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Influence of T-shape tip clearance on performance of a mixed-flow pump

机译:T形尖端间隙对混流泵性能的影响

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摘要

Influence of original and T-shape blade end on performance of a mixed-flow pump is investigated by using experimental measurement and numerical simulation. The new proposed T-shape blade end is formed at 95%–100% blade height with a linear increase of blade thickness. In comparison with original blade end, the efficiency of pump with T-shape blade end increases by 1.86%, and the leakage flow decreases by 15.95%. Space streamlines across the blade tip clearance can be divided into three beams with different movement trajectories, and the swirl motions of streamlines directly correspond to the swirling strength. The highest amplitude of pressure fluctuation appears at the blade leading edge along the tip clearance. In comparison with original blade end, the highest amplitude of pressure fluctuation for T-shape blade end decreases by 27.45%. The dominant frequencies of the pressure fluctuations in tip clearance region for original blade end and T-shape blade end are both five times of the axis rotation frequency, corresponding to the impeller blade number of five.
机译:通过实验测量和数值模拟研究了叶片的原始形状和T形叶片端对混流泵性能的影响。新提议的T形叶片端部形成为叶片高度的95%–100%,且叶片厚度呈线性增加。与原始叶片端相比,具有T形叶片端的泵的效率提高了1.86%,泄漏流量降低了15.95%。跨叶片尖端间隙的空间流线可分为三个具有不同运动轨迹的光束,流线的旋流运动直接对应于旋流强度。压力波动的最大幅度出现在沿叶尖间隙的叶片前缘处。与原始叶片端相比,T形叶片端的压力波动最大幅度降低了27.45%。原始叶片端和T形叶片端的尖端间隙区域中压力波动的主要频率均为轴旋转频率的5倍,对应于叶轮叶片数5。

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