首页> 外文会议>ASME Fluids Engineering Division Meeting >COMPUTATIONAL FLUID DYNAMICS STUDY ON THE EFFECT OF INLET MODIFICATIONS OF GAS-LIQUID CYLINDRICAL CYCLONE (GLCC) COMPACT SEPARATORS
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COMPUTATIONAL FLUID DYNAMICS STUDY ON THE EFFECT OF INLET MODIFICATIONS OF GAS-LIQUID CYLINDRICAL CYCLONE (GLCC) COMPACT SEPARATORS

机译:燃气液圆柱旋风分离器(GLCC)紧凑型分离器入口改性效果的计算流体动力学研究

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The Gas-Liquid Cylindrical Cyclone (GLCC) is a simple, compact and low-cost separator, which provides an economically attractive alternative to conventional gravity based separators over a wide range of applications. More than 6,500 GLCC's have been installed in the field to date around the world over the past 2 decades. The GLCC inlet section design is a key parameter, which is crucial for its performance and proper operation. The flow behavior in the GLCC body is highly dependent on the fluid velocities generated at the reduced area nozzle inlet. An earlier study (Kolla et al. [4]) recommended design modifications to the inlet section, based on safety and structural robustness. It is important to ensure that these proposed configuration modifications do not adversely affect the flow behavior at the inlet and the overall performance of the GLCC. This study is carried out for a specific GLCC field application, separating light oil, steam flooded wells in Minas, Indonesia. Computational Fluid Dynamics (CFD) software is used to analyze the hydrodynamics of flow with the proposed modifications of the inlet section for GLCC field applications.
机译:气液圆柱旋风器(GLCC)是一种简单,紧凑且低成本的分离器,其在广泛的应用中提供了经济上具有传统重力的分离器的替代方案。在过去的二十年中,在全球范围内安装了超过6,500只GLCC的领域。 GLCC入口部分设计是一个关键参数,这对于其性能和正常操作至关重要。 GLCC体中的流动性能高度依赖于在减小的区域喷嘴入口处产生的流体速度。早期的研究(Kolla等人[4])根据安全性和结构稳健性推荐对入口部分的设计修改。重要的是要确保这些所提出的配置修改不会对入口处的流动性和GLCC的整体性能产生不利影响。本研究进行了针对特定的GLCC现场应用,分离轻油,蒸汽淹没在Minas,Indonesia。计算流体动力学(CFD)软件用于分析流动流体动力学,利用GLCC现场应用的入口部分的建议修改。

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