Influence of Metallic Nanoparticles on Blood Flow Through Arteries Having Both Stenosis and Aneurysm


The most objective of the present paper is to discuss the blood flow analysis through inclined arteries by treating its nature as viscous fluid. The results of each dilatation and constriction are thought of to investigate the behavior of the each abnormal wall segments with variable nanofluid viscosity. The nonlinear momentum equation for proposed model is simplified by considering the nondimensionless parameters to seek out the precise solutions of the formulated drawback. The main hemodynamic effects of stenosis and aneurysm are mentioned for different values of the interest by plotting the graphs of wall shear stress and resistance impedance to flow and opposite behavior is observed for both cases. The results also reveal that the nanoparticles with high concentration are important to scale back the resistance impedance to blood flow. The graphs of stream lines show the formation of bolus seems within the aneurysm section but no formation is observed or seen within the stenotic section.

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