首页> 外文会议>ASME Turbine Technical Conference and Exposition >AN ANALYTICAL MODEL OF FLOW-INDUCED ROTORDYNAMIC FORCES IN SHROUDED CENTRIFUGAL PUMP IMPELLERS
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AN ANALYTICAL MODEL OF FLOW-INDUCED ROTORDYNAMIC FORCES IN SHROUDED CENTRIFUGAL PUMP IMPELLERS

机译:覆盖离心泵叶轮中流动磁动力学力的分析模型

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Shrouded centrifugal pumps are widely used in industrial applications such as process machines, and they can suffer from rotordynamic instability. Eccentric shrouded impellers induce non-axisymmetric flow fields which, in turn, lead to rotordynamic forces. Therefore, a new analytical flow model for shrouded pump impellers (which considers non-axisymmetric flow fields in the upstream inlet duct, shrouded impeller, and downstream) has been developed using an actuator disk approach. The model can predict impeller rotordynamic stiffness values from pump geometry and operating conditions. When compared to the available pump test data [1], the new model's predicted stiffness coefficients agree well with the measured data. The new model's predictions show the strong influence of the non-axisymmetric shroud inlet flow on the rotordynamic stiffness forces. The shroud inlet flow non-axisymmetry, in turn, results from the non-axisymmetric flows upstream of and inside the impeller blade passage induced by impeller eccentricity.
机译:笼罩的离心泵广泛用于工业应用,如工艺机器,它们可以遭受旋转动力稳定性。偏心笼罩的叶轮诱导非轴对称流场,又导致旋转力力。因此,已经使用致动器盘方法开发了用于遮蔽泵叶轮的新分析流量模型(将上游入口管道中的非轴对称流动,覆盖的叶轮和下游)进行了开发的。该模型可以预测泵几何和操作条件的叶轮旋转刚度值。与可用的泵测试数据相比[1]相比,新模型的预测刚度系数与测量数据很好。新模型的预测显示了非轴对称护罩入口流量对旋转动力刚度力的强烈影响。护罩入口流动非轴对称,又导致由叶轮偏心诱导的叶轮叶片通道上游和内部的非轴对称流动。

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