310
Views
64
CrossRef citations to date
0
Altmetric
Original Articles

An Eigenvalue Method for Computing the Burning Rates of RDX Propellants

, &
Pages 35-82 | Received 05 Sep 1995, Accepted 06 Nov 1996, Published online: 27 Apr 2007

REFERENCES

  • Atwood , A. , Price , C , Curran , P. and Wiknich . J. ( 1995 ) Laboratory Ignition and Combustion Data and the Determination of Global Kinetics and Energetic Parameters of RDX , Proceedings of the Thirty-Second JANNAF Combustion Meeting.
  • Batten , J. J. ( 1971 ) The Thermal Decomposition of RDX at Temperatures Below the Melting Point: Elucidation of the Mechanism , Australian Journal of Chemistry , 24 , 945 .
  • Batten , J. J. and Murdie , D. C. ( 1970 ) The Thermal Decomposition of RDX at Temeratures Below the Melting Point , Australian Journal of Chemistry , 23 , 737 .
  • Beckstead , M. W , Derr , R. L. and Price , C. F. ( 1970 ) A Model of Composite Solid-Propellant Combustion Based on Multiple Flames. AIAA Journal , 8 , 2200 .
  • Behrens , Jr., R. and Bulusu , S. ( 1992 ) Thermal Decomposition of Energetic Materials 3. Temporal Behaviors of the Rates of Formation of the Gaseous Pyrolysis Products of Condensed Phase Decomposition of 1, 3, 5-Trinitrohexahydro-s-triazine , J. Phys. Chem. , 96 , 8877 .
  • Behrens , Jr., R. and Bulusu , S. ( 1992 ) Thermal Decomposition of Energetic Materials 4. Deuteriom Isotope Effects and Isotopic Scrambling (H/D, 13C/180, 14N/15N) in Condensed-Phase Decomposition of 1, 3, 5-Trinitrohexahydro-s-lriazine , J. Phys. Chem. , 96 , 8891 .
  • Behrens , Jr., R. , Land , T. A. and Bulusu , S. ( 1993 ) Thermal Decomposition Mechanisms of 1-Nitroso-3, 5-Dinitro-s-Triazine(ONDNTA) , Proceedings of the Thirteeth JANNAF Combustion Meeting. ,
  • Ben-Reuven , M. , Caveny , L. H. , Vichnevetsky , R. and Summerfield , M. ( 1976 ) Flame Zone and Subsurface Reaction Model for Deflagrating RDX, Proceedings of the Sixteenth Symposium (International) on Combustion , The Combustion Institute.
  • Bcn-Reuven , M. and Caveny , L. H. ( 1981 ) Nitramine Flame Chemistry and Deflagration Interpreted in Terms of a Flame Model , AIAA. J. , 19 ( 10 ), 1276 .
  • Blomshield , F. S. ( 1989 ) Nitramine Composite Solid Propellant Modelling , NWC TP 6992 .
  • Boggs , T. L. ( 1984 ) The Thermal Behavior of Cyclotrimethylenetrinilramine(RDX) and Cyclo-tetramethylente tranitramine (HMX), In Kuo , K. K. and Summerfield , M. (Ed.) Progress in Astronautics and Aeronautics: Fundamentals of Solid-Propellant Combustion , AIAA. Inc. ,: New York , 90 , 121 .
  • Brill , T. B. , Brush , P. J , Patil , D. G. and Chen , J. K. ( 1992 ) Chemical Pathways at the Burning Surface, Proceedings of the Twenty-Fourth Symposium (International) on Combustion , The Combustion Institute.
  • Brill , T. B. and Brush , P. J. ( 1992 ) Condensed Phase Chemistry of Explosives and Propellants at High Temperature: HMX, RDX and BAMO , Phil. Trans. Royal Soc. of London A , 339 , 377 .
  • Brill , T. B. ( 1992 ) Connecting the Chemical Composition of a Material to its Combustion Characteristics , Prog. Energy Combustion Sci , 18 , 91 .
  • Brill , T. B. ( 1995 ) “ Multiphase Chemistry Considerations at the Surface of Burning Nitramine Monopropellants ,” Journal of Propulsion and Power , 11 , 740 .
  • Chang , A. Y. and Hanson , R. K. ( 1989 ) J. Quant. Spectrosc. Radiat. Transfer , 42 , 207 .
  • Cosgrove , J. D. and Owen , A.J. ( 1974 ) The Thermal Decomposition of 1, 3, 5 Trinit-rohexahydro-1, 3, 5 triazine (RDX) Part I: The Products and Physical Parameters , Combustion and Flame , 22 , 13 .
  • Cosgrove , J. D. and Owen , A. J. ( 1974 ) The Thermal Decomposition of 1, 3, 5 Trinit-rohexahydro-1,3,5 triazine (RDX) Part II The Effects of the Products , Combustion and Flame , 22 , 19 .
  • Ermolin , N. E. , Korobeinichev , O. P. , Kuibida , L. V. and Fomin , V. M. (1986) Study of the Kinetics and Mechanism of Chemical Reactions in Hexogen Flames, Fizika Goreniya i Vzryva , 22. 54.
  • Ermolin , N. E. , Korobeinichey , O. P. , Kuibida , L. V. and Fomin , V. M. ( 1988 ) Processes in Hexogene Flames , Fizika Goreniya i Vzryva , 24 , 21 .
  • Ermolin , N. E. , Korobeinichev , O. P. , Kuibida , L. V. and Fomin , V. M. ( 1989 ) Flame Structure , Combustion Explosion and Shock Waves , 24 , 400 .
  • Fetherolf , B. L. and Lilzinger , T. A. ( 1993 ) Chemical Structure of the Gas-Phase Above Deflagrating RDX: Comparison of Experimental Measurements and Model Predictions , Proceedings of the Thirteeth JANNAF Combustion Meeting.
  • Fifer , R. A. ( 1984 ) Chemistry of Nitrate Ester and Nitramine Propellants , Kuo , K. K. and Summerfield , M. (Ed.) Progress in Astronautics and Aeronautics: Fundamentals of Solid-Propellant Combustion , AIAA, 90 , 177 .
  • Giovangigli , V. and Darabiha , N. ( 1987 ) Vector computers and complex chemistry combustion, Proceedings of the Conference on Mathematical Modeling in Combustion , Lyon , France , NATO ASI Series.
  • Giovangigli , V. and Smooke , M. D. ( 1992 ) Application of Continuation Methods to Plane Premixed Laminar Flames , Combustion Science and Technology , 87 , 241 .
  • Glaskova , A. P. ( 1974 ) The Effect of Catalysts on the Combustion of Explosives , Fizika Goreniya i Vzryva , 10 . 323 .
  • Glaskova , A. P. ( 1974 ) The Effect of Catalysts on the Combustion of Explosives , Fizika Goreniya i Vzryva , 10 , 323 .
  • Glassman , I. and Sawyer , R. F. ( 1970 ) The Performance of Chemical Propellants , Circa Publication, Inc., New York .
  • Hatch , R. L. ( 1987 ) Chemical Kinetics Modeling of HMX Combustion , Proceedings of the Twenty-Fourth JANNAF Combustion Meeting.
  • Hanson-Parr , D. and Parr , T. ( 1993 ) RDX Flame Structure and Chemistry , Proceedings of the Thirteeth JANNAF Combustion Meeting.
  • Hanson-Parr , D. and Parr , T. ( 1994 ) RDX Flame Structure, Proceedings of the Twenty-Fifth Symposium (International) on Combustion , The Combustion Institute.
  • Hanson-Parr , D. and Parr , T. ( 1995 ) Private Communication. ,
  • Hermance , C. E. ( 1966 ) A Model of Composite Propellant Combustion Including Surface Heterogeneity and Heat Generation , AIAA Journal , 4 , 1629 .
  • Kee , R. J. , Miller , J. A. and Jefferson , T. H. ( 1980 ) CHEMKIN: A genera purpose, Transportable, Fortran Chemical Kinetics Code Package , Sandia National Laboratories Report, SAND80--8003.
  • Korobeinichev , O. P. , Kuibida , L. V. , Orlov , V. N. , Tereschenko , A. G. , Kutsenogii , K. P. , Mavliev , R. A. , Ermolin , N. E. , Fomin , V. M. and Emel'yanov , I. D. ( 1985 ) Mass Spectrometric Probe Study of the Flame Structure and Kinetics of Chemical Reactions in Flames, Mass-Spektrom. Khim. Kinet. , 73 .
  • Kubota , N. ( 1984 ) Survey of Rocket Propellants and Their Combustion Characteristics, In Kuo , K. K. and Summerfield , M. (Ed.), Progress in Astronautics and Aeronautics: Fundamentals of Solid-Propellant Combustion , AIAA, Inc., New York , 90 ( 1 )
  • Kuo , K. K. ( 1986 ) Fundamentals of Combustion , Wiley, NY .
  • Li , S. C. Williams , F. A. and Margolis , S. B. ( 1990 ) Effects of Two-Phase Flow in a Model for Nitramine Deflagration , Combustion and Flame , 80 , 329 .
  • Lin , C. Y. , Wang , H. T. , Lin , M. C. and Melius , C. F. ( 1990 ) A Shock Tube Study of the CH2O + NO2 Reaction at High Temperatures , International Journal of Chemical Kinetics , 22 , 455 .
  • Melius , C. F. ( 1987 ) Theoretical Studies of the Chemical Reactions Involved in the Ignition of Nitramines , Proceedings of the Twenty-Fourth JANNAF Combustion Meeting.
  • Melius , C. F. ( 1988 ) The Gas-Phase Chemistry of Nitramine Combustion , Proceedings of the Twenty-Fifth JANNAF Combustion Meeting.
  • Melius , C. F. ( 1990 ) Thermochemical Modeling: 1. Application to Decomposition of Energetic Materials, In Bulusu , S. N. (Ed.), Chemistry and Physics of Energetic Materials , Kluwer Academic Publishers, The Netherlands , 21 .
  • Melius , C. F. ( 1990 ) Thermochemical Modeling: II. Application to Ignition and Combustion or Energetic Materials, In Bulusu , S. N. (Ed.), Chemistry and Physics of Energetic Materials , Kluwer Academic Publishers, The Netherlands . 51 .
  • Mitani , T. and Williams , F. A. ( 1988 ) A Model for the Deflagration of Nitramines, Proceedings of the Twenty-First Symposium (International) on Combustion , The Combustion Institute.
  • Oyumi , Y. and Brill , T, B. ( 1985 ) Thermal Decomposition of Energetic Materials 3. A High-Rate , In-Situ, FTIR Study of the Thermolysis of RDX and HMX with Pressure and Heating Rate as Variables, Combustion and Flame , 62 , 213 .
  • Price , C. F. , Boggs , T. L. and Derr , R. L. ( 1979 ) The steady state combustion behavior of ammonium perchlorate and HMX , A1AA Paper 79--0164. .
  • Rogers , R. N. and Smith , L. C. ( 1967 ) Estimation of Preexponential Factor from Thermal Decomposition Curve of an Unweighed Sample , Analytical Chemistry , 39 , 1024 .
  • Smooke , M. D. ( 1982 ) Solution of Burner-Stabilized Premixed Laminar Flames by Boundary Value Methods , Journal of Computational Physics , 48 , 72 .
  • Smooke , M. D. ( 1983 ) Error Estimates for the Modified Newton Method with Applications to the Solution of Nonlinear, Two-Point Boundary-Value Problems , Journal of Optimization Theory and Applications , 39 , 489 .
  • Summerfield , M. ( 1959 ) The Liquid Propellant Rocket Engine , Princeton Univ. press, Princeton , NJ ,
  • Summerfield , M. , Sutherland , G. , Webb , M. , Taback , H. and Hall , K. P. ( 1960 ) Burning Mechanism of Ammonium Perchlorate Propellants, In Summerfield, M. (Ed.), ARS Progress in Astronautics and Rocketry : Solid Propellant Rocket Research , Academic Press Inc., New York , 1 , 141 .
  • Sutton , G. P. ( 1986 ) Rocket Propulsion Elements: An Introduction to the Engineering of Rockets , Fifth Edition John Wiley & Sons. New York , 262 .
  • Thaxton , A. G. , Diau , E. X. G. , Lin , M. C , Lin . C. Y. and Melius , C. F. ( 1994 ) Thermal Oxidation of HCN by NO2 at High Temperatures , International Journal of Chemical Kinetics , submitted.
  • Thynell , S. T. , Gongwer , P. E. and Brill , T. B. ( 1995 ) Modelling of Thermal Response of Filament used in T-Jump Experiment , submitted.
  • Tsang , W. ( 1992 ) Chemical Kinetic Data Base for Propellant Combustion II. Reactions Involving CN, NCO and HNCO , J. Phys. Chem. Ref. Data , 21 , 753 .
  • Tsang , W. and Herron . J. T. ( 1991 ) Chemical Kinetic Data Base for Propellant Combustion: I Reactions involving NO, NO2. HNO, HONO, HCN and N2O , J. Phys. Chem. Ref. Data , 20 , 609 .
  • Williams , F. A. ( 1985 ) Combustion Theory , Addison-Wesley Publishing Co., Inc., New York .
  • Zenin , A. A. ( 1966 ) Structure of Temperature Distribution in Steady State Burning of a Ballistic Powder, Combustion, Explosion and Shock Waves , 2 , 67 .
  • Zenin , A. A. and Novozhilov , B. V. ( 1973 ) Single Value Dependence of the Surface Temperature of Ballistite on the Burning Rate , Combustion Explosion and Shock Waves , 9 , 246 .
  • Zenin . A. ( 1995 ) Journal of Propulsion and Power , II , 752 .
  • Zhao , X. , Hintsa , E. J. and Lee , Y. T. ( 1988 ) Infrared Multiphoton Dissociation of RDX in a Molecular Beam , J. Chem. Phys. , 88 , 801 .
  • Zimmer-Galler , R. ( 1968 ) Correlations between Deflagration Characteristics and Surface Properties of Nitramine-Based Propellants , AIAA Journal , 6 , 2107 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.