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Influence of wire mesh characteristics on reinforced soil model wall failure mechanisms-physical and numerical modelling

机译:丝网特性对加筋土模型墙破坏机理的影响-物理和数值模拟

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This paper presents the details of experimental and numerical analysis performed on three 0.8 m-high reinforced earth model walls with strip footing surcharge near the wall facing. The study investigates how wire mesh strength and geometry affect the failure mechanism. All three walls were nominally identical, except for reinforcement strength and geometry. The displacement field of the entire cross section was captured by high resolution digital camera through transparent sidewall. The resulting images were analyzed using digital image correlation software. The results indicate that both reinforcement strength and aperture size influence the type of failure mechanism. Numerical modelling was also applied to assess the influence of sidewall friction (3D model) and reinforcement stiffness and strength (2D model) on the failure mechanism of the walls. The parameters for the numerical models were derived from independent tests and results, which were compared with the experimental observations. A good level of agreement with measurements was confirmed, even for the 2D model that excluded sidewall friction.
机译:本文介绍了在三面0.8 m高的加筋土模型墙上进行试验和数值分析的详细信息,墙面附近带状地基附加费。该研究调查了丝网强度和几何形状如何影响破坏机理。除了加强强度和几何形状外,所有三壁名义上都是相同的。高分辨率的数码相机通过透明侧壁捕获整个横截面的位移场。使用数字图像相关软件分析所得图像。结果表明,增强强度和孔径大小都会影响破坏机理的类型。数值模拟还被用来评估侧壁摩擦力(3D模型)和钢筋的刚度和强度(2D模型)对墙体破坏机理的影响。数值模型的参数来自独立的测试和结果,并与实验观察结果进行了比较。即使对于排除侧壁摩擦的2D模型,也能与测量值保持良好的一致性。

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