Abstract
A data-driven reduced order model (ROM) based on a proper orthogonal decomposition-radial basis function (POD-RBF) approach is adopted in this paper for the analysis of blood flow dynamics in a patient-specific case of atrial fibrillation (AF). The full order model (FOM) is represented by incompressible Navier–Stokes equations, discretized with a finite volume (FV) approach. Both the Newtonian and the Casson’s constitutive laws are employed. The aim is to build a computational tool able to efficiently and accurately reconstruct the patterns of relevant hemodynamics indices related to the stasis of the blood in a physical parametrization framework including the cardiac output in the Newtonian case and also the plasma viscosity and the hematocrit in the non-Newtonian one. Many FOM-ROM comparisons are shown to analyze the performance of our approach as regards errors and computational speed-up.
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Balzotti, C., Siena, P., Girfoglio, M., Stabile, G., Dueñas-Pamplona, J., Sierra-Pallares, J., … Rozza, G. (2024). A reduced order model formulation for left atrium flow: an atrial fibrillation case. Biomechanics and Modeling in Mechanobiology, 23(4), 1411–1429. https://doi.org/10.1007/s10237-024-01847-1
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