首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Effects of inlet guide vane and blade pitch angles on the performance of a submersible axial-flow pump
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Effects of inlet guide vane and blade pitch angles on the performance of a submersible axial-flow pump

机译:入口导向叶片和叶片间距角度对潜水轴流泵性能的影响

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This study investigates the effects of inlet guide vane (IGV) and blade pitch angles on the steady and unsteady performance of a submersible axial-flow pump. To analyze the interaction between the IGVs and the rotor blades, both steady and unsteady three-dimensional Reynolds-averaged Navier-Stokes equations were used with shear stress transport turbulence closure. Hexahedral meshes were used in the computational domain. The numerical results for performance curves showed good agreement with experimental data. The results showed that the steady and unsteady performance characteristics were dependent on both the IGV and blade pitch angles. Adjusting these angles affected the total pressure rise and thus caused variation in the efficiency in overload conditions. But adjusting these angles affected the unsteady pressure fluctuations in partial-load conditions. Detailed flow analyses were performed to find the root-cause of these phenomena.
机译:本研究研究了入口导向叶片(IGV)和叶片间距角度对潜水轴流泵的稳态和不稳定性能的影响。 为了分析IGV和转子叶片之间的相互作用,既稳态和不稳定的三维雷诺平均型Navier-Stokes方程都与剪切应力输送湍流闭合使用。 在计算领域中使用了六面射出的网格。 性能曲线的数值结果显示了与实验数据的良好一致性。 结果表明,稳定和不稳定的性能特性取决于IGV和叶片间距角度。 调整这些角度影响总压力升高,因此导致过载条件的效率变化。 但调整这些角度影响了部分负载条件下的不稳定压力波动。 进行详细的流动分析以找到这些现象的根本原因。

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