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Flexible systems anchored to the ground for slope stabilisation: Critical review of existing design methods

机译:灵活的系统固定在地面上以稳定边坡:现有设计方法的严格审查

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The aim of this article is to review and analyse the different hypotheses assumed in the calculation methods for flexible systems used in slope stabilisation. These systems are formed by a membrane (cable net or high-resistance wire mesh) and anchored bolts. Several manufacturers and independent researchers assume that the membrane can stabilise the slope by exerting a normal pressure, which leads to an increase in the shear resistance of the ground: This system behaviour is denominated‘active’. The twomain conditions that flexible systems have to fulfil to be considered active (to avoid detachment or sliding frombeing produced) are that the membrane should be pre-tensionedwhen installed and that the slope must have a convex curvature. None of the manufacturers-installers verify the membrane's pretension force and moreover, in many cases, the membrane does not have a convex curve, but may be planar or even have a concave one. Additionally, the force applied on bolts to tighten themdoes not usually exceed 50 kN. Thus, these systems do not work actively, but passively; which means they are able to retain a mass of soil or a rock piece when the sliding has already occurred, but they are unable to prevent it. Therefore, current design methods used by manufacturers and researchers can be incorrect, leading to extra installation costs in the flexible system in some cases or even an unsafe solution in others.
机译:本文的目的是回顾和分析在用于边坡稳定的柔性系统的计算方法中假设的不同假设。这些系统由薄膜(电缆网或高阻金属丝网)和锚定螺栓形成。几家制造商和独立研究人员认为,该膜片可以通过施加正常压力来稳定斜坡,这会导致地面的抗剪力增加:这种系统的行为被称为“主动”。柔性系统必须满足的两个主要条件才被认为是活动的(以避免产生分离或滑动),即膜片在安装时应预张紧,并且坡度必须具有凸曲率。没有一家制造商的安装商会验证该膜的预紧力,而且,在许多情况下,该膜没有凸曲线,但可以是平坦的甚至是凹的。此外,拧紧螺栓的力通常不超过50 kN。因此,这些系统不是主动工作,而是被动工作。这意味着当已经发生滑动时,它们能够保留大量的土壤或岩石块,但无法阻止。因此,制造商和研究人员当前使用的设计方法可能不正确,在某些情况下会导致柔性系统中额外的安装成本,而在另一些情况下甚至会导致不安全的解决方案。

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