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Turbulent Penetrative Convection

Turbulent Penetrative Convection
Author: Sergei Sergeevǐc Zilitinkevǐc
Publisher:
Total Pages: 216
Release: 1991
Genre: Science
ISBN:

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Turbulence is important to hydraulic and environmental engineers and essential to the emerging understanding of natural processes of fluid mixing in pollution and meteorology. This text reviews the understanding, East and West, of turbulent penetrative convection.


Turbulent Penetrative Convection

Turbulent Penetrative Convection
Author: Sergeĭ Sergeevich Zilitinkevich
Publisher:
Total Pages: 179
Release: 1991
Genre: Ocean circulation
ISBN: 9781856288163

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On the Interaction Between Turbulence and Stratification

On the Interaction Between Turbulence and Stratification
Author: Pierre Léard
Publisher:
Total Pages: 0
Release: 2020
Genre:
ISBN:

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Coupled dynamics between turbulent and stratified layers are often encountered in geophysical and astrophysical flows, for example in the earth's atmosphere, oceans and core, but also in stars. Due to the large space- and time-scale difference between the phenomenon involved in the two layers, their interaction is sometimes overlooked. Still, the turbulent motions enhance mixing at the interface and generate internal gravity waves which propagate in the stratified layer. Those waves extract energy from the convective layer and distribute this energy along their propagation path. They also carry chemicals and bio-elements. Therefore, the comprehension of the coupled dynamics of a turbulent layer interacting with a stratification one is essential in order to build reliable models predicting the long-time evolution of those flows. This interaction is studied with experiments, numerical simulations and theoretical modelling.


Geophysical & Astrophysical Convection

Geophysical & Astrophysical Convection
Author: Peter A Fox
Publisher: CRC Press
Total Pages: 396
Release: 2000-08-08
Genre: Science
ISBN: 9789056992583

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Geophysical and Astrophysical Convection collects important papers from an international group of the world's foremost researchers in geophysical and astrophysical convection to present a concise overview of recent thinking in the field. Topics include: Atmospheric convection, solar and stellar convection, unsteady non-penetrative thermal convection, astrophysical convection and dynamos, dynamics of cumulus entertainment, turbulent convection: helical buoyant convection, transport phenomena, potential vorticity, rotating convective turbulence, and the modeling and simulation various types of convection and turbulence.


Penetrative Convection

Penetrative Convection
Author: George Veronis
Publisher:
Total Pages: 42
Release: 1961
Genre: Fluid mechanics
ISBN:

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IUTAM Symposium on Variable Density Low-Speed Turbulent Flows

IUTAM Symposium on Variable Density Low-Speed Turbulent Flows
Author: Louis Fulachier
Publisher: Springer Science & Business Media
Total Pages: 372
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 9401154740

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The General Assembly of the International Union of Theoretical and Applied Mechanics in its meeting on August 28, 1994, selected for 1996 only four Mechanics Symposia, of which ours is the only one related to Fluid Mechanics: Variable Density Low Speed Turbulent Flows. This IUTAM Symposium, organized by the Institut de Recherche sur les Phenomenes Hors Equilibre (Marseille), is the logical continuation of the meetings previously organized or co-organized - on the French or European level, such as Euromech 237, Marseille, 1988 - by the same research group ofMarseille. This meeting focused specifically on the structure of turbulent flows in which density varies strongly : the effect of this variation on the velocity and scalar fields is in no sense negligible. We were mainly concerned with low-speed flows subjected to strong local changes of density as a consequence of heat or mass transfer or of chemical reactions. Compressible turbulent flows - such a!" supersonic ones - were also considered in order to underline their similarities to and their differences from low-speed variable density flows.