Numerical simulation and thermal enhancement of multi-based nanofluid over an embrittled cone

The thermal energy enhancement in industries is an important problem today. The daily life application of nanofluid technology has changed the view by increasing heat transfer coefficient, reduction in skin friction, and decreasing production cost. This article focuses on the conventional flow of mu...

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Autores principales: Azad Hussain, Ali Hassan, Mubashar Arshad, Aysha Rehman, R.T. Matoog, Thabet Abdeljawad
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Lenguaje:EN
Publicado: Elsevier 2021
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Acceso en línea:https://doaj.org/article/25e03eba2d9a4e5cbd06e2867cde1c8b
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spelling oai:doaj.org-article:25e03eba2d9a4e5cbd06e2867cde1c8b2021-11-10T04:26:35ZNumerical simulation and thermal enhancement of multi-based nanofluid over an embrittled cone2214-157X10.1016/j.csite.2021.101614https://doaj.org/article/25e03eba2d9a4e5cbd06e2867cde1c8b2021-12-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2214157X21007772https://doaj.org/toc/2214-157XThe thermal energy enhancement in industries is an important problem today. The daily life application of nanofluid technology has changed the view by increasing heat transfer coefficient, reduction in skin friction, and decreasing production cost. This article focuses on the conventional flow of multi-based nanofluids over the vertical rotating cone, along with heat transfer attributes. Synthetic Ester (SE) and Natural Ester (NE) are used as the base fluids, phenomena of allotrope have been utilized for base fluid to create different combinations of nanofluids such as Ag-NE, Ag-SE, Cu-O-NE, and Cu-O-SE. The flow is induced by cone angular velocity that is dependent on time. The similarity assembly is employed to transform the highly non-linear partial differential equations into non-dimensional partial differential equations. The solution is obtained utilizing the BVP-4c technique in MATLAB, the tolerance for the numerical solution is kept 10−06. The graphical outcomes of velocity profiles and temperature are presented, heat transfer coefficients for different nanofluids have been observed and compared also presented in the tabulated data set. This study recommends more frequent exploitation of Ag-NE and Ag-SE nanofluids, these nanofluids have higher heat transfers as compared to others explored in the examination.Azad HussainAli HassanMubashar ArshadAysha RehmanR.T. MatoogThabet AbdeljawadElsevierarticleMulti-based nanofluidSE and NENumerical solutionComparative studyViscous incompressible flowAbsorbent mediumEngineering (General). Civil engineering (General)TA1-2040ENCase Studies in Thermal Engineering, Vol 28, Iss , Pp 101614- (2021)
institution DOAJ
collection DOAJ
language EN
topic Multi-based nanofluid
SE and NE
Numerical solution
Comparative study
Viscous incompressible flow
Absorbent medium
Engineering (General). Civil engineering (General)
TA1-2040
spellingShingle Multi-based nanofluid
SE and NE
Numerical solution
Comparative study
Viscous incompressible flow
Absorbent medium
Engineering (General). Civil engineering (General)
TA1-2040
Azad Hussain
Ali Hassan
Mubashar Arshad
Aysha Rehman
R.T. Matoog
Thabet Abdeljawad
Numerical simulation and thermal enhancement of multi-based nanofluid over an embrittled cone
description The thermal energy enhancement in industries is an important problem today. The daily life application of nanofluid technology has changed the view by increasing heat transfer coefficient, reduction in skin friction, and decreasing production cost. This article focuses on the conventional flow of multi-based nanofluids over the vertical rotating cone, along with heat transfer attributes. Synthetic Ester (SE) and Natural Ester (NE) are used as the base fluids, phenomena of allotrope have been utilized for base fluid to create different combinations of nanofluids such as Ag-NE, Ag-SE, Cu-O-NE, and Cu-O-SE. The flow is induced by cone angular velocity that is dependent on time. The similarity assembly is employed to transform the highly non-linear partial differential equations into non-dimensional partial differential equations. The solution is obtained utilizing the BVP-4c technique in MATLAB, the tolerance for the numerical solution is kept 10−06. The graphical outcomes of velocity profiles and temperature are presented, heat transfer coefficients for different nanofluids have been observed and compared also presented in the tabulated data set. This study recommends more frequent exploitation of Ag-NE and Ag-SE nanofluids, these nanofluids have higher heat transfers as compared to others explored in the examination.
format article
author Azad Hussain
Ali Hassan
Mubashar Arshad
Aysha Rehman
R.T. Matoog
Thabet Abdeljawad
author_facet Azad Hussain
Ali Hassan
Mubashar Arshad
Aysha Rehman
R.T. Matoog
Thabet Abdeljawad
author_sort Azad Hussain
title Numerical simulation and thermal enhancement of multi-based nanofluid over an embrittled cone
title_short Numerical simulation and thermal enhancement of multi-based nanofluid over an embrittled cone
title_full Numerical simulation and thermal enhancement of multi-based nanofluid over an embrittled cone
title_fullStr Numerical simulation and thermal enhancement of multi-based nanofluid over an embrittled cone
title_full_unstemmed Numerical simulation and thermal enhancement of multi-based nanofluid over an embrittled cone
title_sort numerical simulation and thermal enhancement of multi-based nanofluid over an embrittled cone
publisher Elsevier
publishDate 2021
url https://doaj.org/article/25e03eba2d9a4e5cbd06e2867cde1c8b
work_keys_str_mv AT azadhussain numericalsimulationandthermalenhancementofmultibasednanofluidoveranembrittledcone
AT alihassan numericalsimulationandthermalenhancementofmultibasednanofluidoveranembrittledcone
AT mubashararshad numericalsimulationandthermalenhancementofmultibasednanofluidoveranembrittledcone
AT aysharehman numericalsimulationandthermalenhancementofmultibasednanofluidoveranembrittledcone
AT rtmatoog numericalsimulationandthermalenhancementofmultibasednanofluidoveranembrittledcone
AT thabetabdeljawad numericalsimulationandthermalenhancementofmultibasednanofluidoveranembrittledcone
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