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A Jeffrey-fluid model of blood flow in tubes with stenosis

机译:具有狭窄管中的血流血流的杰弗里 - 流体模型

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摘要

In this paper, we discuss the two-layered Jeffrey-fluid model with mild stenosis in narrow tubes. The blood flow in narrow arteries is treated as a two-fluid model with the suspension of erythrocytes, leukocytes, etc., as a Jeffrey fluid, which is a non-Newtonian fluid, in the core region and plasma, a Newtonian fluid, in the peripheral region. An analytical solution has been obtained for the velocity in the core and peripheral region, volume flow rate, resistance to flow, and wall-shear stress. The effect of Jeffrey-fluid parameters, like the height of stenosis, viscosity, etc., on volume flow rate, resistance to flow (impedance), and wall-shear stress has been discussed graphically. Through the present study, it is found that the wall-shear stress and resistance to flow increases with the increase in height of stenosis and decreases with the increase in the ratio of relaxation time. It is also found that the velocity decreases with an increase in stenosis height in both the core and the peripheral region. A previous result has been also verified.
机译:在本文中,我们讨论了双层杰弗里流体模型,在窄管中具有温和的狭窄。窄动脉中的血流被视为一种双流体模型,悬浮红细胞,白细胞等,作为非牛顿流体,在核心区域和牛顿流体中,牛仔液,外围区域。已经获得了核心和周边区域的速度,体积流量,流量阻力和壁剪应力的分析解决方案。如图所示,杰弗里流体参数的效果,如狭窄,粘度等的高度,在体积流速,抗流量(阻抗)和壁剪应力上都已进行了图示。通过本研究,发现壁剪切应力和流量的抗性随着狭窄高度的增加而增加,随着弛豫时间的比例的增加而降低。还发现,速度降低,随着芯和周边区域的狭窄高度的增加。之前的结果也得到了验证。

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