首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Detection of Draft Tube Surge and Erosive Blade Cavitation in a Full-Scale Francis Turbine
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Detection of Draft Tube Surge and Erosive Blade Cavitation in a Full-Scale Francis Turbine

机译:大型混流式水轮机的尾水管喘振和冲蚀叶片气蚀的检测

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A full-scale Francis turbine has been experimentally investigated over its full range of operation to detect draft tube swirling flows and cavitation. The unit is of interest due to the presence of severe pressure fluctuations at part load and of advanced blade suctionside cavitation erosion. Moreover, the turbine has a particular combination of guide vanes (20) to runner blades (15) that makes it prone to significant rotor-stator interaction (RSI). For that, a complete measurement system of dynamic pressures, temperatures, vibrations, and acoustic emissions has been setup with the corresponding transducers mounted at selected sensitive locations. The experiments have comprised an efficiency measurement, a signal transmissibility evaluation, and the recording of the raw signals at high sampling rates. Signal processing methods for demodulation, peak power estimation, and cross correlation have also been applied. As a result, draft tube pressure fluctuations have been detected around the Rheingans frequency for low loads and at 4% of the rotating frequency for high loads. Moreover, maximum turbine guide bearing acoustic emissions have been measured at full load with amplitude modulations at both the guide vane passing frequency and the draft tube surge frequency.
机译:已经对大型混流式水轮机进行了全范围的试验研究,以检测尾流管的旋流和空化现象。由于在部分负荷下存在严重的压力波动,并且叶片的吸入侧空化侵蚀加剧,因此该装置受到关注。而且,涡轮机具有导向叶片(20)与叶轮叶片(15)的特定组合,这使其易于产生明显的转子-定子相互作用(RSI)。为此,已经建立了一个完整的动态压力,温度,振动和声发射测量系统,并将相应的传感器安装在选定的敏感位置。实验包括效率测量,信号传输率评估以及以高采样率记录原始信号。用于解调,峰值功率估计和互相关的信号处理方法也已应用。结果,对于低负载,在Rheingans频率附近检测到引流管压力波动,对于高负载,在旋转频率的4%处检测到。此外,已经在满载情况下在导向叶片通过频率和引流管喘振频率下通过幅度调制测量了最大涡轮导向轴承的声发射。

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