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displaying 611 - 620 results in total 5659

  • Sriramulu, V.; Gupta, M. C.; Heitland, H.
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    Some Perculiarities of Flames Stabilized in Pulsating Streams.
    IIT, Madras, India; Volkswagen Werke, Wolfsburg, West Germany
    Combustion and Flame, Vol. 20, No. 1, 1-4, 1973

  • Peters, N.
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    Flame Calculations With Reduced Mechanisms: An Outline.
    Institut fur Technische Mechanik, Aachen, Fed. Rep. of Germany
    Reduced Kinetic Mechanisms for Applications in Combustion Systems. Lecture Notes in Physics. New Series m15: Monographs. Chapter 1, Springer-Verlag, Heidelberg, FRG, 1-14 p., 1993

  • Law, C. K.
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    Compilation of Experimental Data on Laminar Burning Velocities.
    Princeton Univ., NJ
    Reduced Kinetic Mechanisms for Applications in Combustion Systems. Lecture Notes in Physics. New Series m15: Monographs. Chapter 2, Springer-Verlag, Heidelberg, FRG, 15-26 p., 1993

  • Mauss, F.; Peters, N.
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    Reduced Kinetic Mechanisms for Premixed Methane-Air Flames.
    Institut fur Technische Mechanik, Aachen, West Germany
    Reduced Kinetic Mechanisms for Applications in Combustion Systems. Lecture Notes in Physics. New Series m15: Monographs. Chapter 5, Springer-Verlag, Heidelberg, FRG, 58-75 p., 1993

  • Chen, J. Y.; Liu, Y.; Rogg, B.
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    CO-H₂-N₂/Air Diffusion Flames: Thermal Radiation the Transient Effects.
    Sandia National Labs., Livermore, CA; University of Cambridge, England
    Reduced Kinetic Mechanisms for Applications in Combustion Systems. Lecture Notes in Physics. New Series m15: Monographs. Chapter 12, Springer-Verlag, Heidelberg, FRG, 196-223 p., 1993

  • Rogg,B.
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    RUN-1DL: The Cambridge Universal Laminar Flamelet Computer Code.
    University of Cambridge, England
    Reduced Kinetic Mechanisms for Applications in Combustion Systems. Lecture Notes in Physics. New Series m15: Monographs. Appendix C, Springer-Verlag, Heidelberg, FRG, 350-351 p., 1993

  • Sundstrom, B.; Grayson, S. J.; VanHees, P.
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    Short Communication: An Overview of the Findings of the Combustion Behavior of Upholstered Furniture Project.
    Swedish National Testing and Research Institute, Boras, Sweden; Interscience Communications Ltd., London, England
    Fire and Materials, Vol. 20, No. 4, 205-211, July/August 1996

  • Levchik, S. V.; Levchik, G. F.; Camino, G.; Costa, L.; Lesnikovich, A. I.
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    Mechanism of Action of Phosphorus-Based Flame Retardants in Nylon 6. Part 3. Ammonium Polyphosphate/Manganese Dioxide.
    Byelorussian Univ., Belarus; Chimica Fisica e Chimica dei Materiali dell'Universita, Torino, Italy
    Fire and Materials, Vol. 20, No. 4, 183-190, July/August 1996

  • Czerczak, S.; Stetkiewicz, J.
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    Toxicity Classification of Thermal Degradation Products of Chemical Materials Used in Construction.
    Nofer Institute of Occupational Medicine, Lodz, Poland
    Journal of Fire Sciences, Vol. 14, No. 5, 367-378, September/October 1996

  • Stoll, A. M.; Chianta, M. A.
    view article (3.681668)

    Thermal Analysis of Combustion of Fabric in Oxygen-Enriched Atmospheres.
    Naval Air Development Center, Warminster, PA
    Journal of Fire and Flammability, Vol. 4, 309-324, October 1973
    72-WA/HT-22,
    American Society of Mechanical Engineers. Winter Annual Meeting. Heat Transfer Division. November 28, 1972, New York, NY, ['1972', '1973']