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首页> 外文期刊>Engineering Structures >Study of ballastless track structure monitoring by distributed optical fiber sensors on a real-scale mockup in laboratory
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Study of ballastless track structure monitoring by distributed optical fiber sensors on a real-scale mockup in laboratory

机译:实验室中基于分布式模型的分布式光纤传感器监测无ball轨道结构的研究

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摘要

Ballastless track structure are presently seen as an attractive alternative to conventional ballast. A new model was designed and a real-scale mockup was built and tested in fatigue test at IFSTTAR laboratory. To verify numerical simulations, the railway structure was monitored by conventional strain gages. A distributed fiber-optic strain sensing based on Rayleigh backscatter was also tested in this experiment. Fiber-optic cables were used as long-gage sensors and they were embedded in the concrete slabs of the structure. Firstly, we verified that the sensors were enough mechanical and chemical resistant for withstanding the stresses and the caustic environment experienced during concrete pouring process. Secondly, we validated the strain profiles measurements by comparison with the values obtained by strain gages. A good agreement was found throughout the duration of the fatigue test of 10 million cycles. Moreover, some cracks were observed early during the fatigue test. It is important to be able to monitor them during the service of ballastless track line. We showed that cracks can be detected and localized by fiber-optic distributed strain measurements. Finally, this experiment demonstrates that fiber-optic distributed strain sensing technique based on Rayleigh backscatter is a promising sensing technique to monitor ballastless track structures and more generally, civil engineering structures.
机译:目前,无轨道结构被认为是传统压载的一种有吸引力的替代方案。设计了一个新模型,并在IFSTTAR实验室进行了疲劳测试,并构建了实际模型。为了验证数值模拟,使用常规应变计对铁路结构进行了监控。在本实验中还测试了基于瑞利反向散射的分布式光纤应变传感。光纤电缆被用作长距离传感器,并被嵌入结构的混凝土板中。首先,我们验证了传感器具有足够的机械和化学耐性,可以承受混凝土浇筑过程中遇到的应力和苛性环境。其次,我们通过与应变计获得的值进行比较来验证应变曲线的测量结果。在1000万次疲劳测试的整个过程中均达成了良好的协议。此外,在疲劳试验的早期发现了一些裂纹。重要的是,在无ball轨道服务期间,必须对其进行监控。我们表明,可以通过光纤分布式应变测量来检测和定位裂纹。最后,该实验表明,基于瑞利背向散射的光纤分布式应变传感技术是一种有前途的传感技术,可用于监测无ball轨道结构以及更一般的土木工程结构。

著录项

  • 来源
    《Engineering Structures》 |2013年第11期|1751-1757|共7页
  • 作者单位

    PRES L'UNAM, IFSTTAR, COSYS Department, route de Bouaye, 44344 Bouguenais, France;

    PRES L'UNAM, IFSUAR, MAST Department, route de Bouaye. 44344 Bouguenais. France;

    PRES L'UNAM, IFSTTAR, COSYS Department, route de Bouaye, 44344 Bouguenais, France;

    RAILTECH International. Zl du Bas Pre, BP 9, 59590 Raismes, France;

    Universite Paris-Est, IFSTTAR, COSYS Department, 14-20 boulevard Newton, 77447 Marne la Vallee,France;

    PRES L'UNAM, IFSTTAR, COSYS Department, route de Bouaye, 44344 Bouguenais, France;

    EDF R&D. 6 quai Watier, 78400 Chatou, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ballastless track structure; Distributed fiber-optic sensors; Structural monitoring;

    机译:无轨道结构;分布式光纤传感器;结构监测;

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