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Distributed Fiber Optical Technology for Damage Identification of Engineering Structure

机译:分布式纤维光学技术,用于工程结构的损伤识别

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摘要

To conduct optical fiber monitoring rock slide model test and optical fiber monitoring of steel concrete interface slip model test, the large triaxial shear test of geotechnical engineering was used. First, the data of sliding distance and optical loss and their dynamic range were obtained. Second, the slide distance and fiber loss relation curve and the fitting equation were worked out. Finally, the typical applications of optical fiber sensing technology in Rock Engineering (high slope engineering, rock foundation of Dam Engineering) slope stability and geological disaster monitoring were put forward.The results showed that optical fiber sensing was very sensitive, and the loss value was 30 to 50dB. The dynamic range of rock slide monitoring fiber was 3 to 3.5mm, and the dynamic range of the interface slip monitoring fiber was 1.6mm. Thus, the sensing system can detect the sliding process of the interface between the concrete and the steel plate. It provides some reference for the sliding monitoring of the composite materials.
机译:要进行光纤监测岩石滑动模型试验和光纤监测钢混凝土界面滑动模型试验,使用了岩土工程的大三轴剪切试验。首先,获得了滑动距离和光学损耗及其动态范围的数据。其次,制定了滑动距离和纤维损耗关系曲线和拟合方程。最后,提出了岩石工程中光纤传感技术的典型应用(大坡工程,大坝工程岩石基础)边坡稳定性和地质灾害监测。结果表明,光纤感测非常敏感,损失值是非常敏感的30到50dB。摇滚监控光纤的动态范围为3至3.5mm,界面滑动监测纤维的动态范围为1.6mm。因此,传感系统可以检测混凝土和钢板之间的界面的滑动过程。它为复合材料的滑动监测提供了一些参考。

著录项

  • 作者

    Xiaoma Dong; Liqiang Zhou;

  • 作者单位
  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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