English

Hybrid coupling with operator inference and the overlapping Schwarz alternating method

Numerical Analysis 2026-01-06 v2 Artificial Intelligence Numerical Analysis Mathematical Physics math.MP

Abstract

This paper presents a novel hybrid approach for coupling subdomain-local non-intrusive Operator Inference (OpInf) reduced order models (ROMs) with each other and with subdomain-local high-fidelity full order models (FOMs) with using the overlapping Schwarz alternating method (O-SAM). The proposed methodology addresses significant challenges in multiscale modeling and simulation, particularly the long runtime and complex mesh generation requirements associated with traditional high-fidelity simulations. By leveraging the flexibility of O-SAM, we enable the seamless integration of disparate models, meshes, and time integration schemes, enhancing computational efficiency while maintaining high accuracy. Our approach is demonstrated through a series of numerical experiments on complex three-dimensional (3D) solid dynamics problems, showcasing speedups of up to 106x compared to conventional FOM-FOM couplings. This work paves the way for more efficient simulation workflows in engineering applications, with potential extensions to a wide range of partial differential equations.

Keywords

Cite

@article{arxiv.2511.20687,
  title  = {Hybrid coupling with operator inference and the overlapping Schwarz alternating method},
  author = {Irina Tezaur and Eric Parish and Anthony Gruber and Ian Moore and Christopher Wentland and Alejandro Mota},
  journal= {arXiv preprint arXiv:2511.20687},
  year   = {2026}
}
R2 v1 2026-07-01T07:54:51.925Z