International audienceThe present work aims at developing a spectral model for a passive scalar field and its associated scalar flux in homogeneous anisotropic turbulence. This is achieved using the paradigm of eddy-damped quasi-normal markovian (EDQNM) closure extended to anisotropic flows. In order to assess the validity of this approach, the model is compared to several detailed DNS and experiments of shear-driven flows and isotropic turbulence with a mean scalar gradient at moderate Reynolds numbers. This anisotropic modelling is then used to investigate the passive scalar dynamics at very high Reynolds numbers. In the framework of homogeneous isotropic turbulence submitted to a mean scalar gradient , decay and growth exponents for the ...
Modelling is essential to understand and reproduce the dominant physical mechanisms occurring in nat...
Modelling is essential to understand and reproduce the dominant physical mechanisms occurring in nat...
International audienceWe study unconfined homogeneous turbulence with a destabilizing background den...
International audienceThis work aims at studying both numerically and theoretically a passive scalar...
International audienceIn this work, a spectral model is derived to investigate numerically unstably ...
Le but de ce travail est l'étude théorique et la modélisation d'un champ scalaire passif dans une tu...
International audienceHomogeneous anisotropic turbulence has been widely studied in the past decades...
International audienceHomogeneous anisotropic turbulence has been widely studied in the past decades...
International audienceHomogeneous anisotropic turbulence has been widely studied in the past decades...
International audienceThe passive scalar dynamics in a freely decaying turbulent flow is studied. Th...
Direct numerical simulations of decaying isotropic turbulence with a passive scalar at different Sch...
By simple analytical and large-eddy simulations, the time evolution of the kinetic energy and scalar...
International audienceThe return to isotropy of freely decaying homogeneous axisymmetric turbulence ...
A new system of governing equations for spherically-averaged descriptors, which allows to calculate ...
Modelling is essential to understand and reproduce the dominant physical mechanisms occurring in nat...
Modelling is essential to understand and reproduce the dominant physical mechanisms occurring in nat...
Modelling is essential to understand and reproduce the dominant physical mechanisms occurring in nat...
International audienceWe study unconfined homogeneous turbulence with a destabilizing background den...
International audienceThis work aims at studying both numerically and theoretically a passive scalar...
International audienceIn this work, a spectral model is derived to investigate numerically unstably ...
Le but de ce travail est l'étude théorique et la modélisation d'un champ scalaire passif dans une tu...
International audienceHomogeneous anisotropic turbulence has been widely studied in the past decades...
International audienceHomogeneous anisotropic turbulence has been widely studied in the past decades...
International audienceHomogeneous anisotropic turbulence has been widely studied in the past decades...
International audienceThe passive scalar dynamics in a freely decaying turbulent flow is studied. Th...
Direct numerical simulations of decaying isotropic turbulence with a passive scalar at different Sch...
By simple analytical and large-eddy simulations, the time evolution of the kinetic energy and scalar...
International audienceThe return to isotropy of freely decaying homogeneous axisymmetric turbulence ...
A new system of governing equations for spherically-averaged descriptors, which allows to calculate ...
Modelling is essential to understand and reproduce the dominant physical mechanisms occurring in nat...
Modelling is essential to understand and reproduce the dominant physical mechanisms occurring in nat...
Modelling is essential to understand and reproduce the dominant physical mechanisms occurring in nat...
International audienceWe study unconfined homogeneous turbulence with a destabilizing background den...