• Opto-Electronic Engineering
  • Vol. 34, Issue 9, 55 (2007)
[in Chinese] and [in Chinese]
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  • [in Chinese]
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    [in Chinese], [in Chinese]. Effect of physical and chemical reactions between hydrogen and optical fiber on permanent downhole measurement[J]. Opto-Electronic Engineering, 2007, 34(9): 55 Copy Citation Text show less
    References

    [4] Swart Peiter L,Chtcherbakov Anatoli A,Joubert Wietz L.In-situ monitoring of hydrogen concentration in optical fiber during loading,Optical Fiber and Planar Waveguide Technology II[J].SPIE,2002,4904:297-306.

    [5] Swart Peiter L,Chtcherbakov Anatoli A.Study of Hydrogen Diffusion in Boron/Germanium Codoped Optical Fiber[J].Journal of Lightwave Technology,2002,20(11):1933-1941.

    [6] Paul J Lamaire.Reliability of optical fibers exposed to hydrogen:prediction of long-term loss increases[J].Optical Engineering,1991,30(6):780-789.

    [7] Sergey L Semjonov,Alexey F Kosolupov,Ivan V Nikolin.Fiber performance in hydrogen atmosphere at high temperature,Reliability of Optical Fiber Components,Devices,Systems,and Networks III[J].Proc.of SPIE,2006,6193:61930N-1-61930N-8.

    [8] Victor G Plomichenko,Gennadii A Ivanov,Elena B Kryukova,et al.Influence of Molecular Hydrogen Diffusion on Concentration and Distribution of Hydronxyl Groups in Silica Fibers[J].Journal of Llghtwave Technology,2005,23(1):341-347.

    [9] IINO A,MATSUBARA K,OGAI M,et al.Diffusion of Hydrogen Molecules in Fluorine-doped Single-mode Fibres[J].Electronics Letters,1989,2s(1):78-79.

    [10] Skinner Neal G Maida,Jr John L.Downhole Fiber-optic Sensing:The Oilfield Service Provider's Perspective[J].Proc.of SPIE,2004,5589:206-220.

    [in Chinese], [in Chinese]. Effect of physical and chemical reactions between hydrogen and optical fiber on permanent downhole measurement[J]. Opto-Electronic Engineering, 2007, 34(9): 55
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