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首页> 外文期刊>Measurement and Control: Journal of the Institute of Measurement and Control >Sound field measurement and evaluation research for radiated acoustic fields in amplitude-variable sonochemical systems
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Sound field measurement and evaluation research for radiated acoustic fields in amplitude-variable sonochemical systems

机译:幅度变量散发系统辐射声场的声场测量与评价研究

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摘要

The content of this study is based on the background of sonochemistry processes. First, the hydrophone is used to measure the sound pressure in the reactor (the experimental ultrasonic frequency range is 20 +/- 1 kHz). The sound pressure signals are processed by threshold method, Kalman filter algorithm, and five-point three-time smoothing method. These methods eliminate singular items in the sound pressure signal, filter noise, smooth burrs, and so on. In addition, the sound intensity value is calculated by dual hydrophone method. In this paper, the average intensity of ultrasonic cavitation is studied. The radial distribution and longitudinal distribution of cavitation intensity of the same tool head are studied, and the effects of different power and different tool heads on cavitation intensity are also discussed in this paper. The experimental results show that the instrument designed in this paper can effectively measure the distribution of ultrasonic sound field and evaluate the performance of the tool head. We can infer from the experiments that the performance of the diamond tool head is better than that of the nine-section whip and the dumbbell tool head.
机译:本研究的内容基于Sonochemisty过程的背景。首先,水听器用于测量反应器中的声压(实验超声波频率范围为20 +/- 1 kHz)。通过阈值方法,卡尔曼滤波算法和五点三次平滑方法处理声压信号。这些方法消除了声压信号中的奇异项目,过滤噪声,平滑的毛刺等。此外,声强值是通过双水电器方法计算的。在本文中,研究了超声波空化的平均强度。研究了相同工具头的空化强度的径向分布和纵向分布,并在本文中讨论了不同功率和不同工具头对空化强度的影响。实验结果表明,本文中设计的仪器可以有效地测量超声波声场的分布,并评估工具头的性能。我们可以从实验推断出钻石工具头的性能优于九块鞭子和哑铃工具头的性能。

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