Lin Haoran, Xu Zhaowen, Hong Wan, Yang Zhihong, Wang Yixin, Li Bing
School of Civil and Environmental Engineering, Nanyang Technological University, Singapore 639798, Singapore.
Institute for Infocomm Research, Agency for Science, Technology and Research (A*STAR), 1 Fusionopolis Way, Singapore 138632, Singapore.
Sensors (Basel). 2025 Jan 2;25(1):220. doi: 10.3390/s25010220.
Long-gauge fiber optic sensors have proven to be valuable tools for structural health monitoring, especially in reinforced concrete (RC) beam structures. While their application in this area has been well-documented, their use in RC columns remains relatively unexplored. This suggests a promising avenue for further research and development. This paper presents a thorough comparison of long-gauge fiber optic sensors and traditional measurement tools when used to monitor RC columns under small eccentric compressive loading. The evaluation focuses on the stability and precision of each sensor type. A monitoring system was developed for laboratory testing to assess the performance of various sensor types under specific conditions. The system incorporated four measurement schemes, utilizing a combination of embedded and surface-mounted long-gauge fiber optic sensors, linear variable differential transformers (LVDTs), and point sensors (strain gauges). Long-gauge fiber optic sensors, securely mounted on the concrete surface near the tensile side, were found to accurately measure both large and small deformations, outperforming LVDTs. Compared to strain gauges and embedded optic sensors, the long-gauge fiber optic sensors demonstrated superior average strain measurement and minimal interference from protective covers.
长标距光纤传感器已被证明是用于结构健康监测的有价值工具,特别是在钢筋混凝土(RC)梁结构中。虽然它们在这一领域的应用已有充分记录,但它们在RC柱中的使用仍相对未被探索。这表明了一个有前景的进一步研究和开发途径。本文对长标距光纤传感器和传统测量工具在小偏心压缩荷载下监测RC柱时进行了全面比较。评估重点在于每种传感器类型的稳定性和精度。开发了一个用于实验室测试的监测系统,以评估各种传感器类型在特定条件下的性能。该系统采用了四种测量方案,结合了嵌入式和表面安装的长标距光纤传感器、线性可变差动变压器(LVDT)和点传感器(应变片)。牢固安装在受拉侧附近混凝土表面的长标距光纤传感器被发现能够准确测量大变形和小变形,性能优于LVDT。与应变片和嵌入式光纤传感器相比,长标距光纤传感器表现出卓越的平均应变测量能力,且受保护罩的干扰最小。