In shallow water flow and transport modeling, the monotonic upstream-centered scheme for conservation laws (MUSCL) is widely used to extend the original Godunov scheme to second-order accuracy. The most important step in MUSCL-type schemes is MUSCL reconstruction, which calculate-extrapolates the values of independent variables from the cell center to the edge. The monotonicity of the scheme is preserved with the help of slope limiters that prevent the occurrence of new extrema during reconstruction. On structured grids, the calculation of the slope is straightforward and usually based on a 2-point stencil that uses the cell centers of the neighbor cell and the so-called far-neighbor cell of the edge under consideration. On unstructured gri...
A monotonic upstream-centred scheme for conservation law (MUSCL) for shallow water flows is formulat...
This paper presents a new approach to MUSCL reconstruction for solving the shallow-water equations o...
International audienceA higher-order numerical technique is presented for the direct sensitivity ana...
In shallow water flow and transport modeling, the monotonic upstream-centered scheme for conservatio...
In shallow water flow and transport modeling, the monotone upstream-centered scheme for conservation...
In shallow water flow and transport modeling, the monotonic upstream‐centered scheme for conservatio...
This paper describes an improved vector manipulation multislope monotone upstream-centred scheme for...
This paper describes an improved vector manipulation multislope monotone upstream-centred scheme for...
This paper describes an improved vector manipulation multislope monotone upstream-centred scheme for...
This paper describes an improved vector manipulation multislope monotone upstream-centred scheme for...
Within the framework of the two-dimensional cell-centered Godunov-type finite volume (CCFV) method, ...
Within the framework of the two-dimensional cell-centered Godunov-type finite volume (CCFV) method, ...
The aim of this paper is to present a novel monotone upstream scheme for conservation law (MUSCL) on...
Summarization: On unstructured meshes, the cell‐centered finite volume (CCFV) formulation, where the...
AbstractThe aim of this paper is to present a novel monotone upstream scheme for conservation law (M...
A monotonic upstream-centred scheme for conservation law (MUSCL) for shallow water flows is formulat...
This paper presents a new approach to MUSCL reconstruction for solving the shallow-water equations o...
International audienceA higher-order numerical technique is presented for the direct sensitivity ana...
In shallow water flow and transport modeling, the monotonic upstream-centered scheme for conservatio...
In shallow water flow and transport modeling, the monotone upstream-centered scheme for conservation...
In shallow water flow and transport modeling, the monotonic upstream‐centered scheme for conservatio...
This paper describes an improved vector manipulation multislope monotone upstream-centred scheme for...
This paper describes an improved vector manipulation multislope monotone upstream-centred scheme for...
This paper describes an improved vector manipulation multislope monotone upstream-centred scheme for...
This paper describes an improved vector manipulation multislope monotone upstream-centred scheme for...
Within the framework of the two-dimensional cell-centered Godunov-type finite volume (CCFV) method, ...
Within the framework of the two-dimensional cell-centered Godunov-type finite volume (CCFV) method, ...
The aim of this paper is to present a novel monotone upstream scheme for conservation law (MUSCL) on...
Summarization: On unstructured meshes, the cell‐centered finite volume (CCFV) formulation, where the...
AbstractThe aim of this paper is to present a novel monotone upstream scheme for conservation law (M...
A monotonic upstream-centred scheme for conservation law (MUSCL) for shallow water flows is formulat...
This paper presents a new approach to MUSCL reconstruction for solving the shallow-water equations o...
International audienceA higher-order numerical technique is presented for the direct sensitivity ana...