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Analysis of Key Influencing Factors of Time Constant of Gas Flow Temperature Sensors |
ZHAO Jian |
Changcheng Institute of Metrology & Measurement, Beijing 100095, China |
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Abstract Dynamic response calibration of gas flow temperature sensors was taken in the hot calibration wind tunnel, through which time constants of various temperature sensors under various working conditions were obtained, and key influencing factors were drawn such as diameter of welding ball, diameter of thermocouple wire, shield structure, gas flow Mach number, temperature and temperature step. Influencing mechanisms were anylised, and influencing laws of time constant were obtained. The results show that time constants can be decreased by decreasing diameter of welding ball, diameter of thermocouple wire, area ratio of shield inlet and outlet and temperature step, increasing gas flow Mach number and gas flow temperature, and using opposite opening structure of inlet and outlet. When diameter of thermocouple wire decreases from 0.8mm to 0.5mm, time constant decreases by 142.9%. The results can provide essential basis for design, use and dynamic compensation of gas flow temperature sensors.
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Received: 23 September 2021
Published: 28 December 2022
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Fund:Research on Calibration Technology of Performance Parameters of Combustion Chamber Test Systems |
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[1]殳伟群. 动态测量不确定度问题初探 [J]. 计量学报, 2003, 24(3): 245-249.
Shu W Q. A Study of the Dynamic Measurement Uncertainty [J]. Acta Metrologica Sinica, 2003, 24(3): 245-249.
[2]Brassier P, Hosten B, Vulovic F. High-frequency Transducers and Correlation Method to Enhance Ultrasonic Gas Flow Metering [J]. Flow Measurement and Instrumentation, 2001, 12: 201-211.
[3]Glawe G E , Holanda R, Krause L. Recovery and Radiation Corrections and Time Constants of Several Sizes of Shielded and Unshielded Thermocouple Probes for Measuring Gas Temperature [R]. NASA-TP-1099, 1978.
[4] Zante D E V, Suder K L, Strazisar A J, et al. An Improved Aspirating Probe for Total-Temperature and Total-Pressure Measurements in Compressor Flows [J]. ASME Journal of Turbomachinery, 1995, 117: 642-649.
[5]Boutrif M S, Thelliez M. Determination of Flow Temperature by Using the Two Thermocouples Experimental Technique [J]. Review of Thermology, 1995, 34: 263-271.
[6]廖理. 热学计量 [M]. 北京: 原子能出版社, 2002.
[7]李杰, 樊丁, 纪仓囤. 航空发动机温度传感器动态特性改善方法 [J]. 航空动力学报, 2012, 21(3): 707-714.
Li J, Fan D, Ji C T. Dynamic Response Capability Improvement Method for Aero-engine Temperature Sensor [J]. Journal of Aerospace Power, 2012, 21(3): 707-714.
[8]Michiel A P P, Andre L A, Kofi A A M. Senior Member Low-cost Calibration Techniques for Smart Temperature Sensor [J]. IEEE Sensors Journal, 2010, 10(6): 1095-1105.
[9]崔江, 寿圣德. 动态气流温度的测量 [J]. 航空学报, 1998, 19(5): 560-563.
Cui J, Shou S D. Dynamic Airflow Temperature Measurement [J]. Acta Aeronautica ET Astronautica Sinica, 1998, 19(5): 560-563.
[10]Suryavamshi N, Lakshminarayana B, Prato J. Aspirating Probe Measurements of the Unsteady Total Temperature Field Downstream of an Embedded Stator in a Multistage Axial Flow Compressor[J]. ASME Journal of Turbomachinery, 1998, 120: 156-169.
[11]李炎. 热电偶测温误差的时间常数分析 [J]. 山东科技大学学报, 2003, 22(2): 87-88.
Li Y. Time Constant Analysis about the Thermoscopic Erorr of Thermocouple [J]. Journal of Shandong University of Science and Technology, 2003, 22(2): 87-88.
[12]赵俭. 温度传感器稳态建模方法研究 [J]. 教育科技博览, 2015(6): 227-229.
[13]赵俭. 温度传感器动态建模方法研究 [J]. 教育科技博览, 2015(6): 160-162.
[14]王玉芳,董素艳,赵俭,等. 单屏式多点气流温度传感器现场校准工况参数影响分析[J]. 计量学报, 2022, 43(2): 222-227.
Wang Y F,Dong S Y,Zhao J,et al. Influence Analysis of Working Condition Carameters of Single Screen Multipoint Air-flow Temperature Sensor in Field Calibration[J]. Acta Metrologica Sinica, 2022, 43(2): 222-227.
[15]Feng J, Qu G, Potkonjak M. Actuator-based infield Sensor Calibration [J]. Metrology and Measurement Technology, 2006, 6(6): 1571-1570.
[16]刘波, 王崇愿, 朱鹏飞. 水流环境下温度传感器动态响应测量的不确定度评定 [J]. 计量学报, 2020, 41(10): 1240-1244.
Liu B, Wang C Y, Zhu P F. Uncertainty Evaluation on Temperature Sensors Dynamic Response Based on Water Facility [J]. Acta Metrologica Sinica, 2020, 41(10): 1240-1244.
[17]贾超, 蔡杰, 熊朝晖. 不同传热方式下温度传感器动态特性研究 [J]. 计量学报, 2020, 41(5): 563-566.
Jia C, Cai J, Xiong Z H. Study on Dynamic Characteristics of Temperature Sensors under Different Heat Transfer Modes [J]. Acta Metrologica Sinica, 2020, 41(5): 563-566. |
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