THE INTERACTION OF A DETONATION WAVE WITH AN INERT BOUNDARY.

THE INTERACTION OF A DETONATION WAVE WITH AN INERT BOUNDARY. PDF Author: WILLIAM PAUL SOMMERS
Publisher:
ISBN:
Category :
Languages : en
Pages : 188

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THE INTERACTION OF A DETONATION WAVE WITH AN INERT BOUNDARY.

THE INTERACTION OF A DETONATION WAVE WITH AN INERT BOUNDARY. PDF Author: WILLIAM PAUL SOMMERS
Publisher:
ISBN:
Category :
Languages : en
Pages : 188

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The Interaction Process Between Gaseous Detonation Waves and Inert Gaseous Boundaries

The Interaction Process Between Gaseous Detonation Waves and Inert Gaseous Boundaries PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 11

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The properties of gaseous detonation waves when subjected to a compressible (gaseous) inert boundary are investigated both theoretically and experimentally. Properties of interest are the propagation velocity, the reaction length, the quenching conditions and the shape of the wave. The zeroth order analytical solution of the hydrodynamic equations involved, an assessment of several quenching criteria, a description of the experimental setup, and the experimental results were obtained. As a summary of this work, the abstract and the conclusions are presented. (Author).

The interaction process between gaseous detonation waves and inert gaseous boundaries

The interaction process between gaseous detonation waves and inert gaseous boundaries PDF Author: E.K. dabora
Publisher:
ISBN:
Category :
Languages : en
Pages : 11

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Experimental Investigation of the Interaction of a Detonation with a Boundary Gas

Experimental Investigation of the Interaction of a Detonation with a Boundary Gas PDF Author: Tim Gardiner Adams
Publisher:
ISBN:
Category : Explosions
Languages : en
Pages : 302

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Shock Waves Science and Technology Library, Vol. 6

Shock Waves Science and Technology Library, Vol. 6 PDF Author: F. Zhang
Publisher: Springer Science & Business Media
ISBN: 3642229662
Category : Science
Languages : en
Pages : 482

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Book Description
This book, as a volume of the Shock Wave Science and Technology Reference Library, is primarily concerned with the fundamental theory of detonation physics in gaseous and condensed phase reactive media. The detonation process involves complex chemical reaction and fluid dynamics, accompanied by intricate effects of heat, light, electricity and magnetism - a contemporary research field that has found wide applications in propulsion and power, hazard prevention as well as military engineering. The seven extensive chapters contained in this volume are: - Chemical Equilibrium Detonation (S Bastea and LE Fried) - Steady One-Dimensional Detonations (A Higgins) - Detonation Instability (HD Ng and F Zhang) - Dynamic Parameters of Detonation (AA Vasiliev) - Multi-Scaled Cellular Detonation (D Desbordes and HN Presles) - Condensed Matter Detonation: Theory and Practice (C Tarver) - Theory of Detonation Shock Dynamics (JB Bdzil and DS Stewart) The chapters are thematically interrelated in a systematic descriptive approach, though, each chapter is self-contained and can be read independently from the others. It offers a timely reference of theoretical detonation physics for graduate students as well as professional scientists and engineers.

Unsteady Interaction of Shock and Detonation Waves in Gases

Unsteady Interaction of Shock and Detonation Waves in Gases PDF Author: Viktor Pavlovich Korobeĭnikov
Publisher: CRC Press
ISBN:
Category : Science
Languages : en
Pages : 256

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A HYDRODYNAMIC THEORY FOR THE INTERACTION OF A DETONATION WITH A COMPRESSIBLE BOUNDARY

A HYDRODYNAMIC THEORY FOR THE INTERACTION OF A DETONATION WITH A COMPRESSIBLE BOUNDARY  PDF Author: Martin Sichel
Publisher:
ISBN:
Category :
Languages : en
Pages : 46

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THE INFLUENCE OF A COMPRESSIBLE BOUNDARY ON THE PROPAGATION OF GASEOUS DETONATIONS.

THE INFLUENCE OF A COMPRESSIBLE BOUNDARY ON THE PROPAGATION OF GASEOUS DETONATIONS. PDF Author: Eliahou Khedhoory Dabora
Publisher:
ISBN:
Category : Detonation waves
Languages : en
Pages : 172

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Theoretical analysis shows that a detonation wave in a gaseous explosive bounded by an inert gaseous medium propagates at a lower velocity than it would have if the explosive were inside a tube with a solid wall. The velocity decrement is found to be dependent primarily on the ratio of the initial densities of the explosive and the inert gases, the reaction length of the explosive and the extent of the explosive normal to the interface. An extension of composition limit criteria shows that there is a limit to the velocity decrement beyond which the detonation is expected to quench and therefore deteriorate into a shock. Extensive experimental results on H2-O2 mixtures bounded by nitrogen and some results on stoichiometric CH4-O2 bounded by different gases show a general agreement with theory. (Author).

Research in Progress

Research in Progress PDF Author:
Publisher:
ISBN:
Category : Military research
Languages : en
Pages : 756

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 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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