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Characteristics of Gas-Liquid Transport Flow through an Axial Flow Impeller

机译:流经轴流式叶轮的气液输送流的特性

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To elucidate transport properties of gas-liquid two-phase flows with small initial void fractions in pump impeller, based on Reynolds averaged Navier-Stokes equations and standard k-epsiv turbulent model, flow simulation in an axial flow pump impeller was carried out under different operating conditions. Hydrostatic pressure and void fraction distributions were obtained and analyzed respectively. The results demonstrate that large flow rate makes the pressure distributions get uniform, but local high hydrostatic pressure gradient do not varies with the flow rate. And when initial void fraction reaches 10%, pressure discrepancy between blade pressure and suction surfaces becomes smaller and gas phase distribute unevenly with increased flow rate. Furthermore, pump performance gets worse compared with that under smaller initial void fractions.
机译:为了阐明泵叶轮中初始空隙率较小的气液两相流的输运特性,基于雷诺平均Navier-Stokes方程和标准k-epsiv湍流模型,在不同流量下进行了轴流泵叶轮的流动模拟。运行条件。分别获得静水压力和空隙率分布并进行分析。结果表明,大流量可使压力分布均匀,但局部高静水压力梯度不会随流量变化。并且,当初始空隙率达到10%时,叶片压力与吸力表面之间的压力差异会变小,并且气相会随着流速的增加而分布不均匀。此外,与在较小的初始空隙率下相比,泵的性能变得更差。

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