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Failure mechanism of strip footing on geotextile- reinforced soil

机译:土工织物增强土地脚踏板的失效机制

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Several laboratory model tests were carried out on the bearing capacity of strip footings on reinforced soil foundation and reinforced slope. Compared with unreinforced cases, the deformation and failure of reinforced earth in different foundation conditions were monitored and analyzed. In order to visualize a failure mechanism when the ground reaches the state of limit equilibrium, a new numerical procedure was proposed. Assuming an elastic-perfectly plastic model, a smeared shear band approach and a modified initial stress method enable the proposed procedure to create an explicit collapse mode by the stress yield condition. On the basis of the development of failure mode and deformation of foundation, the bearing capacity of strip footings can be significantly increased by the inclusion of geotextile. And because the procedure considers the stiffness and deformation of the material, it may be applied to complex stability problems.
机译:几种实验室模型试验是对钢筋土地基础和增强坡度的带材轴承的承载力。 与未更换案例相比,监测和分析了不同基础条件下钢筋地球的变形和失效。 为了在地面达到限制平衡状态时可视化故障机制,提出了一种新的数值。 假设弹性完美的塑料模型,涂抹剪切带方法和改进的初始应力方法使得提出的过程能够通过应力屈服条件创建显式崩溃模式。 在发生故障模式的发展和基础变形的基础上,通过包含土工布,可以显着增加带材的承载能力。 并且因为该过程考虑了材料的刚度和变形,所以它可以应用于复杂的稳定性问题。

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