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Partial differential equations modeling of thermal transportation in casson nanofluid flow with arrhenius activation energy and irreversibility processes


Citation

Al Oweidi, Khalid Fanoukh and Jamshed, Wasim and Goud, B. Shankar and Ullah, Imran and Usman, Unfound and Mohamed Isa, Siti Suzilliana Putri and El Din, Sayed M. and Guedri, Kamel and Jaleel, Refed Adnan (2022) Partial differential equations modeling of thermal transportation in casson nanofluid flow with arrhenius activation energy and irreversibility processes. Scientific Reports, 12 (1). pp. 1-21. ISSN 2045-2322

Abstract

The formation of entropy in a mixed convection Casson nanofluid model with Arhenius activation energy is examined in this paper using magnetohydrodynamics (MHD). The expanding sheet, whose function of sheet velocity is nonlinear, confines the Casson nanofluid. The final equations, which are obtained from the first mathematical formulations, are solved using the MATLAB built-in solver bvp4c. Utilizing similarity conversion, ODEs are converted in their ultimate form. A number of graphs and tabulations are also provided to show the effects of important flow parameters on the results distribution. Slip parameter was shown to increase fluid temperature and decrease entropy formation. On the production of entropy, the Brinkman number and concentration gradient have opposing effects. In the presence of nanoparticles, the Eckert number effect's augmentation of fluid temperature is more significant. Furthermore, a satisfactory agreement is reached when the findings of the current study are compared to those of studies that have been published in the past.


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Official URL or Download Paper: https://www.nature.com/articles/s41598-022-25010-x

Additional Metadata

Item Type: Article
Divisions: Centre of Foundation Studies for Agricultural Science
DOI Number: https://doi.org/10.1038/s41598-022-25010-x
Publisher: Nature Research
Keywords: Magnetohydrodynamics; Casson nanofluid; Mixed convection; Arrhenius activation energy; Entropy generation; Irreversibility processes; Nanoparticle effects; Thermal transportation; Fluid temperature; Flow parameters
Depositing User: Mr. Mohamad Syahrul Nizam Md Ishak
Date Deposited: 29 Jun 2024 14:16
Last Modified: 29 Jun 2024 14:16
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.1038/s41598-022-25010-x
URI: http://psasir.upm.edu.my/id/eprint/102662
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