Wind-blown pool fire, Part II: Comparison of measured flame geometry with semi-empirical correlations

Author:

Lam Cecilia S.,Weckman Elizabeth J.

Funder

Natural Sciences and Engineering Research Council of Canada

Ontario Innovation Trust/Canada Foundation for Innovation

Publisher

Elsevier BV

Subject

General Physics and Astronomy,Safety, Risk, Reliability and Quality,General Materials Science,General Chemistry

Reference37 articles.

1. Thermal radiation hazards from hydrocarbon pool fires;Mudan;Prog. Energy Combust. Sci.,1984

2. J. Moorhouse, Scaling criteria for pool fires derived from large scale experiments, in: The Assessment of Major Hazards, The Institution of Chemical Engineers Symposium Series No. 71, 1982, pp. 165–179.

3. S. Atallah, P. Raj, Radiation from LNG fires, in: LNG Safety Program, Interim Report on Phase II Work, Project IS-3-1, American Gas Association, Batelle Columbus Laboratories, 1974.

4. Effects of thin-layer boilover on flame geometry and dynamics in large hydrocarbon pool fires;Ferrero;Fuel Process. Technol.,2007

5. T. Blanchat, P. Helmick, R. Jensen, A. Luketa, R. Deola, J. Suo-Anttila, J. Mercier, T. Miller, A. Ricks, R. Simpson, B. Demosthenous, S. Tieszen, M. Hightower, The Phoenix series large scale LNG pool fire experiments, Technical Report SAND2010-8676, Sandia National Laboratories, Albuquerque, NM, 2011.

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