350 rub
Journal Radioengineering №7 for 2017 г.
Article in number:
Heating of the moving object in microwave ray type chamber
Type of article: scientific article
UDC: 621.365
Authors:

K.N. Ogurtsov – Ph. D. (Eng.), Dr. Sc. Candidate, Associate Professor, Department «Power Supply and

Electrotechnology», Yuri Gagarin State Technical University of Saratov

E-mail: docento77@rambler.ru

I.N. Antonov – Dr. Sc. (Eng.), Professor, Department «Power Supply and Electrotechnology», 

Yuri Gagarin State Technical University of Saratov

E-mail: antonov2007@mail.ru

Abstract:

The propagation of a plane electromagnetic wave in a multi-parametric environment with varying dielectric properties is reviewed in this publication. We solved the Helmholtz’s equation with the appropriate boundary conditions. The mathematical modeling of the electromagnetic field distribution, as well as of internal heat sources in multilayer parametric environment is conducted. The paper proposed to use an inclined reflector for returning the reflected energy from the surface of the heated object. It allows you to increase the proportion accounted for mathematical modeling of energy and improve the efficiency of microwave electrothermal devises. The results of solving the joint problem electrodynamics and thermal conductivity for moving dielectric heating in the ray chamber with tilting reflector, and without it are presented.

Pages: 98-102
References
  1. Ogurczov K.N. i dr. Metod uvelicheniya ravnomernosti raspredeleniya SVCh-moshhnosti ot neskol'kix ruporny'x antenn po poverxnosti nagrevaemogo ob''ekta // Antenny'. 2015. № 2 (213). S. 31−34.
  2. Patent RF. Cvidetel'stvo № 2014661928 ot 18.11.2014. Matematicheskoe modelirovanie nagreva dvumerny'x ploskix ob''ektov v SVCh kamerax luchevogo tipa s uchetom polnogo otrazheniya ot nizhnej ploskosti. Ogurczov K.N., Karpova O.O. 
  3. Nikol'skij V.V., Nikol'skaya T.I. E'lektrodinamika i rasprostranenie radiovoln: Ucheb. posobie. Izd. 5-e. M.: URSS. 2011. 542 s.
  4. Ogurczov K.N., Suzdal'czev S.Yu., Gdalev A.V. Poluchenie nanostruktur oksida czinka v SVCh-e'lektromagnitnom pole / Rossijskie nanotexnologii. 2015. T. 10. № 9−10. S. 43−46.
Date of receipt: 28 июня 2017 г.