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首页> 外文期刊>The European physical journal: Special topics >Modeling of Au(NPs)-blood flow through a catheterized multiple stenosed artery under radial magnetic field
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Modeling of Au(NPs)-blood flow through a catheterized multiple stenosed artery under radial magnetic field

机译:径向磁场下通过导管型多狭窄动脉进行α(NPS)-Blood的建模

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摘要

This paper introduces a theoretical study of Au(NPs)-blood flow through a catheterized artery with multiple stenosis under radial magnetic field effect. Blood is modeled as Newtonian fluid. Based on mild stenosis assumptions, the governing equations of gold nanoparticles blood flow model are simplified and solved analytically. Exact solution for axial velocity is obtained by using Cauchy Euler method. Solutions for temperature, wall shear stress, resistance impedance are introduced and plotted through graphs for pertinent flow and geometric parameters. The results show that Au(NPs) can enhance blood flow through stenosed artery while applying strong radial magnetic field can discourage blood flow through it.
机译:本文介绍了通过径向磁场效应下具有多个狭窄的导尿动脉的Au(NPS) - 孔的理论研究。 血液被建模为牛顿液体。 基于轻度狭窄假设,简化了金纳米颗粒血流模型的控制方程分析并解决了。 通过使用Cauchy Euler方法获得轴向速度的精确解决方案。 引入温度,壁剪切应力,电阻阻抗的解决方案,并通过图形引入和绘制的用于相关的流动和几何参数。 结果表明,Au(NPS)可以通过延伸动脉增强血液流动,同时施加强径向磁场可以阻止血液流过它。

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