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Three-dimensional inverse design and hydrodynamic performance analysis of contra-rotating axial flow pump

机译:对旋转轴流泵的三维逆设计和流体动力学性能分析

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摘要

In order to explore the contra-rotating axial flow pump design method and analysis its hydrodynamic performance, the inlet and outlet velocity triangle of front rotor and rear rotor was analysed, then, a high specific speed contra-rotating axial flow pump was designed using three dimensional method based on the condition of the front rotor outlet circulation equal to the inlet circulation of the rear rotor. At last, the performance of the pump is calculated by using RANS simulation. The results show that: the efficiency of the pump reaches 80.2% on the mass flow design point, namely, the average efficiency of the front rotor and rear rotor is up to 89%. At the same time, the efficiency will decrease rapidly when the mass flow is greater than the design flow. The efficiency of contra-rotating axial flow pump can be maintain higher than 80% by changing the rear rotor speed when the mass flow is in the range of 0.68 Q_d ~1.07 Q_d, which verifies changing rear rotor speed can effectively expand the operation range of pump's high efficiency.
机译:为了探索对抗轴流泵设计方法和分析其流体动力性能,分析了前转子和后转子的入口和出口速度三角形,然后使用三个设计了高速度对抗旋转轴流泵基于前转子出口循环条件等于后转子的入口循环的尺寸方法。最后,通过使用RAN模拟来计算泵的性能。结果表明:泵的效率在质量流量设计点上达到80.2%,即前转子和后转子的平均效率高达89%。同时,当质量流量大于设计流程时,效率会迅速下降。当质量流量在0.68 Q_D〜1.07 Q_D的范围内时,通过改变后转子速度,对抗旋转轴流泵的效率可以保持高于80%,这验证了后转子速度的变化可以有效地扩展操作范围泵的高效率。

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