HIGH EXPLOSIVES
1999 Site Visit
Selected Results for October 1999 Site Visit
Presentations
Algorithmic Integration of VTF
HE Group Activities
HE Materials Properties Modeling
Detailed and Reduced Reaction Mechanisms
HE Engineering Model
Viscoelastic Response of Binders and HE Initiation
Posters
Reduced Reaction Mechanisms and Hydrodynamic Simulations
Application of POOMA to VTF
HE Engineering Models - EoS of Mixtures - HMX
Viscoelastic Binder Response in HE
Early events in Molecular High Explosives
VTF Validation and Verification
Virtual Posters
Quantum molecular dynamics of shocked high explosives and Detailed reaction mechanisms for nitramines
Reduced reaction mechanisms and hydrodynamic simulations
VTF Verification Tests
Pooma VTF
Movies from VTF simulations
1D shock wave propagating through Eulerian-Lagrangian boundary
2D shock wave propagating between spring-mass boundaries
2D shock wave propagating between Euler-Bernoulli Beam boundaries
Shock Wave propagating in steel cylinder with test materials
Detonation Wave propagating in steel cylinder
Detonation Wave (fast rate) Propagating around a corner (pressure)
Detonation Wave (fast rate) Propagating around a corner (temperature)
Detonation Wave (slow rate) Propagating around a corner (pressure)
Detonation Wave (slow rate) Propagating around a corner (temperature)
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Joe Shepherd