首页> 外文期刊>Structural health monitoring >Strain and crack analysis within concrete members using distributed fibre optic sensors
【24h】

Strain and crack analysis within concrete members using distributed fibre optic sensors

机译:使用分布式光纤传感器的混凝土构件中的应变和裂纹分析

获取原文
获取原文并翻译 | 示例
           

摘要

This article presents laboratory tests, with the purpose being to verify the suitability of standard optical fibres in a tight jacket for advanced strain analysis within concrete members. An optical reflectometer was used to enable the optical signal to be processed on the basis of the Rayleigh scattering phenomenon, so that strains and/or temperature changes were determined along the length of the measuring fibre. The measurements were carried out continuously in a geometrical sense (distributed measurements), with a spatial resolution starting from as fine as 5 mm. The arrangement of optical fibres inside the heterogeneous concrete medium and on its surface allowed for the identification and detailed analysis of local phenomena such as cracks. Remote and early location of structural damage with an estimation of its scale provides new opportunities for the monitoring of the structural health of reinforced concrete structures, facilitating the interpretation of its behaviour as well as failure risk management based on comprehensive and reliable measurement data. If traditional spot techniques are used, this approach is not possible. The aim of the initial studies was to analyse the strain distributions over compressed and tensioned measurement sections located on the surface of a cylindrical specimen of concrete. In the tests which followed, the reinforced concrete rod was eccentrically tensioned with fibre optics installed inside. Qualitative and quantitative verification of crack widths was made, with a narrow range up to 0.05 mm and a wider one to 0.30 mm. The results of the studies show very good accuracy of optical fibre sensor technology as a reference technique during the analysis of microcracks and narrow cracks, and moderate accuracy in the case of wider cracks. Despite using optical fibres in a tight jacket which mediates in strain transfer, the results obtained can be very suitable for the assessment of the structural condition of the member under consideration. It is also worth noting that the tests conducted indicate the effectiveness of distributed optical fibre technology for the analysis of concrete homogeneity and its structural behaviour within compressed areas, as it is possible to calculate strains over measuring bases that start from lengths as short as 5 mm.
机译:本文介绍了实验室测试,目的是验证标准光纤在紧外套中是否适合在混凝土构件中进行高级应变分析。使用光学反射仪使光信号能够基于瑞利散射现象进行处理,以便沿着测量光纤的长度确定应变和/或温度变化。在几何意义上连续进行测量(分布式测量),其空间分辨率从5毫米开始。光纤在异质混凝土介质内部及其表面上的排列可以识别和详细分析局部现象,例如裂缝。结构损伤的偏远和早期定位及其估计规模为监视钢筋混凝土结构的结构健康提供了新的机会,有助于基于综合而可靠的测量数据来对其行为进行解释以及进行故障风险管理。如果使用传统的斑点技术,则这种方法是不可能的。初步研究的目的是分析位于混凝土圆柱试样表面上的压缩和张紧测量段上的应变分布。在随后的测试中,钢筋混凝土杆通过安装在内部的光纤偏心张紧。对裂纹宽度进行了定性和定量验证,其窄范围最大为0.05毫米,宽范围为1至0.30毫米。研究结果表明,在微裂纹和狭窄裂纹的分析中,光纤传感器技术作为参​​考技术具有很高的精度,而在裂纹较大的情况下,其精度适中。尽管在紧套中使用光纤来传递应变,但所得结果仍非常适合评估所考虑的构件的结构状况。值得注意的是,所进行的测试表明了分布式光纤技术对于分析压缩区内混凝土均质性及其结构行为的有效性,因为可以计算从短至5 mm的长度开始的测量基础上的应变。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号