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Interaction mechanisms in small-scale model MSE walls under the strip footing load

机译:小型模型MSE墙壁中的互动机制下的条带载荷下

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摘要

The effect of preloading on mechanically stabilised earth (MSE) has remained an aspect difficult to quantify in design, particularly when considering different reinforcement types, stiffness values, and facing rigidity. This study analyses several scaled model tests on MSE walls under a strip footing load with a single unloading-reloading cycle. Scaled models were constructed as part of this investigation to expand the evaluation of previously constructed full-scale tests. The strip footing load and wall deflections were measured and compared with analytical models. The failure mechanism of the soil, before and after the strip footing load, was included in the study via the particle image velocimetry (PIV) method. The results indicate that the bearing capacity of a strip footing is higher for a rigid facing than for a flexible facing. PIV analysis results for the first and second loading step formed two failure lines with the angle (pi/4 + phi/2). The deflection values in the second loading step, however, were smaller than those reached during the first loading in small-scale tests. Good agreement was observed between the proposed analytical method and experimental results for the second loading step, after taking into account the preloading effect.
机译:预加载在机械稳定的地球(MSE)上的效果仍然是在设计中量化的难度,特别是在考虑不同的加强类型,刚度值和面对刚性时。本研究分析了在带有单个卸载重载循环的条带基部负载下的MSE墙上的几种缩放模型测试。缩放模型被构建为这一调查的一部分,以扩展对先前构造的全规模测试的评估。测量条带材负荷和壁偏转并与分析模型进行比较。通过颗粒图像速度(PIV)方法包括在研究中包括在研究中的土壤,前后的破坏机制。结果表明,对于柔性面对,条带脚的承载力较高。 PIV分析结果的第一和第二加载步骤形成了两个故障线,角度(PI / 4 + PHI / 2)。然而,第二加载步骤中的偏转值小于在小规模测试中达到的第一次达到的偏转值。考虑到预加载效果后,在第二个装载步骤的建议分析方法和实验结果之间观察到良好的一致性。

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