Modeling and optimization of microwave heating in cylindrical volumes

Authors

  • Gennadiy A. Morozov Kazan National Research Technical University, Russian Federation
  • Vladimir I. Anfinogentov Kazan National Research Technical University, Russian Federation
  • Oleg G. Morozov Kazan National Research Technical University, Russian Federation https://orcid.org/0000-0003-4779-4656
  • Sergey V. Smirnov Kazan National Research Technical University, Russian Federation
  • Svetlana R. Ganieva Kazan National Research Technical University, Russian Federation

DOI:

https://doi.org/10.1109/ICATT.2017.7972587

Keywords:

microwave, mathematical model, uniform heating, multimode excitation, dielectric heating in a stream

Abstract

This paper considers the problem of formation and optimization of the electromagnetic fields in dielectrics, filling a metal cylinder. The results of mathematical modeling of dielectric heating of liquid in the stream are presented.

References

G. A. Morozov, Y. E. Sedelnikova (eds.), Low-Intensity Microwave Technology [in Russian]. Moscow: Radiotekhnika. 2003.

V. I. Anfinogentov, “Numerical simulation of microwave electromagnetic heating of an incompressible viscous liquid moving in cylindrical pipe,” Electromagnetic Waves and Electronic Systems, Vol. 11, no. 2-3, 2006.

G. A. Morozov, V. I. Anfinogentov, M. R. Galimov, O. G. Morozov, “Mathematical modeling of the UHF heating of multilayered liquid in static cylindrical volume,” Proc. of 5th Int. Conf. on Antenna Theory and Techniques, ICATT, 24-27 May 2005, Kyiv, Ukraine. IEEE, 2005, pp. 494-496. DOI: http://doi.org/10.1109/ICATT.2005.1497029.

V. I. Anfinogentov, “Mathematical modeling of dielectrics microwave heating,” Proc. of 12th Int. Conf. on Microwave and Telecommunication Technology, CriMiCo, 9-13 Sept. 2002, Sevastopol, Crimea, Ukraine. IEEE, 2002, pp. 573-574. DOI: http://doi.org/10.1109/CRMICO.2002.1137361.

S. M. Weinstock (ed.), Pipeline Transportation of Crude Oil. Vol. 1. Moscow: Nedra-Biznestsentr, 2002.

L. I. Sedov, Continuum Mechanics. Vol. 2. Moscow: Nauka, 1973.

Published

2017-07-15