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  1. Research Outputs

Towards an improved subgrid-scale model for thermally driven flows

Chapter
Publication Date:
2017
Short description:
Towards an improved subgrid-scale model for thermally driven flows / Togni, R., Cimarelli, A., De Angelis, E. (SPRINGER PROCEEDINGS IN PHYSICS). - In: Springer Proceedings in PhysicsHEIDELBERGER PLATZ 3, D-14197 BERLIN, GERMANY : Springer Science and Business Media, LLC, 2017. - ISBN 978-3-319-57933-7. - pp. 141-145 [10.1007/978-3-319-57934-4_20]
abstract:
The effect of the filtering on the resolved and subgrid dynamics of turbulent Rayleigh–Bénard convection (RBC) is studied a priori using a Direct Numerical Simulation dataset. To this end, the velocity and temperature fields, split into resolved and subgrid components by a spectral cutoff filter, are analyzed with the filtered turbulent kinetic energy and temperature variance budgets. At small filter lengths, the resolved processes correspond to the exact ones except for the decreases of the dissipations which, in turn, are balanced by the sink actions of the subgrid scales. At large filters lengths, the resolved dynamics depletes close to the walls and the effect of the subgrid scales drifts from purely-dissipative to a more complex behaviour. This study highlights the possibility that eddy-viscosity and diffusivity models, commonly employed in large-eddy simulation of RBC, does not work well for large filter widths and that alternative closures should be considered.
Iris type:
Capitolo/Saggio
List of contributors:
Togni, R.; Cimarelli, A.; De Angelis, E.
Authors of the University:
CIMARELLI ANDREA
Handle:
https://iris.unimore.it/handle/11380/1189996
Book title:
Springer Proceedings in Physics
Published in:
SPRINGER PROCEEDINGS IN PHYSICS
Journal
SPRINGER PROCEEDINGS IN PHYSICS
Series
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URL

http://www.springer.com/series/361
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