Numerical investigation of heat transfer and fluid flow characteristics of an internally ribbed tube / Kailash Mohapatra and Dipti Prasad Mishra
Numerical investigation have been performed by solving the conservation equations of mass, momentum, energy with two equation based k-e model to determine the wall temperature, outlet temperature and Nusselt number of an internally ribbed tube. It has been found from the numerical investigation that...
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uitm-161462017-02-21T02:18:45Z http://ir.uitm.edu.my/id/eprint/16146/ Numerical investigation of heat transfer and fluid flow characteristics of an internally ribbed tube / Kailash Mohapatra and Dipti Prasad Mishra Mohapatra, Kailash Mishra, Dipti Prasad Heat. Heat in its applications, as a source of power, etc Numerical investigation have been performed by solving the conservation equations of mass, momentum, energy with two equation based k-e model to determine the wall temperature, outlet temperature and Nusselt number of an internally ribbed tube. It has been found from the numerical investigation that the heat transfer and pressure drop is increased by increasing the rib height and rib number. It was also found that there exists an optimum angle of inclination for maximum heat transfer and minimum pressure drop. The heat transfer is found to be highest in triangular rib compare to other shape. Faculty of Mechanical Engineering (FKM) and UiTMPress 2015 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/16146/1/AJ_KAILASH%20MOHAPATRA%20JME%2015.pdf Mohapatra, Kailash and Mishra, Dipti Prasad (2015) Numerical investigation of heat transfer and fluid flow characteristics of an internally ribbed tube / Kailash Mohapatra and Dipti Prasad Mishra. Journal of Mechanical Engineering, 12 (2). pp. 86-103. ISSN 1823-5514 |
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Heat. Heat in its applications, as a source of power, etc |
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Heat. Heat in its applications, as a source of power, etc Mohapatra, Kailash Mishra, Dipti Prasad Numerical investigation of heat transfer and fluid flow characteristics of an internally ribbed tube / Kailash Mohapatra and Dipti Prasad Mishra |
description |
Numerical investigation have been performed by solving the conservation equations of mass, momentum, energy with two equation based k-e model to determine the wall temperature, outlet temperature and Nusselt number of an internally ribbed tube. It has been found from the numerical investigation that the heat transfer and pressure drop is increased by increasing the rib height and rib number. It was also found that there exists an optimum angle of inclination for maximum heat transfer and minimum pressure drop. The heat transfer is found to be highest in triangular rib compare to other shape. |
format |
Article |
author |
Mohapatra, Kailash Mishra, Dipti Prasad |
author_facet |
Mohapatra, Kailash Mishra, Dipti Prasad |
author_sort |
Mohapatra, Kailash |
title |
Numerical investigation of heat transfer and fluid flow characteristics of an internally ribbed tube / Kailash Mohapatra and Dipti Prasad Mishra |
title_short |
Numerical investigation of heat transfer and fluid flow characteristics of an internally ribbed tube / Kailash Mohapatra and Dipti Prasad Mishra |
title_full |
Numerical investigation of heat transfer and fluid flow characteristics of an internally ribbed tube / Kailash Mohapatra and Dipti Prasad Mishra |
title_fullStr |
Numerical investigation of heat transfer and fluid flow characteristics of an internally ribbed tube / Kailash Mohapatra and Dipti Prasad Mishra |
title_full_unstemmed |
Numerical investigation of heat transfer and fluid flow characteristics of an internally ribbed tube / Kailash Mohapatra and Dipti Prasad Mishra |
title_sort |
numerical investigation of heat transfer and fluid flow characteristics of an internally ribbed tube / kailash mohapatra and dipti prasad mishra |
publisher |
Faculty of Mechanical Engineering (FKM) and UiTMPress |
publishDate |
2015 |
url |
http://ir.uitm.edu.my/id/eprint/16146/ http://ir.uitm.edu.my/id/eprint/16146/1/AJ_KAILASH%20MOHAPATRA%20JME%2015.pdf |
first_indexed |
2023-09-18T22:55:25Z |
last_indexed |
2023-09-18T22:55:25Z |
_version_ |
1777417821234397184 |