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一种具有形状因子铁磁性纳米颗粒的新型热导率模型用于非锥形狭窄动脉中的血流研究。

A New Thermal Conductivity Model With Shaped Factor Ferromagnetism Nanoparticles Study for the Blood Flow in Non-Tapered Stenosed Arteries.

作者信息

Akbar Noreen Sher

出版信息

IEEE Trans Nanobioscience. 2015 Oct;14(7):780-9. doi: 10.1109/TNB.2015.2462755. Epub 2015 Aug 24.

Abstract

Blood flow model is consider to study the influence of magnetic field and different shaped nanoparticles in non-tapered stenosed arteries. The metallic different shaped nanoparticles for the blood flow with water as base fluid is not explored so far. The representation for the blood flow is through an axially and radially symmetric stenosis. Symmetry of the distribution of the wall shearing stress and resistive impedance and their growth with the developing stenosis is another important feature of our analysis. Exact solutions have been evaluated for velocity, resistance impedance, wall shear stress and shearing stress at the stenosis throat. The graphical results of different type of tapered arteries (i.e., converging tapering) have been examined for different parameters of interest for Cu-water.

摘要

考虑使用血流模型来研究磁场和不同形状的纳米颗粒在非锥形狭窄动脉中的影响。到目前为止,尚未探索以水为基液的血流中不同形状的金属纳米颗粒。血流通过轴向和径向对称的狭窄来表示。壁面剪应力和电阻抗分布的对称性及其随狭窄发展的增长是我们分析的另一个重要特征。已经评估了狭窄喉部处速度、电阻抗、壁面剪应力和剪应力的精确解。针对铜 - 水的不同感兴趣参数,研究了不同类型锥形动脉(即会聚锥形)的图形结果。

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