Hong Seongjin, Son Gihun
Department of Mechanical Engineering, Sogang University, 35 Baekbeom-ro, Mapo-gu, Seoul 04107, South Korea.
Department of Mechanical Engineering, Sogang University, 35 Baekbeom-ro, Mapo-gu, Seoul 04107, South Korea.
Ultrason Sonochem. 2022 Feb;83:105932. doi: 10.1016/j.ultsonch.2022.105932. Epub 2022 Jan 29.
Numerical modelling of acoustic cavitation threshold in water is presented taking into account non-condensable bubble nuclei, which are composed of water vapor and non-condensable air. The cavitation bubble growth and collapse dynamics are modeled by solving the Rayleigh-Plesset or Keller-Miksis equation, which is combined with the energy equations for both the bubble and liquid domains, and directly evaluating the phase-change rate from the liquid and bubble side temperature gradients. The present work focuses on elucidating acoustic cavitation in water with a wide range of cavitation thresholds (0.02-30 MPa) reported in the literature. Computations for different nucleus sizes and acoustic frequencies are performed to investigate their effects on bubble growth and cavitation threshold. The numerical predictions are observed to be comparable to the experimental data in the previous works and show that the cavitation threshold in water has a wide range depending on the bubble nucleus size.
本文提出了水中声空化阈值的数值模拟,其中考虑了由水蒸气和不可凝空气组成的不可凝气泡核。通过求解瑞利-普莱斯方程或凯勒-米克斯方程对空化气泡的生长和坍缩动力学进行建模,该方程与气泡和液体域的能量方程相结合,并根据液体和气泡侧的温度梯度直接评估相变速率。目前的工作重点是阐明水中的声空化现象,文献中报道了其具有广泛的空化阈值(0.02 - 30MPa)。针对不同的核尺寸和声频率进行了计算,以研究它们对气泡生长和空化阈值的影响。数值预测结果与先前工作中的实验数据具有可比性,表明水中的空化阈值因气泡核尺寸而异,范围很广。