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River-bed armouring as a granular segregation phenomenon.
Behrooz Ferdowsi1,2,3, Carlos P Ortiz2,4, Morgane Houssais5
1Department of Geosciences, Princeton University, Princeton, NJ, 08544, USA.
River bed armouring, crucial for protecting riverbeds, can form through two granular segregation mechanisms: rapid advection near the surface and slow diffusion deeper within. This study reveals insights into granular flow physics impacting river systems.
Area of Science:
- Earth and Environmental Sciences
- Physics
- Geology
Background:
- River beds often develop an armored surface layer of coarse grains, protecting finer sediment from erosion.
- The role of granular physics in forming this protective river-bed armor has not been fully explored.
- Dense granular flows, like river-bed transport, are known to exhibit particle segregation.
Purpose of the Study:
- To investigate the contribution of granular physics to river-bed armouring.
- To identify the mechanisms responsible for the development of river-bed armour.
- To understand particle segregation dynamics in bimodal sediment mixtures under laboratory river conditions.
Main Methods:
- Experiments were conducted in a laboratory river flume using bimodal sediment sizes.
- Particle motion was tracked from the surface to deep within the sediment bed.
- Findings were verified using continuum phenomenological modeling and discrete element method (DEM) simulations.
Main Results:
- Two distinct mechanisms contribute to the development of river-bed armour.
- Rapid, shear rate-dependent advective segregation occurs in the near-surface bed-load transport layer.
- Slow, diffusion-dominated segregation arises from creeping grains beneath the bed-load layer.
Conclusions:
- River-bed armouring can result from granular segregation originating from within the bed, not solely from fluid-driven sorting.
- The study provides new insights into the mechanics of granular segregation in dense granular flows.
- Findings are relevant to understanding various natural and engineered granular flow systems.
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