168268
20190528160601.0
CONF
Algorithms for the coupling of one-dimensional arterial networks with three-dimensional fluid-structure interaction problems
2011
2011
Conference Papers
This work is focused on the development of a geometrical multiscale framework for modeling the human cardiovascular system. This approach is designed to deal with different geometrical and mathematical models at the same time, without any preliminary hypotheses on the layout of the general multiscale problem. This flexibility allows to set up a complete arterial tree model of the circulatory system, assembling first a network of one-dimensional models, described by non-linear hyperbolic equations, and then replacing some elements with more detailed (and expensive) three-dimensional models, where the Navier-Stokes equations are coupled with structural models through fluid-structure interaction algorithms. The coupling between models of different scale and type is addressed imposing the conservation equations in terms of averaged/integrated quantities (i.e., the flow rate and the normal component of the traction vector); in particular, three coupling strategies have been explored for the fluid problem. In all the cases, these strategies lead to small non-linear interface problems, which are solved using classical iterative algorithms.
Geometrical multiscale
Fluid-structure interaction algorithms
Cardiovascular networks
Hemodynamics
242880
Malossi, Adelmo Cristiano Innocenza
190300
241667
Deparis, Simone
121157
Blanco, Pablo Javier
ECCOMAS Thematic International Conference on Simulation and Modeling of Biological Flows (SIMBIO 2011)
Brussels, Belgium
September 21-23, 2011
Proceedings of the ECCOMAS Thematic International Conference on Simulation and Modeling of Biological Flows (SIMBIO 2011)
https://www.vki.ac.be/simbio2011
URL
1378264
http://infoscience.epfl.ch/record/168268/files/MalossiDeparisBlanco_SIMBIO11_Proceeding.pdf
n/a
n/a
252102
CMCS
U10797
oai:infoscience.tind.io:168268
conf
SB
GLOBAL_SET
265782
SCI-SB-SD
U13680
190300
190300
190300
EPFL-CONF-168268
EPFL
NON-REVIEWED
PUBLISHED
CONF