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Dynamic analysis of a planar multi-stage centrifugal pump rotor system based on a novel coupled model

机译:基于新型耦合模型的平面多级离心泵转子系统的动态分析

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摘要

The coupled rotor-dynamics issue is always one of the most important and difficult research for multi-stage pump system due to the complexity of multiple fluid-induced forces and multi-degree of freedom rotor model. In this paper, the Reynolds equation of journal bearing is solved by the finite difference method and corresponding fluid-induced force is obtained by small parameter method. In addition, the dynamic coefficients of annular seal are calculated according to bulk-flow model and perturbation method. Furthermore, a novel rotor system model fully considering the coupled effects of bearing and seal is proposed by matrix manipulation method. Then the coupled rotor-dynamics for multi-stage pump system is investigated subsequently based on the novel model. Finally, the Lomakin effect of annular seal is studied in detail. The calculated results indicate that the fluid-induced force of seal exerting on the rotor system should not be ignored in the calculation of coupled dynamic characteristics. Smaller length and clearance of annular seal are good for the stability of coupled rotor system. Compared with asymmetric structure, the symmetric sealing structure has a larger stability margin on condition of ‘rigid rotor’ status. Moreover, the Lomakin effect on stability presents linear superposition property. The proposed method can provide valuable reference for the design and modeling of multi-dimensional matrix system.
机译:由于多种流体诱导的力和多程度的自由式转子模型,耦合的转子动力学问题始终是多级泵系统最重要和对多级泵系统的研究之一。本文通过小参数法通过有限差分法解决了轴颈轴承的雷诺式方程,并通过小参数法获得了相应的流体诱导力。另外,根据体流模型和扰动方法计算环形密封的动态系数。此外,通过矩阵操作方法提出了一种充分考虑轴承和密封耦合效果的新型转子系统模型。然后基于新型模型,随后研究了多级泵系统的耦合转子动力学。最后,详细研究了环形密封的Lomakin效应。计算结果表明,在耦合动态特性的计算中,不应忽略在转子系统上施加在转子系统上的流体诱导的力。环形密封的较小长度和间隙对于耦合转子系统的稳定性是良好的。与非对称结构相比,对称密封结构具有较大的稳定性余量,在“刚性转子”状态的状态下。此外,Lomakin对稳定性的影响呈现线性叠加性。该方法可以为多维矩阵系统的设计和建模提供有价值的参考。

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