The Fourier method is used to analyze the dispersive, dissipative, and isotropy errors of various spatial and time discretizations ap-ized to include the modeling of curved surfaces [8][9] and plied to the Maxwell equations on multi-dimensional grids. Both body oriented grids [10][11][12][13]. It is
Analysis of a multigrid method for a transport equation by numerical Fourier analysis
β Scribed by S. Oliveira
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 490 KB
- Volume
- 35
- Category
- Article
- ISSN
- 0898-1221
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β¦ Synopsis
this paper, we perform Fourier analysis for a multigrid method with twecell p-line relaxation for solving isotropic transport equations. Our numerical results show that the Fourier analysis prediction for convergence rates is more accurate than that previously found by matrix analysis.
π SIMILAR VOLUMES
## Physisch Lnborntoriunl der liijlisulli\:ersitcit Utrrrht, Scdrrln~~l Synopsis r\ Fourier analysis has been macle usin g only a phototension cell, an alternating current galvanometer and a rotating device.
We consider a generic flow-transport system of partial differential equations, which has wide application in the waste disposal industry. The approximation of this system, using a finite element method for the brine, radionuclides, and heat combined with a mixed finite element method for the pressur