Analysis of a full space-time discretization of the Navier-Stokes equations by a local projection stabilization

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Date
2015
Volume
2166
Issue
Journal
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Publisher
Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik
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Abstract

A finite element error analysis of a local projection stabilization (LPS) method for the time-dependent Navier-Stokes equations is presented. The focus is on the highorder term-by-term stabilization method that has one level, in the sense that it is defined on a single mesh, and in which the projection-stabilized structure of standard LPS methods is replaced by an interpolation-stabilized structure. The main contribution is on proving, theoretically and numerically, the optimal convergence order of the arising fully discrete scheme. In addition, the asymptotic energy balance is obtained for slightly smooth flows. Numerical studies support the analytical results and illustrate the potential of the method for the simulation of turbulent ows. Smooth unsteady flows are simulated with optimal order of accuracy.

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Keywords
Evolutionary incompressible Navier–Stokes equations, high order term-by-term LPS scheme, finite element error analysis, high Reynolds number flow
Citation
Ahmed, N., Rebollo, T. C., John, V., & Rubino, S. (2015). Analysis of a full space-time discretization of the Navier-Stokes equations by a local projection stabilization (Vol. 2166). Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik.
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