The movement of heat in a convecting system is typically described by the nondimensional Nusselt number, which involves an average over both space and time. In direct numerical simulations of turbulent flows, there is considerable variation in the contributions to the Nusselt number, both because of local spatial variations due to plumes and because of intermittency in time. We develop a statistical approach to more completely describe the structure of heat transfer, using an exit-distance extracted from Lagrangian tracer particles, which we call the Lagrangian heat structure. In a comparison between simulations of homogeneous turbulence driven by Boussinesq convection, the Lagrangian heat structure reveals significant non-Gaussian characte...
Eulerian and Lagrangian statistics in the atmospheric convective boundary layer (CBL) are studied by...
Turbulent superstructures, i.e. large-scale flow structures in turbulent flows, play a crucial role ...
International audienceDue to large scale flow inhomogeneities and the effects of temperature, turbul...
The movement of heat in a convecting system is typically described by the nondimensional Nusselt num...
We explore the mechanisms of heat transfer in a turbulent constant heat flux-driven Rayleigh-B\'enar...
We investigate the utility of the convex hull of many Lagrangian tracers to analyze transport proper...
We analyze large‐scale patterns in three‐dimensional turbulent convection in a horizontally extended...
Single-particle Lagrangian velocity statistics in the Bolgiano–Obukhov regime of two-dimensional tur...
We explore the transport mechanisms of heat in two- and three-dimensional turbulent convection flows...
Using passive tracers as sensors, we obtain Lagrangian measurements of tracers position, velocity an...
A combined convolutional autoencoder-recurrent neural network machine learning model is presented to...
Thermal convection in a gravitational field is the source of most large-scale flows on Earth, planet...
Direct real-space multi-point measurements of the velocity and temperature fields were carried out i...
Over the past years, turbulent convection has been the subject of extensive studies (see e.g. Ahlers...
Turbulent superstructures in horizontally extended three-dimensional Rayleigh-B\'enard convection fl...
Eulerian and Lagrangian statistics in the atmospheric convective boundary layer (CBL) are studied by...
Turbulent superstructures, i.e. large-scale flow structures in turbulent flows, play a crucial role ...
International audienceDue to large scale flow inhomogeneities and the effects of temperature, turbul...
The movement of heat in a convecting system is typically described by the nondimensional Nusselt num...
We explore the mechanisms of heat transfer in a turbulent constant heat flux-driven Rayleigh-B\'enar...
We investigate the utility of the convex hull of many Lagrangian tracers to analyze transport proper...
We analyze large‐scale patterns in three‐dimensional turbulent convection in a horizontally extended...
Single-particle Lagrangian velocity statistics in the Bolgiano–Obukhov regime of two-dimensional tur...
We explore the transport mechanisms of heat in two- and three-dimensional turbulent convection flows...
Using passive tracers as sensors, we obtain Lagrangian measurements of tracers position, velocity an...
A combined convolutional autoencoder-recurrent neural network machine learning model is presented to...
Thermal convection in a gravitational field is the source of most large-scale flows on Earth, planet...
Direct real-space multi-point measurements of the velocity and temperature fields were carried out i...
Over the past years, turbulent convection has been the subject of extensive studies (see e.g. Ahlers...
Turbulent superstructures in horizontally extended three-dimensional Rayleigh-B\'enard convection fl...
Eulerian and Lagrangian statistics in the atmospheric convective boundary layer (CBL) are studied by...
Turbulent superstructures, i.e. large-scale flow structures in turbulent flows, play a crucial role ...
International audienceDue to large scale flow inhomogeneities and the effects of temperature, turbul...