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CFD-Rotordynamics Sequential Coupling Simulation Approach for the Flow-Induced Vibration of Rotor System in Centrifugal Pump

机译:CFD-圈动力学顺序耦合耦合仿真仿真仿真方法,用于离心泵的转子系统振动

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Vibration of the rotor system is closely related with the operation stability of centrifugal pump, and it is inevitably induced by the unsteady inner flow. An unsteady computational fluid dynamics model coupling with a rotordynamics model was presented, and the corresponding numerical calculation program, including a self-designed rotordynamics code, was developed on the commercial package ANSYS Workbench. The validity of the numerical calculation model was verified by a hydraulic performance and vibration test based on an industrial centrifugal pump. The hydraulic radial forces on impeller, pressure pulsation, deformation, and vibration of the main shaft under nine different flow rates were systematically investigated and explained preliminarily from the view of inner unstable flow. Results show that the blade passing frequency is the dominant frequency in the fluctuation of the above dynamical behaviors, which is closely related to the rotor–stator interaction between the impeller and volute casing. This study built the connection between internal fluid flow in the centrifugal pump and the vibration of its external rotor structure, and may provide theoretical references for the design of vibration-reducing and safety monitoring strategies design of centrifugal pumps.
机译:转子系统的振动与离心泵的操作稳定性密切相关,并且不可避免地被不稳定的内流诱导。提出了一种与圈动力学模型的不稳定计算流体动力学模型,并且在商业包ANSYS工作台上开发了相应的数值计算程序,包括自行设计的旋转性码。基于工业离心泵的液压性能和振动试验验证了数值计算模型的有效性。系统地研究了叶轮上的叶轮,压力,变形和振动的液压径向力,并从内部不稳定流动的视野中初步地研究。结果表明,叶片传递频率是上述动态行为波动中的主导频率,其与叶轮和蜗壳壳之间的转子 - 定子相互作用密切相关。本研究建立了离心泵内部流体流与其外部转子结构的振动之间的连接,并可为离心泵的减振和安全监测策略设计提供理论参考。

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