首页> 外文会议>ASME Fluids Engineering Division summer meeting >FLOW PATTERN PREDICTION IN ELECTRICAL SUBMERSIBLE PUMP (ESP) UNDER GASSY FLOW CONDITIONS USING TRANSIENT MULTIPHASE CFD METHODS WITH VISUALIZATION EXPERIMENTAL VALIDATION
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FLOW PATTERN PREDICTION IN ELECTRICAL SUBMERSIBLE PUMP (ESP) UNDER GASSY FLOW CONDITIONS USING TRANSIENT MULTIPHASE CFD METHODS WITH VISUALIZATION EXPERIMENTAL VALIDATION

机译:瞬态多相CFD方法结合可视化实验验证的气态流量条件下电潜泵(ESP)流量模式预测

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This paper presents a numerical study of flow pattern recognition inside the rotating impeller of electrical submersible pump (ESP) using the transient multiphase CFD simulations. Based on the previous experimental facility for visualizing flow patterns in an ESP, the entire flow domain is constructed. The high-quality structured mesh comprising hexahedral grids is generated using multi-block technique in ANSYS ICEM. Mesh independence is confirmed by comparing numerical results with catalog curves. For transient two-phase simulation, the realized RNG k-e turbulence model with volume of fluid (VOF) and Eulerian multiphase models is successfully implemented in ANSYS Fluent solver. The sliding mesh technique is applied to interfaces where rotating and stationary parts interact. By incorporating the same boundary conditions as experimental study, two different cases with fixed liquid flow rates and varying gas flow rates are selected to conduct CFD simulations. The comparison of numerical results against experimental visualizations shows that the two-fluid Eulerian model is superior to VOF model in simulating gas/liquid flow in a rotating ESP. The single-phase simulation results match catalog curves of ESP, which validates the numerical methodology. For gas-liquid simulations, the simulated flow patterns with Eulerian model agree well with visualization experiments. The distinct flow patterns prevailing inside the rotating ESP impeller are captured by CFD simulations, including dispersed bubble flow, bubbly flow, and intermittent flow.
机译:本文利用瞬态多相CFD仿真技术,对电潜泵(ESP)旋转叶轮内部的流型识别进行了数值研究。基于先前的可视化ESP中流模式的实验设施,构建了整个流域。包含六面体网格的高质量结构化网格是使用ANSYS ICEM中的多块技术生成的。通过将数值结果与目录曲线进行比较,可以确定网格的独立性。对于瞬态两相仿真,已在ANSYS Fluent求解器中成功实现了带有流体体积(VOF)的RNG k-e湍流模型和欧拉多相模型。滑动网格技术应用于旋转和固定零件相互作用的界面。通过结合与实验研究相同的边界条件,选择液体流速固定和气体流速变化的两种不同情况进行CFD模拟。数值结果与实验可视化结果的比较表明,在模拟旋转ESP中的气/液流动时,两流体欧拉模型优于VOF模型。单相仿真结果与ESP的产品目录曲线匹配,验证了数值方法的正确性。对于气液模拟,使用欧拉模型的模拟流动模式与可视化实验非常吻合。通过CFD仿真可以捕获ESP旋转叶轮内部普遍存在的不同流型,包括分散的气泡流,气泡流和间歇流。

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