Two-Level Finite Element Method With a Stabilizing Subgrid for the Incompressible Navier-Stokes Equations

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Abstract

We consider the Galerkin finite element method for the incompressible Navier-Stokes equations in two dimensions. The domain is discretized into a set of regular triangular elements and the finite-dimensional spaces employed consist of piecewise continuous linear interpolants enriched with the residual-free bubble functions. To find the bubble part of the solution, a two-level finite element method with a stabilizing subgrid of a single node is described, and its application to the Navier-Stokes equation is displayed. Numerical approximations employing the proposed algorithm are presented for three benchmark problems. The results show that the proper choice of the subgrid node is crucial in obtaining stable and accurate numerical approximations consistent with the physical configuration of the problem at a cheap computational cost. Copyright © 2008 John Wiley & Sons, Ltd.

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Keywords

Navier-Stokes equations, Stabilizing subgrid, Two-level finite element method, Two-level finite element method, Navier-Stokes equations, Stabilizing subgrid

Fields of Science

0101 mathematics, 01 natural sciences

Citation

Neslitürk, A. İ., Aydın, S. H., and Tezer, M. (2008). Two-level finite element method with a stabilizing subgrid for the incompressible Navier-Stokes equations. International Journal for Numerical Methods in Fluids, 58(5), 551-572. doi: 10.1002/fld.1753

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12

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58

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5

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551

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572
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