Effect of preheating on combustion characteristics of a swirling flameless combustor.

Flameless combustion is a state-of-the-art combustion technique that provides uniform temperature distribution while increasing efficiency and reducing emissions. An internally preheated swirling flameless burner (IPSFC) operating in flameless mode has been developed and tested to provide improved c...

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Main Authors: Ismail, Najib Aminu, Alwan, Raid Abid, Abdul Wahid, Mazlan, Sa'At, Aminuddin, Abdulrahman, Mohammed Bashir
Format: Conference or Workshop Item
Published: 2023
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Online Access:http://eprints.utm.my/107423/
http://dx.doi.org/10.1063/5.0136486
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spelling my.utm.1074232024-09-17T07:30:01Z http://eprints.utm.my/107423/ Effect of preheating on combustion characteristics of a swirling flameless combustor. Ismail, Najib Aminu Alwan, Raid Abid Abdul Wahid, Mazlan Sa'At, Aminuddin Abdulrahman, Mohammed Bashir TJ Mechanical engineering and machinery Flameless combustion is a state-of-the-art combustion technique that provides uniform temperature distribution while increasing efficiency and reducing emissions. An internally preheated swirling flameless burner (IPSFC) operating in flameless mode has been developed and tested to provide improved combustion characteristics and very low pollutant emissions. The IPSFC burner was operated at a heat input of 7 kW to 15 kW with a preheated combustion temperature. In the study, the effects of combustion air with and without preheating on gaseous fuel combustion characteristics are investigated for the six cases: SFR2, SFR4, SFR42, PSFR2, PSFR4 and PSFR42. The results show that the best configuration for a flameless burner is the SFR42 case, a vortex burner with four tangential air inlets, 12 axial air inlets, and 11 coaxial fuel inlets. The preheated air was found to increase the thermal efficiency of the process by about 10% compared to the process without preheating but at the cost of a small increase in NOx emissions. At an equivalence ratio of 0.8, the lowest NOx and CO emissions were found to be 3 ppm and 24 ppm, respectively. Temperature uniformity varied from 0.03 in SFR42 to 0.04 in SFR2 at different equivalence ratios. 2023-07-20 Conference or Workshop Item PeerReviewed Ismail, Najib Aminu and Alwan, Raid Abid and Abdul Wahid, Mazlan and Sa'At, Aminuddin and Abdulrahman, Mohammed Bashir (2023) Effect of preheating on combustion characteristics of a swirling flameless combustor. In: 12th International Meeting on Advances in Thermofluids, IMAT 2021, 1 November 2021, Johor Bahru, Malaysia. http://dx.doi.org/10.1063/5.0136486
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Ismail, Najib Aminu
Alwan, Raid Abid
Abdul Wahid, Mazlan
Sa'At, Aminuddin
Abdulrahman, Mohammed Bashir
Effect of preheating on combustion characteristics of a swirling flameless combustor.
description Flameless combustion is a state-of-the-art combustion technique that provides uniform temperature distribution while increasing efficiency and reducing emissions. An internally preheated swirling flameless burner (IPSFC) operating in flameless mode has been developed and tested to provide improved combustion characteristics and very low pollutant emissions. The IPSFC burner was operated at a heat input of 7 kW to 15 kW with a preheated combustion temperature. In the study, the effects of combustion air with and without preheating on gaseous fuel combustion characteristics are investigated for the six cases: SFR2, SFR4, SFR42, PSFR2, PSFR4 and PSFR42. The results show that the best configuration for a flameless burner is the SFR42 case, a vortex burner with four tangential air inlets, 12 axial air inlets, and 11 coaxial fuel inlets. The preheated air was found to increase the thermal efficiency of the process by about 10% compared to the process without preheating but at the cost of a small increase in NOx emissions. At an equivalence ratio of 0.8, the lowest NOx and CO emissions were found to be 3 ppm and 24 ppm, respectively. Temperature uniformity varied from 0.03 in SFR42 to 0.04 in SFR2 at different equivalence ratios.
format Conference or Workshop Item
author Ismail, Najib Aminu
Alwan, Raid Abid
Abdul Wahid, Mazlan
Sa'At, Aminuddin
Abdulrahman, Mohammed Bashir
author_facet Ismail, Najib Aminu
Alwan, Raid Abid
Abdul Wahid, Mazlan
Sa'At, Aminuddin
Abdulrahman, Mohammed Bashir
author_sort Ismail, Najib Aminu
title Effect of preheating on combustion characteristics of a swirling flameless combustor.
title_short Effect of preheating on combustion characteristics of a swirling flameless combustor.
title_full Effect of preheating on combustion characteristics of a swirling flameless combustor.
title_fullStr Effect of preheating on combustion characteristics of a swirling flameless combustor.
title_full_unstemmed Effect of preheating on combustion characteristics of a swirling flameless combustor.
title_sort effect of preheating on combustion characteristics of a swirling flameless combustor.
publishDate 2023
url http://eprints.utm.my/107423/
http://dx.doi.org/10.1063/5.0136486
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score 13.2014675