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EFFECT OF STEADY STREAMING ON THE FLOW OF MICROPOLAR FLUID THROUGH A CONTRICTED ANNULUS

机译:通过收缩环空稳态流对微柱液流动的影响

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An Oscillatory flow of an incompressible micropolar fluid through an annulus with mild constriction at the outer wall is considered. This configuration is intended as a simple model for studying blood flow in a stenosed artery when a catheter is inserted into it. The contribution of the steady streaming effect, due to the oscillatory nature of the flow through non-uniform wall geometry is presented. The mean pressure drop and the mean wall shear stress are calculated across the stenotic lesion. The variations in these mean quantities are studied by varying size of the catheter, its velocity and the micropolar fluid parameters. It is observed that as the size of the catheter and the coupling number increases, the pressure drop as well as the shear stress increases while it decreases as the velocity of the catheter and the spin of the molecules increases.
机译:考虑了不可压缩的微柱液通过外壁温和收缩的环的振荡流动。当导管插入其中时,该配置旨在为在狭窄的动脉中研究血流的简单模型。提出了由于通过非均匀壁几何形状的流动的振荡性质而稳定流动效应的贡献。平均压降和平均壁剪切应力在狭窄病变中计算。通过改变导管的尺寸,其速度和微柱流体参数来研究这些平均量的变化。观察到,随着导管的尺寸和耦合数增加,压力下降以及剪切应力随着导管的速度而降低并且分子的旋转增加而增加。

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