Flow-like landslides are one of the most catastrophic types of natural hazards due to their high velocity and long travel distance. They travel like fluid after initiation and mainly fall into the ‘flow’ movement type in the updated Varnes classification (Hungr et al., 2014). In recent years, depth-averaged models have been widely reported to predict the velocity and run-out distance of flow-like landslides. However, most of the existing depth-averaged models present different shortcomings for application to real-world simulations. This paper presents a novel depth-averaged model featured with a set of new governing equations derived in a mathematically rigorous way based on the shallow flow assumption and Mohr-Coulomb rheology. Particularl...
Rapid landslides pose a significant hazard worldwide, and there is currently no routine way of predi...
International audienceModelling of flow-like landslides is one of the possible approaches that can b...
Flow-like landslide is one of the most catastrophic types of natural hazards due to its high velocit...
Flow-like landslides are one of the most catastrophic types of natural hazards due to their high vel...
Numerical simulation is an efficient tool for the run-out analysis of rapid flow-like landslide. In ...
Flow-like landslides commonly happen in mountainous areas and may threaten people's lives, damage th...
The physical processes governing shallow landslide triggering can be ascribed to hydrological and ge...
Runout analysis, the prediction of landslide motion and its effects, is an essential component of l...
Flow-like landslides are a common type of natural hazards that may impose a great risk to people and...
This paper presents a mass flow model that includes gravity force, material stresses, drag force and...
The size of a shallow landslide is a fundamental control on both its hazard and geomorphic importanc...
AbstractLandslides of the flow types represent a worldwide natural hazard whose consequences have be...
This paper presents an overview of depth averaged modelling of fast catastrophic landslides where co...
Thanks to a sophisticated transient hydrogeological modelling allowing the determination of the pore...
Two numerical codes, with fundamental differences in their approaches, are used for modeling the Yu ...
Rapid landslides pose a significant hazard worldwide, and there is currently no routine way of predi...
International audienceModelling of flow-like landslides is one of the possible approaches that can b...
Flow-like landslide is one of the most catastrophic types of natural hazards due to its high velocit...
Flow-like landslides are one of the most catastrophic types of natural hazards due to their high vel...
Numerical simulation is an efficient tool for the run-out analysis of rapid flow-like landslide. In ...
Flow-like landslides commonly happen in mountainous areas and may threaten people's lives, damage th...
The physical processes governing shallow landslide triggering can be ascribed to hydrological and ge...
Runout analysis, the prediction of landslide motion and its effects, is an essential component of l...
Flow-like landslides are a common type of natural hazards that may impose a great risk to people and...
This paper presents a mass flow model that includes gravity force, material stresses, drag force and...
The size of a shallow landslide is a fundamental control on both its hazard and geomorphic importanc...
AbstractLandslides of the flow types represent a worldwide natural hazard whose consequences have be...
This paper presents an overview of depth averaged modelling of fast catastrophic landslides where co...
Thanks to a sophisticated transient hydrogeological modelling allowing the determination of the pore...
Two numerical codes, with fundamental differences in their approaches, are used for modeling the Yu ...
Rapid landslides pose a significant hazard worldwide, and there is currently no routine way of predi...
International audienceModelling of flow-like landslides is one of the possible approaches that can b...
Flow-like landslide is one of the most catastrophic types of natural hazards due to its high velocit...