The motion of small particles in turbulent conditions is influenced by the entire range of length- and time-scales of the flow. At high Reynolds numbers this range of scales is too broad for direct numerical simulation (DNS). Such flows can only be approached using large-eddy simulation (LES), which requires the introduction of a sub-filter model for the momentum dynamics. Likewise, for the particle motion the effect of sub-filter scales needs to be reconstructed approximately, as there is no explicit access to turbulent sub-filter scales. To recover the dynamic consequences of the unresolved scales, partial reconstruction through approximate deconvolution of the LES-filter is combined with explicit stochastic forcing in the equations of mo...
In the context of Large Eddy Simulation (LES) of turbulent flow laden by solid particles, we propose...
We develop a hybrid model for large-eddy simulation of particle-laden turbulent flow, which is a com...
The problem of accurate Eulerian–Lagrangian modeling of inertial particle dispersion in large-eddy ...
The motion of small particles in turbulent conditions is influenced by the entire range of length- a...
We develop a hybrid model for large-eddy simulation of particle-laden turbulent flow, which is a com...
Large-eddy simulation (LES) of two-phase turbulent flows exhibits quantitative differences in partic...
In large-eddy simulation (LES) of turbulent dispersed flows, modelling and numerical inaccuracies ar...
DNS and LES of particle-laden turbulent channel flow, in which the particles experience a drag force...
One issue associated with the use of Large-Eddy Simulation (LES) to investigate the dispersion of sm...
Direct numerical simulation (DNS) and large-eddy simulation (LES) of particle-laden turbulentchannel...
International audienceLagrangian simulations are today widely used for simulating aeronautical chamb...
One issue associated with the use of Large-Eddy Simulation (LES) to investigate the dispersion of sm...
Summary. Large-eddy simulation of particle-laden turbulent channel flow is inves-tigated for several...
In the context of Large Eddy Simulation (LES) of turbulent flow laden by solid particles, we propose...
We develop a hybrid model for large-eddy simulation of particle-laden turbulent flow, which is a com...
The problem of accurate Eulerian–Lagrangian modeling of inertial particle dispersion in large-eddy ...
The motion of small particles in turbulent conditions is influenced by the entire range of length- a...
We develop a hybrid model for large-eddy simulation of particle-laden turbulent flow, which is a com...
Large-eddy simulation (LES) of two-phase turbulent flows exhibits quantitative differences in partic...
In large-eddy simulation (LES) of turbulent dispersed flows, modelling and numerical inaccuracies ar...
DNS and LES of particle-laden turbulent channel flow, in which the particles experience a drag force...
One issue associated with the use of Large-Eddy Simulation (LES) to investigate the dispersion of sm...
Direct numerical simulation (DNS) and large-eddy simulation (LES) of particle-laden turbulentchannel...
International audienceLagrangian simulations are today widely used for simulating aeronautical chamb...
One issue associated with the use of Large-Eddy Simulation (LES) to investigate the dispersion of sm...
Summary. Large-eddy simulation of particle-laden turbulent channel flow is inves-tigated for several...
In the context of Large Eddy Simulation (LES) of turbulent flow laden by solid particles, we propose...
We develop a hybrid model for large-eddy simulation of particle-laden turbulent flow, which is a com...
The problem of accurate Eulerian–Lagrangian modeling of inertial particle dispersion in large-eddy ...