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Experimental Investigation on Cavitating Flow Induced Vibration Characteristics of a Low Specific Speed Centrifugal Pump

机译:低特定速度离心泵的空化流动振动特性的实验研究

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摘要

Cavitating flow developing in the blade channels is detrimental to the stable operation of centrifugal pumps, so it is essential to detect cavitation and avoid the unexpected results. The present paper concentrates on cavitation induced vibration characteristics, and special attention is laid on vibration energy in low frequency band, 10–500 Hz. The correlation between cavitating evolution and the corresponding vibration energy in 10–500 Hz frequency band is discussed through visualization analysis. Results show that the varying trend of vibration energy in low frequency band is unique compared with the high frequency band. With cavitation number decreasing, vibration energy reaches a local maximum at a cavitation number much larger than the 3% head drop point; after that it decreases. The varying trend is closely associated with the corresponding cavitation status. With cavitation number decreasing, cavitation could be divided into four stages. The decreasing of vibration energy, in particular cavitation number range, is caused by the partial compressible cavitation structure. From cavitation induced vibration characteristics, vibration energy rises much earlier than the usual 3% head drop criterion, and it indicates that cavitation could be detected in advance and effectively by means of cavitation induced vibration characteristics.
机译:在刀片通道中发育的空化流动对离心泵的稳定运行有害,因此可以检测空化并避免意外结果。本文专注于空化诱导振动特性,特别注意低频带中的振动能量,10-500 Hz。通过可视化分析讨论了空化演化与10-500Hz频带中相应振动能的相关性。结果表明,与高频带相比,低频带中振动能量的变化趋势是独一无二的。通过空化数减小,振动能量在空化数下达到大于3%头部滴点的局部最大值;之后它减少了。不同的趋势与相应的空化状态密切相关。利用空化数减小,空化可分为四个阶段。振动能量,特别是空化数范围的减小是由部分可压缩空化结构引起的。从空化诱导振动特性,振动能量比通常的3%头部落准则更早地升高,表示可以通过空化诱导振动特性提前和有效地检测空化。

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