We present measurements of fluid particle accelerations in turbulent water flow between counterrotating disks using three-dimensional Lagrangian particle tracking. By simultaneously following multiple particles with sub-Kolmogorov-time-scale temporal resolution, we measured the spatial correlation of fluid particle acceleration at Taylor microscale Reynolds numbers between 200 and 690. We also obtained indirect, nonintrusive measurements of the Eulerian pressure structure functions by integrating the acceleration correlations. Our measurements are in good agreement with the theoretical predictions of the acceleration correlations and the pressure structure function in isotropic high-Reynolds number turbulence by Obukhov and Yaglom in 1951 [...
We compare experimental data and numerical simulations for the dynamics of inertial particles with f...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...
International audienceWe study the dynamics of neutrally buoyant particles with diameters varying in...
We present measurements of fluid particle accelerations in turbulent water flow between counterrotat...
Abstract submitted to EE250 Our understanding of the role of pressure in turbulence is limited becau...
We use silicon strip detectors (originally developed for the CLEO III high-energy particle physics e...
The motion of fluid particles as they are pushed along erratic trajectories by fluctuating pressure ...
We use silicon strip detectors (originally developed for the CLEO III high-energy particle physics e...
We report experimental results on the three-dimensional Lagrangian acceleration in highly turbulent ...
We study the Lagrangian velocity and acceleration statistics of light particles (micro-bubbles in wa...
accepted for publication in Physical Review LettersInternational audienceWe report experimental resu...
In turbulence, ideas of energy cascade and energy flux, substantiated by the exact Kolmogorov relati...
We report results from the first systematic Lagrangian experimental investigation in the previously ...
4 pagesWe use an extended laser Doppler technique to track optically the velocity of individual part...
We report measurements of the Lagrangian velocity structure functions of orders 1 through 10 in a hi...
We compare experimental data and numerical simulations for the dynamics of inertial particles with f...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...
International audienceWe study the dynamics of neutrally buoyant particles with diameters varying in...
We present measurements of fluid particle accelerations in turbulent water flow between counterrotat...
Abstract submitted to EE250 Our understanding of the role of pressure in turbulence is limited becau...
We use silicon strip detectors (originally developed for the CLEO III high-energy particle physics e...
The motion of fluid particles as they are pushed along erratic trajectories by fluctuating pressure ...
We use silicon strip detectors (originally developed for the CLEO III high-energy particle physics e...
We report experimental results on the three-dimensional Lagrangian acceleration in highly turbulent ...
We study the Lagrangian velocity and acceleration statistics of light particles (micro-bubbles in wa...
accepted for publication in Physical Review LettersInternational audienceWe report experimental resu...
In turbulence, ideas of energy cascade and energy flux, substantiated by the exact Kolmogorov relati...
We report results from the first systematic Lagrangian experimental investigation in the previously ...
4 pagesWe use an extended laser Doppler technique to track optically the velocity of individual part...
We report measurements of the Lagrangian velocity structure functions of orders 1 through 10 in a hi...
We compare experimental data and numerical simulations for the dynamics of inertial particles with f...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...
International audienceWe study the dynamics of neutrally buoyant particles with diameters varying in...