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Hydrothermal analysis on non-Newtonian nanofluid flow of blood through porous vessels

TLDR
In this paper , the flow of non-Newtonian blood fluid with nanoparticles inside a vessel with a porous wall in presence of a magnetic field was investigated and the results showed that increasing the Gr number, porosity and negative pressure increase the blood velocity and increasing the magnetic field intensity decrease the blood velocities.
Abstract
In this paper, the flow of non-Newtonian blood fluid with nanoparticles inside a vessel with a porous wall in presence of a magnetic field have been investigated. This study aimed to investigate various parameters such as magnetic field and porosity on velocity, temperature, and concentration profiles. In this research, three different models (Vogel, Reynolds and Constant) for viscosity have been used as an innovation. The governing equations are solved by Akbari-Ganji's Method (AGM) analytical method and the Finite Element Method (FEM) is used to better represent the phenomena in the vessel. The results show that increasing the Gr number, porosity and negative pressure increase the blood velocity and increasing the magnetic field intensity decrease the blood velocity.

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Finite element analysis for ternary hybrid nanoparticles on thermal enhancement in pseudo-plastic liquid through porous stretching sheet

TL;DR: In this article , the authors discussed the involvement of ternary hybrid nanoparticles in the mixture of pseudo-plastic fluid model past over a two dimensional porous stretching sheet, and the contribution of several emerging parameters on solution have been displayed through graphs and discussed.
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Investigation of second grade viscoelastic non-Newtonian nanofluid flow on the curve stretching surface in presence of MHD

TL;DR: In this article , the second-grade viscoelastic nanofluid was studied in two-dimensional mode on a curve stretching surface and the impact of specific variables on the properties of fluid has been studied.
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Squeezed flow of polyethylene glycol and water based hybrid nanofluid over a magnetized sensor surface: A statistical approach

TL;DR: In this paper , a comparative analysis between the dynamics of chemically reactive polyethylene glycol and water-zirconia nanofluid over a permeable sensor surface was performed using the Runge-Kutta fourth-order based shooting method.
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Convective-radiative thermal investigation of a porous dovetail fin using spectral collocation method

TL;DR: In this paper , a second-order ordinary differential equation (ODE) governs the heat transfer problem of a dovetail fin, and dimensionless terms are used to reduce it to a non-dimensional form.
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A study of phase portraits, multistability and velocity profile of magneto-hydrodynamic Jeffery–Hamel flow nanofluid

TL;DR: In this article , the magneto-hydrodynamic (MHD) Jeffery-Hamel flow was studied for the first time in nanofluids and the phase portraits of the travelling wave solutions were examined using bifurcation theory on the dynamical system of the considered equation.
References
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Journal ArticleDOI

Homotopy perturbation technique

TL;DR: In this paper, the homotopy perturbation technique does not depend upon a small parameter in the equation and can be obtained uniformly valid not only for small parameters, but also for very large parameters.
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Thermodynamics and stability of fluids of third grade

TL;DR: In this paper, the Clausius-Duhem inequality for non-Newtonian incompressible fluids of the differential type was introduced, and a set of thermodynamic constraints on the Helmholtz free energy density were established.
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Stokes’ first problem for a second grade fluid in a porous half-space with heated boundary

TL;DR: In this paper, a second grade fluid in a porous half-space with a heated flat plate was investigated and exact solutions of the velocity and temperature fields were obtained using Fourier sine transforms.
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Green synthesis of gold nanoparticles with Zingiber officinale extract: Characterization and blood compatibility

TL;DR: The usage of nanoparticles, synthesized with Z. officinale extract, as vectors for the applications in drug delivery, gene delivery or as biosensors, where a direct contact with blood occurs is justified.
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Series solutions of non-Newtonian nanofluids with Reynolds' model and Vogel's model by means of the homotopy analysis method

TL;DR: The fully developed flow of an incompressible, thermodynamically compatible non-Newtonian third-grade nanofluid in coaxial cylinders is studied and the role of pertinent parameters is illustrated graphically.
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