• DocumentCode
    70475
  • Title

    Electromagnetic and Thermal Analysis of Open-Circuit Air Cooled High-Speed Permanent Magnet Machines With Gramme Ring Windings

  • Author

    Jianning Dong ; Yunkai Huang ; Long Jin ; Baocheng Guo ; Heyun Lin ; Jiyong Dong ; Ming Cheng ; Hui Yang

  • Author_Institution
    Eng. Res. Center for Motion Control of Minist. of Educ., Southeast Univ., Nanjing, China
  • Volume
    50
  • Issue
    11
  • fYear
    2014
  • fDate
    Nov. 2014
  • Firstpage
    1
  • Lastpage
    4
  • Abstract
    This paper investigates the electromagnetic and thermal performances of the open-circuit air cooled high-speed permanent magnet motor (HSPMM) with Gramme ring windings. Take a 36 kr/min, 75 kW HSPMM as an example, the electromagnetic losses, in particular the rotor eddy current loss and the stator iron loss of the motor are calculated. The influences of switching frequency and air gap length on these losses are studied. Then, a computational fluid dynamics (CFD) model is composed to calculate its coolant flow parameters and the temperature distribution. Based on the CFD results, a lumped-parameter thermal network (LPTN) is created and verified. Then, a 24 kr/min, 140 kW prototype with the same structure and cooling configuration is designed using the LPTN. Experiments show that the calculated results are with reasonable accuracy. Finally, a sensitivity analysis is applied to the 140 kW prototype based on the LPTN to disclose the influences of different parameters on the rotor permanent magnet temperature rise.
  • Keywords
    computational fluid dynamics; cooling; eddy currents; machine windings; magnetic circuits; magnetic cooling; magnetic leakage; permanent magnet motors; rotors; stators; temperature distribution; CFD model; Gramme ring winding; HSPMM; LPTN analysis; air gap length; computational fluid dynamics model; coolant flow parameter; electromagnetic loss analysis; lumped-parameter thermal network analysis; open-circuit air cooled high-speed permanent magnet machine; power 140 kW; power 75 kW; rotor eddy current loss; rotor permanent magnet; stator iron loss; temperature distribution; Atmospheric modeling; Computational fluid dynamics; Cooling; Rotors; Temperature sensors; Windings; Computational fluid dynamics (CFD); high-speed permanent magnet motor (HSPMM); loss analysis; lumped-parameter thermal networks (LPTNs);
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2014.2329011
  • Filename
    6971537