En-tête de navigationNavigation principaleSuiviFiche


Unité de recherche
PCRD EU
Numéro de projet
98.0169-2
Titre du projet
CARTUM: Comparative analysis and realization of second-moment turbulence models
Titre du projet anglais
CARTUM: Comparative analysis and realization of second-moment turbulence models

Textes relatifs à ce projet

 AllemandFrançaisItalienAnglais
Mots-clé
-
-
-
Anzeigen
Autre Numéro de projet
-
-
-
Anzeigen
Programme de recherche
-
-
-
Anzeigen
Description succincte
-
-
-
Anzeigen
Partenaires et organisations internationales
-
-
-
Anzeigen
Résumé des résultats (Abstract)
-
-
-
Anzeigen
Références bases de données
-
-
-
Anzeigen

Textes saisis


CatégorieTexte
Mots-clé
(Anglais)
TURBULENCE; LARGE EDDY SIMULATIONS; MICROSTRUCTURE MEASUREMENTS
Autre Numéro de projet
(Anglais)
EU project number: MAS3-CT98-0172
Programme de recherche
(Anglais)
EU-programme: 4. Frame Research Programme - 3.2 Marine sciences and technologies
Description succincte
(Anglais)
See abstract
Partenaires et organisations internationales
(Anglais)
Coordinator: Universität Hamburg (D)
Résumé des résultats (Abstract)
(Anglais)
Johannes Sander, University, Bern, T. Jonas, A. Simon, A. Wüest, EAWAG, Zürich
An attempt to assess the quality of large eddy simulations of the mixed layer of a lake during strong convective events is made. We compare results from microstructure measurements of the temperature with simulations. For that, we obtain the rate of dissipation of turbulent kinetic energy and of temperature variance from the observations and from the calculations. Vertical profiles of the rate of dissipation of turbulent kinetic energy show excellent aggreement of observed with simulated results. For dissipation of temperature variance, large eddy simulation produce much smaller rates than have been observed in the lake.
In a second approach scaling laws are obtained with a statistical analyses of deep reaching convection from results with large eddy simulations. The study focuses a rotating fluid which is initially neutrally stratified. With dimensional analyses it is shown, that only the temperature gradient is modified by the rate of rotation while other variables, like velocities, eddy viscosity or rate of dissipation do not show a statistically robust influence of rotation. These behaviour is very different from results obtained from stratified fluids.
Références bases de données
(Anglais)
Swiss Database: Euro-DB of the
State Secretariat for Education and Research
Hallwylstrasse 4
CH-3003 Berne, Switzerland
Tel. +41 31 322 74 82
Swiss Project-Number: 98.0169-2