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Characteristics of synovial trihybrid nanofluid activation energy and Marangoni convective flow: A Computational framework of local thermal non-equilibrium. / Yuan, Haowen; Jan, Ahmed Zubair; Majeed, Afraz Hussain и др.
в: Case Studies in Thermal Engineering, Том 59, 104519, 01.07.2024.

Результаты исследований: Вклад в журналСтатьяРецензирование

Harvard

Yuan, H, Jan, AZ, Majeed, AH, Shi, L, Kędzia, K, Lima Ferrás, LJ, Ali, MR & Hendy, AS 2024, 'Characteristics of synovial trihybrid nanofluid activation energy and Marangoni convective flow: A Computational framework of local thermal non-equilibrium', Case Studies in Thermal Engineering, Том. 59, 104519. https://doi.org/10.1016/j.csite.2024.104519

APA

Yuan, H., Jan, A. Z., Majeed, A. H., Shi, L., Kędzia, K., Lima Ferrás, L. J., Ali, M. R., & Hendy, A. S. (2024). Characteristics of synovial trihybrid nanofluid activation energy and Marangoni convective flow: A Computational framework of local thermal non-equilibrium. Case Studies in Thermal Engineering, 59, [104519]. https://doi.org/10.1016/j.csite.2024.104519

Vancouver

Yuan H, Jan AZ, Majeed AH, Shi L, Kędzia K, Lima Ferrás LJ и др. Characteristics of synovial trihybrid nanofluid activation energy and Marangoni convective flow: A Computational framework of local thermal non-equilibrium. Case Studies in Thermal Engineering. 2024 июль 1;59:104519. doi: 10.1016/j.csite.2024.104519

Author

Yuan, Haowen ; Jan, Ahmed Zubair ; Majeed, Afraz Hussain и др. / Characteristics of synovial trihybrid nanofluid activation energy and Marangoni convective flow: A Computational framework of local thermal non-equilibrium. в: Case Studies in Thermal Engineering. 2024 ; Том 59.

BibTeX

@article{ecca959695a540daa133e6dda31a7c91,
title = "Characteristics of synovial trihybrid nanofluid activation energy and Marangoni convective flow: A Computational framework of local thermal non-equilibrium",
abstract = "The impact of nonlinear heat source and activation energy on magnetized Synovial trihybrid nanofluid Marangoni convective flow across a sheet combining two viscosity models is investigated in this study. Heat sources, activation energy, and conditions of local thermal non-equilibrium (LTNE) are all considered in the modelling. Based upon energy equations, the LTNE model provides unique heat transport for both liquid and solid phases. This leads to the utilization of different temperature profiles for the fluid and solid phases in this work. A trihybrid fluid is created by combining the basic fluid blood with MWCNT (multi-wall carbon nanotubes), SWCNT (single-wall carbon nanotubes) and sliver nanoparticle. This study significant potential in several fields. The effects of parameters on friction between joints are examined, which aids in the analysis of the lubricant nature of Synovial trihybrid nanofluid. A significant finding of the current work is that the thermal profiles decrease with higher values of the Concentration-dependent viscosity parameter, but the velocity profile increases. An increase in the inter-phase heat transfer characteristic raises the liquid phase's thermal profile while lowering the solid phase's thermal profile.",
author = "Haowen Yuan and Jan, {Ahmed Zubair} and Majeed, {Afraz Hussain} and Lixiang Shi and Krzysztof K{\c e}dzia and {Lima Ferr{\'a}s}, {Lu{\'i}s Jorge} and Ali, {Mohamed R.} and Hendy, {Ahmed S.}",
year = "2024",
month = jul,
day = "1",
doi = "10.1016/j.csite.2024.104519",
language = "English",
volume = "59",
journal = "Case Studies in Thermal Engineering",
issn = "2214-157X",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Characteristics of synovial trihybrid nanofluid activation energy and Marangoni convective flow: A Computational framework of local thermal non-equilibrium

AU - Yuan, Haowen

AU - Jan, Ahmed Zubair

AU - Majeed, Afraz Hussain

AU - Shi, Lixiang

AU - Kędzia, Krzysztof

AU - Lima Ferrás, Luís Jorge

AU - Ali, Mohamed R.

AU - Hendy, Ahmed S.

PY - 2024/7/1

Y1 - 2024/7/1

N2 - The impact of nonlinear heat source and activation energy on magnetized Synovial trihybrid nanofluid Marangoni convective flow across a sheet combining two viscosity models is investigated in this study. Heat sources, activation energy, and conditions of local thermal non-equilibrium (LTNE) are all considered in the modelling. Based upon energy equations, the LTNE model provides unique heat transport for both liquid and solid phases. This leads to the utilization of different temperature profiles for the fluid and solid phases in this work. A trihybrid fluid is created by combining the basic fluid blood with MWCNT (multi-wall carbon nanotubes), SWCNT (single-wall carbon nanotubes) and sliver nanoparticle. This study significant potential in several fields. The effects of parameters on friction between joints are examined, which aids in the analysis of the lubricant nature of Synovial trihybrid nanofluid. A significant finding of the current work is that the thermal profiles decrease with higher values of the Concentration-dependent viscosity parameter, but the velocity profile increases. An increase in the inter-phase heat transfer characteristic raises the liquid phase's thermal profile while lowering the solid phase's thermal profile.

AB - The impact of nonlinear heat source and activation energy on magnetized Synovial trihybrid nanofluid Marangoni convective flow across a sheet combining two viscosity models is investigated in this study. Heat sources, activation energy, and conditions of local thermal non-equilibrium (LTNE) are all considered in the modelling. Based upon energy equations, the LTNE model provides unique heat transport for both liquid and solid phases. This leads to the utilization of different temperature profiles for the fluid and solid phases in this work. A trihybrid fluid is created by combining the basic fluid blood with MWCNT (multi-wall carbon nanotubes), SWCNT (single-wall carbon nanotubes) and sliver nanoparticle. This study significant potential in several fields. The effects of parameters on friction between joints are examined, which aids in the analysis of the lubricant nature of Synovial trihybrid nanofluid. A significant finding of the current work is that the thermal profiles decrease with higher values of the Concentration-dependent viscosity parameter, but the velocity profile increases. An increase in the inter-phase heat transfer characteristic raises the liquid phase's thermal profile while lowering the solid phase's thermal profile.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85193426579

UR - https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=tsmetrics&SrcApp=tsm_test&DestApp=WOS_CPL&DestLinkType=FullRecord&KeyUT=001243775400001

U2 - 10.1016/j.csite.2024.104519

DO - 10.1016/j.csite.2024.104519

M3 - Article

VL - 59

JO - Case Studies in Thermal Engineering

JF - Case Studies in Thermal Engineering

SN - 2214-157X

M1 - 104519

ER -

ID: 57301832