[2] IRIMPAN K J, MANNIL N, ARYA H, et al. Performance evaluation of coaxial thermocouple against platinum thin film gauge for heat flux measurement in shock tunnel[J]. Measurement, 2015, 61: 291-298.
[3] MENEZES V, BHAT S. A coaxial thermocouple for shock tunnel applications[J]. The Review of Scientific Instruments, 2010, 81(10): 104905.
[4] LI L, FAN X J, WANG J. Measurements of wall heat flux and temperature in a supersonic model combustors[C]//47th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit. San Diego, California. Reston, Virigina: AIAA, 2011.
[5] GUILLOT E, ALXNEIT I, BALLESTRIN J, et al. Comparison of 3 heat flux gauges and a water calorimeter for concentrated solar irradiance measurement[J]. Energy Procedia, 2014, 49: 2090-2099.
[6] ZHANG C C, HUANG J Z, LI J, et al. Design, fabrication and characterization of high temperature thin film heat flux sensors[J]. Microelectronic Engineering, 2019, 217: 111128.
[8] SAHOO N, PEETALA R K. Transient surface heating rates from a nickel film sensor using inverse analysis[J]. International Journal of Heat and Mass Transfer, 2011, 54(5/6): 1297-1302.
[9] KUMAR R, SAHOO N, KULKARNI V. Conduction based calibration of handmade platinum thin film heat transfer gauges for transient measurements[J]. International Journal of Heat and Mass Transfer, 2012, 55(9/10): 2707-2713.
[10] LIU W, TAKASE K. Development of measurement technology for surface heat fluxes and temperatures[J]. Nuclear Engineering and Design, 2012, 249: 166-171.
[13] ZHANG T, TAN Q L, LYU W, et al. Design and fabrication of a thick film heat flux sensor for ultra-high temperature environment[J]. IEEE Access, 2019, 7: 180771-180778.
[14] TIAN W, WANG Y, ZHOU H, et al. Micromachined thermopile based high heat flux sensor[J]. Journal of Microelectromechanical Systems, 2020, 29(1): 36-42.
[15] FU X L, LIN Q Y, PENG Y Q, et al. High-temperature heat flux sensor based on tungsten-rhenium thin-film thermocouple[J]. IEEE Sensors Journal, 2020, 20(18): 10444-10452.
[16] LI X, SUN D H, CUI Z F, et al. The influence of spatial arrangement of endpoints on output characteristics of ITO/In2O3 heat flux gauge[J]. Sensors and Actuators A: Physical, 2021, 322: 112587.
[18] WANG D H, WANG M Z, PENG Y H, et al. Printed circuit board process based thermopile-type heat flux sensor used for monitoring chips[J]. Applied Thermal Engineering, 2022, 205: 117860.
[20] CHOPRA K L, BAHL S K, RANDLETT M R. Thermopower in thin-film copper: constantan couples[J]. Journal of Applied Physics, 1968, 39(3): 1525-1528.
[22] LIU D, SHI P, REN W, et al. Enhanced La0.8Sr0.2CrO3/Pt thin film thermocouple with Al2O3 coating layer for high temperature sensing[J]. Ceramics International, 2018, 44: S233-S237.
[23] LIU D, SHI P, REN W, et al. Fabrication and characterization of La0.8Sr0.2CrO3/In2O3 thin film thermocouple for high temperature sensing[J]. Sensors and Actuators A: Physical, 2018, 280: 459-465.
[28] CATTANI M, SALVADORI M C, VAZ A R, et al. Thermoelectric power in very thin film thermocouples: quantum size effects[J]. Journal of Applied Physics, 2006, 100(11): 114905.