4.6 Article

On the Barzilai-Borwein basic scheme in FFT-based computational homogenization

出版社

WILEY
DOI: 10.1002/nme.6023

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Barzilai-Borwein method; FFT-based solver; inelastic material behavior; micromechanics; porous material

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  1. Karlsruhe Institute of Technology (KIT), Institute of Engineering Mechanics, Karlsruhe

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Building upon the equivalence of the basic scheme in the work of Moulinec and Suquet with gradient descent methods, we investigate the effect of using the celebrated Barzilai-Borwein step size selection technique in this context. We provide an overview of recent convergence theory and present efficient implementations in the context of computational micromechanics, with and without globalization. In contrast to polarization schemes and fast gradient methods, no lower bound on the eigenvalues of the material tangent is necessary for the Barzilai-Borwein scheme. We demonstrate the power of the proposed method for linear elastic and inelastic large scale problems with finite and infinite material contrast.

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