English

Clustering and surface distributions of buoyant particles in open-channel flows

Fluid Dynamics 2026-01-29 v1

Abstract

This study investigates the clustering behaviour and surface distributions of buoyant particles at the air-water interface in open-channel turbulent flow, focusing on the interplay between capillary attraction, hydrodynamic drag, and flow-driven lateral transport. Using controlled laboratory flume experiments, we systematically examine clustering dynamics for two particle types differing in size and density. To interpret the observed behaviour, we extend capillary-based clustering frameworks to open-channel flows by introducing a dimensionless clustering Weber number (We_cl) that captures the balance between the flow-induced disruptive force and capillary attraction, providing a compact description of the observed clustering behaviour. In addition, we demonstrate that secondary currents play a central role in surface particle transport, producing systematic lateral accumulation that depends on channel aspect ratio. Together, these findings extend capillary-driven clustering theory to open-channel turbulence and reveal secondary currents as a key mechanism controlling particle surface distributions.

Keywords

Cite

@article{arxiv.2601.20258,
  title  = {Clustering and surface distributions of buoyant particles in open-channel flows},
  author = {Ana Todorova and Robert K. Niven and Matthias Kramer},
  journal= {arXiv preprint arXiv:2601.20258},
  year   = {2026}
}

Comments

12 pages, 5 figures