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Studies on the Influence of Various Blade Outlet Angles in a Centrifugal Pump when Handling Viscous Fluids | Science Publications

机译:粘性流体对离心泵中不同叶片出口角度的影响研究科学出版物

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> In this study the centrifugal pump performances with different blade outlet angles are tested when handling water and viscous oils as Newtonian fluids. Also, this study shows a numerical simulation of the three-dimensional fluid flows inside the centrifugal pump with different blade outlet angles. For these numerical simulations the SIMPLEC algorithm is used for solving governing equations of incompressible viscous/turbulent flows through the pump at different operating conditions. The k-ε turbulence model is adopted to describe the turbulent flow process. These simulations have been made with a steady calculation using the multiple reference frames (MRF) technique to take into account the impeller- volute interaction. Numerical results are compared with the experimental characteristic curve for each viscous fluid. The results show that when the outlet angle increases, the centrifugal pump performance handling viscous fluids improves. This improvement is due to decrease of wake at the exit of impeller. Also the results show that the well-known jet/wake flow model is not found in the impeller simulations.
机译: >在本研究中,当处理水和粘性油作为牛顿流体时,测试了具有不同叶片出口角的离心泵的性能。此外,这项研究还显示了具有不同叶片出口角的离心泵内部三维流体流动的数值模拟。对于这些数值模拟,SIMPLEC算法用于求解在不同工况下流经泵的不可压缩粘性/湍流的控制方程。采用k-ε湍流模型来描述湍流过程。这些仿真是通过使用多参考系(MRF)技术进行稳定计算来考虑叶轮-蜗壳相互作用的结果。将数值结果与每种粘性流体的实验特性曲线进行比较。结果表明,当出口角度增加时,离心泵处理粘性流体的性能会提高。该改进归因于叶轮出口处的尾流减少。结果还表明,在叶轮模拟中未找到众所周知的射流/尾流模型。

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