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Scrutinization of second law analysis and viscous dissipation on Reiner-RivlinNanofluid with the effect of bioconvection over a rotating disk

In comparison to Newtonian fluids, non-Newtonian fluids have fascinating features in heat transportation. Here, newly type of Reiner-Rivlinnanoliquid flow over the revolving disk for viscous dissipation (VD) is being explored in a multiple-slip effect. The inclusion of gyrotactic microorganisms in t...

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Autores principales: Ali, Farhan, Zaib, A., Loganathan, K., Saeed, Anwar, Seangwattana, Thidaporn, Kumam, Poom, Galal, Ahmed M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925879/
https://www.ncbi.nlm.nih.gov/pubmed/36798776
http://dx.doi.org/10.1016/j.heliyon.2023.e13091
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author Ali, Farhan
Zaib, A.
Loganathan, K.
Saeed, Anwar
Seangwattana, Thidaporn
Kumam, Poom
Galal, Ahmed M.
author_facet Ali, Farhan
Zaib, A.
Loganathan, K.
Saeed, Anwar
Seangwattana, Thidaporn
Kumam, Poom
Galal, Ahmed M.
author_sort Ali, Farhan
collection PubMed
description In comparison to Newtonian fluids, non-Newtonian fluids have fascinating features in heat transportation. Here, newly type of Reiner-Rivlinnanoliquid flow over the revolving disk for viscous dissipation (VD) is being explored in a multiple-slip effect. The inclusion of gyrotactic microorganisms in the nanoliquid enhances the tendency of the nanoparticles. The idea of the intended model is enhanced by considering in the impact of activation energy, thermal radiative, heated convective conditions and entropy minimization. The system of nonlinear PDE is constructed into nonlinear ODE's by applying the von-Karman similarity method and later solved numerically using the BVP4c solver which is considered to study the complicated ordinary differential equations. TheInfluence of various parameters is elaborated and plotted physically through the graphical illustration. By contrasting the reported data in the restricted form to a previously published article, the accuracy of the current model has examined. The impact of a non-Newtonian fluid parameter over the velocity field appeared to showdpreciation in it. The results elucidate that when the wall slip coefficient is larger more torque is needed to maintain constant disk revaluation. Surface heat transmission and wall skin friction are computed for a wide variety of factors. These flows have several real world-applications, including modeling cases that occur in oceanography and geophysics, various industrial fields (such as lumber production).
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spelling pubmed-99258792023-02-15 Scrutinization of second law analysis and viscous dissipation on Reiner-RivlinNanofluid with the effect of bioconvection over a rotating disk Ali, Farhan Zaib, A. Loganathan, K. Saeed, Anwar Seangwattana, Thidaporn Kumam, Poom Galal, Ahmed M. Heliyon Research Article In comparison to Newtonian fluids, non-Newtonian fluids have fascinating features in heat transportation. Here, newly type of Reiner-Rivlinnanoliquid flow over the revolving disk for viscous dissipation (VD) is being explored in a multiple-slip effect. The inclusion of gyrotactic microorganisms in the nanoliquid enhances the tendency of the nanoparticles. The idea of the intended model is enhanced by considering in the impact of activation energy, thermal radiative, heated convective conditions and entropy minimization. The system of nonlinear PDE is constructed into nonlinear ODE's by applying the von-Karman similarity method and later solved numerically using the BVP4c solver which is considered to study the complicated ordinary differential equations. TheInfluence of various parameters is elaborated and plotted physically through the graphical illustration. By contrasting the reported data in the restricted form to a previously published article, the accuracy of the current model has examined. The impact of a non-Newtonian fluid parameter over the velocity field appeared to showdpreciation in it. The results elucidate that when the wall slip coefficient is larger more torque is needed to maintain constant disk revaluation. Surface heat transmission and wall skin friction are computed for a wide variety of factors. These flows have several real world-applications, including modeling cases that occur in oceanography and geophysics, various industrial fields (such as lumber production). Elsevier 2023-01-20 /pmc/articles/PMC9925879/ /pubmed/36798776 http://dx.doi.org/10.1016/j.heliyon.2023.e13091 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Ali, Farhan
Zaib, A.
Loganathan, K.
Saeed, Anwar
Seangwattana, Thidaporn
Kumam, Poom
Galal, Ahmed M.
Scrutinization of second law analysis and viscous dissipation on Reiner-RivlinNanofluid with the effect of bioconvection over a rotating disk
title Scrutinization of second law analysis and viscous dissipation on Reiner-RivlinNanofluid with the effect of bioconvection over a rotating disk
title_full Scrutinization of second law analysis and viscous dissipation on Reiner-RivlinNanofluid with the effect of bioconvection over a rotating disk
title_fullStr Scrutinization of second law analysis and viscous dissipation on Reiner-RivlinNanofluid with the effect of bioconvection over a rotating disk
title_full_unstemmed Scrutinization of second law analysis and viscous dissipation on Reiner-RivlinNanofluid with the effect of bioconvection over a rotating disk
title_short Scrutinization of second law analysis and viscous dissipation on Reiner-RivlinNanofluid with the effect of bioconvection over a rotating disk
title_sort scrutinization of second law analysis and viscous dissipation on reiner-rivlinnanofluid with the effect of bioconvection over a rotating disk
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925879/
https://www.ncbi.nlm.nih.gov/pubmed/36798776
http://dx.doi.org/10.1016/j.heliyon.2023.e13091
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