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Pressure Pulsations of the Blade Region in S-Shaped Shaft-Extension Tubular Pumping System

机译:S形轴伸式管状泵系统中叶片区域的压力脉动

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The three-dimensional unsteady numerical method is applied to investigate the pressure fluctuation of the S-shaft extension pumping system. Some monitor pointers are set at the key positions of blade region to capture the changing rules of the pressure pulsations, from which the data are collected through time-domain and spectrum analysis. The predicted head and efficiency were validated by the comparison with the tested results, and the comparison result shows that the unsteady flow characteristic of pumping system can be simulated by this method. The pulsating amplitude decreases gradually from blade tip to hub, under the condition of large flow rate for both the inlet and outlet of the impeller, in the way different from the smaller flow rate condition. Through adjusting the impeller rotation speed and the number of blades, the dominant frequency can be controlled. For the same monitor point at the impeller, as the flow coefficient is becoming larger, the pulsating amplitude decreases, in which case, it decreases firstly and then increases between the impeller and the guide vane, and the pulsating amplitude is smallest on the high efficiency condition. The rotation speed of impeller has little effect on the dominant frequency at the outlet of guide vane.
机译:运用三维非定常数值方法研究了S轴伸缩泵系统的压力波动。在叶片区域的关键位置设置了一些监控指针,以捕获压力脉动的变化规律,并通过时域和频谱分析从中收集数据。通过与试验结果的比较,验证了预测扬程和效率。比较结果表明,该方法可以模拟泵系统的非稳态流动特性。在叶轮的入口和出口都具有大流量的条件下,脉动幅度从叶片尖端到轮毂逐渐减小,其方式不同于较小的流量条件。通过调节叶轮转速和叶片数量,可以控制主导频率。对于叶轮上相同的监控点,当流量系数变大时,脉动幅度减小,在这种情况下,脉动幅度先减小然后在叶轮和导向叶片之间增大,并且脉动幅度最小,高效健康)状况。叶轮的转速对导叶出口处的主频率影响很小。

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