Download e-book for kindle: Dynamics of deflagrations and reactive systems : technical by A L Kuhl; International Colloquium on Dynamics of

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By A L Kuhl; International Colloquium on Dynamics of Explosions and Reactive Systems <12, 1989, Ann Arbor, Mich.>

ISBN-10: 0930403967

ISBN-13: 9780930403966

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Additional resources for Dynamics of deflagrations and reactive systems : technical papers presented from the Twelfth International Colloquium on Dynamics of Explosions and Reactive Systems, Ann Arbor, Michigan, July 1989

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The Mechanism of Transition from Combustion to Detonation in a Mixture of Coal Dust and Gaseous Oxygen," Recent Development in Shock Tube Research, 1973, pp. 821-828. , "Flame Propagation Due to Layered Combustion of Dust," Dynamics of Reactive Systems, Progress in Astronautics and Aeronautics, Volume 105, 1986, pp. 196-216. , "Detonation Structure in Organic Dust-Oxygen Mixtures," Archivum Combustionis, Volume 7, 1987, pp. 321-332. , "Gaseous Detonation Processes in the Presence of Inert Particles," Archivum Combustionis, Volume 7, 1987, pp.

According to reported results, the lowest required ignition energy for dust mixtures is less than a millijoule; however, many dust mixtures require significantly higher energy for ignition, especially for values of dust concentrations close to the explosion limits and for high turbulence levels. For this reason, igniters with a few kilo joules of energy are used in explosivity studies of many industrial dusts. Shock waves can also ignite a dust cloud. Shock waves may be generated in industrial accidents (such as from any physical explosion).

Because very small particles rapidly accelerate to the supersonic flow, the stagnation temperature at the particle front exists for an extremely short time. Larger particles accelerate more slowly, remaining exposed for a longer time to the higher stagnation temperature between the bow shock and the particle. However, the larger particles require more heat for ignition. 10 P. WOLAKlSKI BOW SHOCK Vs ACCELERATING PARTICLE INCIDENT , SHOCK Fig. 4 Schematic diagram of interaction between dust particle and the convective supersonic flow behind the incident shock wave.

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Dynamics of deflagrations and reactive systems : technical papers presented from the Twelfth International Colloquium on Dynamics of Explosions and Reactive Systems, Ann Arbor, Michigan, July 1989 by A L Kuhl; International Colloquium on Dynamics of Explosions and Reactive Systems <12, 1989, Ann Arbor, Mich.>


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