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Experimental Investigation of the Effect of Cavitation on the Rotordynamic Forces on a Whirling Centrifugal Pump Impeller

机译:空化对涡流离心泵叶轮转子动力的影响的实验研究

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摘要

The interaction of a rotating impeller and the working fluid introduce forces on the rotor. These fluid-induced forces can cause self-excited whirl, where theudrotor moves away from and whirls along a trajectory eccentric to its undeflected position. When designing a turbomachine, particularly one which is to operate atudhigh speed, it is important to be able to predict the fluid-induced forces, both steady and unsteady, acting on the various components of the machine. The fluid-inducedudrotordynamic forces acting upon the impeller and therefore on the bearings was investigated for a centrifugal impeller in a spiral volute in the presence of cavitation.ududAn experiment in forced vibration was made to study the fluid-induced rotordynamic force on an impeller whirling around its machine axis of rotationudin water. The whirl trajectory of the rotor is prescribed to be a circular orbitudof a fixed radius. A dynamometer mounted behind the rotor and rotating with itudmeasures the force on the impeller. The force measured is a combination of a steadyudradial force due to volute asymmetries and an unsteady force due to the eccentricudmotion of the rotor. These measurements have been carried out over a full range ofudwhirl/impeller speed ratios at different flow coefficients for various turbomachines.udA destabilizing force was observed over a region of positive whirl ratio. Cavitation corresponding to a three percent head loss did not have a significant effect upon this destabilizing force. However, a lesser degree of cavitation at the design point for the impeller-volute combination tested increased this destabilizing force for a particular set of whirl ratios.
机译:旋转的叶轮和工作流体的相互作用将力施加到转子上。这些由流体引起的力会引起自激旋转,旋翼在此偏离并沿着偏心至其未偏转位置的轨迹旋转。在设计涡轮机时,特别是在以超高速运转的涡轮机中,重要的是能够预测作用在机器各个部件上的流体感应力,包括稳态的和非稳态的。在有气蚀的情况下,对螺旋蜗壳中的离心式叶轮研究了作用在叶轮上并因此作用在轴承上的流体诱导的 udrotordynamic力。 ud ud进行了强迫振动实验,研究了流体诱导的转子动力学力叶轮绕着机器旋转轴乌迪纳水旋转。转子的涡旋轨迹被规定为具有固定半径的圆形轨道。测功机安装在转子后方并随其旋转,测出叶轮上的力。测得的力是由于蜗壳不对称而产生的稳定径向力和由于转子的偏心产生的不稳定力的组合。这些测量是在各种涡轮机的不同流量系数下,在整个 udwhir /叶轮速度比范围内进行的。 ud在正涡比区域观察到去稳定力。相应于3%的水头损失的气蚀对该稳定力没有显着影响。但是,对于一组特定的涡流比,在测试的叶轮-蜗壳组合设计点上出现的气穴程度较小,从而增加了这种不稳定力。

著录项

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    Franz Ronald John;

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  • 年度 1989
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