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Autor(en) / Beteiligte
Titel
An accurate numerical solution to the Saint-Venant-Hirano model for mixed-sediment morphodynamics in rivers
Ist Teil von
  • Advances in water resources, 2016-07, Vol.93, p.39-61
Ort / Verlag
Elsevier Ltd
Erscheinungsjahr
2016
Quelle
Alma/SFX Local Collection
Beschreibungen/Notizen
  • •We present a new coupled numerical solution to the Saint-Venant-Hirano model.•We develop a concept of balancedness for the vertical sediment mass fluxes.•We propose a fully-mathematical benchmark based on linearised wave dynamics.•We model streamwise and vertical sorting by comparison with laboratory data.•Our accurate solution allows us to identify strengths and weaknesses in the model. We present an accurate numerical approximation to the Saint-Venant-Hirano model for mixed-sediment morphodynamics in one space dimension. Our solution procedure originates from the fully-unsteady matrix-vector formulation developed in [54]. The principal part of the problem is solved by an explicit Finite Volume upwind method of the path-conservative type, by which all the variables are updated simultaneously in a coupled fashion. The solution to the principal part is embedded into a splitting procedure for the treatment of frictional source terms. The numerical scheme is extended to second-order accuracy and includes a bookkeeping procedure for handling the evolution of size stratification in the substrate. We develop a concept of balancedness for the vertical mass flux between the substrate and active layer under bed degradation, which prevents the occurrence of non-physical oscillations in the grainsize distribution of the substrate. We suitably modify the numerical scheme to respect this principle. We finally verify the accuracy in our solution to the equations, and its ability to reproduce one-dimensional morphodynamics due to streamwise and vertical sorting, using three test cases. In detail, (i) we empirically assess the balancedness of vertical mass fluxes under degradation; (ii) we study the convergence to the analytical linearised solution for the propagation of infinitesimal-amplitude waves [54], which is here employed for the first time to assess a mixed-sediment model; (iii) we reproduce Ribberink’s E8-E9 flume experiment [46].
Sprache
Englisch
Identifikatoren
ISSN: 0309-1708
eISSN: 1872-9657
DOI: 10.1016/j.advwatres.2015.05.022
Titel-ID: cdi_proquest_miscellaneous_1825468808

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