A Computational Study of Soot Formation in Methane Air Co-Flow Diffusion Flame Under Microgravity Conditions

Author:

Bhowal Arup Jyoti,Mandal Bijan Kumar

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,General Physics and Astronomy,General Engineering,Modeling and Simulation

Reference31 articles.

1. Alam, F.E., Dryer, F.L., Farouk, T.I.: Effectiveness of xenon as a fire suppressant under microgravity combustion environment. Combust. Sci. Technol. (2015). doi: 10.1080/00102202.2015.1085033

2. Barlow, R.S., Karpetis, A.N., Frank, J.H., Chen, J.Y.: Scalar profiles and NO-formation in laminar opposed flow partially premixed methane/air flames. Combust. Flame 127, 2102–2118 (2001)

3. Datta, A., Saha, A.: Contributions of self-absorption and soot on radiation heat transfer in a laminar methane-air diffusion flame. Proc. IMechE 221, 955–970 (2006)

4. DuPont, V., Pourkashanian, M., Williams, A.: Modeling of process heaters fired by natural gas. J. Inst. Energy 73, 20– 29 (1993)

5. Ezekoye, O.A., Zhang, Z.: Soot oxidation and agglomeration modeling in a microgravity diffusion flame. Combust. Flame 110, 127–139 (1997)

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