4.7 Article

Augmented Lagrangian-based preconditioners for steady buoyancy driven flow

Journal

APPLIED MATHEMATICS LETTERS
Volume 82, Issue -, Pages 1-7

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.aml.2018.02.013

Keywords

Augmented Lagrangian; preconditioners; Buoyancy driven flow problems; Finite element method; Eigenvalue analysis

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In this paper, we apply the augmented Lagrangian (AL) approach to steady buoyancy driven flow problems. Two AL preconditioners are developed based on the variable's order, specifically whether the leading variable is the velocity or the temperature variable. Correspondingly, two non-augmented Lagrangian (NAL) preconditioners are also considered for comparison. An eigenvalue analysis for these two pairs of preconditioners is conducted to predict the rate of convergence for the GMRES solver. The numerical results show that the AL preconditioner pair is insensitive with respect to the mesh size, Rayleigh number, and Prandtl number in terms of GMRES iterations, resulting in a significantly more robust preconditioner pair compared to the NAL pair. Accordingly, the AL pair performs much better than the NAL pair in terms of computational time. For the AL pair, the preconditioner with velocity as the leading variable gives slightly better efficiency than the one with temperature as the leading variable. (C) 2018 Elsevier Ltd. All rights reserved.

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