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Modelling of the mechanical interaction between anchored wire meshes and granular soils

机译:锚固网与粒状土之间机械相互作用的建模

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摘要

In this paper a theoretical and numerical analysis of the mechanical interaction between an anchored deformable facing structure and the underlying granular soil is presented. The reinforcement system is mainly composed of wire meshes, geosynthetics, bars/ties, and spike steel plates. This is usually employed for stabilising potentially unstable slopes. The punching process that can occur locally is described by considering the complex interaction mechanisms arising among the different system elements and the soil. For the sake of simplicity, the soil stratum and the anchor are assumed to be horizontal and vertical, respectively. A simplified displacement-based approach is introduced with the main goal of evaluating both the maximum force that can be applied on the anchor and the correlated penetration of the spike plate within the soil. The approach is validated by means of experimental laboratory test results already available in the literature. Finally, in order to stress the role of the spike plates' spacing and the soil stiffness in influencing the mechanical response of the system, the numerical results of parametric analyses are discussed.
机译:本文对锚固的可变形饰面结构与下面的粒状土之间的机械相互作用进行了理论和数值分析。增强系统主要由金属丝网,土工合成材料,钢筋/扎带和长钉钢板组成。通常用于稳定潜在不稳定的斜坡。通过考虑在不同系统元素和土壤之间产生的复杂相互作用机制来描述可能在本地发生的冲压过程。为了简单起见,假定土壤层和锚定分别为水平和垂直。引入了一种基于位移的简化方法,其主要目的是评估可施加在锚上的最大力以及钉板在土壤中的相关穿透力。该方法已通过文献中已有的实验实验室测试结果进行了验证。最后,为了强调钉板间距和土壤刚度在影响系统机械响应中的作用,讨论了参数分析的数值结果。

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