Journal of Fluid Science and Technology · 2007 · 73 citations · 15 references
Numerical AnalysisEngineeringFluid MechanicsMechanical EngineeringComputational MechanicsImmersed Boundary MethodBoundary MethodStrong Interaction ProblemBoundary Element MethodHydrodynamic StabilityMethod Of Fundamental SolutionFree Boundary ProblemSolid Volume FractionMultiphase FlowNumerical Method For Partial Differential EquationArbitrary Shape ObjectFluid-structure InteractionAerospace EngineeringFluid-solid InteractionCircular CylinderAerodynamics
An immersed boundary method is improved and applied to 2-D flow fields involving a single stationary/moving object. The present immersed boundary method employs a body force proportional to a solid volume fraction for coupling the solid and fluid motions at the interface. A hyperbolic-tangent function is newly introduced as a surface digitiser for computing the volume fractions at the interface cells, and this improvement is proved to be efficient for problems involving arbitrary shape object. The present method is applied to a uniform flow field around a circular cylinder and an interaction problem of fluid and free-falling object. The computational results are found to agree with the results by the different methods of the present authors and the results reported in the literatures. Also the computation time is considerably cut down compared to the other methods by the series of improvements to the immersed boundary method.
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Vortex Dynamics in the Cylinder Wake
C. H. K. Williamson · Annual Review of Fluid Mechanics · 1996 · 3.4K citations
Details of the drag curve near the onset of vortex shedding
Ronald D. Henderson · Physics of Fluids · 1995 · 427 citations