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The effects of balancing holes on the axial force of a centrifugal pump in the reverse mode

机译:平衡孔对反向模式下离心泵轴向力的影响

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Abstract Centrifugal pumps can feasibly act as turbines in small hydropower plants. However, prediction and reduction methods of axial force is still challenging. A proposed method to this goal is the use of balancing holes. Accordingly, this paper investigates the effect of balancing holes diameter on the hydraulic performance and the axial force of a centrifugal pump as turbine (PAT). In this study, modeling of the fluid flow within the pump was carried out by using the commercial software of Ansys CFX R19.0 and the SST turbulence model. The numerical results showed that by working in the reverse mode, the operating flowrate, head and the axial force of the pump are increased remarkably. This study proved that drilling balancing holes in the impeller, despite being simple, is a useful method in reducing the axial force and has minor effects of the output power. Results showed that by drilling a hole of diameter 2 mm, the axial force is approximately decreased by 60 in almost all flowrates. Finally, it is observed that increasing holes diameter is mostly influential at high flowrates, and with diameter of 6.5 mm, the axial force is reduced about 90.
机译:摘要 离心泵在小型水电站中可作为涡轮机。然而,轴向力的预测和减小方法仍然具有挑战性。实现这一目标的一种建议方法是使用平衡孔。因此,本文研究了平衡孔直径对离心泵作为涡轮机(PAT)的水力性能和轴向力的影响。本研究使用Ansys CFX R19.0的商业软件和SST湍流模型对泵内的流体流动进行建模。数值结果表明,在反向模式下工作,泵的工作流量、扬程和轴向力均显著增加。本研究证明,在叶轮上钻平衡孔虽然简单,但是一种减小轴向力的有用方法,对输出功率的影响较小。结果表明,通过钻一个直径为2 mm的孔,几乎所有流速的轴向力都降低了大约60%。最后,观察到在高流速下,孔径的增加影响最大,直径为6.5 mm时,轴向力降低约90%。

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