Publication | Open Access
A Stream Virtual Element Formulation of the Stokes Problem on Polygonal Meshes
270
Citations
31
References
2014
Year
Numerical AnalysisEngineeringFluid MechanicsComputer-aided DesignComputational MechanicsMesh OptimizationNumerical SimulationVem FrameworkComputational GeometryBoundary Element MethodGeometric ModelingMethod Of Fundamental SolutionIncompressible FlowSemi-implicit MethodUnstructured Mesh GenerationMultiphase FlowNumerical Method For Partial Differential EquationFluid-structure InteractionAerospace EngineeringNatural SciencesNovel Stream FormulationStokes ProblemVirtual Element MethodPolygonal Meshes
In this paper we propose and analyze a novel stream formulation of the virtual element method (VEM) for the solution of the Stokes problem. The new formulation hinges upon the introduction of a suitable stream function space (characterizing the divergence free subspace of discrete velocities) and it is equivalent to the velocity-pressure (inf-sup stable) mimetic scheme presented in [L. Beira͂o da Veiga et al., J. Comput. Phys., 228 (2009), pp. 7215--7232] (up to a suitable reformulation into the VEM framework). Both schemes are thus stable and linearly convergent but the new method results to be more desirable as it employs much less degrees of freedom and it is based on a positive definite algebraic problem. Several numerical experiments assess the convergence properties of the new method and show its computational advantages with respect to the mimetic one.
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