The Dynamic Analysis of an Energy Storage Flywheel System With Hybrid Bearing Support

Author:

Wang Hongchang1,Jiang Shuyun1,Shen Zupei2

Affiliation:

1. School of Mechanical Engineering, Southeast University, 2 Southeast Road, JiangNing District, NanJing, 210096, China

2. Department of Engineering Physics, Tsinghua University, Beijing 100084, China

Abstract

Active magnetic bearings and superconducting magnetic bearings were used on a high-speed flywheel energy storage system; however, their wide industrial acceptance is still a challenging task because of the complexity in designing the elaborate active control system and the difficulty in satisfying the cryogenic condition. A hybrid bearing consisting of a permanent magnetic bearing and a pivot jewel bearing is used as the support for the rotor of the energy storage flywheel system. It is simple and has a long working life without requiring maintenance or an active control system. The two squeeze film dampers are employed in the flywheel system to suppress the lateral vibration, to enhance the rotor leaning stability, and to reduce the transmitted forces. The dynamic equation of the flywheel with four degrees of complex freedom is built by means of the Lagrange equation. In order to improve accuracy, the finite element method is utilized to solve the Reynolds equation for the dynamic characteristics of the squeeze film damper. When the calculated unbalance responses are compared with the test responses, they indicate that the dynamics model is correct. Finally, the effect of the squeeze film gap on the transmitted force is analyzed, and the appropriate gap should be selected to cut the energy loss and to control vibration of the flywheel system.

Publisher

ASME International

Subject

General Engineering

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A modeling method of flywheel rotor based on finite element and model simplification;Archive of Applied Mechanics;2022-01-12

2. Suppression of low-frequency vibration for rotor-bearing system of flywheel energy storage system;Mechanical Systems and Signal Processing;2019-04

3. Reducing friction power losses of flywheel energy storage systems using PTFE composites: A technical note;Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology;2019-03-13

4. Study on the added mass effect in squeeze-film dampers;Journal of Mechanical Science and Technology;2018-06

5. Dynamics of Flywheel Energy Storage System With Permanent Magnetic Bearing and Spiral Groove Bearing;Journal of Dynamic Systems, Measurement, and Control;2017-09-20

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