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Long-term monitoring of ground anchor tensile forces by FBG sensors embedded tendon

机译:FBG传感器嵌入式肌腱对地面锚拉力的长期监测

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摘要

Recently, there has been significant interest in structural health monitoring for civil engineering applications. In this research, a specially designed tendon, proposed by embedding FBG sensors into the center king cable of a 7-wire strand tendon, was applied for long-term health monitoring of tensile forces on a ground anchor. To make temperature independent sensors, the effective temperature compensation of FBG sensors must be considered. The temperature sensitivity coefficient of the FBG sensors embedded tendon was successfully determined to be 2.0 x 10-5 degrees C-1 through calibrated tests in both a model rock body and a laboratory heat chamber. Furthermore, the obtained result for beta' was formally verified through the ground temperature measurement test, expectedly. As a result, the ground temperature measured by a thermometer showed good agreement compared to that measured by the proposed FBG sensor, which was calibrated considering to the temperature sensitivity coefficient beta'. Finally, four prototype ground anchors including two tension ground anchors and two compression ground anchors made by replacing a tendon with the proposed smart tendon were installed into an actual slope at the Yeosu site. Tensile forces, after temperature compensation was taken into account using the verified temperature sensitivity coefficient and ground temperature obtained from the Korean Meteorological Administration (KMA) have been monitored for over one year, and the results were very consistent to those measured from the load cell, interestingly.
机译:近来,对用于土木工程应用的结构健康监测引起了极大的兴趣。在这项研究中,通过将FBG传感器嵌入7股钢绞线的中央国王电缆中而提出的一种特殊设计的钢缆,被用于长期健康监测地锚上的拉力。要制造独立于温度的传感器,必须考虑FBG传感器的有效温度补偿。通过在模型岩石体和实验室热室中的校准测试,成功地将FBG传感器嵌入腱的温度敏感系数确定为2.0 x 10-5摄氏度。此外,预期得到的β'的结果已通过地面温度测试正式验证。结果,与拟议的FBG传感器测得的地面温度相比,温度计测得的地面温度显示出良好的一致性,而FBG传感器是根据温度敏感系数beta'进行校准的。最后,将四个原型地锚安装到丽水现场的实际斜坡上,其中包括两个拉力地锚和两个压缩地锚,这些地锚是通过用拟议中的智能筋代替钢筋来制成的。在使用经过验证的温度敏感性系数将温度补偿考虑在内之后,对拉伸力进行了监测,并且对从韩国气象局(KMA)获得的地面温度进行了一年以上的监测,结果与通过称重传感器测得的结果非常一致,有趣的是。

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