基于光纤光栅的管道裂纹检测实验研究

Lin Cai, Qin Wei, Zhaoxiang Yu, Ming Lu, Xiaowei Li
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引用次数: 0

摘要

裂缝是管道的主要故障之一,其检测是保证管道安全的重要措施。通过实验研究,探讨了基于光纤布拉格光栅(FBG)检测技术的管道周向裂纹检测的可行性。金属管道表面会形成裂纹,裂纹的周长是衡量管道损伤程度的指标之一。实验中,采用电子振动传感器和光纤光栅应变传感器采集不同损伤程度下的冲击激励响应信号。在此基础上,从频域和时域两方面分析了损伤检测的特点。首先,比较了管道在不同损伤程度下的实际与仿真结果的固有频率;其次,利用多重分形去趋势波动分析(MFDFA)获取奇异值α作为特征参数;实验结果表明,光纤光栅应变传感器与振动传感器一样,能有效感知管道的脉冲响应,并能感知管道不同损伤程度的变化。固有频率和奇异值对裂纹长度的增加都很敏感,能够区分管道上不同程度的裂纹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental research on crack detection in pipes based on Fiber Bragg grating
Crack is one of the primary faults in pipes, and its detection is a significant measure to ensure the safety of pipes. The feasibility of circumferential crack detection in pipes on the basis of fiber Bragg grating (FBG) detection technology is discussed through experimental research. Crack is formed on the surface of a metal pipe, the circumferential length of crack is one index of the damage degree. In the experiments, both electronic vibration sensor and FBG strain sensors are used to collect response signals of impulse excitation in different damage degrees. Furthermore, the characteristics of damage detection are analysed in both frequency domain and time domain. First, the natural frequencies are compared between practical and simulated results in different damage degrees of pipes; second, the multi-fractal detrended fluctuation analysis (MFDFA) is applied to acquire the singular values α as the characteristic parameter. The experimental results indicate that FBG strain sensors can perceive the impulse response of the pipe and change in different damage degrees effectively, like the vibration sensor. And both the natural frequency and the singular value are sensitive to increasing length of crack, they are able to distinguish different degrees of crack on the pipe.
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