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Clocking effect in a centrifugal pump with a vaned diffuser

机译:用叶片扩散器的离心泵时钟效果

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摘要

The performance and service life of centrifugal pumps can be influenced by the clocking effect. In this study, 3D numerical calculations based on the k-omega shear stress transport model are conducted to investigate the clocking effect in a centrifugal pump. Time-averaged behavior and transient behavior are analyzed. Results show that the optimum diffuser installation angle in the centrifugal pump is 25 degrees due to the minimum total pressure loss and radial force acting on the impeller. Total pressure loss, particularly in the volute, is considerably influenced by the clocking effect. The difference in total pressure loss in the volute at different clocking positions is 2.75 m under the design flow rate. The large total pressure loss in the volute is primarily caused by the large total pressure gradient within the vicinity of the volute tongue. The radial force acting on the impeller is also considerably affected by the clocking effect. When the diffuser installation angle is 25 degrees, flow rate fluctuations in the volute and impeller passage are minimal, and flow rate distribution in the diffuser passage is more uniform than those in other diffuser installation angles. Moreover, static pressure fluctuations in the impeller midsection and the diffuser inlet section are at the minimum value. These phenomena explain the minimum radial force acting on the impeller. The findings of this study can provide a useful reference for the design of centrifugal pumps.
机译:离心泵的性能和使用寿命可以受到时钟效果的影响。在该研究中,进行了基于K-Omega剪切应力传输模型的3D数值计算,以研究离心泵中的时钟效果。分析了时间平均行为和瞬态行为。结果表明,由于在叶轮上作用的最小总压力损失和径向力,离心泵中最佳扩散器安装角度为25度。总压力损失,特别是在蜗壳中,通过时钟效应受到显着影响。在不同时钟位置的蜗壳中总压力损失的差异在设计流速下为2.75米。蜗壳中的大的总压力损失主要由蜗壳附近的总压力梯度引起。作用在叶轮上的径向力也受到时钟效果的显着影响。当扩散器安装角度为25度时,蜗壳和叶轮通道中的流量波动是最小的,并且扩散器通道中的流量分布比其他扩散器安装角度更均匀。此外,叶轮中间部和扩散器入口部分中的静压波动处于最小值。这些现象解释了作用在叶轮上的最小径向力。该研究的结果可以为离心泵设计提供有用的参考。

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