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Composite Anchors for Slope Stabilisation: Monitoring of their In-Situ Behaviour with Optical Fibre

机译:用于稳定边坡的复合锚:使用光纤监控其原位行为

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Composite anchors are special passive sub-horizontal reinforcements recently developed for remediation of unstable slopes. They are composed of a hollow steel bar, installed by a self-drilling technique in the soil, coupled with tendons cemented in the inner hole to increase the global anchor tensile strength. The anchors are primarily intended to stabilise medium to deep landslides, both in soils or weathered rock masses. Among the valuable advantages of composite anchors are their low cost, ease of installation, and flexibility in execution, as testified by a rapid increase in their use in recent years. The bond strength at the soil-anchor interface is the main parameter for both the design of these reinforcements and the evaluation of their long-term effects for landslide stabilisation. After a brief description of the composite anchor technology, this paper presents a novel methodology for monitoring the strain and stress accumulated in the anchors over time when installed in an unstable slope. The new monitoring system is composed of a distributed fibre optic sensing system, exploiting the optical frequency domain reflectometry (OFDR) technique, to measure the strain exerted on the optical fibre cable embedded with the tendons inside the bar. The system permits an evaluation of the axial force distribution in the anchor and the soil-anchor interface actions with a spatial resolution of up to some millimetres. Therefore, it allows determination of the stabilising capability associated with the specific hydrogeological conditions of the site. Furthermore, upon an extensive validation, the system may become part of a standard practice to be applied in this type of intervention, aimed at evaluating the effectiveness of the anchor installation and its evolution over time.
机译:复合锚是最近开发的用于修复不稳定斜坡的特殊被动水平下钢筋。它们由空心钢条组成,通过自钻技术将其安装在土壤中,并在内部孔中胶结有筋,以增加整体锚固件的抗拉强度。这些锚主要用于稳定土壤或风化岩体中的中至深层滑坡。复合锚的宝贵优势之一是其成本低,易于安装和执行灵活性,这在近年来的快速使用中得到了证明。在土-锚界面处的粘结强度是设计这些钢筋和评估其对滑坡稳定的长期影响的主要参数。在简要描述了复合锚固技术之后,本文提出了一种新颖的方法,用于监测安装在不稳定斜坡上随时间推移而在锚固中累积的应变和应力。新的监视系统由分布式光纤传感系统组成,该系统利用光频域反射法(OFDR)技术来测量施加在钢筋内部带有筋束的光纤电缆上的应变。该系统可以评估锚固中的轴向力分布以及土锚界面的作用,其空间分辨率可达几毫米。因此,它可以确定与现场特定水文地质条件有关的稳定能力。此外,经过广泛的验证,该系统可能成为要应用于此类干预措施的标准实践的一部分,旨在评估锚固装置的有效性及其随时间的演变。

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