Computer Simulations of Microwave Heating with Coupled Electromagnetic, Thermal, and Kinetic Phenomena
关键词:
Computer Simulations of Microwave Heating with Coupled Electromagnetic, Thermal, and Kinetic Phenomena摘要
A new functionality for the hybrid electromagnetic – thermodynamic simulations of microwave heating scenarios in the time domain is presented. The new functionality consists in the modelling of the heated load movement throughout the simulated process. Various types of the movement trajectories have been allowed for, including load rotation and load translation along user-defined piecewise-linear paths. Key aspects of this novel approach are addressed and justified from the computational electromagnetics perspective. Multiphysics simulation results are presented for a fictious and a commercially available microwave oven.
##plugins.generic.usageStats.downloads##
参考
M. Celuch and W. K. Gwarek, "Properties of
the FDTD Method Relevant to the Analysis of
Microwave Power Problems," J. Microwave
Power and Electromagnetic Energy, vol. 41,
no.4, pp. 62-80, 2007.
M. Celuch-Marcysiak, W. K. Gwarek, and M.
Sypniewski, "A Novel FDTD System for
Microwave Heating and Thawing Analysis
with Automatic Time-Variation of Enthalpy-
Dependent Media Parameters," in Advances in
Microwave and Radio-Frequency Processing,
Springer Verlag, pp. 199-209, 2006.
P. Kopyt and M. Celuch, “Coupled
Electromagnetic-Thermodynamic Simulations
of Microwave Heating Problems using the
FDTD Algorithm,” J. Microwave Power and
Electromagnetic Energy, vol. 41, no. 4, pp. 18-
, 2007.
P. Kopyt, M. Celuch-Marcysiak, and W. K.
Gwarek, "FDTD Modelling of Electromagnetic
Power Dissipation in Rotated Objects," 3rd
World Congress on Microwave & Radio
Frequency Applications, Sydney, Australia,
session T2C, Sept. 2002.
M. Celuch and P. Kopyt, "Modeling
Microwave Heating in Foods, " in:
Development of packaging and products for
use in microwave ovens, ed. M. W. Lorence
and P. S. Pesheck, Woodhead Publishing
Limited and CRC Press LLC, pp. 305-348,
Aug. 2009.
M. Celuch, M. Soltysiak, and U. Erle,
"Coupled Electromagnetic - Thermodynamic
Simulations Including Load Movement," The
th Annual Review of Progress in
Computational Electromagnetics ACES-2010,
Tampere, Finland, pp.410-415, April 2010.
QuickWave-3D (1997-2010), QWED Sp. z
o.o., http://www.qwed.eu.
P. Kopyt and M. Celuch, “Coupled FDTD -
FEM Approach to Modelling of Microwave
Heating Process,” Fifth IEE Intl. Conf. on
Computation in Electromagnetics CEM 2004,
Stratford-upon-Avon, UK, pp.171-172, April
M. Celuch-Marcysiak and W.K.Gwarek, “On
the Nature of Solutions Produced by Finite
Difference Schemes in Time Domain,” Intl.
Journal of Numerical Modelling – Electronic
Networks, Devices and Fields, vol. 12, no. 1/2,
pp. 23-40, Jan.-Apr. 1999.
M.Celuch-Marcysiak, “Extended Theory of
FDTD S- and P-eigenmodes in Lossy Media
and its Application to the Analysis of Coupled
Problems,” IEEE MTT-S Intl. Microwave
Symp. Dig, Fort Worth, pp.1713-1716, June
A. M. Tocci and R. H. Mascheroni,
"Characteristics of Differential Scanning
Calorimetry Determination of Thermophysical
Properties of Meats," Lebensmittel-
Wissenschaft und –Technologie, vol. 31, no. 5,
pp. 418-426, 1998.
T. Ohlsson, N. E. Bengtsson, and P. O.
Risman, "The Frequency and Temperature
Dependence of Dielectric Food Data as
Determined by a Cavity Perturbation
Technique," J. Microwave Power and
Electromagnetic Energy, vol. 9, pp. 129-145,
J. Haala, J. V. Hagen, W. Wiesbeck, Fast
Implementation of Heat Radiation in a Self-
Consistent FDTD Analysis Tool for
Microwave and Hybrid Ovens,” Applied
Computational Electromagnetic Society
(ACES) Journal, vol. 16, no. 1, pp. 11-19, Mar.


