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Synchronous Vibration Measurements for Shrouded Blades Based on Fiber Optical Sensors with Lenses in a Steam Turbine

机译:基于带透镜的光纤传感器的汽轮机带罩叶片的同步振动测量

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摘要

It is important to obtain accurate dynamic vibrations of steam turbine blades for safe operation. Strain gauge (SG) measurements cannot fully obtain vibrations of all blades and nodal diameter (ND) details. The blade tip timing (BTT) technique could resolve this problem because it has the advantage of measuring all blades’ vibrations. This article proposed an improved BTT technique for measuring synchronous vibrations of shrouded blades in a steam turbine based on fiber optical sensors with lenses. The newly developed sensor was equipped with a Plano-convex lens, and the optical path was specifically designed to collimate the beam within a large working distance from 4 to 19 mm and improve the measuring accuracy. A method to search the spectra of all peak vibration amplitudes of all the blades was proposed to obtain the ND details of synchronous vibration. Experimental results validated the efficiency and accuracy of the proposed methods and sensors. Comparison results of BTT measurements with SG measurements showed that the relative errors of normalized frequency and strain were small and acceptable.
机译:重要的是要获得准确的汽轮机叶片动态振动,以确保安全运行。应变片(SG)的测量不能完全获得所有叶片的振动和节点直径(ND)的细节。刀片尖端计时(BTT)技术可以解决此问题,因为它具有测量所有刀片振动的优势。本文提出了一种改进的BTT技术,该技术基于带透镜的光纤传感器来测量汽轮机中带罩叶片的同步振动。新开发的传感器配备了平凸透镜,并且光路经过专门设计,可在4至19 mm的较大工作距离内准直光束,并提高了测量精度。提出了一种搜索所有叶片所有峰值振动振幅谱的方法,以获得同步振动的ND细节。实验结果验证了所提方法和传感器的效率和准确性。 BTT测量与SG测量的比较结果表明,归一化频率和应变的相对误差很小并且可以接受。

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