Numerical Simulation on the Flow and Temperature Field in the High-Power Motor

被引:5
|
作者
Yang, Guanglu [1 ]
Liu, Yubao [2 ]
Sun, Qingling [2 ]
Qiao, Jianwei [2 ]
Wang, Tao [3 ]
机构
[1] China Tobacco Henan Ind Co Ltd, Nanyang Cigarette Factory, Nanyang 473007, Henan, Peoples R China
[2] Wolong Elect Nanyang Explos Protect Grp Co Ltd, Nanyang 473007, Henan, Peoples R China
[3] Zhengzhou Univ Light Ind, Zhengzhou 450000, Peoples R China
基金
中国国家自然科学基金;
关键词
High power motor; ventilating structure; temperature distribution; CFD; PATH; CFD;
D O I
10.1109/ACCESS.2023.3302259
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The ventilation structure affects the internal wind road and air distribution of the motor directly, and then has a great influence on motor heat dissipation. Focusing on the 5000kW 10kV high-power motor, this paper establishes a numerical analysis model which has been validated by experiment. Based on the established numerical model, the flow field and temperature field inside the motor under the conditions of variable ambient temperature and variable inlet air velocity are analyzed. The finding demonstrates that the maximum temperature and average temperature of the stator and rotor of the motor increase with the increase of the ambient temperature, and the increase rate of change is basically unchanged, and that decrease with the increase of the inlet air velocity. When the inlet air velocity increase to a certain value, the maximum temperature and average temperature of the motor stator and rotor decrease relatively slowly. This thesis analyses the motor ventilation cooling system and temperature distribution, and provides a theoretical basis for the optimization of motor ventilation structure.
引用
收藏
页码:82830 / 82837
页数:8
相关论文
共 50 条
  • [1] Numerical Analysis of Gas Flow Field of High-Power Excimer Laser
    Yang Lizhao
    Fang Xiaodong
    You Libing
    CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2022, 49 (21):
  • [2] Numerical simulation and analysis of temperature and flow field of high-speed axial piston motor pump
    Gao, Dianrong
    Zhang, Zongyi
    Sun, Yanan
    Xu, Senhao
    Liu, Jingcheng
    Zhang, Yan
    JOURNAL OF ENGINEERING-JOE, 2019, (13): : 127 - 131
  • [3] Numerical Simulation of Molten Steel Flow Field in a Ladle Induced by Low-Frequency High-Power Ultrasound
    Guo, Qing
    Chen, Min
    Xu, Lei
    Cheng, Weihao
    STEEL RESEARCH INTERNATIONAL, 2024, 95 (12)
  • [4] Flow simulation and analysis of high-power flow batteries
    Knudsen, E.
    Albertus, P.
    Cho, K. T.
    Weber, A. Z.
    Kojic, A.
    JOURNAL OF POWER SOURCES, 2015, 299 : 617 - 628
  • [5] Numerical simulation of flow field in a cyclone separator under high temperature
    Department of Chemical Engineering, China University of Petroleum, Beijing 102249, China
    Guocheng Gongcheng Xuebao, 2007, 5 (871-876):
  • [6] Analysis on Flow and Temperature Field of High-Power Magnetorheological Fluid Transmission Device
    Wu, Xiangfan
    Guo, Yangyang
    Tian, Zuzhi
    Xie, Fangwei
    Ji, Jinjie
    Li, Haopeng
    APPLIED SCIENCES-BASEL, 2022, 12 (10):
  • [7] Numerical simulation of equilibrium air plasma flow in the induction chamber of a high-power plasmatron
    Vasil'evskii, S. A.
    Kolesnikov, A. F.
    Bryzgalov, A. I.
    Yakush, S. E.
    CONTINUUM MECHANICS AND THERMODYNAMICS, 2023, 35 (04) : 1689 - 1701
  • [8] Numerical simulation of equilibrium air plasma flow in the induction chamber of a high-power plasmatron
    S. A. Vasil’evskii
    A. F. Kolesnikov
    A. I. Bryzgalov
    S. E. Yakush
    Continuum Mechanics and Thermodynamics, 2023, 35 (4) : 1689 - 1701
  • [9] NUMERICAL-SIMULATION OF HIGH-POWER RF SOURCES
    DROBOT, AT
    SEFTOR, L
    KO, K
    HANERFELD, H
    HERRMANNSFELDT, WB
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 1983, 30 (04) : 3633 - 3635
  • [10] Numerical investigation into flow field distribution in high-power LED phosphor coating process
    Guo, Qi-Wei
    Hu, Yue-Ming
    Li, Zhi-Fu
    Huanan Ligong Daxue Xuebao/Journal of South China University of Technology (Natural Science), 2014, 42 (05): : 1 - 8