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NUMERICAL INVESTIGATION OF PRESSURE PULSATION IN VANELESS REGION OF A HIGH SPEED CENTRIFUGAL PUMP

机译:高速离心泵无刷区压力脉动的数值研究

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摘要

The pressure pulsation due to rotor-stator interaction (RSI) is unavoidable for high-speed centrifugal pump when operating under different conditions. The frequency components of pressure pulsation in the vaneless region are the most complex, and the pressure pulsation characteristic plays an important role in pump structural stress analysis. A numerical simulation method is used to obtain the hydraulic performances of a highspeed centrifugal pump with 9857 r/min at the range of flow rates between 48.1 to 155.0 m~3/h. The head and efficiency under different operating conditions have good agreement with experimental results, with maximum deviations in 3.82% and 5.37%, respectively. The results show that the level of the pressure pulsation from the inlet to the outlet of the impeller increased gradually, and the pressure pulsations between the short blades are greater than that between the long and short blades. In the diffuser, the pressure pulsation is the highest near the tongue, whereas it is lower in the region between the two tongues, and this region is defined as the vaneless region. The pressure contours in the vaneless region almost have no change, while they near the tongue are densely distributed, revealing the mechanism of uneven pressure pulsation distribution. Moreover, there is a high radial velocity distribution near the tongue in the vaneless region, indicating that there may be a jet-wake pattern occured in this region.
机译:在不同条件下运行时,高速离心泵不可避免地会因转子-定子相互作用(RSI)而产生压力脉动。无叶片区域中压力脉动的频率分量最为复杂,并且压力脉动特性在泵结构应力分析中起着重要作用。采用数值模拟的方法获得了流量为48.1至155.0 m〜3 / h时转速为9857 r / min的高速离心泵的水力性能。在不同操作条件下的扬程和效率与实验结果吻合良好,最大偏差分别为3.82%和5.37%。结果表明,从叶轮进口到出口的压力脉动水平逐渐增大,短叶片之间的压力脉动大于长叶片和短叶片之间的脉动。在扩散器中,压力脉动在舌部附近最高,而在两个舌部之间的区域中较低,该区域被定义为无叶片区域。无叶片区域中的压力轮廓几乎没有变化,而它们在舌头附近则密集分布,揭示了压力脉动分布不均匀的机理。此外,在无叶片区域中的舌头附近具有较高的径向速度分布,这表明在该区域中可能出现喷射-尾流模式。

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