Optical Fiber Serpentine Arrangements for Vibration Analysis Using Distributed Acoustic Sensing

被引:6
|
作者
Jahnert, Frederico A. [1 ]
Weber, Guilherme H. [2 ]
Gomes, Danilo F. [2 ]
da Silva, Marco J. [2 ]
Pipa, Daniel R. [2 ]
Cardozo da Silva, Jean Carlos [2 ]
Martelli, Cicero [2 ]
Camargo Junior, Sergio T. [3 ]
Silva Junior, Manoel F. [3 ]
Pereira, Jucelio T. [1 ]
Bavastri, Carlos A. [1 ]
机构
[1] Fed Univ Parana UFPR, Grad Program Mech Engn PGMEC, BR-81530000 Curitiba, Parana, Brazil
[2] Fed Univ Technol Parana UTFPR, Grad Program Elect & Comp Engn CPGEI, BR-80230901 Curitiba, Parana, Brazil
[3] Petrobras SA, BR-21941970 Rio De Janeiro, Brazil
关键词
Distributed acoustic sensors (DASs); distributed optical fiber sensors; finite element method (FEM); modal analysis; STRAIN; SENSOR; PERFORMANCE; RESOLUTION;
D O I
10.1109/JSEN.2022.3216755
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Distributed acoustic sensors (DASs) are able to monitor in real-time acoustic excitation and mechanical vibration of the external environment for many kilometers along the length of the optical fiber. In the oil industry, the technology allows the monitoring of well structural health, identifying flow profile, acquiring seismic data, updating reservoir information, and feeding geological models. The spatial resolution of DAS is a limiting factor on the quality of information gathered. In this article, we propose and analyze a novel method of measuring local dynamic strain of structures using DAS. The method uses serpentine configurations to measure the frequency spectrum of the in-phase strain signals at discrete regions of the structure, enabling DAS to determine, among other vibration parameters, the strain frequency response function (SFRF). An experimental study of the sensor application with different arrangements in a small structure has been performed. The structure in the experiment consists of a free-free aluminum beam of approximately 2.7 m. Experiment results show agreement with numerical results developed by the finite element method (FEM) and using reference sensors, demonstrating a significant improvement of the DAS SFRF accuracy using the serpentine configuration and up to 12.9 dB increase in peak-to-noise ratio (PNR) for low excitation forces. The recovered response enabled the reconstruction of mode shapes.
引用
收藏
页码:22691 / 22699
页数:9
相关论文
共 50 条
  • [41] Parametric modeling in distributed optical fiber vibration sensing system for position determination
    Wu, Hongyan
    Wang, Jian
    Jia, Bo
    [J]. OPTICAL ENGINEERING, 2016, 55 (04)
  • [42] CNN-Based Detection of Red Palm Weevil Using Optical Fiber Distributed Acoustic Sensing
    Ashry, Islam
    Mao, Yuan
    Wang, Biwei
    Sait, Mohammed
    Guo, Yujian
    Al-Shawaf, Abdulmoneim
    Ng, Tien Khee
    Ooi, Boon S.
    [J]. PHOTONIC INSTRUMENTATION ENGINEERING IX, 2022, 12008
  • [43] Finding Well-Coupled Optical Fiber Locations for Railway Monitoring Using Distributed Acoustic Sensing
    Munoz, Felipe
    Urricelqui, Javier
    Soto, Marcelo A.
    Jimenez-Rodriguez, Marco
    [J]. SENSORS, 2023, 23 (14)
  • [44] Distributed Optical Fiber Acoustic Sensing Technology Based on Coherent Rayleigh Scattering
    Cai Haiwen
    Ye Qing
    Wang Zhaoyong
    Lu Bin
    [J]. LASER & OPTOELECTRONICS PROGRESS, 2020, 57 (05)
  • [45] Enhanced Optical Fiber for Distributed Acoustic Sensing beyond the Limits of Rayleigh Backscattering
    Westbrook, Paul S.
    Feder, Kenneth S.
    Kremp, Tristan
    Monberg, Eric M.
    Wu, Hongchao
    Zhu, Benyuan
    Huang, Lei
    Simoff, Debra A.
    Shenk, Scott
    Handerek, Vincent A.
    Karimi, Mohammad
    Nkansah, Anthony
    Yau, Alan
    [J]. ISCIENCE, 2020, 23 (06)
  • [46] Distributed Optical Fiber Acoustic Sensing and Its Application to Seismic Wave Monitoring
    Wang Zhaoyong
    Lu Bin
    Ye Lei
    Ying Kang
    Sun Yanguang
    Cheng Nan
    Lu Zhan
    Ye Qing
    Cai Haiwen
    [J]. LASER & OPTOELECTRONICS PROGRESS, 2021, 58 (13)
  • [47] Research Progress of Distributed Acoustic Sensing Based on Scattering Enhanced Optical Fiber
    Sun Qizhen
    Li Hao
    Fan Cunzhene
    He Tao
    Yan Baoqiang
    Chen Junfeng
    Xiao Xiangpeng
    Yan Zhijun
    [J]. LASER & OPTOELECTRONICS PROGRESS, 2022, 59 (21)
  • [48] Measurement of ocean currents by seafloor distributed optical-fiber acoustic sensing
    Lin, Jianmin
    He, Runjing
    Tang, Qunshu
    Zhang, Lei
    Xu, Wen
    [J]. Journal of the Acoustical Society of America, 2024, 156 (05): : 2974 - 2981
  • [49] Review of Sensitivity-enhanced Optical Fiber and Cable Used in Distributed Acoustic Fiber Sensing
    Xiao, Chun
    Long, Junqiu
    Jiang, Lang
    Yan, Guofeng
    Rao, Yunjiang
    [J]. 2022 ASIA COMMUNICATIONS AND PHOTONICS CONFERENCE, ACP, 2022, : 359 - 363
  • [50] Vibration sensing and impact location detection using optical fiber vibration sensor
    Yang, YC
    Hwang, W
    Park, HC
    Han, KS
    [J]. FRACTURE AND STRENGTH OF SOLIDS, PTS 1 AND 2, 2000, 183-1 : 661 - 666