Laboratorio de Cavitacion y Biotecnologia, Instituto Balseiro-CAB-CONICET, R8402AGP Av Bustillo Km 9,5 San Carlos de Bariloche-Rio Negro, Argentina.
J Acoust Soc Am. 2010 Jan;127(1):186-97. doi: 10.1121/1.3257208.
The acoustic field in the liquid within a spherical solid shell is calculated. The proposed model takes into account Stoke's wave equation in the viscous fluid, the membrane theory to describe the solid shell motion and the energy loss through the external couplings of the system. A point source at the resonator center is included to reproduce the acoustic emission of a sonoluminescence bubble. Particular calculations of the resulting acoustic field are performed for viscous liquids of interest in single bubble sonoluminescence. The model reveals that in case of radially symmetric modes of low frequency, the quality factor is mainly determined by the acoustic energy flowing through the mechanical coupling of the resonator. Alternatively, for high frequency modes the quality factor is mainly determined by the viscous dissipation in the liquid. Furthermore, the interaction between the bubble acoustic emission and the resonator modes is analyzed. It was found that the bubble acoustic emission produces local maxima in the resonator response. The calculated amplitudes and relative phases of the harmonics constituting the bubble acoustic environment can be used to improve multi-frequency driving in sonoluminescence.
计算了球形固体壳内液体中的声场。所提出的模型考虑了粘性流体中的 Stokes 波方程、描述固体壳运动的膜理论以及通过系统外部耦合的能量损失。在谐振器中心包含一个点源,以再现声致发光泡的声发射。针对单泡声致发光中感兴趣的粘性液体,对所得声场进行了特定的计算。该模型表明,在低频的径向对称模式中,品质因数主要由通过谐振器机械耦合流动的声能决定。相反,对于高频模式,品质因数主要由液体中的粘性耗散决定。此外,还分析了气泡声发射与谐振器模式之间的相互作用。结果发现,气泡声发射在谐振器响应中产生局部最大值。构成气泡声环境的谐波的计算幅度和相对相位可用于改善声致发光中的多频驱动。