Influenced by nano-drug delivery applications, the present article considers the collective effects of hybrid biocompatible metallic nanoparticles (Silver and Copper), a stenosis and an aneurysm on the unsteady blood flow characteristics in a catheterized tapered inclined artery. The non-Newtonian Carreau fluid model is deployed to represent the hemorheological characteristics in the arterial region. A modified Tiwari-Das volume fraction model is adopted for nanoscale effects. The permeability of the arterial wall and the inclination of the diseased artery are taken into account. The nanoparticles are also considered to have various shapes (bricks, cylinders, platelets, blades) and therefore the influence of different shape parameter...
Nanoparticles play an essential role in biomedical applications. A most promising area in nanomedici...
Two-dimensional rheological laminar hemodynamics through a diseased tapered artery with amild stenos...
The present study considers two-dimensional mathematical modelling of non-Newtonian nanofluid hemody...
Influenced by nano-drug delivery applications, the present article considers the collectiveeffects o...
This article examines theoretically and numerically the unsteady two-dimensional blood flow through ...
The present study considers the mathematical modelling of unsteady non-Newtonian hydro-magnetic nano...
Two-dimensional laminar hemodynamics through a diseased artery featuring an overlappedstenosis was s...
Abstract This article scrutinizes blood circulation through an artery having magnetized hybrid nanop...
This paper presents a mathematical model for simulating viscous, incompressible, steady-state blood ...
Stenosis is a tiny plaque-like structure that builds up in the arterial wall owing to the sediment o...
Nanofluids are becoming increasingly popular in novel hematological treatments and also advanced nan...
The current investigation was based on a simulation employing CFD in COMSOL Multiphysics. The base f...
This article presents a two-dimensional theoretical study of hemodynamics through a diseasedpermeabl...
Nanoparticles play an essential role in biomedical applications. A most promising area in nanomedici...
Two-dimensional rheological laminar hemodynamics through a diseased tapered artery with amild stenos...
The present study considers two-dimensional mathematical modelling of non-Newtonian nanofluid hemody...
Influenced by nano-drug delivery applications, the present article considers the collectiveeffects o...
This article examines theoretically and numerically the unsteady two-dimensional blood flow through ...
The present study considers the mathematical modelling of unsteady non-Newtonian hydro-magnetic nano...
Two-dimensional laminar hemodynamics through a diseased artery featuring an overlappedstenosis was s...
Abstract This article scrutinizes blood circulation through an artery having magnetized hybrid nanop...
This paper presents a mathematical model for simulating viscous, incompressible, steady-state blood ...
Stenosis is a tiny plaque-like structure that builds up in the arterial wall owing to the sediment o...
Nanofluids are becoming increasingly popular in novel hematological treatments and also advanced nan...
The current investigation was based on a simulation employing CFD in COMSOL Multiphysics. The base f...
This article presents a two-dimensional theoretical study of hemodynamics through a diseasedpermeabl...
Nanoparticles play an essential role in biomedical applications. A most promising area in nanomedici...
Two-dimensional rheological laminar hemodynamics through a diseased tapered artery with amild stenos...
The present study considers two-dimensional mathematical modelling of non-Newtonian nanofluid hemody...