倾斜磁场和霍尔电流对多孔介质中狭窄动脉血流微极流体模型影响的研究

A. Dar, K. Elangovan
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引用次数: 1

摘要

研究了多孔介质中轻度狭窄的水平非对称动脉的血流问题。将小动脉中的血液视为均匀且不可压缩的微极流体,对其性质进行了数学分析。对旋转磁场和倾斜磁场的影响进行了分析和数值计算。为了评估狭窄形状的影响,考虑了一种适当的几何形状,使得狭窄的形状可以仅仅通过改变一个参数(称为形状参数)来改变。推导并分析了形状参数n、旋转参数Ω、磁场参数M、磁场倾角参数θ、磁导率参数K1、耦合数n和微极流体参数M不同取值下的流速、阻抗(流动阻力)、管壁剪切应力分布及其大小等流动特性表达式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study on the effect of inclined magnetic field and Hall current on the micropolar fluid model of blood flow through stenotic arteries in a porous medium
The problem of blood flow through a horizontal non-symmetric artery with a mild stenosis in a porous medium has been investigated. The natures of blood in small arteries are analysed mathematically by considering it as a homogeneous and incompressible micropolar fluid. The effect of both rotation and inclined magnetic field are studied analytically and computed numerically. To evaluate the influence of the stenosis shape, an appropriate geometry has been considered such that the shape of the stenosis can be changed simply just by varying a parameter (referred to as the shape parameter). The expressions for the flow characteristics such as velocity, the impedance (resistance to flow), the wall shear stress distribution and its magnitude at the stenosis throat have been derived and analysed for different values of shape parameter n, rotation parameter Ω, the magnetic field parameter M, inclination angle of the magnetic field parameter (θ), permeability parameter (K1), the coupling number N and the micropolar fluid parameter m.
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