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关于单频和双频声化学反应器中超声波与气泡云之间的相互作用

On the interaction between ultrasound waves and bubble clouds in mono- and dual-frequency sonoreactors.

作者信息

Servant G, Laborde J L, Hita A, Caltagirone J P, Gérard A

机构信息

EDF R&D, Avenue des Renardières--Ecuelles, 77818 Moret-sur-Loing Cedex, France.

出版信息

Ultrason Sonochem. 2003 Oct;10(6):347-55. doi: 10.1016/S1350-4177(03)00105-6.

Abstract

Since the last decades, extensive work have been done on the numerical modeling of mono-frequency sonoreactors, we here consider the modeling of dual-frequency sonoreactors. We first present the basic features of the CAMUS code (CAvitating Medium under UltraSound), for mono-frequency excitation. Computation at low, medium and high frequency are presented. Extension of the numerical tool CAMUS is also presented: Caflisch equations are modified to take into account the dual-frequency excitation of the sound. We consider 28-56, 28-100 and 28-200 kHz sonoreactors. Fields of cavitation bubble emergence are quite different from the ones under mono-frequency. Study of spatio-temporal dynamics of cavitation bubbles in a 28-56 kHz sonoreactor is also considered. Taking into account the pressure field induced by the dual-frequency wave propagation, we compute the Bjerknes force applied on the cavitation bubble that is responsible for the bubble migration. A two phase flow approach allows to compute the bubble migration.

摘要

在过去几十年里,人们对单频声化学反应器的数值模拟开展了大量工作,我们在此考虑双频声化学反应器的建模。我们首先介绍用于单频激励的CAMUS代码(超声作用下的空化介质)的基本特征。给出了低频、中频和高频的计算结果。还介绍了数值工具CAMUS的扩展:修改了Caflisch方程以考虑声音的双频激励。我们考虑了28 - 56千赫、28 - 100千赫和28 - 200千赫的声化学反应器。空化气泡出现的区域与单频情况下的区域有很大不同。还考虑了对28 - 56千赫声化学反应器中空化气泡的时空动力学研究。考虑到双频波传播引起的压力场,我们计算了作用在导致气泡迁移的空化气泡上的 Bjerknes 力。一种两相流方法可用于计算气泡迁移。

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