A finite volume MUSCL scheme for the numerical integration of 2D shallow water equations is presented. In the framework of the SLIC scheme, the proposed weighted surface-depth gradient method (WSDGM) computes intercell water depths through a weighted average of DGM and SGM reconstructions, in which the weight function depends on the local Froude number. This combination makes the scheme capable of performing a robust tracking of wet/dry fronts and, together with an unsplit centered discretization of the bed slope source term, of maintaining the static condition on non-flat topographies (C-property). A correction of the numerical fluxes in the computational cells with water depth smaller than a fixed tolerance enables a drastic reduction of the mass error in the presence of wetting and drying fronts. The effectiveness and robustness of the proposed scheme are assessed by comparing numerical results with analytical and reference solutions of a set of test cases. Moreover, to show the capability of the numerical model on field-scale applications, the results of a dam-break scenario are presented.

A Weighted Surface-Gradient Method for the integration of 2D shallow water equations with topography / Aureli, Francesca; Maranzoni, Andrea; Mignosa, Paolo; Ziveri, C.. - In: ADVANCES IN WATER RESOURCES. - ISSN 0309-1708. - 31(7):(2008), pp. 962-974. [10.1016/j.advwatres.2008.03.005]

A Weighted Surface-Gradient Method for the integration of 2D shallow water equations with topography

AURELI, Francesca;MARANZONI, Andrea;MIGNOSA, Paolo;
2008-01-01

Abstract

A finite volume MUSCL scheme for the numerical integration of 2D shallow water equations is presented. In the framework of the SLIC scheme, the proposed weighted surface-depth gradient method (WSDGM) computes intercell water depths through a weighted average of DGM and SGM reconstructions, in which the weight function depends on the local Froude number. This combination makes the scheme capable of performing a robust tracking of wet/dry fronts and, together with an unsplit centered discretization of the bed slope source term, of maintaining the static condition on non-flat topographies (C-property). A correction of the numerical fluxes in the computational cells with water depth smaller than a fixed tolerance enables a drastic reduction of the mass error in the presence of wetting and drying fronts. The effectiveness and robustness of the proposed scheme are assessed by comparing numerical results with analytical and reference solutions of a set of test cases. Moreover, to show the capability of the numerical model on field-scale applications, the results of a dam-break scenario are presented.
2008
A Weighted Surface-Gradient Method for the integration of 2D shallow water equations with topography / Aureli, Francesca; Maranzoni, Andrea; Mignosa, Paolo; Ziveri, C.. - In: ADVANCES IN WATER RESOURCES. - ISSN 0309-1708. - 31(7):(2008), pp. 962-974. [10.1016/j.advwatres.2008.03.005]
File in questo prodotto:
File Dimensione Formato  
Aureli_et_al_2008AWR.pdf

non disponibili

Tipologia: Documento in Post-print
Licenza: NON PUBBLICO - Accesso privato/ristretto
Dimensione 1.77 MB
Formato Adobe PDF
1.77 MB Adobe PDF   Visualizza/Apri   Richiedi una copia

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/1875621
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 104
  • ???jsp.display-item.citation.isi??? 99
social impact