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Development of a novel high-efficiency dynamic hydrocyclone for oil-water separation

机译:用于油水分离新型高效动态水力旋流器的开发

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A dynamic hydrocyclone (DH) is a high-efficiency separator, but the oil core dispersion phenomenon was observed when the split ratio was small in the experiment. The separated oil mixed with water again and the separation failed in that case. To overcome these deficiencies and improve the performance, a novel reverse-flow DH (RDH) was designed by the inspiration of conventional hydrocyclones. The performances of the DH and RDH were investigated both experimentally and numerically. The results showed that in RDH, air bubbles and oil droplets were discharged quickly from the oil outlet, and the influence of the interferences was diminished. Thus the oil core dispersion phenomenon was avoided, and separation performance was improved. The results of numerical simulations were largely consistent with the experimental results. Furthermore, the flow field analyses indicated that the residence times of the oil droplets in two DHs are similar, while the tangential velocity in the RDH was larger than that in the DH, which leads to a higher separation efficiency. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:动态水力旋流器(DH)是一种高效分离器,但是当实验中的分裂率小时,观察到油芯分散现象。分离的油再次与水混合,在这种情况下分离失败。为了克服这些缺陷并改善性能,通过常规氢旋流器的启发来设计一种新的反向流动DH(RDH)。 DH和RDH的性能在实验和数值上进行研究。结果表明,在RDH,气泡和油滴从油出口迅速排出,干扰的影响降低。因此,避免了油芯分散现象,改善了分离性能。数值模拟的结果在很大程度上与实验结果一致。此外,流场分析表明,两个DHS中的油滴的停留时间相似,而RDH中的切向速度大于DH中的切向速度,这导致更高的分离效率。 (c)2017年化学工程师机构。 elsevier b.v出版。保留所有权利。

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