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CALCULATION OF FLOW INDUCED VIBRATION AMPLITUDES OF RADIAL SEWAGE WATER PUMPS

机译:径向排污泵水流引起的振动幅值的计算

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摘要

The extreme vibrations of sewage water pumps with single-blade impellers are induced mainly by interaction of the flow in the impeller and the casing. The resulting periodically unsteady forces affect the impeller and produce radial deflections of the pump shaft. These oscillations of the rotor are transferred to the pump casing and attached pipes. They can be recognized as vibrations at the bearing blocks or at the pump casing. The present contribution describes the investigation of the transient flow in a sewage water pump. The three-dimensional, viscous, unsteady flow in a pump with a single blade impeller is determined by numerical simulation. After that the hydrodynamic stimulation forces are calculated from the so known transient flow field. The forces can be classified into pressure and friction forces. The pressure forces usually exceed the friction forces on several orders of magnitude. A separate view on the fluid-wetted impeller surfaces shows that the pressure forces acting on the blade are clearly larger than the forces at the hub and at the shroud. So they are decisive for the vibration amplitudes of single-blade sewage water pumps. By a following dynamic analysis of the pump rotor using a commercial Finite-Element-Method (FEM) the resulting vibration amplitudes are determined for several operating points. With the known pressure field and the calculated vibration amplitudes the vibration behavior of sewage water pumps can be influenced during the design by changing the relevant construction parameters.
机译:具有单叶片叶轮的污水泵的极端振动主要是由叶轮和壳体中的水流相互作用引起的。所产生的周期性的不稳定力会影响叶轮并产生泵轴的径向偏斜。转子的这些振动传递到泵壳和连接的管道上。可以将它们视为轴承座或泵壳上的振动。本文稿描述了污水泵中瞬态流量的研究。通过数值模拟确定单叶片叶轮的泵中的三维粘性非定常流动。之后,从已知的瞬态流场中计算出流体动力刺激力。力可分为压力和摩擦力。压力通常超过摩擦力几个数量级。在湿润的叶轮表面上的单独视图显示,作用在叶片上的压力明显大于轮毂和护罩上的压力。因此,它们对于单叶片污水泵的振动幅度具有决定性作用。通过使用商用有限元方法(FEM)对泵转子进行以下动态分析,可以确定几个工作点的最终振动幅度。利用已知的压力场和计算出的振动幅度,可以在设计期间通过更改相关的施工参数来影响污水泵的振动性能。

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