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Published on: June 14, 2019
Extreme Small-Scale Clustering of Droplets in Turbulence Driven by Hydrodynamic Interactions
M A Yavuz1, R P J Kunnen1, G J F van Heijst1
1Fluid Dynamics Laboratory, Department of Applied Physics and J. M. Burgers Center for Fluid Dynamics, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, Netherlands.
Abstract:
We perform three-dimensional particle tracking measurements on droplets in a turbulent airflow. The droplets display the well-known preferential concentration of inertial particles, with an additional extreme clustering at the smallest scales. We explain this additional clustering phenomenon theoretically based on a Stokes-flow description of two spheres including their mutual hydrodynamic interaction and a perturbative small-inertia expansion.
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