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Rotating 2d point source plume models with application to Deepwater Horizon

机译:旋转2D点源羽流模型,应用于深水地平线

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Highlights?Multiphase rotating convection.?2d/3d comparisons.?Turbulence resolving models.?Deepwater Horizon.AbstractThe 2010 Deepwater Horizon (DwH) accident in the Gulf of Mexico has renewed oceanographic interest in point source buoyant convection. The present paper applies modern numerical techniques to study this problem, focussing specifically on the DwH event. The gas/oil/seawater nature of the problem requires a ‘multiphase’ approach, which is relatively unfamiliar in physical oceanography, although applications are becoming more common. The model is cast in an Eulerian framework and includes feedbacks between the convection and the environment, unlike past oil/gas plume simulations that adopt a semi-passive, Lagrangian approach. Fully three dimensional (3d) simulations are too computationally demanding for practical multi-day use, so a two-dimensional
机译:<![cdata [ 亮点 多相旋转对流。 2d / 3d比较。 湍流解析模型。 深水地平线。 抽象 2010深水地平线(DWH)墨西哥湾的事故已经更新了Inceportographic在点源浮力对流中的兴趣。本文适用现代数值技术来研究这个问题,专门针对DWH事件而聚焦。燃气/油/海水性质的问题需要“多相”方法,虽然应用变得越来越普遍,但在物理海洋学中相对陌生。该模型在Eulerian框架中展示,并包括对流与环境之间的反馈,与采用半被动,拉格朗日方法采用的过去的油/气体羽状模拟。完全三维(3D)模拟对于实际的多日使用来说太苛刻了,所以二维

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