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Evaluation of the Continuous Wavelet Transform for Detection of Single-Point Rub in Aeroderivative Gas Turbines with Accelerometers

机译:用加速度计评估连续小波变换用于检测航空衍生燃气轮机单点碰摩

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摘要

A common fault in turbomachinery is rotor–casing rub. Shaft vibration, measured with proximity probes, is the most powerful indicator of rotor–stator rub. However, in machines such as aeroderivative turbines, with increasing industrial relevance in power generation, constructive reasons prevent the use of those sensors, being only acceleration signals at selected casing locations available. This implies several shortcomings in the characterization of the machinery condition, associated with a lower information content about the machine dynamics. In this work, we evaluated the performance of Continuous Wavelet Transform to isolate the accelerometer signal features that characterize rotor–casing rub in an aeroderivative turbine. The evaluation is carried out on a novel rotor model of a rotor–flexible casing system. Due to damped transients and other short-lived features that rub induces in the signals, the Continuous Wavelet Transform proves being more effective than both Fourier and Cepstrum Analysis. This creates the chance for enabling early fault diagnosis of rub before it may cause machine shutdown or damage.
机译:涡轮机械中的常见故障是转子-壳体摩擦。用接近探针测量的轴振动是转子-定子摩擦的最有力指标。但是,在诸如航改涡轮机之类的机器中,随着发电中工业应用的增加,建设性的原因阻止了这些传感器的使用,这仅仅是在选定的机壳位置可用的加速度信号。这意味着在表征机器状态时存在一些缺点,与有关机器动态的较低信息含量相关。在这项工作中,我们评估了连续小波变换的性能,以隔离加速度计信号特征,该特征表征了航改涡轮机的转子-壳体摩擦。该评估是基于新型的转子-柔性壳体系统的转子模型进行的。由于阻尼瞬变和其他会在信号中产生摩擦的短寿命特征,连续小波变换比傅立叶分析和倒谱分析更有效。这为在可能导致机器停机或损坏之前进行摩擦的早期故障诊断创造了机会。

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