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[ Pobierz caÅ‚ość w formacie PDF ] Eisenreich, and W. Eckl, "!Burning Phenomena of the Flux from Dynamic Flame Structures in Pool Fires+", 9th Doublebase Gun Propellant JA2+", Propellants, Explosives, International Symposium on Transport Phenomena in Ther- Pyrotechnics 25, 143 ± 148 (2000). mal-Fluids Engineering (ISTP-9), Singapore, June 25 ± 28, (16) M. Herrmann, W. Engel, N. Eisenreich, "!Thermal Expansion, 1996, pp. 274 ± 279. Transitions, Sensitivities and Burning Rates of HMX+", (36) A. Pfeil, N. Eisenreich, H. H. Krause, "!Analysis of Inter- Propellants, Explosives, Pyrotechnics 17, 190 ± 195 (1992). mediate and Final Products of an Explosive Reaction+", (17) B. N. Kondrikov, "!Theory of Hydrodynamic Burning Insta- Journal de Physique C4 No. 9, 209 ± 221 (1987). bility of Granular Porous Energetic Materials+", 28th Int. (37) H. H. Krause, N. Eisenreich, and A. Pfeil, "!High Rate Annual Conference of ICT, Karlsruhe, Germany, June 24 ± 27, Decomposition of Cyclotrimethylenetrinitramine (RDX)+", 1997, pp. 13/1 ± 12. Propellants, Explosives, Pyrotechnics 17, 179 ± 181 (1992). (18) D. A. Schult, B. J. Matkowsky, V. A. Volpert, and A. C. (38) W. Eckl, N. Eisenreich, "!Determination of the Temperature Fernandez-Pello, "!Forced Forward Smolder Combustion+", in a Solid Propellant Flame by Analysis of Emission Comb. Flame 104, 2 (1996). Spectra+", Propellants, Explosives, Pyrotechnics 17, 202 ± 206 (19) N. Ishchenko, Yu. P. Khomenko, "!Effect of Force Interphase (1992). Interaction on the Characteristics of Convective Combustion (39) W. Eckl, V. Weiser, G. Langer, and N. Eisenreich, "!Burning of Porous Media+", Combustion, Explosion and Shockwaves Behaviour of Nitramine Model Formulations+", Propellants, 93, 448 (1997). Explosives, Pyrotechnics 22, 148 ± 151 (1997). (20) N. Eisenreich, "!A Photographic Study of the Combustion (40) V. E. Zarko, L. K. Gusachenko, A. D. Rychkov, "!Simulation Zones of Burning Double Base Propellant Strands+", Propel- of Combustion of Melting Energetic Materials+", Defence lants and Explosives 3, 141 ± 146 (1978). Science Journal 46, 425 ± 433 (1996). (21) N. Kubota, T. J. Ohlemiller, L. H. Caveny, and M. Summer- (41) L. K. Gusachenko, V. E. Zarko, A. D. Rychkov, "!Instability field, "!Site and Mode of Action of Platonizers in Double of a Combustion Model with Evaporation on a Surface and Base Propellants+" AIAA J. 12, 1709 ± 1714 (1974). Overheat in the Condensed Phase+", Combustion, Explosion (22) T. S. Fischer , W. KoppenhÆfer, G. Langer, and M. Weindel, and Shock Waves 33, 320 (1997). "!Modellierung von Abbrandph0 nomenen bei porÆsen La- Propellants, Explosives, Pyrotechnics 27, 142 ± 149 (2002) Burn Rate Models for Gun Propellants 149 (42) V. M. Raikova. "!Limit Conditions of Combustion and Deto- sity of Chemical Technology, Moscow, private communica- nation of Nitroesters and Mixtures on their Base+". Ph. D. tion, 1998. Thesis., Mendeleev Institute of Chemical Technology, Mos- (44) A. Koleczko, W. Ehrhardt, S. Kelzenberg, and N. Eisenreich, cow (1977) "!Plasma Ignition and Combustion,+" Propellants, Explosives, (43) B. N. Kondrikov, V. M. Raikova, E. M. Sviridov, T. T. Sidor- Pyrotechnics 26, 75 ± 83 (2001). ova, Data of Combustion Laboratory of Mendeleev, Univer- Nomenclature T1 initial temperature T temperature Q(x , t) heat flux from an external source E activation energy Q0 heat flux at burning surface A pre-exponential factor qi heat from conversion of species ci r linear burning rate xi, j,k radii of burning hot spots in porous propellants P temperature sensitivity l heat conductivity p pressure r density a factor cp specific heat n pressure exponent ci concentration of species i I radiation intensity vhs velocity of hot gases in a porous solid b absorbance kd drag coefficient of the porous solid to gas L heat of phase transition penetration TL temperature of phase transition Tp temperature of solid phase pyrolysis (Received April 4, 2002; Ms 2002/019) [ Pobierz caÅ‚ość w formacie PDF ] |
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