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首页> 外文期刊>International Journal of Distributed Sensor Networks >Structural Health Monitoring of a Tall Building during Construction with Fiber Bragg Grating Sensors
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Structural Health Monitoring of a Tall Building during Construction with Fiber Bragg Grating Sensors

机译:使用光纤光栅传感器的高层建筑结构健康监测

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Fiber Bragg grating sensors demonstrate a great potential as a structural health monitoring tool for civil structures to ensure structural integrity, durability, and reliability. The advantages of applying fiber optic sensors to a tall building include their immunity to electromagnetic interference and their multiplexing ability to transfer optical signals over a long distance. In the work, fiber Bragg grating sensors, consisting of strain and temperature sensors, are applied to structural monitoring of an 18-floor tall building since the date of its construction. The strain transferring rate from host material to the fiber core is discussed and the calibration of packaged fiber Bragg grating sensor is presented. The main purposes of the investigation are monitoring temperature evolution history within concrete during the pouring and curing process, measuring variation of the main column strains on the underground floor while upper 18 floors were subsequently added on, and monitoring relative displacement between two foundation blocks. Fiber Bragg grating sensors have been installed and integrated continuously for more than five months. Monitoring results of temperature and strain are presented in the paper. Furthermore, temperature lag behavior between concrete and its surrounding air is investigated.
机译:布拉格光纤光栅传感器作为民用结构的结构健康监测工具,具有巨大的潜力,可确保结构的完整性,耐用性和可靠性。将光纤传感器应用于高层建筑的优势包括其对电磁干扰的抵抗力以及其在远距离传输光信号的复用能力。在这项工作中,由应变和温度传感器组成的光纤布拉格光栅传感器自其建造之日起就被用于18层楼高建筑物的结构监测。讨论了从主体材料到光纤纤芯的应变传递速率,并提出了封装光纤布拉格光栅传感器的标定方法。研究的主要目的是监测浇筑和固化过程中混凝土内部的温度变化历史,测量地下地板上主柱应变的变化,随后再添加上层18层,并监测两个地基块之间的相对位移。布拉格光纤光栅传感器已经安装并连续集成了五个多月。本文介绍了温度和应变的监测结果。此外,研究了混凝土与其周围空气之间的温度滞后行为。

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