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Biorheological Model on Flow of Herschel-Bulkley Fluid through a Tapered Arterial Stenosis with Dilatation

机译:Herschel-Bulkley流体流经带扩张锥形动脉狭窄的生物流变模型

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摘要

An analysis of blood flow through a tapered artery with stenosis and dilatation has been carried out where the blood is treated as incompressible Herschel-Bulkley fluid. A comparison between numerical values and analytical values of pressure gradient at the midpoint of stenotic region shows that the analytical expression for pressure gradient works well for the values of yield stress till 2.4. The wall shear stress and flow resistance increase significantly with axial distance and the increase is more in the case of converging tapered artery. A comparison study of velocity profiles, wall shear stress, and flow resistance for Newtonian, power law, Bingham-plastic, and Herschel-Bulkley fluids shows that the variation is greater for Herschel-Bulkley fluid than the other fluids. The obtained velocity profiles have been compared with the experimental data and it is observed that blood behaves like a Herschel-Bulkley fluid rather than power law, Bingham, and Newtonian fluids. It is observed that, in the case of a tapered stenosed tube, the streamline pattern follows a convex pattern when we move from r/R = 0 to r/R = 1 and it follows a concave pattern when we move from r/R = 0 to r/R = −1. Further, it is of opposite behaviour in the case of a tapered dilatation tube which forms new information that is, for the first time, added to the literature.
机译:已经对通过狭窄和扩张的锥形动脉的血流进行了分析,其中将血液视为不可压缩的Herschel-Bulkley液。狭窄区域中点压力梯度的数值与解析值的比较表明,对于直到2.4的屈服应力值,压力梯度的解析表达式都适用。壁剪切应力和流动阻力随着轴向距离而显着增加,并且在渐缩的锥形动脉的情况下增加更多。对牛顿流体,幂律流体,宾汉塑性流体和Herschel-Bulkley流体的速度分布,壁切应力和流动阻力的比较研究表明,Herschel-Bulkley流体的变化比其他流体大。将获得的速度分布图与实验数据进行了比较,发现血液的行为类似于Herschel-Bulkley流体,而不是幂律,Bingham和Newtonian流体。可以看到,在锥形管的情况下,当我们从r / R = 0移到r / R = 1时,流线型遵循凸形;当我们从r / R =移动时,流线型遵循凹形。 0至r / R = -1。此外,在锥形扩张管的情况下具有相反的行为,该扩张管形成新的信息,这是首次被添加到文献中。

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