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- W4311453629 abstract "In this work we study the blood dynamics in the pulmonary arteries by means of a 3D-0D geometric multiscale approach, where a detailed 3D model for the pulmonary arteries is coupled with a lumped parameters (0D) model of the cardiovascular system. We propose to investigate three strategies for the numerical solution of the 3D-0D coupled problem: the Splitting-Explicit and Implicit algorithms, where information are exchanged between 3D and 0D models at each time step at the interfaces, and the One-Way algorithm, where the 0D is solved first off-line. In our numerical experiments performed in a realistic patient-specific 3D domain with a physiologically calibrated 0D model, we discuss first the issue on instabilities that may arise when not suitable connections are considered between 3D and 0D models; second we compare the performance and accuracy of the three proposed numerical strategies. Finally, we report a comparison between a healthy and a hypertensive case, providing a preliminary result highlighting how our method could be used in future for clinical purposes." @default.
- W4311453629 created "2022-12-26" @default.
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- W4311453629 date "2022-12-14" @default.
- W4311453629 modified "2023-10-17" @default.
- W4311453629 title "A Computational Study of Blood Flow Dynamics in the Pulmonary Arteries" @default.
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- W4311453629 doi "https://doi.org/10.1007/s10013-022-00595-y" @default.
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