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MULTIPHASE FLOW ANALYSIS FOR AIR-WATER BUBBLY FLOW IN A MULTIPHASE PUMP

机译:多相泵中气泡水流的多相流分析

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Owing to the exhaustion of onshore resources, the development of resources has been expanded to the deep subsea. As the necessity of offshore plants is steadily increasing, there is an increasing interest in studying multiphase transportation technology. Multiphase pumps differ from single phase pumps in many ways, including performance evaluation, internal flow characteristics, and complex design methods. The primary issue of multiphase flow transport technology is that the characteristics of the internal flow change according to the gas volume fraction (GVF). Many theoretical and experimental analyses have been conducted to understand the mechanism of the internal flow field in multiphase pumps. As advanced computational fluid dynamics (CFD) based on the three-dimensional Reynolds-averaged Navier-Stokes (RANS) equations have become reliable tools, numerical analyses accompanied by experimental research have been applied to investigate the hydraulic performance and internal flow field of multiphase pumps. A number of studies have been conducted to investigate these phenomena. However, the understanding of the detailed mechanisms of phase separation and the forces that occur in the internal flow is not completely clear. This study aimed to establish a multiphase flow analysis method with high reliability when the internal flow of the multiphase pump is bubbly flow. To ensure the reliability of the numerical analysis, the numerical results were compared with the experimental data. Additionally, to analyze the detailed dynamic flow phenomena in the multiphase pump, the effects of various interphaase forces acting between the liquid and gas phase and the particle diameter of the gas phase on the hydraulic performance were investigated.
机译:由于陆上资源的枯竭,资源的开发已扩展到深海。随着离岸工厂的需求稳步增长,对多相运输技术的研究越来越引起人们的兴趣。多相泵在很多方面与单相泵不同,包括性能评估,内部流量特性和复杂的设计方法。多相流传输技术的主要问题是内部流的特性根据气体体积分数(GVF)而变化。为了了解多相泵内部流场的机理,已经进行了许多理论和实验分析。随着基于三维雷诺平均Navier-Stokes(RANS)方程的高级计算流体动力学(CFD)成为可靠的工具,数值分析和实验研究相结合已被用于研究多相泵的水力性能和内部流场。已经进行了许多研究以调查这些现象。但是,对相分离的详细机制和内部流动中产生的力的理解尚不完全清楚。本研究旨在建立一种当多相泵的内部流为气泡流时,具有高可靠性的多相流分析方法。为了确保数值分析的可靠性,将数值结果与实验数据进行了比较。此外,为了分析多相泵中的详细动态流动现象,研究了液相和气相之间各种相间力的作用以及气相的粒径对水力性能的影响。

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