Zero-Inertia (ZI) models are used in overland flow simulation due to their mathematical simplicity, compared to more complex formulations such as Shallow Water (SW) models. The main hypothesis in ZI models is that the flow is driven by water surface and friction gradients, neglecting local accelerations. On the other hand, SW models are a complete dynamical formulation that provide more information at the cost of a higher level of complexity. In realistic problems, the usually huge number of cells required to ensure accurate spatial representation implies a large amount of computing effort and time. This is particularly true in 2D models. Hence, there is an interest in developing efficient numerical methods. In general terms, numerical sche...
The ability of two-dimensional hydrodynamic models to accurately and efficiently predict the propaga...
International audienceThe simulation of sediment transport, based on the shallow-water equations cou...
Numerical models solving the full 2-D shallow water equations (SWEs) have been increasingly used to ...
Zero-Inertia (ZI) models are used in overland flow simulation due to their mathematical simplicity, ...
In this work, an implicit method for solving 2D hyperbolic systems of equations is presented, focusi...
The shallow water equations are a mathematical tool widely applied for the simulation of flow routi...
Implicit simulations for morphodynamic Shallow Water flows are considered. The efficiency of implici...
The shallow water equations are a mathematical tool widely applied for the simulation of flow routin...
Shallow water flow over level and non-level soil surfaces is governed by three partial differential ...
In the last decades, more or less complex physically-based hydrological models, have been developed ...
The numerical modelling of 2D shallow flows in complex geometries involving transient flow and movab...
An edited version of this paper was published by AGU. Copyright (2015) American Geophysical Union.Th...
© 2018 The Authors Discretisation of the friction terms to ensure numerical stability and accuracy r...
PhD ThesisThis work assesses two numerical approaches that are most commonly used nowadays for large...
AbstractThe stability analysis, the accuracy and the efficiency of a semi-implicit finite difference...
The ability of two-dimensional hydrodynamic models to accurately and efficiently predict the propaga...
International audienceThe simulation of sediment transport, based on the shallow-water equations cou...
Numerical models solving the full 2-D shallow water equations (SWEs) have been increasingly used to ...
Zero-Inertia (ZI) models are used in overland flow simulation due to their mathematical simplicity, ...
In this work, an implicit method for solving 2D hyperbolic systems of equations is presented, focusi...
The shallow water equations are a mathematical tool widely applied for the simulation of flow routi...
Implicit simulations for morphodynamic Shallow Water flows are considered. The efficiency of implici...
The shallow water equations are a mathematical tool widely applied for the simulation of flow routin...
Shallow water flow over level and non-level soil surfaces is governed by three partial differential ...
In the last decades, more or less complex physically-based hydrological models, have been developed ...
The numerical modelling of 2D shallow flows in complex geometries involving transient flow and movab...
An edited version of this paper was published by AGU. Copyright (2015) American Geophysical Union.Th...
© 2018 The Authors Discretisation of the friction terms to ensure numerical stability and accuracy r...
PhD ThesisThis work assesses two numerical approaches that are most commonly used nowadays for large...
AbstractThe stability analysis, the accuracy and the efficiency of a semi-implicit finite difference...
The ability of two-dimensional hydrodynamic models to accurately and efficiently predict the propaga...
International audienceThe simulation of sediment transport, based on the shallow-water equations cou...
Numerical models solving the full 2-D shallow water equations (SWEs) have been increasingly used to ...