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  1. Research Outputs

Multi-scale analysis of turbulent Rayleigh-Bénard convection

Chapter
Publication Date:
2016
Short description:
Multi-scale analysis of turbulent Rayleigh-Bénard convection / 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, 2016. - ISBN 978-3-319-29129-1. - pp. 295-298 [10.1007/978-3-319-29130-7_51]
abstract:
We report the results from a direct numerical simulation of turbulent Rayleigh-Bénard convection for Rayleigh number of 105 and Prandtl number of 0.7. The flow topology is characterized by the presence of coherent structures, the so-called thermal plumes, consisting of localized portions of fluid having a temperature contrast with the background. Two distinct events are identified close to the walls by using the wall-parallel divergence divπ of the velocity field: the impingement (divπ > 0) and the ejection of thermal plumes (divπ < 0). The impingement leads to the formation of larger velocity and temperature structures in the wall-parallel planes. Contrary to the classical picture of turbulence consisting of a direct transfer of energy from large toward smaller turbulent fluctuations, the impingement is conjectured to be probably responsible for a reverse transfer from small towards large scales in the near-wall region.
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/11380/1190000
Book title:
Springer Proceedings in Physics
Published in:
SPRINGER PROCEEDINGS IN PHYSICS
Journal
SPRINGER PROCEEDINGS IN PHYSICS
Series
  • Overview

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URL

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