首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Mechanical Engineering >Analysis of the Effect of Various Impeller Blade Angles on Characteristic of the Axial Pump with Pressure Fluctuations Based on Time- and Frequency-Domain Investigations
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Analysis of the Effect of Various Impeller Blade Angles on Characteristic of the Axial Pump with Pressure Fluctuations Based on Time- and Frequency-Domain Investigations

机译:基于时域和频域研究的压力波动的各种叶轮叶片角度对轴向泵特性的影响分析

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In this work, the behaviors of flow field and pressure fluctuations in both time and frequency domains in an axial flow pump through changing various impeller blade angles are studied and investigated by using a CFD technique. The blade angles are changed between 30 degrees, 45o, 60o and 75o. Numerical results are validated with the experimental values, as a good agreement was found between them. The developed flow analysis shows that the blade angle does influence the different flow behaviors and features, such as the static pressure, turbulent kinetic energy (TKE), pressure fluctuations, axial velocity, radial velocity and tangential velocity. The results have revealed that the TKE rises with flow rate decreases and high static pressure increases at the pump outlet region near the tip blade region. Another conclusion of the study is the fact that the blade angle with 60o is the better one in terms of lower-negative-pressure regions, when compared with the other settings. The first dominated frequency was pump rotational frequency, and the second important frequency is the BPF (blade passing frequency). Furthermore, the results showed that impeller blade angles and unsteady flow have a high influence on the pressure fluctuation amplitude. Moreover, the results of the presented numerical simulation would be useful for a future hydraulic design of an axial pump.
机译:在这项工作中,通过使用CFD技术研究并研究了通过改变各种叶轮叶片角度的轴流泵中的流场和压力波动的行为和轴流泵中的频率畴。叶片角度在30度,450,60O和75O之间发生变化。数值结果用实验值验证,因为它们之间存在良好的一致。发育的流动分析表明,叶片角度确实影响不同的流动行为和特征,例如静压,湍流动能(TKE),压力波动,轴向速度,径向速度和切向速度。结果表明,在尖端叶片区域附近的泵出口区域处,TKE以流量降低,并且在泵出口区域处增加。该研究的另一个结论是,与其他设置相比,叶片角度与60o的叶片角度较为较好的。第一主导频率是泵旋转频率,第二个重要频率是BPF(刀片通过频率)。此外,结果表明,叶轮叶片角度和不稳定的流动对压力波动幅度具有很高的影响。此外,所提出的数值模拟的结果对于轴向泵的未来液压设计是有用的。

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