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首页> 外文期刊>Journal of Mechanical Science and Technology >Instability analysis under part-load conditions in centrifugal pump
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Instability analysis under part-load conditions in centrifugal pump

机译:离心泵部分负荷条件下的不稳定分析

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摘要

In this study, a centrifugal pump with a specific speed of 39.12 mxmin(-1)xm(3)s(-1) is treated to analyze the flow instability under part-load conditions by numerical simulation and experimental test. For calculations, the RANS method, coupled with the k- SST turbulence model, is adopted. Numerical results at different operation points are compared with available experimental data, such as hydraulic performance and flow field information by particle image velocimetry. The numerical and experiment results agree well. The flow simulation indicates a strong reverse flow at the passage upstream impeller inlet, and the energy loss in the impeller is the largest under part-load conditions among all flow components in the pump. In one impeller revolution, one blade-to-blade flow passage is always nearly blocked off by the rotating stall occurring at the impeller inlet for each instant, and the blockage induces a jet flow with large velocity at the next blade-to-blade flow passage along the rotational direction of the impeller. The blockage and the jet flow in the blade-to-blade flow passages will make the flow unstable inside the impeller and cause performance breakdown and pressure vibration under part-load conditions for the pump.
机译:在该研究中,通过数值模拟和实验测试处理具有39.12mLmin(-1)×m(-1)×m(3)S(3)秒(-1)的特定速度的离心泵,分析部分负载条件下的流动不稳定性。对于计算,采用与K-SST湍流模型相结合的RAN方法。将不同操作点的数值结果与可用的实验数据进行比较,例如通过粒子图像VENOCIMETRY等液压性能和流场信息。数值和实验结果同意。流动模拟表示通道上游叶轮入口处的强烈反向流动,叶轮中的能量损失是泵中的所有流量部件中的部分负载条件下最大的。在一个叶轮旋转中,一个刀片到叶片流动通道始终通过在每个瞬间的叶轮入口处发生的旋转失速而几乎阻挡,并且堵塞在下一个刀片到刀片流下具有大的速度的射流引起射流沿着叶轮的旋转方向通过。叶片到叶片流动通道中的堵塞和射流将使叶轮内部不稳定,并在泵的部分负载条件下导致性能击穿和压力振动。

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