Secondary and oscillatory gravitational instabilities in canonical three-dimensional models of crystal growth from the melt, part2: lateral heating and the Hadley circulation

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Abstract

The focused discussion limited in Part 1 to systems heated from below is now extended to the case of laterally heated configurations and the related problem of the Hadley flow stability.
LanguageEnglish
Pages261-268
Number of pages8
JournalComptes Rendus Mécanique
Volume335
Issue number(5-6)
DOIs
Publication statusPublished - 28 Jun 2007

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Boiler circulation
flow stability
gravitational instability
three dimensional models
Crystallization
Crystal growth
crystal growth
Heating
heating
configurations

Keywords

  • computational fluid dynamic
  • oscillatory gravitational instabilities
  • 3d models
  • thermal convection
  • transitions

Cite this

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title = "Secondary and oscillatory gravitational instabilities in canonical three-dimensional models of crystal growth from the melt, part2: lateral heating and the Hadley circulation",
abstract = "The focused discussion limited in Part 1 to systems heated from below is now extended to the case of laterally heated configurations and the related problem of the Hadley flow stability.",
keywords = "computational fluid dynamic, oscillatory gravitational instabilities, 3d models, thermal convection, transitions",
author = "Marcello Lappa",
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journal = "Comptes Rendus M{\'e}canique",
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N2 - The focused discussion limited in Part 1 to systems heated from below is now extended to the case of laterally heated configurations and the related problem of the Hadley flow stability.

AB - The focused discussion limited in Part 1 to systems heated from below is now extended to the case of laterally heated configurations and the related problem of the Hadley flow stability.

KW - computational fluid dynamic

KW - oscillatory gravitational instabilities

KW - 3d models

KW - thermal convection

KW - transitions

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DO - 10.1016/j.crme.2007.05.004

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JO - Comptes Rendus Mécanique

JF - Comptes Rendus Mécanique

SN - 1631-0721

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