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Analysis of Highly CO(2)-Diluted Oxy-propane Flames Stabilized over a Multihole Burner of a Model Gas Turbine Combustor

[Image: see text] Premixed oxy-propane flames are investigated numerically in a multihole model gas turbine combustor at various inlet mixture compositions over a range of equivalence ratios (Ø: 0.241–0.500), oxygen fractions (OF: 32.4–60.0%), and adiabatic flame temperatures (T(ad): 1600–1900 K) at...

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Autores principales: Habib, Mohamed A., Haque, Md Azazul, Nemitallah, Medhat A., Abdelhafez, Ahmed, Khalifa, Atia E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9670281/
https://www.ncbi.nlm.nih.gov/pubmed/36406490
http://dx.doi.org/10.1021/acsomega.2c05274
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author Habib, Mohamed A.
Haque, Md Azazul
Nemitallah, Medhat A.
Abdelhafez, Ahmed
Khalifa, Atia E.
author_facet Habib, Mohamed A.
Haque, Md Azazul
Nemitallah, Medhat A.
Abdelhafez, Ahmed
Khalifa, Atia E.
author_sort Habib, Mohamed A.
collection PubMed
description [Image: see text] Premixed oxy-propane flames are investigated numerically in a multihole model gas turbine combustor at various inlet mixture compositions over a range of equivalence ratios (Ø: 0.241–0.500), oxygen fractions (OF: 32.4–60.0%), and adiabatic flame temperatures (T(ad): 1600–1900 K) at a constant bulk throat velocity of 5.2 m/s. The flames in multihole combustors are highly influenced by their corresponding adiabatic flame temperatures. Similar flame shapes are observed at constant T(ad), where cases with (Ø = 0.241, OF = 60%) and (Ø = 0.50, OF = 32.4%) both represent lifted flames at T(ad) = 1600 K, anchored flames in (Ø = 0.276, OF = 60%) and (Ø = 0.50, OF = 36.6%) at T(ad) = 1750 K, and anchored stronger flames in cases (Ø = 0.313, OF = 60%), (Ø = 0.392, OF = 50%), and (Ø = 0.50, OF = 40.8%) at T(ad) = 1900 K. Flames in a multihole combustor are characterized by the presence of an outer recirculation zone (ORZ) only. In comparison with a swirl-stabilized combustor in identical inlet conditions, flames in a multihole combustor demonstrate a lower Damköhler number (Da), higher flame thickness, elevated pattern factor, and increased CO emission. Due to the reduced vorticity level because of the absence of swirl motion, the multihole flames have higher axial temperature than the swirl-stabilized ones.
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spelling pubmed-96702812022-11-18 Analysis of Highly CO(2)-Diluted Oxy-propane Flames Stabilized over a Multihole Burner of a Model Gas Turbine Combustor Habib, Mohamed A. Haque, Md Azazul Nemitallah, Medhat A. Abdelhafez, Ahmed Khalifa, Atia E. ACS Omega [Image: see text] Premixed oxy-propane flames are investigated numerically in a multihole model gas turbine combustor at various inlet mixture compositions over a range of equivalence ratios (Ø: 0.241–0.500), oxygen fractions (OF: 32.4–60.0%), and adiabatic flame temperatures (T(ad): 1600–1900 K) at a constant bulk throat velocity of 5.2 m/s. The flames in multihole combustors are highly influenced by their corresponding adiabatic flame temperatures. Similar flame shapes are observed at constant T(ad), where cases with (Ø = 0.241, OF = 60%) and (Ø = 0.50, OF = 32.4%) both represent lifted flames at T(ad) = 1600 K, anchored flames in (Ø = 0.276, OF = 60%) and (Ø = 0.50, OF = 36.6%) at T(ad) = 1750 K, and anchored stronger flames in cases (Ø = 0.313, OF = 60%), (Ø = 0.392, OF = 50%), and (Ø = 0.50, OF = 40.8%) at T(ad) = 1900 K. Flames in a multihole combustor are characterized by the presence of an outer recirculation zone (ORZ) only. In comparison with a swirl-stabilized combustor in identical inlet conditions, flames in a multihole combustor demonstrate a lower Damköhler number (Da), higher flame thickness, elevated pattern factor, and increased CO emission. Due to the reduced vorticity level because of the absence of swirl motion, the multihole flames have higher axial temperature than the swirl-stabilized ones. American Chemical Society 2022-11-03 /pmc/articles/PMC9670281/ /pubmed/36406490 http://dx.doi.org/10.1021/acsomega.2c05274 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Habib, Mohamed A.
Haque, Md Azazul
Nemitallah, Medhat A.
Abdelhafez, Ahmed
Khalifa, Atia E.
Analysis of Highly CO(2)-Diluted Oxy-propane Flames Stabilized over a Multihole Burner of a Model Gas Turbine Combustor
title Analysis of Highly CO(2)-Diluted Oxy-propane Flames Stabilized over a Multihole Burner of a Model Gas Turbine Combustor
title_full Analysis of Highly CO(2)-Diluted Oxy-propane Flames Stabilized over a Multihole Burner of a Model Gas Turbine Combustor
title_fullStr Analysis of Highly CO(2)-Diluted Oxy-propane Flames Stabilized over a Multihole Burner of a Model Gas Turbine Combustor
title_full_unstemmed Analysis of Highly CO(2)-Diluted Oxy-propane Flames Stabilized over a Multihole Burner of a Model Gas Turbine Combustor
title_short Analysis of Highly CO(2)-Diluted Oxy-propane Flames Stabilized over a Multihole Burner of a Model Gas Turbine Combustor
title_sort analysis of highly co(2)-diluted oxy-propane flames stabilized over a multihole burner of a model gas turbine combustor
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9670281/
https://www.ncbi.nlm.nih.gov/pubmed/36406490
http://dx.doi.org/10.1021/acsomega.2c05274
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