Tejedor Sastre María Teresa, Louisnard Olivier, Vanhille Christian
NANLA, Universidad Rey Juan Carlos, Tulipán s/n 28933 Móstoles, Madrid, Spain.
Centre Rapsodee, UMR Centre National de la Recherche Scientifique 5302, IMT Mines Albi 81013 Albi CT, France.
Ultrason Sonochem. 2022 Aug;88:106068. doi: 10.1016/j.ultsonch.2022.106068. Epub 2022 Jun 17.
In this paper we study the generation and behavior of subharmonics in a bubbly liquid confined in an acoustic resonator, through numerical simulations carried out at finite-amplitude acoustic pressure. Several configurations in terms of resonator length and driving frequency are considered here. Our results show that these frequency components, created from a higher-frequency signal at the source (ultrasound), are due to the nonlinearity of the medium at high acoustic-pressure amplitude and to the configuration of the resonator (geometry and boundaries). We also show that they have an amplitude-threshold dependence, which is in concordance with the literature. The response of these subharmonics to different sequences of pressure amplitudes also reveals the hysteretic nature of the bubbly liquid.
在本文中,我们通过在有限振幅声压下进行的数值模拟,研究了封闭在声学谐振器中的气泡液体中亚谐波的产生和行为。这里考虑了几种关于谐振器长度和驱动频率的配置。我们的结果表明,这些由源处的高频信号(超声波)产生的频率成分,是由于高声压振幅下介质的非线性以及谐振器的配置(几何形状和边界)所致。我们还表明,它们具有振幅阈值依赖性,这与文献一致。这些亚谐波对不同压力振幅序列的响应也揭示了气泡液体的滞后特性。