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首页> 外文期刊>International Journal of Geosynthetics and Ground Engineering >Application of Distributed Fiber Optic Sensing Technique to Monitor Stability of a Geogrid-Reinforced Model Slope
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Application of Distributed Fiber Optic Sensing Technique to Monitor Stability of a Geogrid-Reinforced Model Slope

机译:分布式光纤传感技术在土工格栅增强模型坡度监测稳定性的应用

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The development of the smart geosynthetics in recent years has shown tremendous potential with regard to its capability to strengthen geotechnical structures and, meanwhile, evaluate the local strains/stresses. This paper introduced the application of a distributed monitoring system to monitor a laboratory model slope reinforced with smart geogrids, in which the coherent optical frequency domain reflectometry technology (C-OFDR) was used to continuously monitor the geogrid deformations under different surcharge loadings. It showed that the measured results using C-OFDR technology were generally consistent to those from the fiber Bragg grating (FBG) sensors; however, C-OFDR has other significant advantages over the FBG technology. Empirical relationships between the geogrid characteristic strain measured by the C-OFDR sensors and the factor of safety calculated by the conventional limit equilibrium method were established, making it possible to use the geogrid characteristic strain to monitor the slope stability. This study proved the effectiveness of the distributed C-OFDR sensing technology in monitoring the geogrid-reinforced slope stability in the laboratory scale, a critical stepping stone to extend this technology to the field.
机译:近年来智能地质合成的发展已经表明,在加强岩土结构的能力方面表现出巨大的潜力,同时评估局部菌株/应力。本文介绍了分布式监控系统的应用,以监测利用智能地质格栅加固的实验室模型斜率,其中相干光学频率域反射仪技术(C-OFDR)用于连续监测不同附加载荷下的地质格栅变形。它表明,使用C-OFDR技术的测量结果通常与光纤布拉格光栅(FBG)传感器的结果一致;然而,C-OFDR通过FBG技术具有其他显着的优势。建立了C-OFDR传感器测量的地理格格特征应变与传统极限平衡法计算的地理格格特征应变之间的经验关系,使得可以使用地理格格特性应变来监测斜率稳定性。本研究证明了分布式C-OFDR传感技术在实验室规模中监测土工格栅增强边坡稳定性的有效性,将该技术扩展到现场的关键踏脚石。

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