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Two-Fluid Mathematical Models for Blood Flow in Stenosed Arteries: A Comparative Study

机译:狭窄动脉血流的两流体数学模型:比较研究

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摘要

The pulsatile flow of blood through stenosed arteries is analyzed by assuming the blood as a two-fluid model with the suspension of all the erythrocytes in the core region as a non-Newtonian fluid and the plasma in the peripheral layer as a Newtonian fluid. The non-Newtonian fluid in the core region of the artery is assumed as a (i) Herschel-Bulkley fluid and (ii) Casson fluid. Perturbation method is used to solve the resulting system of non-linear partial differential equations. Expressions for various flow quantities are obtained for the two-fluid Casson model. Expressions of the flow quantities obtained by Sankar and Lee (2006) for the two-fluid Herschel-Bulkley model are used to get the data for comparison. It is found that the plug flow velocity and velocity distribution of the two-fluid Casson model are considerably higher than those of the two-fluid Herschel-Bulkley model. It is also observed that the pressure drop, plug core radius, wall shear stress and the resistance to flow are significantly very low for the two-fluid Casson model than those of the two-fluid Herschel-Bulkley model. Hence, the two-fluid Casson model would be more useful than the two-fluid Herschel-Bulkley model to analyze the blood flow through stenosed arteries.
机译:通过将血液作为双流体模型来分析流经狭窄动脉的脉动血流,其中核心区域中所有红细胞的悬浮液为非牛顿流体,而外周层中的血浆为牛顿流体。假定在动脉核心区域的非牛顿流体为(i)Herschel-Bulkley流体和(ii)Casson流体。摄动法用于求解非线性偏微分方程组。对于二流体卡森模型,获得了各种流量的表达式。 Sankar和Lee(2006)针对两流体Herschel-Bulkley模型获得的流量表达式用于获得数据进行比较。发现二流体卡森模型的塞流速度和速度分布明显高于二流体Herschel-Bulkley模型。还观察到,与二流体Herschel-Bulkley模型相比,二流体Casson模型的压降,塞芯半径,壁切应力和流动阻力非常低。因此,两流体的卡森模型将比两流体的Herschel-Bulkley模型更有用,以分析通过狭窄动脉的血流。

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