首页> 外文期刊>International Journal of Turbomachinery, Propulsion and Power >Three-Dimensional Flow Simulation by a Hybrid Two-Phase Solver for the Assessment of Liquid/Gas Transport in a Volute-Type Centrifugal Pump with Twisted Blades
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Three-Dimensional Flow Simulation by a Hybrid Two-Phase Solver for the Assessment of Liquid/Gas Transport in a Volute-Type Centrifugal Pump with Twisted Blades

机译:通过混合两相求解器进行三维流动模拟,用于评估带扭曲叶片的蜗壳型离心泵中的液体/气体传输

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摘要

A hybrid two-phase flow solver is proposed, based on an Euler-Euler two-fluid model with continuous blending of a Volume-of-Fluid method when phase interfaces of coherent gas pockets are to be resolved. In a preceding study on a two-dimensional bladed research pump with reduced rotational speed, the transition from bubbly flow to coherent steady gas pockets observed in optical experiments with liquid/gas flow could be well captured by the hybrid solver. In the present study, the experiments and solver validation are extended to an industrial-scale centrifugal pump with twisted three-dimensional blades and elevated design rotational speed. The solver is combined with a population balance model, and a scale-adaptive turbulence model is employed. Compared to the two-dimensional bladed pump, the transition from agglomerated bubbles flow to attached gas pockets is shifted to larger gas loading, which is well captured by the simulation. The pump head drop with increasing gas load is also reproduced, showing the hybrid solver's validity for realistic pump operation conditions.
机译:该文基于Euler-Euler双流体模型,在求解相干气穴相界面时,提出了一种基于Euler-Euler双流体模型的混合两相流求解器,该算法采用连续混合流体体积法。在之前对转速降低的二维叶片研究泵的研究中,混合求解器可以很好地捕捉在液体/气体流动的光学实验中观察到的从气泡流动到相干稳定气穴的过渡。在本研究中,将实验和求解器验证扩展到具有扭曲三维叶片和高设计转速的工业规模离心泵。将求解器与人口平衡模型相结合,采用尺度自适应湍流模型。与二维叶片泵相比,从凝聚气泡流向附着气穴的过渡转变为更大的气体负载,仿真很好地捕捉了这一点。还再现了泵头随气体负荷增加而下降的现象,显示了混合求解器在实际泵运行条件下的有效性。

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