Solution of fully-coupled shallow water equations and contaminant transport using a primitive-variable Riemann method
Author:
Publisher
Springer Science and Business Media LLC
Subject
Water Science and Technology,Environmental Chemistry
Link
http://link.springer.com/article/10.1007/s10652-017-9571-7/fulltext.html
Reference31 articles.
1. Li S, Duffy CJ (2012) Fully-coupled modeling of shallow water flow and pollutant transport on unstructured grids. Procedia Environ Sci 13:2098–2121
2. Murillo J, Burguete J, Brufau P, García-Navarro P (2005) Coupling between shallow water and solute flow equations: analysis and management of source terms in 2D. Int J Numer Methods Fluids 49(3):267–299
3. Murillo J, García-Navarro P, Burguete J, Brufau P (2006) A conservative 2D model of inundation flow with solute transport over dry bed. Int J Numer Methods Fluids 52:1059–1092
4. Begnudelli L, Sanders BF (2006) Unstructured grid finite-volume algorithm for shallow-water flow and scalar transport with wetting and drying. J Hydraul Eng 132(4):371–384
5. Benkhaldoun F, Elmahi I, Seaid M (2007) Well-balanced finite volume schemes for pollutant transport on unstructured meshes. J Comput Phys 226(1):180–203
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