• Laser Journal
  • Vol. 45, Issue 4, 209 (2024)
LIU Yuanfeng, WAN Boli, CHEN Shi, and YAN Guang*
Author Affiliations
  • School of Instrument Science and Opto-electronics Engineering, Beijing University of Information Science and Technology, Beijing 100192, China
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    DOI: 10.14016/j.cnki.jgzz.2024.04.209 Cite this Article
    LIU Yuanfeng, WAN Boli, CHEN Shi, YAN Guang. Monitoring of composite material in embedded Fiber Bragg Grating based wind turbine blades[J]. Laser Journal, 2024, 45(4): 209 Copy Citation Text show less
    References

    [5] Zhou W, Li Y, Li Z, et al. Interlaminar Shear Properties and Acoustic Emission Monitoring of the Delaminated Composites for Wind Turbine Blades[J]. Springer Proceedings in Physics, 2015, 158: 557-566.

    [6] Gómez Muoz C Q, García Márquez F P, Sánchez Tomás J M. Ice detection using thermal infrared radiometry on wind turbine blades[J]. Measurement, 2016, 93: 157-63.

    [7] Zhou J Z, Cai Z H, Zhao P B, et al. Efficient Sensor Placement Optimization for Shape Deformation Sensing of Antenna Structures with Fiber Bragg Grating Strain Sensors[J]. SENSORS, 2018, 18(8): 2481.

    [10] Pedrazzani J R, Klute S, Gifford D K, et al. Embedded and surface mounted fiber optic sensors detect manufacturing defects and accumulated damage as a wind turbine blade is cycled to failure[J]. International SAMPE Technical Conference, 2012, 36:1011-1018.

    [11] Kim S Y H, Appelbaum P S, Kim H M, et al. Variability of Judgments of Capacity: Experience of Capacity Evaluators in a Study of Research Consent Capacity[J]. Psychosomatics, 2011, 52(4): 346-53.

    [12] Zhu P, Feng X, Liu Z, et al. Reliable packaging of optical fiber Bragg grating sensors for carbon fiber composite wind turbine blades[J]. Composites Science and Technology, 2021, 213: 108933.

    LIU Yuanfeng, WAN Boli, CHEN Shi, YAN Guang. Monitoring of composite material in embedded Fiber Bragg Grating based wind turbine blades[J]. Laser Journal, 2024, 45(4): 209
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