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A novel technique for acoustic emission monitoring in civil structures with global fiber optic sensors

机译:带有全局光纤传感器的民用建筑声发射监测的新技术

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摘要

The application of acoustic emission (AE)-based damage detection is gaining interest in the field of civil structural health monitoring. Damage progress can be detected and located in real time and the recorded AEs hold information on the fracture process which produced them. One of the drawbacks for on-site application in large-scale concrete and masonry structures is the relatively high attenuation of the ultrasonic signal, which limits the detection range of the AE sensors. Consequently, a large number of point sensors are required to cover a certain area. To tackle this issue, a global damage detection system, based on AE detection with a polarization-modulated, single mode fiber optic sensor (FOS), has been developed. The sensing principle, data acquisition and analysis in time and frequency domain are presented. During experimental investigations, this AE-FOS is applied for the first time as a global sensor for the detection of crack-induced AEs in a full-scale concrete beam. Damage progress is monitored during a cyclic four-point bending test and the AE activity, detected with the FOS, is related to the subsequent stages of damage progress in the concrete element. The results obtained with the AE-FOS are successfully linked to the mechanical behavior of the concrete beam and a qualitative correspondence is found with AE data obtained by a commercial system.
机译:基于声发射(AE)的损伤检测的应用在土木结构健康监测领域中引起了人们的兴趣。可以实时检测并确定损坏的进展情况,并且记录的AE包含有关产生它们的断裂过程的信息。在大型混凝土和砖石结构中现场应用的缺点之一是超声信号的相对较高的衰减,这限制了AE传感器的检测范围。因此,需要大量的点传感器来覆盖特定区域。为了解决这个问题,已经开发了一种基于带有偏振调制的单模光纤传感器(FOS)的AE检测的全局损坏检测系统。介绍了时域和频域的传感原理,数据采集和分析。在实验研究过程中,此AE-FOS首次作为一种全局传感器用于检测全尺寸混凝土梁中的裂纹诱导的AE。在循环四点弯曲测试期间会监控损坏进度,并且使用FOS检测到的AE活动与混凝土元素中损坏进度的后续阶段有关。用AE-FOS获得的结果成功地与混凝土梁的机械性能相关联,并且通过商业系统获得的AE数据找到了定性对应关系。

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