Bulletin of the American Physical Society
74th Annual Meeting of the APS Division of Fluid Dynamics
Volume 66, Number 17
Sunday–Tuesday, November 21–23, 2021; Phoenix Convention Center, Phoenix, Arizona
Session F12: Particle-laden Flows: Particle-Resolved Simulations
5:25 PM–6:43 PM,
Sunday, November 21, 2021
Room: North 126 ABC
Chair: Gustaaf Jacobs, San Diego State University
Abstract: F12.00005 : The dynamics of a particle pair submerged in an oscillating flow
6:17 PM–6:30 PM
Not Participating
Presenter:
Timo van Overveld
(Eindhoven University of Technology)
Authors:
Timo van Overveld
(Eindhoven University of Technology)
Tariq Shajahan
(Delft University of Technology)
Wim-Paul Breugem
(Delft University of Technology)
Herman Clercx
(Eindhoven University of Technology)
Matias Duran Matute
(Eindhoven University of Technology)
We have performed direct numerical simulations of a fully-resolved, oscillating flow in which the pair of particles is modeled using an immersed boundary method. Our simulations show that the particles oscillate both parallel and perpendicularly to the oscillating flow in elongated figure 8 trajectories.
In absence of bottom friction, the mean gap between the particles depends only on the normalized Stokes boundary layer thickness δ/D and on the streamwise excursion length of the particles relative to the fluid Ar/D.
For Ar/D < 1, viscous effects dominate and the mean particle separation only depends on δ/D. For larger values of Ar/D, advection becomes important and the gap widens. Additionally, the two regimes are observed in the magnitude of the oscillations of the gap perpendicular to the flow. Overall, we find that the mean gap scales as 3.0(δ/D)1.5+0.03(Ar/D)3, which shows excellent agreement with previous experimental results.
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