Detection of water, oil and oil contamination in water using chirped fiber Bragg gratings inscribed in CYTOP fibers

被引:1
|
作者
Leal-Junior, Arnaldo [1 ]
Campos, Vinicius [1 ]
Theodosiou, Antreas [2 ]
Frizera, Anselmo [1 ]
Kalli, Kyriacos [2 ]
Marques, Carlos F. [3 ,4 ]
机构
[1] Fed Univ Espirito, BR-29075910 Vitoria, ES, Brazil
[2] Cyprus Univ Technol, Photon & Opt Sensors Res Lab, CY-3036 Limassol, Cyprus
[3] Univ Aveiro, I3N, Campus Univ Santiago, P-3810193 Aveiro, Portugal
[4] Univ Aveiro, Phys Dept, Campus Univ Santiago, P-3810193 Aveiro, Portugal
关键词
Optical fiber sensors; polymer optical fibers; chirped fiber Bragg gratings; oil and water detection; CYTOP fibers; CRUDE-OIL; SENSORS;
D O I
10.1117/12.2558483
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Water and oil detection as well as oil (or water) in water (or oil) estimation play important roles in the oil processing industry due to advantages such as reduction of the residence time of oil in oil-water separation units (or three-phase oil separators), increasing of the oil purity and avoiding environmental issues regarding the disposal of water contaminated with oil. In addition, it also enables the detection of water contamination in fuels with important impacts on the environment and oil quality. Advantages such as lightweight, multiplexing capabilities, water affinity and electromagnetic fields immunity make polymer optical fibers (POFs) an interesting option for detecting water and oil contamination. This paper presents the development of a POF sensor for oil, water and oil in water detection using chirped fiber Bragg gratings (CFBGs). The grating structure was inscribed in cyclic transparent optical polymer (CYTOP) fibers through the plane-by-plane method using a femtosecond laser. The CFBG is submerged in the liquids (water, mineral oil and their mixture) in order to verify the ability of such sensor of performing temperature independent measurements, which is accomplished by analyzing not only the central reflected wavelength, but also the full width half-maximum. The results indicate the capability of the proposed sensing approach of detecting oil and water. Furthermore, oil contamination as low as 0.1% (in volume) in water was detected using the CFBGs inscribed in CYTOP fibers. Therefore, the results depicted in this work can result in reliable systems for oil or water quality monitoring, which finds important application in oilfields and process industry.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] Femtosecond laser inscribed chirped fiber Bragg gratings
    Pan, Xue-Peng
    Guo, Qi
    Wu, Yuan-Da
    Liu, Shan-Ren
    Wang, Bo
    Yu, Yong-Sen
    Sun, Hong-Bo
    OPTICS LETTERS, 2021, 46 (09) : 2059 - 2062
  • [2] Fiber Bragg gratings inscribed in nanobore fibers
    Xiong, Cong
    Jiang, Wei
    Wang, Caoyuan
    Yu, Ruowei
    He, Jun
    Chen, Runxiao
    Li, Xuan
    Ying, Kang
    Cai, Haiwen
    Liu, Aiqun
    Xiao, Limin
    OPTICS LETTERS, 2023, 48 (11) : 2821 - 2824
  • [3] Femtosecond Laser Inscribed Bragg Gratings in Low Loss CYTOP Polymer Optical Fiber
    Lacraz, Amedee
    Polis, Michael
    Theodosiou, Antreas
    Koutsides, Charalambos
    Kalli, Kyriacos
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2015, 27 (07) : 693 - 696
  • [4] Temperature sensing of the brain enabled by directly inscribed Bragg gratings in CYTOP polymer optical fiber implants
    Sui, Kunyang
    Ioannou, Andreas
    Meneghetti, Marcello
    Li, Guanghui
    Berg, Rune W.
    Kalli, Kyriacos
    Markos, Christos
    OPTICAL FIBER TECHNOLOGY, 2023, 80
  • [5] Polymer Optical Fiber Bragg Gratings in CYTOP Fibers for Angle Measurement with Dynamic Compensation
    Leal-Junior, Arnaldo
    Theodosiou, Antreas
    Diaz, Camilo
    Marques, Carlos
    Pontes, Maria Jose
    Kalli, Kyriacos
    Frizera-Neto, Anselmo
    POLYMERS, 2018, 10 (06)
  • [6] Hot water-assisted fabrication of chirped polymer optical fiber Bragg gratings
    Min, Rui
    Ortega, Beatriz
    Broadway, Christian
    Caucheteur, Christophe
    Woyessa, Getinet
    Bang, Ole
    Antunes, Paulo
    Marques, Carlos
    OPTICS EXPRESS, 2018, 26 (26): : 34655 - 34664
  • [7] Asymmetry in UV side-inscribed large mode area chirped fiber Bragg gratings
    Song, Huaqing
    Liu, Yu
    Shen, Benjian
    Feng, Xi
    Huang, Shan
    Li, Min
    Wang, Jianjun
    Li, Li
    Tao, Rumao
    OPTIK, 2021, 228
  • [8] Bandwidth controllable filter using the chirped fiber Bragg gratings
    Kwon, Seo Won
    Yoon, Hong
    Lee, Sung Hee
    Lee, Sang Bae
    Choi, Sang Sam
    Park, Jin Woo
    Conference on Optical Fiber Communication, Technical Digest Series, 1999,
  • [9] The design of dispersion equalizers using chirped fiber Bragg gratings
    Komukai, T
    Inui, T
    Nakazawa, M
    IEEE JOURNAL OF QUANTUM ELECTRONICS, 2000, 36 (04) : 409 - 417
  • [10] Characterization of a differential fiber Bragg grating sensor for oil-water boundary detection
    LoPresti, P
    Jali, D
    Carpenter, B
    Gersztenkorn, M
    ISA TRANSACTIONS, 2005, 44 (01) : 3 - 13