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Applying CFD in the analysis of heavy oil - water two-phase flow in joints by using core annular flow technique

机译:CFD在岩心环形流技术分析接头中重油-水两相流中的应用。

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In the oil industry the multiphase flow occur throughout the production chain, from reservoir rock until separation units through the production column, risers and pipelines. During the whole process the fluid flows through the horizontal pipes, curves, connections and T joints. Today, technological and economic challenges facing the oil industry is related to heavy oil transportation due to its unfavourable characteristics such as high viscosity and high density that provokes high pressure drop along the flow. The core-flow technique consists in the injection of small amounts of water into the pipe to form a ring of water between the oil and the wall of the pipe which provides the reduction of friction pressure drop along the flow. This paper aim to model and simulate the transient two-phase flow (water-heavy oil) in a horizontal pipe and T joint by numerical simulation using the software ANSYS CFX~? Release 12.0. Results of pressure and volumetric fraction distribution inside the horizontal pipe and T joint are presented and analysed.
机译:在石油工业中,多相流贯穿整个生产链,从储层岩石到分离单元,再到生产塔,立管和管道。在整个过程中,流体流经水平管,曲线,连接件和T型接头。如今,石油工业面临的技术和经济挑战与重油运输有关,因为其不利的特性,例如高粘度和高密度,会引起沿流的高压降。核心流技术包括将少量水注入管道中,以在油和管道壁之间形成水环,从而降低沿流动方向的摩擦压降。本文旨在通过使用ANSYS CFX〜?软件进行数值模拟,对水平管和T型接头中的瞬态两相流(水基油)进行建模和模拟。 12.0版。给出并分析了水平管和T型接头内部的压力和体积分数分布的结果。

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