首页> 外文会议>ASME Fluids Engineering Division summer meeting >INTERACTIONAL EFFECTS OF INLET GUIDE VANE AND BLADE ANGLE ON HYDRAULIC PERFORMANCE CHARACTERISTICS OF A SUBMERSIBLE AXIAL-FLOW PUMP
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INTERACTIONAL EFFECTS OF INLET GUIDE VANE AND BLADE ANGLE ON HYDRAULIC PERFORMANCE CHARACTERISTICS OF A SUBMERSIBLE AXIAL-FLOW PUMP

机译:入口导流叶片和叶片角对潜水式轴流泵液压性能特性的相互作用

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This study aims to evaluate effects of blade pitch and inlet guide vane (IGV) angle on the performance characteristics of a submersible axial-flow pump. According to the results of the previous study, the efficiency at the design and over-load conditions were significantly affected by the angle of IGV due to change in the incidence angle. To investigate the interactional effects of IGV and blade angle are analyzed using three-dimensional Reynolds-averaged Navier-Stokes equations with shear stress transport turbulence model. The hexahedral grids are used in the computational domain and a grid-dependency test is performed to obtain an optimal number of the grids. In this study, combinations of three different blade angles and two different IGV angles are tested. Adjusting angle of IGV increases the total pressure of the pump with a blade pitch increase, which can increase the efficiency of the pump in operating range.
机译:这项研究旨在评估叶片螺距和入口导向叶片(IGV)角度对潜水式轴流泵性能特性的影响。根据先前研究的结果,由于入射角的变化,IGV的角度显着影响了设计和过载条件下的效率。为了研究IGV和叶片角的相互作用,使用带有剪切应力传输湍流模型的三维雷诺平均Navier-Stokes方程进行了分析。在计算域中使用六面体网格,并执行网格相关性测试以获得最佳数量的网格。在这项研究中,测试了三个不同叶片角度和两个不同IGV角度的组合。 IGV的调节角度随着叶片螺距的增加而增加了泵的总压力,这可以提高泵在工作范围内的效率。

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