• DocumentCode
    3164117
  • Title

    Study of Temperature Distribution of λ/4 Type EM-absorber Using Resistive Film under High Power Injection

  • Author

    Watanabe, Shinya ; Saito, Kota ; Taniguchi, Akitoshi ; Hashimoto, Osamu ; Saito, Toshifumi ; Kurihara, Hiroshi

  • Author_Institution
    Dept. of Electr. Eng. & Electron., Aoyama Gakuin Univ., Kanagawa
  • fYear
    2006
  • fDate
    10-15 Sept. 2006
  • Firstpage
    1028
  • Lastpage
    1031
  • Abstract
    In this paper, first, FDTD, semi-implicit method for pressure linked equations (SIMPLE), Monte Carlo and radiative energy absorption distribution (READ) methods are combined to calculate electromagnetic field and all the heat transfer phenomena of heat transport, heat transfer by air convection and heat radiation (It is called FDTD-SIMPLE-MR method.). The temperature distribution of A/4 type EM-absorber using resistive film under high power injection is calculated using FDTD-SIMPLE-MR method. Next, the high power injection experiment is conducted using an absorber and high power RF instruments to get the temperature distribution experimentally. Finally, the calculated and measured temperature distributions of the absorber are compared. As a result, the calculated temperature distribution by FDTD-SIMPLE-MR method agrees well with the measured one and the validity of FDTD-SIMPLE-MR method is confirmed
  • Keywords
    Monte Carlo methods; electromagnetic wave absorption; finite difference time-domain analysis; microwave materials; temperature distribution; EM absorber; FDTD methods; Monte Carlo method; SIMPLE; air convection; electromagnetic field; electromagnetic heating; heat radiation; heat transfer phenomena; high power injection; radiative energy absorption distribution method; resistive film; semi-implicit method pressure linked equations; temperature distribution; Cogeneration; Electromagnetic fields; Electromagnetic heating; Electromagnetic wave absorption; Equations; Finite difference methods; Heat transfer; Monte Carlo methods; Temperature distribution; Time domain analysis; Electromagnetic heating; FDTD methods;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microwave Conference, 2006. 36th European
  • Conference_Location
    Manchester
  • Print_ISBN
    2-9600551-6-0
  • Type

    conf

  • DOI
    10.1109/EUMC.2006.281099
  • Filename
    4057998