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Numerical Flow And Performance Analysis Of A Water-jet Axial Flow Pump

机译:喷水轴流泵的数值流及性能分析

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The purpose of the present study is to investigate the performance and three-dimensional flow fields in a water-jet pump. TASCflow is employed to simulate the rotator-stator coupling flow field. A standard k-ε turbulence model combined with standard wall functions is used. In order to investigate the effect of a rear stator on flow fields, the flows in two water-jet pumps with and without a rear stator are studied. Computational fluid dynamics (CFD)-predicted overall performances are in good agreement with the experimental results. Then the flow fields, such as the pressure distribution on the blade surfaces, and the axial and tangential velocity distribution, especially the radial loading distribution, are investigated at different flow rates. In addition, the effects of a rear stator and different spacings between the rotor and the stator on the overall performance and the flow fields of the water-jet pump are also investigated.
机译:本研究的目的是研究喷水泵的性能和三维流场。 TASCflow用于模拟转子-定子耦合流场。使用结合了标准壁函数的标准k-ε湍流模型。为了研究后定子对流场的影响,研究了带有和不带有后定子的两个喷水泵中的流动。计算流体动力学(CFD)预测的总体性能与实验结果非常吻合。然后研究了在不同流速下的流场,例如叶片表面上的压力分布以及轴向和切向速度分布,尤其是径向载荷分布。此外,还研究了后定子以及转子与定子之间不同间距对喷水泵整体性能和流场的影响。

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