PREPRINTS
[3] I. Prusak, D. Torlo, M. Nonino, G. Rozza. A time-adaptive algorithm for pressure dominated flows: a heuristic estimator (2024).
[https://arxiv.org/abs/2407.00428]
[2] I. Prusak, D. Torlo, M. Nonino, G. Rozza. Optimisation--Based Coupling of Finite Element Model and Reduced Order Model for Computational Fluid Dynamics (2024).
[https://arxiv.org/abs/2402.10570]
[1] D. Pradovera, M. Nonino, I. Perugia. Geometry-based approximation of waves in complex domains (2023).
[https://arxiv.org/abs/2301.13613]
PAPERS
[8] M. Nonino, D. Torlo. Calibration-based ALE Model Order Reduction for hyperbolic problems with self-similar travelling discontinuities Journal of Scientific Computing (2024).
[https://arxiv.org/abs/2403.11664]
[7] I. Prusak, D. Torlo, M. Nonino, G. Rozza. An optimisation-based domain-decomposition reduced order model for parameter-dependent non-stationary fluid dynamics problems Computer & Mathematics with Applications 166, 253-289 (2024).
[link]
[6] I. Prusak, M. Nonino, D. Torlo, F. Ballarin, G. Rozza. An optimisation-based domain-decomposition reduced order model for the incompressible Navier-Stokes equations. Computer & Mathematics with Applications 151, 172-189 (2023).
[link]
[5] M. Nonino, F. Ballarin, G. Rozza, Y. Maday. A Reduced Basis Method by means of transport maps for a fluid-structure interaction problem with slowly decaying Kolmogorov n-width. Advances in Computational Science and Engineering, 1, 1 (2023).
[link]
[4] M. Nonino, F. Ballarin, G. Rozza, Y. Maday. Projection Based Semi-Implicit Partitioned Reduced Basis Method for Fluid-Structure Interaction Problems. Journal of Scientific Computing 94, 4 (2022).
[link]
[3] E. Karatzas, M. Nonino, F. Ballarin, G. Rozza. A reduced order Cut Finite Element Method for geometrically parametrized steady and unsteady Navier-Stokes problems. Computer & Mathematics with Applications (2021).
[link]
[2] M. Nonino, F. Ballarin, G. Rozza. A monolithic and a partitioned Reduced Basis Method for Fluid-Structure Interaction problems. Fluids, 6, 229, (2021).
[link]
[1] D. Breda, G. Menegon, M. Nonino. Delay equations and characteristic roots: stability and more from a single curve. Electronic Journal of Qualitative Theory of Differential Equations 89, 1-22 (2018).
[link]
CHAPTERS IN BOOKS
[1] M. Nonino, F. Ballarin, G. Rozza., Reduced Order Methods for Fluid-Structure Interaction Problems, in G. Rozza, G. Stabile, F. Ballarin (Eds.), "Advanced Reduced Order Methods and Applications in Computational Fluid Dynamics", Siam series on Computational Science and Engineering, pages 283-310 (2022), Siam.
This website collects all the information on my academic profile and personal interests. You can also find me on the University webpage, on ResearchGate and on Google Scholar
Contact information
Faculty of Mathematics, University of Vienna, Oskar-Morgenstern Platz 1, 1090, Vienna, Austria
Office: 04.122
Mail: monica.nonino@univie.ac.at
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