Publication | Closed Access
Simulation of a 2D Channel Flow Around a Square Obstacle with Lattice-Boltzmann (BGK) Automata
32
Citations
13
References
1998
Year
AeroacousticsEngineeringFluid MechanicsTurbulenceSquare ObstacleComputational MechanicsUnsteady FlowNumerical SimulationTransport PhenomenaBlockage RatioModeling And SimulationVortex DynamicChannel FlowHydrodynamic StabilityPhysicsCellular AutomatonMultiphase FlowInitial VortexTurbulence ModelingAerodynamics
Results for time-dependent, viscous, incompressible flows were investigated using the lattice-Boltzmann (BGK) automata. The decay of a synthetic turbulent flow field and the time evolution of an initial vortex were simulated for validation purposes. The focal point was the investigation of the instationary flow around a square obstacle in a two-dimensional channel for a range of Reynolds numbers between 80 and 300 and a blockage ratio of 0.125. The Strouhal number was measured for this case and found to be in the range of data given in the literature.
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