Pseudo-organ boundary conditions applied to a computational fluid dynamics model of the human aorta

  • Park, Joong Yull; 
  • Park, Chan Young; 
  • Hwang, Chang Mo; 
  • Sun, Kyung; 
  • Min, Byoung Goo
Citations

WEB OF SCIENCE

15
Citations

SCOPUS

20

초록

In three-dimensional numerical studies of the aorta, it is difficult to apply proper boundary conditions at the end of each major aortic branch because of interactions between blood and organs. Organs and body Parts were assumed to be likened to cylindrically shaped porous media, so-called pseudo-organs, and treated in the computational domain as forms of hemodynamic resistance. Permeability functions were determined from two-dimensional axisymmetric computations of each aortic branch and these functions were then used in an unsteady three-dimensional simulation of the complete aorta. Substantially accurate cardiac output (5.91 L/min) and blood distributions to the major branches were predicted. (c) 2006 Elsevier Ltd. All rights reserved.

키워드

aorta; numerical analysis; hemodynamic resistance; blood interaction; porous media; LOCAL SHEAR STRESSES; ABDOMINAL-AORTA; BLOOD-FLOW; BRANCHES; SIMULATION; ARCH
제목
Pseudo-organ boundary conditions applied to a computational fluid dynamics model of the human aorta
저자
Park, Joong Yull; Park, Chan Young; Hwang, Chang Mo; Sun, Kyung; Min, Byoung Goo
DOI
10.1016/j.compbiomed.2006.09.012
발행일
2007-08
유형
Article
저널명
Computers in Biology and Medicine
권
37
호
8
페이지
1063 ~ 1072