Development of radial aerodynamic swirlers

Experimental studies show that swirl has large-scale effects on flowfields: jet growth, entrainment and decay (for isothermal flows) and flame size, shape, stability and combustion intensity (for combustion flows) are affected by the degree of swirl imparted to the flow. This degree of swirl is usua...

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Main Author: Mohd. Jaafar, Mohammad Nazri
Format: Article
Language:en
Published: Faculty of Mechanical Engineering 1997
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Online Access:http://eprints.utm.my/8338/2/MohammadNazriMohdJaafar1997_DevelopmentOfRadialAerodynamicSwirles.pdf
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author Mohd. Jaafar, Mohammad Nazri
author_facet Mohd. Jaafar, Mohammad Nazri
author_sort Mohd. Jaafar, Mohammad Nazri
building UTM Library
collection Institutional Repository
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
continent Asia
country Malaysia
description Experimental studies show that swirl has large-scale effects on flowfields: jet growth, entrainment and decay (for isothermal flows) and flame size, shape, stability and combustion intensity (for combustion flows) are affected by the degree of swirl imparted to the flow. This degree of swirl is usually characterises by the momentum to the axial flux of axial momentum times the equivalent nozzle radius. This parameter, denoted by the symbol S, is called the swirl number and has been used extensively to designate the strength of the swirl. This paper is to review the aerodynamics of swirling flow in combustion system.
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institution Universiti Teknologi Malaysia
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publishDate 1997
publisher Faculty of Mechanical Engineering
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spelling my.utm.eprints-83382012-10-15T10:11:50Z http://eprints.utm.my/8338/ Development of radial aerodynamic swirlers Mohd. Jaafar, Mohammad Nazri TJ Mechanical engineering and machinery Experimental studies show that swirl has large-scale effects on flowfields: jet growth, entrainment and decay (for isothermal flows) and flame size, shape, stability and combustion intensity (for combustion flows) are affected by the degree of swirl imparted to the flow. This degree of swirl is usually characterises by the momentum to the axial flux of axial momentum times the equivalent nozzle radius. This parameter, denoted by the symbol S, is called the swirl number and has been used extensively to designate the strength of the swirl. This paper is to review the aerodynamics of swirling flow in combustion system. Faculty of Mechanical Engineering 1997-12 Article PeerReviewed application/pdf en http://eprints.utm.my/8338/2/MohammadNazriMohdJaafar1997_DevelopmentOfRadialAerodynamicSwirles.pdf Mohd. Jaafar, Mohammad Nazri (1997) Development of radial aerodynamic swirlers. Jurnal Mekanikal, 2 (4). pp. 13-28. ISSN 0127-3396 http://portal.psz.utm.my/psz/index.php?option=com_content&task=view&id=128&Itemid=305&PHPSESSID=81b664e998055f65b4ccff8f61bf7cb2
spellingShingle TJ Mechanical engineering and machinery
Mohd. Jaafar, Mohammad Nazri
Development of radial aerodynamic swirlers
title Development of radial aerodynamic swirlers
title_full Development of radial aerodynamic swirlers
title_fullStr Development of radial aerodynamic swirlers
title_full_unstemmed Development of radial aerodynamic swirlers
title_short Development of radial aerodynamic swirlers
title_sort development of radial aerodynamic swirlers
topic TJ Mechanical engineering and machinery
url http://eprints.utm.my/8338/2/MohammadNazriMohdJaafar1997_DevelopmentOfRadialAerodynamicSwirles.pdf
http://eprints.utm.my/8338/
http://portal.psz.utm.my/psz/index.php?option=com_content&task=view&id=128&Itemid=305&PHPSESSID=81b664e998055f65b4ccff8f61bf7cb2
url_provider http://eprints.utm.my/