牛顿流体
非牛顿流体
粘弹性
血液粘度
粘度
机械
Herschel–Bulkley液体
剪应力
压力降
广义牛顿流体
材料科学
表观粘度
血液流变学
热力学
血流
剪切速率
物理
医学
心脏病学
作者
Young I. Cho,Kenneth R. Kensey
出处
期刊:Biorheology
[IOS Press]
日期:1991-06-01
卷期号:28 (3-4): 241-262
被引量:766
标识
DOI:10.3233/bir-1991-283-415
摘要
Effects of the non-Newtonian viscosity of blood on a flow in a coronary arterial casting of man were studied numerically using a finite element method. Various constitutive models were examined to model the non-Newtonian viscosity of blood and their model constants were summarized. A method to incorporate the non-Newtonian viscosity of blood was introduced so that the viscosity could be calculated locally. The pressure drop, wall shear stress and velocity profiles for the case of blood viscosity were compared for the case of Newtonian viscosity (0.0345 poise). The effect of the non-Newtonian viscosity of blood on the overall pressure drop across the arterial casting was found to be significant at a flow of the Reynolds number of 100 or less. Also in the region of flow separation or recirculation, the non-Newtonian viscosity of blood yields larger wall shear stress than the Newtonian case. The origin of the non-Newtonian viscosity of blood was discussed in relation to the viscoelasticity and yield stress of blood.
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