Journal of Hydraulic Research · 2013 · 64 citations · 29 references
EngineeringFluid MechanicsTurbulenceHydrologic EngineeringDetached Eddy SimulationHydraulicsFluid PropertiesNumerical SimulationEmbankment DamModeling And SimulationShallow Water ModelLarge Eddy SimulationHydraulic EngineeringSaint Venant EquationsFlow PhysicHydromechanicsReservoir SimulationReservoir ModelingCivil EngineeringTurbulence ModelingHydrodynamicsMultiscale Hydrodynamics
The shallow water equations, also known as the Saint Venant equations, are commonly used to simulate transient free-surface flows including dam-break and levee-breach flows. However, these solutions give inaccurate results in the near-field of dam-break flow. In this paper, 3D numerical simulations of dam-break flow are done using the large eddy simulation (LES) and the k–ϵ turbulence models with tracking of the free surface by the volume-of-fluid model. A computational fluid dynamics solver is utilized for this. Results are compared with published experimental data on dam-break flow through a partial breach as well as with results obtained by others using a shallow water model. The results show that both the LES and the k–ϵ modelling satisfactorily reproduce the temporal variation of the measured bottom pressure. However, the LES model captures better the free surface and velocity variation with time.
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GENERAL CIRCULATION EXPERIMENTS WITH THE PRIMITIVE EQUATIONS
Joseph Smagorinsky · Monthly Weather Review · 1963 · 13.6K citations
<i>Computational Methods for Fluid Dynamics</i>
Joel H. Ferziger, Milovan Perić, Anthony Leonard · Physics Today · 1997 · 6K citations