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Tubomachinery blade vibration amplitude measurement through tip timing with capacitance tip clearance probes

机译:使用电容式尖端间隙探头通过尖端定时测量Tubomachinery刀片的振动幅度

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Turbomachinery blade vibrations can cause high cycle fatigue (HCF), which reduces blade life. In order to observe this vibration a non-intrusive monitoring system is sought. The vibration can be detected by measuring blade tip timing since in the presence of vibration the blade timing will differ slightly from the passing time calculated from rotor speed. Much research and development has gone into investigating the ability of optical probes to achieve this. However, this paper looks at the potential for a dual use capacitance probe sensor to measure both tip timing and tip clearance. This paper provides new insights into the ability of a commercially available capacitance probe tip clearance measurement system for application as a non-intrusive turbomachinery blade tip timing measurement device. This is done by correlating capacitance probe tip timing results with simultaneously measured blade-mounted strain gauge vibration results and precise rotational speeds. Blade tip vibration amplitudes are measured using capacitance probes and compared to strain derived vibration levels. Thus the characterisation and quantification of the performance of the capacitance probe system when measuring blade vibration on a full-sized low-speed research compressor is analysed and reported. (C) 2004 Elsevier B.V. All rights reserved.
机译:涡轮机械叶片的振动会导致高周疲劳(HCF),从而缩短叶片寿命。为了观察这种振动,寻求一种非侵入式监测系统。可以通过测量叶片尖端正时来检测振动,因为在存在振动时叶片正时将与根据转子速度计算出的通过时间略有不同。已经进行了许多研究和开发,以研究光学探针实现这一目标的能力。但是,本文着眼于两用电容式探头传感器测量尖端正时和尖端间隙的潜力。本文为商用电容式探针尖端间隙测量系统的性能提供了新的见解,该系统可用作非侵入式涡轮机械叶片尖端定时测量装置。这是通过将电容式探头尖端定时结果与同时测量的刀片安装式应变仪振动结果和精确的转速相关联来完成的。刀片尖端的振动幅度是使用电容探头测量的,并与应变衍生的振动水平进行比较。因此,分析和报告了在全尺寸低速研究型压缩机上测量叶片振动时电容探针系统性能的表征和量化。 (C)2004 Elsevier B.V.保留所有权利。

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