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Turbine-blade tip clearance and tip timing measurements using an optical fiber bundle sensor

机译:使用光纤束传感器测量涡轮叶片的叶尖间隙和叶尖正时

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Traditional limitations of capacitive, inductive or discharging probe sensor for tip timing and tip clearance measurements are overcome by reflective intensity modulated optical fiber sensors. This paper presents the signals and results corresponding to a one stage turbine rig which rotor has 146 blades, obtained from a transonic wind-tunnel test. The probe is based on a trifurcated bundle of optical fibers that is mounted on turbine casing. It is composed of a central illuminating fiber that guides the light from a laser to the turbine blade, and two concentric rings of receiving fibers that collect the reflected light. Two photodetectors turn this reflected light signal from the receiving rings into voltage. The electrical signals are acquired and saved by a high-sample-rate oscilloscope. In tip clearance calculations the ratio of the signals provided by each ring of receiving fibers is evaluated and translated into distance. In the case of tip timing measurements, only one of the signals is considered to get the arrival time of the blade. The differences between the real and theoretical arrival times of the blades are used to obtain the deflections amplitude. The system provides the travelling wave spectrum, which presents the average vibration amplitude of the blades at a certain nodal diameter. The reliability of the results in the turbine rig testing facilities suggests the possibility of performing these measurements in real turbines under real working conditions.
机译:反射强度调制的光纤传感器克服了电容式,电感式或放电式探头传感器在尖端定时和尖端间隙测量方面的传统限制。本文介绍了信号和结果,该信号和结果对应于一个跨级透平钻机,该透平机的转子具有146个叶片,这些叶片是通过跨音速风洞测试获得的。该探头基于安装在涡轮机壳体上的三叉光纤束。它由将来自激光器的光引导到涡轮叶片的中央照明光纤,以及两个收集反射光的接收光纤的同心环组成。两个光电探测器将来自接收环的反射光信号转换为电压。电信号由高采样率示波器采集并保存。在尖端间隙计算中,评估接收光纤的每个环提供的信号比率,并将其转换为距离。在叶尖正时测量的情况下,仅考虑信号之一来获取叶片的到达时间。叶片的实际到达时间与理论到达时间之间的差用于获得偏转幅度。该系统提供了行波谱,该行波谱显示了在特定节点直径下叶片的平均振动幅度。涡轮钻机测试设备中结果的可靠性表明,可以在实际工作条件下在实际涡轮机中执行这些测量。

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