首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >NUMERICAL SIMULATION OF DYNAMIC FLOW CHARACTERISTICS IN A CENTRIFUGAL WATER PUMP CONSIDERING SHAFT TORSIONAL VIBRATION
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NUMERICAL SIMULATION OF DYNAMIC FLOW CHARACTERISTICS IN A CENTRIFUGAL WATER PUMP CONSIDERING SHAFT TORSIONAL VIBRATION

机译:考虑轴扭转振动的离心水泵动态流动特性的数值模拟

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The complex three-dimensional turbulent flow field in a centrifugal water pump is numerically simulated considering torsional vibration of the shaft. The characteristic frequency and the frequency modulation phenomenon is investigated when the fluctuated-rotation-speed is considered. The results show that the amplitude of pressure fluctuation is bigger when the rotating-speed of shaft is unsteady, indicating that the speed fluctuations of impellers intensify the nonuniformity and instability of the whole flow field inside the pump. Besides, the Blade Passing Frequency (BPF) has obvious sidelobe frequency peaks when different frequency rate of speed appears. It can be concluded that sidelobes maybe come from the torsional vibration of the shaft. The main findings of this work can provide prediction of the pump performance and information for further optimal design of centrifugal pumps as well.
机译:考虑轴的扭转振动,对离心水泵中复杂的三维湍流场进行了数值模拟。考虑转速变化时,研究了特征频率和调频现象。结果表明,当轴的转速不稳定时,压力波动的幅度较大,表明叶轮的速度波动加剧了泵内整个流场的不均匀性和不稳定性。此外,当出现不同的速度速率时,叶片通过频率(BPF)具有明显的旁瓣频率峰值。可以得出结论,旁瓣可能来自轴的扭转振动。这项工作的主要发现可以为泵的性能提供预测,并为进一步优化离心泵的设计提供信息。

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