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Numerical study of frequency mixing in a focused ultrasonic field in bubbly liquids from a dual-frequency spherical source

机译:来自双频球形源的气泡状液体在聚焦超声场中混频的数值研究

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The aim of this work is to study the nonlinear frequency mixing that comes out in the focus region in a bubbly liquid when a spherical transducer emits a dual-frequency ultrasonic wave of finite amplitude in a three-dimensional open domain with axial symmetry. The nonlinear interaction between the acoustic field and the bubble vibrations is modeled through a coupled differential system formed by the wave equation and a Rayleigh-Plesset equation. Simulations are performed by means of an ad-hoc numerical model developed on the basis of multi-dimensional finite-volume and finite-difference techniques. Results show the nonlinear response of the system by showing the space distribution of the fundamental and harmonics for a single-frequency excitation (for which a convergence study is also carried out) and the space distribution of the difference and sum-frequency components for a two-frequency excitation. In the former case a law is proposed for the evolution of each one of the second and third harmonics vs. amplitude. In the latter configuration a law is proposed for the evolution of each one of the difference and sum frequencies vs. amplitude. This work suggests that the combination of two frequencies emitted from a spherical transducer can allow the enhancement of the generation of the difference and sum-frequencies in a restricted volume of the bubbly liquid. This could be used to control the amplitude and space extent of these frequency components by modifying the shape of the spherical transducer, the primary frequencies, and the pressure amplitude. Our results can be useful for industrial and medical processes based on nonlinear frequency mixing.
机译:这项工作的目的是研究当球形换能器在具有轴向对称性的三维开放域中发射有限振幅的双频超声波时,在气泡状液体的焦点区域中出现的非线性混频。声波与气泡振动之间的非线性相互作用是通过由波动方程和Rayleigh-Plesset方程形成的耦合微分系统建模的。通过基于多维有限体积和有限差分技术开发的临时数值模型进行仿真。结果显示了系统的非线性响应,方法是显示单频激励(也进行了收敛研究)的基波和谐波的空间分布,以及两个时差和和频率分量的空间分布。频率激励。在前一种情况下,提出了关于二次谐波和三次谐波相对于幅度的演变的定律。在后一种配置中,提出了一个定律,用于差分和和频率与幅度之间的关系演变。这项工作表明,从球形换能器发射的两个频率的组合可以在有限体积的气泡状液体中增强差值和和频率的产生。通过修改球形换能器的形状,主频率和压力幅度,可以将其用于控制​​这些频率分量的幅度和空间范围。我们的结果对于基于非线性混频的工业和医学过程很有用。

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