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Open AccessJournal ArticleDOI

A numerical investigation on ethylene glycol-titanium dioxide nanofluid convective flow over a stretching sheet in presence of heat generation/absorption

TLDR
In this article, a TiO 2 -ethylene glycol nanofluid flow over a porous stretching sheet in presence of non-uniform generation or absorption of heat and convective boundary condition is investigated.
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This article is published in Case Studies in Thermal Engineering.The article was published on 2018-09-01 and is currently open access. It has received 112 citations till now. The article focuses on the topics: Heat generation & Convective heat transfer.

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Investigation on ethylene glycol Nano fluid flow over a vertical permeable circular cylinder under effect of magnetic field

TL;DR: In this article, the mixed convection stationary point flow of an incompressible viscous nano fluid into a vertical permeable circular cylinder along with electric conductivity is analyzed, and the strong nonlinear systems calculations are presented using the Numerical Method after non-dimensionalization.
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Investigation of mixture fluid suspended by hybrid nanoparticles over vertical cylinder by considering shape factor effect

TL;DR: In this article, the effects of different shape factors have been investigated for a mixture of water and nanofluid with hybrid nanoparticles (MWCNT-Ag) over a vertical stretching cylinder, while a magnetic field has been applied to the system.
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MHD boundary layer analysis for micropolar dusty fluid containing Hybrid nanoparticles (Cu‑Al2O3) over a porous medium

TL;DR: In this paper, Mahnetohydrodynamic flow and heat transfer of non-Newtonian micropolar dusty fluid suspended Cu-Al2O3 Hybrid nanoparticles past a stretching sheet in the presence of nonlinear thermal radiation, variable thermal conductivity and different nanoparticles shapes (Bricks, Cylinders, Platelets and Blades) are investigated.
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Hydrothermal analysis of MHD nanofluid (TiO2-GO) flow between two radiative stretchable rotating disks using AGM

TL;DR: In this article, the effects of stretching parameters and Reynolds number on the concentration, temperature, axial, radial and tangential velocities are studied and it is shown that with increment of the values of stretching rate of lower disk, the radial and axial velocity enhances near the lower disk.
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Entropy generation analysis of (CH2OH)2 containing CNTs nanofluid flow under effect of MHD and thermal radiation

TL;DR: In this article, the entropy generation of nanofluids between two stretching rotating discs under the effect of magnetohydrodynamic (MHD) and thermal radiation is examined in the presence of carbon nanotubes.
References
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Investigation on thermophysical properties of Tio2–Cu/H2O hybrid nanofluid transport dependent on shape factor in MHD stagnation point flow

TL;DR: In this article, the effects of change in parameters of stretching ratio parameter (A ∗ ), nanoparticles volumetric fractions (∅ 2 ), magnetic parameter (β) and reciprocal magnetic Prandtl number (λ) on the functions including velocity, induced magnetic field and temperature for both Cu-water nanofluid and TiO2-Cu/water hybrid nanofluid.
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A simple isothermal model for homogeneous-heterogeneous reactions in boundary-layer flow. I Equal diffusivities

TL;DR: In this paper, a simple model for homogeneous-heterogeneous reactions in stagnation-point boundary-layer flow is constructed in which the homogeneous (bulk) reaction is given by isothermal cubic autocatalator kinetics and the heterogeneous (surface) reaction by first order kinetics.
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Impact of Marangoni convection in the flow of carbon–water nanofluid with thermal radiation

TL;DR: In this paper, the influence of carbon nanotubes in the Marangoni convection boundary layer flow of viscous fluid has been investigated and convergent series solutions are established for the resulting differential systems.
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Numerical investigation for three dimensional squeezing flow of nanofluid in a rotating channel with lower stretching wall suspended by carbon nanotubes

TL;DR: In this paper, a three-dimensional squeezing flow of nanofluid in a channel is presented, where the lower wall of the channel is assumed to be stationary but permeable.
Journal ArticleDOI

Solution of the boundary layer flow of an Eyring-Powell non-Newtonian fluid over a linear stretching sheet by collocation method

TL;DR: In this paper, the boundary layer flow of an Eyring-Powell fluid over a stretching sheet in an unbounded domain is analyzed using the collocation method combined with a special technique.
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