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Numerical Prediction of Inlet Recirculation in Pumps

机译:泵入口再循环的数值预测

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The development of heavy-duty process pumps, usually based on various design criteria, depends on the pump's application. The most important criteria are Q-H, efficiency and NPSH characteristics. Cavitation due to inlet recirculation is not often one of the design criteria, although many problems in pump operation appear because of inlet recirculation, when the operation range is from 0.5-0.8 Qopt.The present paper shows that steady state CFD analysis of inlet recirculation can give quite good results for the design of new hydraulic shapes, which have been developed to expand operating range and to minimize the harmful influence of recirculation at part load. In this paper, the structures of inlet recirculation are presented, as well as detailed shapes of vortices between the blades for various operating regimes, axial velocity distribution at the impeller inlet, the experimental results of NPSH and efficiency characteristics of an existing and newly designed pump.
机译:重型过程泵的开发通常基于各种设计标准,取决于泵的应用。最重要的标准是Q-H,效率和NPSH特性。尽管在进气操作范围为0.5-0.8 Qopt时由于进气再循环而在泵操作中出现了许多问题,但由于进气再循环引起的气蚀通常不是设计标准之一。本论文表明,进气再循环的稳态CFD分析可以对于新的液压形状的设计,它提供了相当不错的效果,这些液压形状已被开发出来,以扩大工作范围并最大程度地减小部分负荷下再循环的有害影响。本文介绍了进气再循环的结构,以及各种工况下叶片之间的旋涡的详细形状,叶轮入口的轴向速度分布,NPSH的实验结果以及现有和新设计的泵的效率特性。 。

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