Effect of Blade Coating on a Centrifugal Pump Operation under Sediment-Laden Water Flow

Yong Wang, Zi-long Zhang, Jie Chen, Hou-lin Liu, Xiang-Peng Zhang, M. Hočevar
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Abstract

Applying a high strength coating on a blade’s surface could significantly prolong the service life of a centrifugal pump under sediment-laden water flow because of its protection. To explore the effect of blade coating, the characteristics of energy, vibration and pressure fluctuation of a centrifugal pump (the specific speed (ns) is 81.46) with different polyurethane coating thickness coefficients were experimentally studied under sediment-laden water flow. Keeping the blade outlet angle, blade inlet angle and blade shape unchanged, the head H and efficiency η under both sediment-laden flow and clear water flow decrease significantly as the coating thickness coefficient increases. The axis rotating frequency and blade passing frequency are the main excitation frequencies of the pump vibration velocity amplitude and outlet pressure fluctuation. The vibration velocity amplitude and outlet pressure fluctuation at the frequency of 1 BPF are the largest. At the frequency of 1 axis rotating frequency, they are the second in all cases. The peak values of both vibration velocity amplitude and outlet pressure fluctuation are proportional to the coating thickness coefficient. An analysis was performed for several increasing coating thicknesses, corresponding to coating coefficients from K0 to K3. When the coating thickness coefficients are K0, K1, and K2, the peak value of vibration velocity amplitude under sediment-laden flow is larger than that under clear water flow, but the very small difference between them undercoating thickness coefficient K3. The peak values of pressure fluctuations under different flow rates decrease first and then increase with the increasing coating thickness coefficient, and lowest points are all located at the coating thickness coefficient K1.
叶片涂层对含沙水流下离心泵运行的影响
在叶片表面涂覆高强度涂层,可显著延长离心泵在含沙水流下的使用寿命。为探讨叶片涂层的影响,对不同涂层厚度系数的离心泵(比转速为81.46)在含沙水流作用下的能量、振动和压力波动特性进行了实验研究。在保持叶片出口角、进口角和叶片形状不变的情况下,随着涂层厚度系数的增大,含沙流和清水流下的扬程H和效率η均显著降低。轴向旋转频率和叶片通过频率是泵振动速度幅值和出口压力波动的主要激励频率。在1 BPF频率处,振动速度幅值和出口压力波动最大。在1轴旋转频率下,它们在所有情况下都是第二。振动速度振幅和出口压力波动的峰值均与涂层厚度系数成正比。分析了几种增加涂层厚度,对应于涂层系数从K0到K3。当涂层厚度系数为K0、K1和K2时,含沙水流下的振动速度幅值峰值大于清水水流下的振动速度幅值峰值,但在涂层厚度系数K3下两者的差异很小。随着涂层厚度系数的增大,不同流量下压力波动峰值先减小后增大,最低点均位于涂层厚度系数K1处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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