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Design and Computational Fluid Dynamics Analysis of a Three-Phase Decanter Centrifuge for Oil-Water-Solid Separation

机译:油水固体分离三相滗析器离心机的设计与计算流体动力学分析

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摘要

The separation of oil, water, and sand has always been a significant problem in the treatment of oily sludge in oil field and petroleum refinery. The flow field and separation performance in a new three-phase decanter centrifuge with vertical boards and annular liquid separation plate for oil-water-solids separation were investigated, using the computational fluid dynamics (CFD) software Fluent with Euler-Euler three-phase flow model, which provides a basis for the improvement and optimization of the centrifuge. After calculation, the velocity and pressure field were analyzed. The increase of solids content of the feed affected the separation efficiency regularly, and high or low treatment capacity also had a certain impact on the separation efficiency.
机译:油,水和沙子的分离始终是油田和石油炼油厂油性污泥的一个重要问题。 采用欧拉 - 欧拉三相流通的计算流体动力学(CFD)软件,研究了具有用于油固体分离的垂直板和环形液体分离板的新三相倾析聚乙烯离心机中的流场和分离性能。 模型,为离心机的改进和优化提供了基础。 计算后,分析了速度和压力场。 饲料固体含量的增加定期影响分离效率,并且高或低处理能力也对分离效率产生了一定的影响。

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