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Diagnosis of Centrifugal Pump Faults Using Vibration Methods

机译:用振动法诊断离心泵故障

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摘要

Pumps are the largest single consumer of power in industry. This means that faulty pumps cause a high rate of energy loss with associated performance degradation, high vibration levels and significant noise radiation. This paper investigates the correlations between pump performance parameters including head, flow rate and energy consumption and surface vibration for the purpose of both pump condition monitoring and performance assessment. Using an in-house pump system, a number of experiments have been carried out on a centrifugal pump system using five impellers: one in good condition and four others with different defects, and at different flow rates for the comparison purposes. The results have shown that each defective impeller performance curve (showing flow, head, efficiency and NPSH (Net Positive Suction Head) is different from the benchmark curve showing the performance of the impeller in good condition. The exterior vibration responses were investigated to extract several key features to represent the healthy pump condition, pump operating condition and pump energy consumption. In combination, these parameter allow an optimal decision for pump overhaul to be made [1].
机译:泵是工业上最大的电力消耗者。这意味着有故障的泵会导致很高的能量损失率,并伴随相关的性能下降,高振动水平和明显的噪声辐射。本文研究了泵性能参数之间的相关性,包括扬程,流量,能量消耗和表面振动,以进行泵状态监测和性能评估。为了进行比较,使用内部泵系统,在使用五个叶轮的离心泵系统上进行了许多实验:一个叶轮状况良好,另外四个叶轮具有不同缺陷,并且流量不同。结果表明,每条有缺陷的叶轮性能曲线(表示流量,扬程,效率和NPSH(净正吸力扬程))与基准曲线(表明叶轮在良好状态下的性能)不同,并研究了外部振动响应以提取出几个代表健康泵状态,泵运行状态和泵能耗的关键特征,这些参数结合在一起,可以为泵大修做出最佳决策[1]。

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