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隧道衬砌空洞远程非接触激光振动测量的实验研究

Experimental research on remote non-contact laser vibration measurement for tunnel lining cavities.

作者信息

Yang Hongyun, Xie Yu, Lin Zhi, Li Lin, Chen Xiang, Feng Wanlin, Ran Honglin, He Li

机构信息

State Key Laboratory of Mountain Bridge and Tunnel Engineering, College of Civil Engineering, Chongqing Jiaotong University, Chongqing, 400074, China.

Chongqing Tianmenglidi Technology Co. Ltd., Chongqing, 401331, China.

出版信息

Sci Rep. 2025 Jan 2;15(1):105. doi: 10.1038/s41598-024-83819-0.

Abstract

The lining cavities in tunnels have strong concealment and pose significant risks, seriously affecting tunnel operational safety. Therefore, it is necessary to develop efficient and high-precision detection techniques for tunnel lining cavities. In this study, concrete slabs with different parameter cavities were selected as the research object, and experiments on remote detection using Laser Doppler Vibrometry were conducted. During the experiments, the vibration parameters of the concrete surface were measured for cavities of varying sizes and depths, filled with different materials, and under different detection distance conditions. The vibration differences between the defective and healthy parts were analyzed using the spatial spectral entropy algorithm. The results showed that for cavities with side lengths of 200mm, depths of 50mm, and filled with hollow wooden boxes, the maximum velocity amplitudes of the surface concrete were 10.68, 3.55, and 4.01 times higher than those of the healthy parts, respectively. Moreover, at the same frequency, larger cavity areas and shallower depths resulted in greater surface vibration amplitudes. The vibration amplitudes of the surface with hollow wooden box filling were higher than those with foam polystyrene board filling. With increasing detection distance, the overall surface vibration velocity of the cavities was higher at a distance of 3 m from the laser probe compared to 5 m, indicating the ability to quantitatively describe the apparent vibration characteristics of concrete cavities under different parameters. This study demonstrates the significant effectiveness of laser Doppler vibrometry in remote detection of lining cavities in tunnels.

摘要

隧道衬砌空洞具有很强的隐蔽性,存在重大风险,严重影响隧道运行安全。因此,有必要开发高效、高精度的隧道衬砌空洞检测技术。本研究选取具有不同参数空洞的混凝土板作为研究对象,进行了基于激光多普勒振动测量的远程检测实验。实验过程中,测量了不同尺寸、深度、填充不同材料以及在不同检测距离条件下的空洞混凝土表面振动参数。利用空间谱熵算法分析了缺陷部位与完好部位的振动差异。结果表明,对于边长为200mm、深度为50mm且填充空心木箱的空洞,表面混凝土的最大速度幅值分别比完好部位高10.68倍、3.55倍和4.01倍。此外,在相同频率下,空洞面积越大、深度越浅,表面振动幅值越大。填充空心木箱的表面振动幅值高于填充聚苯乙烯泡沫板的。随着检测距离的增加,与5m处相比,在距激光探头3m处空洞表面整体振动速度更高,表明能够定量描述不同参数下混凝土空洞的表观振动特性。本研究证明了激光多普勒振动测量在隧道衬砌空洞远程检测中的显著有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b31e/11697304/a2ccf48545cd/41598_2024_83819_Fig1_HTML.jpg

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