English

Spatial and temporal evolution of an experimental debris flow, exhibiting coupled fluid and particulate phases

Fluid Dynamics 2020-03-26 v1

Abstract

The internal behaviour of debris flows provides fundamental insight into the mechanics responsible for their motion. We provide velocity data within a small-scale experimental debris flow, consisting of the instantaneous release of a water-granular mixture along a rectangular flume, inclined at 31 degrees. The results show a transition from a collisional, turbulent front to a viscous-type, steady flow body, exhibiting strong fluid-particulate coupling. This is the first time that both the spatial and temporal evolution of the internal mechanics of a small-scale debris flow have been considered. Our results serve as invaluable data for testing two-phase fluid-particulate numerical models.

Keywords

Cite

@article{arxiv.2003.11329,
  title  = {Spatial and temporal evolution of an experimental debris flow, exhibiting coupled fluid and particulate phases},
  author = {Caitlin M. Chalk and Jeffrey Peakall and Gareth Keevil and Raul Fuentes},
  journal= {arXiv preprint arXiv:2003.11329},
  year   = {2020}
}

Comments

46 pages, 16 figures, submitted to the Canadian Geotechnical Journal