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Experimental study on the effect of blade angle on regenerative pump performance

机译:叶片角对再生泵性能影响的实验研究

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The regenerative pump is a kind of turbomachine that is capable of developing a high pressure rise at relatively low flow rates compared to the centrifugal and axial pumps. Although the efficiency of regenerative pumps is much lower than other turbomachines, they have still been widely used in many industrial applications for high heads at low flow rates. There are a few theoretical models to analyze the performance of regenerative pumps, though, the effect of the blade angle has not been included in any analysis model to date. In this study, the influence of the impeller blade angle and its shape on regenerative pump performance has been experimentally investigated. Straight blades with inclined blade angles of 0°,± 15°, ±30° and ±45° were tested. In addition radial chevron impellers with chevron angles of 15°, 30° and 45° were also included in the present experiments. Hence a total of 10 blade configurations were examined. The pressure head, efficiency and the fluid temperature rise were measured at different flow rates and the results were expressed in appropriate non-dimensional coefficients. From the experimental results, it was found that the pressure head and the efficiency strongly depend on the blade angles as well as the blade geometry. Among all blade configurations tested in this study, the chevron blade exhibited the highest head with reasonably good efficiency. The comparative study shows that there is an optimum chevron angle of around 30° that yields the best performance. These experimental data may be used to include the effect of blade angles in the current performance analysis and design models to widen their applicability.
机译:再生泵是一种涡轮机,与离心泵和轴流泵相比,它能够以相对较低的流量产生高压上升。尽管再生泵的效率比其他涡轮机低得多,但它们仍在许多工业应用中以低流速在高扬程下得到了广泛应用。尽管有一些理论模型可以分析再生泵的性能,但是迄今为止,叶片角度的影响尚未包含在任何分析模型中。在这项研究中,已经通过实验研究了叶轮叶片角度及其形状对再生泵性能的影响。测试了倾斜叶片角度分别为0°,±15°,±30°和±45°的直叶片。此外,本实验还包括人字形角度为15°,30°和45°的径向人字形叶轮。因此,总共检查了10种刀片配置。在不同流速下测量压头,效率和流体温升,并以适当的无量纲系数表示结果。从实验结果发现,压头和效率在很大程度上取决于叶片角度以及叶片几何形状。在这项研究中测试的所有叶片配置中,人字形叶片表现出最高的扬程,效率相当好。对比研究表明,最佳人字形角度约为30°,可产生最佳性能。这些实验数据可用于在当前性能分析和设计模型中包括叶片角度的影响,以扩大其适用性。

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