Covalidation of Integral Transforms and Method of Lines in Nonlinear Convection-Diffusion with Mathematica



Document title: Covalidation of Integral Transforms and Method of Lines in Nonlinear Convection-Diffusion with Mathematica
Journal: Journal of the Brazilian Society of Mechanical Sciences
Database: PERIÓDICA
System number: 000312097
ISSN: 0100-7386
Authors: 1

Institutions: 1Universidade Federal do Rio de Janeiro, Laboratorio de Transmissao e Tecnologia do Calor, Rio de Janeiro. Brasil
Year:
Volumen: 23
Number: 3
Pages: 303-319
Country: Brasil
Language: Inglés
Document type: Artículo
Approach: Aplicado
English abstract The Mathematica system (version 4.0) is employed in the solution of nonlinear difusion and convection-difusion problems, formulated as transient one-dimensional partial diferential equations with potential dependent equation coefficients. The Generalized Integral Transform Technique (GITT) is first implemented for the hybrid numerical-analytical solution of such classes of problems, through the symbolic integral transformation and elimination of the space variable, followed by the utilization of the built-in Mathematica function NDSolve for handling the resulting transformed ODE system. This approach ofers an error-controlled final numerical solution, through the simultaneous control of local errors in this reliable ODE's solver and of the proposed eigenfunction expansion truncation order. For covalidation purposes, the same built-in function NDSolve is employed in the direct solution of these partial diferential equations, as made possible by the algorithms implemented in Mathematica (versions 3.0 and up), based on application of the method of lines. Various numerical experiments are performed and relative merits of each approach are critically pointed out
Disciplines: Matemáticas,
Ciencias de la computación
Keyword: Matemáticas puras,
Transformadas integrales,
Computación simbólica,
Mathematica,
Software,
Convección,
Difusión
Keyword: Mathematics,
Computer science,
Pure mathematics,
Integral transforms,
Symbolic computation,
Mathematica,
Software,
Convection,
Diffusion
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