首页> 外文会议>36th International conference on ocean, offshore and arctic engineering 2016 >CFD MODELING OF SUBSEA GAS RELEASES USING AN IMPROVED BUBBLE DRAG LAW
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CFD MODELING OF SUBSEA GAS RELEASES USING AN IMPROVED BUBBLE DRAG LAW

机译:改进的起泡法则对天然气释放量的CFD建模

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A subsea gas leakage from pipelines, risers, gas transport pipelines or blowouts from oil and gas wells forms dispersion of gas as it rises to the surface. Accidental subsea gas release scenarios of hydrocarbons pose a significant risk for the safety and integrity of offshore production or drilling units. With recent advancements in technology, the number of subsea installations and pipelines increases substantially at larger water depths. For the large depths, it is crucial to understand the quantitative impact of the gas release as the classical integral bubble plume models fail to predict gas flux and gas distribution through the ocean surface and the resulting surface flows. A quantitative multiphase computational fluid dynamics (CFD) model can be implemented to simulate large scale bubble plumes by tracking bubbles and free surface in a Eulerian-Lagrangian fashion. In this paper, the coupled discrete phase (DPM) and volume of fluid (VOF) multiphase modeling approach has been utilized for modeling subsea gas releases. This study evaluates an improved drag law for gas-liquid two phase bubbly flow based on consideration of bubble deformation. The model successfully predicts a wide range of experimental measurements at model scale and is also applied to gas release at large ocean depths to study the validity of the model for realistic scenarios.
机译:管道,立管,输气管道的海底天然气泄漏或油气井的井喷形成的气体在上升到地面时会分散。碳氢化合物的意外海底气体释放场景对海上生产或钻井装置的安全性和完整性构成了重大风险。随着技术的最新发展,在更大的水深处,海底设施和管道的数量大大增加。对于大深度,至关重要的是要了解气体释放的定量影响,因为经典的整体气泡羽流模型无法预测通过海洋表面的气体通量和气体分布以及由此产生的表面流。可以采用定量多相计算流体动力学(CFD)模型,通过以欧拉-拉格朗日方式跟踪气泡和自由表面来模拟大规模气泡羽流。在本文中,耦合的离散相(DPM)和流体体积(VOF)多相建模方法已被用于对海底天然气释放进行建模。这项研究基于气泡变形来评估气液两相气泡流的改进阻力定律。该模型成功地预测了模型规模上的各种实验测量值,并且还应用于大洋深处的气体释放,以研究该模型在现实情况下的有效性。

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