatibility of soil and reinforcement deformations along the potential failure surface. It makes use of the nonlinear stress-strain relationship of soil in a plane-strain condition and Rowe’s stress-dilatancy relationship. It has the advantage of taking into account the soil dilatancy before failure and can properly estimate the reinforcement load with small or medium soil deformation. The effect of soil compaction on the reinforcement load is taken into account through an elastic unloading/reloading approach. The method was first validated against the results of a calibrated numerical analysis. It was then used to predict the reinforcement loads of two large-scale tests. The proposed method has the potential to fully develop into an analytical method for reinforced soil retaining walls, provided that effects of facing restriction and compaction can be quantified.
机译:提出了一种简单的分析方法,可以在充分调动土壤强度之前计算竖向加筋的土壤复合材料的加筋荷载。该方法假定沿潜在破坏面的土体和钢筋变形具有相容性。它利用了平面应变条件下土壤的非线性应力-应变关系和Rowe的应力-剪胀关系。它的优点是考虑了破坏前的土壤膨胀性,并且可以正确估计中小或中等土壤变形时的加固载荷。通过弹性卸载/重新加载方法考虑了土壤压实对增强载荷的影响。首先根据校准数值分析的结果验证了该方法。然后将其用于预测两个大型测试的钢筋载荷。如果可以量化面对约束和压实的影响,则所提出的方法有可能完全发展为用于加筋土挡土墙的分析方法。

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