Upshot of melting heat transfer in a Von Karman rotating flow of gold-silver/engine oil hybrid nanofluid with Cattaneo-Christov heat flux

This work addresses the three-dimensional flow of hybrid nanofluid owing to a rotating disk of variable thickness in the attendance of modified Fourier law. The hybrid nanofluid is comprised of gold and silver nanoparticles and engine oil taken as the base fluid. The heat transfer impact is analyzed...

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Main Authors: Yan Zhang, Nazia Shahmir, Muhammad Ramzan, Hammad Alotaibi, Hassan M. Aljohani
Format: Article
Language:English
Published: Elsevier 2021-08-01
Series:Case Studies in Thermal Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X21003129
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spelling doaj-2ed32f53fb0d4c9a9c9bf68a72087def2021-07-09T04:43:59ZengElsevierCase Studies in Thermal Engineering2214-157X2021-08-0126101149Upshot of melting heat transfer in a Von Karman rotating flow of gold-silver/engine oil hybrid nanofluid with Cattaneo-Christov heat fluxYan Zhang0Nazia Shahmir1Muhammad Ramzan2Hammad Alotaibi3Hassan M. Aljohani4School of Science, Beijing University of Civil Engineering and Architecture, Beijing, 100044, China; Beijing Key Laboratory of Functional Materials for Building Structure and Environment Remediation, Beijing University of Civil Engineering and Architecture, Beijing, 100044, ChinaDepartment of Computer Science, Bahria University, Islamabad, 44000, PakistanDepartment of Computer Science, Bahria University, Islamabad, 44000, Pakistan; School of Science, Beijing University of Civil Engineering and Architecture, Beijing, 100044, China; Corresponding author. Department of Computer Science, Bahria University, Islamabad, 44000, Pakistan.Department of Mathematics, College of Science, Taif University, P.O. Box 11099, Taif, 21944, Saudi ArabiaDepartment of Mathematics, College of Science, Taif University, P.O. Box 11099, Taif, 21944, Saudi ArabiaThis work addresses the three-dimensional flow of hybrid nanofluid owing to a rotating disk of variable thickness in the attendance of modified Fourier law. The hybrid nanofluid is comprised of gold and silver nanoparticles and engine oil taken as the base fluid. The heat transfer impact is analyzed in the employment of melting heat transfer. To analyze the traits of the fluid flow, Tiwari and Das model is utilized. The strongly non-linear system of governing equations is handled through the appropriate similarity transformations to obtain the coupled differential equations’ system that is solved numerically using the bvp4c scheme. The physiognomies of numerous parameters versus the radial and tangential velocities and heat transfer are depicted via graphs and cogitated accordingly. It is witnessed that the velocity and the heat transfer of the hybrid nanofluid flow possesses a substantial impact in comparison to the nanofluid. It is inferred from this that the performance of the hybrid-nanofluid is far better than the common nanofluid. The current findings are compared to those of a previously published study in a limiting case. A reliable agreement between the numeric values is achieved here.http://www.sciencedirect.com/science/article/pii/S2214157X21003129Rotating diskHybrid nanofluidMelting heat transferModified fourier law
collection DOAJ
language English
format Article
sources DOAJ
author Yan Zhang
Nazia Shahmir
Muhammad Ramzan
Hammad Alotaibi
Hassan M. Aljohani
spellingShingle Yan Zhang
Nazia Shahmir
Muhammad Ramzan
Hammad Alotaibi
Hassan M. Aljohani
Upshot of melting heat transfer in a Von Karman rotating flow of gold-silver/engine oil hybrid nanofluid with Cattaneo-Christov heat flux
Case Studies in Thermal Engineering
Rotating disk
Hybrid nanofluid
Melting heat transfer
Modified fourier law
author_facet Yan Zhang
Nazia Shahmir
Muhammad Ramzan
Hammad Alotaibi
Hassan M. Aljohani
author_sort Yan Zhang
title Upshot of melting heat transfer in a Von Karman rotating flow of gold-silver/engine oil hybrid nanofluid with Cattaneo-Christov heat flux
title_short Upshot of melting heat transfer in a Von Karman rotating flow of gold-silver/engine oil hybrid nanofluid with Cattaneo-Christov heat flux
title_full Upshot of melting heat transfer in a Von Karman rotating flow of gold-silver/engine oil hybrid nanofluid with Cattaneo-Christov heat flux
title_fullStr Upshot of melting heat transfer in a Von Karman rotating flow of gold-silver/engine oil hybrid nanofluid with Cattaneo-Christov heat flux
title_full_unstemmed Upshot of melting heat transfer in a Von Karman rotating flow of gold-silver/engine oil hybrid nanofluid with Cattaneo-Christov heat flux
title_sort upshot of melting heat transfer in a von karman rotating flow of gold-silver/engine oil hybrid nanofluid with cattaneo-christov heat flux
publisher Elsevier
series Case Studies in Thermal Engineering
issn 2214-157X
publishDate 2021-08-01
description This work addresses the three-dimensional flow of hybrid nanofluid owing to a rotating disk of variable thickness in the attendance of modified Fourier law. The hybrid nanofluid is comprised of gold and silver nanoparticles and engine oil taken as the base fluid. The heat transfer impact is analyzed in the employment of melting heat transfer. To analyze the traits of the fluid flow, Tiwari and Das model is utilized. The strongly non-linear system of governing equations is handled through the appropriate similarity transformations to obtain the coupled differential equations’ system that is solved numerically using the bvp4c scheme. The physiognomies of numerous parameters versus the radial and tangential velocities and heat transfer are depicted via graphs and cogitated accordingly. It is witnessed that the velocity and the heat transfer of the hybrid nanofluid flow possesses a substantial impact in comparison to the nanofluid. It is inferred from this that the performance of the hybrid-nanofluid is far better than the common nanofluid. The current findings are compared to those of a previously published study in a limiting case. A reliable agreement between the numeric values is achieved here.
topic Rotating disk
Hybrid nanofluid
Melting heat transfer
Modified fourier law
url http://www.sciencedirect.com/science/article/pii/S2214157X21003129
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