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Modeling of the acoustic pressure fields and the distribution of the cavitation phenomena in a dual frequency sonic processor

机译:双频声波处理器中声压场的建模和空化现象的分布

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An attempt has been made to model the acoustic pressure field and the spatial distribution of the cavitation phenomena in a dual frequency sonic processor. A methodology has been presented with numerical simulations to optimize the conditions of the dual frequency acoustic field. The simulations presented in this work reveal that with manipulation of the parameters (viz., frequency ratio and the pressure amplitude ratio of the two acoustic waves and the phase difference between the two waves) of the dual frequency acoustic field it is possible to control the mode (stable or transient) and spatial distribution of the cavitation events in the sonic processor. It has been shown that two major shortcomings of the sonic reactor, viz., directional sensitivity of the cavitation events and erosion of the sonicator surface can be overcome by application of a dual frequency acoustic field.
机译:已经尝试对双频声波处理器中的声压场和空化现象的空间分布进行建模。已经提出了一种具有数值模拟的方法,以优化双频声场的条件。在这项工作中提出的模拟表明,通过控制双频声场的参数(即两个声波的频率比和压力振幅比以及两个波之间的相位差),可以控制声处理机中气蚀事件的模式(稳定或瞬态)和空间分布。已经表明,通过应用双频声场,可以克服声波反应器的两个主要缺点,即空化事件的方向敏感性和声波发生器表面的腐蚀。

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