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首页> 外文期刊>Journal of intelligent material systems and structures >Crack detection in hydraulic concrete structures using bending loss data of optical fiber
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Crack detection in hydraulic concrete structures using bending loss data of optical fiber

机译:基于光纤弯曲损耗数据的水工混凝土结构裂缝检测

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摘要

Due to low tensile strength of concrete, seasonal temperature, shrinkage of concrete, and so on, many of hydraulic concrete structures experience cracking. An optical fiber-based approach is introduced to implement the crack detection in hydraulic concrete structures. The experimental and theoretical investigations on bending loss and time-domain reflection behaviors of optical fiber are performed. According to the bending loss mechanism of optical fiber, the monitoring method of hydraulic concrete crack is presented. First, the effect of optical fiber bending radius on optical loss is analyzed. The mathematical model between bending radius and optical loss is established. Then, the identification principle of concrete crack using bending loss data of optical fiber is studied. Considering the crack characteristics of hydraulic concrete structure, the arrangement forms of optical fiber, which are used to monitor the tension crack and hybrid crack in hydraulic concrete structure, are proposed. Finally, the relationship between crack development and optical loss is investigated using laboratory experiments with optical fiber.
机译:由于混凝土的抗拉强度低,季节温度,混凝土的收缩等原因,许多水工混凝土结构都会出现裂缝。引入了一种基于光纤的方法来在水工混凝土结构中实现裂缝检测。对光纤的弯曲损耗和时域反射行为进行了实验和理论研究。根据光纤的弯曲损耗机理,提出了水工混凝土裂缝的监测方法。首先,分析了光纤弯曲半径对光损耗的影响。建立了弯曲半径与光损耗之间的数学模型。然后,研究了利用光纤的弯曲损耗数据识别混凝土裂缝的原理。针对水工混凝土结构的裂缝特征,提出了用于监测水工混凝土结构中的张力裂缝和混合裂缝的光纤排列形式。最后,通过实验室光纤实验研究了裂纹发展与光学损耗之间的关系。

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