5 pages, 4 figuresInternational audienceWe report experimental measurements of Lagrangian accelerations in the bulk of intense turbulent flows of dilute polymer solutions by following tracer particles with a high-speed optical tracking system. We observed a significant decrease in the acceleration variance in dilute polymer solutions. The shape of the normalized acceleration probability density functions, however, remain the same as in Newtonian water flows. We also observed an increase in the turbulent Lagrangian acceleration autocorrelation time in these dilute polymer solutions
We use silicon strip detectors (originally developed for the CLEO III high-energy particle physics e...
We report experimental results on the joint statistics of the Lagrangian acceleration and velocity i...
We present measurements of fluid particle accelerations in turbulent water flow between counterrotat...
We studied the effects of long-chain polymers on the small scales of turbulence by experimental meas...
accepted for publication in Physical Review LettersInternational audienceWe report experimental resu...
Abstract submitted to EE250 Our understanding of the role of pressure in turbulence is limited becau...
We report experimental results on the three-dimensional Lagrangian acceleration in highly turbulent ...
7 pages, 4 figuresInternational audienceWe compare experimental data and numerical simulations for t...
We compare experimental data and numerical simulations for the dynamics of inertial particles with f...
The motion of fluid particles as they are pushed along erratic trajectories by fluctuating pressure ...
Fluid flows in nature and technology normally depart from laminarity and are turbulent in the majori...
4 pagesWe use an extended laser Doppler technique to track optically the velocity of individual part...
We report results from the first systematic Lagrangian experimental investigation in the previously ...
We use silicon strip detectors (originally developed for the CLEO III high-energy particle physics e...
By tracking small particles in the bulk of an intensely turbulent laboratory flow, we study the effe...
We use silicon strip detectors (originally developed for the CLEO III high-energy particle physics e...
We report experimental results on the joint statistics of the Lagrangian acceleration and velocity i...
We present measurements of fluid particle accelerations in turbulent water flow between counterrotat...
We studied the effects of long-chain polymers on the small scales of turbulence by experimental meas...
accepted for publication in Physical Review LettersInternational audienceWe report experimental resu...
Abstract submitted to EE250 Our understanding of the role of pressure in turbulence is limited becau...
We report experimental results on the three-dimensional Lagrangian acceleration in highly turbulent ...
7 pages, 4 figuresInternational audienceWe compare experimental data and numerical simulations for t...
We compare experimental data and numerical simulations for the dynamics of inertial particles with f...
The motion of fluid particles as they are pushed along erratic trajectories by fluctuating pressure ...
Fluid flows in nature and technology normally depart from laminarity and are turbulent in the majori...
4 pagesWe use an extended laser Doppler technique to track optically the velocity of individual part...
We report results from the first systematic Lagrangian experimental investigation in the previously ...
We use silicon strip detectors (originally developed for the CLEO III high-energy particle physics e...
By tracking small particles in the bulk of an intensely turbulent laboratory flow, we study the effe...
We use silicon strip detectors (originally developed for the CLEO III high-energy particle physics e...
We report experimental results on the joint statistics of the Lagrangian acceleration and velocity i...
We present measurements of fluid particle accelerations in turbulent water flow between counterrotat...