Vibration characteristics of triple-gear-rotor system in compressed air energy storage under variable torque load

Author:

Wang Xinran12ORCID,Zhu Yangli1,Li Wen12,Hu Dongxu1,Zhang Xuehui1,Chen Haisheng123ORCID

Affiliation:

1. Institute of Engineering Thermophysics, Chinese Academy of Sciences, Beijing, China

2. University of Chinese Academy of Sciences, Beijing, China

3. National Energy Large Scale Physical Energy Storage Technologies R&D Center (Bijie), Bijie, China

Abstract

This paper focuses on the effects of the off-design operation of CAES on the dynamic characteristics of the triple-gear-rotor system. A finite element model of the system is set up with unbalanced excitations, torque load excitations, and backlash which lead to variations of tooth contact status. An experiment is carried out to verify the accuracy of the mathematical model. The results show that when the system is subjected to large-scale torque load lifting at a high rotating speed, it has two stages of relatively strong periodicity when the torque load is light, and of chaotic when the torque load is heavy, with the transition between the two states being relatively quick and violent. The analysis of the three-dimensional acceleration spectrum and the meshing force shows that the variation in the meshing state and the fluctuation of the meshing force is the basic reasons for the variation in the system response with the torque load. In addition, the three rotors in the triple-gear-rotor system studied show a strong similarity in the meshing states and meshing force fluctuations, which result in the similarity in the dynamic responses of the three rotors.

Funder

Guizhou Province Large Scale Physical Energy Storage Engineering Technology Research Center program

International Partnership Program, Bureau of International Cooperation of Chinese Academy of Sciences

National Natural Science Foundation of China

National Key R&D Plan

Publisher

SAGE Publications

Subject

Multidisciplinary

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