Giulia Bertaglia
Orcid: 0000-0002-2874-9588
According to our database1,
Giulia Bertaglia
authored at least 17 papers
between 2019 and 2024.
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Bibliography
2024
Gradient-Based Monte Carlo Methods for Relaxation Approximations of Hyperbolic Conservation Laws.
J. Sci. Comput., September, 2024
2023
Multiscale Constitutive Framework of One-Dimensional Blood Flow Modeling: Asymptotic Limits and Numerical Methods.
Multiscale Model. Simul., September, 2023
Nonconforming Virtual Element basis functions for space-time Discontinuous Galerkin schemes on unstructured Voronoi meshes.
CoRR, 2023
A new family of semi-implicit Finite Volume / Virtual Element methods for incompressible flows on unstructured meshes.
CoRR, 2023
Multiscale constitutive framework of 1D blood flow modeling: Asymptotic limits and numerical methods.
CoRR, 2023
2022
Bi-fidelity stochastic collocation methods for epidemic transport models with uncertainties.
Networks Heterog. Media, 2022
Modeling blood flow in networks of viscoelastic vessels with the 1-D augmented fluid-structure interaction system.
J. Comput. Phys., 2022
CoRR, 2022
Asymptotic-Preserving Neural Networks for multiscale hyperbolic models of epidemic spread.
CoRR, 2022
2021
Uncertainty quantification of viscoelastic parameters in arterial hemodynamics with the a-FSI blood flow model.
J. Comput. Phys., 2021
Spatial spread of COVID-19 outbreak in Italy using multiscale kinetic transport equations with uncertainty.
CoRR, 2021
Hyperbolic compartmental models for epidemic spread on networks with uncertain data: application to the emergence of Covid-19 in Italy.
CoRR, 2021
Modeling blood flow in networks of viscoelastic vessels with the 1D augmented fluid-structure interaction system.
CoRR, 2021
2020
Hyperbolic models for the spread of epidemics on networks: kinetic description and numerical methods.
CoRR, 2020
2019
Computational hemodynamics in arteries with the one-dimensional augmented fluid-structure interaction system: viscoelastic parameters estimation and comparison with in-vivo data.
CoRR, 2019
Modeling blood flow in viscoelastic vessels: the 1D augmented fluid-structure interaction system.
CoRR, 2019