Application of an iterative Golub-Kahan algorithm to structural mechanics problems with multi-point constraints

Author:

Kruse Carola,Darrigrand Vincent,Tardieu NicolasORCID,Arioli Mario,Rüde Ulrich

Abstract

AbstractKinematic relationships between degrees of freedom, also named multi-point constraints, are frequently used in structural mechanics. In this paper, the Craig variant of the Golub-Kahan bidiagonalization algorithm is used as an iterative method to solve the arising linear system with a saddle point structure. The condition number of the preconditioned operator is shown to be close to unity and independent of the mesh size. This property is proved theoretically and illustrated on a sequence of test problems of increasing complexity, including concrete structures enforced with pretension cables and the coupled finite element model of a reactor containment building. The Golub-Kahan algorithm converges in only a small number of steps for all considered test problems and discretization sizes. Furthermore, it is robust in practical cases that are otherwise considered to be difficult for iterative solvers.

Funder

Bpifrance

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Computer Science Applications,Engineering (miscellaneous),Modeling and Simulation

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Master–slave elimination scheme for arbitrary smooth nonlinear multi-point constraints;Computational Mechanics;2024-05-25

2. Deflation for the Off-Diagonal Block in Symmetric Saddle Point Systems;SIAM Journal on Matrix Analysis and Applications;2024-01-17

3. Scalable block preconditioners for saturated thermo-hydro-mechanics problems;Advanced Modeling and Simulation in Engineering Sciences;2023-06-26

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