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Fiber Bragg Grating-Based Performance Monitoring of Piles Fiber in a Geotechnical Centrifugal Model Test

机译:基于光纤布拉格光栅的岩土式离心模型试验中的桩纤维性能监测

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摘要

In centrifugal tests, conventional sensors can hardly capture the performance of reinforcement in small-scale models. However, recent advances in fiber optic sensing technologies enable the accurate and reliable monitoring of strain and temperature in laboratory geotechnical tests. This paper outlines a centrifugal model test, performed using a 60 g ton geocentrifuge, to investigate the performance of pipe piles used to reinforce the loess foundation below a widened embankment. Prior to the test, quasidistributed fiber Bragg grating (FBG) strain sensors were attached to the surface of the pipe piles to measure the lateral friction resistance in real time. Via the centrifuge actuator, the driving of pipe piles was simulated. During testing, the variations of skin friction distribution along the pipe piles were measured automatically using an optical fiber interrogator. This paper represents the presentation and detailed analysis of monitoring results. Herein, we verify the reliability of the fiber optic sensors in monitoring the model piles without affecting the integrity of the centrifugal model. This paper, furthermore, shows that lateral friction resistance developed in stages with the pipe piles being pressed in and that this sometimes may become negative.
机译:在离心试验中,传统传感器几乎不能在小型模型中捕获增强的性能。然而,光纤传感技术的最近进步使实验室岩土考试中的应变和温度的准确和可靠地监测。本文概述了一种离心模型试验,使用60g吨地理长度进行,研究了用于加强堤防低于加强黄土基础的管桩的性能。在测试之前,将QuasiDiedRibuted光纤布拉格光栅(FBG)应变传感器连接到管桩的表面上,以实时测量横向摩擦阻力。通过离心机执行器,模拟管桩的驱动。在测试期间,使用光纤询问器自动测量沿管桩沿管桩的皮肤摩擦分布的变化。本文代表了监测结果的介绍和详细分析。这里,我们验证了光纤传感器在监测模型桩时的可靠性而不影响离心模型的完整性。此外,本文示出了在与管桩中沿阶段开发的横向摩擦阻,并且这有时可能变为负。

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