By tracking tracer particles at high speeds and for long times, we study the geometric statistics of Lagrangian trajectories in an intensely turbulent laboratory flow. In particular, we consider the distinction between the displacement of particles from their initial positions and the total distance they travel. The difference of these two quantities shows power-law scaling in the inertial range. By comparing them with simulations of a chaotic but non-turbulent flow and a Lagrangian Stochastic model, we suggest that our results are a signature of turbulence
The Lagrangian perspective, describing a flow from the trajectories of fluid tracers, isa natural fr...
International audienceWe report measurements of the Lagrangian velocity structure functions of order...
We present an investigation of the statistics of velocity gradient related quantities, in particular...
By tracking tracer particles at high speeds and for long times, we study the geometric statistics of...
We report measurements of the curvature of Lagrangian trajectories in an intensely turbulent laborat...
4 pages, 5 figures. to appear in PRLInternational audienceWe have developed a new experimental techn...
New aspects of turbulence are uncovered if one considers the flow motion from the perspective of a f...
Scalar transport by turbulent flows is best described in terms of Lagrangian parcel motions. Here we...
The statistics of Lagrangian particles transported by a three-dimensional fully developed turbulent ...
4 pagesInternational audienceWe analyze the statistics of turbulent velocity fluctuations in the tim...
The Lagrangian statistics of heavy particles and of fluid tracers transported by a fully developed t...
The angle between subsequent particle displacement increments is evaluated as a function of the time...
For more than one hundred years, scientists are working to uncover how turbulent flows occur. This w...
We report measurements of the Lagrangian velocity structure functions of orders 1 through 10 in a hi...
A statistical description of turbulence comprising a probability distribution for stationary flows i...
The Lagrangian perspective, describing a flow from the trajectories of fluid tracers, isa natural fr...
International audienceWe report measurements of the Lagrangian velocity structure functions of order...
We present an investigation of the statistics of velocity gradient related quantities, in particular...
By tracking tracer particles at high speeds and for long times, we study the geometric statistics of...
We report measurements of the curvature of Lagrangian trajectories in an intensely turbulent laborat...
4 pages, 5 figures. to appear in PRLInternational audienceWe have developed a new experimental techn...
New aspects of turbulence are uncovered if one considers the flow motion from the perspective of a f...
Scalar transport by turbulent flows is best described in terms of Lagrangian parcel motions. Here we...
The statistics of Lagrangian particles transported by a three-dimensional fully developed turbulent ...
4 pagesInternational audienceWe analyze the statistics of turbulent velocity fluctuations in the tim...
The Lagrangian statistics of heavy particles and of fluid tracers transported by a fully developed t...
The angle between subsequent particle displacement increments is evaluated as a function of the time...
For more than one hundred years, scientists are working to uncover how turbulent flows occur. This w...
We report measurements of the Lagrangian velocity structure functions of orders 1 through 10 in a hi...
A statistical description of turbulence comprising a probability distribution for stationary flows i...
The Lagrangian perspective, describing a flow from the trajectories of fluid tracers, isa natural fr...
International audienceWe report measurements of the Lagrangian velocity structure functions of order...
We present an investigation of the statistics of velocity gradient related quantities, in particular...