首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >TIP-CLEARANCE MEASUREMENTS ON AN ENGINE HIGH PRESSURE TURBINE USING AN EDDY CURRENT SENSOR
【24h】

TIP-CLEARANCE MEASUREMENTS ON AN ENGINE HIGH PRESSURE TURBINE USING AN EDDY CURRENT SENSOR

机译:利用涡流传感器对发动机高压汽轮机的间隙进行测量

获取原文

摘要

Gas turbine health monitoring is an important area of research. As the performance of aircraft and power plants increase, they will require better sensors for health monitoring systems to prevent failures. Health monitoring systems help in preventive maintenance reducing unnecessary downtime and maintenance costs. Gas turbine blades are subjected to dynamic loads caused by rotor imbalances, distortions in the intake flows etc. These loads cause low or high cycle fatigues and the blades can fail over time. Tip-timing and tip-clearance systems makes it possible to assess turbomachinery blade vibration by using non-contact measurement systems such as optical, eddy current, hall effect, capacitve etc. The most widely used systems in industry are optical, however, these systems are still largely prone to contamination problems from dust, dirt, oil, water etc. Further development of these systems for in-service use is problematic because of the difficulty in eliminating contamination of the optics. Other systems, although immune to contamination, may not be able to measure both tip-clearance and tip-timing at the same time due to their operating principle. Another limitation is that they cannot be used in high temperature applications such as in a high pressure turbine where the temperatures can reach 1400°C. Eddy current sensors are found to be quite robust and can measure both tip-timing and tip-clearance. They are currently being used for gas turbine health monitoring applications at low temperatures such as in the compressor stage and last stage of a steam turbine. A new high temperature eddy current sensor has been de- veloped in-house at the University of Oxford for application in gas turbine tip-timing and tip clearance measurements to assess blade vibrations. The current sensor is a modified version of the existing eddy current sensor that is able to operate at high temperatures of about 1400°C. The paper presents the development of the sensor and experimental results of tip clearance measurements in the high pressure turbine stage of a jet engine. In the engine tests, two blades were reduced in height to increase the tip-clearance and the measurements were taken at both idle and max operating speeds. The sensor was found to work in these harsh environments and was sufficiently sensitive to accurately determine the tip clearance at these elevated temperatures. Tests were carried out mainly to demonstrate the technique of obtaining good tip clearance measurements and the survivability of the sensors in the high temperature and pressure environment.
机译:燃气轮机健康监测是重要的研究领域。随着飞机和发电厂性能的提高,它们将需要用于健康监控系统的更好的传感器,以防止故障。健康监控系统有助于预防性维护,减少不必要的停机时间和维护成本。燃气涡轮机叶片承受由转子不平衡,进气流变形等引起的动态载荷。这些载荷会引起低或高循环疲劳,并且叶片会随着时间的流逝而失效。尖端定时和尖端间隙系统可以通过使用非接触式测量系统(例如光学,涡流,霍尔效应,电容等)来评估涡轮机械叶片的振动。工业上使用最广泛的系统是光学系统,但是这些系统仍然非常容易受到来自灰尘,污垢,油,水等的污染问题。由于难以消除光学器件的污染,因此这些系统在使用中的进一步开发是有问题的。其他系统尽管不受污染,但由于其工作原理,可能无法同时测量尖端间隙和尖端定时。另一个限制是它们不能用于高温应用中,例如高温涡轮机中温度可达到1400°C。发现涡流传感器非常坚固,可以测量尖端定时和尖端间隙。它们目前被用于低温下的燃气轮机健康监测应用,例如在蒸汽轮机的压缩机级和最后级。牛津大学内部已开发出一种新型的高温涡流传感器,可用于燃气轮机的端部正时和端部间隙测量,以评估叶片的振动。电流传感器是现有涡流传感器的改良版,能够在约1400°C的高温下工作。本文介绍了在喷气发动机的高压涡轮级中传感器的发展和叶尖间隙测量的实验结果。在发动机测试中,降低了两个叶片的高度以增加叶尖间隙,并且在怠速和最大运行速度下均进行了测量。发现该传感器可以在这些恶劣的环境下工作,并且足够敏感,可以准确确定在这些升高的温度下的刀尖间隙。进行测试主要是为了证明获得良好的刀尖间隙测量值的技术以及传感器在高温和高压环境下的生存能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号