International audienceIn a former paper, Drouin et al. (2010) proposed a model for dispersion phenomena in heated channels that works for both laminar and turbulent regimes. This model, derived according to the double averaging procedure, leads to satisfactory predictions of mean temperature. In order to derive dispersion coefficients, the so called ''closure problem'' was solved, which gave us access to the temperature deviation at sub filter scale. We now propose to capitalize on this useful information in order to connect dispersion modeling to wall temperature prediction. As a first step, we use the temperature deviation modeling in order to connect wall to mean temperatures within the asymptotic limit of well established pipe flows. Si...
This paper presents a novel methodology for improving eddy viscosity models in predicting wall-bound...
Président : Pierre Sagaut ; Rapporteurs : Michel Deville et Eric Lamballais ; Examinateurs : Frédéri...
Président : Pierre Sagaut ; Rapporteurs : Michel Deville et Eric Lamballais ; Examinateurs : Frédéri...
International audienceIn a former paper, Drouin et al. (2010) proposed a model for dispersion phenom...
ManuscriptAn analysis is given for fully developed thermal transport through a wall-bounded turbulen...
International audienceA new formulation of the model used in the near-wall region for the turbulent ...
Purpose - This paper sets out to perform a detailed numerical study of turbulent channel flow with s...
Heat transfer modeling plays an integral role in design and optimization of traditional, as well as ...
Advanced modeling of turbulent heat transfer for all thermal boundary conditions is propo-sed. This ...
Advanced modeling of turbulent heat transfer for all thermal boundary conditions is propo-sed. This ...
Advanced modeling of turbulent heat transfer for all thermal boundary conditions is proposed. This w...
This works deals with the modelling if anisothermal turbulent flows in macroporous media. This topic...
It is shown that the conventional turbulent Prandtl number approach is grossly inadequate to predict...
Direct numerical simulation techniques are used to study wall turbulence and turbulent dispersion.Tu...
This paper presents a novel methodology for improving eddy viscosity models in predicting wall-bound...
This paper presents a novel methodology for improving eddy viscosity models in predicting wall-bound...
Président : Pierre Sagaut ; Rapporteurs : Michel Deville et Eric Lamballais ; Examinateurs : Frédéri...
Président : Pierre Sagaut ; Rapporteurs : Michel Deville et Eric Lamballais ; Examinateurs : Frédéri...
International audienceIn a former paper, Drouin et al. (2010) proposed a model for dispersion phenom...
ManuscriptAn analysis is given for fully developed thermal transport through a wall-bounded turbulen...
International audienceA new formulation of the model used in the near-wall region for the turbulent ...
Purpose - This paper sets out to perform a detailed numerical study of turbulent channel flow with s...
Heat transfer modeling plays an integral role in design and optimization of traditional, as well as ...
Advanced modeling of turbulent heat transfer for all thermal boundary conditions is propo-sed. This ...
Advanced modeling of turbulent heat transfer for all thermal boundary conditions is propo-sed. This ...
Advanced modeling of turbulent heat transfer for all thermal boundary conditions is proposed. This w...
This works deals with the modelling if anisothermal turbulent flows in macroporous media. This topic...
It is shown that the conventional turbulent Prandtl number approach is grossly inadequate to predict...
Direct numerical simulation techniques are used to study wall turbulence and turbulent dispersion.Tu...
This paper presents a novel methodology for improving eddy viscosity models in predicting wall-bound...
This paper presents a novel methodology for improving eddy viscosity models in predicting wall-bound...
Président : Pierre Sagaut ; Rapporteurs : Michel Deville et Eric Lamballais ; Examinateurs : Frédéri...
Président : Pierre Sagaut ; Rapporteurs : Michel Deville et Eric Lamballais ; Examinateurs : Frédéri...