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首页> 外文期刊>Journal of structural engineering >Crack Detection Application for Fiber Reinforced Concrete Using BOCDA-Based Optical Fiber Strain Sensor
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Crack Detection Application for Fiber Reinforced Concrete Using BOCDA-Based Optical Fiber Strain Sensor

机译:基于BOCDA的光纤应变传感器在纤维混凝土裂缝检测中的应用。

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摘要

Distributed optical fiber strain sensors have attracted increasing attention in research and applications related to civil engineering because no other tools can satisfactorily detect the locations of unpredictable events. For instance, for crack detection, it is necessary to employ a fully distributed sensor because crack locations are a priori unknown. The Brillouin optical correlation domain analysis (BOCDA) system, a distributed sensor that offers high spatial resolution by using stimulated Brillouin scattering, has undergone significant development over the last decade, during which it has been used in a wide range of civil engineering applications. In this paper, we demonstrate how a BOCDA-based optical fiber strain sensor can be employed to monitor cracks in fiber-reinforced concrete. Crack monitoring is important for checking the structure of such high-performance concrete, which has enhanced strength and toughness since it incorporates fibers. In particular, early detection of tiny cracks is essential for preventing crack growth and dispersion. We carried out a concrete beam-bending test to detect crack-induced strain distribution during loading. For this purpose, we employed an improved BOCDA system that provides enhanced measurement length with high spatial resolution; hence, BOCDA can detect a tiny crack before visual recognition. Moreover, we demonstrate a field application of the BOCDA system to ensure a flawless pedestrian deck made of fiber-reinforced concrete.
机译:分布式光纤应变传感器在与土木工程相关的研究和应用中已引起越来越多的关注,因为没有其他工具可以令人满意地检测出不可预测事件的位置。例如,对于裂纹检测,由于裂纹位置是先验未知的,因此有必要采用全分布传感器。布里渊光学相关域分析(BOCDA)系统是一种通过使用受激布里渊散射来提供高空间分辨率的分布式传感器,在过去十年中经历了重大发展,在此期间,它已被广泛应用于各种土木工程应用中。在本文中,我们演示了如何将基于BOCDA的光纤应变传感器用于监测纤维增强混凝土中的裂缝。裂缝监测对于检查这种高性能混凝土的结构非常重要,由于掺入了纤维,因此具有增强的强度和韧性。特别是,早期发现微小裂纹对于防止裂纹扩展和扩散至关重要。我们进行了混凝土梁弯曲试验,以检测加载过程中裂纹引起的应变分布。为此,我们采用了改进的BOCDA系统,该系统可提供更长的测量长度和更高的空间分辨率;因此,BOCDA可以在视觉识别之前检测到微小的裂缝。此外,我们演示了BOCDA系统在现场的应用,以确保由纤维增强混凝土制成的人行道无瑕。

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