DISCONTINUOUS GALERKIN SPECTRAL ELEMENT METHOD TO COMPUTE REFLECTION AND TRANSMISSION OF ELECTROMAGNETIC WAVES

Modeling wave reflection and transmission is important for a diversity of applications in physics and engineering. Examples can be found in acoustics and electromagnetism. Computational wave propagation requires high order accuracy both in space and time to get accurate phase and dissipation propert...

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Main Authors: MÓNICA MESA MAZO, CÉSAR ACOSTA MINOLI, HERNÁN TORO ZAPATA
Format: Article
Language:Spanish
Published: Universidad de Costa Rica 2018-02-01
Series:Revista de Matemática: Teoría y Aplicaciones
Subjects:
Online Access:https://revistas.ucr.ac.cr/index.php/matematica/article/view/32231
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spelling doaj-372ba9334c844248917f8782420b54022020-11-24T23:40:56ZspaUniversidad de Costa RicaRevista de Matemática: Teoría y Aplicaciones2215-33732018-02-01251415910.15517/rmta.v1i25.3223127168DISCONTINUOUS GALERKIN SPECTRAL ELEMENT METHOD TO COMPUTE REFLECTION AND TRANSMISSION OF ELECTROMAGNETIC WAVESMÓNICA MESA MAZO0CÉSAR ACOSTA MINOLI1HERNÁN TORO ZAPATA2Facultad de Educación, Universidad del Quindío, Armenia, ColombiaFacultad de Educación, Universidad del Quindío, Armenia, Colombia.Facultad de Educación, Universidad del Quindío, Armenia, Colombia.Modeling wave reflection and transmission is important for a diversity of applications in physics and engineering. Examples can be found in acoustics and electromagnetism. Computational wave propagation requires high order accuracy both in space and time to get accurate phase and dissipation properties. In this paper we derive and evaluate a high order accurate method based on Discontinuous Galerkin Spectral Element Method (DGSEM) to compute reflection and transmission of electromagnetic waves traveling in two homogeneous and isotropic media, separated by a thin plane interfaz, with different physical properties of permittivity " and permeability . To discretize in Space we used DGSEM over a two dimensional Transverse Electric Maxwell Equations. We derived a Riemann solver to compute the numerical flux between the interfaces of two elements of the computational mesh and to add boundary conditions. To discretize in time we use a third order low storage Runge-Kutta of Williamson. Results when compared with the analytical solution, showed spectral convergence in space and third order convergence in time.https://revistas.ucr.ac.cr/index.php/matematica/article/view/32231método espectral de Galerkin discontinuoondas electromagnéticaselectromagnetismo computacionalreflexión y transmisión
collection DOAJ
language Spanish
format Article
sources DOAJ
author MÓNICA MESA MAZO
CÉSAR ACOSTA MINOLI
HERNÁN TORO ZAPATA
spellingShingle MÓNICA MESA MAZO
CÉSAR ACOSTA MINOLI
HERNÁN TORO ZAPATA
DISCONTINUOUS GALERKIN SPECTRAL ELEMENT METHOD TO COMPUTE REFLECTION AND TRANSMISSION OF ELECTROMAGNETIC WAVES
Revista de Matemática: Teoría y Aplicaciones
método espectral de Galerkin discontinuo
ondas electromagnéticas
electromagnetismo computacional
reflexión y transmisión
author_facet MÓNICA MESA MAZO
CÉSAR ACOSTA MINOLI
HERNÁN TORO ZAPATA
author_sort MÓNICA MESA MAZO
title DISCONTINUOUS GALERKIN SPECTRAL ELEMENT METHOD TO COMPUTE REFLECTION AND TRANSMISSION OF ELECTROMAGNETIC WAVES
title_short DISCONTINUOUS GALERKIN SPECTRAL ELEMENT METHOD TO COMPUTE REFLECTION AND TRANSMISSION OF ELECTROMAGNETIC WAVES
title_full DISCONTINUOUS GALERKIN SPECTRAL ELEMENT METHOD TO COMPUTE REFLECTION AND TRANSMISSION OF ELECTROMAGNETIC WAVES
title_fullStr DISCONTINUOUS GALERKIN SPECTRAL ELEMENT METHOD TO COMPUTE REFLECTION AND TRANSMISSION OF ELECTROMAGNETIC WAVES
title_full_unstemmed DISCONTINUOUS GALERKIN SPECTRAL ELEMENT METHOD TO COMPUTE REFLECTION AND TRANSMISSION OF ELECTROMAGNETIC WAVES
title_sort discontinuous galerkin spectral element method to compute reflection and transmission of electromagnetic waves
publisher Universidad de Costa Rica
series Revista de Matemática: Teoría y Aplicaciones
issn 2215-3373
publishDate 2018-02-01
description Modeling wave reflection and transmission is important for a diversity of applications in physics and engineering. Examples can be found in acoustics and electromagnetism. Computational wave propagation requires high order accuracy both in space and time to get accurate phase and dissipation properties. In this paper we derive and evaluate a high order accurate method based on Discontinuous Galerkin Spectral Element Method (DGSEM) to compute reflection and transmission of electromagnetic waves traveling in two homogeneous and isotropic media, separated by a thin plane interfaz, with different physical properties of permittivity " and permeability . To discretize in Space we used DGSEM over a two dimensional Transverse Electric Maxwell Equations. We derived a Riemann solver to compute the numerical flux between the interfaces of two elements of the computational mesh and to add boundary conditions. To discretize in time we use a third order low storage Runge-Kutta of Williamson. Results when compared with the analytical solution, showed spectral convergence in space and third order convergence in time.
topic método espectral de Galerkin discontinuo
ondas electromagnéticas
electromagnetismo computacional
reflexión y transmisión
url https://revistas.ucr.ac.cr/index.php/matematica/article/view/32231
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AT cesaracostaminoli discontinuousgalerkinspectralelementmethodtocomputereflectionandtransmissionofelectromagneticwaves
AT hernantorozapata discontinuousgalerkinspectralelementmethodtocomputereflectionandtransmissionofelectromagneticwaves
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