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Computational Fluid Dynamics-Based Study of an Oilfield Separator-Part II: An Optimum Design

机译:基于计算流体动力学的油田分离器研究-第二部分:优化设计

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This paper provides details of comprehensive computational-fluid-dynamics (CFD) -based studies performed to overcome the separation inefficiencies experienced in a large-scale three-phase separator. It will be shown that the classic design methods are too conservative and would result in oversized separators. In this study, effective CFD models are developed to estimate the phase-separation parameters that are integrated into an algorithmic design method to specify a realistic optimum separator. The CFD simulations indicated that noticeable residence times are required for liquid droplets to penetrate through the interfaces, and liquid droplets would be entrained again from the liquid/liquid-interface vicinity by the continuous liquid phase.
机译:本文详细介绍了基于综合计算流体动力学(CFD)的研究,以克服大型三相分离器中的分离效率低下的问题。结果表明,经典的设计方法过于保守,会导致分离器尺寸过大。在这项研究中,开发了有效的CFD模型来估计相分离参数,这些参数已集成到用于指定实际最佳分离器的算法设计方法中。 CFD模拟表明,液滴穿过界面需要显着的停留时间,并且液滴将通过连续液相再次从液/液界面附近夹带。

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