In this paper, the flow, thermal and concentration analyses of blood as a third grade with gold as nanoparticles through a porous channel are carried out using regular perturbation method. The analysis are carried out using Vogel’s model of temperature-dependent viscosity. The developed models were used to investigate the effects of the nano particles on the concentration, temperature and velocity of the fluid as it flows through the porous medium of a hollow channel in the presence of magnetic field. Also, the effects of fluid parameters such as Brownian motion, thermophoresis, viscous dissipation, non-Newtonian, porosity, magnetohydrodynamics (MHD), diffusion constant at various values on the fluid were established. The results generated ...
This present study considers flow and heat transfer of nanofluid, conveyed through expanding or cont...
Advancements in the biomedical engineering have enhanced the usage of magnto-nanoparticles in improv...
Nanofluids are extremely useful to investigators due to their greater heat transfer rates, which hav...
Impacts of gold nanoparticles on MHD Poiseuille flow of nanofluid in a porous medium are studied. Mi...
This analysis studies the impact of the pulsating flow of Al$$_2$$O$$_3$$-blood non-Newtonian nanofl...
This paper examines the effect of joule heating and MHD on peristaltic blood flow of a Eyring–Powell...
In this study, the pulsating flow of hydromagnetic nanofluid in a vertical porous channel has been i...
The paper presents the numerical study of heat and mass transfer analysis in a viscous unsteady MHD ...
The study of gold nanoparticles (AuNPs) in the blood flow has emerged as an area of interest for num...
Pulsatory movements appear in a variety of fascinating applications involving periodic flow propagat...
Abstract According to a survey of the literature, nanofluids are superior to traditional fluids at t...
A mathematical model has been suggested for the numerical study of blood flow in a vessel due to the...
Gold nanoparticles have a variety of applications in medical sciences, including photothermal (PT), ...
The present analysis deals with the intra-uterine nanofluid flow of a Jeffrey fluid through a finite...
This article is intended to study the arterial blood flow with nanoparticles in a magnetic field due...
This present study considers flow and heat transfer of nanofluid, conveyed through expanding or cont...
Advancements in the biomedical engineering have enhanced the usage of magnto-nanoparticles in improv...
Nanofluids are extremely useful to investigators due to their greater heat transfer rates, which hav...
Impacts of gold nanoparticles on MHD Poiseuille flow of nanofluid in a porous medium are studied. Mi...
This analysis studies the impact of the pulsating flow of Al$$_2$$O$$_3$$-blood non-Newtonian nanofl...
This paper examines the effect of joule heating and MHD on peristaltic blood flow of a Eyring–Powell...
In this study, the pulsating flow of hydromagnetic nanofluid in a vertical porous channel has been i...
The paper presents the numerical study of heat and mass transfer analysis in a viscous unsteady MHD ...
The study of gold nanoparticles (AuNPs) in the blood flow has emerged as an area of interest for num...
Pulsatory movements appear in a variety of fascinating applications involving periodic flow propagat...
Abstract According to a survey of the literature, nanofluids are superior to traditional fluids at t...
A mathematical model has been suggested for the numerical study of blood flow in a vessel due to the...
Gold nanoparticles have a variety of applications in medical sciences, including photothermal (PT), ...
The present analysis deals with the intra-uterine nanofluid flow of a Jeffrey fluid through a finite...
This article is intended to study the arterial blood flow with nanoparticles in a magnetic field due...
This present study considers flow and heat transfer of nanofluid, conveyed through expanding or cont...
Advancements in the biomedical engineering have enhanced the usage of magnto-nanoparticles in improv...
Nanofluids are extremely useful to investigators due to their greater heat transfer rates, which hav...