气流小温升校准方法研究
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1.中国航空工业集团公司北京长城计量测试技术研究所北京100095; 2.北京航空航天大学北京100191

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TH811

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国家科技重大专项(J2019-V-0002-0093)资助


Research on the calibration method of low temperature rise airflow
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1.AVIC Changcheng Institute of Metrology & Measurement, Beijing 100095, China; 2.Beihang University, Beijing 100191, China

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    摘要:

    航空发动机压缩系统效率的准确计算影响了压缩系统的设计和规划。目前计算压缩系统效率最常用的方法是温升法。而现有测温方法在气流温升不大于100 K, 马赫数不大于0.5的气流小温升环境中的测温不确定度接近1 K。严重影响了测温精度,进一步导致温升法计算的压缩系统效率精度不足。针对目前气流小温升校准中, 校准精度不足, 校准方法缺失的问题,提出一种以能量守恒和散热修正为基本思路的气流小温升校准方法。将精度更高的二等标准铂电阻作为参考气流温度传感器, 从风洞试验段出口前移至稳定段同一轴线上安装, 对参考气流温度传感器进行壁面散热温损修正, 分析得到气流小温升校准中参考气流温度传感器的不确定度为0.08 K。用气流小温升校准方法对被校气流温度传感器进行校准。在校准后测试中, 校准后的铂电阻气流温度传感器在马赫数0.398, 温升约50 K的情况下, 测温偏差在-0.075~-0.031 K之间, 与不确定分析的结果相当, 验证了气流小温升校准装置, 校准方法和不确定度评定方法。气流小温升校准方法提高了气流温度传感器在小温升环境下的指示真实气流温度的能力, 为航空发动机压缩系统效率的准确计算提供了有力支撑。

    Abstract:

    The accurate calculation of the efficiency of the aero-engine compression system affects the design and planning of the compression system. At present, the most commonly used method to calculate the efficiency of a compression system is the temperature rise method. However, the uncertainty of the existing temperature measurement method is close to 1 K when the air temperature rise is less than 100 K and the Mach number is less than 0.5. In this case, the accuracy of temperature measurement is seriously affected, and the efficiency accuracy of the compression system calculated by the temperature rise method is insufficient. In response to the current problems of insufficient calibration accuracy and missing calibration methods in low temperature rise airflow calibration, this article proposes a low temperature rise airflow calibration method based on energy conservation and heat dissipation correction. Using a second-class standard platinum resistor with higher accuracy as the reference airflow temperature sensor, it is moved forward from the wind tunnel test section outlet to the stable section and installed on the same axis. The wall heat dissipation temperature loss of the reference airflow temperature sensor is corrected, resulting in low temperature rise calibration uncertainty of the reference airflow temperature sensor for 0.08 K. The low temperature rise airflow calibration method is used to calibrate the airflow temperature sensor to be calibrated. The calibrated platinum resistor airflow temperature sensor has a temperature measurement deviation between (0.075~-0.031) K at Mach number 0.398 and a temperature rise of about 50 K in the test after calibration. In accordance with the results of the uncertainty analysis, the calibration device, the calibration method, and the uncertainty evaluation method of low temperature rise airflow are verified. The calibration method of low temperature rise airflow improves the ability to indicate the true airflow temperature of the airflow temperature sensor under the low temperature rise environment, providing strong support for the accurate calculation of the efficiency of the aircraft engine compression system.

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赵乂鋆,王筱庐,李泽涛,荆卓寅,赵俭.气流小温升校准方法研究[J].仪器仪表学报,2025,46(3):9-19

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  • 在线发布日期: 2025-05-28
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