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Study of the swirling flow field induced by guide vanes using electrical resistance tomography and numerical simulations

机译:采用电阻断层扫描和数值模拟引导叶片引起的旋流流场研究

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In this work, the swirling flow field induced by guide vanes was studied using electrical resistance tomography (ERT) and numerical simulations. The results show that the two-phase water and oil mixture moves in the same axial direction for this type of flow field, which is very unlike the flow behavior of a traditional hydrocyclone with a tangential inlet. In the pipe behind the guide vanes, the smallest axial velocity and tangential velocity are located at the center of the pipe. From the pipe center to the pipe wall, both pressure and velocity increase gradually. Downstream of guide vanes, the maximal oil volume fraction is observed at the center of the pipe. From the center of the pipe to the inner wall, the oil volume fraction gradually decreases. Moreover, ERT can precisely show the oil distribution in the pipe section. These studies prove the possibility of efficient oil and water mixture separation by guide vanes, and the results may be very important for guiding the optimal design of vane-type pipe separators.
机译:在这项工作中,使用电阻断层扫描(ERT)和数值模拟研究了由导叶片引起的旋流流场。结果表明,两相水和油混合物在这种类型的流场中沿相同的轴向方向移动,这与传统氢旋旋器的流动行为与切向入口不同。在导叶背后的管道中,最小的轴向速度和切向速度位于管道的中心。从管道中心到管壁,两个压力和速度逐渐增加。在导向叶片的下游,在管道的中心观察到最大油体积分数。从管道的中心到内壁,油体积分数逐渐降低。此外,ERT可以精确地显示管道部分的油分布。这些研究证明了通过导向叶片分离有效的油和水混合物的可能性,结果对于引导叶片式管道分离器的最佳设计可能非常重要。

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