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Numerical Investigation of Periodically Unsteady Pressure Field in a High Power Centrifugal Diffuser Pump

机译:大功率离心扩散器中周期非定常压力场的数值研究

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摘要

Pressure fluctuations are the main factors that can give rise to reliability problems in centrifugal pumps. The periodically unsteady pressure characteristics caused by rotor-stator interaction have been investigated by CFD calculation in a residual heat removal pump. Side chamber flow effect is also considered for the simulation to accurately predict the flow in whole flow passage. The pressure fluctuation results in time and frequency domains were considered for several typical monitoring points in impeller and diffuser channels. In addition, the pressure fluctuation intensity coefficient ( PFIC) based on standard deviation was defined on each grid node for entire space and impeller revolution period. The results show that strong pressure fluctuation intensity can be found in the gap between impeller and diffuser. As a source, the fluctuation can spread to the upstream and downstream flow channels as well as the side chamber channels. Meanwhile, strong pressure fluctuation intensity can be found in the discharge tube of the circular casing. In addition, the obvious influence of operational flow rate on the PFIC distribution can be found. The analysis indicates that the pressure fluctuations in the aspects of both frequency and intensity can be used to comprehensively evaluate the unsteady pressure characteristics in centrifugal pumps.
机译:压力波动是可能引起离心泵可靠性问题的主要因素。在余热排出泵中,通过CFD计算研究了由转子-定子相互作用引起的周期性的非稳态压力特性。模拟中还考虑了侧室流动效应,以准确预测整个流道中的流动。对叶轮和扩压器通道中的几个典型监测点考虑了在时域和频域中的压力波动结果。此外,在整个空间和叶轮旋转周期的每个网格节点上都定义了基于标准偏差的压力波动强度系数(PFIC)。结果表明,在叶轮与扩压器之间的间隙中可发现较大的压力波动强度。作为源,波动可扩展到上游和下游流动通道以及侧室通道。同时,在圆形壳体的排放管中可以发现强烈的压力波动强度。此外,可以发现工作流量对PFIC分布的明显影响。分析表明,频率和强度方面的压力波动可用于综合评估离心泵的非定常压力特性。

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