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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Study of Erosive Cavitation Detection in Pump Mode of Pump-Storage Hydropower Plant Prototype
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Study of Erosive Cavitation Detection in Pump Mode of Pump-Storage Hydropower Plant Prototype

机译:抽水蓄能电站原型泵模式下的空蚀检测研究

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An experimental investigation has been made to detect cavitation in a pump-storage hydropower plant prototype suffering from leading edge cavitation in pump mode. Vibrations and acoustic emission on the housing of the turbine bearing and pressure fluctuations in the draft tube were measured and the corresponding signals were recorded and analyzed. The analysis was based on the analysis of high-frequency content of measured variables. The pump-storage hydropower plant prototype has been operated at various input loads and Thoma numbers. Several estimators of cavitation were evaluated according to a coefficient of determination between the Thoma number and cavitation estimators. The best results were achieved with a compound discharge coefficient cavitation estimator that is based on the discharge coefficient and several rms estimators: vibrations, acoustic emission, and pressure fluctuations. The compound discharge estimator was set as a product of the rms estimator and the squared discharge coefficient. Cavitation estimators were evaluated in several intervals of frequencies; the best frequency interval for the vibration sensor on the turbine cover was from 24 to 26 kHz, for the vibration sensor on the guide vane 36-40 kHz, for the acoustic emission sensor on the turbine cover 140-145 kHz, and for the pressure fluctuation sensor in the draft tube wall 130-150 kHz.
机译:已经进行了实验研究,以检测在泵模式下遭受前沿气蚀的泵浦水电站原型中的气蚀。测量涡轮轴承壳体上的振动和声发射以及导流管中的压力波动,并记录和分析相应的信号。该分析基于对测量变量的高频内容的分析。抽水蓄能电站原型已在各种输入负载和托马数下运行。根据Thoma数与空化估计量之间的确定系数,评估了几种空化估计量。使用基于排放系数的复合排放系数气蚀估算器和几种均方根估算器(振动,声发射和压力波动)可获得最佳结果。复合放电估算器设置为均方根估算器与平方放电系数的乘积。空化估算器在几个频率间隔中进行评估。涡轮机盖上的振动传感器,导叶上的振动传感器36-40 kHz,涡轮机盖上的声发射传感器140-145 kHz和压力的最佳频率间隔为24至26 kHz尾水管壁中的波动传感器130-150 kHz。

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