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Numerical simulation of Marangoni Maxwell nanofluid flow with Arrhenius activation energy and entropy anatomization over a rotating disk

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TLDR
In this paper , the authors studied the nanofluid flow under the consequences of Brownian motion, thermophoresis, and nonlinear radiation over a heated rotating disc.
Abstract
The nanofluid flow under the consequences of Brownian motion, thermophoresis, and nonlinear radiation has been numerically studied over a heated rotating disc. Arrhenius activation energy is used to describe the various aspects of heat and mass transition. The problem has been modeled in the form of a system of PDEs consist of the Maxwell and Navier Stokes equations. The system of modeled equations has been reduced to the ordinary system of dimensionless differential equations using a similarity framework. For the problem's quantitative approximation, the results have been obtained through numerical technique boundary value solver (bvp4c). The physical quantities that derive from the modeled equations are displayed and addressed. It has been perceived that the Prandtl number and radiation effect improves the heat transmission rate while improving the magnetic parameter reduces the velocity field. Furthermore, the entropy rate and Bejan number increases with the rising effect of chemical reaction, temperature differential variable, concentration ratio variable and Schmidt number.

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Computational assessment of hybrid nanofluid flow with the influence of hall current and chemical reaction over a slender stretching surface

TL;DR: In this article , a computational model is established for the purpose to amplify the energy communication rate and enhance the productivity and performance of thermal energy propagation for several industrial and biological purposes, which is expressed as a system of PDEs.
Journal ArticleDOI

Non-Fourier energy transmission in power-law hybrid nanofluid flow over a moving sheet

TL;DR: In this paper , the Darcy Forchhemier hybrid nanofluid flow has been studied under the influence of heat source and magnetic field over a two-dimensional moving permeable surface.
Journal ArticleDOI

Numerical Analysis of an Unsteady, Electroviscous, Ternary Hybrid Nanofluid Flow with Chemical Reaction and Activation Energy across Parallel Plates

TL;DR: In this article , the ternary hybrid nanofluid flow is modeled in the form of a system of partial differential equations, which are subsequently simplified to a set of ordinary differential equations through resemblance substitution.
Journal ArticleDOI

Mathematical analysis of casson fluid flow with energy and mass transfer under the influence of activation energy from a non-coaxially spinning disc

TL;DR: In this article , a numerical simulation of non-coaxial rotation of a Casson fluid over a circular disc was estimated, and the influence of thermal radiation, second-order chemical reactions, buoyancy, and heat source on aCasson fluid above a rotating frame was studied.
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Numerical simulation of ternary nanofluid flow with multiple slip and thermal jump conditions

TL;DR: In this paper , the consequences of thermal radiation with slip boundary conditions and a uniform magnetic field on a steady 2D flow of trihybrid nanofluids over a spinning disc were investigated.
References
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Journal ArticleDOI

Dual solutions for mixed convection flow of SiO2−Al2O3/water hybrid nanofluid near the stagnation point over a curved surface

TL;DR: In this paper, the results of steady mixed convection flow of SiO 2 − Al 2 O 3 /water hybrid nanofluid near the stagnation point with the curved surface of radius R and mass suction S.
Journal ArticleDOI

Analysis on the performance of a flat-plate volumetric solar collector using blended plasmonic nanofluid

TL;DR: In this article, the thermal performance of a flat-plate volumetric solar collector using a blended plasmonic nanofluid as its heat transfer fluid was investigated.
Journal ArticleDOI

Impact of MHD radiative flow of hybrid nanofluid over a rotating disk

TL;DR: In this paper, the impacts of nonlinear thermal radiations on S W C N T − T i O 2 & M W C n T − C o F e 2 O 4 nanoparticles suspended in water-based hybrid type nanofluid flow over rotating disk are considered.
Journal ArticleDOI

Comparative study on heat transfer in CNTs-water nanofluid over a curved surface

TL;DR: In this article, the heat transfer characteristics and skin friction for two-dimensional oblique stagnation point flow of SWCNTs and MWCNTs based nanofluid flowing over a curved surface were analyzed.
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