• DocumentCode
    2716307
  • Title

    Mathematical modelling of dielectrics microwave heating

  • Author

    Anfinogentov, V.I.

  • Author_Institution
    Res. Center of Appl. Electrodynamics, Kazan State Tech. Univ., Russia
  • fYear
    2002
  • fDate
    9-13 Sept. 2002
  • Firstpage
    573
  • Lastpage
    574
  • Abstract
    Considered in this work is the microwave heating of a semi-infinite dielectric layer at a known surface distribution of microwave power. The paper presents calculation results of the temperature in a dielectric layer for a single microwave radiator, as well as for a multi-element radiator system. We present an analytical discussion of the 2D task concerning the non-stationary thermal conductivity for a semi-infinite dielectric layer, when the plane electromagnetic wave is incident on its surface. For the wave, the power surface distribution is assumed to be known. The basic requirement, specific to microwave heating plants, is temperature field uniformity for the whole volume of processed material or some of its parts. In order to obtain uniform microwave heating of the object, we used a multi-element radiating system, located above its surface. The experimental results show that multi-element radiator systems allow us to obtain a more uniform temperature distribution, compared with single radiators.
  • Keywords
    dielectric heating; microwave generation; microwave heating; temperature distribution; thermal analysis; thermal conductivity; dielectric layer temperature; microwave dielectric heating mathematical modelling; microwave heating plants; microwave power surface distribution; processed material temperature field uniformity; semi-infinite dielectric layer nonstationary thermal conductivity; single/multi-element microwave radiators; surface incident plane electromagnetic waves; uniform temperature distribution; Dielectrics; Electrodynamics; Electromagnetic analysis; Electromagnetic heating; Electromagnetic scattering; IEEE catalog; Mathematical model; Organizing; Temperature; Thermal conductivity;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microwave and Telecommunication Technology, 2002. CriMiCo 2002. 12th International Conference
  • Print_ISBN
    966-7968-12-X
  • Type

    conf

  • DOI
    10.1109/CRMICO.2002.1137361
  • Filename
    1137361