Literature DB >> 15519598

Numerical investigation of the non-Newtonian blood flow in a bifurcation model with a non-planar branch.

Jie Chen1, Xi-Yun Lu.   

Abstract

The non-Newtonian fluid flow in a bifurcation model with a non-planar daughter branch is investigated by using finite element method to solve the three-dimensional Navier-Stokes equations coupled with a non-Newtonian constitutive model, in which the shear thinning behavior of the blood fluid is incorporated by the Carreau-Yasuda model. The objective of this study is to investigate the influence of the non-Newtonian property of fluid as well as of curvature and out-of-plane geometry in the non-planar daughter vessel on wall shear stress (WSS) and flow phenomena. In the non-planar daughter vessel, the flows are typified by the skewing of the velocity profile towards the outer wall, creating a relatively low WSS at the inner wall. In the downstream of the bifurcation, the velocity profiles are shifted towards the flow divider. The low WSS is found at the inner walls of the curvature and the lateral walls of the bifurcation. Secondary flow patterns that swirl fluid from the inner wall of curvature to the outer wall in the middle of the vessel are also well documented for the curved and bifurcating vessels. The numerical results for the non-Newtonian fluid and the Newtonian fluid with original Reynolds number and the corresponding rescaled Reynolds number are presented. Significant difference between the non-Newtonian flow and the Newtonian flow is revealed; however, reasonable agreement between the non-Newtonian flow and the rescaled Newtonian flow is found. Results of this study support the view that the non-planarity of blood vessels and the non-Newtonian properties of blood are an important factor in hemodynamics and may play a significant role in vascular biology and pathophysiology.

Mesh:

Year:  2004        PMID: 15519598     DOI: 10.1016/j.jbiomech.2004.02.030

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  8 in total

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2.  Carotid bifurcation hemodynamics in older adults: effect of measured versus assumed flow waveform.

Authors:  Yiemeng Hoi; Bruce A Wasserman; Edward G Lakatta; David A Steinman
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3.  Possibility of atherosclerosis in an arterial bifurcation model.

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4.  Numerical investigation of pulsatile blood flow in a bifurcation model with a non-planar branch: the effect of different bifurcation angles and non-planar branch.

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Journal:  Bioimpacts       Date:  2012-07-31

5.  Direct numerical simulation of transitional flow in a stenosed carotid bifurcation.

Authors:  Seung E Lee; Sang-Wook Lee; Paul F Fischer; Hisham S Bassiouny; Francis Loth
Journal:  J Biomech       Date:  2008-07-24       Impact factor: 2.712

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7.  Non-invasive diagnostics of blockage growth in the descending aorta-computational approach.

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Review 8.  Considerations of blood properties, outlet boundary conditions and energy loss approaches in computational fluid dynamics modeling.

Authors:  Ji Young Moon; Dae Chul Suh; Yong Sang Lee; Young Woo Kim; Joon Sang Lee
Journal:  Neurointervention       Date:  2014-02-28
  8 in total

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