Advanced Production Separator for Crude Oil Production in Thailand

K. Sonthipermpoon, Kwanchai Kaitong, Wikorn Punyain, Y. Phuphuak, Somchai Kongnoo
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Abstract

. The propos is a new design and development of an advanced separator for oil production in Thailand on a prototype scale to order to avoid deposition of sand contaminated include oil production. The novel separator was designed by installing a series of impellers along the horizontal bottom of the separator. The system was successfully implemented on the laboratory scale. A computational fluid dynamics (CFDs) model is employed to investigate the 3D hydrodynamics and flow behavior inside the separator tank modified with impellers. The CFD simulation was operated for 300 min. It could fundamentally demonstrate the flow phenomena of the crude fluids that the sand flowing out from the separator through the water outlet part depends on the accumulation of sand packing bed near the open channel of the outlet and including the effect of impeller rotation. It also shows the wave pattern of the sand outlet and the movement of the impeller did not disturb the efficiency of oil-water phase separation. In the laboratory experiments, the optimum conditions for sand separation in the water outlet part were investigated in terms of impeller sizes, the rotational speed of impellers, and the effect of duration times. The impeller sizes were compared between 3 inches and 5 inches in diameter. The results show that 5 inch-impeller is the optimum size for preventing the sand packing in this system. It was found that 200 rpm gave the most powerful speed of rotation to remove sand to the open channel. From all over the results of the CFD simulation and lab experiment, it could be concluded that the separator system with a strong rotation of impellers leads to effectively prevent sand sedimentation in the separator.
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泰国原油生产的先进生产分离器
. 该提案是一种新的设计和开发的先进分离器,用于泰国的石油生产,其原型规模是为了避免砂的沉积污染包括石油生产。通过在分离器的水平底部安装一系列叶轮来设计新型分离器。该系统已成功地在实验室规模上实施。采用计算流体力学(cfd)模型研究了叶轮改造后的分离器槽内的三维流体力学和流动特性。CFD模拟运行了300 min,可以从根本上展示出原油流体的流动现象,即从分离器流出的砂粒依赖于砂粒填料床在出口明道附近的堆积,并包括叶轮旋转的影响。结果表明,出砂口的波型和叶轮的运动不影响油水相分离的效率。在室内试验中,从叶轮尺寸、叶轮转速和持续时间的影响等方面考察了出水段分离砂的最佳条件。叶轮尺寸在直径3英寸和5英寸之间进行了比较。结果表明,5英寸叶轮是该系统防止砂塞的最佳尺寸。结果发现,200 rpm的转速是将砂粒清除到明渠的最有力转速。从CFD模拟和室内实验的结果可以看出,具有强叶轮旋转的分离器系统可以有效地防止分离器内的泥沙沉积。
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0.00%
发文量
13
审稿时长
20 weeks
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