Phukan, Parismita ; Deka, Hiren ; Haloi, Puja ; Hazarika, Gopal Chandra
Entropy generation is a crucial aspect of fluid dynamics and happens during all flow processes. In a sense, entropy indicates how to minimise thermal energy losses. This study examines entropy generation for a magnetohydrodynamic Casson fluid flow subject to a vertical cone. Here, impact of reaction by chemical and diffusion-thermo is scrutinized. Physical aspects of radiative flux transverse to the surface are deliberated. The governing non-linear PDEs and the total entropy expression are non-dimensionalized with the dimensionless quantities. ; Finite difference technique is implemented to get numerical and graphical results for the non-linear system. Entropy generation and Bejan number for the heat transfer has been analysed through plots and tables. The obtained results demonstrate that the embedded flow parameters have a considerable influence on both Bejan number and entropy generation. Bejan number with the influence of Casson parameter has a proportional effect with the Hartmann number and it falls with the rise in Dufour effect.
Zielona Góra: Uniwersytet Zielonogórski
IJAME, volume 29, number 3 (2024)
Biblioteka Uniwersytetu Zielonogórskiego
Sep 13, 2024
Sep 13, 2024
3
https://zbc.uz.zgora.pl/publication/90111
Edition name | Date |
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Generation of entropy for MHD flow of Casson fluid past a vertical cone with Dufour effect | Sep 13, 2024 |
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