Volume 37 Issue 3
Sep.  2023
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LIU Zhuo, YAN Yecui. Research on axial U-shaped water channel cooling structure of hub motor[J]. Journal of Shanghai University of Engineering Science, 2023, 37(3): 240-246. doi: 10.12299/jsues.23-0183
Citation: LIU Zhuo, YAN Yecui. Research on axial U-shaped water channel cooling structure of hub motor[J]. Journal of Shanghai University of Engineering Science, 2023, 37(3): 240-246. doi: 10.12299/jsues.23-0183

Research on axial U-shaped water channel cooling structure of hub motor

doi: 10.12299/jsues.23-0183
  • Received Date: 2023-08-17
  • Accepted Date: 2023-08-17
  • Publish Date: 2023-09-30
  • In order to solve the problems of heat dissipation difficulty and high temperature of end windings in the operation of electric vehicles, a new type of axial U-shaped water channel cooling structure design was proposed by taking an external rotor hub motor of electric vehicles as the research object. Firstly, the magnetothermal coupling simulation model of the hub motor was established, the temperature field distribution of the motor was obtained through the motor loss analysis, and the design and fluid-thermal coupling analysis of the axial U-shaped waterway were carried out. The results show that the use of U-shaped cooling channel could effectively improved the high temperature inside the motor, especially the high temperature problem of the end winding, and the temperature rise was reduced by 28.7%.
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  • [1]
    LI L, LI W L, LI D, et al. Influence of sleeve thickness and various structures on eddy current losses of rotor parts and temperature field in surface mounted permanent magnet synchronous motor[J] . IET E-lectric Power Applications,2018,12(8):1183 − 1191. doi: 10.1049/iet-epa.2018.0083
    [2]
    余中军, 陈祖涛, 杨君坦. 电机端部绕组表面对流换热系数的研究[J] . 大电机技术,2023(3):8 − 12. doi: 10.3969/j.issn.1000-3983.2023.03.002
    [3]
    杨学威, 张小发. 电机壳体Z字型冷却水道设计[J] . 电机与控制应用,2016,43(9):62 − 65.
    [4]
    王晓远, 杜静娟. CFD分析车用电机螺旋水路的散热特性[J]. 电工技术学报, 2018, 33(4): 955-963.
    [5]
    WANG X. Heat dissipation of three permanent magnet synchronous motors integrated with heat pipes[J]. International Journal of Thermophysics, 2021, 42(5): 1−20.
    [6]
    吴柏禧, 万珍平, 张昆, 等. 考虑温度场和流场的永磁同步电机折返型冷却水道设计[J]. 电工技术学报, 2019, 34(11): 2306−2314.
    [7]
    孟大伟, 刘兆江, 孙兵成. 采煤机用防爆型水冷电机的设计[J] . 哈尔滨理工大学学报,2009,14(2):55 − 58. doi: 10.15938/j.jhust.2009.02.016
    [8]
    李翠萍, 柴凤, 程树康. 冷却水流速对汽车水冷电机温升影响研究[J]. 电机与控制学报, 2012, 16(9): 1−8.
    [9]
    王钰琦. 永磁同步电机温度场分析与冷却结构设计[D]. 杭州: 浙江大学, 2020.
    [10]
    陈浈斐, 邢宁, 马宏忠, 等. 分数槽永磁电机永磁体谐波涡流损耗建模与分析[J]. 电工技术学报, 2022, 37(14): 3514−3527.
    [11]
    王光辉, 田德文, 刘华源. 车用轮毂电机多物理场耦合分析[J]. 车辆与动力技术, 2016(3): 27−32.
    [12]
    王晓远, 高鹏. 电动汽车用油内冷永磁轮毂电机三维温度场分析[J]. 电机与控制学报, 2016, 20(3): 36−42.
    [13]
    刘细平, 曾剑, 徐晨. 电动汽车用开关磁阻电机温度场分析研究[J] . 微特电机,2017,45(1):23 − 25 , 43.
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