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LSM and DTM-Pade approximation for the combined impacts of convective and radiative heat transfer on an inclined porous longitudinal fin

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TLDR
In this paper , the authors considered temperature variation through an inclined porous longitudinal fine with convective radiative phenomenon and applied differential transform method (DTM) with Pade approximant for the radiation heat exchange.
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This article is published in Case Studies in Thermal Engineering.The article was published on 2022-02-01 and is currently open access. It has received 27 citations till now. The article focuses on the topics: Heat transfer & Radiative transfer.

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Investigation of behavior of heat storage system including paraffin with involving MWCNT nanoparticles

TL;DR: In this article , the thermal properties of paraffin have been upgraded with scattering MWCNT nano-powders and to apply the efficacy in modeling, the new material properties have been changed according to formulations based on homogeneous mixture assumption.
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Role of ternary hybrid nanofluid in the thermal distribution of a dovetail fin with the internal generation of heat

TL;DR: In this paper , the authors examined the thermal variance in a dovetail fin under fully wet conditions with ternary hybrid nanofluid ZnFe 2 O 4 + MnZnFe2O 4 + NiZnF 2 O4 -H 2 O taking temperature and humidity ratio differences into account as driving forces for heat and mass transfer systems, respectively.
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Exploration of Temperature Distribution through a Longitudinal Rectangular Fin with Linear and Exponential Temperature-Dependent Thermal Conductivity Using DTM-Pade Approximant

TL;DR: In this paper , the thermal distribution and efficiency of a longitudinal rectangular fin with exponentially varying temperature-dependent thermal conductivity and heat transfer coefficient concerning internal heat generation were analyzed using ANSYS software with different fin materials.
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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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Evaluation of Melting Mechanism and Natural Convection Effect in a Triplex Tube Heat Storage System with a Novel Fin Arrangement

TL;DR: In this paper , a numerical analysis is accomplished aiming to investigate the effects of adding a new design fins arrangement to a vertical triplex tube latent heat storage system during the melting mechanism and evaluate the natural convection effect using Ansys Fluent software.
References
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Enhancement in Thermal Energy and Solute Particles Using Hybrid Nanoparticles by Engaging Activation Energy and Chemical Reaction over a Parabolic Surface via Finite Element Approach

TL;DR: In this article, the authors discussed the flow of Powell-Eyring fluid mixed with hybrid nanoparticles over a melting parabolic stretched surface and derived flow rheology expressions under boundary layer theory.
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Combined impact of Cattaneo-Christov double diffusion and radiative heat flux on bio-convective flow of Maxwell liquid configured by a stretched nano-material surface

TL;DR: In this paper , the authors analyzed the radiative flow of Maxwell nanoliquid on a stretching cylinder by considering magnetic effect, Stefan blowing and bioconvection effects, and found that the upshot change in thermal and mass relaxation times parameters declines the thermal and concentration pattern, respectively.
Journal ArticleDOI

Theoretical study of MHD electro-osmotically flow of third-grade fluid in micro channel

TL;DR: The article has been retracted at the request of the Editor-in-Chief of Elsevier as mentioned in this paper due to suspicious changes in authorship between the original submission and the revised version of this paper.
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Thermal and flow analysis of microchannel heat sink (MCHS) cooled by Cu–water nanofluid using porous media approach and least square method

TL;DR: In this paper, heat transfer of a fin shaped microchannel heat sink (MCHS) cooled by Cu-water nanofluid is investigated and temperature distribution in solid section (fin) and fluid section (Cu-water) are obtained by porous media approach and least square method and the results are compared with numerical procedure.
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