A La Porta, GA Voth, AM Crawford, J Alexander… - Nature, 2001 - nature.com
The motion of fluid particles as they are pushed along erratic trajectories by fluctuating pressure gradients is fundamental to transport and mixing in turbulence. It is essential in …
GA Voth, A La Porta, AM Crawford… - Journal of Fluid …, 2002 - cambridge.org
We use silicon strip detectors (originally developed for the CLEO III high-energy particle physics experiment) to measure fluid particle trajectories in turbulence with temporal …
The breakup of drops and bubbles in turbulent fluids is a key mechanism in many environmental and engineering processes. Even in the well-studied dilute case, quantitative …
F Moisy, J Jiménez - Journal of fluid mechanics, 2004 - cambridge.org
The regions associated with high levels of vorticity and energy dissipation are studied in numerically simulated isotropic turbulence at, with no noticeable dependence on the …
We introduce an original acoustic method to track the motion of tracer particles in high Reynolds number turbulent flows. We present in detail the experimental technique and show …
The unsteady structure of cavitating flows is investigated by coupled experimental and numerical means. Experiments focus on the structure and dynamics of sheet cavitation on …
B Tian, L Li, Y Meng, B Huang - Physics of Fluids, 2022 - pubs.aip.org
The multiscale effect of cavitation is a complicated multiphase phenomenon involving macroscale cavities and microscale bubbles. The cavitating flows at four different patterns …
IM Mazzitelli, D Lohse, F Toschi - Journal of Fluid Mechanics, 2003 - cambridge.org
Microbubble-laden homogeneous and isotropic turbulent flow is investigated by using direct numerical simulation of the three-dimensional Navier–Stokes equations and computing the …
The flow produced in an enclosed cylinder of height-to-radius ratio of two by the counter- rotation of the top and bottom disks is numerically investigated. When the Reynolds number …