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Numerical Study on the Influence of Inlet Guide Vanes on the Internal Flow Characteristics of Centrifugal Pump

机译:入口导向叶片对离心泵内部流动特性的数值研究

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摘要

In order to make the centrifugal pump run efficiently and stably under various working conditions, the influences of the incoming vortex flow in the inlet pipe on the main flow in the impeller is studied numerically, based on the k − ω SST turbulence model. Some guide vanes with different offset angle were added to change the statistical characteristic of the internal flow in the inlet pipe of the centrifugal pump. Both contour distributions of internal flow and statistical results of external performance are obtained and analyzed. The results show that the existence of vanes can divide the large vortex because of the reversed flow from the rotating impeller at low flow rate conditions into small vortices, which are easier to dissipate, make the velocity and pressure distribution more uniform, improve the stability of the flow in the impeller, reduce the hydraulic loss, and improve the hydraulic performance of the pump. The pump with vanes of offset angle 25° has a small pressure pulsation amplitude at each monitoring point. Comparing with the performance of the original pump, the head increased by around 2% and efficiency increased by around 2.5% of the pump with vanes of offset angle 25°.
机译:ωSST湍流模型 - 在为了使离心泵各种工作条件下有效且稳定地运行,在关于在叶轮的主流程的入口管进入的涡流的影响是基于第k数值研究。加入用不同的偏移角一些导向叶片来改变内部流动的统计特性在离心泵的入口管。内部流和外部性能统计结果的两个轮廓分布获得和分析。结果表明,叶片的存在可以把大涡流因为从在低流量条件下成小旋涡,这是更容易消散旋转叶轮的反向流动的,使速度和压力分布更均匀,提高的稳定性在叶轮的流动性,降低水力损失,提高了泵的水力性能。具有偏移角25的叶片泵°在每一监测点处的小的压力脉动幅度。与原来的泵的性能进行比较,头部增加约2%,效率提高了2.5%左右具有偏移角25°的叶片泵的。

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