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Investigation of Flow Through Centrifugal Pump Impellers Using Computational Fluid Dynamics

机译:利用计算流体力学研究离心泵叶轮的流动

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With the aid of computational fluid dynamics, the complex internal flows in water pump impellers can be well predicted, thus facilitating the design of pumps. This article describes the three-dimensional simulation of internal flow in three different types of centrifugal pumps (one pump has four straight blades and the other two have six twisted blades). A commercial three-dimensional Navier-Stokes code called CFX, with a standard k-ε two-equation turbulence model was used to simulate the problem under examination. In the calculation, the finite-volume method and an unstructured grid system were used for the solution procedure of the discretized governing equations for this problem. Comparison of computational results for various types of pumps showed good agreement for the twisted-blade pumps. However, for the straight-blade pump, the computational results were somewhat different from widely published experimental results. It was found that the predicted results relating to twisted-blade pumps were better than those relating to the straight-blade pump, which suggests that the efficiency of a twisted-blade pump will be greater than that of a straight-blade pump. The calculation also predicts reasonable results in both the flow pattern and the pressure distribution.
机译:借助计算流体动力学,可以很好地预测水泵叶轮中的复杂内部流量,从而简化了泵的设计。本文介绍了三种不同类型的离心泵的内部流动的三维模拟(一个泵具有四个直叶片,另外两个泵具有六个扭曲叶片)。商业三维Navier-Stokes代码CFX,带有标准的k-ε两方程湍流模型,用于模拟所检查的问题。在计算中,采用了有限体积法和非结构化网格系统来解决离散控制方程的求解问题。各种类型泵的计算结果比较表明,双叶片泵具有很好的一致性。但是,对于直叶泵,其计算结果与广泛发表的实验结果有所不同。结果发现,与双叶片泵相关的预测结果要优于与直叶片泵相关的预测结果,这表明,双叶片泵的效率将比直叶片泵的效率更高。该计算还预测了流型和压力分布的合理结果。

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