Wang Xinran, Zhu Yangli, Li Wen, Hu Dongxu, Zhang Xuehui, Chen Haisheng
Institute of Engineering Thermophysics, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
Sci Prog. 2021 Jan-Mar;104(1):36850420987058. doi: 10.1177/0036850420987058.
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.
本文重点研究压缩空气储能系统(CAES)非设计工况运行对三齿轮转子系统动态特性的影响。建立了该系统的有限元模型,考虑不平衡激励、扭矩载荷激励以及导致齿面接触状态变化的齿侧间隙。开展了实验以验证数学模型的准确性。结果表明,当系统在高转速下承受大规模扭矩载荷提升时,在扭矩载荷较轻时有两个相对较强周期性阶段,在扭矩载荷较重时有混沌阶段,两种状态之间的转变相对快速且剧烈。对三维加速度谱和啮合力的分析表明,啮合状态的变化和啮合力的波动是系统响应随扭矩载荷变化的基本原因。此外,所研究的三齿轮转子系统中的三个转子在啮合状态和啮合力波动方面表现出很强的相似性,这导致三个转子的动态响应具有相似性。