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Draft Tube Surge Detection in Francis Hydroturbines Using Bispectrum Analysis

机译:双谱分析法在混流式水轮机尾气管喘振检测中的应用

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The pressure surge in the draft tube is one of the main causes of instability and power losses in hydro power plants. This fault usually happens when the turbine operates in part load. Early detection of draft tube surge helps the operators to prevent potential damages to the turbine. In this study a new method for detection of draft tube surge from vibration signals is presented. The vibration signals of turbine guide bearing, draft tube and spiral case are acquired. These signals are then processed using bispectrum analysis. Bispectrum analysis can detect the nonlinearities present in the signal. When surge in draft tube occurs, changes are observed in signal bispectrum which show the occurrence of the fault in turbine. Therefore, this technique can be used as a powerful tool for fault detection in turbines. The results of different measurement positions are also discussed and the most significant ones are presented. The results demonstrate the efficiency of this method in draft tube surge detection.
机译:引流管中的压力波动是水力发电厂不稳定和功率损耗的主要原因之一。当涡轮机在部分负载下运行时,通常会发生此故障。尽早发现引流管喘振有助于操作人员防止对涡轮机的潜在损坏。在这项研究中,提出了一种从振动信号中检测尾水管喘振的新方法。采集涡轮导向轴承,尾水管和螺旋壳体的振动信号。然后使用双频谱分析处理这些信号。双频谱分析可以检测信号中存在的非线性。当引流管发生喘振时,会观察到双频谱信号的变化,这表明涡轮机发生了故障。因此,该技术可以用作涡轮机故障检测的有力工具。还讨论了不同测量位置的结果,并给出了最重要的结果。结果证明了该方法在尾水管喘振检测中的效率。

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