中国激光, 2013, 40 (1): 0114001, 网络出版: 2012-11-22   

光纤光栅传感器监测混凝土简支梁裂缝的实验研究

Experimental Study on Fiber Grating Sensor Monitoring the Crack of Concrete
作者单位
1 苏州科技学院土木工程学院, 江苏 苏州 215011
2 哈尔滨工业大学土木工程学院, 黑龙江 哈尔滨 150090
摘要
以结构健康监测系统为研究背景,研究了光纤布拉格光栅(FBG)传感器。对FBG的研究起步并成熟于通信领域,而对其在土木工程领域的研究尚处于发展阶段。为了进一步促进FBG传感器的发展,推广其在工程中的应用,通过在混凝土简支梁的底部布置经纤维增强复合塑料(FRP)封装的准分布式FBG传感器和未经封装的准分布式FBG传感器,研究了准分布式FBG传感器对钢筋混凝土构件裂缝出现时的有效感知及定位问题。实验结果表明可实现裂缝的大致定位,经FRP封装的FBG传感器相对于裸光纤光栅,其应变灵敏度有所下降。
Abstract
Based on the study background for structural health monitoring (SHM), fiber Bragg grating (FBG) sensor is researched. The study on FBG starts and matures in the field of telecommunication, and the corresponding study in the field of civil engineering is in a development stage even. To improve its further developments and promote its application in engineering, two kinds of quasi-distributed FBG sensors placements are considered, one for the fiber reinforced plastics (FRP) package and the other for without package. The sensors are pasted on the bottom of the beam. Study on the detecting effectiveness and damaqe locating of the quasi-distributed FBG sensor when the reinforced concrete beam specimen cracks appear are carried out. The experimental results show that the crack can be roughly located, and the strain sensitivity of the FBG sensor with FRP package declines relative to the rare FBG sensor.
参考文献

[1] D. Inaudi, N. Casanova, P. Kronenberg et al.. Embedded and surface mounted fiber optic sensors for civil structural monitoring[C]. SPIE, 1997, 3044: 236~243

[2] D. Inaudi, N. Casanova. Geo-structural monitoring with long-gage interferometric sensors[C]. SPIE, 2000, 3995: 164~174

[3] B. Glisic, D. Inaudi. Integration of long-gage fiber-optic sensor into a fiber-reinforced composite sensing tape[C]. SPIE, 2003, 5050: 179~186

[4] Li Suzhen, Wu Zhishen. Development of distributed long-gage fiber optic sensing system for structural health monitoring[J]. Structural Health Monitoring, 2007, 6(2): 133~143

[5] G. R. Kirikera, O. Balogun, S. Krishnaswamy. Adaptive fiber Bragg grating sensor network for structural health monitoring: applications to impact monitoring[J]. Structural Health Monitoring, 2011, 10(1): 5~16

[6] G. M. Kamath, R. Sundaram, N. Gupta et al.. Damage studies in composite structures for structural health monitoring using strain sensors[J]. Structural Health Monitoring, 2010, 9(6): 497~512

[7] B. Culshaw. Smart Structures and Materials[M]. London: Artech House Publishers, 1996. 2~3

[8] 李宏男, 任亮. 结构健康监测光纤光栅传感技术[M]. 北京: 中国建筑工业出版社, 2008. 16~17

    Li Hongnan. Ren Liang. Optical Fiber Grating Sensing Technology of Structural Health Monitoring[M]. Beijing: China Building Industry Press, 2008. 16~17

[9] 王玉宝, 兰海军. 基于光纤布拉格光栅波/时分复用传感网络研究[J]. 光学学报, 2010, 30(8): 2196~2201

    Wang Yubao, Lan Haijun. Study of fiber Bragg grating sensor system based on wavelength-division multiplexing/time-division multiplexing[J]. Acta Optica Sinica, 2010, 30(8): 2196~2201

[10] Dai Yongbo, Liu Yanju, Leng Jinsong et al.. A novel time-division multiplexing fiber Bragg grating sensor interrogator for structural health monitoring[J]. Opt. & Lasers in Engng., 2009, 47(10): 1028~1033

[11] 张华勇, 王东宁, 施清平 等. 基于3×3耦合器的光纤水听器时分复用系统的光强补偿方法[J]. 中国激光, 2011, 38(11): 1105006

    Zhang Huayong, Wang Dongning, Shi Qingping et al.. Optical intensity compensating method for time division multiplexing of fiber-optic hydrophone using a 3×3 coupler[J]. Chinese J. Lasers, 2011, 38(11): 1105006

[12] Y. J. Rao, A. B. Lobo Ribeiro, D. A. Jackson. Simultaneously spatial-time-and wavelength-division-multiplexed in-fiber Bragg grating sensor network[C]. SPIE, 1996, 2838: 23~30

[13] D. A. Jackson, A. B. Lobo Ribeiro, L. Reekie et al.. Simple multiplexing scheme for a fiber-optic grating sensor network[J]. Opt. Lett., 1993, 18(14): 1192~1194

田石柱, 曹长城, 王大鹏. 光纤光栅传感器监测混凝土简支梁裂缝的实验研究[J]. 中国激光, 2013, 40(1): 0114001. Tian Shizhu, Cao Changcheng, Wang Dapeng. Experimental Study on Fiber Grating Sensor Monitoring the Crack of Concrete[J]. Chinese Journal of Lasers, 2013, 40(1): 0114001.

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