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首页> 外文期刊>Journal of Petroleum Science Research >Subsea-to-surface Oil Transport in an Ambient Pressure Seawater Duct Applied fluid dynamics of a buoyancy guide for oil spill recovery
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Subsea-to-surface Oil Transport in an Ambient Pressure Seawater Duct Applied fluid dynamics of a buoyancy guide for oil spill recovery

机译:在常压海水管道中进行海底到地面的输油浮力引导的流体动力学用于漏油的回收

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摘要

An applied fluid dynamics analysis is presented of oil droplets rising through an ambient-pressure subsea pipe or duct, which we describe as a buoyancy guide. This is applied to a novel method of subsea oil spill recovery from a broken subsea choke under ambient pressure at depth. We use a conventional Newtonian analysis to provide a first approximation of the buoyancy of oil droplets through this guide. We optimize a configuration with respect to the fluid dynamics of this system in order to optimise the mass transport of the oil droplets, and then propose a sample application. We find that a collection of narrower ducts is more efficient than one wide duct to deliver droplets of oil to the surface under their own buoyancy.
机译:对通过环境压力海底管道或管道上升的油滴进行了应用的流体动力学分析,我们将其描述为浮力指南。这被应用于一种新的海底溢油回收方法,该方法是在深度大气压下从破裂的海底节流阀中回收海底溢油。通过本指南,我们使用常规的牛顿分析来提供油滴浮力的第一近似值。我们针对该系统的流体动力学优化配置,以优化油滴的质量传输,然后提出示例应用程序。我们发现,较窄的导管集合比一个较宽的导管在其自身的浮力作用下将油滴传递至表面的效率更高。

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