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Nonsteady Burning and Combustion Stability of Solid Propellants.

By: Contributor(s): Material type: TextTextSeries: Progress in Astronautics and AeronauticsPublisher: Reston : American Institute of Aeronautics and Astronautics, 1992Copyright date: ©1992Edition: 1st edDescription: 1 online resource (895 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781600863967
Subject(s): Genre/Form: Additional physical formats: Print version:: Nonsteady Burning and Combustion Stability of Solid PropellantsLOC classification:
  • TL785.N66 1992
Online resources:
Contents:
Cover -- Title -- Copyright -- Preface -- Table of Contents -- Chapter 1. Solid Rocket Combustion Instability-An American Historical Accoun -- Chapter 2. Introduction to Nonsteady Burning and Combustion Stability -- Chapter 3. Steady Burning Rate and Affecting Factors:Experimental Results -- Chapter 4. Temperature Sensitivity of Solid Propellants and Affecting Factors:Experimental Results -- Chapter 5. Measuring Thermodynamic Properties of Burning Propellants -- Chapter 6. Thermophysics of Stable Combustion Waves of Solid Propellants -- Chapter 7. Flame Structure of Modern Solid Propellants -- Chapter 8. Nonintrusive Diagnostic Techniques for Research on Nonsteady Burning of Solid Propellants -- Chapter 9. L* Instability -- Chapter 10. Radiation-Driven Transient Burning: Experimental Results -- Chapter 11. Self-Sustained Oscillatory Burning of Solid Propellants: Experimental Results -- Chapter 12. Transient Combustion of Solid Propellants: An Important Aspect of Deflagration-to-Detonation Transition -- Chapter 13. Coupling Between Nonsteady Burning and Structural Mechanics of Solid-Propellant Grains -- Chapter 14. Theory of Nonsteady Burning and Combustion Stability of Solid Propellants by Flame Models -- Chapter 15. Theory of Nonsteady Burning and Combustion Stability of Solid Propellants by the Zeldovich-Novozhilov Method -- Chapter 16. Numerical Computations of Solid-Propellant Nonsteady Burning in Open or Confined Volumes -- Chapter 17. Laboratory Test Methods for Combustion-Stability Properties of Solid Propellants -- Chapter 18. Prediction of the Stability of Unsteady Motions in Solid-Propellant Rocket Motors -- Chapter 19. Applications of Combustion-Stability Technology to Solid-Propellant Rocket Motors -- Chapter 20. Technologies and Techniques for Instability Suppression in Motors.
Chapter 21. Status and Prospects for Future Developments -- Author Index.
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Cover -- Title -- Copyright -- Preface -- Table of Contents -- Chapter 1. Solid Rocket Combustion Instability-An American Historical Accoun -- Chapter 2. Introduction to Nonsteady Burning and Combustion Stability -- Chapter 3. Steady Burning Rate and Affecting Factors:Experimental Results -- Chapter 4. Temperature Sensitivity of Solid Propellants and Affecting Factors:Experimental Results -- Chapter 5. Measuring Thermodynamic Properties of Burning Propellants -- Chapter 6. Thermophysics of Stable Combustion Waves of Solid Propellants -- Chapter 7. Flame Structure of Modern Solid Propellants -- Chapter 8. Nonintrusive Diagnostic Techniques for Research on Nonsteady Burning of Solid Propellants -- Chapter 9. L* Instability -- Chapter 10. Radiation-Driven Transient Burning: Experimental Results -- Chapter 11. Self-Sustained Oscillatory Burning of Solid Propellants: Experimental Results -- Chapter 12. Transient Combustion of Solid Propellants: An Important Aspect of Deflagration-to-Detonation Transition -- Chapter 13. Coupling Between Nonsteady Burning and Structural Mechanics of Solid-Propellant Grains -- Chapter 14. Theory of Nonsteady Burning and Combustion Stability of Solid Propellants by Flame Models -- Chapter 15. Theory of Nonsteady Burning and Combustion Stability of Solid Propellants by the Zeldovich-Novozhilov Method -- Chapter 16. Numerical Computations of Solid-Propellant Nonsteady Burning in Open or Confined Volumes -- Chapter 17. Laboratory Test Methods for Combustion-Stability Properties of Solid Propellants -- Chapter 18. Prediction of the Stability of Unsteady Motions in Solid-Propellant Rocket Motors -- Chapter 19. Applications of Combustion-Stability Technology to Solid-Propellant Rocket Motors -- Chapter 20. Technologies and Techniques for Instability Suppression in Motors.

Chapter 21. Status and Prospects for Future Developments -- Author Index.

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Electronic reproduction. Ann Arbor, Michigan : ProQuest Ebook Central, 2024. Available via World Wide Web. Access may be limited to ProQuest Ebook Central affiliated libraries.

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