Through experiments and discrete particle method (DPM) simulations we present evidence for the existence of a recirculating structure, that exists near the front of dense granular avalanches, and is known as a breaking size-segregation (BSS) wave. This is achieved through the study of three-dimensional bidisperse granular flows in a moving-bed channel. Particle-size segregation gives rise to the formation of a large-particle-rich front and a small-particle-rich tail with a BSS wave positioned between the tail and front. We experimentally resolve the structure of the BSS wave using refractive-index matched scanning and find that it is qualitatively similar to the structure observed in DPM simulations. Our analysis demonstrates a relation bet...
Particle-size segregation can have a significant feedback on the bulk motion of granular avalanches ...
When a mixture of particles, which differ in both their size and their density, avalanches downslope...
When a mixture of particles, which differ in both their size and their density, avalanches downslope...
We experimentally prove the existence of the theoretically predicted breaking size-segregation wave ...
Particle-size segregation is a common feature of dense gravity driven granular free-surface flows, w...
Particle motion within the leading edge of bidisperse gravity-driven granular flows is affected by p...
Stratification patterns are formed when a bidisperse mixture of large rough grains and smaller more ...
Hazardous natural flows such as snow avalanches, debris-flows, lahars and pyroclastic flows are part...
Debris and pyroclastic flows often have bouldery flow fronts, which act as a natural dam resisting f...
Particle size segregation can have a significant feedback on the motion of many hazardous geophysica...
Flows of granular materials widely occur in many industrial and natural environments. Particle-size ...
Particles of differing sizes are notoriously prone to segregate, which is a chronic problem in the m...
Stratification patterns are formed when a bidisperse mixture of large rough grains and smaller more ...
Particle-size segregation can have a significant feedback on the bulk motion of granular avalanches ...
A general continuum theory for particle-size segregation and diffusive remixing in polydisperse gran...
Particle-size segregation can have a significant feedback on the bulk motion of granular avalanches ...
When a mixture of particles, which differ in both their size and their density, avalanches downslope...
When a mixture of particles, which differ in both their size and their density, avalanches downslope...
We experimentally prove the existence of the theoretically predicted breaking size-segregation wave ...
Particle-size segregation is a common feature of dense gravity driven granular free-surface flows, w...
Particle motion within the leading edge of bidisperse gravity-driven granular flows is affected by p...
Stratification patterns are formed when a bidisperse mixture of large rough grains and smaller more ...
Hazardous natural flows such as snow avalanches, debris-flows, lahars and pyroclastic flows are part...
Debris and pyroclastic flows often have bouldery flow fronts, which act as a natural dam resisting f...
Particle size segregation can have a significant feedback on the motion of many hazardous geophysica...
Flows of granular materials widely occur in many industrial and natural environments. Particle-size ...
Particles of differing sizes are notoriously prone to segregate, which is a chronic problem in the m...
Stratification patterns are formed when a bidisperse mixture of large rough grains and smaller more ...
Particle-size segregation can have a significant feedback on the bulk motion of granular avalanches ...
A general continuum theory for particle-size segregation and diffusive remixing in polydisperse gran...
Particle-size segregation can have a significant feedback on the bulk motion of granular avalanches ...
When a mixture of particles, which differ in both their size and their density, avalanches downslope...
When a mixture of particles, which differ in both their size and their density, avalanches downslope...