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Computational study of aortic hemodynamics: From simplified to patient-specific geometries

Chapter
Publication Date:
2016
abstract:
The investigation of aortic hemodynamics in physiological and pathological conditions by computational fluid dynamics is still one of the major topic of vascular biomechanics. In particular,thanks to the developments of new endovascular technologies such as Thoracic EndoVAscular Repair (TEVAR),a lot of attention is paid to the hemodynamics analysis of thoracic aorta. In this work,we aim at performing a sensitivity analysis of morphological aspects by comparing numerical results about three cases: (i) an idealized aortic arch with a candy cane shape; (ii) a patient-specific healthy arch; and (iii) a patient-specific dissected aorta. For the idealized aortic arch case we also compare the obtained results with respect to the theoretical and experimental literature dedicated to curved pipes.
Iris type:
2.1 Contributo in volume (Capitolo o Saggio)
Keywords:
Fluid Flow and Transfer Processes; Engineering (all); Computational Mathematics; Modeling and Simulation
List of contributors:
Lefieux, ADRIEN GUILLAUME; Auricchio, Ferdinando; Conti, Michele; Morganti, Simone; Reali, Alessandro; Trimarchi, S.; Veneziani, Alessandro
Authors of the University:
AURICCHIO FERDINANDO
CONTI MICHELE
MORGANTI SIMONE
REALI ALESSANDRO
Handle:
https://iris.unipv.it/handle/11571/1166041
Book title:
Advances in Computational Fluid-Structure Interaction and Flow Simulation
Published in:
MODELING AND SIMULATION IN SCIENCE, ENGINEERING AND TECHNOLOGY
Journal
MODELING AND SIMULATION IN SCIENCE, ENGINEERING AND TECHNOLOGY
Series
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URL

http://www.springer.com/series/4960
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