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Título: =Surface Pressure Poisson Equation Formulation of the Primitive Equations: Numerical Schemes
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Publicación seriada
Referencias AnalíticasReferencias Analíticas
Autor: Samelson, Roger ; Temam, Roger ; Wang, Shouhong ; Wang, Cheng
Título: Surface Pressure Poisson Equation Formulation of the Primitive Equations: Numerical Schemes
Páginas/Colación: pp. 1163 - 1194
Url: Ir a http://epubs.siam.org/sam-bin/dbq/article/39628http://epubs.siam.org/sam-bin/dbq/article/39628
Siam Journal on Numerical Analysis Vol. 41, no. 3 May/July 2004
Información de existenciaInformación de existencia

Palabras Claves: Palabras: CONVERGENCE ANALYSIS CONVERGENCE ANALYSIS, Palabras: STAGGERED GRID STAGGERED GRID, Palabras: SURFACE PRESSURE SURFACE PRESSURE, Palabras: THE PRIMITIVE EQUATIONS THE PRIMITIVE EQUATIONS

Resumen
Numerical methods for the primitive equations (PEs) of oceanic flow are presented in this paper. First, a two-dimensional Poisson equation with a suitable boundary condition is derived to solve the surface pressure. Consequently, we derive a new formulation of the PEs in which the surface pressure Poisson equation replaces the nonlocal incompressibility constraint, which is known to be inconvenient to implement. Based on this new formulation, backward Euler and Crank--Nicolson schemes are presented. The marker and cell scheme, which gives values of physical variables on staggered mesh grid points, are chosen as spatial discretization. The convergence analysis of the fully discretized scheme is established in detail. The accuracy check for the scheme is also shown.

 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 

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