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Design of geosynthetic reinforced column supported embankments using an interaction diagram

机译:使用交互图设计地土工合成柱的设计堤防

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Geosynthetic reinforced column supported embankments predominantly utilise two mechanisms to transfer embankment loads towards column heads, soil arching and membrane actions. When undertaking the design of column supported embankments, it is common practice to perform a two-step design, whereby the arching actions are estimated independently of the subsoil deformation and membrane actions. This approach is unable to capture the deformation dependency exhibited by both arching and membrane actions. This paper presents deformation dependent arching and membrane action models and implements them within an interaction diagram. It is shown that an interaction diagram-based design approach is capable of performing an ultimate and serviceability limit state design of a geosynthetic reinforced column supported embankment. In contrast, most existing analytical design methods only consider the ultimate limit state. The proposed method is applied to a design example where the benefits of such a design approach are demonstrated.
机译:土工合成加强柱支撑的堤坝主要利用了两个机制来转移堤防载荷,土壤拱形和膜动作。在进行所支撑的堤坝的设计时,常规做法是执行两步设计,由此估计拱形动作是独立于底土变形和膜动作的估计。这种方法无法捕获由拱形和膜动作呈现的变形依赖性。本文呈现了变形依赖性拱形和膜动作模型,并在交互图中实现它们。结果表明,基于关系图的设计方法能够执行支撑堤的地磁增强柱的最终和可靠性限制状态设计。相比之下,大多数现有的分析设计方法仅考虑最终的极限状态。所提出的方法应用于这种设计方法的益处的设计示例。

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