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Boussinesq-type modelling using an unstructured finite element technique
AbstractA model for solving the two-dimensional enhanced Boussinesq equations is presented. The model equations are discretised in space using an unstructured finite element technique. The standard Galerkin method with mixed interpolation is applied. The time discretisation is performed using an explicit three-step Taylor–Galerkin method. The model is extended to the surf and swash zone by inclusion of wave breaking and a moving boundary at the shoreline. Breaking is treated by an existing surface roller model, but a new procedure for the detection of the roller thickness is devised. The model is verified using four test cases and the results are compared with experimental data and results from an existing finite difference Boussinesq model.
Boussinesq-type modelling using an unstructured finite element technique
AbstractA model for solving the two-dimensional enhanced Boussinesq equations is presented. The model equations are discretised in space using an unstructured finite element technique. The standard Galerkin method with mixed interpolation is applied. The time discretisation is performed using an explicit three-step Taylor–Galerkin method. The model is extended to the surf and swash zone by inclusion of wave breaking and a moving boundary at the shoreline. Breaking is treated by an existing surface roller model, but a new procedure for the detection of the roller thickness is devised. The model is verified using four test cases and the results are compared with experimental data and results from an existing finite difference Boussinesq model.
Boussinesq-type modelling using an unstructured finite element technique
Sørensen, Ole R. (Autor:in) / Schäffer, Hemming A. (Autor:in) / Sørensen, Lars S. (Autor:in)
Coastal Engineering ; 50 ; 181-198
17.10.2003
18 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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