We analyze large‐scale patterns in three‐dimensional turbulent convection in a horizontally extended square convection cell by means of Lagrangian particle trajectories calculated in direct numerical simulations. Different Lagrangian computational methods, i.e. finite‐time Lyapunov exponents, spectral and density‐based clustering and transfer operator approaches, are used to detect these large‐scale structures, which are denoted as turbulent superstructures of convection
Turbulent superstructures, i.e. large-scale flow structures in turbulent flows, play a crucial role ...
Thermal convection is one of the most important heat transport mechanisms and the driving force behi...
This thesis focuses on laboratory experiments of turbulent Rayleigh Benard convection. Emphasis is p...
We analyze large‐scale patterns in three‐dimensional turbulent convection in a horizontally extended...
In Rayleigh-Bénard convection, turbulent superstructures are large-scale patterns of circulation rol...
Turbulent Rayleigh-Bénard convection displays a large-scale order in the form of rolls and cells on ...
We explore the transport mechanisms of heat in two- and three-dimensional turbulent convection flows...
Large-scale computations in combination with new mathematical analysis tools make studies of the lar...
We present spatially and temporally resolved velocity and acceleration measurements of turbulent Ray...
Turbulent superstructures in horizontally extended three-dimensional Rayleigh-Bénard convection flow...
Large-scale mean patterns in Rayleigh-Bénard convection, also referred to as turbulent superstructur...
Coherent circulation rolls and their relevance for the turbulent heat transfer in a two-dimensional ...
We explore the mechanisms of heat transfer in a turbulent constant heat flux-driven Rayleigh-B\'enar...
Turbulent superstructures in horizontally extended three-dimensional Rayleigh-B\'enard convection fl...
This is the final version. Available on open access from Cambridge University Press via the DOI in t...
Turbulent superstructures, i.e. large-scale flow structures in turbulent flows, play a crucial role ...
Thermal convection is one of the most important heat transport mechanisms and the driving force behi...
This thesis focuses on laboratory experiments of turbulent Rayleigh Benard convection. Emphasis is p...
We analyze large‐scale patterns in three‐dimensional turbulent convection in a horizontally extended...
In Rayleigh-Bénard convection, turbulent superstructures are large-scale patterns of circulation rol...
Turbulent Rayleigh-Bénard convection displays a large-scale order in the form of rolls and cells on ...
We explore the transport mechanisms of heat in two- and three-dimensional turbulent convection flows...
Large-scale computations in combination with new mathematical analysis tools make studies of the lar...
We present spatially and temporally resolved velocity and acceleration measurements of turbulent Ray...
Turbulent superstructures in horizontally extended three-dimensional Rayleigh-Bénard convection flow...
Large-scale mean patterns in Rayleigh-Bénard convection, also referred to as turbulent superstructur...
Coherent circulation rolls and their relevance for the turbulent heat transfer in a two-dimensional ...
We explore the mechanisms of heat transfer in a turbulent constant heat flux-driven Rayleigh-B\'enar...
Turbulent superstructures in horizontally extended three-dimensional Rayleigh-B\'enard convection fl...
This is the final version. Available on open access from Cambridge University Press via the DOI in t...
Turbulent superstructures, i.e. large-scale flow structures in turbulent flows, play a crucial role ...
Thermal convection is one of the most important heat transport mechanisms and the driving force behi...
This thesis focuses on laboratory experiments of turbulent Rayleigh Benard convection. Emphasis is p...