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Stable model reduction for linear variational inequalities with parameter-dependent constraints

Idrissa Niakh, Guillaume Drouet, Virginie Ehrlacher, Alexandre Ern

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Source: Crossref

Published: Jan 1, 2023

DOI: 10.1051/m2an/2022077

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Source abstract

We consider model reduction for linear variational inequalities with parameter-dependent constraints. We study the stability of the reduced problem in the context of a dualized formulation of the constraints using Lagrange multipliers. Our main result is an algorithm that guarantees inf-sup stability of the reduced problem. The algorithm is computationally effective since it can be performed in the offline phase even for parameter-dependent constraints. Moreover, we also propose a modification of the Cone Projected Greedy algorithm so as to avoid ill-conditioning issues when manipulating the reduced dual basis. Our results are illustrated numerically on the frictionless Hertz contact problem between two half-disks with parameter-dependent radius and on the membrane obstacle problem with parameter-dependent obstacle geometry.

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Stable model reduction for linear variational inequalities with parameter-dependent constraints — Mathematical Frontier Network