Dynamics of detonations and explosions : explosion phenomena /
Clasificación: | Libro Electrónico |
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Autores Corporativos: | , |
Otros Autores: | |
Formato: | Electrónico Congresos, conferencias eBook |
Idioma: | Inglés |
Publicado: |
Washington, D.C. :
American Institute of Aeronautics and Astronautics,
©1991.
|
Colección: | Progress in astronautics and aeronautics ;
v. 134. |
Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Cover
- Title
- Copyright
- Table of Contents
- Preface
- Chapter I. Vapor Cloud Explosions
- Scaling of Vapor Cloud Explosions After Turbulent Jet Release
- Effect of Asymmetric Ignition on the Vapor Cloud Spatial Blast
- Experimental Investigation Concerning the Influenceof Turbulence on the Flame Front Velocity of FuelGas-Air Mixture Deflagrations
- Mechanism of Flame Acceleration Alonga Tube With Obstacles
- Explosion in a Vented Vessel Connected to a Duct
- Modelization and Validation Tests of the Dischargein Air of a Vessel Pressurized by a Flammable GasApplicability of a Chemical-Equilibrium Modelto Explosion Products
- Inverse Numerical Process for Inlet ConditionsCalculus from Experimental Front Determination
- Chapter II. Blast Wave Reflections and Interactions
- Reflection of Shock and Explosion Waves from Surfaces Covered with Layers of Polyurethane Foam
- Simulating the Impact Made by a Shock Wave on aBody Surrounded by a Layer of Hot or Cold Gas
- Turbulent Wall Jet in a Mach Reflection Flow
- Numerical Simulation of the Change in theSupersonic Flow Past a Body Produced by Switchingon a Nearby Heat SourceShock Waves Produced by Reflected Detonations
- Spherical Wave Interaction with a Liquid-AirInterface: Analysis of the Holographic Results
- Formation of Zones with High ParticleConcentrations in Dusty Gas
- Chapter III. Vapor Explosions
- Shock Waves From Vapor Explosion in aShock Tube
- Dynamics of Explosive Interactions Between MoltenTin and Water in Stratified Geometry
- Steam Explosion Studies with Molten Iron-AluminaGenerated by Thermite Reactions
- Application of the Integrated Fuel-CoolantInteraction Code to a FITS-TypePouring Mode ExperimentMultiphase Physical Explosion ModelingUsing the CULDESAC Code
- Author Index