岩土力学 ›› 2025, Vol. 46 ›› Issue (4): 1310-1322.doi: 10.16285/j.rsm.2024.0825CSTR: 32223.14.j.rsm.2024.0825

• 测试技术 • 上一篇    下一篇

分布式光纤传感器在大体积混凝土筏板基础中的耦合性能研究

侯公羽,张世欧,崔迪,陈宏波,毕立原,尚宇豪   

  1. 中国矿业大学(北京)力学与土木工程学院,北京 100083
  • 收稿日期:2024-07-03 接受日期:2024-11-13 出版日期:2025-04-11 发布日期:2025-04-15
  • 通讯作者: 张世欧,男,2000年生,博士研究生,主要从事岩石力学及岩土工程健康监测等方面的研究工作。E-mail: lamender1114@163.com
  • 作者简介:侯公羽,男,1965年生,博士,教授,博士生导师,主要从事岩土工程、岩石力学方面的教学与研究工作。E-mail: hgyht@126.com
  • 基金资助:
    国家自然科学基金委员会与2020年度高速铁路基础研究联合基金资助重点项目(No.U2034205)。

Research on coupling performance of distributed fiber optic sensor in massive concrete raft foundation

HOU Gong-yu, ZHANG Shi-ou, CUI Di, CHEN Hong-bo, BI Li-yuan, SHANG Yu-hao   

  1. School of Mechanics and Civil Engineering, China University of Mining and Technology(Beijing), Beijing 100083, China
  • Received:2024-07-03 Accepted:2024-11-13 Online:2025-04-11 Published:2025-04-15
  • Supported by:
    This work was supported by the National Key Project of National Natural Science Foundation of China and 2020 High-speed Railway Basic Research Joint Fund (U2034205).

摘要: 大量的岩土工程例如大体积混凝土结构需要分布式的裂缝监测,光纤监测技术可以实现分布式监测。为了探究分布式光纤与大体积混凝土的耦合性能,开展了理论分析、数值模拟和室内试验研究,并在大体积混凝土筏板基础中进行了应用。结果表明:基于剪切滑移理论建立的光纤在受压状态下的应变传递模型能够实现对光纤应变传递效率的精确量化,并采用数值模拟验证了该模型的准确性和可靠性。通过对钢筋混凝土梁采用不同的光纤布置方法,并进行三分点分级加载试验,研究了不同布置方式下光纤与混凝土的耦合性能,结果显示沿箍筋垂直方向布设光纤与混凝土具有更好的耦合效果。大体积混凝土筏板基础的现场光纤监测应用研究表明,光纤传感器与大体积混凝土结构具有良好的耦合性能,准确监测到了筏板基础浇筑后各关键区域的应变演化过程与规律。研究成果为分布式光纤技术监测岩土工程结构的变形提供了理论基础和关键技术。

关键词: 分布式光纤传感技术, 耦合性能, 应变传递机制, 大体积混凝土筏板基础应变监测

Abstract: A substantial number of geotechnical projects, including massive concrete structures, necessitate distributed crack monitoring, which can be accomplished through the implementation of fiber optic monitoring technology. In order to investigate the coupling performance of distributed optical fiber and mass concrete, a multifaceted approach was employed, encompassing theoretical analysis, numerical simulation, and indoor experimental studies. These investigations were applied to a mass concrete raft slab foundation. The findings indicate that the strain transfer model of optical fiber under compression, established based on shear-slip theory, can achieve precise quantification of the strain transfer efficiency of optical fiber. Numerical simulations are employed to verify the accuracy and reliability of the model. The coupling performance between optical fiber and concrete under different arrangement methods is studied by using different optical fiber arrangement methods for reinforced concrete beams and conducting three-point graded loading tests. The results show that the optical fiber laid along the vertical direction of the reinforcement has a better coupling effect with the concrete. The on-site fiber optic monitoring of mass concrete raft foundation demonstrates the efficacy of fiber optic sensors in coupling with the mass concrete structure, facilitating precise strain evolution process monitoring and key area law determination post-casting. The research findings establish a theoretical foundation and essential technology for distributed fiber optic technology in geotechnical engineering structure deformation monitoring.

Key words: distributed optical fiber sensing technology, coupling performance, strain transfer mechanism, strain monitoring of massive concrete raft foundation

中图分类号: TU 476
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