Numerical investigation of correlation between the fluid particle acceleration and the intensity of turbulence in swirling flows at a large Reynolds number is carried out via direct numerical simulation. A weak power-law form correlation u r. m. s E C (a L) between the Lagrangian acceleration and the Eulerian turbulence intensity is derived. It is found that the increase of the swirl level leads to the increase of the exponent and the trajectory-conditioned correlation coefficient ρ (a L, u E) and results in a weak power-law augmentation of the acceleration intermittency. The trajectory-conditioned convection of turbulence fluctuation in the Eulerian viewpoint is generally linearly proportional to the fluctuation of Lagrangian accelerations...
International audienceThe Lagrangian velocity statistics of dissipative drift-wave turbulence are in...
The statistical properties of the Lagrangian acceleration vector of passive tracers in statistically...
We present measurements of fluid particle accelerations in turbulent water flow between counterrotat...
Numerical investigation of correlation between the fluid particle acceleration and the intensity of ...
We present a comparison of different particles' velocity and acceleration statistics in two paradigm...
International audienceThe acceleration statistics of sheared and rotating homogeneous turbulence are...
Abstract submitted to EE250 Our understanding of the role of pressure in turbulence is limited becau...
The acceleration statistics of sheared and rotating homogeneous turbulence are studied using direct ...
Lagrangian statistics of passive tracers in rotating turbulence is investigated by particle tracking...
The Lagrangian and Eulerian acceleration properties of fluid particles in homogeneous turbulence wit...
Lagrangian statistics of fluid-particle velocity and acceleration conditioned on fluctuations of dis...
The influence of the Earth background rotation on oceanic and atmospheric currents, as well as the e...
A detailed comparison between data from experimental measurements and numerical simulations of Lagra...
International audienceThe Lagrangian velocity statistics of dissipative drift-wave turbulence are in...
The statistical properties of the Lagrangian acceleration vector of passive tracers in statistically...
We present measurements of fluid particle accelerations in turbulent water flow between counterrotat...
Numerical investigation of correlation between the fluid particle acceleration and the intensity of ...
We present a comparison of different particles' velocity and acceleration statistics in two paradigm...
International audienceThe acceleration statistics of sheared and rotating homogeneous turbulence are...
Abstract submitted to EE250 Our understanding of the role of pressure in turbulence is limited becau...
The acceleration statistics of sheared and rotating homogeneous turbulence are studied using direct ...
Lagrangian statistics of passive tracers in rotating turbulence is investigated by particle tracking...
The Lagrangian and Eulerian acceleration properties of fluid particles in homogeneous turbulence wit...
Lagrangian statistics of fluid-particle velocity and acceleration conditioned on fluctuations of dis...
The influence of the Earth background rotation on oceanic and atmospheric currents, as well as the e...
A detailed comparison between data from experimental measurements and numerical simulations of Lagra...
International audienceThe Lagrangian velocity statistics of dissipative drift-wave turbulence are in...
The statistical properties of the Lagrangian acceleration vector of passive tracers in statistically...
We present measurements of fluid particle accelerations in turbulent water flow between counterrotat...