93
Views
26
CrossRef citations to date
0
Altmetric
Original Articles

Flame Stability in Underexpanded Natural Gas Jets

, , &
Pages 267-280 | Received 01 Jul 1987, Accepted 14 Sep 1987, Published online: 16 Apr 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

P. S. Cumber & M. Spearpoint. (2006) Modeling Lifted Methane Jet Fires Using the Boundary-Layer Equations. Numerical Heat Transfer, Part B: Fundamentals 49:3, pages 239-258.
Read now

Articles from other publishers (25)

Yi Niu, Dingwei Wang, Bihe Yuan & Yanyan Liu. (2024) Experimental investigation of rectangular nozzle aspect ratio effects on high-pressure helium leakage characteristics. Journal of Loss Prevention in the Process Industries 89, pages 105306.
Crossref
Yang Miao, Chenghao Jia, Yang Hua, Xiaolu Zhang, Lejia Sun, Gang Huang & Haibin Liu. (2024) Quantification of concentration characteristics of hydrogen leakage in electro-hydrogen coupled system with different obstacles via Background Oriented Schlieren. Journal of Energy Storage 83, pages 110764.
Crossref
M. Kazemi, S. Brennan & V. Molkov. (2024) Numerical simulations of the critical diameter and flame stability for hydrogen flames. International Journal of Hydrogen Energy 59, pages 591-603.
Crossref
Qi Guo, Ethan S. Hecht, Myra L. Blaylock, Jessica G. Shum & Cyrus Jordan. (2023) Physics model validation of propane and methane for Hydrogen Plus Other Alternative Fuels Risk Assessment Models (HyRAM+). Process Safety and Environmental Protection 173, pages 22-38.
Crossref
Ivan Ivanov, Serhii Polishchuk, Iryna Holiakova & Yevhen Kushnir. (2020) Research into limits of gas-fired burners flame stabilization in the flue gas recirculation. Mining of Mineral Deposits 14:1, pages 19-26.
Crossref
B. Rengel & A. Palacios. (2020) Analysis of experimental blowout velocities of jet flames. Combustion and Flame 213, pages 237-239.
Crossref
Shohei Yamamoto, Ryo Sakatsume & Keiji Takeno. (2018) Blow-off process of highly under-expanded hydrogen non-premixed jet flame. International Journal of Hydrogen Energy 43:10, pages 5199-5205.
Crossref
Adriana Palacios & Derek Bradley. (2017) Generalised correlations of blow-off and flame quenching for sub-sonic and choked jet flames. Combustion and Flame 185, pages 309-318.
Crossref
Adam J. Ruggles. (2015) Statistically advanced, self-similar, radial probability density functions of atmospheric and under-expanded hydrogen jets. Experiments in Fluids 56:11.
Crossref
Douglas Stamps & Sheldon Tieszen. (2014) Blowout of turbulent jet diffusion flames. Fuel 118, pages 113-122.
Crossref
Pedro José Martínez Ferrer, Romain Buttay, Guillaume Lehnasch & Arnaud Mura. (2014) A detailed verification procedure for compressible reactive multicomponent Navier–Stokes solvers. Computers & Fluids 89, pages 88-110.
Crossref
A.J. Ruggles & I.W. Ekoto. (2012) Ignitability and mixing of underexpanded hydrogen jets. International Journal of Hydrogen Energy 37:22, pages 17549-17560.
Crossref
. 2012. Lees' Loss Prevention in the Process Industries. Lees' Loss Prevention in the Process Industries 3129 3580 .
S.E. Gant, M.R. Pursell, C.J. Lea, J. Fletcher, W. Rattigan, A.M. Thyer & S. Connolly. (2011) Flammability of hydrocarbon and carbon dioxide mixtures. Process Safety and Environmental Protection 89:6, pages 472-481.
Crossref
Andre Mack-Gardner & Jeffrey Santrock. (2011) Analysis of Reservoir Pressure Decay, Velocity and Concentrations Fields of Natural Gas Venting from Pressurized Reservoir into the Atmosphere. SAE International Journal of Passenger Cars - Mechanical Systems 4:1, pages 216-230.
Crossref
Epaminondas Mastorakos. (2009) Ignition of turbulent non-premixed flames. Progress in Energy and Combustion Science 35:1, pages 57-97.
Crossref
C.J. Lawn. (2009) Lifted flames on fuel jets in co-flowing air. Progress in Energy and Combustion Science 35:1, pages 1-30.
Crossref
R.F. Alvani & M. Fairweather. (2008) Prediction of the ignition characteristics of flammable jets using intermittency-based turbulence models and a prescribed pdf approach. Computers & Chemical Engineering 32:3, pages 371-381.
Crossref
B.J. Lowesmith, G. Hankinson, M.R. Acton & G. Chamberlain. (2007) An Overview of the Nature of Hydrocarbon Jet Fire Hazards in the Oil and Gas Industry and a Simplified Approach to Assessing the Hazards. Process Safety and Environmental Protection 85:3, pages 207-220.
Crossref
I.S. Kim & E. Mastorakos. (2005) Simulations of turbulent lifted jet flames with two-dimensional conditional moment closure. Proceedings of the Combustion Institute 30:1, pages 911-918.
Crossref
. 2005. Lees' Loss Prevention in the Process Industries. Lees' Loss Prevention in the Process Industries 1 50 .
G. A. Chamberlain. (2001) New Techniques for Risk and Hazard Management in the Petrochemical Industry. New Techniques for Risk and Hazard Management in the Petrochemical Industry.
M.R Davis & P.C Jumppannen. (1998) Optical-acoustic feedback applied to a turbulent diffusion flame. Experimental Thermal and Fluid Science 16:3, pages 237-246.
Crossref
D. Bradley, P.H. Gaskell & X.J. Gu. (1998) The mathematical modeling of liftoff and blowoff of turbulent non-premixed methane jet flames at high strain rates. Symposium (International) on Combustion 27:1, pages 1199-1206.
Crossref
A.D. Birch & G.K. Hargrave. (1989) Lift-off heights in underexpanded natural gas jet flames. Symposium (International) on Combustion 22:1, pages 825-831.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.