Journal of Applied Optics, Volume. 45, Issue 5, 1025(2024)
Research on sapphire optical fiber temperature measurement technology for aeroengine
[1] Xiaofei WANG, Yuanxin WANG, Jianling QU et al. An aero-engine performance monitoring method based on large scale flight data. Chinese Journal of Scientific Instrument, 41, 175-184(2020).
[2] Yanshan WANG, Xiangming DONG, Wei LIU et al. Research on developments of high temperature testing technology for aero-engine. Measurement & Control Technology, 36, 1-6(2017).
[3] Longguang JIANG, Yanshan WANG, Enpeng LIU. Research on aeronautical state monitoring sensor technology developing. Measurement & Control Technology, 31, 1-3(2012).
[4] Yongjun YANG. Overview of current situation and development of temperature measurement technology. Metrology & Measurement Technology, 29, 62-65(2009).
[5] Z Y WEI, S G ZHANG, S JAFARI et al. Gas turbine aero-engines real time on-board modelling: a review, research challenges, and exploring the future. Progress in Aerospace Sciences, 121, 100693(2020).
[6] S V YEPIFANOV, Q J LI. Analysis of the error in the gas temperature and the thermocouple time constant measuring through gas turbine engine tests.. Integrated Computer Technologies in Mechanical Engineering, 325-336(2020).
[7] S W POWERS, J A SCHETZ, K T LOWE et al. Analysis of stresses in metal sheathed thermocouples in high-temperature flows. AIAA Journal, 59, 3710-3724(2021).
[8] J P FEIST, BISWAS S KARMAKAR, C C PILGRIM et al. Off-line temperature profiling utilizing phosphorescent thermal history paints and coatings. Journal of Turbomachinery, 137, 101003(2015).
[9] J BROWN, J DEVOE, L GINZBURSKY. The challenges of uniform crystal temperature sensor (UCTS) application in turbomachinery, 65-70(2013).
[10] R R DILS. High-temperature optical fiber thermometer. Journal of Applied Physics, 54, 1198-1201(1983).
[11] T ELSMANN, T HABISREUTHER, A GRAF et al. Inscription of first-order sapphire Bragg gratings using 400 nm femtosecond laser radiation. Optics Express, 21, 4591-4597(2013).
[12] G G LIU, M HAN, W L HOU. High-resolution and fast-response fiber-optic temperature sensor using silicon Fabry-Pérot cavity. Optics Express, 23, 7237-7247(2015).
[13] B LIU, Z H YU, C HILL et al. Sapphire-fiber-based distributed high-temperature sensing system. Optics Letters, 41, 4405-4408(2016).
[14] J HUANG, Z D ZHOU, Y G TAN et al. A diaphragm-type fiber Bragg grating pressure sensor with temperature compensation. Measurement Journal of the International Measurement Confederation, 46, 1041-1046(2019).
[15] L D LU, L Q ZHU, W ZHUANG et al. Random rotational entire-angle sensor using two chemical etching intrinsic Fabry-Perot, 0interferometers. IEEE Sensors Journal, 18, 6196-6202(2022).
[16] L H YE, Y F ZHANG, W Z ZHAO et al. Sapphire fiber thermometer based on fluorescence lifetime measurement, 25-30(2002).
[17] G WANG, H C ZHOU, Z Y XU. Transient high temperature measurement based on sapphire fiber sensor and calibration technology. Journal of Optoelectronics Laser, 16, 441-443(2005).
[18] Xiaojian HAO, Zhijie ZHANG, Hanchang ZHOU. Research status and development trend of high temperature measurement and calibration technology. Journal of North University of China (Natural Science Edition), 41, 1-7(2020).
[19] Yanlong WEI, Gao WANG, Xingqi WANG et al. IrRth40 thermometry combustion chamber temperature measurement for solid rocket motor. Journal of Propulsion Technology, 39, 1856-1862(2018).
[20] Weilong LIANG, Ciming ZHOU, Dian FAN et al. Fiber-optic fabry-perot high-temperature sensor based on sapphire wafer. Acta Photonica Sinica, 45, 1228003(2016).
[21] X Z XU, J HE, C R LIAO et al. Sapphire fiber Bragg gratings inscribed with a femtosecond laser line-by-line scanning technique. Optics Letters, 43, 4562-4565(2018).
[22] Jun HE, Xizhen XU, Jia HE et al. Research progress and development tendency of sapphire fiber Bragg grating-based high-temperature sensors. Infrared and Laser Engineering, 51, 1-23(2022).
[23] Qinghua GAO, Dianfu QIE. The development of heat flux measurement technology. Spacecraft Environment Engineering, 37, 218-227(2020).
[24] Wei ZHANG. Key technology for reliability of fiber Bragg grating strain sensing system(2016).
[25] Zhen ZHOU, Xianming LIU, Guoqing HAN et al. Total temperature measurement of high-speed air flow based on fiber Bragg grating. Chinese Journal of Scientific Instrument, 43, 83-92(2022).
[26] Y Q YAO, W L LIANG, X W GUI et al. Sapphire Fabry-Perot high-temperature sensor study, 10323(2017).
[27] J J WANG, B DONG, E LALLY et al. Multiplexed high temperature sensing with sapphire fiber air gap-based extrinsic Fabry-Perot interferometers. Optics Letters, 35, 619-621(2010).
[28] H C ZHOU, X J HAO, W L CHEN et al. Traceable dynamic calibration for high temperature sensors using CO2 laser, 1349-1352(2006).
[29] Congzheng SUN. The progress of ultrasonic measuring technology. Journal of Astronautic Metrology and Measurement, 18, 6196-6202(2022).
[30] D GROBNIC, S J MIHAILOV, C W SMELSER et al. Sapphire fiber Bragg grating sensor made using femtosecond laser radiation for ultrahigh temperature applications. IEEE Photonics Technology Letters, 16, 2505-2507(2004).
[31] Haiying QI, Fan FAN. Mechanism of exit temperature profile of gas turbine combustor. Journal of Combustion Science and Technology, 19, 121-127.(2013).
[32] Dongfang YUAN, Yangjun LI, Gao WANG et al. Sapphire temperature sensor based on ultrasonic wave. Science Technology and Engineering, 17, 45-48(2017).
[33] Tao WANG, Zhitai JIA, Yang LI et al. Single-crystal fiber growth and single-crystal fiber high-temperature sensors: review and perspective. Journal of Synthetic Crystals, 50, 1603-1624(2021).
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Fei ZHAO, Long ZHANG, Yaping ZHAO. Research on sapphire optical fiber temperature measurement technology for aeroengine[J]. Journal of Applied Optics, 2024, 45(5): 1025
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Received: Aug. 16, 2023
Accepted: --
Published Online: Dec. 20, 2024
The Author Email: Fei ZHAO (fay_zhao@yeah.net)