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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Propagation of acoustic waves in a visco-elastic two-phase system: influences of the liquid viscosity and the internal diffusion
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Propagation of acoustic waves in a visco-elastic two-phase system: influences of the liquid viscosity and the internal diffusion

机译:声弹性在粘弹性两相系统中的传播:液体粘度和内部扩散的影响

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The main purpose of the present paper is to present the mathematical expression for the frequency-dependent effective acoustic properties of a liquid-bubble mixture. Effects of the bubble resonance, the heat and mass transfer between the liquid and bubbles, and the viscoelasticity of the liquid are included in the expression. Several characteristic frequencies associated with these internal processes are represented by simple functions of the material and condition parameters. Using these expressions, the acoustic properties of bubbly magmas are calculated and analyzed. It is shown that the dispersion and attenuation of the pressure wave are particularly considerable in the frequency range lower than the characteristic frequency of the mass transfer and in the range near the characteristic frequency of the viscous response of the bubble radius. In the frequency range bounded by these two frequencies, the bubbly magma can be regarded as an elastic medium with the slow sound speed. The significance of such acoustic properties on resonance of a body of bubbly magma is demonstrated in a simple one-dimensional system.
机译:本文的主要目的是提出一种关于气泡混合物的频率相关有效声学特性的数学表达式。表达式中包括气泡共振,液体与气泡之间的传热和传质以及液体的粘弹性的影响。与这些内部过程相关的几个特征频率由材料和条件参数的简单函数表示。使用这些表达式,可以计算和分析气泡状岩浆的声学特性。可以看出,在低于传质特征频率的频率范围内以及在气泡半径的粘性响应的特征频率附近的范围内,压力波的分散和衰减特别明显。在这两个频率所限定的频率范围内,起泡的岩浆可视为声速较慢的弹性介质。在简单的一维系统中证明了这种声学特性对气泡状岩浆体共振的重要性。

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