Το έργο με τίτλο A well-balanced node-centered finite volume scheme for shallow water flows with wetting and drying από τον/τους δημιουργό/ούς Nikolos Ioannis, Delis Anargyros διατίθεται με την άδεια Creative Commons Αναφορά Δημιουργού 4.0 Διεθνές
Βιβλιογραφική Αναφορά
A.I. Delis and I. K. Nikolos, "A well-balanced node-centered finite volume scheme for shallow water flows with wetting and drying," presented at International Conference of Numerical Analysis and Applied Mathematics 2009 (ICNAAM 2009), Rethymnon,
Greece, 2009.
https://doi.org/10.1063/1.3241359
We present a conservative, node-centered finite-volume (FV) algorithm for triangular grids in order to simulal unsteady, two-dimensional, shallow-water flows over arbitrary topography with wetting and drying. The algorithm utilize Roe's approximate Riemann solver to compute the numerical fluxes, while second-order spatial accuracy is achieved with MUSCL reconstruction technique. The novel aspects of the algorithm include the extension to second order of the topography source term treatment and the wet/dry front treatment, within the node-centered FV formulation. The numerical scheme is validated against benchmark test cases and experimental data related to propagation and run-up of long waves.