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Effects of peripheral layer thickness on pulsatile flow of Herschel-Bulkley fluid through a stenotic artery

机译:外围层厚度对Herschel-Bulkley流体通过狭窄动脉搏动流动的影响

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摘要

A study is conducted to analyze two-phase flow model of blood in a flexible stenotic artery. The Newtonian and Herschel-Bulkley constitutive relations are used to model the core and peripheral regions, respectively. The arterial wall is assumed to be elastic. By making appropriate assumptions, the flow problem is transformed into a set of nonlinear partial different equations. These equation together with suitable initial and boundary data are solved using an explicit finite difference scheme. The radial and axial velocities of the streaming blood are computed for several values of the emerging parameters. The axial distribution of flow rate, resistance impedance, and wall shear stress are also shown graphically and discussed in detail. The instantaneous streamlines patterns of the flow are also shown.
机译:进行了一项研究,以分析柔性狭窄动脉中血液的两相流动模型。牛顿和Herschel-Bulkley本构关系分别用于建模核心区域和外围区域。假定动脉壁是弹性的。通过做出适当的假设,流动问题被转化为一组非线性的局部不同方程。这些方程以及合适的初始和边界数据可使用显式有限差分方案求解。对于新兴参数的几个值,可以计算出流血的径向和轴向速度。流量,阻力阻抗和壁面剪应力的轴向分布也以图形方式显示并进行了详细讨论。还显示了瞬时流线模式。

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