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Earth pressure coefficients for reinforcement loads of vertical geosynthetic- reinforced soil retaining walls under working stress conditions

机译:垂直土工合成材料加筋土挡墙在工作应力条件下的加筋荷载土压力系数

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摘要

Based on the nonlinear elastic theory and stress-dilatancy theory, two earth pressure coefficients were proposed to analyze the reinforcement loads at the potential failure surface of vertical geosynthetic-reinforced soil retaining walls under working stress conditions. The earth pressure coefficients take into account the force equilibrium and compatible deformations between soil and reinforcement, and can be obtained by solving two implicit functions by an iterative or graphic method. The effects of backfill compaction and facing restriction are taken into account in the earth pressure coefficients by two additional stress factors, which have been derived analytically using straightforward approaches. To validate the effectiveness of the proposed methods, comparisons were made with the results from large scale tests and numerical simulations. It was demonstrated that the reinforcement loads predicted by the proposed methods were in good agreement with the experimental or numerical results.
机译:基于非线性弹性理论和应力剪胀理论,提出了两种土压力系数来分析工作应力条件下竖向土工合成材料加筋土挡墙潜在破坏面的加筋载荷。土压力系数考虑了力平衡以及土与钢筋之间的相容变形,可以通过迭代或图形方法求解两个隐函数来获得。在土压力系数中还考虑了两个附加应力因子,这是使用简单方法通过分析得出的回填压实和面层约束的影响。为了验证所提出方法的有效性,将其与大规模测试和数值模拟的结果进行了比较。结果表明,所提方法预测的加固载荷与试验或数值结果吻合良好。

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