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Characteristics of Centrifugal Pump Rotor System under Exciting Forces Generated by Shroud Leakage Flows

机译:护罩泄漏流产生的激振力下离心泵转子系统的特性。

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In order to investigate the flow-induced vibration in the impeller clearance of centrifugal pump, and make the rotordynamic prediction of the centrifugal pump rotor system, a rotordynamic force model is established which is indispensable to the impeller-rotor system dynamics analysis. The coefficient in the dynamic force model is solved by quasi-steady CFD solution. Multiple quasi-steady solutions of an eccentric three-dimensional model at a series of relative spin velocity yield the rotordynamic forces at different whirl frequency ratios, and a second-order least-square fitting of the rotordynamic forces generates the skew-symmetric stiffness, damping, and mass matrices. Based on the work, the finite element method is applied to establish the model of turbo pump impeller-rotor system. The phenomenon of the fluid oscillation and some typical features are explained from the perspective of oscillation fluid mechanics. The results show complicated frequency characteristics presents in the turbo pump rotor vibration due to the exciting forces generated by shroud leakage flows.
机译:为了研究离心泵叶轮间隙中的流动引起的振动,并对离心泵转子系统进行转子动力学预测,建立了转子动力模型,该模型对于叶轮-转子系统动力学分析是必不可少的。动态力模型中的系数通过准稳态CFD解决方案求解。偏心三维模型在一系列相对自旋速度下的多个拟稳态解会以不同的旋转频率比产生转子动力,并且转子动力的二阶最小二乘拟合会产生倾斜对称的刚度,阻尼以及质量矩阵。在此基础上,应用有限元方法建立了涡轮泵叶轮-转子系统模型。从振动流体力学的角度解释了流体振动现象和一些典型特征。结果表明,由于护罩泄漏流产生的激振力,涡轮泵转子振动中存在复杂的频率特性。

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