• DocumentCode
    1961520
  • Title

    Impact of Nearby Adiabatic and Isothermal Barriers on the Thermal Characteristics of a Vertically Oriented Pot-core Magnetic Component

  • Author

    Farahmand, F. ; Lavers, J.D. ; Dawson, F.P.

  • Author_Institution
    Edward S. Rogers Sr. Dept. of Electr. & Comput. Eng., Toronto Univ., Ont.
  • fYear
    0
  • fDate
    0-0 0
  • Firstpage
    160
  • Lastpage
    160
  • Abstract
    The coupled problem of estimating the temperature rise due to losses in a vertically oriented magnetic component is considered. The principle contributions in this paper are two-fold: (i) coupling between the losses and thermal problems for the component is addressed taking into account the effects of nearby barriers, (ii) the complication that the convection coefficient is not known accurately is overcome by means of solving a coupled electro-thermal - air flow problem in order to characterize heat transfer to the ambient surroundings. It is shown that the coupling between loss and temperature in the magnetic material is weak since the deviation in temperature is not more than 13% at worst if the loss is considered constant. Additionally, the convection coefficients of the core top and side surfaces are shown not to be significantly influenced by the boundary condition imposed on the obstacle. The boundary conditions substantially change the temperature by introducing an additional path for heat transfer. Furthermore, the contribution of radiation is found to be roughly 50% of the total loss regardless of the barrier distance, height and boundary condition
  • Keywords
    convection; magnetic materials; adiabatic barriers; air flow problem; boundary conditions; convection coefficient; electro-thermal problem; heat transfer; isothermal barriers; magnetic material; temperature rise estimation; vertically oriented magnetic component; vertically oriented pot-core magnetic component; Boundary conditions; Computational fluid dynamics; Couplings; Equations; Heat transfer; Isothermal processes; Magnetic materials; Temperature; Thermal conductivity; Thermal resistance;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electromagnetic Field Computation, 2006 12th Biennial IEEE Conference on
  • Conference_Location
    Miami, FL
  • Print_ISBN
    1-4244-0320-0
  • Type

    conf

  • DOI
    10.1109/CEFC-06.2006.1632952
  • Filename
    1632952