航空发动机整机试验关键参数测试技术综述
Review of engine⁃level testing techniques for the key parameters of gas turbine engine
  
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中文摘要:
      从性能和可靠性试验的角度,分析了航空发动机整机试验的测试需求,梳理出推力、功率、转速、流量、温度、压力、振动等整机试验关键参数,介绍了相关测试技术的原理、应用和发展趋势。在推力和功率测试方面,分别介绍了推力测量台架和功率测量系统及其校准方法;在转速测试方面,介绍了典型转速测量系统和对转速信号畸变的应对手段;在流量测试方面,介绍了用于燃油流量测试的速度式、压差式和质量式流量计,用于空气流量测试的进气流量测量段的结构和测点布置;在温度测试方面,介绍了涵盖热电阻、热电偶、示温漆、荧光测温以及辐射测温等技术的气体测温和壁面温度测试手段;在压力测试方面,介绍了压力测试系统,分析了高温环境下的动态压力测试的困难及解决途径;在振动测试方面,介绍了整机振动测试系统以及测振点布置的问题。指出航空发动机整机试验关键参数测试技术未来将向高可靠度、高频响、高耐温性能等方向发展,同时整机试验测试系统将趋于智能化与集成化。
英文摘要:
      From the perspective of performance and reliability testing, this paper analyzes the testing requirements for the engine?level test of gas turbine engine, and identifies the key parameters, including thrust, power, speed, flow rate, temperature, pressure, and vibration. The principles, applications, and development trends of the relevant testing techniques for each parameter are introduced. For thrust and power measurement, the structure of thrust measurement bench and power measurement system, along with their calibration methods, are described. In terms of rotational speed measurement, typical speed measurement systems and strategies for dealing with signal distortion are presented. Regarding flow rate measurement, velocity, differential pressure, and mass flow meters used for fuel flow measurement, as well as the structure and measurement point arrangement of the intake air flow measurement section are discussed. For temperature measurement, gas temperature measurement and wall temperature testing methods encompassing resistance temperature detectors, thermocouples, temperature?indicating paint, fluorescent temperature measurement, and radiation temperature measurement techniques are introduced. In pressure measurement, the pressure testing system is described, and the challenges and solutions for dynamic pressure testing in high?temperature environments are analyzed. In vibration measurement, the engine?level vibration testing system and the issues related to vibration measurement point arrangement are discussed. The testing techniques for the key parameters of gas turbine engine are expected to evolve towards higher accuracy, higher frequency response, and higher temperature tolerance. Meanwhile, the engine?level testing systems will tend towards intelligence and integration.
Author NameAffiliation
ZHANG Tianhong, ZHANG Chenxu College of Energy and Power Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China 
中文关键词:  航空发动机  性能与可靠性  整机试验  关键参数测试
英文关键词:gas turbine engine  performance and reliability  engine⁃level test  key parameter testing
基金项目:
DOI:10.11823/j.issn.1674-5795.2025.01.01
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