Tiong T Joyce, Chu Jin Kiat, Tan Khang Wei
Department of Chemical and Environmental Engineering, University of Nottingham Malaysia, Jalan Broga, 43500 Semenyih, Selangor, Malaysia.
Department of Chemical and Environmental Engineering, University of Nottingham Malaysia, Jalan Broga, 43500 Semenyih, Selangor, Malaysia.
Ultrason Sonochem. 2025 Jan;112:107163. doi: 10.1016/j.ultsonch.2024.107163. Epub 2024 Nov 19.
This review provides a comprehensive overview of ultrasonic wave propagation, with a primary focus on high-power ultrasound systems where cavitation bubbles are likely to occur. The review is structured to guide readers through the historical development of cavitation models, from early works such as the Rayleigh-Plesset equation to more advanced numerical approaches. It explores the dynamics of cavitation bubbles, their physical effects, and the key factors influencing bubble formation, growth, and collapse. In addition to bubble-induced cavitation, the review addresses nonlinear wave propagation in the absence of bubbles, highlighting phenomena such as harmonic generation and shock wave formation. A detailed discussion on the numerical modelling of ultrasonic systems follows, covering linear and nonlinear approaches, boundary conditions, and the challenges of accurately simulating cavitating systems. The review concludes with an analysis of recent developments, emerging trends, and future directions in computational modelling for ultrasonic applications. By presenting a structured overview of both the theoretical and practical aspects of ultrasonic wave propagation, this work aims to provide a foundation for future research and design improvements in sonochemical and acoustic systems.
本综述全面概述了超声波传播,主要聚焦于可能产生空化气泡的高功率超声系统。综述的结构旨在引导读者了解空化模型的历史发展,从诸如瑞利 - 普列赛特方程等早期工作到更先进的数值方法。它探讨了空化气泡的动力学、其物理效应以及影响气泡形成、生长和崩溃的关键因素。除了气泡引发的空化外,综述还讨论了无气泡情况下的非线性波传播,突出了诸如谐波产生和冲击波形成等现象。随后详细讨论了超声系统的数值建模,涵盖线性和非线性方法、边界条件以及精确模拟空化系统的挑战。综述最后分析了超声应用计算建模的最新进展、新兴趋势和未来方向。通过对超声波传播的理论和实际方面进行结构化概述,这项工作旨在为声化学和声系统的未来研究和设计改进提供基础。