论文标题

圆柱体上环形气泡的动力学,并应用地球物理勘探

Dynamics of a toroidal bubble on a cylinder surface with an application to geophysical exploration

论文作者

Li, Shuai, Prosperetti, Andrea, van der Meer, Devaraj

论文摘要

在地震气枪源的运行过程中,从气枪室释放了一定数量的压缩高压空气到周围的水中,从而产生了附着在气枪体内的膨胀环形气泡。气泡的随后振荡产生了低频压力波,用于绘制海洋子底座,例如定位石油和天然气储量。气泡动态行为和发射压力波不可避免地受气枪体型的影响。但是,泡沫 - 枪体的相互作用远非众所周知。本文通过数百个边界积分模拟研究了长缸和附着的环形气泡之间的强烈相互作用,旨在为气枪泡动力学提供新的物理见解。首先,讨论了总体物理现象,并确定了三种类型的气泡塌陷模式,即(i)由于重力而引起的(i)向上喷射,(ii)环形射流朝向缸体,(iii)弱/无射流。此后,我们研究了气缸半径,初始气泡压力和弗洛德数对气泡振荡周期以及气泡诱导的压力波的影响。最后,讨论了圆柱体对塞尔塞尔型气枪泡的影响,并特别关注压力波的光谱。

During the operation of a seismic airgun source, a certain amount of compressed high-pressure air is released from the airgun chamber into the surrounding water, generating an expanding toroidal bubble attached to the airgun-body. The subsequent oscillations of the bubble generate low-frequency pressure waves, which are used to map the ocean subbottom, e.g., to locate oil and gas reserves. The bubble dynamic behavior and the emitted pressure waves are inevitably influenced by the airgun-body. However, the bubble-airgun-body interaction is far from well understood. This paper investigates the strong interaction between a long cylinder and an attached toroidal bubble via hundreds of boundary integral simulations, aiming to provide new physical insights for airgun-bubble dynamics. Firstly, the overall physical phenomena are discussed and three types of bubble collapse patterns are identified, namely (i) upward jetting due to gravity, (ii) annular jet toward the cylinder body and (iii) weak/no jet. Thereafter, we investigate the effects of the cylinder radius, initial bubble pressure and Froude number on the bubble oscillation period and the pressure wave induced by the bubble. At last, the impact of a cylinder on a Sercel type airgun-bubble is discussed with a particular focus on the spectrum of the pressure waves.

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