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Numerical simulation of transient flow field in a mixed-flow pump during starting period

机译:启动期间混流泵瞬态流场的数值模拟

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Purpose - This paper aims to study the transient flow characteristics in a mixed-flow pump during the start-up period. Design/methodology/approach - In this study, numerical calculation of the internal flow field in a mixed-flow pump using the sliding mesh method was carried out. The regulation of the pressure, streamline and the relative speed during the start-up period was analyzed. Findings - The trend of the simulated head is consistent with the experimental results, and the calculated head is around 0.3 m higher than the experimental head when the rotation speed reached the stable stage, indicating that the numerical method for the start-up process simulation of the mixed-flow pump has a high accuracy. At the beginning, the velocity inside the impeller changes little along the radius direction and the flow rate increases slowly during the start-up process. As the rotation speed reached the stable stage, the flow inside the impeller became steady, the vortex reduced and transient effects disappeared gradually. Originality/value - The study results have significant value for revealing the internal unsteady flow characteristics of the mixed-flow pump and providing the reference for the design optimization of the mixed-flow pump.
机译:目的-本文旨在研究启动期间混流泵的瞬态流量特性。设计/方法/方法-在此研究中,使用滑动网格方法对混合流泵中的内部流场进行了数值计算。分析了启动期间的压力,流线和相对速度的调节。结果-模拟头的趋势与实验结果一致,并且当转速达到稳定阶段时,计算头比实验头高0.3 m,这表明用于启动过程模拟的数值方法混流泵精度高。刚开始时,叶轮内部的速度沿半径方向变化很小,并且在启动过程中流速缓慢增加。随着转速达到稳定阶段,叶轮内部的流量变得稳定,涡流减少,瞬态效应逐渐消失。原创性/价值-研究结果对于揭示混流泵的内部非稳态流动特性以及为混流泵的设计优化提供参考具有重要价值。

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