Use of the multigrid methods for heat radiation problem (Q1811879)
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scientific article; zbMATH DE number 1930004
| Language | Label | Description | Also known as |
|---|---|---|---|
| English | Use of the multigrid methods for heat radiation problem |
scientific article; zbMATH DE number 1930004 |
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Use of the multigrid methods for heat radiation problem (English)
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18 June 2003
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Summary: We consider the integral equation arising as a result of heat radiation exchange in both convex and nonconvex enclosures of diffuse grey surfaces. For nonconvex geometries, the visibility function must be taken into consideration. Therefore, a geometrical algorithm has been developed to provide an efficient detection of the shadow zones. For the numerical realization of the Fredholm integral equation, a boundary element method based on Galerkin-Bubnov discretization scheme is implemented. Consequently, multigrid iteration methods, which are closely related to two-grid methods, are used to solve the system of linear equations. To demonstrate the high efficiency of these iterations, we construct some numerical experiments for different enclosure geometries.
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heat radiation exchange
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diffuse grey surfaces
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geometric algorithm
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Fredholm integral equation
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boundary element method
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Galerkin-Bubnov discretization scheme
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multigrid iteration methods
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numerical experiments
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0.88038003
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0.87546533
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0.87390006
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0.87251884
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0.86910015
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