International audienceA theoretical model based on a depth-averaged version of two-phase flow equations is developed to describe the initiation of underwater granular avalanches. The rheology of the granular phase is based on a shear-rate-dependent critical state theory, which combines a critical state theory proposed by Roux & Radjai (1998), and a rheological model recently proposed for immersed granular flows. Using those phenomenological constitutive equations, the model is able to describe both the dilatancy effects experienced by the granular skeleton during the initial deformations and the rheology of wet granular media when the flow is fully developed. Numerical solutions of the two-phase flow model are computed in the case of a unif...
[[abstract]]Submarine landslides are one of the major causes of tsunamis but less understood due to ...
We study water-immersed granular avalanches in a long rectangular cell of small thickness. By video ...
This paper considers a model that reproduces the dynamics of snow avalanches from initiation to runo...
International audienceA theoretical model based on a depth-averaged version of two-phase flow equati...
International audienceWhen a deposited layer of granular material fully immersed in a liquid is sudd...
[[abstract]]The collapse process of a submerged granular column is strongly affected by its initial ...
The aim of this thesis is to obtain a better understanding of geophysical flows like landslides. In ...
By means of coupled molecular dynamics-computational fluid dynamics simulations, we analyze the init...
Avalanches, landslides, and debris flows are geophysical hazards, which involve rapid mass movement ...
Granular avalanches are dangerous phenomena characterized by the rapid gravity-driven motion of gran...
International audienceThe main goal of these notes is to present several depth-averaged models with ...
Gravity-driven flows of granular materials are encountered in numerous natural phenomena such as deb...
A dense granular bed immersed in a viscous fluid and inclined above its angle of repose is stabilize...
Granular materials can behave as harmless sand dunes or as devastating landslides. A granular avalan...
Geophysical hazards usually involve multiphase flow of dense granular solids and water. Understandin...
[[abstract]]Submarine landslides are one of the major causes of tsunamis but less understood due to ...
We study water-immersed granular avalanches in a long rectangular cell of small thickness. By video ...
This paper considers a model that reproduces the dynamics of snow avalanches from initiation to runo...
International audienceA theoretical model based on a depth-averaged version of two-phase flow equati...
International audienceWhen a deposited layer of granular material fully immersed in a liquid is sudd...
[[abstract]]The collapse process of a submerged granular column is strongly affected by its initial ...
The aim of this thesis is to obtain a better understanding of geophysical flows like landslides. In ...
By means of coupled molecular dynamics-computational fluid dynamics simulations, we analyze the init...
Avalanches, landslides, and debris flows are geophysical hazards, which involve rapid mass movement ...
Granular avalanches are dangerous phenomena characterized by the rapid gravity-driven motion of gran...
International audienceThe main goal of these notes is to present several depth-averaged models with ...
Gravity-driven flows of granular materials are encountered in numerous natural phenomena such as deb...
A dense granular bed immersed in a viscous fluid and inclined above its angle of repose is stabilize...
Granular materials can behave as harmless sand dunes or as devastating landslides. A granular avalan...
Geophysical hazards usually involve multiphase flow of dense granular solids and water. Understandin...
[[abstract]]Submarine landslides are one of the major causes of tsunamis but less understood due to ...
We study water-immersed granular avalanches in a long rectangular cell of small thickness. By video ...
This paper considers a model that reproduces the dynamics of snow avalanches from initiation to runo...