论文标题

建模具有高度非球形特征的大规模气枪泡动力学

Modelling large scale airgun-bubble dynamics with highly non-spherical features

论文作者

Li, Shuai, van der Meer, Devaraj, Zhang, A-Man, Prosperetti, Andrea, Lohse, Detlef

论文摘要

对仪表大小的气枪泡的动力学的透彻理解对于海底地球物理探索至关重要。在这项研究中,我们使用边界积分方法研究高度非球场气枪泡动力学及其相应的压力波发射。此外,提出了一个模型,还考虑了从气枪端口释放空气的过程,这是估计压力波的初始峰的最关键因素。数值模拟在非球体气泡形状和压力波方面与实验表现出良好的一致性。此后,对端口开放时间$ t \ rm_ {open} $,气枪射击深度,传热和重力的影响进行了数值研究。我们发现,较小的$ t \ rm_ {open} $导致更暴力的空气释放,从而导致更强的高频压力波排放;但是,低频压力波很少受到影响。此外,非球体气泡动力学高度取决于Froude Number $ fr $。从$ fr = 2 $开始,随着$ fr $的增加,射流含有较低的动能,从而导致气泡塌陷的能量更强,从而在气泡塌陷阶段增加了更大的压力峰。对于$ fr \ ge 7 $,球形泡沫理论成为对气枪泡的适当描述。这项研究的新发现可能会在不久的将来为实用操作和设计环保的气枪提供参考。

A thorough understanding of the dynamics of meter-sized airgun-bubbles is very crucial to seabed geophysical exploration. In this study, we use the boundary integral method to investigate the highly non-spherical airgun-bubble dynamics and its corresponding pressure wave emission. Moreover, a model is proposed to also consider the process of air release from the airgun port, which is found to be the most crucial factor to estimate the initial peak of the pressure wave. The numerical simulations show good agreement with experiments, in terms of non-spherical bubble shapes and pressure waves. Thereafter, the effects of the port opening time $T\rm_{open}$, airgun firing depth, heat transfer, and gravity are numerically investigated. We find that a smaller $T\rm_{open}$ leads to a more violent air release that consequently causes stronger high-frequency pressure wave emissions; however, the low-frequency pressure waves are little affected. Additionally, the non-spherical bubble dynamics is highly dependent on the Froude number $Fr$. Starting from $Fr=2$, as $Fr$ increases, the jet contains lower kinetic energy, resulting in a stronger energy focusing of the bubble collapse itself and thus a larger pressure peak during the bubble collapse phase. For $Fr \ge 7$, the spherical bubble theory becomes an appropriate description of the airgun-bubble. The new findings of this study may provide a reference for practical operations and designing environmentally friendly airguns in the near future.

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