Page 680 - Dust Explosions in the Process Industries
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Research and Development  647

                 Detonations.” Proceedings  of  the Fifth International  Colloquium on Dust Explosions, Pultusk,
                 Poland, pp. 365-381.
                Alexiou, A., G. E. Andrews, and H. Phylaktou. (1996) “Side-Vented Gas Explosions in Long Vessels:
                 The Effect of Vent Position.” Journal ofLoss Prevention in the Process Industry 9, pp. 351-356.
               Alfert, F. (1993) “PC-Vent: A Software Solution to Control Explosion Hazards.” European Summer
                 School on Dust Explosion Hazards: Their Assessment and Control, Cambridge, UK, organized by
                 IBC Technical Services Ltd. in association with BMHB and ELG.
                Alfert, F. (March 1996) “Cost Comparison of Dust Explosion Protection TechniquesAvailable on the
                 Market.” Proceedings  of  the Second  World Seminar on the Explosion Phenomenon and on the
                 Application of Explosion Protection Techniques in Practice, Ghent, Belgium. Kontich, Belgium:
                 Published by EuropEx.
                Alfert, F., and K. Fuhre. (1992) “Venting of Dust Explosions in Filters and Integrated Systems.”Report
                 92-A.25021.  Fantoft, Norway: Chr. Michelsen Institute, Department of Science and Technology.
                Alfert,  F.,  and  H.  P.  Pistauer.  (March  2001)  “Brandbekampfung  in  einem  Gross-silo  fur
                 Zuckerrubenschnitzel-Erfahmngen  mit einem neuen Loschkonzept.” VDI Conference on Safe
                 Handling of Combustible Dusts, Niirnberg, Germany.
                Amyotte, P. R., and F. I. Khan. (October 2002) “An Inherent Safety Framework for Dust Explosion
                 Prevention  and Mitigation.”  Proceedings  of  the Fourth International  Symposium on Hazards,
                 Prevention  and Mitigation of  Industrial Explosions, Bourges, France, ed. I. Sochet. Journal of
                 Physics N France 12, pp. 189-196.
                Amyotte, P. R., K.J. Mintz, and M. J. Pegg. (1995) “Effect of Rock Dust Particle Size on Suppression
                 of  Coal Dust Explosions.” Transactions of  the Institution of Chemical Engineers 73, Part B,
                 pp. 89-100.
               Amyotte, P. R., and A. M. Oehen. (2002) “Application of a Loss Causation Model to the Westray
                 Mine Explosion.” Transactions of  the Institution of Chemical Engineers 80 Part B, pp. 55-59.
                Amyotte, P. R., R. Soundararajan, and M. J. Pegg. (2003) “An Investigation of Iron Sulphide Dust
                 Minimum Ignition Temperatures.” Journal of  Hazardous Materials A97, pp. 1-9.
                Anderson, M. K., R. T. Sleight, and J. T.Torero. (2000) “Ignition Signatures of a Downward Smolder
                 Reaction.” Experimental Thermal and Fluid Science 21, pp. 33-40.
                Arisoy.,A., and F. Akgiin. (2000) “Effect of Pile Height on Spontaneous Heating of Coal Stock Piles.”
                 Combustion Science and Technology 153,pp. 157-168.
                hour-Chelu, D. I., S. R. Woodbead, and R. N. Barnes. (1998) “The Electrostatic Charging Trends
                 and Signal Frequency Analysis of  a Particulate Material during Pneumatic Transport.” Powder
                 Technology 96, pp. 181-189.
                Arnold[,A., F. Hauert, A. Vogl, et al. (2001) “Explosionsdmckentlastung von Behaltern und Silos bei
                 tangentialer pneumatischer Befiillung.” Report F-05-9902. Mannheim, Germany: Forschungsgesellshaft
                 fiir angewandte Systemsicherheit und Arbeitsmedizin.
               ASTM. (2001) “Annual Book of ASTM Standards.Volume 14.02: General Methods” (revised annually).
                 West Conshohocken, PA: American Society for Testing and Materials.
               Austin, P. J., F.  Girodroux, Y. C. Li, et al. (April  1993) “Recent Progress in the  Study of  Dust
                 Combustion Phenomena at the University of  Michigan.” Proceedings of  the Fifth International
                 Colloquium on Dust Explosions, Pultusk, Poland, pp. 211-214.
               Backreedy, R. I., R. Habib, J. M. Jones, et al. (1999) “An Extended Coal Combustion Model.” Fuel
                 78, pp. 1745-1754.
               Bakke, J. R., and K. van Wingerden. (1992) “Guidancefor Designing OffshoreModules Evolving from
                 Gas Explosion Research.” SPE 24617. Richardson,  TX: Society of Petroleum Engineers, pp. 763-770.
               Bartenev, A. M., B. E. Gelfand, and S. M. Frolov. (April 1993) “The Rupture of Vessels Containing
                 Explosive Mixtures.” Proceedings of the Fifth InternationalColloquium on Dust Explosions,Pultusk,
                 Poland, pp. 465-472.
               Bartenev, A. M., S. P. Medvedev, A. N. Polenov, et al. (AugusVSeptember 1994) “The Effect of Dust
                 Filler ‘onthe Rupture of High Pressure Vessels.” Proceedings of the Sixth International Colloquium
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