Title of article :
An efficient Eulerian finite element method for the shallow water equations
Author/Authors :
Hanert، نويسنده , , Emmanuel and Roux، نويسنده , , Daniel Y. Le and Legat، نويسنده , , Vincent and Deleersnijder، نويسنده , , Eric، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
22
From page :
115
To page :
136
Abstract :
The accuracy and efficiency of an Eulerian method is assessed by solving the non-linear shallow water equations and compared with the performances of an existing semi-Lagrangian method. Both methods use a linear non-conforming finite element discretization for velocity and a linear conforming finite element discretization for surface elevation. This finite element pair is known to be computationally efficient and free of pressure modes. The model equations are carefully derived and a comparison is performed by simulating the propagation of slow Rossby waves in the Gulf of Mexico. Simulations show that the Eulerian model performs well and gives results comparable to high order semi-Lagrangian schemes using kriging interpolators.
Keywords :
KRIGING , Finite elements , Shallow water equations , Semi-Lagrangian , Rossby waves , Euleurian , Non-conforming linear interpolation
Journal title :
Ocean Modelling
Serial Year :
2005
Journal title :
Ocean Modelling
Record number :
2279813
Link To Document :
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