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Effect of Blade Exit Shape on Performance and Vibration of a Double Volute Centrifugal Pump

机译:叶片出口形状对双蜗壳离心泵性能和振动的影响

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The fluid-structure interaction phenomenon is the main cause of flow-induced vibrations at the blade passing frequency in large and high pressure centrifugal pumps. One way to reduce the effects of this interaction and pump vibration is to increase the effective gap by cutting the blade exit of the impeller. However, this cut of the impeller blade will affect the pump head and the flow pattern inside the pump volute. A single stage of a double volute centrifugal pump is used to investigate the effect of increasing the effective gap, by cutting the impeller blade exit with different shapes, on pump performance and vibration. Different cut shapes are tested, namely V-shaped cut, C-shaped cut, and straight cut. Results showed the minimum pressure fluctuations inside the pump agree with the minimum pump vibration at the best efficiency point of the pump. Operating at off-design conditions increases the pump vibration. The cut at the blade exit increases the effective gap between the impeller and volute tongues and allows the dissipation of pressure pulse energy and pump vibration. The shape of the cut shows noticeable effect on the pump vibration and performance.
机译:在大型和高压离心泵中,流固耦合现象是叶片通过频率下流致振动的主要原因。减少这种相互作用和泵振动的影响的一种方法是通过切割叶轮的叶片出口来增加有效间隙。但是,叶轮叶片的这种切割会影响泵头和泵蜗壳内的流型。单级双蜗壳离心泵用于研究通过切割不同形状的叶轮叶片出口来增加有效间隙对泵性能和振动的影响。测试了不同的切口形状,即V形切口,C形切口和直切口。结果表明,在泵的最佳效率点上,泵内部的最小压力波动与最小的泵振动一致。在非设计条件下运行会增加泵的振动。叶片出口处的切口增加了叶轮和蜗壳舌片之间的有效间隙,并允许消散压力脉冲能量和泵振动。切口的形状对泵的振动和性能表现出明显的影响。

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