• DocumentCode
    2294322
  • Title

    3D Computer Simulations of Pulsatile Human Blood Flows in Vessels and in the Aortic Arch: Investigation of Non-Newtonian Characteristics of Human Blood

  • Author

    Sultanov, Renat A. ; Guster, Dennis ; Engelbrekt, Brent ; Blankenbecler, Richard

  • Author_Institution
    Bus. Comput. Res. Lab., St. Cloud State Univ. Centennial, St. Cloud, NM
  • fYear
    2008
  • fDate
    16-18 July 2008
  • Firstpage
    479
  • Lastpage
    485
  • Abstract
    Methods of Computational Fluid Dynamics are applied to simulate pulsatile blood flow in human vessels and in the aortic arch. The non-Newtonian behaviour of the human blood is investigated in simple vessels of actual size. Turbulence effects are taken into account. A detailed time-dependent mathematical convergence test has been carried out. The realistic pulsatile flow is used in all simulations. Results of computer simulations of the blood flow in vessels of two different geometries are presented. For pressure, strain rate and velocity component distributions we found significant disagreements between our results obtained with realistic non-Newtonian treatment of human blood and widely used method in literature: a simple Newtonian approximation. A significant increase of the strain rate and, as a result, wall sear stress distribution, is found in the region of the aortic arch. We consider this result astheoretical evidence that supports existing clinical observations and those models not using non-Newtonian treatment underestimate the risk of disruption to the human vascular system.
  • Keywords
    Newton method; biology computing; computational fluid dynamics; haemodynamics; non-Newtonian flow; turbulence; 3D computer simulation; Newtonian approximation; aortic arch; blood vessels; computational fluid dynamics; nonNewtonian characteristics; pulsatile blood flow; pulsatile human blood flows; time-dependent mathematical convergence test; turbulence effects; Blood flow; Capacitive sensors; Computational fluid dynamics; Computational geometry; Computational modeling; Computer simulation; Convergence; Humans; Stress; Testing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Computational Science and Engineering, 2008. CSE '08. 11th IEEE International Conference on
  • Conference_Location
    Sao Paulo
  • Print_ISBN
    978-0-7695-3193-9
  • Type

    conf

  • DOI
    10.1109/CSE.2008.65
  • Filename
    4578268