
Thermal Radiation Of Inclined Large Scale Hydrogen Jet Flames
References
- Becker, H.A. and Liang, B. (1978) ‘Visible Length of free turbulent diffusion flames’, Combustion and Flame, 32, pp. 115–117. Available at: 10.1016/0010-2180(78)90087-1
- Bernardy, C., Habib, A.K., Kluge, M., Schalau, B., Kant, H., Schulze, M. and Orchini, A. (2024) ‘Large-scale investigations of the thermal radiation of hydrogen jet flames’, Journal of Loss Prevention in the Process Industries, 94,
105491 . Available at: 10.1016/j.jlp.2024.105491 - Bilger, R.W. (1976) ‘Turbulent jet diffusion flames’, Progress in Energy and Combustion Science, 1(2), pp. 87–109. Available at: 10.1016/0360-1285(76)90022-8
- Burke, S.P. and Schumann, T.E.W. (1928) ‘Diffusion Flames’, Industrial & Engineering Chemistry, 20(10), pp. 998–1004. Available at: 10.1021/ie50226a005
- Chamberlain, G.A. (1987) ‘Developments in design methods for predicting thermal radiation from flares’, Chemical Engineering Research & Design 65(4), pp. 299–309.
- Ekoto, I.W., Houf, W.G., Ruggles, A.J., Creitz, L.W. and Li, J.X. (2012) ‘Large Scale Hydrogen Jet Flame Radiant Measurement and Modelling’, in 9th International Pipeline Conference 2012, ASME (IPTI ASME INSTITUTE): Calgary. Alberta, Canada, pp. 713–724. Available at: 10.1115/IPC2012-90535
- Gore, J.P., Jeng, S.M. and Faeth, G.M. (1987) ‘Spectral and Total Radiation Properties of Turbulent Hydrogen/Air Diffusion Flames’, Journal of Heat Transfer, 109(1), pp. 165–171. Available at: 10.1115/1.3248038
- Gummer, J.H.S. (2008) Spontaneous Ignition of hydrogen – Literature review. UK Health and Safety Executive.
- Hankinson, G. and Lowesmith, B.J. (2012) ‘A consideration of methods of determining the radiative characteristics of jet fires’, Combustion and Flame, 159(3), pp. 1165–1177. Available at: 10.1016/j.combustflame.2011.09.004
- Hawthorne, W.R., Weddell, D.S. and Hottel, H.C. (1948) ‘Mixing and combustion in turbulent gas jets’, Symposium on Combustion and Flame, and Explosion Phenomena, 3(1), pp. 266–288. Available at: 10.1016/S1062-2896(49)80035-3
- Imamura, T., Hamada, S., Mogi, T., Wada, Y., Horiguchi, S., Miyake, A. and Ogawa, T. (2008) ‘Experimental investigation on the thermal properties of hydrogen jet flame and hot currents in the downstream region’, International Journal of Hydrogen Energy, 33(13), pp. 3426–3435. Available at: 10.1016/j.ijhydene.2008.03.063
- Kalghatgi, G. (1984) ‘Lift-off Heights and Visible Lengths of Vertical Turbulent Jet Diffusion Flames in Still Air’, Combustion Science and Technology, 41(1–2), pp. 17–29. Available at: 10.1080/00102208408923819
- Mogi, T., Nishida, H. and Horiguchi, S. (2005) ‘Flame Characteristics of high-pressure hydrogen gas jet’, International Conference on Hydrogen Safety.
- Molina, A., Schefer, R. and Houf, W.G. (2007) ‘Radiative fraction and optical thickness in large-scale hydrogen-jet fires’, Proceedings of The Combustion Institute, 31, p. 2565–2572. Available at: 10.1016/j.proci.2006.08.060
- Molkov, V. and Saffers, J.-B. (2013) ‘Hydrogen jet flames’, International Journal of Hydrogen Energy, 38(19), pp. 8141–8158. Available at: 10.1016/j.ijhydene.2012.08.106
- Panda, P.P. and Hecht, E.S. (2017) ‘Ignition and flame characteristics of cryogenic hydrogen releases’, International Journal of Hydrogen Energy, 42(1), pp. 775–785. Available at: 10.1016/j.ijhydene.2016.08.051
- Proust, C., Jamois, D. and Studer, E. (2011) ‘High pressure hydrogen fires’, International Journal of Hydrogen Energy, 36(3), pp. 2367–2373. Available at: 10.1016/j.ijhydene.2010.04.055
- Schefer, R.W., Houf, W.G., Bourne, B. and Colton, J. (2006) ‘Spatial and radiative properties of an open-flame hydrogen plume’, International Journal of Hydrogen Energy, 31(10), pp. 1332–1340. Available at: 10.1016/j.ijhydene.2005.11.020
- Schefer, R.W., Kulatilaka, W.D., Patterson, B.D. and Settersen, T.B. (2009) ‘Visible emission of hydrogen flames’, Combustion and Flame, 156(6), pp. 1234–1241. Available at: 10.1016/j.combustflame.2009.01.011
- Shevyakov, G.G. and Komov, V.F. (1977) ‘Effect of noncombustible admixtures on length of an axisymmetric on-port turbulent diffusion flame’, Combustion, Explosion and Shock Waves, 13(5), pp. 563–566. Available at: 10.1007/BF00742209
- Sivathanu, Y.R. and Gore, J.P. (1993) ‘Total radiative heat loss in jet flames from single point radiative flux measurements’, Combustion and Flame, 94(3), pp. 265–270. Available at: 10.1016/0010-2180(93)90073-C
- Studer, E., Jamois, D., Jallais, S., Leroy, G., Hebrard, J. and Blanchetière, V. (2009) ‘Properties of large-scale methane/hydrogen jet fires’, International Journal of Hydrogen Energy, 34(23), pp. 9611–9619. Available at: 10.1016/j.ijhydene.2009.09.024
- Turns, S.R. and Myhr, F.H. (1991) ‘Oxides of nitrogen emissions from turbulent jet flames: Part I—Fuel effects and flame radiation’, Combustion and Flame, 87(3), pp. 319–335. Available at: 10.1016/0010-2180(91)90116-S
- van den Bosch, C.J.H. and Weterings, R.A.P.M. (2005)
‘Methods for the Calculation of Physical Effects: Due to Releases of Hazardous Materials, Liquids and Gases: Yellow Book’ , 2005: Ministerie van Volkshuisvesting en Ruimtelijke Ordening (VROM). - VDI. (2010) VDI Heat Atlas. Springer Berlin Heidelberg.
- Wayne, F.D. (1991) ‘An economical formula for calculating atmospheric infrared transmissivities’, Journal of Loss Prevention in the Process Industries, 4(2), pp. 86–92. Available at: 10.1016/0950-4230(91)80012-J
- Yüceil, K.B. and Ötügen, M.V. (2002) ‘Scaling parameters for underexpanded supersonic jets’, Physics of Fluids, 14(12), pp. 4206–4215. Available at: 10.1063/1.1513796
Language: English
Page range: 39 - 50
Submitted on: Jul 25, 2025
Accepted on: Jan 29, 2026
Published on: Feb 13, 2026
Published by: KIT Scientific Publishing
In partnership with: Paradigm Publishing Services
© 2026 Christopher Bernardy, Abdel Karim Habib, Philipp Maximilian zur Nedden, Jakob Georg Raimund von Saldern, Jan Paul Beuth, Alessandro Orchini, published by KIT Scientific Publishing
This work is licensed under the Creative Commons Attribution 4.0 License.