Thermal characteristics of biogas flameless combustion in asymmetric meso-scale combustor.
Thermal characteristics of non-premixed conventional flame and flameless mode at fixed fuel mass flow rate of biogas (60% CH4+40% CO2) in an asymmetric mesoscale vortex combustor. Axial and tangential oxidizer configurations are investigated in this paper. The three-dimensional form of governing equ...
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my.utm.1073312024-09-01T07:16:18Z http://eprints.utm.my/107331/ Thermal characteristics of biogas flameless combustion in asymmetric meso-scale combustor. Asmayou, Ali Houssein Abdul Wahid, Mazlan Abdulrahman, Mohammed Bashir TJ Mechanical engineering and machinery Thermal characteristics of non-premixed conventional flame and flameless mode at fixed fuel mass flow rate of biogas (60% CH4+40% CO2) in an asymmetric mesoscale vortex combustor. Axial and tangential oxidizer configurations are investigated in this paper. The three-dimensional form of governing equations, including the Realizable-k-e model and the eddy-dissipation, have been described to simulate temperature distribution and combustion stability. The effect of tangential oxidizer configurations on the temperature distribution is also explored. The non-premixed mesoscale flameless combustion with a low 10% O2 concentration is much more stable than the non-premixed conventional flame with a low 21% O2 concentration. The mesoscale flameless combustion mode has higher temperature homogeneity throughout than traditional flame. The maximum temperature of the conventional flame and flameless combustions were 1692 K and 1160 K, respectively. 2023-07-20 Conference or Workshop Item PeerReviewed Asmayou, Ali Houssein and Abdul Wahid, Mazlan and Abdulrahman, Mohammed Bashir (2023) Thermal characteristics of biogas flameless combustion in asymmetric meso-scale combustor. In: 12th International Meeting on Advances in Thermofluids, IMAT 2021, 1 November 2021, Johor Bahru, Malaysia. http://dx.doi.org/10.1063/5.0136481 |
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TJ Mechanical engineering and machinery Asmayou, Ali Houssein Abdul Wahid, Mazlan Abdulrahman, Mohammed Bashir Thermal characteristics of biogas flameless combustion in asymmetric meso-scale combustor. |
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Thermal characteristics of non-premixed conventional flame and flameless mode at fixed fuel mass flow rate of biogas (60% CH4+40% CO2) in an asymmetric mesoscale vortex combustor. Axial and tangential oxidizer configurations are investigated in this paper. The three-dimensional form of governing equations, including the Realizable-k-e model and the eddy-dissipation, have been described to simulate temperature distribution and combustion stability. The effect of tangential oxidizer configurations on the temperature distribution is also explored. The non-premixed mesoscale flameless combustion with a low 10% O2 concentration is much more stable than the non-premixed conventional flame with a low 21% O2 concentration. The mesoscale flameless combustion mode has higher temperature homogeneity throughout than traditional flame. The maximum temperature of the conventional flame and flameless combustions were 1692 K and 1160 K, respectively. |
format |
Conference or Workshop Item |
author |
Asmayou, Ali Houssein Abdul Wahid, Mazlan Abdulrahman, Mohammed Bashir |
author_facet |
Asmayou, Ali Houssein Abdul Wahid, Mazlan Abdulrahman, Mohammed Bashir |
author_sort |
Asmayou, Ali Houssein |
title |
Thermal characteristics of biogas flameless combustion in asymmetric meso-scale combustor. |
title_short |
Thermal characteristics of biogas flameless combustion in asymmetric meso-scale combustor. |
title_full |
Thermal characteristics of biogas flameless combustion in asymmetric meso-scale combustor. |
title_fullStr |
Thermal characteristics of biogas flameless combustion in asymmetric meso-scale combustor. |
title_full_unstemmed |
Thermal characteristics of biogas flameless combustion in asymmetric meso-scale combustor. |
title_sort |
thermal characteristics of biogas flameless combustion in asymmetric meso-scale combustor. |
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2023 |
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http://eprints.utm.my/107331/ http://dx.doi.org/10.1063/5.0136481 |
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