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Numerical study on pressure fluctuation of a multistage centrifugal pump based on whole flow field

机译:基于全流场的多级离心泵压力波动的数值研究

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Multistage centrifugal pumps can provide high-pressure fluid flow, and is widely used in various engineering applications. However, the pressure fluctuation in the pumps strongly affects the flow and pressure stability. To gain further insight into the pressure fluctuation of multistage centrifugal pumps, a numerical model of a typical multistage centrifugal pump model was constructed and the flow investigated systematically under different operating conditions. Changes in amplitude, frequency, and phase of pressure fluctuation in the impellers, diffusers, and pump cavities were observed and analyzed in both time-domain and frequency-domain. The pressure fluctuations of the fluid in the impeller were found to originate from the inlet side of the outward diffuser, whereas that in the diffuser arose from the outlet side of the impeller blade. In contrast, the pressure fluctuations in the pump cavity were initiated from the outlet side of the impeller blade and the interstage leakage of fluid. This study also conclude that the pressure fluctuations are essentially a wave with identifiable amplitude, frequency, and phase.
机译:多级离心泵可以提供高压流体流动,并且广泛用于各种工程应用中。然而,泵中的压力波动强烈影响流动和压力稳定性。为了进一步了解多级离心泵的压力波动,构建了典型的多级离心泵模型的数值模型,并在不同的操作条件下系统地研究了流动。在时间域和频域中观察并分析并分析了叶轮,漫射器和泵腔中的压力波动的幅度,频率和相位的变化。发现叶轮中的流体的压力波动源自向外扩散器的入口侧,而在漫射器中从叶轮叶片的出口侧出现。相反,泵腔中的压力波动从叶轮叶片的出口侧发起和流体的级间泄漏。该研究还得出结论,压力波动基本上是具有可识别幅度,频率和相位的波。

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