首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Experimental Investigation of Time-Frequency Characteristics of Pressure Fluctuations in a Double-Suction Centrifugal Pump
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Experimental Investigation of Time-Frequency Characteristics of Pressure Fluctuations in a Double-Suction Centrifugal Pump

机译:双吸离心泵压力波动时频特性的实验研究

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摘要

Pressure fluctuation is the primary reason for unstable operations of double-suction centrifugal pumps. By using flush mounted pressure transducers in the semispiral suction chamber and the volute casing of a double-suction pump, the pressure fluctuation signals were obtained and recorded at various operating conditions. Spectral analyses were performed on the pressure fluctuation signals in both frequency domain and time-frequency domain based on fast Fourier transform (FFT) and an adaptive optimal-kernel time-frequency representation (AOK TFR). The results show that pressure fluctuations at the impeller rotating frequency and some lower frequencies dominated in the semispiral suction chamber. Pressure fluctuations at the blade passing frequency, the impeller rotating frequency, and their harmonic frequencies were identified in the volute casing. The amplitude of pressure fluctuation at the blade passing frequency significantly increased when the flow rate deviated from the design flow rate. At 107percent of the design flow rate, the amplitude increased more than 254percent than that at the design flow rate. The time-frequency characteristics of these pressure fluctuations were affected greatly by both operating conditions and measurement locations. At partial flow rates the pulsation had a great irregularity and the amplitudes at the investigated frequencies were much larger than ones at the design flow rate. An asymmetrical pressure fluctuation structure in the volute casing was observed at all flow rates. The pulsation behavior at the blade passing frequency was the most prominent near the volute tongue zone, and the pressure waves propagated in both the radial and circumferential directions.
机译:压力波动是双吸离心泵运行不稳定的主要原因。通过在半螺旋吸入室和双吸泵的蜗壳中使用齐平安装的压力传感器,可以获得压力波动信号并在各种工况下记录下来。基于快速傅里叶变换(FFT)和自适应最优核时频表示(AOK TFR),对频域和时频域中的压力波动信号进行了频谱分析。结果表明,在半螺旋吸入腔中,叶轮旋转频率和一些较低频率的压力波动占主导地位。在蜗壳中确定了叶片通过频率,叶轮旋转频率及其谐波频率的压力波动。当流量偏离设计流量时,叶片通过频率处的压力波动幅度会显着增加。在设计流量的107%时,振幅比在设计流量时的振幅增加254%以上。这些压力波动的时频特性受操作条件和测量位置的影响很大。在部分流速下,脉动具有很大的不规则性,并且在所研究的频率下的振幅比在设计流速下的振幅大得多。在所有流速下,蜗壳中均出现了不对称的压力波动结构。叶片通过频率处的脉动行为在蜗舌区域附近最为明显,并且压力波在径向和圆周方向上均传播。

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