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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Characterization of Cavitation Fields From Measured Pressure Signals of Cavitating Jets and Ultrasonic Horns
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Characterization of Cavitation Fields From Measured Pressure Signals of Cavitating Jets and Ultrasonic Horns

机译:从空化射流和超声变幅杆的测得压力信号表征空化场

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摘要

Cavitation pressure fields under a cavitating jet and an ultrasonic horn were recorded for different conditions using high frequency response pressure transducers. This was aimed at characterizing the impulsive pressures generated by cavitation at different intensities. The pressure signals were analyzed and statistics of the amplitudes and widths of the impulsive pressure peaks were extracted. Plots of number densities and cumulative numbers of peaks as functions of peak amplitude, peak width, and the power of the ultrasonic horn or the jet were generated. The analysis revealed the dominance of pulses with smaller amplitudes and larger durations at lower cavitation intensities and the increase of the amplitudes and reduction of the pulse widths at higher intensities. The ratio of the most probable peak amplitude to peak width was computed. A representative Gaussian curve was then generated for each signal using a characteristic peak amplitude and the corresponding most probable peak duration/width. This resulted in a proposed statistical representation of a cavitation field, useful to characterize cavitation fields of various intensities.
机译:使用高频响应压力传感器,在不同条件下记录了空化射流和超声变幅杆下的空化压力场。目的是表征在不同强度下由气蚀产生的冲击压力。分析压力信号并提取脉冲压力峰值的幅度和宽度的统计数据。生成了数密度和峰累积数作为峰幅度,峰宽和超声变幅杆或射流功率的函数的图。分析显示,在较低的空化强度下,较小振幅和较大持续时间的脉冲占优势,在较高强度下,振幅增加且脉冲宽度减小。计算出最可能的峰值幅度与峰值宽度之比。然后,使用特征峰幅度和相应的最可能的峰持续时间/宽度为每个信号生成一个代表性的高斯曲线。这导致建议的空化场的统计表示,可用于表征各种强度的空化场。

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