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Application of Brillouin-based distributed optical fibre sensing technology to measure strain development of a slope model

机译:布里渊的分布式光纤传感技术在坡度模型测量应变开发中的应用

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For almost two decades, distributed optical fibre sensors are well-known for an alternative to conventional instrumentation in geotechnical engineering applications. However, the technology is yet to be fully implemented due to uncertainties of attachment method or the best way to deploy optical fibre for geo-structure health monitoring. Thus, a project of a 1g model of soil slope was intiated and was constructed with three layers of optical fibre that were horizontally embedded in the soil slope mass in order to observe strain development due to a surcharge load. The strain mobilizations were measured by using Brillouin Optical Time-Domain Analysis (BOTDA) sensing system during the incremental loading on the slope crest until a failure feature had been initiated. The aim of study is to evaluate the development of horizontal strains from Brillouin-based optical fibre sensor subjected to soil slope deformation which lead to slope failures. The results showed that the measurands of optical fibre were highly accumulated at the position of 0.3m depth from the slope crest. The development of high strain at this position was because of soil-fibre interaction to the overburden imposed load in perpendicular direction of optical fibre placement. Therefore, it can be concluded that the optical fibre strain in the soil-strain field were well-responded to the particle soil movement. In addition, the significant trend of positive strain curves were illustrated when the soil was under compression due to external load from a surcharge load plus self-weight of the soil material.
机译:在近二十年来,分布式光纤传感器是众所周知的岩土工程应用中的常规仪器的替代方案。然而,由于附件方法的不确定性或部署地球结构健康监测的最佳方法,该技术尚未完全实现。因此,阐明了1G模型的1G模型的项目,并用三层光纤构造,该光纤水平嵌入土坡块中,以观察由于附加载荷引起的应变发育。通过在斜坡嵴上的增量负载期间使用布里渊光学时域分析(BOTDA)感测系统来测量应变动员,直到开始故障特征。研究的目的是评估从布里渊的光纤传感器的水平菌株的发展,经受土壤斜坡变形,导致斜坡故障。结果表明,光纤的尺寸高度累积在斜坡顶部0.3米深度的位置。该位置的高应变的发展是因为土壤 - 纤维相互作用与光纤放置垂直方向上的覆盖型施加的载荷。因此,可以得出结论,土壤 - 应变场中的光纤应变良好地响应于颗粒土壤运动。此外,由于从附加载荷加上土壤材料的外部载荷,土壤受到挤压的压缩时,呈阳性应变曲线的显着趋势。

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