MHD micropolar nanofluid flow over an exponentially stretching/shrinking surface: triple solutions

In this study, the problem of MHD micropolar nanofluid boundary layer flows over an exponentially stretching/shrinking sheet with radiation and suction effect is considered. The Buongiorno’s nanofluid model is applied to the problem. The governing equations are first transformed to the coupled nonli...

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Main Authors: Dero, Sumera, Mohd Rohni, Azizah, Saaban, Azizan
Format: Article
Language:English
Published: Akademia Baru Publishing (M) Sdn Bhd 2019
Subjects:
Online Access:https://repo.uum.edu.my/id/eprint/26536/1/JARFMTS%20%2056%202%202019%20165%20174.pdf
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author Dero, Sumera
Mohd Rohni, Azizah
Saaban, Azizan
author_facet Dero, Sumera
Mohd Rohni, Azizah
Saaban, Azizan
author_sort Dero, Sumera
collection UUM
description In this study, the problem of MHD micropolar nanofluid boundary layer flows over an exponentially stretching/shrinking sheet with radiation and suction effect is considered. The Buongiorno’s nanofluid model is applied to the problem. The governing equations are first transformed to the coupled nonlinear similarity equations by using similarity transformations. The resulting equations which is in ordinary differential equations form are then solved numerically by using shooting method.Triple solutions are observed to exist for the flows. A comparison with existing solutions in literature for specific case are made to assess the accuracy of the present results. Further, the flows profiles are examined, and it is found that the presence of suction parameter will contribute the occurrences of triple solutions.
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spelling uum-265362019-10-29T01:46:58Z https://repo.uum.edu.my/id/eprint/26536/ MHD micropolar nanofluid flow over an exponentially stretching/shrinking surface: triple solutions Dero, Sumera Mohd Rohni, Azizah Saaban, Azizan QA75 Electronic computers. Computer science In this study, the problem of MHD micropolar nanofluid boundary layer flows over an exponentially stretching/shrinking sheet with radiation and suction effect is considered. The Buongiorno’s nanofluid model is applied to the problem. The governing equations are first transformed to the coupled nonlinear similarity equations by using similarity transformations. The resulting equations which is in ordinary differential equations form are then solved numerically by using shooting method.Triple solutions are observed to exist for the flows. A comparison with existing solutions in literature for specific case are made to assess the accuracy of the present results. Further, the flows profiles are examined, and it is found that the presence of suction parameter will contribute the occurrences of triple solutions. Akademia Baru Publishing (M) Sdn Bhd 2019 Article PeerReviewed application/pdf en https://repo.uum.edu.my/id/eprint/26536/1/JARFMTS%20%2056%202%202019%20165%20174.pdf Dero, Sumera and Mohd Rohni, Azizah and Saaban, Azizan (2019) MHD micropolar nanofluid flow over an exponentially stretching/shrinking surface: triple solutions. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 56 (2). pp. 165-174. ISSN 2289-7879 http://www.akademiabaru.com/arfmts.html
spellingShingle QA75 Electronic computers. Computer science
Dero, Sumera
Mohd Rohni, Azizah
Saaban, Azizan
MHD micropolar nanofluid flow over an exponentially stretching/shrinking surface: triple solutions
title MHD micropolar nanofluid flow over an exponentially stretching/shrinking surface: triple solutions
title_full MHD micropolar nanofluid flow over an exponentially stretching/shrinking surface: triple solutions
title_fullStr MHD micropolar nanofluid flow over an exponentially stretching/shrinking surface: triple solutions
title_full_unstemmed MHD micropolar nanofluid flow over an exponentially stretching/shrinking surface: triple solutions
title_short MHD micropolar nanofluid flow over an exponentially stretching/shrinking surface: triple solutions
title_sort mhd micropolar nanofluid flow over an exponentially stretching shrinking surface triple solutions
topic QA75 Electronic computers. Computer science
url https://repo.uum.edu.my/id/eprint/26536/1/JARFMTS%20%2056%202%202019%20165%20174.pdf
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