首页> 外文期刊>International Journal of Rotating Machinery >Component Analysis of Unsteady Hydrodynamic Force of Closed-Type Centrifugal Pump with Single Blades of Different Blade Outlet Angles
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Component Analysis of Unsteady Hydrodynamic Force of Closed-Type Centrifugal Pump with Single Blades of Different Blade Outlet Angles

机译:不同叶片出口角的单叶片闭式离心泵非定常水动力的分量分析

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摘要

Single-blade centrifugal impellers for sewage systems undergo both unsteady radial and axial thrusts. Therefore, it is extremely important for the improvement of pump reliability to quantitatively grasp these fluctuating hydrodynamic forces and determine the generation mechanism behind them. In this study, we conducted component analyses of radial and axial thrusts of closed, single-blade centrifugal pumps with different blade outlet angles by numerical analysis while considering leakage flow. The results revealed the effect of the blade outlet angle on the components of radial and axial thrusts. For increased flow rates, the time-averaged values of the pressure component were similar for all impellers, although its fluctuating components were higher for impellers with larger blade outlet angles. Moreover, the fluctuating inertia component of the impeller with a blade outlet angle of 8° decreased as the flow rate increased, whereas those with 16° and 24° angles increased. Therefore, the radial thrust on the hydraulic part was significantly higher for impellers with high blade outlet angles.
机译:用于污水处理系统的单叶片离心式叶轮会承受不稳定的径向和轴向推力。因此,定量地掌握这些波动的流体动力并确定其背后的产生机理对于提高泵的可靠性至关重要。在这项研究中,我们在考虑泄漏流量的同时,通过数值分析对具有不同叶片出口角的封闭式单叶片离心泵的径向和轴向推力进行了分量分析。结果揭示了叶片出口角度对径向和轴向推力分量的影响。对于增加的流量,所有叶轮的压力分量的时间平均值都相似,尽管对于叶片出口角度较大的叶轮,其波动分量更高。此外,叶片出口角为8°的叶轮的波动惯性分量随着流量的增加而减小,而叶片角为16°和24°的叶轮的波动惯性分量则减小。因此,对于具有大叶片出口角的叶轮,液压部件上的径向推力明显更高。

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