Page 410 - Dust Explosions in the Process Industries
P. 410
Propagation of Flames in Dust Clouds 379
Howard, J. E.. and R. H. Essenhigh. (1965) “The Mechanism of Ignition of Pulverized Coal.”
Combustion and Flame 9, pp. 337-344.
Howard, J. E., and R. H. Essenhigh. (1966) “Combustion Mechanism in Pulverized Coal Flames.”
Combustion and Flame 10, pp. 92-93.
Howard, 4. B., and R. H. Essenhigh. (1967) “Pyrolysis of Coal Particles in Pulverized Fuel Flames:
Industrial and Engineering Chemistry.” Process Design and Development 6, pp. 74-84.
International Standards Organization. (1985) “Explosion Protection Systems. PartI. Determination of
Explosion Indices of Combustible Dusts in Air.” IS0 6184/1. Geneva: ISO.
Ishihama, W. (1961, October) “Studies on the Critical Explosion Density of Coal Dust Clouds.”
Proceedings of the 11th International Conference of Directors of Safety in Mines Research,
Warsaw.
Ishihama,W., H. Enomoto, and Y. Sekimoto. (1982) “Upper Explosion Limits of Coal Dust/Methane/Air
Mixtures” (in Japanese). Journal of the Association of the Japanese Mining Industry, pp. 13-17.
Ishii, R. (1983) “Shock Waves in Gas-Particle Mixtures.” [Kyoto University] FaculQ of Engineering
Memoirs 45, pp. 1-16.
Jacobson, M., A. R. Cooper, and J. Nagy. (1964) “Explosibility of Metal Powders.” Report Inv. 6516.
Washington, DC: U.S. Bureau of Mines.
Jaeckel, 6.(1924) “Die Staubexplosionen.” Zeitschrijtfur technische Physik, pp. 67-78.
Jarosinski, J. (1984) “The Thickness of Laminar Flames.” Combustion and Flame 56, pp. 337-342.
Jarosinski, 1.. J. €I.S. Lee, R. Knystautas, et al. (1987) “Quenching Distance of Self-propagating
Dusti’Air Flames.” Archivum Combustionis 7, pp. 267-278.
Johnson, G. R., P. Murdoch, and A. Williams. (1988) “A Study of the Mechanism of the Rapid Pyrolysis
of Single Particles of Coal.” Fuel 67, pp. 834-842.
Jones, ‘W.P., and B. E. Launder. (1972) “The Prediction of Laminarization with a Two-Equation
Model of Turbulence.” International Journal of Heat Mass Transfer 15, pp. 301-314.
Jones. ‘W.P., and B. E. Launder. (1973) “The Calculation of Low-Reynolds-Number Phenomena
with a Two-Equation Model of Turbulence.” International Journal of Heat Mass Transfer 16.
pp. 1119-1130.
Jouguet, M. (1905) “Sur la propagation des reactions chimiques dans les gaz. Chapitre I et 11.”Journal
de Mathematiques pures et appliquh, series 61, 1, pp. 347425.
Jouguet, Pvl. (1906) “Sur la propagation des reactions chimiques dans les gaz. Chapitre 111.” Journal
de Mathematiquespures et appliquh, series 61, 2, pp. 5-86.
Kaesche-Krischer. B. (1959) “Untersuchungen an vorgemischten, laminar StaubLuft-Flammen.”
Staub 19, pp. 200-203.
Kaesche-Krischer, B., and J. Zehr. (19%) “Untersuchungen an StaubLuft-Flammen.” Zeifschriftfur
Physikalisclze Chemie, new series, 14, nos. 516.
Kauffman, C. W., E. Ural, J. A. Nichols, et al. (1982, November) “Detonation Waves in Confined Dust
Clouds.” Proceedings of the Third International School of Explosibility of Dusts, Turawa, Poland.
Kauffman, C. W., S. R. Srinath, E I. Tezok, et al. (1984a) “Turbulent and Accelerating Dust Flames.”
Proceedings of the 20th Symposium (International) on Combustion, the Combustion Institute,
pp. 1701-1708.
Kauffman, C. W., P. Wolanski. A. Arisoy, et al. (1984b) “Dust, Hybrid and Dusty Detonations.” AIAA
Progress in Astronautics and Aeronautics 94, pp. 221-240.
Kawakami, T., S. Okajima, and K. Tinuma. (1988) “Measurement of Slow Burning Velocity by Zero-
Gravity Method.” Proceedings of the 22nd Symposium (International) on Combustion, the
Combustion Institute, pp. 1609-1613.
Khaikiri, B. I., V. N. Bloshenko, and A. G. Merzhanov. (1970) Fiziku Goreniya i VzYyva 5, no. 4.
Kjaldman, L. (1987) “Numerical Simulation of Peat Dust Explosions.” Research Report No. 469. Espoo:
Technical Research Centre of Finland. (English translation in Combustion, Explosion, and Shock
Waves (1970), published by Plenum Publishing Corporation, New York.)
Kjddman, L. (1989,AugusUSeptember) “Modelling of peat dust combustion.” Proceedings of the Third
International PHOENICS User Conference, Dubrovnik.