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Comparative study on the elongation measurement of a soil nail using optical lower coherence interferometry method and FBG method

机译:光学下相干干涉法与FBG法测量土钉伸长率的比较研究。

摘要

Optical fiber sensor has gained popularity for structural monitoring in recent decades. Studies on the monitoring for geotechnical structures with fully-distributed fiber sensors, however, are quite limited. In this study, the fully-distributed Lower Coherence Interferometry (LCI) sensors and quasi-distributed Fiber Bragg Grating (FBG) sensors are applied for measuring the strain distribution of a soil nail as a slender structure during pullout test. First, this paper introduces an innovative calibration method for the LCI system. Second, the paper describes the procedures of fiber instrumentation on soil nail. Third, the measured results by LCI technology and FBG technology are compared to study the strain distribution and friction resistance of soil nail during pullout test. Comparative study from test results indicates the characteristics of strain distribution and resistance contribution for different parts of soil nail. Through this study, the advantages and limitations of two sensing technologies are examined.
机译:在最近的几十年中,光纤传感器在结构监测中得到了普及。但是,关于使用全分布式光纤传感器监测岩土结构的研究非常有限。在这项研究中,采用全分布的较低相干干涉测量(LCI)传感器和准分布的光纤布拉格光栅(FBG)传感器来测量拔出测试期间作为细长结构的土钉的应变分布。首先,本文介绍了LCI系统的创新校准方法。其次,本文描述了在土壤指甲上进行纤维仪器化的程序。第三,比较了LCI技术和FBG技术的测量结果,以研究拔钉试验中土钉的应变分布和摩擦阻力。测试结果的对比研究表明,土钉不同部位的应变分布和抗力特性。通过这项研究,检查了两种传感技术的优缺点。

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