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Simulation of air gun bubble motion in the presence of air gun body based on the finite volume method

机译:基于有限体积法的气枪体存在仿真气枪泡沫运动

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Air guns are widely used as artificial seismic sources in the exploration of seabed resources. The pressure wave emitted from an air gun reflects from different seabed media, and the reflected wave carries basic information about the seabed structure, which is useful for determining the location and burial depth of resources. This paper presents a compressible air gun bubble model implemented in OpenFOAM and considers the influence of the gun body structure. The bubble pulsation of air guns under different boundary conditions is investigated using the finite volume method (FVM) combined with the volume of fluid method (VOF). We analyze how the opening height, opening position, and air gun length affect fluid pressure. The results show that, when the opening position is below the middle of the air gun, the primary pulse decreases due to a decrease in the mass-transfer rate, and the weakened boundary effect reduces the period and bubble pulse of the pressure wave. Increasing the opening height of the air gun increases the main pulse and bubble pulse, which facilitates the gas motion from the chamber of the air gun to the bubble. When the maximum radius R-m of the bubble is shorter than the length L of the gun body, the gun body has negligible influence on the pressure wave, but in the opposite case, the breakup of the bubble consumes part of the energy, which slightly decreases the bubble pulse.
机译:空气枪在海底资源勘探中广泛用作人工地震源。从空气枪发出的压力波从不同的海底介质反射,并且反射波带有关于海底结构的基本信息,这对于确定资源的位置和埋藏深度是有用的。本文介绍了在OpenFoam中实施的可压缩空气枪泡沫模型,并考虑了枪体结构的影响。使用有限体积法(FVM)与流体方法(VOF)的体积相结合,研究了在不同边界条件下的气枪的气泡脉动。我们分析了开口高度,打开位置和空气枪长度如何影响液体压力。结果表明,当打开位置低于气枪的中间时,由于传质速率的降低,初级脉冲减小,并且弱化边界效应会降低压力波的周期和气泡脉冲。增加气枪的开口高度增加了主脉冲和气泡脉冲,这使得从气枪的腔室到气泡的气体运动。当气泡的最大半径Rm短于枪体的长度L时,枪体对压力波的影响可忽略不计,但在相反的情况下,泡沫的分裂消耗了部分能量,这略微降低气泡脉冲。

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