MAXIMUM AIR SUCTION INTO HORIZONTAL OPEN ENDED CYLINDRICAL LOUVERED PIPE

The main approach behind the present numerical investigation is to estimate the mass flow rate of air sucked into a horizontal open-ended louvered pipe from the surrounding atmosphere. The present numerical investigation has been performed by solving the conservation equations for mass, momentum and...

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Main Authors: SAMEER RANJAN SAHU, DIPTI PRASAD MISHRA
Format: Article
Language:English
Published: Taylor's University 2017-02-01
Series:Journal of Engineering Science and Technology
Subjects:
Online Access:http://jestec.taylors.edu.my/Vol%2012%20issue%202%20February%202017/12_2_8.pdf
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spelling doaj-e4169bd6858045c988cd762e4ea33ef22020-11-25T01:39:55ZengTaylor's UniversityJournal of Engineering Science and Technology1823-46902017-02-01122388404MAXIMUM AIR SUCTION INTO HORIZONTAL OPEN ENDED CYLINDRICAL LOUVERED PIPE SAMEER RANJAN SAHU0 DIPTI PRASAD MISHRA1Department of Mechanical Engineering, Birla Institute of Technology, Mesra, Ranchi, 835215, India Department of Mechanical Engineering, Birla Institute of Technology, Mesra, Ranchi, 835215, India The main approach behind the present numerical investigation is to estimate the mass flow rate of air sucked into a horizontal open-ended louvered pipe from the surrounding atmosphere. The present numerical investigation has been performed by solving the conservation equations for mass, momentum and energy along with two equation based k-ɛ model for a louvered horizontal cylindrical pipe by finite volume method. It has been found from the numerical investigation that mass suction rate of air into the pipe increases with increase in louvered opening area and the number of nozzles used. Keeping other parameters fixed, for a given mass flow rate there exists an optimum protrusion of nozzle for highest mass suction into the pipe. It was also found from the numerical investigation that increasing the pipe diameter the suction mass flow rate of air was increased. http://jestec.taylors.edu.my/Vol%2012%20issue%202%20February%202017/12_2_8.pdfLouversEntrainmentNozzleExhaust gasHorizontal pipe
collection DOAJ
language English
format Article
sources DOAJ
author SAMEER RANJAN SAHU
DIPTI PRASAD MISHRA
spellingShingle SAMEER RANJAN SAHU
DIPTI PRASAD MISHRA
MAXIMUM AIR SUCTION INTO HORIZONTAL OPEN ENDED CYLINDRICAL LOUVERED PIPE
Journal of Engineering Science and Technology
Louvers
Entrainment
Nozzle
Exhaust gas
Horizontal pipe
author_facet SAMEER RANJAN SAHU
DIPTI PRASAD MISHRA
author_sort SAMEER RANJAN SAHU
title MAXIMUM AIR SUCTION INTO HORIZONTAL OPEN ENDED CYLINDRICAL LOUVERED PIPE
title_short MAXIMUM AIR SUCTION INTO HORIZONTAL OPEN ENDED CYLINDRICAL LOUVERED PIPE
title_full MAXIMUM AIR SUCTION INTO HORIZONTAL OPEN ENDED CYLINDRICAL LOUVERED PIPE
title_fullStr MAXIMUM AIR SUCTION INTO HORIZONTAL OPEN ENDED CYLINDRICAL LOUVERED PIPE
title_full_unstemmed MAXIMUM AIR SUCTION INTO HORIZONTAL OPEN ENDED CYLINDRICAL LOUVERED PIPE
title_sort maximum air suction into horizontal open ended cylindrical louvered pipe
publisher Taylor's University
series Journal of Engineering Science and Technology
issn 1823-4690
publishDate 2017-02-01
description The main approach behind the present numerical investigation is to estimate the mass flow rate of air sucked into a horizontal open-ended louvered pipe from the surrounding atmosphere. The present numerical investigation has been performed by solving the conservation equations for mass, momentum and energy along with two equation based k-ɛ model for a louvered horizontal cylindrical pipe by finite volume method. It has been found from the numerical investigation that mass suction rate of air into the pipe increases with increase in louvered opening area and the number of nozzles used. Keeping other parameters fixed, for a given mass flow rate there exists an optimum protrusion of nozzle for highest mass suction into the pipe. It was also found from the numerical investigation that increasing the pipe diameter the suction mass flow rate of air was increased.
topic Louvers
Entrainment
Nozzle
Exhaust gas
Horizontal pipe
url http://jestec.taylors.edu.my/Vol%2012%20issue%202%20February%202017/12_2_8.pdf
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