arXiv · 1501.00700
Turbulence attenuation by large neutrally buoyant particles
Abstract
Turbulence modulation by inertial-range-size, neutrally-buoyant particles is investigated experimentally in a von Kármán flow. Increasing the particle volume fraction $Φ_\mathrm{v}$, maintaining constant impellers Reynolds number attenuates the fluid turbulence. The inertial-range energy transfer rate decreases as $\proptoΦ_\mathrm{v}^{2/3}$, suggesting that only particles located on a surface affect the flow. Small-scale turbulent properties, such as structure functions or acceleration distribution, are unchanged. Finally, measurements hint at the existence of a transition between two different regimes occurring when the average distance between large particles is of the order of the thickness of their boundary layers.
Explore related subjects
Keep this discovery
Mamadou Cisse, Ewe Wei Saw, Mathieu Gibert, Eberhard Bodenschatz, Jeremie Bec. 2015-01-04. Turbulence attenuation by large neutrally buoyant particles. https://arxiv.org/abs/1501.00700
Cite the original work for its findings. Save a collection to share your selection of sources.