The purpose of this paper is to examine the effects of using non-orthogonal boundary-fitted grids for the numerical solution of the shallow water equations. Two geometries with well known analytical solutions are introduced in order to investigate the accuracy of the numerical solutions. The results
โฆ LIBER โฆ
Comparison of forms of the viscous shallow-water equations in the boundary-fitted coordinates
โ Scribed by Dmitriy A. Romanenkov; Alexei A. Androsov; Naum E. Voltzinger
- Book ID
- 117778876
- Publisher
- Elsevier Science
- Year
- 2001
- Tongue
- English
- Weight
- 448 KB
- Volume
- 3
- Category
- Article
- ISSN
- 1463-5003
No coin nor oath required. For personal study only.
๐ SIMILAR VOLUMES
The effect of using non-orthogonal bound
โ
Per Nielsen; Ove Skovgaard
๐
Article
๐
1990
๐
John Wiley and Sons
๐
English
โ 565 KB
Nonsimilar solutions of the viscous shal
โ
Dasgupta, Ratul; Govindarajan, Rama
๐
Article
๐
2010
๐
American Institute of Physics
๐
English
โ 678 KB
A tsunami simulation of Hakata Bay using
โ
Kanayama, Hiroshi; Dan, Hiroshi
๐
Article
๐
2013
๐
Japan Society for Industrial and Applied Mathemati
๐
English
โ 877 KB
Application of the multigrid method to P
โ
Samuel Ohring
๐
Article
๐
1983
๐
Elsevier Science
๐
English
โ 521 KB
A comparison of discretization methods f
โ
Niek Praagman
๐
Article
๐
1982
๐
John Wiley and Sons
๐
English
โ 650 KB
Analysis of the TurkelโZwas Scheme for t
โ
B Neta; F.X Giraldo; I.M Navon
๐
Article
๐
1997
๐
Elsevier Science
๐
English
โ 353 KB
In this paper we extend the linear transfer function analysis to the two-dimensional shallow water equations in A linear analysis of the shallow water equations in spherical coordinates for the Turkel-Zwas (T-Z) explicit large time-step scheme spherical coordinates for the Turkel-Zwas discretization