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首页> 外文期刊>Journal of Petroleum Science & Engineering >Three-phase Eulerian computational fluid dynamics of air-water-oil separator under off-shore operation
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Three-phase Eulerian computational fluid dynamics of air-water-oil separator under off-shore operation

机译:近岸手术下的空水 - 油分离器的三相欧拉计算流体动力学

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摘要

A three-phase transient Eulerian computational fluid dynamics (CFD) model was developed to investigate the effect of three angular motions (rolling, yawing, and pitching) on the separation efficiency of an air-water-oil separator. The horizontal cylindrical separator included a feed inlet, a gravity separation zone with a coalescer for water and oil separation, and a mist elimination zone. The CFD model consisted of the continuity, momentum, and standard k-epsilon turbulence equations. The CFD equations were solved in a moving reference frame to take into account the angular motions. The exit pressures at the water and oil outlets were controlled using a user-defined function since the CFD model without pressure control resulted in backflow from the water outlet, which was not realistic. CFD cases, such as no motion, rolling, yawing, 2 degrees pitching, and 4 degrees pitching with a period of 8 s were simulated with exit pressure control. The angular motions with pressure control showed a stable cyclic behavior with a high oil separation efficiency. However, the 4 degrees pitching motion decreased the oil recovery to 93% with 77% water purity at the water outlet.
机译:开发了一种三相瞬态欧拉计算流体动力学(CFD)模型,以研究三个角运动(轧制,偏航和俯仰)对空水 - 油分离器的分离效率的影响。水平圆柱形分离器包括进料入口,重力分离区,用于水和油分离的聚结器,以及雾消除区。 CFD模型包括连续性,动量和标准K-epsilon湍流方程。在移动参考框架中解决了CFD方程,以考虑角度动作。使用用户定义的功能来控制水和油出口处的出口压力,因为没有压力控制的CFD模型导致来自水出口的回流,这不逼真。 CFD病例,例如没有运动,滚动,偏航,2度俯仰和4度,通过退出压力控制模拟了8秒的时间。具有压力控制的角度动作显示出具有高油分离效率的稳定循环行为。然而,4度的俯仰运动将油回收率降低至93%,在水出口处具有77%的水纯度。

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