首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Computational model on pulsatile flow of blood through a tapered arterial stenosis with radially variable viscosity and magnetic field
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Computational model on pulsatile flow of blood through a tapered arterial stenosis with radially variable viscosity and magnetic field

机译:径向可变粘度和磁场锥动脉狭窄脉动脉络流量的计算模型

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An unsteady two-fluid model of blood flow through a tapered arterial stenosis with variable viscosity in the presence of variable magnetic field has been analysed in the present paper. In this article, blood in the core region is assumed to obey the law of Jeffrey fluid and plasma in the peripheral layer is assumed to be Newtonian. The values for velocity, wall shear stress, flow rate and flow resistance are numerically computed by employing finite-difference method in solving the governing equations. A comparison study between the velocity profiles obtained by the present study and the experimental data represented graphically shows that that the rheology of blood obeys the law of Jeffrey fluid rather than that of Newtonian fluid. The effects of parameters such as taper angle, radially variable viscosity, hematocrit, Jeffrey parameter, magnetic field and plasma layer thickness on physiologically important parameters such as wall shear stress distribution and flow resistance have been investigated. The results in the case of radially variable magnetic field and constant magnetic field are compared to observe the effect of magnetic field in driving the blood flow. It is observed that increase in hematocrit increases the wall shear stress. The values of wall shear stress and flow resistance are obtained at various time instances and compared. It is pertinent to note that the magnitudes of flow resistance are higher in the case of converging tapered than non-tapered and diverging tapered artery.
机译:本文分析了通过在可变磁场的存在下通过锥度粘度的锥形动脉狭窄的不稳定两种流体模型。在本文中,假设核心区域中的血液在外周层中遵守jeffrey液体的规律,被认为是牛顿的。通过采用有限差分方法来解决控制方程来数量计算速度,壁剪切应力,流速和流动阻力的值。通过本研究获得的速度分布与图形方式所获得的速度分布的比较研究表明,血液呼吁血液液的变质学,而不是牛顿流体的血液。已经研究了参数,径向可变粘度,血细胞比容,jeffrey参数,磁场和等离子体层厚度的参数的影响,研究了在生理上重要的参数上,例如壁剪应力分布和流动阻力。比较径向可变磁场和恒定磁场的情况的结果,观察磁场在驱动血流时的效果。观察到血细胞比容增加增加了壁剪切应力。在各种时间表中获得壁剪切应力和流动阻力的值。有关的是,在会聚锥形和发散的锥形动脉的情况下,流动阻力的幅度较高。

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