We present a numerical investigation of two-dimensional decaying turbulence in the Lagrangian framework. Focusing on single particle statistics, we investigate Lagrangian trajectories in a freely evolving turbulent velocity field. The dynamical evolution of the tracer particles is strongly dominated by the emergence and evolution of coherent structures. For a statistical analysis we focus on the Lagrangian acceleration as a central quantity. For more geometrical aspects we investigate the curvature along the trajectories. We find strong signatures for the self-similar universal behavior. (c) 2008 Elsevier B.V. All rights reserved
The behaviour of the second-order Lagrangian structure functions on state-of-the-art numerical data ...
In turbulence, ideas of energy cascade and energy flux, substantiated by the exact Kolmogorov relati...
In turbulence, ideas of energy cascade and energy flux, substantiated by the exact Kolmogorov relati...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
International audienceA study of the relationship between Lagrangian statistics and flow topology in...
The statistics of Lagrangian particles transported by a three-dimensional fully developed turbulent ...
In this paper we compare Lagrangian statistical quantities in the direct energy cascade of three-dim...
The statistics of Lagrangian particles transported by a three-dimensional fully developed turbulent ...
doi:10.1088/1367-2630/10/7/075018 Abstract. We discuss single-particle and two-particle statistics i...
The behaviour of the second-order Lagrangian structure functions on state-of-the-art numerical data ...
In turbulence, ideas of energy cascade and energy flux, substantiated by the exact Kolmogorov relati...
In turbulence, ideas of energy cascade and energy flux, substantiated by the exact Kolmogorov relati...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
The Lagrangian description of turbulence is characterized by a unique conceptual simplicity and by a...
International audienceA study of the relationship between Lagrangian statistics and flow topology in...
The statistics of Lagrangian particles transported by a three-dimensional fully developed turbulent ...
In this paper we compare Lagrangian statistical quantities in the direct energy cascade of three-dim...
The statistics of Lagrangian particles transported by a three-dimensional fully developed turbulent ...
doi:10.1088/1367-2630/10/7/075018 Abstract. We discuss single-particle and two-particle statistics i...
The behaviour of the second-order Lagrangian structure functions on state-of-the-art numerical data ...
In turbulence, ideas of energy cascade and energy flux, substantiated by the exact Kolmogorov relati...
In turbulence, ideas of energy cascade and energy flux, substantiated by the exact Kolmogorov relati...