[1] A VENUGOPAL, A AGRAWAL, S V PRABHU. Review on vortex flowmeter-designer perspective. Sensors and Actuators A: Physical, 170, 8-23(2011).
[2] J E CHA, Y C AHN, M H KIM. Flow measurement with an electromagnetic flowmeter in two-phase bubbly and slug flow regimes. Flow Measurement & Instrumentation, 12, 329-339(2002).
[3] P LIGEZA. An investigation of a constant-bandwidth hot-wire anemometer. Flow Measurement & Instrumentation, 20, 116-121(2009).
[4] C A WUCHANG. Flow measuring instrument applications and developing trends. Process Automation Instrumentation, 27, 71-76(2006).
[5] C L LEE, W Y HONG, H J HSIEH et al. Air gap fiber Fabry-Perot Interferometer for highly sensitive micro-airflow sensing. IEEE Photonics Technology Letters, 23, 905-907(2011).
[6] C EWART, B MCMILLEN, S K CHO et al. X-probe flow sensor using self-powered active fiber Bragg gratings. Sensors and Actuators A: Physical, 127, 63-68(2006).
[7] G D BYRNE, S W JAMES, R P TATAM et al. A Bragg grating based fibre optic reference beam laser Doppler anemometer. Measurement Science & Technology, 12, 909-913(2001).
[8] L J CASHDOLLAR, K P CHEN. Fiber Bragg grating flow sensors powered by in-fiber light. IEEE Sensors Journal, 5, 1327-1331(2005).
[9] Xinyong DONG, Yan ZHOU, Wenjun ZHOU et al. Compact anemometer using silver-coated fiber Bragg grating. IEEE Photonics Journal, 4, 1381-1386(2012).
[10] Xinhuai WANG, Xinyong DONG, Yan ZHOU et al. Hot-wire anemometer based on silver-coated fiber bragg grating assisted by no-core fiber. IEEE Photonics Technology Letters, 25, 2458-2461(2013).
[11] P CALDAS, P A S JORGE, G REGO et al. Fiber optic hot-wire flowmeter based on a metallic coated hybrid long period grating/fiber Bragg grating structure. Applied Optics, 50, 2738-2743(2011).
[12] Ran GAO, Dengfeng LU. Temperature compensated fiber optic anemometer based on graphene-coated elliptical core micro-fiber Bragg grating. Optics Express, 27, 34012-34022(2019).
[13] Xinhuai WANG, Xinyong DONG, Yan ZHOU et al. Optical fiber anemometer using silver-coated fiber Bragg grating and bitaper. Sensors and Actuators A: Physical, 214, 230-233(2014).
[14] Guigen LIU, Weilin HOU, Wei QIAO et al. Fast-response fiber-optic anemometer with temperature self-compensation. Optics Express, 23, 13562-13570(2015).
[15] Jiarui ZHANG, Yuhang TANG, Pengbai XU et al. Intensity-interrogated hot-wire anemometer based on chirp effect of a fiber Bragg grating. Optics Express, 30, 37124-37130(2022).
[16] Yuhan TANG, Xuken CHEN, Jiarui ZHANG et al. Sensitivity-enhanced hot-wire anemometer by using cladding-etched fiber Bragg grating. Photonic Sensors, 13, 230305-230311(2023).
[17] Yuhan TANG, Jing YANG, Jiarui ZHANG et al. Fiber Bragg grating based hot-wire anemometer with enhanced sensitivity by fiber surface frosting. Optical Fiber Technology, 13, 1-7(2023).
[18] Shaorui GAO, A P ZHANG, H W TAM et al. All-optical fiber anemometer based on laser heated fiber Bragg gratings. Optics Express, 19, 10124-10130(2011).
[19] Jiarui ZHANG, Dajuan LV, Xinyong DONG et al. High sensitivity optical fiber thermal anemometer heated by light source. Acta Optica Sinica, 42, 0428001(2022).
[20] M K DAVIS, M J F DIGONNET. Thermal effects in doped fibers. Journal of Lightwave Technology, 16, 1013-1023(1998).
[21] M K DAVIS, M J F DIGONNET. Measurements of thermal effects in fibers doped with cobalt and vanadium. Journal of Lightwave Technology, 18, 161-165(2000).
[22] Jingyi LOU, Limin TONG, Linhua YE et al. Laser-pumped heavily doped fiber-optic thermal tip for laser thermotherapy. Chinese Journal of Lasers, 29, 817-820(2002).
[23] Zhuoyue LI, Chenlong DONG, Meiqiong XIANG et al. Study of all-optic temperature sensor based on Fabry-Perot. Process Automation Instrumentation, 44, 329-332(2023).
[24] C L LEE, Kaiwen LIU, Shilong LUO et al. A hot-polymer fiber Fabry-Perot interferometer anemometer for sensing airflow. Sensors, 17, 2015-2022(2017).
[25] Jiarui ZHANG, Xinyong DONG, Pengbai XU et al. Optical fiber thermal anemometer with light source-heated fabry-perot interferometer. Journal of Lightwave Technology, 40, 3010-3015(2022).