Numerical Modeling of Explosives and Propellants, Second Edition

Numerical Modeling of Explosives and Propellants, Second Edition
Title Numerical Modeling of Explosives and Propellants, Second Edition PDF eBook
Author Charles L. Mader
Publisher CRC Press
Pages 456
Release 1997-08-29
Genre Technology & Engineering
ISBN 9780849331497

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Charles Mader, a leading scientist who conducted theoretical research at Los Alamos National Laboratory for more than 30 years, sets a new standard with this reference on numerical modeling of explosives and propellants. This book updates and expands the information presented in the author's landmark work, Numerical Modeling of Detonations, published in 1979 and still in use today. Numerical Modeling of Explosives and Propellants incorporates the considerable changes the personal computer has brought to numerical modeling since the first book was published, and includes new three-dimensional modeling techniques and new information on propellant performance and vulnerability. Both an introduction to the physics and chemistry of explosives and propellants and a guide to numerical modeling of detonation and reactive fluid dynamics, Numerical Modeling of Explosives and Propellants offers scientists and engineers a complete picture of the current state of explosive and propellant technology and numerical modeling. The book is richly illustrated with figures that support the concepts, and filled with tables for quick access to precise data. The accompanying CD-ROM contains computer codes that are the national standard by which modeling is evaluated. Dynamic material properties data files and animation files are also included. There is no other book available today that offers this vital information.

Proceedings

Proceedings
Title Proceedings PDF eBook
Author
Publisher
Pages 892
Release 1989
Genre Detonation
ISBN

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Papers presented in this publication cover special problems in the field of energetic materials, particularly detonation phenomena in solids and liquids. General subject areas include shock-to-detonation transition, time resolved chemistry, initiation modeling, deflagration-to-detonation transition, equation of state and equation of state and performance, composites and emulsions, and composites and emulsions/underwater explosives, reaction zone, detonation wave propagation, hot spots, detonation products, chemistry and compositions, and special initiation.

Dynamics of Shock Waves, Explosions, and Detonations

Dynamics of Shock Waves, Explosions, and Detonations
Title Dynamics of Shock Waves, Explosions, and Detonations PDF eBook
Author J. Raymond Bowen
Publisher
Pages 632
Release 1984
Genre Technology & Engineering
ISBN

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Numerical Modeling of Explosives and Propellants

Numerical Modeling of Explosives and Propellants
Title Numerical Modeling of Explosives and Propellants PDF eBook
Author Charles L. Mader
Publisher CRC Press
Pages 539
Release 2007-10-18
Genre Technology & Engineering
ISBN 142005239X

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Major advances, both in modeling methods and in the computing power required to make those methods viable, have led to major breakthroughs in our ability to model the performance and vulnerability of explosives and propellants. In addition, the development of proton radiography during the last decade has provided researchers with a major new experimental tool for studying explosive and shock wave physics. Problems that were once considered intractable – such as the generation of water cavities, jets, and stems by explosives and projectiles – have now been solved. Numerical Modeling of Explosives and Propellants, Third Edition provides a complete overview of this rapidly emerging field, covering basic reactive fluid dynamics as well as the latest and most complex methods and findings. It also describes and evaluates Russian contributions to the experimental explosive physics database, which only recently have become available. This book comes with downloadable resources that contain— · FORTRAN and executable computer codes that operate under Microsoft® Windows Vista operating system and the OS X operating system for Apple computers · Windows Vista and MAC compatible movies and PowerPoint presentations for each chapter · Explosive and shock wave databases generated at the Los Alamos National Laboratory and the Russian Federal Nuclear Centers Charles Mader’s three-pronged approach – through text, computer programs, and animations – imparts a thorough understanding of new computational methods and experimental measuring techniques, while also providing the tools to put these methods to effective use.

Proceedings, Seventh Symposium (International) on Detonation

Proceedings, Seventh Symposium (International) on Detonation
Title Proceedings, Seventh Symposium (International) on Detonation PDF eBook
Author
Publisher
Pages 1120
Release 1982
Genre Acoustic phenomena in nature
ISBN

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Energy Research Abstracts

Energy Research Abstracts
Title Energy Research Abstracts PDF eBook
Author
Publisher
Pages 1470
Release 1989
Genre Power resources
ISBN

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High-Pressure Shock Compression of Solids VI

High-Pressure Shock Compression of Solids VI
Title High-Pressure Shock Compression of Solids VI PDF eBook
Author Yasuyuki Horie
Publisher Springer Science & Business Media
Pages 376
Release 2003
Genre Science
ISBN 9780387955322

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Both experimental and theoretical investigations make it clear that mesoscale materials, that is, materials at scales intermediate between atomic and bulk matter, do not always behave in ways predicted by conventional theories of shock compression. At these scales, shock waves interact with local material properties and microstructure to produce a hierarchy of dissipative structures such as inelastic deformation fields, randomly distributed lattice defects, and residual stresses. A macroscopically steady planar shock wave is neither plane nor steady at the mesoscale. The chapters in this book examine the assumptions underlying our understanding of shock phenomena and present new measurements, calculations, and theories that challenge these assumptions. They address such questions as: What are the experimental data on mesoscale effects of shocks, and what are the implications?; Can one formulate new mesoscale theories of shock dynamics?; How would new mesoscale theories affect our understanding of shock-induced phase transitions or fracture?; And what new computational models will be needed for investigating mesoscale shocks?