DocumentCode :
3228930
Title :
Three-dimensional computational mechanical analysis for 3-layered aortic arch model under steady and unsteady flow with fluid-structure interactions
Author :
Gao, Feng ; Watanabe, Masahiro ; Matsuzawa, Teruo
Author_Institution :
Graduate Sch. of Inf. Sci., Japan Adv. Inst. of Sci. & Technol., Ishikawa
fYear :
2005
fDate :
1-1 July 2005
Lastpage :
169
Abstract :
Cardiovascular disease is the No. 1 killer in the developed countries and is responsible for millions of deaths and disabilities every year. In cardiovascular biomechanics the fluid-structure interaction within large blood vessel is required to understand the aortic wall tear, aortic dissection and so on. A loosely coupled method was used to study the complex mechanical interaction under steady flow and pulsatile flow in a three-layered aortic arch model. The results showed the impact of steady flow and pulsatile flow, the variations of wall stress along arch portion, and wall stress distribution in three-layered wall. The study provide insight into the biomechanics of aortic dissection: at systolic acceleration phase, the highest normal stress in the media layer may be responsible for the tear and dissection extending into the media layer; at foot entrance flow or diastolic phase, the shear stress might contribute to the dissection in the media near the adventitia layer
Keywords :
biomechanics; blood vessels; cardiovascular system; computational fluid dynamics; haemodynamics; medical computing; pulsatile flow; 3D computational mechanical analysis; adventitia layer; aortic arch model; aortic dissection; aortic wall stress distribution; aortic wall tear; blood vessel; cardiovascular biomechanics; cardiovascular disease; diastolic phase; fluid-structure interactions; pulsatile flow; shear stress; steady flow; systolic acceleration phase; unsteady flow; Aerodynamics; Biomechanics; Blood flow; Cardiology; Cardiovascular diseases; Computational fluid dynamics; Computational modeling; Fluid dynamics; Information science; Tensile stress;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High-Performance Computing in Asia-Pacific Region, 2005. Proceedings. Eighth International Conference on
Conference_Location :
Beijing
Print_ISBN :
0-7695-2486-9
Type :
conf
DOI :
10.1109/HPCASIA.2005.95
Filename :
1592264
Link To Document :
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