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Investigation on Reduction of Pressure Fluctuation for a Double-Suction Centrifugal Pump

机译:双吸离离心泵压力波动降低的研究

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摘要

Abstract Double-suction centrifugal pumps have been applied extensively in many areas, and the significance of pressure fluctuations inside these pumps with large power is becoming increasingly important. In this study, a double-suction centrifugal pump with a high-demand for vibration and noise was redesigned by increasing the flow uniformity at the impeller discharge, implemented by combinations of more than two parameters. First, increasing the number of the impeller blades was intended to enhance the bounding effect that the blades imposed on the fluid. Subsequently, increasing the radial gap between the impeller and volute was applied to reduce the rotor-stator interaction. Finally, the staggered arrangement was optimized to weaken the efficacy of the interference superposition. Based on numerical simulation, the steady and unsteady characteristics of the pump models were calculated. From the fluctuation analysis in the frequency domain, the dimensionless pressure fluctuation amplitude at the blade passing frequency and its harmonics, located on the monitoring points in the redesigned pumps (both with larger radial gap), are reduced a lot. Further, in the volute of the model with new impellers staggered at 12°, the average value for the dimensionless pressure fluctuation amplitude decreases to 6% of that in prototype pump. The dimensionless root-mean-square pressure contour on the mid-span of the impeller tends to be more uniform in the redesigned models (both with larger radial gap); similarly, the pressure contour on the mid-section of the volute presents good uniformity in these models, which in turn demonstrating a reduction in the pressure fluctuation intensity. The results reveal the mechanism of pressure fluctuation reduction in a double-suction centrifugal pump, and the results of this study could provide a reference for pressure fluctuation reduction and vibration performance reinforcement of double-suction centrifugal pumps and other pumps.
机译:摘要双吸离心泵已广泛应用于许多领域,并且这些泵内部具有大功率的压力波动的重要性变得越来越重要。在该研究中,通过增加叶轮放电的流动均匀性,通过多于两个参数的组合实现,重新设计了一种具有高振动和噪声的双吸与噪声的双吸离心泵。首先,增加叶轮叶片的数量旨在增强施加在流体上的叶片的界定效果。随后,施加叶轮和蜗壳之间的径向间隙以减少转子 - 定子相互作用。最后,优化了交错的布置,以削弱干扰叠加的功效。基于数值模拟,计算了泵模型的稳定和不稳定的特性。从频域的波动分析,位于重新设计泵中的监测点(具有较大径向间隙)的监测点上的叶片通过频率的无量压力波动幅度和谐波。此外,在具有在12°的新叶轮的模型的蜗壳中,无量纲压力波动幅度的平均值降低至原型泵中的6%。在叶轮的中间跨度上的无量纲根平均方形压力轮廓趋于更均匀,在重新设计的模型中(两者都具有较大的径向间隙);类似地,蜗壳中间部分上的压力轮廓在这些模型中呈现出良好的均匀性,这又显示了压力波动强度的降低。结果揭示了双吸离离心泵压力波动减少的机制,本研究的结果可以为双吸离心泵和其他泵的压力波动和振动性能加固提供参考。

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