首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E. Journal of Process Mechanical Engineering >An analytical method for determining the optimum number of blades of the compound impeller in a low specific speed centrifugal pump
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An analytical method for determining the optimum number of blades of the compound impeller in a low specific speed centrifugal pump

机译:用于确定低特定速度离心泵中复合叶轮最佳数量的分析方法

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摘要

Reasonable methods for determining the optimum number of blades in a low specific speed centrifugal pump with closed-type impeller with splitters, i.e. compound impeller have been rather rare in the literature so far. In the article, a new analytical method was put forward to determine such an optimum number of blades by including the effect of turbulent boundary layer over impeller blades. Three conventional impellers with different numbers of full-length blades and two compound impellers with different numbers of splitters were designed and manufactured. The corresponding performance tests were then conducted. Results showed that the optimum numbers of blades exist for two kinds of impeller in terms of head at design point, pump efficiencies at design point and best efficiency point, and slope of head-flow rate curve at shut-off point. The estimated optimum numbers of blades are in good agreement with the numbers based on the experiments. The conventional impellers with full-length blades are more prone to the hump phenomenon than the compound impellers at the optimum numbers of blades. For the compound impellers, however, the hump effect is negligible at the optimum number of blades, and their head and efficiency are higher than those for the impellers with full-length blades. The method is applicable to compound impeller design in low specific speed centrifugal pumps.
机译:用分离器的闭合叶轮确定低特定速度离心泵中叶片最佳数量的合理方法,即,到目前为止,化合物叶轮在文献中具有相当罕见。在本文中,提出了一种新的分析方法,以通过包括湍流边界层在叶轮叶片上的效果来确定这种最佳叶片数。设计和制造具有不同数量的全长叶片和具有不同数量的分离器数量不同的复合叶轮的传统叶轮。然后进行相应的性能测试。结果表明,在设计点的头部,设计点的泵效率和最佳效率点的泵效率,以及截止点的头流速率曲线坡度存在最佳数量的叶片。估计的最佳刀片数与基于实验的数字吻合良好。具有全长叶片的传统叶轮比在最佳叶片的最佳数量的复合叶轮上更容易发出驼峰现象。然而,对于复合叶轮,驼峰效应在最佳的叶片上可忽略不计,并且它们的头部和效率高于具有全长叶片的叶轮的头部和效率。该方法适用于低特定速度离心泵的复合叶轮设计。

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