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AN IMPROVED THEORY FOR REGENERATIVE PUMP PERFORMANCE

机译:再生泵性能的改进理论

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摘要

Due to their low specific speed, regenerative pumps allow high heads with small flow rates and have performance curves with very stable features. This kind of pump is also smaller and simpler to construct than the other equivalent volumetric pumps though it has fairly low efficiency. Over the past few years, regenerative pumps have been subjected to more interest in various industrial applications. Previous mathematical models do not describe the flow characteristics very well as they are based on simplified assumptions. An improved model is proposed in this paper for the pump performance. The model can handle one inlet angle and two exit angles for the impeller blades and it can be used for the design of twisted blades that would increase the pump head and efficiency. A new feature of the pump characteristics based on the proposed model is discussed. It is shown that the proposed model yields results that are in good agreements with the experimental results. The new model also shows that the side-blade exit angle has a major effect on the performance of regenerative pump, which has not accounted for in the previous theory.
机译:由于其低比速,再生泵允许高扬程,小流量,并具有性能非常稳定的性能曲线。尽管这种泵效率相当低,但它比其他同等体积的泵更小,构造更简单。在过去的几年中,再生泵在各种工业应用中受到了越来越多的关注。先前的数学模型基于简化的假设,无法很好地描述流动特性。本文针对泵的性能提出了一种改进的模型。该模型可以处理叶轮叶片的一个入口角和两个出口角,并且可以用于扭曲叶片的设计,以增加泵压头和效率。讨论了基于所提出模型的泵特性的新特征。结果表明,提出的模型产生的结果与实验结果吻合良好。新模型还表明,侧叶片出口角对再生泵的性能有重要影响,这在以前的理论中并未说明。

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