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New dynamic subgrid-scale heat flux models for large-eddy simulation of thermal convection based on the general gradient diffusion hypothesis

Journal of Fluid Mechanics · Haziran 2008

Özet
Three new dynamic tensor thermal diffusivity subgrid-scale (SGS) heat flux (HF) models are proposed for large-eddy simulation of thermal convection. The constitutive relations for the proposed modelling approaches represent the most general explicit algebraic formulations possible for the family of SGS HF models constructed using the resolved temperature gradient and SGS stress tensor. As a result, these three new models include a number of previously proposed dynamic SGS HF models as special cases. In contrast to the classical dynamic eddy thermal diffusivity SGS HF model, which strictly requires the SGS heat flux be aligned with the negative of the resolved temperature gradient, the three new models proposed here admit more degrees of freedom, and consequently provide a more realistic geometrical and physical representation of the SGS HF vector. To validate the proposed models, numerical simulations have been performed based on two benchmark test cases of neutrally and unstably stratified horizontal channel flows. © 2008 Cambridge University Press.
40 atıf Haziran 2008 DOI

Makale Bilgileri

Toplam Atıf 40 atıf · Scopus
ISSN00221120
Yayın TarihiHaziran 2008
Cilt / Sayfa604 · 125-163

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Scimago Dergi (ISSN Eşleşmesi)
Journal of Fluid Mechanics
Q1
SJR Skoru1,283
H-Index281
YayıncıCambridge University Press
ÜlkeUnited Kingdom
Applied Mathematics (Q1)
Condensed Matter Physics (Q1)
Mechanical Engineering (Q1)
Mechanics of Materials (Q1)
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40
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