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Correlation of centrifugal pump vibration to unsteady flow under variable motor speed

机译:电动机转速变化时离心泵振动与非恒定流的相关性

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摘要

Although condition monitoring of centrifugal pump bearings to infer faults is common practice, the relationship between a pump's vibration level and the unsteady flow within has not been extensively researched. The latter, however potentially provides the foundations for further developments in, pump design to increase performance, advanced predictive maintenance programs and, vibration monitoring techniques that can permit inference of pump efficiency states. This paper investigates the correlation between pump vibration and unsteady flow at different motor speeds. A test rig and a numerical CFD model were employed. It was found that flow-induced vibration in general increases with pump speed and was clearly linked to pump efficiency. It therefore seems possible to construct a model to deduce a pump's efficiency from its pressure and vibration levels, if the efficiency curve is known a priori. However, as the vibration levels are also dependent on the system's structural natural frequencies and modes, it seems that knowledge of these may also be needed in some instances. The work confirms that utilising a variable speed pump at lower pump speeds allows greater deviations from the design BEP without jeopardising the safety of the pump and should be considered for industrial use.
机译:尽管对离心泵轴承进行状态监测以推断故障的做法很普遍,但是尚未广泛研究泵的振动水平与泵内不稳定流量之间的关系。但是,后者可能为进一步设计,提高性能的泵设计,高级的预测性维护程序以及可以推断出泵效率状态的振动监测技术提供基础。本文研究了不同电动机转速下泵的振动与非恒定流之间的关系。使用了试验台和数值CFD模型。已经发现,由流体引起的振动通常随着泵的速度而增加,并且显然与泵的效率有关。因此,如果效率曲线是先验已知的,那么似乎有可能从泵的压力和振动水平推断出效率的模型。但是,由于振动水平还取决于系统的结构固有频率和模式,因此在某些情况下似乎也需要了解这些信息。这项工作证实,在较低的泵速下使用变速泵可以在不损害泵安全性的前提下更大程度地偏离设计BEP,因此应考虑将其用于工业用途。

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