The use of experimental relations to approximate the efficient thermophysical properties of a nanofluid (NF) with Cu nanoparticles (NPs) and hybrid nanofluid (HNF) with Cu-SWCNT NPs and subsequently model the two-dimensional pulsatile Casson fluid flow under the impact of the magnetic field and thermal radiation is a novelty of the current study. Heat and mass transfer analysis of the pulsatile flow of non-Newtonian Casson HNF via a Darcy–Forchheimer porous channel with compliant walls is presented. Such a problem offers a prospective model to study the blood flow via stenosed arteries. A finite-difference flow solver is used to numerically solve the system obtained using the vorticity stream function formulation on the time-dependent gover...
In this study, the pulsating flow of hydromagnetic nanofluid in a vertical porous channel has been i...
The study of nanofluids is important due to its vast public health potential. There exist many biome...
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...
Curved veins and arteries make up the human cardiovascular system, and the peristalsis process under...
A novel analysis of the electromagnetohydrodynamic (EMHD) non-Newtonian nanofluid blood flow incorpo...
This paper presents a mathematical model for simulating viscous, incompressible, steady-state blood ...
Pulsatory movements appear in a variety of fascinating applications involving periodic flow propagat...
Dynamics of nanofluid comprising a base fluid (water) with copper (Cu) nanoparticles have been consi...
In this analysis, a computational study is conducted to examine the two-dimensional flow of an incom...
The present study considers the mathematical modelling of unsteady non-Newtonian hydro-magnetic nano...
Nanofluids are extremely useful to investigators due to their greater heat transfer rates, which hav...
The blood flow through stenotic artery is one of the important research area in computational fluid ...
In the present article ferromagnetic field effects for copper nanoparticles for blood flow through c...
The current investigation was based on a simulation employing CFD in COMSOL Multiphysics. The base f...
In this study, the pulsating flow of hydromagnetic nanofluid in a vertical porous channel has been i...
The study of nanofluids is important due to its vast public health potential. There exist many biome...
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...
Curved veins and arteries make up the human cardiovascular system, and the peristalsis process under...
A novel analysis of the electromagnetohydrodynamic (EMHD) non-Newtonian nanofluid blood flow incorpo...
This paper presents a mathematical model for simulating viscous, incompressible, steady-state blood ...
Pulsatory movements appear in a variety of fascinating applications involving periodic flow propagat...
Dynamics of nanofluid comprising a base fluid (water) with copper (Cu) nanoparticles have been consi...
In this analysis, a computational study is conducted to examine the two-dimensional flow of an incom...
The present study considers the mathematical modelling of unsteady non-Newtonian hydro-magnetic nano...
Nanofluids are extremely useful to investigators due to their greater heat transfer rates, which hav...
The blood flow through stenotic artery is one of the important research area in computational fluid ...
In the present article ferromagnetic field effects for copper nanoparticles for blood flow through c...
The current investigation was based on a simulation employing CFD in COMSOL Multiphysics. The base f...
In this study, the pulsating flow of hydromagnetic nanofluid in a vertical porous channel has been i...
The study of nanofluids is important due to its vast public health potential. There exist many biome...
This article presents a two-dimensional theoretical study of hemodynamics through a diseasedpermeabl...