Finite amplitude wave propagation through bubbly fluids

IF 3.6 2区 工程技术 Q1 MECHANICS
Siew-Wan Ohl , Juan Manuel Rosselló , Daniel Fuster , Claus-Dieter Ohl
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引用次数: 0

Abstract

The existence of only a few bubbles could drastically reduce the acoustic wave speed in a liquid. Wood’s equation models the linear sound speed, while the speed of an ideal shock waves is derived as a function of the pressure ratio across the shock. The common finite amplitude waves lie, however, in between these limits. We show that in a bubbly medium, the high frequency components of finite amplitude waves are attenuated and dissipate quickly, but a low frequency part remains. This wave is then transmitted by the collapse of the bubbles and its speed decreases with increasing void fraction. We demonstrate that the linear and the shock wave regimes can be smoothly connected through a Mach number based on the collapse velocity of the bubbles.

Abstract Image

有限振幅波在气泡流体中的传播
仅存在几个气泡就会大大降低液体中的声波速度。伍德方程模拟的是线性声速,而理想冲击波的速度则是通过冲击波上的压力比得出的。然而,常见的有限振幅波介于这两个极限之间。我们的研究表明,在气泡介质中,有限振幅波的高频成分会迅速衰减和消散,但低频部分会保留下来。这种波通过气泡的坍塌传播,其速度随着空隙率的增加而降低。我们证明,通过基于气泡塌缩速度的马赫数,可以将线性波和冲击波平稳地连接起来。
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来源期刊
CiteScore
7.30
自引率
10.50%
发文量
244
审稿时长
4 months
期刊介绍: The International Journal of Multiphase Flow publishes analytical, numerical and experimental articles of lasting interest. The scope of the journal includes all aspects of mass, momentum and energy exchange phenomena among different phases such as occur in disperse flows, gas–liquid and liquid–liquid flows, flows in porous media, boiling, granular flows and others. The journal publishes full papers, brief communications and conference announcements.
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