Experimental study on laminar flame speeds and Markstein length of propane air mixtures at atmospheric conditions

An experimental study is performed in this work to determine stretched and unstretched laminar flame propagation velocities, Lewis number, flame thickness and the Markstein length of propane-air mixtures. The spherical flame propagation method was used to achieve this experimental work. Non-premixed...

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Main Authors: Yousif, A.A., Sulaiman, S.A., Nasif, M.S.
Format: Article
Published: Universiti Malaysia Pahang 2015
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84937057441&doi=10.15282%2fijame.11.2015.2.0183&partnerID=40&md5=e9ee47dc9109d7a9129d528a3884ce4b
http://eprints.utp.edu.my/26092/
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spelling my.utp.eprints.260922021-08-30T08:51:39Z Experimental study on laminar flame speeds and Markstein length of propane air mixtures at atmospheric conditions Yousif, A.A. Sulaiman, S.A. Nasif, M.S. An experimental study is performed in this work to determine stretched and unstretched laminar flame propagation velocities, Lewis number, flame thickness and the Markstein length of propane-air mixtures. The spherical flame propagation method was used to achieve this experimental work. Non-premixed propane-air mixtures at ambient temperature 303±1 K, pressure of 0.1 MPa and equivalence ratios ranging from Φ = 0.6 to 1.4 were ignited in a cylindrical combustion chamber. The stretched laminar burning speed was found to increase with the flame radius and time from ignition, which was attributed to flame propagation development. This is achieved by high-speed schlieren cine photography for observation of the flames in the vessel. The results obtained show that the unstretched laminar flame velocity increased as the equivalence ratio increased, and the recorded value reached a maximum at equivalence ratio Φ = 1.0 and decreased at the rich region. It was found that, with increase of the equivalence ratio, the Markstein length is increased and decreased in lean mixtures. The present data were in good agreement with those previously published using different techniques. However, the difference between the peak value of laminar flame velocity in the present work and those in the literature is between 4-5.5. © Universiti Malaysia Pahang. Universiti Malaysia Pahang 2015 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-84937057441&doi=10.15282%2fijame.11.2015.2.0183&partnerID=40&md5=e9ee47dc9109d7a9129d528a3884ce4b Yousif, A.A. and Sulaiman, S.A. and Nasif, M.S. (2015) Experimental study on laminar flame speeds and Markstein length of propane air mixtures at atmospheric conditions. International Journal of Automotive and Mechanical Engineering, 11 (1). pp. 2188-2198. http://eprints.utp.edu.my/26092/
institution Universiti Teknologi Petronas
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collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description An experimental study is performed in this work to determine stretched and unstretched laminar flame propagation velocities, Lewis number, flame thickness and the Markstein length of propane-air mixtures. The spherical flame propagation method was used to achieve this experimental work. Non-premixed propane-air mixtures at ambient temperature 303±1 K, pressure of 0.1 MPa and equivalence ratios ranging from Φ = 0.6 to 1.4 were ignited in a cylindrical combustion chamber. The stretched laminar burning speed was found to increase with the flame radius and time from ignition, which was attributed to flame propagation development. This is achieved by high-speed schlieren cine photography for observation of the flames in the vessel. The results obtained show that the unstretched laminar flame velocity increased as the equivalence ratio increased, and the recorded value reached a maximum at equivalence ratio Φ = 1.0 and decreased at the rich region. It was found that, with increase of the equivalence ratio, the Markstein length is increased and decreased in lean mixtures. The present data were in good agreement with those previously published using different techniques. However, the difference between the peak value of laminar flame velocity in the present work and those in the literature is between 4-5.5. © Universiti Malaysia Pahang.
format Article
author Yousif, A.A.
Sulaiman, S.A.
Nasif, M.S.
spellingShingle Yousif, A.A.
Sulaiman, S.A.
Nasif, M.S.
Experimental study on laminar flame speeds and Markstein length of propane air mixtures at atmospheric conditions
author_facet Yousif, A.A.
Sulaiman, S.A.
Nasif, M.S.
author_sort Yousif, A.A.
title Experimental study on laminar flame speeds and Markstein length of propane air mixtures at atmospheric conditions
title_short Experimental study on laminar flame speeds and Markstein length of propane air mixtures at atmospheric conditions
title_full Experimental study on laminar flame speeds and Markstein length of propane air mixtures at atmospheric conditions
title_fullStr Experimental study on laminar flame speeds and Markstein length of propane air mixtures at atmospheric conditions
title_full_unstemmed Experimental study on laminar flame speeds and Markstein length of propane air mixtures at atmospheric conditions
title_sort experimental study on laminar flame speeds and markstein length of propane air mixtures at atmospheric conditions
publisher Universiti Malaysia Pahang
publishDate 2015
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84937057441&doi=10.15282%2fijame.11.2015.2.0183&partnerID=40&md5=e9ee47dc9109d7a9129d528a3884ce4b
http://eprints.utp.edu.my/26092/
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