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BUBBLE BREAKUP AND COALESCENCE MODELLING FOR SUBSEA GAS RELEASES USING COMPUTATIONAL FLUID DYNAMICS

机译:利用计算流体动力学对气态气体释放的气泡破裂和共性建模

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Bubble breakup and coalescence is a phenomenon which occurs within a developing subsea gas plume. A Computational Fluid Dynamics (CFD) model incorporating bubble breakup and coalescence was developed to describe the behaviour of a subsea gas release and the subsequent rising gas plume. The model was assessed for its suitability in capturing the characteristic behaviour of a rising gas plume by comparing the CFD results with experimental data obtained from underwater gas release experiments. The study shows bubble breakup and coalescence plays a key role in determining the shape and the behaviour of a subsea gas release. Without the bubble breakup and coalescence included in the CFD model a narrower plume width and higher rising velocity is observed when compared to the experimental data. With bubble breakup and coalescence included the results obtained from the CFD model more accurately match the experimental data. Breakup and coalescence is a mechanism which redistributes the energy within the core of the gas plume towards the edge of the plume. This has a significant impact on the plume characteristics and is vital to be included in the CFD model to describe the behaviour of the released gas. The study was carried out using air as the released gas. This was done to compare with the available experimental data where air was used as the source. However the CFD model developed is applicable for hydrocarbon subsea gas releases.
机译:气泡破裂和聚结是在正在发展的海底天然气羽流中发生的现象。建立了包含气泡破裂和聚结的计算流体动力学(CFD)模型,以描述海底天然气释放的行为以及随后上升的烟羽。通过将CFD结果与从水下气体释放实验获得的实验数据进行比较,评估了该模型在捕获上升的气体羽流特征行为方面的适用性。研究表明,气泡破裂和聚结在确定海底气体释放的形状和行为方面起着关键作用。与实验数据相比,在CFD模型中不包含气泡破裂和聚结的情况下,观察到的羽宽更窄,上升速度更高。在气泡破裂和合并的情况下,从CFD模型获得的结果与实验数据更准确地匹配。破裂和聚结是一种机制,可将气体羽流核心内的能量重新分配到羽流边缘。这对羽流特性具有重大影响,因此至关重要的是要包含在CFD模型中以描述释放出的气体的行为。该研究是使用空气作为释放的气体进行的。这样做是为了与以空气为来源的可用实验数据进行比较。但是,开发的CFD模型适用于碳氢化合物海底气体释放。

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