Energy and Mass Transport of Casson Nanofluid Flow Over a Slanted Permeable Inclined Surface
In this problem, examination of Casson nanofluid flow over nonlinear slanted extending sheet with chemical reaction and heat generation/absorption influences are under thought. Nanofluid exhibits in this examination is established on Buongiorno model. The governing nonlinear PDE’s are reduced to no...
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my.uum.repo.308312024-05-29T11:14:19Z https://repo.uum.edu.my/id/eprint/30831/ Energy and Mass Transport of Casson Nanofluid Flow Over a Slanted Permeable Inclined Surface Rafique, Khuram IMuhammad Imran, Asjad Anwar, Muhammad Imran Misiran, Masnita Ahmadian, Ali QA Mathematics In this problem, examination of Casson nanofluid flow over nonlinear slanted extending sheet with chemical reaction and heat generation/absorption influences are under thought. Nanofluid exhibits in this examination is established on Buongiorno model. The governing nonlinear PDE’s are reduced to nonlinear ODE’s by employing suitable transformations. The Kellerbox numerical technique is considered for simulation of this research. The influence of chemical reaction and nonlinear parameter on concentration and velocity distribution is analyzed. The recovered results exhibit that the impact of inclination and Casson factor reduced liquid velocity. While energy and mass transport rates are increased against inclination factor. Numerical and graphical outcomes are additionally exhibited in tables and graphs Springer Netherlands 2021 Article PeerReviewed application/pdf en https://repo.uum.edu.my/id/eprint/30831/1/JTAC%20144%202021%202031-2042.pdf Rafique, Khuram and IMuhammad Imran, Asjad and Anwar, Muhammad Imran and Misiran, Masnita and Ahmadian, Ali (2021) Energy and Mass Transport of Casson Nanofluid Flow Over a Slanted Permeable Inclined Surface. Journal of Thermal Analysis and Calorimetry, 144. pp. 2031-2042. ISSN 1388-6150 https://link.springer.com/article/10.1007/s10973-020-10481-9 https://doi.org/10.1007/s10973-020-10481-9 https://doi.org/10.1007/s10973-020-10481-9 |
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In this problem, examination of Casson nanofluid flow over nonlinear slanted extending sheet with chemical reaction and
heat generation/absorption influences are under thought. Nanofluid exhibits in this examination is established on Buongiorno model. The governing nonlinear PDE’s are reduced to nonlinear ODE’s by employing suitable transformations. The Kellerbox numerical technique is considered for simulation of this research. The influence of chemical reaction and nonlinear parameter on concentration and velocity distribution is analyzed. The recovered results exhibit that the impact of inclination and Casson factor reduced liquid velocity. While energy and mass transport rates are increased against inclination factor. Numerical and graphical outcomes are additionally exhibited in tables and graphs |
format |
Article |
author |
Rafique, Khuram IMuhammad Imran, Asjad Anwar, Muhammad Imran Misiran, Masnita Ahmadian, Ali |
author_facet |
Rafique, Khuram IMuhammad Imran, Asjad Anwar, Muhammad Imran Misiran, Masnita Ahmadian, Ali |
author_sort |
Rafique, Khuram |
title |
Energy and Mass Transport of Casson Nanofluid Flow Over a Slanted
Permeable Inclined Surface |
title_short |
Energy and Mass Transport of Casson Nanofluid Flow Over a Slanted
Permeable Inclined Surface |
title_full |
Energy and Mass Transport of Casson Nanofluid Flow Over a Slanted
Permeable Inclined Surface |
title_fullStr |
Energy and Mass Transport of Casson Nanofluid Flow Over a Slanted
Permeable Inclined Surface |
title_full_unstemmed |
Energy and Mass Transport of Casson Nanofluid Flow Over a Slanted
Permeable Inclined Surface |
title_sort |
energy and mass transport of casson nanofluid flow over a slanted
permeable inclined surface |
publisher |
Springer Netherlands |
publishDate |
2021 |
url |
https://repo.uum.edu.my/id/eprint/30831/1/JTAC%20144%202021%202031-2042.pdf https://doi.org/10.1007/s10973-020-10481-9 https://repo.uum.edu.my/id/eprint/30831/ https://link.springer.com/article/10.1007/s10973-020-10481-9 https://doi.org/10.1007/s10973-020-10481-9 |
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