International audienceIn this paper, we present a new two-layer model of Savage–Hutter type to study submarine avalanches. A layer composed of fluidized granular material is assumed to flow within an upper layer composed of an inviscid fluid (e.g. water). The model is derived in a system of local coordinates following a non-erodible bottom and takes into account its curvature. We prove that the model verifies an entropy inequality, preserves water at rest for a sediment layer and their solutions can be seen as particular solutions of incompressible Euler equations under hydrostatic assumptions. Buoyancy effects and the centripetal acceleration of the grain movement due to the curvature of the bottom are considered in the definition of the C...
A model for tsunamis propagation is derived by coupling a weakly compressible liquid layer, standing...
We develop a new central-upwind scheme for a one-dimensional Savage-Hutter type model of submarine l...
This paper presents a new numerical model simulating tsunamis generation by landslides. Water, air, ...
International audienceIn this paper, we present a new two-layer model of Savage–Hutter type to study...
International audienceThe main goal of these notes is to present several depth-averaged models with ...
The Savage-Hutter model is actively applied to describe the gravity driven shallow-water flows like ...
International audienceWe propose a two-layer model with two different axes of integration and a well...
We describe a two-layer, coupled model for landslide motion over irregular bathymetry and resulting ...
This work presents two different types of models to study submarine sediment movements and its numer...
Abstract: Gravitational flows like submarine and subaerial landslides and debris avalanches may gene...
We develop and test a new two-layer model for granular landslide motion and tsunami wave generation....
International audienceSummary In this work, we study the modeling of one-dimensional avalanche flows...
We describe a numerical treatment for a two-layer coupled model developed for the investigation of s...
This paper considers a model that reproduces the dynamics of snow avalanches from initiation to runo...
Underwater landslides are a common source of tsunamis in coastal areas. In this thesis, three numeri...
A model for tsunamis propagation is derived by coupling a weakly compressible liquid layer, standing...
We develop a new central-upwind scheme for a one-dimensional Savage-Hutter type model of submarine l...
This paper presents a new numerical model simulating tsunamis generation by landslides. Water, air, ...
International audienceIn this paper, we present a new two-layer model of Savage–Hutter type to study...
International audienceThe main goal of these notes is to present several depth-averaged models with ...
The Savage-Hutter model is actively applied to describe the gravity driven shallow-water flows like ...
International audienceWe propose a two-layer model with two different axes of integration and a well...
We describe a two-layer, coupled model for landslide motion over irregular bathymetry and resulting ...
This work presents two different types of models to study submarine sediment movements and its numer...
Abstract: Gravitational flows like submarine and subaerial landslides and debris avalanches may gene...
We develop and test a new two-layer model for granular landslide motion and tsunami wave generation....
International audienceSummary In this work, we study the modeling of one-dimensional avalanche flows...
We describe a numerical treatment for a two-layer coupled model developed for the investigation of s...
This paper considers a model that reproduces the dynamics of snow avalanches from initiation to runo...
Underwater landslides are a common source of tsunamis in coastal areas. In this thesis, three numeri...
A model for tsunamis propagation is derived by coupling a weakly compressible liquid layer, standing...
We develop a new central-upwind scheme for a one-dimensional Savage-Hutter type model of submarine l...
This paper presents a new numerical model simulating tsunamis generation by landslides. Water, air, ...