• Chinese Journal of Lasers
  • Vol. 42, Issue 3, 305004 (2015)
Jin Mengqun*, Zhang Zili, Wu Guojun, and Ge Huiliang
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/cjl201542.0305004 Cite this Article Set citation alerts
    Jin Mengqun, Zhang Zili, Wu Guojun, Ge Huiliang. A Three-Dimentional Vector Hydrophone Based on Fiber-Optic Flexural Disk Accelerometer[J]. Chinese Journal of Lasers, 2015, 42(3): 305004 Copy Citation Text show less
    References

    [1] P Nash, A Strudley, R Crickmore, et al.. High efficiency TDM-WDM architectures for seismic reservoir monitoring[C]. SPIE, 2009, 7503: 75037T.

    [2] J Freitas. Recent developments in seismic seabed oil reservoir monitoring applications using fibre-optic sensing networks[J]. Meas Sci Technol, 2011, 22(5): 1-26.

    [3] Xiong Shuidong. Study of Fiber Optic Vector Hydrophone[D]. Changsha: National Defense University of Technology, 2003.

    [4] Zeng Nan, Shi Chunzheng, Zhang Min, et al.. A 3-component fiber-optic accelerometer for well logging[J]. Opt Commun, 2004, 234: 153-162.

    [5] Rao Wei, Zhang Nan, Niu Siliang, et al.. Seafloor exploration using a 4-element towed fiber optic hydrophone array[C]. ICEOE, 2011, 2: 359-361.

    [6] Wu Yanqun. Study on Key Technology of Fiber Optic Vector Hydrophone in Towed Line Array[D]. Changsha: National Defense University of Technology, 2011.

    [7] Wu Yanqun, Luo Hong, Hu Zhengliang, et al.. Adaptive cancellation of background noise of fiber optic vector sensor system[J]. Chinese J Lasers, 2011, 38(3): 0305004.

    [8] Jong-In Im, Yong-rae Roh, A finite element analysis of an interferometric optical fiber hydrophone[J]. J Acoust Soc Am, 1998, 103(5): 2425-2431.

    [9] Jong-In Im, Yong-rae Roh, A finite element analysis of an interferometric optical fiber hydrophone with a concentric composite mandrel including a foaming layer[J]. J Acoust Soc Am, 1999, 106(3): 1363-1368.

    [10] Zhang Huayang, Wang Liwei, Shi Qingping, et al.. A new demodulation method for time division multiplexing system of fiber-optic hydrophone using a 3×3 coupler[J]. Chinese J Lasers, 2011, 38(5): 0505011.

    [11] 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] Zhang Nan. Study on Several Key Technologies of Interferometric Fiber Optic Hydrophone Array System Based on Heterodydne Detection Scheme[D]. Changsha: National Defense University of Technology, 2013.

    [13] S T Vohra, B Danver, A Tveten, et al.. Fiber optic accelerometer sensor and a method of constructing same: US 6328837[P]. 2001.

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    Jin Mengqun, Zhang Zili, Wu Guojun, Ge Huiliang. A Three-Dimentional Vector Hydrophone Based on Fiber-Optic Flexural Disk Accelerometer[J]. Chinese Journal of Lasers, 2015, 42(3): 305004
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