The article presents a brief review of models for the numerical simulation of solid fuel combustion processes. The options of the combustion process description of ammonium perchlorate and polybutadiene with hydroxyl end groups with application of ideal mixing reactor and at numerical modeling in the combustion chamber of the rocket engine with joint solution of the gas dynamics equations are thrashed out. The article presents the results of the numerical analysis of mixed solid fuels combustion as a part of a hypothetical engine. A supposition for numerical modeling of the mixed solid rocket fuel combustion in the axisymmetric setting was substantiated. The Damkeler number distribution in the combustion chamber volume was demonstrated.
Alemasov V.E., Dregalin A.F., Tishin A.P., Hudjakov V.A. Termodinamicheskie i teplofizicheskie svojstva produktov sgoranija. Spravochnik. Vol. 1. Metody rascheta [Thermodynamic and thermophysical properties of combustion products: a handbook. Volume 1. Calculation methods]. Ed. by V.P. Glushko. Moscow, VINITI AN SSSR, 1971. 266 p. (In Russ.).
Shishkov A.A., Panin S.D., Rumjancev B.V. Rabochie processy v raketnyh dvigateljah tverdogo topliva: spravochnik [Working Processes in Solid Propellant Rocket Engines: Handbook]. Moscow, Mashinostroenie, 1988. 240 p. (In Russ.).
Gordon S., McBride B.J. Computer program for calculation of complex chemical equilibrium composition, rocket performance, incident and reflector shock and Chapman-Jouguet detonations. NASA report SP, 1971.
Warnats J., Maas U., Dibble R.W. Combustion. Physical and chemical fundamentals, modeling and simulation, experiments, pollutant formation. New York, Springer, 2001. 378 p.
Gardiner W., Dixon-Lewis G., Zelner R. et al. Combustion chemistry. New York, Springer-Verlag, 1984, 509 p.
Beckstead M.W., Puduppakkam K., Thakre P., Yang V. Modeling of combustion and ignition of solid-propellant ingredients. Progress in Energy and Combustion Science, 2007, vol. 33, no. 6, pp. 497–551. DOI:10.1016/j.pecs.2007.02.003
Jeppson M.B., Becksted M.W., Jing Q. A kinetic model for the premixed combustion of a fine AP/HTPB composite propellant. 36th Aerospace Sciences Meeting & Exhibit, AIAA-98-0447, 1998. DOI:10.2514/6.1998-447
Jackson T.L., Buckmaster J. Heterogeneous propellant combustion. AIAA Journal, 2002, vol. 40, no. 6, pp. 1122–1130. DOI:10.2514/2.1761
Thakre P., Duan Y., Yang V. Modeling of ammonium dinitramide (AND) monopropellant combustion with coupled condensed and gas phase kinetics. Combustion and Flame, 2014, vol. 161, no. 1, pp. 347–362. DOI:10.1016/j.combustflame.2013.08.006
Beckstead M.W., Derr R.L. Price C.F. A model of composite solid propellant combustion based on multiple flames. AIAA Journal, 1970, vol. 8, no. 4, pp. 2200–2207. DOI:10.2514/3.6087
Guirao C., Williams F.A. A model for ammonium perchlorate deflagration between 20 and 100 atm. AIAA Journal, 1971, vol. 9, no. 7, pp. 1345–1356. DOI:10.2514/3.6355
Thakre P., Yang P. Chemical erosion of refractory-metal nozzle insert in solid-propellant rocket motors. Journal of Propulsion and Power, 2009, vol. 25, no. 1, pp. 40–50. DOI:10.2514/6.2008-1030
Behrens R., Minier L. Thermal decomposition behavior of ammonium perchlorate and of a ammonium-perchlorate-based composite propellant. 33th JANAF Combustion Meeting, 1996, CPIA #653, pp. 1–19. DOI: 10.2172/653952
Surzhikov S.T., Kraer Kh. Vychislitel’nye modeli goreniya nemetallizirovannogo geterogennogo raketnogo topliva [Computational models of nonmetallized heterogeneous rocket fuel combustion]. High Temperature Thermophysics, 2003, vol. 41, no. 1, pp. 106–142. (In Russ.).
Sorokin V.A., Kozlov V.A., Sharov M.S. Raketno-prjamotochnye dvigateli na tverdyh i pastoobraznyh toplivah. Osnovy proektirovanija i jeksperimental’noj otrabotki [Solid and paste propellant rocket engines. Basics of design and experimental development]. Moscow, FIZMATLIT, 2010, 320 p. (In Russ.).
Davidson J.E. Combustion modeling of RDX, HMX, and GAP with detailed kinetics: Ph. D. Dissertation, Department of Chemical Engineering, Brigham Young University, Provo, UT, 1997, 173 p.
Hightower J.D., Price E.W. Combustion of ammonium perchlorate. Symposium (International) on Combustion, 1967, vol. 11, no. 1, pp. 463–472. DOI:10.1016/S0082-0784(67)80171-1
Korobeinichev O.P., Chernov A.A., Emel’yanov I.D., Ermolin N.E., Trofimycheva T.V. Issledovanie kinetiki i mekhanizma khimicheskikh reaktsii v plameni smesevogo sostava na osnove ammonium perchlorate i polibutadienovogo kauchuka [Investigation of the kinetics and the chemical reaction mechanism in the flame of a mixed compound, based on ammonium perchlorate and polybutadiene rubber]. The Physics of Combustion and Explosion, 1990, no. 4, pp. 46–55. (In Russ.)
Korobeinichev O.P., Ermolin N.E., Chernov A.A., Emel’yanov I.D. Struktura plameni, kinetika i mekhanizm khimicheskikh reaktsii v plameni smesevogo sostava na osnove perkhlorata ammoniya i polibutadienovogo kauchuka [Flame structure, kinetics and mechanism of chemical reactions in flames of mixed composition based on ammonium perchlorate and polybutadiene rubber]. The Physics of Combustion and Explosion, 1992, no. 4, pp. 53–59. (In Russ.)
Ermolin N.E. Model’ kinetiki khimicheskikh reaktsii v plamenakh khlornoi kisloty s ammiakom [Model for chemical reaction kinetics in perchloric acid-ammonia flames]. The Physics of Combustion and Explosion, 1995, no. 5, pp. 58–69. (In Russ.)
Gross M.L. Two-dimensional modeling of AP/HTPB utilizing a vorticity formulation and one-dimensoinal modeling of AP and AND: Ph. D. Dissertation, Department of Chemical Engineering, Brigham Young University, Provo, UT, 2007, 244 p.
Frolov Yu.V., Zenin A.A., Yakoviev V.P. Gorenie perkhlorata ammoniya v sloevoi sisteme [Combustion of ammonium perchlorate in layered systems]. The Physics of Combustion and Explosion, 1969, no. 4, pp. 544–549. (In Russ.)
Powling J., Smith W.A.W. The surface temperature of burning ammonium perchlorate. Combustion and Flame, 1963, vol. 7, no. 1, pp. 269–275. DOI: 10.1016/0010-2180(63)90192-5
Selzer H. The temperature profile beneath the burning surface of a composite ammonium perchlorate propellant. Symposium (International) on Combustion, 1967, vol. 11, no. 1, pp. 439–446. DOI: 10.1016/s0082-0784(67)80168-1
Beck W.H. Pyrolysis studies of polymeric materials used as binder in composite propellants: a review. Combustion and Flame, 1987, vol. 70, no. 2, pp. 171–190. DOI: 10.1016/0010-2180(87)90077-0
Bouck L., Baer A., Rayn N. Pyrolysis and oxidation of polymers at high heating rates. Symposium (International) on Combustion, 1973, vol. 14, no. 1, pp. 1165–1176. DOI: 10.1016/S0082-0784(73)80105-5
Ninan K.N., Krishnan K. Thermal decomposition kinetics of polybutadiene. Journal of Spacecraft and Rocket, 1982, vol. 19, no. 1, pp. 92–94. DOI: 10.2514/3.62213
Gran I.R., Magnussen B.F. A numerical study of a bluff-body stabilized diffusion flame. Part 2. Influence of combustion modeling and finite-rate chemistry. Combustion Science and Technology, 1996, vol. 119, no. 3, pp. 191–217. DOI: 10.1080/00102209608951999
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