International audienceThe partial fluidization model developed by Aranson and Tsimring (2002) is used to simulate the spreading of a 2D circular cap of granular material over an erodible bed made of the same material. Numerical results show that the presence of even a very thin layer of granular material lying on the solid bed strongly increases the mobility of granular flows. Furthermore, as the thickness of the granular layer increases, the dynamics of the flowing mass changes from a decelerating avalanche to a traveling wave. Numerical simulation suggest that surges are generated if enough mass is entrained, increasing the energy of the flowing material and balancing the energy lost by friction
A blunt obstacle in the path of a rapid granular avalanche generates a bow shock (a jump in the aval...
International audienceThe prediction of the runout length L of large dry debris flows has long been ...
We study water-immersed granular avalanches in a long rectangular cell of small thickness. By video ...
Granular materials can behave as harmless sand dunes or as devastating landslides. A granular avalan...
A continuum theory of partially fluidized granular flows is proposed. The theory is based on a combi...
The net erosion-deposition rate of a snow avalanche is fundamental to the dynamics of the flow and i...
International audienceWe present a 2-D Contact Dynamics discrete element model for simulating initia...
A continuous exchange of particles between an erodible substrate and the granular flow above it occu...
International audienceWe describe laboratory experiments of granular material flowing over an inclin...
International audienceWhen a deposited layer of granular material fully immersed in a liquid is sudd...
International audienceDense avalanches of granular snow can lead to huge damages on structures: buil...
[Departement_IRSTEA]Eaux [TR1_IRSTEA]RIVAGEThis paper reports small-scale laboratory tests on granul...
By means of coupled molecular dynamics-computational fluid dynamics simulations, we analyze the init...
Through experiments and discrete particle method (DPM) simulations we present evidence for the exist...
A blunt obstacle in the path of a rapid granular avalanche generates a bow shock (a jump in the aval...
International audienceThe prediction of the runout length L of large dry debris flows has long been ...
We study water-immersed granular avalanches in a long rectangular cell of small thickness. By video ...
Granular materials can behave as harmless sand dunes or as devastating landslides. A granular avalan...
A continuum theory of partially fluidized granular flows is proposed. The theory is based on a combi...
The net erosion-deposition rate of a snow avalanche is fundamental to the dynamics of the flow and i...
International audienceWe present a 2-D Contact Dynamics discrete element model for simulating initia...
A continuous exchange of particles between an erodible substrate and the granular flow above it occu...
International audienceWe describe laboratory experiments of granular material flowing over an inclin...
International audienceWhen a deposited layer of granular material fully immersed in a liquid is sudd...
International audienceDense avalanches of granular snow can lead to huge damages on structures: buil...
[Departement_IRSTEA]Eaux [TR1_IRSTEA]RIVAGEThis paper reports small-scale laboratory tests on granul...
By means of coupled molecular dynamics-computational fluid dynamics simulations, we analyze the init...
Through experiments and discrete particle method (DPM) simulations we present evidence for the exist...
A blunt obstacle in the path of a rapid granular avalanche generates a bow shock (a jump in the aval...
International audienceThe prediction of the runout length L of large dry debris flows has long been ...
We study water-immersed granular avalanches in a long rectangular cell of small thickness. By video ...