Diversified role of fuzzified particle concentration on Casson gold-blood nanofluid flow through an elongating sheet for different shape nanoparticles

The theme of this work is to explore the impact of shape factor on magnetized Casson gold-blood nanofluid flow through elongated sheet using fuzzified volume fraction. The impact of Ohmic heating, convective heating and suction/injection on heat transfer rate, is incorporated. The existing ordinary...

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Main Authors: Himanshu Upreti, S.R. Mishra, Alok Kumar Pandey, Navneet Joshi, Bhagwati Prasad Joshi
Format: Article
Language:English
Published: Taylor & Francis Group 2023-12-01
Series:Journal of Taibah University for Science
Subjects:
Online Access:https://www.tandfonline.com/doi/10.1080/16583655.2023.2254465
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author Himanshu Upreti
S.R. Mishra
Alok Kumar Pandey
Navneet Joshi
Bhagwati Prasad Joshi
author_facet Himanshu Upreti
S.R. Mishra
Alok Kumar Pandey
Navneet Joshi
Bhagwati Prasad Joshi
author_sort Himanshu Upreti
collection DOAJ
description The theme of this work is to explore the impact of shape factor on magnetized Casson gold-blood nanofluid flow through elongated sheet using fuzzified volume fraction. The impact of Ohmic heating, convective heating and suction/injection on heat transfer rate, is incorporated. The existing ordinary differential equations (ODEs) are transformed into fuzzy differential equations by applying the α-cut technique of fuzzy numbers. The α-cut value ranges from 0 to 1, which determines the level of fuzziness in the TFNs. The results indicate that rise in the Casson parameter leads to a reduction in the boundary layer thickness and an augmentation of shear stress near the sheet. Additionally, among the nanoparticle shapes studied, cylindrical nanoparticles demonstrate the extreme thermal conductivity, followed by platelet and blade-shaped nanoparticles, all contributing to an improvement in the heat transfer rate. The present code is validated numerically with previous works and found in good agreement.
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spelling doaj.art-b80a00ed85f04feca98b1741c2a7a6c52024-04-10T20:17:48ZengTaylor & Francis GroupJournal of Taibah University for Science1658-36552023-12-0117110.1080/16583655.2023.2254465Diversified role of fuzzified particle concentration on Casson gold-blood nanofluid flow through an elongating sheet for different shape nanoparticlesHimanshu Upreti0S.R. Mishra1Alok Kumar Pandey2Navneet Joshi3Bhagwati Prasad Joshi4SoET, BML Munjal University, Gurugram, IndiaDepartment of Mathematics, Siksha ‘O’ Anusandhan Deemed to be University, Bhubaneswar, IndiaDepartment of Mathematics, Graphic Era (Deemed to be University), Dehradun, IndiaDepartment of Mathematics, Graphic Era Hill University, Bhimtal, IndiaDepartment of Mathematics, Graphic Era Hill University, Bhimtal, IndiaThe theme of this work is to explore the impact of shape factor on magnetized Casson gold-blood nanofluid flow through elongated sheet using fuzzified volume fraction. The impact of Ohmic heating, convective heating and suction/injection on heat transfer rate, is incorporated. The existing ordinary differential equations (ODEs) are transformed into fuzzy differential equations by applying the α-cut technique of fuzzy numbers. The α-cut value ranges from 0 to 1, which determines the level of fuzziness in the TFNs. The results indicate that rise in the Casson parameter leads to a reduction in the boundary layer thickness and an augmentation of shear stress near the sheet. Additionally, among the nanoparticle shapes studied, cylindrical nanoparticles demonstrate the extreme thermal conductivity, followed by platelet and blade-shaped nanoparticles, all contributing to an improvement in the heat transfer rate. The present code is validated numerically with previous works and found in good agreement.https://www.tandfonline.com/doi/10.1080/16583655.2023.2254465Casson nanofluidnon-uniform heat sink/sourcestretching sheetconvective heatingfuzzy volume fractionfuzzy differential equations
spellingShingle Himanshu Upreti
S.R. Mishra
Alok Kumar Pandey
Navneet Joshi
Bhagwati Prasad Joshi
Diversified role of fuzzified particle concentration on Casson gold-blood nanofluid flow through an elongating sheet for different shape nanoparticles
Journal of Taibah University for Science
Casson nanofluid
non-uniform heat sink/source
stretching sheet
convective heating
fuzzy volume fraction
fuzzy differential equations
title Diversified role of fuzzified particle concentration on Casson gold-blood nanofluid flow through an elongating sheet for different shape nanoparticles
title_full Diversified role of fuzzified particle concentration on Casson gold-blood nanofluid flow through an elongating sheet for different shape nanoparticles
title_fullStr Diversified role of fuzzified particle concentration on Casson gold-blood nanofluid flow through an elongating sheet for different shape nanoparticles
title_full_unstemmed Diversified role of fuzzified particle concentration on Casson gold-blood nanofluid flow through an elongating sheet for different shape nanoparticles
title_short Diversified role of fuzzified particle concentration on Casson gold-blood nanofluid flow through an elongating sheet for different shape nanoparticles
title_sort diversified role of fuzzified particle concentration on casson gold blood nanofluid flow through an elongating sheet for different shape nanoparticles
topic Casson nanofluid
non-uniform heat sink/source
stretching sheet
convective heating
fuzzy volume fraction
fuzzy differential equations
url https://www.tandfonline.com/doi/10.1080/16583655.2023.2254465
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