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Applied turbulence modelling in marine waters [Libro electrónico] / Hans Burchard

Por: Burchard, Hans [autor/a].
Tipo de material: Libro
 en línea Libro en línea Series Editor: New York, New York, United States: Springer, c2002Descripción: xiii, 215 páginas : ilustraciones ; 24 centímetros.ISBN: 3540437959; 9783540437956 (Print); 9783540454199 (Online).Tema(s): Oceanic mixing -- Mathematical models | Turbulence -- Mathematical modelsNota de acceso: Disponible para usuarios de ECOSUR con su clave de acceso Nota de bibliografía: Incluye bibliografía e índice: páginas 193-212 Número de sistema: 55719Contenidos:Mostrar Resumen:
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This book gives an overview of statistical turbulence modelling with applications to oceanography and limnology. It discusses how these models can be derived from the Naiver-Stokes equations and how step by step simplications result in models applicable to numerical simulations for realistic solutions. Possibilities for considering additional effects such as breaking surface waves and Langmuir circulation are discussed. Relevant methods for the numerical discretisation of the turbulence models are presented. Results from one -dimensional simulations are shown for various oceanic and limnic water column studies. The integration of these turbulence models in three-dimensional models are some selected results are also given.

Recurso en línea: http://link.springer.com/openurl?genre=book&isbn=978-3-540-43795-6
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Incluye bibliografía e índice: páginas 193-212

1. Introduction.. 2. Basic model assumptions.. 3. Boundary layer models.. 4. Numerics.. 5. The GOTM model.. 6. Idealised test cases.. 7. Oceanic and limnic applications.. 8. future perspectives.. 9. Appendix.. Index

Disponible para usuarios de ECOSUR con su clave de acceso

This book gives an overview of statistical turbulence modelling with applications to oceanography and limnology. It discusses how these models can be derived from the Naiver-Stokes equations and how step by step simplications result in models applicable to numerical simulations for realistic solutions. Possibilities for considering additional effects such as breaking surface waves and Langmuir circulation are discussed. Relevant methods for the numerical discretisation of the turbulence models are presented. Results from one -dimensional simulations are shown for various oceanic and limnic water column studies. The integration of these turbulence models in three-dimensional models are some selected results are also given. eng

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