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Investigating the Validity of Acoustic Spectrum as a Prediction Tool for Pump Cavitation

机译:研究声谱作为泵气蚀预测工具的有效性

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Cavitation in pumps causes destructive consequences; it must be detected and prevented. The aim of the present work is investigating the validity of sound spectrum as a prediction tool for pump cavitation. Results showed that; for the discrete frequencies of RF = 47.5 Hz, and BPF = 285 Hz and its second, third, and fourth harmonics of 570 Hz, 855 Hz, and 1140 Hz respectively; there are no great variations in the noise signal for the cavitation and non-cavitation conditions. For the discrete frequency of 147 Hz, there is also no great variation in the noise signal at this frequency. The only apparent result is that; the occurrence of cavitation results high energy noise signals at high frequencies from 1000 Hz to 10000 Hz. The absence of any discrete frequency to be monitored makes the sound spectrum not valid as a prediction tool for cavitation in the pumps.
机译:泵中的气蚀会造成破坏性后果;必须对其进行检测和预防。本工作的目的是研究声谱作为泵气穴现象预测工具的有效性。结果表明;对于RF = 47.5 Hz和BPF = 285 Hz的离散频率,其二次谐波分别为570 Hz,855 Hz和1140 Hz;空化和非空化条件下的噪声信号变化不大。对于147 Hz的离散频率,该频率下的噪声信号也没有很大变化。唯一明显的结果是:空化的发生会在1000 Hz至10000 Hz的高频下产生高能噪声信号。由于没有要监视的离散频率,因此声谱不能有效用作泵中气穴现象的预测工具。

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